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https://gitlab.com/pulsechaincom/go-pulse.git
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JitVm code cleanups & refactoring. Some memory copies eliminated (i.e. in SHA3 calculation)
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parent
3aa0410f6e
commit
94106cc41f
38
vm/vm_jit.go
38
vm/vm_jit.go
@ -15,6 +15,8 @@ struct evmjit_result
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struct evmjit_result evmjit_run(void* _data, void* _env);
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// Shared library evmjit (e.g. libevmjit.so) is expected to be installed in /usr/local/lib
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// More: https://github.com/ethereum/evmjit
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#cgo LDFLAGS: -levmjit
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*/
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import "C"
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@ -74,10 +76,11 @@ func hash2llvm(h []byte) i256 {
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}
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func llvm2hash(m *i256) []byte {
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if len(m) != 32 {
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panic("I don't know Go!")
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}
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return C.GoBytes(unsafe.Pointer(m), 32)
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return C.GoBytes(unsafe.Pointer(m), C.int(len(m)))
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}
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func llvm2hashRef(m *i256) []byte {
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return (*[1 << 30]byte)(unsafe.Pointer(m))[:len(m):len(m)]
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}
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func address2llvm(addr []byte) i256 {
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@ -86,6 +89,8 @@ func address2llvm(addr []byte) i256 {
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return n
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}
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// bswap swap bytes of the 256-bit integer on LLVM side
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// TODO: Do not change memory on LLVM side, that can conflict with memory access optimizations
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func bswap(m *i256) *i256 {
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for i, l := 0, len(m); i < l/2; i++ {
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m[i], m[l-i-1] = m[l-i-1], m[i]
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@ -129,12 +134,14 @@ func llvm2big(m *i256) *big.Int {
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return n
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}
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func llvm2bytes(data *byte, length uint64) []byte {
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// llvm2bytesRef creates a []byte slice that references byte buffer on LLVM side (as of that not controller by GC)
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// User must asure that referenced memory is available to Go until the data is copied or not needed any more
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func llvm2bytesRef(data *byte, length uint64) []byte {
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if length == 0 {
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return nil
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}
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if data == nil {
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panic("llvm2bytes: nil pointer to data")
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panic("Unexpected nil data pointer")
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}
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return (*[1 << 30]byte)(unsafe.Pointer(data))[:length:length]
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}
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@ -156,8 +163,10 @@ func NewJitVm(env Environment) *JitVm {
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}
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func (self *JitVm) Run(me, caller ContextRef, code []byte, value, gas, price *big.Int, callData []byte) (ret []byte, err error) {
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// TODO: depth is increased but never checked by VM. VM should not know about it at all.
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self.env.SetDepth(self.env.Depth() + 1)
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// TODO: Move it to Env.Call() or sth
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if Precompiled[string(me.Address())] != nil {
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// if it's address of precopiled contract
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// fallback to standard VM
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@ -165,7 +174,11 @@ func (self *JitVm) Run(me, caller ContextRef, code []byte, value, gas, price *bi
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return stdVm.Run(me, caller, code, value, gas, price, callData)
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}
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self.me = me // FIXME: Make sure Run() is not used more than once
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if self.me != nil {
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panic("JitVm.Run() can be called only once per JitVm instance")
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}
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self.me = me
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self.callerAddr = caller.Address()
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self.price = price
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@ -186,7 +199,6 @@ func (self *JitVm) Run(me, caller ContextRef, code []byte, value, gas, price *bi
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self.data.code = getDataPtr(code)
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result := C.evmjit_run(unsafe.Pointer(&self.data), unsafe.Pointer(self))
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//fmt.Printf("JIT result: %d\n", r)
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if result.returnCode >= 100 {
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err = errors.New("OOG from JIT")
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@ -198,9 +210,9 @@ func (self *JitVm) Run(me, caller ContextRef, code []byte, value, gas, price *bi
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ret = C.GoBytes(result.returnData, C.int(result.returnDataSize))
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C.free(result.returnData)
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} else if result.returnCode == 2 { // SUICIDE
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// TODO: Suicide support logic should be moved to Env to be shared by VM implementations
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state := self.Env().State()
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receiverAddr := llvm2hash(bswap(&self.data.elems[address]))
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receiverAddr = trim(receiverAddr) // TODO: trim all zeros or subslice 160bits?
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receiverAddr := llvm2hashRef(bswap(&self.data.elems[address]))
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receiver := state.GetOrNewStateObject(receiverAddr)
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balance := state.GetBalance(me.Address())
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receiver.AddAmount(balance)
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@ -224,8 +236,8 @@ func (self *JitVm) Env() Environment {
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}
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//export env_sha3
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func env_sha3(dataPtr unsafe.Pointer, length uint64, resultPtr unsafe.Pointer) {
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data := C.GoBytes(dataPtr, C.int(length))
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func env_sha3(dataPtr *byte, length uint64, resultPtr unsafe.Pointer) {
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data := llvm2bytesRef(dataPtr, length)
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hash := crypto.Sha3(data)
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result := (*i256)(resultPtr)
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*result = hash2llvm(hash)
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@ -300,7 +312,7 @@ func env_call(_vm unsafe.Pointer, _gas unsafe.Pointer, _receiveAddr unsafe.Point
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if balance.Cmp(value) >= 0 {
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receiveAddr := llvm2hash((*i256)(_receiveAddr))
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inData := C.GoBytes(inDataPtr, C.int(inDataLen))
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outData := llvm2bytes(outDataPtr, outDataLen)
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outData := llvm2bytesRef(outDataPtr, outDataLen)
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codeAddr := llvm2hash((*i256)(_codeAddr))
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llvmGas := (*i256)(_gas)
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gas := llvm2big(llvmGas)
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