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core/asm: use strings.Builder and fix godoc issues (#24861)
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@ -14,7 +14,7 @@
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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// Provides support for dealing with EVM assembly instructions (e.g., disassembling them).
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// Package asm provides support for dealing with EVM assembly instructions (e.g., disassembling them).
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package asm
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import (
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@ -34,14 +34,14 @@ type instructionIterator struct {
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started bool
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}
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// Create a new instruction iterator.
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// NewInstructionIterator create a new instruction iterator.
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func NewInstructionIterator(code []byte) *instructionIterator {
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it := new(instructionIterator)
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it.code = code
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return it
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}
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// Returns true if there is a next instruction and moves on.
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// Next returns true if there is a next instruction and moves on.
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func (it *instructionIterator) Next() bool {
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if it.error != nil || uint64(len(it.code)) <= it.pc {
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// We previously reached an error or the end.
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@ -79,27 +79,27 @@ func (it *instructionIterator) Next() bool {
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return true
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}
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// Returns any error that may have been encountered.
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// Error returns any error that may have been encountered.
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func (it *instructionIterator) Error() error {
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return it.error
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}
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// Returns the PC of the current instruction.
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// PC returns the PC of the current instruction.
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func (it *instructionIterator) PC() uint64 {
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return it.pc
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}
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// Returns the opcode of the current instruction.
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// Op returns the opcode of the current instruction.
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func (it *instructionIterator) Op() vm.OpCode {
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return it.op
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}
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// Returns the argument of the current instruction.
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// Arg returns the argument of the current instruction.
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func (it *instructionIterator) Arg() []byte {
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return it.arg
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}
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// Pretty-print all disassembled EVM instructions to stdout.
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// PrintDisassembled pretty-print all disassembled EVM instructions to stdout.
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func PrintDisassembled(code string) error {
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script, err := hex.DecodeString(code)
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if err != nil {
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@ -117,7 +117,7 @@ func PrintDisassembled(code string) error {
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return it.Error()
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}
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// Return all disassembled EVM instructions in human-readable format.
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// Disassemble returns all disassembled EVM instructions in human-readable format.
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func Disassemble(script []byte) ([]string, error) {
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instrs := make([]string, 0)
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@ -39,7 +39,7 @@ type Compiler struct {
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debug bool
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}
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// newCompiler returns a new allocated compiler.
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// NewCompiler returns a new allocated compiler.
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func NewCompiler(debug bool) *Compiler {
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return &Compiler{
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labels: make(map[string]int),
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@ -105,16 +105,16 @@ func (c *Compiler) Compile() (string, []error) {
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}
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// turn the binary to hex
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var bin string
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var bin strings.Builder
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for _, v := range c.binary {
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switch v := v.(type) {
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case vm.OpCode:
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bin += fmt.Sprintf("%x", []byte{byte(v)})
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bin.WriteString(fmt.Sprintf("%x", []byte{byte(v)}))
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case []byte:
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bin += fmt.Sprintf("%x", v)
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bin.WriteString(fmt.Sprintf("%x", v))
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}
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}
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return bin, errors
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return bin.String(), errors
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}
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// next returns the next token and increments the
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@ -93,7 +93,7 @@ type lexer struct {
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debug bool // flag for triggering debug output
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}
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// lex lexes the program by name with the given source. It returns a
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// Lex lexes the program by name with the given source. It returns a
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// channel on which the tokens are delivered.
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func Lex(source []byte, debug bool) <-chan token {
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ch := make(chan token)
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