Removed regular ints from the virtual machine and closures
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9a9e252cab
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01c1bce9c5
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@ -15,7 +15,8 @@ type Callee interface {
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type ClosureBody interface {
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Callee
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ethutil.RlpEncodable
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GetMem(int64) *ethutil.Value
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GetMem(*big.Int) *ethutil.Value
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SetMem(*big.Int, *ethutil.Value)
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}
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// Basic inline closure object which implement the 'closure' interface
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@ -36,7 +37,7 @@ func NewClosure(callee Callee, object ClosureBody, state *State, gas, val *big.I
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}
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// Retuns the x element in data slice
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func (c *Closure) GetMem(x int64) *ethutil.Value {
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func (c *Closure) GetMem(x *big.Int) *ethutil.Value {
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m := c.object.GetMem(x)
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if m == nil {
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return ethutil.EmptyValue()
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@ -45,6 +46,10 @@ func (c *Closure) GetMem(x int64) *ethutil.Value {
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return m
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}
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func (c *Closure) SetMem(x *big.Int, val *ethutil.Value) {
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c.object.SetMem(x, val)
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}
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func (c *Closure) Address() []byte {
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return c.object.Address()
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}
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@ -39,12 +39,17 @@ func (c *Contract) State() *State {
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return c.state
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}
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func (c *Contract) GetMem(num int64) *ethutil.Value {
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nb := ethutil.BigToBytes(big.NewInt(num), 256)
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func (c *Contract) GetMem(num *big.Int) *ethutil.Value {
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nb := ethutil.BigToBytes(num, 256)
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return c.Addr(nb)
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}
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func (c *Contract) SetMem(num *big.Int, val *ethutil.Value) {
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addr := ethutil.BigToBytes(num, 256)
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c.state.trie.Update(string(addr), string(val.Encode()))
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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 *Contract) ReturnGas(val *big.Int, state *State) {
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c.Amount.Add(c.Amount, val)
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@ -237,6 +237,10 @@ func (m *Memory) Get(offset, size int64) []byte {
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return m.store[offset : offset+size]
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}
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func (m *Memory) Len() int {
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return len(m.store)
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}
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func (m *Memory) Print() {
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fmt.Println("### MEM ###")
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if len(m.store) > 0 {
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@ -49,7 +49,7 @@ func (vm *Vm) RunClosure(closure *Closure) []byte {
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// New stack (should this be shared?)
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stack := NewStack()
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// Instruction pointer
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pc := int64(0)
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pc := big.NewInt(0)
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// Current step count
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step := 0
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// The base for all big integer arithmetic
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@ -226,7 +226,8 @@ func (vm *Vm) RunClosure(closure *Closure) []byte {
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// 0x50 range
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case oPUSH: // Push PC+1 on to the stack
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pc++
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pc.Add(pc, ethutil.Big1)
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val := closure.GetMem(pc).BigInt()
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stack.Push(val)
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case oPOP:
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@ -250,14 +251,22 @@ func (vm *Vm) RunClosure(closure *Closure) []byte {
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mem.Set(mStart.Int64(), 32, ethutil.BigToBytes(base, 256))
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case oSLOAD:
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loc := stack.Pop()
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val := closure.GetMem(loc.Int64())
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val := closure.GetMem(loc)
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stack.Push(val.BigInt())
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case oSSTORE:
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val, loc := stack.Popn()
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closure.SetMem(loc, ethutil.NewValue(val))
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case oJUMP:
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pc = stack.Pop()
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case oJUMPI:
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pos, cond := stack.Popn()
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if cond.Cmp(big.NewInt(0)) > 0 {
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pc = pos
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}
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case oPC:
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stack.Push(pc)
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case oMSIZE:
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stack.Push(big.NewInt(int64(mem.Len())))
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// 0x60 range
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case oCALL:
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// Pop return size and offset
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@ -304,7 +313,7 @@ func (vm *Vm) RunClosure(closure *Closure) []byte {
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ethutil.Config.Log.Debugln("Invalid opcode", op)
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}
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pc++
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pc.Add(pc, ethutil.Big1)
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}
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}
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@ -682,7 +691,7 @@ func makeInlineTx(addr []byte, value, from, length *big.Int, contract *Contract,
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j := int64(0)
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dataItems := make([]string, int(length.Uint64()))
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for i := from.Int64(); i < length.Int64(); i++ {
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dataItems[j] = contract.GetMem(j).Str()
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dataItems[j] = contract.GetMem(big.NewInt(j)).Str()
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j++
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}
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@ -33,3 +33,9 @@ func CurrencyToString(num *big.Int) string {
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return fmt.Sprintf("%v Wei", num)
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}
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var (
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Big1 = big.NewInt(1)
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Big0 = big.NewInt(0)
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Big256 = big.NewInt(0xff)
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)
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