mirror of
https://github.com/nspcc-dev/neo-go.git
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115919aaf7
The only usecase for this opcode is single-byte verification scripts.
250 lines
6 KiB
Go
250 lines
6 KiB
Go
package vm
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import (
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"encoding/binary"
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"errors"
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"math/big"
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"github.com/nspcc-dev/neo-go/pkg/crypto/hash"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"github.com/nspcc-dev/neo-go/pkg/vm/opcode"
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)
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// Context represents the current execution context of the VM.
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type Context struct {
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// Instruction pointer.
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ip int
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// The next instruction pointer.
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nextip int
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// The raw program script.
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prog []byte
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// Breakpoints.
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breakPoints []int
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// Return value count, -1 is unspecified.
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rvcount int
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// Evaluation stack pointer.
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estack *Stack
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// Alt stack pointer.
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astack *Stack
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// Script hash of the prog.
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scriptHash util.Uint160
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// Whether it's allowed to make dynamic calls from this context.
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hasDynamicInvoke bool
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}
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var errNoInstParam = errors.New("failed to read instruction parameter")
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// NewContext returns a new Context object.
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func NewContext(b []byte) *Context {
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return &Context{
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prog: b,
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breakPoints: []int{},
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rvcount: -1,
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}
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}
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// NextIP returns next instruction pointer.
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func (c *Context) NextIP() int {
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return c.nextip
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}
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// Next returns the next instruction to execute with its parameter if any. After
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// its invocation the instruction pointer points to the instruction being
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// returned.
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func (c *Context) Next() (opcode.Opcode, []byte, error) {
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var err error
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c.ip = c.nextip
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if c.ip >= len(c.prog) {
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return opcode.RET, nil, nil
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}
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var instrbyte = c.prog[c.ip]
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instr := opcode.Opcode(instrbyte)
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c.nextip++
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var numtoread int
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switch instr {
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case opcode.OLDPUSH1:
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// OLDPUSH1 is used during transition to NEO3 in verification scripts.
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// FIXME remove #927
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if len(c.prog) == 1 {
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return opcode.PUSH1, nil, nil
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}
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case opcode.PUSHDATA1:
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if c.nextip >= len(c.prog) {
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err = errNoInstParam
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} else {
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numtoread = int(c.prog[c.nextip])
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c.nextip++
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}
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case opcode.PUSHDATA2:
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if c.nextip+1 >= len(c.prog) {
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err = errNoInstParam
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} else {
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numtoread = int(binary.LittleEndian.Uint16(c.prog[c.nextip : c.nextip+2]))
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c.nextip += 2
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}
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case opcode.PUSHDATA4:
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if c.nextip+3 >= len(c.prog) {
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err = errNoInstParam
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} else {
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var n = binary.LittleEndian.Uint32(c.prog[c.nextip : c.nextip+4])
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if n > MaxItemSize {
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return instr, nil, errors.New("parameter is too big")
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}
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numtoread = int(n)
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c.nextip += 4
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}
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case opcode.JMP, opcode.JMPIF, opcode.JMPIFNOT, opcode.JMPEQ, opcode.JMPNE,
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opcode.JMPGT, opcode.JMPGE, opcode.JMPLT, opcode.JMPLE,
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opcode.CALL, opcode.ISTYPE, opcode.CONVERT, opcode.NEWARRAYT:
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numtoread = 1
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case opcode.JMPL, opcode.JMPIFL, opcode.JMPIFNOTL, opcode.JMPEQL, opcode.JMPNEL,
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opcode.JMPGTL, opcode.JMPGEL, opcode.JMPLTL, opcode.JMPLEL,
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opcode.CALLL, opcode.SYSCALL:
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numtoread = 4
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case opcode.APPCALL, opcode.TAILCALL:
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numtoread = 20
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default:
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if instr <= opcode.PUSHINT256 {
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numtoread = 1 << instr
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} else {
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// No parameters, can just return.
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return instr, nil, nil
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}
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}
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if c.nextip+numtoread-1 >= len(c.prog) {
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err = errNoInstParam
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}
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if err != nil {
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return instr, nil, err
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}
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parameter := make([]byte, numtoread)
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copy(parameter, c.prog[c.nextip:c.nextip+numtoread])
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c.nextip += numtoread
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return instr, parameter, nil
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}
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// IP returns the absolute instruction without taking 0 into account.
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// If that program starts the ip = 0 but IP() will return 1, cause its
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// the first instruction.
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func (c *Context) IP() int {
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return c.ip + 1
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}
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// LenInstr returns the number of instructions loaded.
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func (c *Context) LenInstr() int {
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return len(c.prog)
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}
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// CurrInstr returns the current instruction and opcode.
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func (c *Context) CurrInstr() (int, opcode.Opcode) {
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return c.ip, opcode.Opcode(c.prog[c.ip])
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}
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// Copy returns an new exact copy of c.
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func (c *Context) Copy() *Context {
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ctx := new(Context)
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*ctx = *c
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return ctx
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}
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// Program returns the loaded program.
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func (c *Context) Program() []byte {
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return c.prog
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}
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// ScriptHash returns a hash of the script in the current context.
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func (c *Context) ScriptHash() util.Uint160 {
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if c.scriptHash.Equals(util.Uint160{}) {
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c.scriptHash = hash.Hash160(c.prog)
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}
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return c.scriptHash
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}
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// Value implements StackItem interface.
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func (c *Context) Value() interface{} {
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return c
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}
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// Dup implements StackItem interface.
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func (c *Context) Dup() StackItem {
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return c
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}
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// Bool implements StackItem interface.
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func (c *Context) Bool() bool { panic("can't convert Context to Bool") }
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// TryBytes implements StackItem interface.
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func (c *Context) TryBytes() ([]byte, error) {
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return nil, errors.New("can't convert Context to ByteArray")
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}
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// TryInteger implements StackItem interface.
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func (c *Context) TryInteger() (*big.Int, error) {
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return nil, errors.New("can't convert Context to Integer")
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}
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// Type implements StackItem interface.
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func (c *Context) Type() StackItemType { panic("Context cannot appear on evaluation stack") }
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// Convert implements StackItem interface.
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func (c *Context) Convert(_ StackItemType) (StackItem, error) {
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panic("Context cannot be converted to anything")
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}
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// Equals implements StackItem interface.
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func (c *Context) Equals(s StackItem) bool {
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return c == s
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}
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// ToContractParameter implements StackItem interface.
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func (c *Context) ToContractParameter(map[StackItem]bool) smartcontract.Parameter {
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return smartcontract.Parameter{
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Type: smartcontract.StringType,
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Value: c.String(),
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}
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}
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func (c *Context) atBreakPoint() bool {
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for _, n := range c.breakPoints {
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if n == c.ip {
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return true
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}
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}
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return false
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}
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func (c *Context) String() string {
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return "execution context"
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}
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// getContextScriptHash returns script hash of the invocation stack element
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// number n.
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func (v *VM) getContextScriptHash(n int) util.Uint160 {
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element := v.Istack().Peek(n)
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if element == nil {
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return util.Uint160{}
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}
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ctxIface := element.Value()
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ctx := ctxIface.(*Context)
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return ctx.ScriptHash()
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}
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// PushContextScriptHash pushes to evaluation stack the script hash of the
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// invocation stack element number n.
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func (v *VM) PushContextScriptHash(n int) error {
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h := v.getContextScriptHash(n)
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v.Estack().PushVal(h.BytesBE())
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return nil
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}
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