mirror of
https://github.com/nspcc-dev/neo-go.git
synced 2024-11-23 03:38:35 +00:00
9a06995460
Turns out, it's almost always allocating because we're mostly dealing with small integers while the buffer size is calculated in 8-byte chunks here, so preallocated buffer is always insufficient. name old time/op new time/op delta ToPreallocatedBytes-8 28.5ns ± 7% 19.7ns ± 5% -30.72% (p=0.000 n=10+10) name old alloc/op new alloc/op delta ToPreallocatedBytes-8 16.0B ± 0% 0.0B -100.00% (p=0.000 n=10+10) name old allocs/op new allocs/op delta ToPreallocatedBytes-8 1.00 ± 0% 0.00 -100.00% (p=0.000 n=10+10) Fix StorageItem reuse at the same time. We don't copy when getting values from the storage, but we don when we're putting them, so buffer reuse could corrupt old values.
365 lines
9.7 KiB
Go
365 lines
9.7 KiB
Go
package native
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import (
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"errors"
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"fmt"
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"math"
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"math/big"
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"github.com/nspcc-dev/neo-go/pkg/core/dao"
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"github.com/nspcc-dev/neo-go/pkg/core/interop"
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"github.com/nspcc-dev/neo-go/pkg/core/interop/contract"
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"github.com/nspcc-dev/neo-go/pkg/core/interop/runtime"
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"github.com/nspcc-dev/neo-go/pkg/core/state"
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"github.com/nspcc-dev/neo-go/pkg/encoding/bigint"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract/callflag"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract/manifest"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"github.com/nspcc-dev/neo-go/pkg/vm/stackitem"
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)
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// prefixAccount is the standard prefix used to store account data.
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const prefixAccount = 20
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// makeAccountKey creates a key from the account script hash.
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func makeAccountKey(h util.Uint160) []byte {
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return makeUint160Key(prefixAccount, h)
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}
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// nep17TokenNative represents a NEP-17 token contract.
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type nep17TokenNative struct {
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interop.ContractMD
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symbol string
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decimals int64
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factor int64
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incBalance func(*interop.Context, util.Uint160, *state.StorageItem, *big.Int, *big.Int) (func(), error)
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balFromBytes func(item *state.StorageItem) (*big.Int, error)
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}
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// totalSupplyKey is the key used to store totalSupply value.
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var totalSupplyKey = []byte{11}
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func (c *nep17TokenNative) Metadata() *interop.ContractMD {
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return &c.ContractMD
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}
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func newNEP17Native(name string, id int32) *nep17TokenNative {
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n := &nep17TokenNative{ContractMD: *interop.NewContractMD(name, id)}
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n.Manifest.SupportedStandards = []string{manifest.NEP17StandardName}
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desc := newDescriptor("symbol", smartcontract.StringType)
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md := newMethodAndPrice(n.Symbol, 0, callflag.NoneFlag)
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n.AddMethod(md, desc)
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desc = newDescriptor("decimals", smartcontract.IntegerType)
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md = newMethodAndPrice(n.Decimals, 0, callflag.NoneFlag)
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n.AddMethod(md, desc)
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desc = newDescriptor("totalSupply", smartcontract.IntegerType)
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md = newMethodAndPrice(n.TotalSupply, 1<<15, callflag.ReadStates)
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n.AddMethod(md, desc)
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desc = newDescriptor("balanceOf", smartcontract.IntegerType,
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manifest.NewParameter("account", smartcontract.Hash160Type))
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md = newMethodAndPrice(n.balanceOf, 1<<15, callflag.ReadStates)
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n.AddMethod(md, desc)
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transferParams := []manifest.Parameter{
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manifest.NewParameter("from", smartcontract.Hash160Type),
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manifest.NewParameter("to", smartcontract.Hash160Type),
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manifest.NewParameter("amount", smartcontract.IntegerType),
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}
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desc = newDescriptor("transfer", smartcontract.BoolType,
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append(transferParams, manifest.NewParameter("data", smartcontract.AnyType))...,
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)
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md = newMethodAndPrice(n.Transfer, 1<<17, callflag.States|callflag.AllowCall|callflag.AllowNotify)
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md.StorageFee = 50
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n.AddMethod(md, desc)
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n.AddEvent("Transfer", transferParams...)
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return n
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}
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func (c *nep17TokenNative) Initialize(_ *interop.Context) error {
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return nil
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}
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func (c *nep17TokenNative) Symbol(_ *interop.Context, _ []stackitem.Item) stackitem.Item {
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return stackitem.NewByteArray([]byte(c.symbol))
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}
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func (c *nep17TokenNative) Decimals(_ *interop.Context, _ []stackitem.Item) stackitem.Item {
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return stackitem.NewBigInteger(big.NewInt(c.decimals))
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}
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func (c *nep17TokenNative) TotalSupply(ic *interop.Context, _ []stackitem.Item) stackitem.Item {
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_, supply := c.getTotalSupply(ic.DAO)
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return stackitem.NewBigInteger(supply)
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}
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func (c *nep17TokenNative) getTotalSupply(d *dao.Simple) (state.StorageItem, *big.Int) {
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si := d.GetStorageItem(c.ID, totalSupplyKey)
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if si == nil {
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si = []byte{}
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}
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return si, bigint.FromBytes(si)
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}
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func (c *nep17TokenNative) saveTotalSupply(d *dao.Simple, si state.StorageItem, supply *big.Int) {
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d.PutBigInt(c.ID, totalSupplyKey, supply)
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}
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func (c *nep17TokenNative) Transfer(ic *interop.Context, args []stackitem.Item) stackitem.Item {
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from := toUint160(args[0])
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to := toUint160(args[1])
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amount := toBigInt(args[2])
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err := c.TransferInternal(ic, from, to, amount, args[3])
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return stackitem.NewBool(err == nil)
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}
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func addrToStackItem(u *util.Uint160) stackitem.Item {
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if u == nil {
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return stackitem.Null{}
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}
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return stackitem.NewByteArray(u.BytesBE())
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}
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func (c *nep17TokenNative) postTransfer(ic *interop.Context, from, to *util.Uint160, amount *big.Int,
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data stackitem.Item, callOnPayment bool, postCalls ...func()) {
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var skipPostCalls bool
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defer func() {
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if skipPostCalls {
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return
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}
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for _, f := range postCalls {
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if f != nil {
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f()
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}
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}
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}()
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c.emitTransfer(ic, from, to, amount)
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if to == nil || !callOnPayment {
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return
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}
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cs, err := ic.GetContract(*to)
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if err != nil {
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return
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}
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fromArg := stackitem.Item(stackitem.Null{})
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if from != nil {
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fromArg = stackitem.NewByteArray((*from).BytesBE())
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}
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args := []stackitem.Item{
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fromArg,
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stackitem.NewBigInteger(amount),
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data,
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}
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if err := contract.CallFromNative(ic, c.Hash, cs, manifest.MethodOnNEP17Payment, args, false); err != nil {
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skipPostCalls = true
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panic(err)
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}
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}
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func (c *nep17TokenNative) emitTransfer(ic *interop.Context, from, to *util.Uint160, amount *big.Int) {
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ic.AddNotification(c.Hash, "Transfer", stackitem.NewArray([]stackitem.Item{
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addrToStackItem(from),
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addrToStackItem(to),
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stackitem.NewBigInteger(amount),
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}))
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}
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// updateAccBalance adds the specified amount to the acc's balance. If requiredBalance
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// is set and amount is 0, the acc's balance is checked against requiredBalance.
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func (c *nep17TokenNative) updateAccBalance(ic *interop.Context, acc util.Uint160, amount *big.Int, requiredBalance *big.Int) (func(), error) {
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key := makeAccountKey(acc)
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si := ic.DAO.GetStorageItem(c.ID, key)
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if si == nil {
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if amount.Sign() < 0 {
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return nil, errors.New("insufficient funds")
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}
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if amount.Sign() == 0 {
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// it's OK to transfer 0 if the balance is 0, no need to put si to the storage
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return nil, nil
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}
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si = state.StorageItem{}
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}
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postF, err := c.incBalance(ic, acc, &si, amount, requiredBalance)
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if err != nil {
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if si != nil && amount.Sign() <= 0 {
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ic.DAO.PutStorageItem(c.ID, key, si)
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}
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return nil, err
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}
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if si == nil {
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ic.DAO.DeleteStorageItem(c.ID, key)
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} else {
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ic.DAO.PutStorageItem(c.ID, key, si)
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}
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return postF, nil
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}
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// TransferInternal transfers NEO across accounts.
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func (c *nep17TokenNative) TransferInternal(ic *interop.Context, from, to util.Uint160, amount *big.Int, data stackitem.Item) error {
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var postF1, postF2 func()
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if amount.Sign() == -1 {
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return errors.New("negative amount")
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}
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caller := ic.VM.GetCallingScriptHash()
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if caller.Equals(util.Uint160{}) || !from.Equals(caller) {
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ok, err := runtime.CheckHashedWitness(ic, from)
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if err != nil {
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return err
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} else if !ok {
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return errors.New("invalid signature")
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}
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}
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isEmpty := from.Equals(to) || amount.Sign() == 0
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inc := amount
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if isEmpty {
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inc = big.NewInt(0)
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} else {
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inc = new(big.Int).Neg(inc)
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}
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postF1, err := c.updateAccBalance(ic, from, inc, amount)
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if err != nil {
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return err
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}
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if !isEmpty {
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postF2, err = c.updateAccBalance(ic, to, amount, nil)
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if err != nil {
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return err
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}
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}
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c.postTransfer(ic, &from, &to, amount, data, true, postF1, postF2)
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return nil
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}
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func (c *nep17TokenNative) balanceOf(ic *interop.Context, args []stackitem.Item) stackitem.Item {
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h := toUint160(args[0])
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return stackitem.NewBigInteger(c.balanceOfInternal(ic.DAO, h))
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}
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func (c *nep17TokenNative) balanceOfInternal(d *dao.Simple, h util.Uint160) *big.Int {
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key := makeAccountKey(h)
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si := d.GetStorageItem(c.ID, key)
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if si == nil {
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return big.NewInt(0)
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}
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balance, err := c.balFromBytes(&si)
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if err != nil {
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panic(fmt.Errorf("can not deserialize balance state: %w", err))
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}
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return balance
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}
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func (c *nep17TokenNative) mint(ic *interop.Context, h util.Uint160, amount *big.Int, callOnPayment bool) {
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if amount.Sign() == 0 {
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return
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}
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postF := c.addTokens(ic, h, amount)
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c.postTransfer(ic, nil, &h, amount, stackitem.Null{}, callOnPayment, postF)
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}
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func (c *nep17TokenNative) burn(ic *interop.Context, h util.Uint160, amount *big.Int) {
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if amount.Sign() == 0 {
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return
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}
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amount.Neg(amount)
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postF := c.addTokens(ic, h, amount)
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amount.Neg(amount)
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c.postTransfer(ic, &h, nil, amount, stackitem.Null{}, false, postF)
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}
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func (c *nep17TokenNative) addTokens(ic *interop.Context, h util.Uint160, amount *big.Int) func() {
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if amount.Sign() == 0 {
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return nil
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}
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key := makeAccountKey(h)
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si := ic.DAO.GetStorageItem(c.ID, key)
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if si == nil {
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si = state.StorageItem{}
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}
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postF, err := c.incBalance(ic, h, &si, amount, nil)
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if err != nil {
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panic(err)
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}
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if si == nil {
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ic.DAO.DeleteStorageItem(c.ID, key)
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} else {
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ic.DAO.PutStorageItem(c.ID, key, si)
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}
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buf, supply := c.getTotalSupply(ic.DAO)
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supply.Add(supply, amount)
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c.saveTotalSupply(ic.DAO, buf, supply)
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return postF
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}
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func newDescriptor(name string, ret smartcontract.ParamType, ps ...manifest.Parameter) *manifest.Method {
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if len(ps) == 0 {
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ps = []manifest.Parameter{}
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}
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return &manifest.Method{
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Name: name,
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Parameters: ps,
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ReturnType: ret,
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}
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}
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func newMethodAndPrice(f interop.Method, cpuFee int64, flags callflag.CallFlag) *interop.MethodAndPrice {
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return &interop.MethodAndPrice{
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Func: f,
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CPUFee: cpuFee,
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RequiredFlags: flags,
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}
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}
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func toBigInt(s stackitem.Item) *big.Int {
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bi, err := s.TryInteger()
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if err != nil {
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panic(err)
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}
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return bi
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}
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func toUint160(s stackitem.Item) util.Uint160 {
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buf, err := s.TryBytes()
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if err != nil {
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panic(err)
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}
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u, err := util.Uint160DecodeBytesBE(buf)
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if err != nil {
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panic(err)
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}
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return u
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}
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func toUint32(s stackitem.Item) uint32 {
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bigInt := toBigInt(s)
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if !bigInt.IsUint64() {
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panic("bigint is not an uint64")
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}
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uint64Value := bigInt.Uint64()
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if uint64Value > math.MaxUint32 {
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panic("bigint does not fit into uint32")
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}
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return uint32(uint64Value)
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}
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func toInt64(s stackitem.Item) int64 {
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bigInt := toBigInt(s)
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if !bigInt.IsInt64() {
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panic("bigint is not an uint64")
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}
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return bigInt.Int64()
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}
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