mirror of
https://github.com/nspcc-dev/neo-go.git
synced 2024-12-23 03:41:34 +00:00
Merge pull request #1375 from nspcc-dev/compiler/types
Smartcontract types definition in interops
This commit is contained in:
commit
5f22bdfecf
15 changed files with 189 additions and 111 deletions
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@ -2,6 +2,7 @@ package tokencontract
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import (
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"github.com/nspcc-dev/neo-go/examples/token/nep5"
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"github.com/nspcc-dev/neo-go/pkg/interop"
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"github.com/nspcc-dev/neo-go/pkg/interop/storage"
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"github.com/nspcc-dev/neo-go/pkg/interop/util"
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)
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@ -52,12 +53,12 @@ func TotalSupply() int {
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}
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// BalanceOf returns the amount of token on the specified address
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func BalanceOf(holder []byte) interface{} {
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func BalanceOf(holder interop.Hash160) interface{} {
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return token.BalanceOf(ctx, holder)
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}
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// Transfer token from one user to another
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func Transfer(from []byte, to []byte, amount int) bool {
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func Transfer(from interop.Hash160, to interop.Hash160, amount int) bool {
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return token.Transfer(ctx, from, to, amount)
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}
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@ -1396,10 +1396,7 @@ func (c *codegen) convertSyscall(expr *ast.CallExpr, api, name string) {
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c.prog.Err = fmt.Errorf("unknown VM syscall api: %s.%s", api, name)
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return
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}
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emit.Syscall(c.prog.BinWriter, syscall.API)
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if syscall.ConvertResultToStruct {
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c.emitConvert(stackitem.StructT)
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}
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emit.Syscall(c.prog.BinWriter, syscall)
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// This NOP instruction is basically not needed, but if we do, we have a
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// one to one matching avm file with neo-python which is very nice for debugging.
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@ -201,6 +201,21 @@ func (c *codegen) scTypeFromExpr(typ ast.Expr) string {
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if c.typeOf(typ) == nil {
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return "Any"
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}
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if named, ok := t.(*types.Named); ok {
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if isInteropPath(named.String()) {
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name := named.Obj().Name()
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pkg := named.Obj().Pkg().Name()
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switch pkg {
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case "blockchain", "contract":
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return "Array" // Block, Transaction, Contract
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case "interop":
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if name != "Interface" {
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return name
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}
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}
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return "InteropInterface"
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}
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}
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switch t := t.Underlying().(type) {
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case *types.Basic:
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info := t.Info()
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@ -15,6 +15,10 @@ import (
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func TestCodeGen_DebugInfo(t *testing.T) {
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src := `package foo
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import "github.com/nspcc-dev/neo-go/pkg/interop"
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import "github.com/nspcc-dev/neo-go/pkg/interop/storage"
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import "github.com/nspcc-dev/neo-go/pkg/interop/blockchain"
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import "github.com/nspcc-dev/neo-go/pkg/interop/contract"
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func Main(op string) bool {
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var s string
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_ = s
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@ -42,6 +46,12 @@ func MethodByteArray() []byte { return nil }
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func MethodArray() []bool { return nil }
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func MethodStruct() struct{} { return struct{}{} }
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func unexportedMethod() int { return 1 }
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func MethodParams(addr interop.Hash160, h interop.Hash256,
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sig interop.Signature, pub interop.PublicKey,
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inter interop.Interface, ctr contract.Contract,
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ctx storage.Context, tx blockchain.Transaction) bool {
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return true
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}
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type MyStruct struct {}
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func (ms MyStruct) MethodOnStruct() { }
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func (ms *MyStruct) MethodOnPointerToStruct() { }
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@ -72,6 +82,7 @@ func (ms *MyStruct) MethodOnPointerToStruct() { }
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"unexportedMethod": "Integer",
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"MethodOnStruct": "Void",
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"MethodOnPointerToStruct": "Void",
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"MethodParams": "Boolean",
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}
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for i := range d.Methods {
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name := d.Methods[i].ID
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@ -201,6 +212,21 @@ func (ms *MyStruct) MethodOnPointerToStruct() { }
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},
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ReturnType: smartcontract.StringType,
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},
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{
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Name: "methodParams",
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Offset: 125,
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Parameters: []manifest.Parameter{
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manifest.NewParameter("addr", smartcontract.Hash160Type),
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manifest.NewParameter("h", smartcontract.Hash256Type),
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manifest.NewParameter("sig", smartcontract.SignatureType),
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manifest.NewParameter("pub", smartcontract.PublicKeyType),
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manifest.NewParameter("inter", smartcontract.InteropInterfaceType),
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manifest.NewParameter("ctr", smartcontract.ArrayType),
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manifest.NewParameter("ctx", smartcontract.InteropInterfaceType),
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manifest.NewParameter("tx", smartcontract.ArrayType),
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},
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ReturnType: smartcontract.BoolType,
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},
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},
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Events: []manifest.Event{},
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},
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@ -2,91 +2,85 @@ package compiler
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import "github.com/nspcc-dev/neo-go/pkg/core/interop/interopnames"
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// Syscall represents NEO or System syscall API with flag for proper AVM generation
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type Syscall struct {
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API string
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ConvertResultToStruct bool
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}
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// All lists are sorted, keep 'em this way, please.
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var syscalls = map[string]map[string]Syscall{
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var syscalls = map[string]map[string]string{
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"binary": {
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"Base58Decode": {interopnames.SystemBinaryBase58Decode, false},
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"Base58Encode": {interopnames.SystemBinaryBase58Encode, false},
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"Base64Decode": {interopnames.SystemBinaryBase64Decode, false},
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"Base64Encode": {interopnames.SystemBinaryBase64Encode, false},
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"Deserialize": {interopnames.SystemBinaryDeserialize, false},
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"Serialize": {interopnames.SystemBinarySerialize, false},
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"Base58Decode": interopnames.SystemBinaryBase58Decode,
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"Base58Encode": interopnames.SystemBinaryBase58Encode,
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"Base64Decode": interopnames.SystemBinaryBase64Decode,
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"Base64Encode": interopnames.SystemBinaryBase64Encode,
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"Deserialize": interopnames.SystemBinaryDeserialize,
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"Serialize": interopnames.SystemBinarySerialize,
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},
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"blockchain": {
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"GetBlock": {interopnames.SystemBlockchainGetBlock, true},
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"GetContract": {interopnames.SystemBlockchainGetContract, true},
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"GetHeight": {interopnames.SystemBlockchainGetHeight, false},
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"GetTransaction": {interopnames.SystemBlockchainGetTransaction, true},
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"GetTransactionFromBlock": {interopnames.SystemBlockchainGetTransactionFromBlock, false},
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"GetTransactionHeight": {interopnames.SystemBlockchainGetTransactionHeight, false},
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"GetBlock": interopnames.SystemBlockchainGetBlock,
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"GetContract": interopnames.SystemBlockchainGetContract,
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"GetHeight": interopnames.SystemBlockchainGetHeight,
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"GetTransaction": interopnames.SystemBlockchainGetTransaction,
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"GetTransactionFromBlock": interopnames.SystemBlockchainGetTransactionFromBlock,
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"GetTransactionHeight": interopnames.SystemBlockchainGetTransactionHeight,
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},
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"contract": {
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"Create": {interopnames.SystemContractCreate, true},
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"CreateStandardAccount": {interopnames.SystemContractCreateStandardAccount, false},
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"Destroy": {interopnames.SystemContractDestroy, false},
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"IsStandard": {interopnames.SystemContractIsStandard, false},
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"GetCallFlags": {interopnames.SystemContractGetCallFlags, false},
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"Update": {interopnames.SystemContractUpdate, false},
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"Create": interopnames.SystemContractCreate,
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"CreateStandardAccount": interopnames.SystemContractCreateStandardAccount,
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"Destroy": interopnames.SystemContractDestroy,
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"IsStandard": interopnames.SystemContractIsStandard,
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"GetCallFlags": interopnames.SystemContractGetCallFlags,
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"Update": interopnames.SystemContractUpdate,
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},
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"crypto": {
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"ECDsaSecp256k1Verify": {interopnames.NeoCryptoVerifyWithECDsaSecp256k1, false},
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"ECDSASecp256k1CheckMultisig": {interopnames.NeoCryptoCheckMultisigWithECDsaSecp256k1, false},
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"ECDsaSecp256r1Verify": {interopnames.NeoCryptoVerifyWithECDsaSecp256r1, false},
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"ECDSASecp256r1CheckMultisig": {interopnames.NeoCryptoCheckMultisigWithECDsaSecp256r1, false},
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"RIPEMD160": {interopnames.NeoCryptoRIPEMD160, false},
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"SHA256": {interopnames.NeoCryptoSHA256, false},
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"ECDsaSecp256k1Verify": interopnames.NeoCryptoVerifyWithECDsaSecp256k1,
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"ECDSASecp256k1CheckMultisig": interopnames.NeoCryptoCheckMultisigWithECDsaSecp256k1,
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"ECDsaSecp256r1Verify": interopnames.NeoCryptoVerifyWithECDsaSecp256r1,
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"ECDSASecp256r1CheckMultisig": interopnames.NeoCryptoCheckMultisigWithECDsaSecp256r1,
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"RIPEMD160": interopnames.NeoCryptoRIPEMD160,
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"SHA256": interopnames.NeoCryptoSHA256,
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},
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"enumerator": {
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"Concat": {interopnames.SystemEnumeratorConcat, false},
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"Create": {interopnames.SystemEnumeratorCreate, false},
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"Next": {interopnames.SystemEnumeratorNext, false},
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"Value": {interopnames.SystemEnumeratorValue, false},
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"Concat": interopnames.SystemEnumeratorConcat,
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"Create": interopnames.SystemEnumeratorCreate,
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"Next": interopnames.SystemEnumeratorNext,
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"Value": interopnames.SystemEnumeratorValue,
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},
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"engine": {
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"AppCall": {interopnames.SystemContractCall, false},
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"AppCall": interopnames.SystemContractCall,
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},
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"iterator": {
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"Concat": {interopnames.SystemIteratorConcat, false},
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"Create": {interopnames.SystemIteratorCreate, false},
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"Key": {interopnames.SystemIteratorKey, false},
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"Keys": {interopnames.SystemIteratorKeys, false},
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"Next": {interopnames.SystemEnumeratorNext, false},
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"Value": {interopnames.SystemEnumeratorValue, false},
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"Values": {interopnames.SystemIteratorValues, false},
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"Concat": interopnames.SystemIteratorConcat,
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"Create": interopnames.SystemIteratorCreate,
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"Key": interopnames.SystemIteratorKey,
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"Keys": interopnames.SystemIteratorKeys,
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"Next": interopnames.SystemEnumeratorNext,
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"Value": interopnames.SystemEnumeratorValue,
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"Values": interopnames.SystemIteratorValues,
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},
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"json": {
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"Deserialize": {interopnames.SystemJSONDeserialize, false},
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"Serialize": {interopnames.SystemJSONSerialize, false},
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"Deserialize": interopnames.SystemJSONDeserialize,
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"Serialize": interopnames.SystemJSONSerialize,
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},
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"runtime": {
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"GasLeft": {interopnames.SystemRuntimeGasLeft, false},
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"GetInvocationCounter": {interopnames.SystemRuntimeGetInvocationCounter, false},
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"GetCallingScriptHash": {interopnames.SystemRuntimeGetCallingScriptHash, false},
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"GetEntryScriptHash": {interopnames.SystemRuntimeGetEntryScriptHash, false},
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"GetExecutingScriptHash": {interopnames.SystemRuntimeGetExecutingScriptHash, false},
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"GetNotifications": {interopnames.SystemRuntimeGetNotifications, false},
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"GetScriptContainer": {interopnames.SystemRuntimeGetScriptContainer, true},
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"GetTime": {interopnames.SystemRuntimeGetTime, false},
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"GetTrigger": {interopnames.SystemRuntimeGetTrigger, false},
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"CheckWitness": {interopnames.SystemRuntimeCheckWitness, false},
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"Log": {interopnames.SystemRuntimeLog, false},
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"Notify": {interopnames.SystemRuntimeNotify, false},
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"Platform": {interopnames.SystemRuntimePlatform, false},
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"GasLeft": interopnames.SystemRuntimeGasLeft,
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"GetInvocationCounter": interopnames.SystemRuntimeGetInvocationCounter,
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"GetCallingScriptHash": interopnames.SystemRuntimeGetCallingScriptHash,
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"GetEntryScriptHash": interopnames.SystemRuntimeGetEntryScriptHash,
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"GetExecutingScriptHash": interopnames.SystemRuntimeGetExecutingScriptHash,
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"GetNotifications": interopnames.SystemRuntimeGetNotifications,
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"GetScriptContainer": interopnames.SystemRuntimeGetScriptContainer,
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"GetTime": interopnames.SystemRuntimeGetTime,
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"GetTrigger": interopnames.SystemRuntimeGetTrigger,
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"CheckWitness": interopnames.SystemRuntimeCheckWitness,
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"Log": interopnames.SystemRuntimeLog,
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"Notify": interopnames.SystemRuntimeNotify,
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"Platform": interopnames.SystemRuntimePlatform,
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},
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"storage": {
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"ConvertContextToReadOnly": {interopnames.SystemStorageAsReadOnly, false},
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"Delete": {interopnames.SystemStorageDelete, false},
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"Find": {interopnames.SystemStorageFind, false},
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"Get": {interopnames.SystemStorageGet, false},
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"GetContext": {interopnames.SystemStorageGetContext, false},
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"GetReadOnlyContext": {interopnames.SystemStorageGetReadOnlyContext, false},
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"Put": {interopnames.SystemStoragePut, false},
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"PutEx": {interopnames.SystemStoragePutEx, false},
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"ConvertContextToReadOnly": interopnames.SystemStorageAsReadOnly,
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"Delete": interopnames.SystemStorageDelete,
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"Find": interopnames.SystemStorageFind,
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"Get": interopnames.SystemStorageGet,
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"GetContext": interopnames.SystemStorageGetContext,
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"GetReadOnlyContext": interopnames.SystemStorageGetReadOnlyContext,
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"Put": interopnames.SystemStoragePut,
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"PutEx": interopnames.SystemStoragePutEx,
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},
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}
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@ -19,8 +19,8 @@ func Deserialize(b []byte) interface{} {
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// Base64Encode encodes given byte slice into a base64 string and returns byte
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// representation of this string. It uses `System.Binary.Base64Encode` interop.
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func Base64Encode(b []byte) []byte {
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return nil
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func Base64Encode(b []byte) string {
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return ""
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}
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// Base64Decode decodes given base64 string represented as a byte slice into
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@ -31,8 +31,8 @@ func Base64Decode(b []byte) []byte {
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// Base58Encode encodes given byte slice into a base58 string and returns byte
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// representation of this string. It uses `System.Binary.Base58Encode` syscall.
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func Base58Encode(b []byte) []byte {
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return nil
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func Base58Encode(b []byte) string {
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return ""
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}
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// Base58Decode decodes given base58 string represented as a byte slice into
|
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|
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@ -3,21 +3,24 @@ Package blockchain provides functions to access various blockchain data.
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*/
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package blockchain
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import "github.com/nspcc-dev/neo-go/pkg/interop/contract"
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import (
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"github.com/nspcc-dev/neo-go/pkg/interop"
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"github.com/nspcc-dev/neo-go/pkg/interop/contract"
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)
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// Transaction represents a NEO transaction. It's similar to Transaction class
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// in Neo .net framework.
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type Transaction struct {
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// Hash represents the hash (256 bit BE value in a 32 byte slice) of the
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// given transaction (which also is its ID).
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Hash []byte
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Hash interop.Hash256
|
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// Version represents the transaction version.
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Version int
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// Nonce is a random number to avoid hash collision.
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Nonce int
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// Sender represents the sender (160 bit BE value in a 20 byte slice) of the
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// given Transaction.
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Sender []byte
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Sender interop.Hash160
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// SysFee represents fee to be burned.
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SysFee int
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// NetFee represents fee to be distributed to consensus nodes.
|
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|
@ -35,22 +38,22 @@ type Transaction struct {
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type Block struct {
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// Hash represents the hash (256 bit BE value in a 32 byte slice) of the
|
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// given block.
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Hash []byte
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Hash interop.Hash256
|
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// Version of the block.
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Version int
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// PrevHash represents the hash (256 bit BE value in a 32 byte slice) of the
|
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// previous block.
|
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PrevHash []byte
|
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PrevHash interop.Hash256
|
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// MerkleRoot represents the root hash (256 bit BE value in a 32 byte slice)
|
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// of a transaction list.
|
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MerkleRoot []byte
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MerkleRoot interop.Hash256
|
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// Timestamp represents millisecond-precision block timestamp.
|
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Timestamp int
|
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// Index represents the height of the block.
|
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Index int
|
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// NextConsensus represents contract address of the next miner (160 bit BE
|
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// value in a 20 byte slice).
|
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NextConsensus []byte
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NextConsensus interop.Hash160
|
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// TransactionsLength represents the length of block's transactions array.
|
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TransactionsLength int
|
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}
|
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|
@ -67,29 +70,29 @@ func GetHeight() int {
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// GetBlock returns block found by the given hash or index (with the same
|
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// encoding as for GetHeader). This function uses `System.Blockchain.GetBlock`
|
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// syscall.
|
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func GetBlock(heightOrHash interface{}) Block {
|
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return Block{}
|
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func GetBlock(heightOrHash interface{}) *Block {
|
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return &Block{}
|
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}
|
||||
|
||||
// GetTransaction returns transaction found by the given hash (256 bit in BE
|
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// format represented as a slice of 32 bytes). This function uses
|
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// `System.Blockchain.GetTransaction` syscall.
|
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func GetTransaction(hash []byte) Transaction {
|
||||
return Transaction{}
|
||||
func GetTransaction(hash interop.Hash256) *Transaction {
|
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return &Transaction{}
|
||||
}
|
||||
|
||||
// GetTransactionFromBlock returns transaction hash (256 bit in BE format
|
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// represented as a slice of 32 bytes) from the block found by the given hash or
|
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// index (with the same encoding as for GetHeader) by its index. This
|
||||
// function uses `System.Blockchain.GetTransactionFromBlock` syscall.
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func GetTransactionFromBlock(heightOrHash interface{}, index int) []byte {
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func GetTransactionFromBlock(heightOrHash interface{}, index int) interop.Hash256 {
|
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return nil
|
||||
}
|
||||
|
||||
// GetTransactionHeight returns transaction's height (index of the block that
|
||||
// includes it) by the given ID (256 bit in BE format represented as a slice of
|
||||
// 32 bytes). This function uses `System.Blockchain.GetTransactionHeight` syscall.
|
||||
func GetTransactionHeight(hash []byte) int {
|
||||
func GetTransactionHeight(hash interop.Hash256) int {
|
||||
return 0
|
||||
}
|
||||
|
||||
|
@ -97,6 +100,6 @@ func GetTransactionHeight(hash []byte) int {
|
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// format represented as a slice of 20 bytes). Refer to the `contract` package
|
||||
// for details on how to use the returned structure. This function uses
|
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// `System.Blockchain.GetContract` syscall.
|
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func GetContract(scriptHash []byte) contract.Contract {
|
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return contract.Contract{}
|
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func GetContract(scriptHash interop.Hash160) *contract.Contract {
|
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return &contract.Contract{}
|
||||
}
|
||||
|
|
|
@ -3,6 +3,8 @@ Package contract provides functions to work with contracts.
|
|||
*/
|
||||
package contract
|
||||
|
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import "github.com/nspcc-dev/neo-go/pkg/interop"
|
||||
|
||||
// Contract represents a Neo contract and is used in interop functions. It's
|
||||
// a data structure that you can manipulate with using functions from
|
||||
// this package. It's similar in function to the Contract class in the Neo .net
|
||||
|
@ -19,8 +21,8 @@ type Contract struct {
|
|||
// manifest contract's manifest (limited in length by 2 KiB)
|
||||
// It returns this new created Contract when successful (and fails transaction
|
||||
// if not). It uses `System.Contract.Create` syscall.
|
||||
func Create(script []byte, manifest []byte) Contract {
|
||||
return Contract{}
|
||||
func Create(script []byte, manifest []byte) *Contract {
|
||||
return &Contract{}
|
||||
}
|
||||
|
||||
// Update updates script and manifest of the calling contract (that is the one that calls Update)
|
||||
|
@ -40,13 +42,13 @@ func Destroy() {}
|
|||
|
||||
// IsStandard checks if contract with provided hash is a standard signature/multisig contract.
|
||||
// This function uses `System.Contract.IsStandard` syscall.
|
||||
func IsStandard(h []byte) bool {
|
||||
func IsStandard(h interop.Hash160) bool {
|
||||
return false
|
||||
}
|
||||
|
||||
// CreateStandardAccount calculates script hash of a given public key.
|
||||
// This function uses `System.Contract.CreateStandardAccount` syscall.
|
||||
func CreateStandardAccount(pub []byte) []byte {
|
||||
func CreateStandardAccount(pub interop.PublicKey) []byte {
|
||||
return nil
|
||||
}
|
||||
|
||||
|
|
|
@ -3,36 +3,38 @@ Package crypto provides an interface to cryptographic syscalls.
|
|||
*/
|
||||
package crypto
|
||||
|
||||
import "github.com/nspcc-dev/neo-go/pkg/interop"
|
||||
|
||||
// SHA256 computes SHA256 hash of b. It uses `Neo.Crypto.SHA256` syscall.
|
||||
func SHA256(b []byte) []byte {
|
||||
func SHA256(b []byte) interop.Hash256 {
|
||||
return nil
|
||||
}
|
||||
|
||||
// RIPEMD160 computes RIPEMD160 hash of b. It uses `Neo.Crypto.RIPEMD160` syscall.
|
||||
func RIPEMD160(b []byte) []byte {
|
||||
func RIPEMD160(b []byte) interop.Hash160 {
|
||||
return nil
|
||||
}
|
||||
|
||||
// ECDsaSecp256r1Verify checks that sig is correct msg's signature for a given pub
|
||||
// (serialized public key). It uses `Neo.Crypto.VerifyWithECDsaSecp256r1` syscall.
|
||||
func ECDsaSecp256r1Verify(msg []byte, pub []byte, sig []byte) bool {
|
||||
func ECDsaSecp256r1Verify(msg []byte, pub interop.PublicKey, sig interop.Signature) bool {
|
||||
return false
|
||||
}
|
||||
|
||||
// ECDsaSecp256k1Verify checks that sig is correct msg's signature for a given pub
|
||||
// (serialized public key). It uses `Neo.Crypto.VerifyWithECDsaSecp256k1` syscall.
|
||||
func ECDsaSecp256k1Verify(msg []byte, pub []byte, sig []byte) bool {
|
||||
func ECDsaSecp256k1Verify(msg []byte, pub interop.PublicKey, sig interop.Signature) bool {
|
||||
return false
|
||||
}
|
||||
|
||||
// ECDSASecp256r1CheckMultisig checks multiple ECDSA signatures at once. It uses
|
||||
// `Neo.Crypto.CheckMultisigWithECDsaSecp256r1` syscall.
|
||||
func ECDSASecp256r1CheckMultisig(msg []byte, pubs [][]byte, sigs [][]byte) bool {
|
||||
func ECDSASecp256r1CheckMultisig(msg []byte, pubs []interop.PublicKey, sigs []interop.Signature) bool {
|
||||
return false
|
||||
}
|
||||
|
||||
// ECDSASecp256k1CheckMultisig checks multiple ECDSA signatures at once. It uses
|
||||
// `Neo.Crypto.CheckMultisigWithECDsaSecp256k1` syscall.
|
||||
func ECDSASecp256k1CheckMultisig(msg []byte, pubs [][]byte, sigs [][]byte) bool {
|
||||
func ECDSASecp256k1CheckMultisig(msg []byte, pubs []interop.PublicKey, sigs []interop.Signature) bool {
|
||||
return false
|
||||
}
|
||||
|
|
|
@ -1,11 +1,23 @@
|
|||
/*
|
||||
Package interop contains smart contract API functions.
|
||||
Package interop contains smart contract API functions and type synonyms.
|
||||
Its subpackages can be imported into smart contracts written in Go to provide
|
||||
various functionality. Upon compilation, functions from these packages will
|
||||
be substituted with appropriate NeoVM system calls implemented by Neo. Usually
|
||||
these system calls have additional price in NeoVM, so they're explicitly written
|
||||
in the documentation of respective functions.
|
||||
|
||||
Types defined here are used for proper manifest generation. Here is how Go types
|
||||
correspond to smartcontract and VM types:
|
||||
int-like - Integer
|
||||
bool - Boolean
|
||||
[]byte - ByteArray (Buffer in VM)
|
||||
string - String (ByteString in VM)
|
||||
(interface{})(nil) - Any
|
||||
non-byte slice - Array
|
||||
map[K]V - map
|
||||
Other types are defined explicitly in this pkg:
|
||||
Hash160, Hash256, InteropInterface, PublicKey, Signature
|
||||
|
||||
Note that unless written otherwise structures defined in this packages can't be
|
||||
correctly created by new() or composite literals, they should be received from
|
||||
some interop functions (and then used as parameters for some other interop
|
||||
|
|
|
@ -5,10 +5,12 @@ framework.
|
|||
*/
|
||||
package engine
|
||||
|
||||
import "github.com/nspcc-dev/neo-go/pkg/interop"
|
||||
|
||||
// AppCall executes previously deployed blockchain contract with specified hash
|
||||
// (160 bit in BE form represented as 20-byte slice) using provided arguments.
|
||||
// It returns whatever this contract returns. This function uses
|
||||
// `System.Contract.Call` syscall.
|
||||
func AppCall(scriptHash []byte, method string, args ...interface{}) interface{} {
|
||||
func AppCall(scriptHash interop.Hash160, method string, args ...interface{}) interface{} {
|
||||
return nil
|
||||
}
|
||||
|
|
|
@ -1,13 +1,16 @@
|
|||
package runtime
|
||||
|
||||
import "github.com/nspcc-dev/neo-go/pkg/interop/blockchain"
|
||||
import (
|
||||
"github.com/nspcc-dev/neo-go/pkg/interop"
|
||||
"github.com/nspcc-dev/neo-go/pkg/interop/blockchain"
|
||||
)
|
||||
|
||||
// GetScriptContainer returns the transaction that initially triggered current
|
||||
// execution context. It never changes in a single execution, no matter how deep
|
||||
// this execution goes. This function uses
|
||||
// `System.Runtime.GetScriptContainer` syscall.
|
||||
func GetScriptContainer() blockchain.Transaction {
|
||||
return blockchain.Transaction{}
|
||||
func GetScriptContainer() *blockchain.Transaction {
|
||||
return &blockchain.Transaction{}
|
||||
}
|
||||
|
||||
// GetExecutingScriptHash returns script hash (160 bit in BE form represented
|
||||
|
@ -15,7 +18,7 @@ func GetScriptContainer() blockchain.Transaction {
|
|||
// AppCall can change the value returned by this function if it calls a
|
||||
// different contract. This function uses
|
||||
// `System.Runtime.GetExecutingScriptHash` syscall.
|
||||
func GetExecutingScriptHash() []byte {
|
||||
func GetExecutingScriptHash() interop.Hash160 {
|
||||
return nil
|
||||
}
|
||||
|
||||
|
@ -24,7 +27,7 @@ func GetExecutingScriptHash() []byte {
|
|||
// running context (caller of current contract or function), so it's one level
|
||||
// above the GetExecutingScriptHash in the call stack. It uses
|
||||
// `System.Runtime.GetCallingScriptHash` syscall.
|
||||
func GetCallingScriptHash() []byte {
|
||||
func GetCallingScriptHash() interop.Hash160 {
|
||||
return nil
|
||||
}
|
||||
|
||||
|
@ -33,6 +36,6 @@ func GetCallingScriptHash() []byte {
|
|||
// (this is a script that is contained in a transaction returned by
|
||||
// GetScriptContainer) execution from the start. This function uses
|
||||
// `System.Runtime.GetEntryScriptHash` syscall.
|
||||
func GetEntryScriptHash() []byte {
|
||||
func GetEntryScriptHash() interop.Hash160 {
|
||||
return nil
|
||||
}
|
||||
|
|
|
@ -4,6 +4,8 @@ It has similar function to Runtime class in .net framwork for Neo.
|
|||
*/
|
||||
package runtime
|
||||
|
||||
import "github.com/nspcc-dev/neo-go/pkg/interop"
|
||||
|
||||
// Trigger values to compare with GetTrigger result.
|
||||
const (
|
||||
System byte = 0x01
|
||||
|
@ -60,7 +62,7 @@ func GasLeft() int64 {
|
|||
// 'nil' literal means no filtering. It returns slice consisting of following elements:
|
||||
// [ scripthash of notification's contract , emitted item ].
|
||||
// This function uses `System.Runtime.GetNotifications` syscall.
|
||||
func GetNotifications(h []byte) [][]interface{} {
|
||||
func GetNotifications(h interop.Hash160) [][]interface{} {
|
||||
return nil
|
||||
}
|
||||
|
||||
|
|
17
pkg/interop/types.go
Normal file
17
pkg/interop/types.go
Normal file
|
@ -0,0 +1,17 @@
|
|||
package interop
|
||||
|
||||
// Signature represents 64-byte signature.
|
||||
type Signature []byte
|
||||
|
||||
// Hash160 represents 20-byte hash.
|
||||
type Hash160 []byte
|
||||
|
||||
// Hash256 represents 32-byte hash.
|
||||
type Hash256 []byte
|
||||
|
||||
// PublicKey represents marshalled ecdsa public key.
|
||||
type PublicKey []byte
|
||||
|
||||
// Interface represents interop interface type which is needed for
|
||||
// transparent handling of VM-internal types (e.g. storage.Context)
|
||||
type Interface interface{}
|
|
@ -3,11 +3,13 @@ Package util contains some special useful functions that are provided by compile
|
|||
*/
|
||||
package util
|
||||
|
||||
import "github.com/nspcc-dev/neo-go/pkg/interop"
|
||||
|
||||
// FromAddress is an utility function that converts a Neo address to its hash
|
||||
// (160 bit BE value in a 20 byte slice). It can only be used for strings known
|
||||
// at compilation time, because the conversion is actually being done by the
|
||||
// compiler.
|
||||
func FromAddress(address string) []byte {
|
||||
func FromAddress(address string) interop.Hash160 {
|
||||
return nil
|
||||
}
|
||||
|
||||
|
|
Loading…
Reference in a new issue