Updated VM
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a96c8c8af9
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6930260962
@ -8,7 +8,7 @@ import (
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)
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type Callee interface {
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ReturnGas(*big.Int, *State)
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ReturnGas(*big.Int, *big.Int, *State)
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Address() []byte
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}
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@ -83,18 +83,16 @@ func (c *Closure) Return(ret []byte) []byte {
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// If no callee is present return it to
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// the origin (i.e. contract or tx)
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if c.callee != nil {
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c.callee.ReturnGas(c.Gas, c.State)
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c.callee.ReturnGas(c.Gas, c.Price, c.State)
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} else {
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c.object.ReturnGas(c.Gas, c.State)
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// TODO incase it's a POST contract we gotta serialise the contract again.
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// But it's not yet defined
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c.object.ReturnGas(c.Gas, c.Price, c.State)
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}
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return ret
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}
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// Implement the Callee interface
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func (c *Closure) ReturnGas(gas *big.Int, state *State) {
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func (c *Closure) ReturnGas(gas, price *big.Int, state *State) {
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// Return the gas to the closure
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c.Gas.Add(c.Gas, gas)
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}
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@ -1,6 +1,7 @@
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package ethchain
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import (
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"fmt"
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"github.com/ethereum/eth-go/ethutil"
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"math/big"
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)
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@ -70,8 +71,9 @@ func (c *StateObject) SetMem(num *big.Int, val *ethutil.Value) {
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}
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// Return the gas back to the origin. Used by the Virtual machine or Closures
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func (c *StateObject) ReturnGas(val *big.Int, state *State) {
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c.AddAmount(val)
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func (c *StateObject) ReturnGas(gas, price *big.Int, state *State) {
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remainder := new(big.Int).Mul(gas, price)
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c.AddAmount(remainder)
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}
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func (c *StateObject) AddAmount(amount *big.Int) {
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@ -82,18 +84,33 @@ func (c *StateObject) SubAmount(amount *big.Int) {
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c.Amount.Sub(c.Amount, amount)
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}
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func (c *StateObject) ConvertGas(gas, price *big.Int) error {
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total := new(big.Int).Mul(gas, price)
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if total.Cmp(c.Amount) > 0 {
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return fmt.Errorf("insufficient amount: %v, %v", c.Amount, total)
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}
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c.SubAmount(total)
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return nil
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}
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// Returns the address of the contract/account
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func (c *StateObject) Address() []byte {
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return c.address
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}
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// Returns the main script body
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func (c *StateObject) Script() []byte {
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return c.script
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}
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// Returns the initialization script
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func (c *StateObject) Init() []byte {
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return c.initScript
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}
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// State object encoding methods
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func (c *StateObject) RlpEncode() []byte {
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var root interface{}
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if c.state != nil {
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@ -113,6 +130,7 @@ func (c *StateObject) RlpDecode(data []byte) {
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c.script = decoder.Get(3).Bytes()
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}
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// Converts an transaction in to a state object
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func MakeContract(tx *Transaction, state *State) *StateObject {
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// Create contract if there's no recipient
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if tx.IsContract() {
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@ -102,10 +102,9 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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}
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*/
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// TODO Get each instruction cost properly
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gas := new(big.Int)
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useGas := func(amount *big.Int) {
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gas.Add(gas, new(big.Int).Mul(amount, closure.Price))
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gas.Add(gas, amount)
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}
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switch op {
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@ -142,6 +141,8 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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return closure.Return(nil), fmt.Errorf("insufficient gas %v %v", closure.Gas, gas)
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}
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// Sub the amount of gas from the remaining
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closure.Gas.Sub(closure.Gas, gas)
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switch op {
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@ -157,7 +158,6 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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x, y := stack.Popn()
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// (x + y) % 2 ** 256
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base.Add(x, y)
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base.Mod(base, Pow256)
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// Pop result back on the stack
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stack.Push(base)
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case oSUB:
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@ -165,7 +165,6 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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x, y := stack.Popn()
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// (x - y) % 2 ** 256
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base.Sub(x, y)
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base.Mod(base, Pow256)
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// Pop result back on the stack
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stack.Push(base)
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case oMUL:
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@ -173,7 +172,6 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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x, y := stack.Popn()
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// (x * y) % 2 ** 256
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base.Mul(x, y)
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base.Mod(base, Pow256)
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// Pop result back on the stack
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stack.Push(base)
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case oDIV:
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@ -325,7 +323,7 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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case oCALLDATASIZE:
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stack.Push(big.NewInt(int64(len(closure.Args))))
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case oGASPRICE:
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// TODO
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stack.Push(closure.Price)
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// 0x40 range
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case oPREVHASH:
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@ -339,7 +337,8 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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case oDIFFICULTY:
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stack.Push(vm.vars.Diff)
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case oGASLIMIT:
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// TODO
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// TODO
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stack.Push(big.NewInt(0))
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// 0x50 range
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case oPUSH: // Push PC+1 on to the stack
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@ -399,11 +398,14 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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case oJUMP:
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require(1)
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pc = stack.Pop()
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// Reduce pc by one because of the increment that's at the end of this for loop
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pc.Sub(pc, ethutil.Big1)
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case oJUMPI:
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require(2)
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cond, pos := stack.Popn()
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if cond.Cmp(ethutil.BigTrue) == 0 {
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pc = pos
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pc.Sub(pc, ethutil.Big1)
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}
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case oPC:
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stack.Push(pc)
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@ -421,21 +423,39 @@ func (vm *Vm) RunClosure(closure *Closure, hook DebugHook) (ret []byte, err erro
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inSize, inOffset := stack.Popn()
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// Pop return size and offset
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retSize, retOffset := stack.Popn()
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// Make sure there's enough gas
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if closure.Gas.Cmp(gas) < 0 {
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stack.Push(ethutil.BigFalse)
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break
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}
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// Get the arguments from the memory
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args := mem.Get(inOffset.Int64(), inSize.Int64())
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// Fetch the contract which will serve as the closure body
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contract := vm.state.GetContract(addr.Bytes())
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// Create a new callable closure
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closure := NewClosure(closure, contract, contract.script, vm.state, gas, closure.Price, value)
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// Executer the closure and get the return value (if any)
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ret, err := closure.Call(vm, args, hook)
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if err != nil {
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stack.Push(ethutil.BigFalse)
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} else {
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stack.Push(ethutil.BigTrue)
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}
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mem.Set(retOffset.Int64(), retSize.Int64(), ret)
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if contract != nil {
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// Prepay for the gas
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// If gas is set to 0 use all remaining gas for the next call
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if gas.Cmp(big.NewInt(0)) == 0 {
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gas = closure.Gas
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}
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closure.Gas.Sub(closure.Gas, gas)
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// Create a new callable closure
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closure := NewClosure(closure, contract, contract.script, vm.state, gas, closure.Price, value)
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// Executer the closure and get the return value (if any)
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ret, err := closure.Call(vm, args, hook)
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if err != nil {
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stack.Push(ethutil.BigFalse)
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} else {
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stack.Push(ethutil.BigTrue)
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}
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mem.Set(retOffset.Int64(), retSize.Int64(), ret)
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} else {
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ethutil.Config.Log.Debugf("Contract %x not found\n", addr.Bytes())
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stack.Push(ethutil.BigFalse)
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}
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case oRETURN:
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require(2)
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size, offset := stack.Popn()
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@ -86,9 +86,9 @@ func TestRun4(t *testing.T) {
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int32 a = 10
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int32 b = 20
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if a > b {
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int32 c = this.caller()
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int32 c = this.Caller()
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}
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exit()
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Exit()
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`), false)
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script := ethutil.Assemble(asm...)
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tx := NewContractCreationTx(ethutil.Big("0"), ethutil.Big("1000"), script, nil)
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@ -103,8 +103,9 @@ func TestRun4(t *testing.T) {
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store[1000] = 10^20
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}
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store[1001] = this.value() * 20
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store[this.origin()] = store[this.origin()] + 1000
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store[1001] = this.Value() * 20
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store[this.Origin()] = store[this.Origin()] + 1000
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if store[1001] > 20 {
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store[1001] = 10^50
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@ -112,8 +113,18 @@ func TestRun4(t *testing.T) {
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int8 ret = 0
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int8 arg = 10
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store[1002] = "a46df28529eb8aa8b8c025b0b413c5f4b688352f"
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call(store[1002], 0, 100000000, arg, ret)
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Call(0xe6a12555fad1fb6eaaaed69001a87313d1fd7b54, 0, 100, arg, ret)
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big t
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for int8 i = 0; i < 10; i++ {
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t = i
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}
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if 10 > 20 {
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int8 shouldnt = 2
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} else {
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int8 should = 1
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}
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`), false)
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if err != nil {
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fmt.Println(err)
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@ -125,10 +136,17 @@ func TestRun4(t *testing.T) {
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callerTx := NewContractCreationTx(ethutil.Big("0"), ethutil.Big("1000"), callerScript, nil)
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// Contract addr as test address
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gas := big.NewInt(1000)
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gasPrice := big.NewInt(10)
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account := NewAccount(ContractAddr, big.NewInt(10000000))
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fmt.Println(account)
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fmt.Println("account.Amount =", account.Amount)
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c := MakeContract(callerTx, state)
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callerClosure := NewClosure(account, c, c.script, state, big.NewInt(1000000000), big.NewInt(10), big.NewInt(0))
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e := account.ConvertGas(gas, gasPrice)
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if e != nil {
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fmt.Println(err)
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}
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fmt.Println("account.Amount =", account.Amount)
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callerClosure := NewClosure(account, c, c.script, state, gas, gasPrice, big.NewInt(0))
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vm := NewVm(state, RuntimeVars{
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Origin: account.Address(),
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@ -138,11 +156,11 @@ func TestRun4(t *testing.T) {
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Time: 1,
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Diff: big.NewInt(256),
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})
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_, e := callerClosure.Call(vm, nil, nil)
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_, e = callerClosure.Call(vm, nil, nil)
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if e != nil {
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fmt.Println("error", e)
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}
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fmt.Println(account)
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fmt.Println("account.Amount =", account.Amount)
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}
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func TestRun5(t *testing.T) {
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@ -156,6 +174,5 @@ func TestRun5(t *testing.T) {
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}
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exit()
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`), false)
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script := ethutil.Assemble(asm...)
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fmt.Println(Disassemble(script))
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ethutil.Assemble(asm...)
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}
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