common: fixes with gofmt for travisCI build

This commit is contained in:
Kiel barry 2018-05-07 16:08:50 -07:00
parent 6cf0ab38bd
commit a570060a1b
3 changed files with 53 additions and 19 deletions

View file

@ -19,6 +19,7 @@ package common
import "encoding/hex" import "encoding/hex"
// ToHex returns string representation of b and either prepends '0x' or initializes value of '0'.
func ToHex(b []byte) string { func ToHex(b []byte) string {
hex := Bytes2Hex(b) hex := Bytes2Hex(b)
// Prefer output of "0x0" instead of "0x" // Prefer output of "0x0" instead of "0x"
@ -28,6 +29,7 @@ func ToHex(b []byte) string {
return "0x" + hex return "0x" + hex
} }
//FromHex returns bytes of s after removing prefix, or prepends 0 if s has odd length.
func FromHex(s string) []byte { func FromHex(s string) []byte {
if len(s) > 1 { if len(s) > 1 {
if s[0:2] == "0x" || s[0:2] == "0X" { if s[0:2] == "0x" || s[0:2] == "0X" {
@ -40,9 +42,7 @@ func FromHex(s string) []byte {
return Hex2Bytes(s) return Hex2Bytes(s)
} }
// Copy bytes // CopyBytes returns an exact copy of the provided bytes
//
// Returns an exact copy of the provided bytes
func CopyBytes(b []byte) (copiedBytes []byte) { func CopyBytes(b []byte) (copiedBytes []byte) {
if b == nil { if b == nil {
return nil return nil
@ -53,14 +53,17 @@ func CopyBytes(b []byte) (copiedBytes []byte) {
return return
} }
// hasHexPrefix validates str begins with '0x' or '0X'.
func hasHexPrefix(str string) bool { func hasHexPrefix(str string) bool {
return len(str) >= 2 && str[0] == '0' && (str[1] == 'x' || str[1] == 'X') return len(str) >= 2 && str[0] == '0' && (str[1] == 'x' || str[1] == 'X')
} }
// isHexCharacter returns bool of c being a valid hexadecimal.
func isHexCharacter(c byte) bool { func isHexCharacter(c byte) bool {
return ('0' <= c && c <= '9') || ('a' <= c && c <= 'f') || ('A' <= c && c <= 'F') return ('0' <= c && c <= '9') || ('a' <= c && c <= 'f') || ('A' <= c && c <= 'F')
} }
// isHex validates whether each byte is valid hexadecimal string.
func isHex(str string) bool { func isHex(str string) bool {
if len(str)%2 != 0 { if len(str)%2 != 0 {
return false return false
@ -73,16 +76,19 @@ func isHex(str string) bool {
return true return true
} }
//Bytes2Hex returns the hexadecimal encoding of d.
func Bytes2Hex(d []byte) string { func Bytes2Hex(d []byte) string {
return hex.EncodeToString(d) return hex.EncodeToString(d)
} }
// Hex2Bytes returns the bytes represented by the hexadecimal string str.
func Hex2Bytes(str string) []byte { func Hex2Bytes(str string) []byte {
h, _ := hex.DecodeString(str) h, _ := hex.DecodeString(str)
return h return h
} }
// Hex2BytesFixed returns bytes of a specified fixed length flen.
func Hex2BytesFixed(str string, flen int) []byte { func Hex2BytesFixed(str string, flen int) []byte {
h, _ := hex.DecodeString(str) h, _ := hex.DecodeString(str)
if len(h) == flen { if len(h) == flen {
@ -96,6 +102,7 @@ func Hex2BytesFixed(str string, flen int) []byte {
return hh return hh
} }
// RightPadBytes copies slice into a byte slice of length l.
func RightPadBytes(slice []byte, l int) []byte { func RightPadBytes(slice []byte, l int) []byte {
if l <= len(slice) { if l <= len(slice) {
return slice return slice
@ -107,6 +114,7 @@ func RightPadBytes(slice []byte, l int) []byte {
return padded return padded
} }
// LeftPadBytes copies via inverted index slice into a byte slice of length l.
func LeftPadBytes(slice []byte, l int) []byte { func LeftPadBytes(slice []byte, l int) []byte {
if l <= len(slice) { if l <= len(slice) {
return slice return slice

View file

@ -30,6 +30,7 @@ func MakeName(name, version string) string {
return fmt.Sprintf("%s/v%s/%s/%s", name, version, runtime.GOOS, runtime.Version()) return fmt.Sprintf("%s/v%s/%s/%s", name, version, runtime.GOOS, runtime.Version())
} }
// FileExist checks if a file exists at filePath and returns a bool.
func FileExist(filePath string) bool { func FileExist(filePath string) bool {
_, err := os.Stat(filePath) _, err := os.Stat(filePath)
if err != nil && os.IsNotExist(err) { if err != nil && os.IsNotExist(err) {
@ -39,6 +40,7 @@ func FileExist(filePath string) bool {
return true return true
} }
// AbsolutePath returns Datadir + filename, or filename if it is absolute.
func AbsolutePath(Datadir string, filename string) string { func AbsolutePath(Datadir string, filename string) string {
if filepath.IsAbs(filename) { if filepath.IsAbs(filename) {
return filename return filename

View file

@ -29,6 +29,7 @@ import (
"github.com/ethereum/go-ethereum/crypto/sha3" "github.com/ethereum/go-ethereum/crypto/sha3"
) )
// Sets global constants.
const ( const (
HashLength = 32 HashLength = 32
AddressLength = 20 AddressLength = 20
@ -42,19 +43,30 @@ var (
// Hash represents the 32 byte Keccak256 hash of arbitrary data. // Hash represents the 32 byte Keccak256 hash of arbitrary data.
type Hash [HashLength]byte type Hash [HashLength]byte
// BytesToHash sets b to hash. If b is larger than len(h), 'b' will be cropped (from the left).
func BytesToHash(b []byte) Hash { func BytesToHash(b []byte) Hash {
var h Hash var h Hash
h.SetBytes(b) h.SetBytes(b)
return h return h
} }
func BigToHash(b *big.Int) Hash { return BytesToHash(b.Bytes()) }
func HexToHash(s string) Hash { return BytesToHash(FromHex(s)) }
// Get the string representation of the underlying hash // BigToHash sets byte representation of b to hash. If b is larger than len(h), 'b' will be cropped (from the left).
func (h Hash) Str() string { return string(h[:]) } func BigToHash(b *big.Int) Hash { return BytesToHash(b.Bytes()) }
// HexToHash sets byte representation of s to hash. If b is larger than len(h), 'b' will be cropped (from the left).
func HexToHash(s string) Hash { return BytesToHash(FromHex(s)) }
// Str gets the string representation of the underlying hash.
func (h Hash) Str() string { return string(h[:]) }
// Bytes gets the byte representation of the underlying hash.
func (h Hash) Bytes() []byte { return h[:] } func (h Hash) Bytes() []byte { return h[:] }
// Big gets the big integer representation of the underlying hash.
func (h Hash) Big() *big.Int { return new(big.Int).SetBytes(h[:]) } func (h Hash) Big() *big.Int { return new(big.Int).SetBytes(h[:]) }
func (h Hash) Hex() string { return hexutil.Encode(h[:]) }
// Hex gets the hex representation of the underlying hash.
func (h Hash) Hex() string { return hexutil.Encode(h[:]) }
// TerminalString implements log.TerminalStringer, formatting a string for console // TerminalString implements log.TerminalStringer, formatting a string for console
// output during logging. // output during logging.
@ -89,7 +101,7 @@ func (h Hash) MarshalText() ([]byte, error) {
return hexutil.Bytes(h[:]).MarshalText() return hexutil.Bytes(h[:]).MarshalText()
} }
// Sets the hash to the value of b. If b is larger than len(h), 'b' will be cropped (from the left). // SetBytes sets the hash to the value of b. If b is larger than len(h), 'b' will be cropped (from the left).
func (h *Hash) SetBytes(b []byte) { func (h *Hash) SetBytes(b []byte) {
if len(b) > len(h) { if len(b) > len(h) {
b = b[len(b)-HashLength:] b = b[len(b)-HashLength:]
@ -98,10 +110,10 @@ func (h *Hash) SetBytes(b []byte) {
copy(h[HashLength-len(b):], b) copy(h[HashLength-len(b):], b)
} }
// Set string `s` to h. If s is larger than len(h) s will be cropped (from left) to fit. // SetString sets `s` to h. If s is larger than len(h) s will be cropped (from left) to fit.
func (h *Hash) SetString(s string) { h.SetBytes([]byte(s)) } func (h *Hash) SetString(s string) { h.SetBytes([]byte(s)) }
// Sets h to other // Set sets h to other
func (h *Hash) Set(other Hash) { func (h *Hash) Set(other Hash) {
for i, v := range other { for i, v := range other {
h[i] = v h[i] = v
@ -117,6 +129,7 @@ func (h Hash) Generate(rand *rand.Rand, size int) reflect.Value {
return reflect.ValueOf(h) return reflect.ValueOf(h)
} }
// EmptyHash clears h of values.
func EmptyHash(h Hash) bool { func EmptyHash(h Hash) bool {
return h == Hash{} return h == Hash{}
} }
@ -139,13 +152,18 @@ func (h UnprefixedHash) MarshalText() ([]byte, error) {
// Address represents the 20 byte address of an Ethereum account. // Address represents the 20 byte address of an Ethereum account.
type Address [AddressLength]byte type Address [AddressLength]byte
// BytesToAddress returns Address with value b. If b is larger than len(h), 'b' will be cropped (from the left).
func BytesToAddress(b []byte) Address { func BytesToAddress(b []byte) Address {
var a Address var a Address
a.SetBytes(b) a.SetBytes(b)
return a return a
} }
//BigToAddress returns Address with byte values of b. If b is larger than len(h), 'b' will be cropped (from the left).
func BigToAddress(b *big.Int) Address { return BytesToAddress(b.Bytes()) } func BigToAddress(b *big.Int) Address { return BytesToAddress(b.Bytes()) }
func HexToAddress(s string) Address { return BytesToAddress(FromHex(s)) }
//HexToAddress returns Address with byte values of s. If s is larger than len(h), 's' will be cropped (from the left).
func HexToAddress(s string) Address { return BytesToAddress(FromHex(s)) }
// IsHexAddress verifies whether a string can represent a valid hex-encoded // IsHexAddress verifies whether a string can represent a valid hex-encoded
// Ethereum address or not. // Ethereum address or not.
@ -156,11 +174,17 @@ func IsHexAddress(s string) bool {
return len(s) == 2*AddressLength && isHex(s) return len(s) == 2*AddressLength && isHex(s)
} }
// Get the string representation of the underlying address // Str gets the string representation of the underlying address.
func (a Address) Str() string { return string(a[:]) } func (a Address) Str() string { return string(a[:]) }
// Bytes gets the string representation of the underlying address.
func (a Address) Bytes() []byte { return a[:] } func (a Address) Bytes() []byte { return a[:] }
// Big gets the string representation of the underlying address.
func (a Address) Big() *big.Int { return new(big.Int).SetBytes(a[:]) } func (a Address) Big() *big.Int { return new(big.Int).SetBytes(a[:]) }
func (a Address) Hash() Hash { return BytesToHash(a[:]) }
// Hash gets the string representation of the underlying address.
func (a Address) Hash() Hash { return BytesToHash(a[:]) }
// Hex returns an EIP55-compliant hex string representation of the address. // Hex returns an EIP55-compliant hex string representation of the address.
func (a Address) Hex() string { func (a Address) Hex() string {
@ -195,7 +219,7 @@ func (a Address) Format(s fmt.State, c rune) {
fmt.Fprintf(s, "%"+string(c), a[:]) fmt.Fprintf(s, "%"+string(c), a[:])
} }
// Sets the address to the value of b. If b is larger than len(a) it will panic // SetBytes sets the address to the value of b. If b is larger than len(a) it will panic
func (a *Address) SetBytes(b []byte) { func (a *Address) SetBytes(b []byte) {
if len(b) > len(a) { if len(b) > len(a) {
b = b[len(b)-AddressLength:] b = b[len(b)-AddressLength:]
@ -203,10 +227,10 @@ func (a *Address) SetBytes(b []byte) {
copy(a[AddressLength-len(b):], b) copy(a[AddressLength-len(b):], b)
} }
// Set string `s` to a. If s is larger than len(a) it will panic // SetString sets `s` to a. If s is larger than len(a) it will panic
func (a *Address) SetString(s string) { a.SetBytes([]byte(s)) } func (a *Address) SetString(s string) { a.SetBytes([]byte(s)) }
// Sets a to other // Set sets a to other
func (a *Address) Set(other Address) { func (a *Address) Set(other Address) {
for i, v := range other { for i, v := range other {
a[i] = v a[i] = v
@ -228,7 +252,7 @@ func (a *Address) UnmarshalJSON(input []byte) error {
return hexutil.UnmarshalFixedJSON(addressT, input, a[:]) return hexutil.UnmarshalFixedJSON(addressT, input, a[:])
} }
// UnprefixedHash allows marshaling an Address without 0x prefix. // UnprefixedAddress allows marshaling an Address without 0x prefix.
type UnprefixedAddress Address type UnprefixedAddress Address
// UnmarshalText decodes the address from hex. The 0x prefix is optional. // UnmarshalText decodes the address from hex. The 0x prefix is optional.