bsc/vm/execution.go

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package vm
import (
"fmt"
"math/big"
"github.com/ethereum/go-ethereum/ethutil"
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"github.com/ethereum/go-ethereum/state"
)
type Execution struct {
vm VirtualMachine
address, input []byte
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Gas, price, value *big.Int
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object *state.StateObject
SkipTransfer bool
}
func NewExecution(vm VirtualMachine, address, input []byte, gas, gasPrice, value *big.Int) *Execution {
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return &Execution{vm: vm, address: address, input: input, Gas: gas, price: gasPrice, value: value}
}
func (self *Execution) Addr() []byte {
return self.address
}
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func (self *Execution) Exec(codeAddr []byte, caller ClosureRef) ([]byte, error) {
// Retrieve the executing code
code := self.vm.Env().State().GetCode(codeAddr)
return self.exec(code, codeAddr, caller)
}
func (self *Execution) exec(code, caddr []byte, caller ClosureRef) (ret []byte, err error) {
env := self.vm.Env()
vmlogger.Debugf("pre state %x\n", env.State().Root())
snapshot := env.State().Copy()
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defer func() {
if IsDepthErr(err) || IsOOGErr(err) {
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env.State().Set(snapshot)
}
vmlogger.Debugf("post state %x\n", env.State().Root())
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}()
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msg := env.State().Manifest().AddMessage(&state.Message{
To: self.address, From: caller.Address(),
Input: self.input,
Origin: env.Origin(),
Block: env.BlockHash(), Timestamp: env.Time(), Coinbase: env.Coinbase(), Number: env.BlockNumber(),
Value: self.value,
})
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from, to := caller.Object(), env.State().GetOrNewStateObject(self.address)
// Skipping transfer is used on testing for the initial call
if !self.SkipTransfer {
err = env.Transfer(from, to, self.value)
}
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if err != nil {
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caller.ReturnGas(self.Gas, self.price)
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err = fmt.Errorf("Insufficient funds to transfer value. Req %v, has %v", self.value, from.Balance)
} else {
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self.object = to
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// Pre-compiled contracts (address.go) 1, 2 & 3.
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naddr := ethutil.BigD(caddr).Uint64()
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if p := Precompiled[naddr]; p != nil {
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if self.Gas.Cmp(p.Gas) >= 0 {
ret = p.Call(self.input)
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self.vm.Printf("NATIVE_FUNC(%x) => %x", naddr, ret)
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self.vm.Endl()
}
} else {
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// Create a new callable closure
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c := NewClosure(msg, caller, to, code, self.Gas, self.price)
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c.exe = self
if self.vm.Depth() == MaxCallDepth {
c.UseGas(self.Gas)
return c.Return(nil), DepthError{}
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}
// Executer the closure and get the return value (if any)
ret, _, err = c.Call(self.vm, self.input)
msg.Output = ret
}
}
return
}
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func (self *Execution) Create(caller ClosureRef) (ret []byte, err error) {
return self.exec(self.input, nil, caller)
}