json.go 8.26 KB
Newer Older
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
// Copyright 2016 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.

package hexutil

import (
	"encoding/hex"
21
	"encoding/json"
22 23
	"fmt"
	"math/big"
24
	"reflect"
25 26 27 28
	"strconv"
)

var (
29 30 31 32
	bytesT  = reflect.TypeOf(Bytes(nil))
	bigT    = reflect.TypeOf((*Big)(nil))
	uintT   = reflect.TypeOf(Uint(0))
	uint64T = reflect.TypeOf(Uint64(0))
33 34 35 36 37 38
)

// Bytes marshals/unmarshals as a JSON string with 0x prefix.
// The empty slice marshals as "0x".
type Bytes []byte

39 40 41 42 43
// MarshalText implements encoding.TextMarshaler
func (b Bytes) MarshalText() ([]byte, error) {
	result := make([]byte, len(b)*2+2)
	copy(result, `0x`)
	hex.Encode(result[2:], b)
44 45 46 47 48
	return result, nil
}

// UnmarshalJSON implements json.Unmarshaler.
func (b *Bytes) UnmarshalJSON(input []byte) error {
49
	if !isString(input) {
50
		return errNonString(bytesT)
51
	}
52
	return wrapTypeError(b.UnmarshalText(input[1:len(input)-1]), bytesT)
53 54 55 56
}

// UnmarshalText implements encoding.TextUnmarshaler.
func (b *Bytes) UnmarshalText(input []byte) error {
57
	raw, err := checkText(input, true)
58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74
	if err != nil {
		return err
	}
	dec := make([]byte, len(raw)/2)
	if _, err = hex.Decode(dec, raw); err != nil {
		err = mapError(err)
	} else {
		*b = dec
	}
	return err
}

// String returns the hex encoding of b.
func (b Bytes) String() string {
	return Encode(b)
}

75 76 77 78 79 80 81 82 83 84
// UnmarshalFixedJSON decodes the input as a string with 0x prefix. The length of out
// determines the required input length. This function is commonly used to implement the
// UnmarshalJSON method for fixed-size types.
func UnmarshalFixedJSON(typ reflect.Type, input, out []byte) error {
	if !isString(input) {
		return errNonString(typ)
	}
	return wrapTypeError(UnmarshalFixedText(typ.String(), input[1:len(input)-1], out), typ)
}

85
// UnmarshalFixedText decodes the input as a string with 0x prefix. The length of out
86
// determines the required input length. This function is commonly used to implement the
87 88
// UnmarshalText method for fixed-size types.
func UnmarshalFixedText(typname string, input, out []byte) error {
89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110
	raw, err := checkText(input, true)
	if err != nil {
		return err
	}
	if len(raw)/2 != len(out) {
		return fmt.Errorf("hex string has length %d, want %d for %s", len(raw), len(out)*2, typname)
	}
	// Pre-verify syntax before modifying out.
	for _, b := range raw {
		if decodeNibble(b) == badNibble {
			return ErrSyntax
		}
	}
	hex.Decode(out, raw)
	return nil
}

// UnmarshalFixedUnprefixedText decodes the input as a string with optional 0x prefix. The
// length of out determines the required input length. This function is commonly used to
// implement the UnmarshalText method for fixed-size types.
func UnmarshalFixedUnprefixedText(typname string, input, out []byte) error {
	raw, err := checkText(input, false)
111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126
	if err != nil {
		return err
	}
	if len(raw)/2 != len(out) {
		return fmt.Errorf("hex string has length %d, want %d for %s", len(raw), len(out)*2, typname)
	}
	// Pre-verify syntax before modifying out.
	for _, b := range raw {
		if decodeNibble(b) == badNibble {
			return ErrSyntax
		}
	}
	hex.Decode(out, raw)
	return nil
}

127 128 129 130 131 132
// Big marshals/unmarshals as a JSON string with 0x prefix.
// The zero value marshals as "0x0".
//
// Negative integers are not supported at this time. Attempting to marshal them will
// return an error. Values larger than 256bits are rejected by Unmarshal but will be
// marshaled without error.
133 134
type Big big.Int

135 136
// MarshalText implements encoding.TextMarshaler
func (b Big) MarshalText() ([]byte, error) {
137
	return []byte(EncodeBig((*big.Int)(&b))), nil
138 139 140 141
}

// UnmarshalJSON implements json.Unmarshaler.
func (b *Big) UnmarshalJSON(input []byte) error {
142
	if !isString(input) {
143
		return errNonString(bigT)
144
	}
145
	return wrapTypeError(b.UnmarshalText(input[1:len(input)-1]), bigT)
146 147 148 149 150
}

// UnmarshalText implements encoding.TextUnmarshaler
func (b *Big) UnmarshalText(input []byte) error {
	raw, err := checkNumberText(input)
151 152 153
	if err != nil {
		return err
	}
154 155 156
	if len(raw) > 64 {
		return ErrBig256Range
	}
157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193
	words := make([]big.Word, len(raw)/bigWordNibbles+1)
	end := len(raw)
	for i := range words {
		start := end - bigWordNibbles
		if start < 0 {
			start = 0
		}
		for ri := start; ri < end; ri++ {
			nib := decodeNibble(raw[ri])
			if nib == badNibble {
				return ErrSyntax
			}
			words[i] *= 16
			words[i] += big.Word(nib)
		}
		end = start
	}
	var dec big.Int
	dec.SetBits(words)
	*b = (Big)(dec)
	return nil
}

// ToInt converts b to a big.Int.
func (b *Big) ToInt() *big.Int {
	return (*big.Int)(b)
}

// String returns the hex encoding of b.
func (b *Big) String() string {
	return EncodeBig(b.ToInt())
}

// Uint64 marshals/unmarshals as a JSON string with 0x prefix.
// The zero value marshals as "0x0".
type Uint64 uint64

194 195 196 197
// MarshalText implements encoding.TextMarshaler.
func (b Uint64) MarshalText() ([]byte, error) {
	buf := make([]byte, 2, 10)
	copy(buf, `0x`)
198 199 200 201 202 203
	buf = strconv.AppendUint(buf, uint64(b), 16)
	return buf, nil
}

// UnmarshalJSON implements json.Unmarshaler.
func (b *Uint64) UnmarshalJSON(input []byte) error {
204
	if !isString(input) {
205
		return errNonString(uint64T)
206
	}
207
	return wrapTypeError(b.UnmarshalText(input[1:len(input)-1]), uint64T)
208 209 210 211 212
}

// UnmarshalText implements encoding.TextUnmarshaler
func (b *Uint64) UnmarshalText(input []byte) error {
	raw, err := checkNumberText(input)
213 214 215 216 217 218 219 220 221 222 223 224 225
	if err != nil {
		return err
	}
	if len(raw) > 16 {
		return ErrUint64Range
	}
	var dec uint64
	for _, byte := range raw {
		nib := decodeNibble(byte)
		if nib == badNibble {
			return ErrSyntax
		}
		dec *= 16
226
		dec += nib
227 228 229 230 231 232 233 234 235 236 237 238 239 240
	}
	*b = Uint64(dec)
	return nil
}

// String returns the hex encoding of b.
func (b Uint64) String() string {
	return EncodeUint64(uint64(b))
}

// Uint marshals/unmarshals as a JSON string with 0x prefix.
// The zero value marshals as "0x0".
type Uint uint

241 242 243
// MarshalText implements encoding.TextMarshaler.
func (b Uint) MarshalText() ([]byte, error) {
	return Uint64(b).MarshalText()
244 245 246 247
}

// UnmarshalJSON implements json.Unmarshaler.
func (b *Uint) UnmarshalJSON(input []byte) error {
248
	if !isString(input) {
249
		return errNonString(uintT)
250
	}
251
	return wrapTypeError(b.UnmarshalText(input[1:len(input)-1]), uintT)
252 253 254 255
}

// UnmarshalText implements encoding.TextUnmarshaler.
func (b *Uint) UnmarshalText(input []byte) error {
256
	var u64 Uint64
257 258
	err := u64.UnmarshalText(input)
	if u64 > Uint64(^uint(0)) || err == ErrUint64Range {
259
		return ErrUintRange
260 261
	} else if err != nil {
		return err
262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279
	}
	*b = Uint(u64)
	return nil
}

// String returns the hex encoding of b.
func (b Uint) String() string {
	return EncodeUint64(uint64(b))
}

func isString(input []byte) bool {
	return len(input) >= 2 && input[0] == '"' && input[len(input)-1] == '"'
}

func bytesHave0xPrefix(input []byte) bool {
	return len(input) >= 2 && input[0] == '0' && (input[1] == 'x' || input[1] == 'X')
}

280
func checkText(input []byte, wantPrefix bool) ([]byte, error) {
281
	if len(input) == 0 {
282
		return nil, nil // empty strings are allowed
283
	}
284 285 286
	if bytesHave0xPrefix(input) {
		input = input[2:]
	} else if wantPrefix {
287 288 289 290 291 292 293 294
		return nil, ErrMissingPrefix
	}
	if len(input)%2 != 0 {
		return nil, ErrOddLength
	}
	return input, nil
}

295
func checkNumberText(input []byte) (raw []byte, err error) {
296
	if len(input) == 0 {
297
		return nil, nil // empty strings are allowed
298 299 300 301 302 303 304 305 306 307 308 309 310
	}
	if !bytesHave0xPrefix(input) {
		return nil, ErrMissingPrefix
	}
	input = input[2:]
	if len(input) == 0 {
		return nil, ErrEmptyNumber
	}
	if len(input) > 1 && input[0] == '0' {
		return nil, ErrLeadingZero
	}
	return input, nil
}
311 312 313 314 315 316 317 318 319 320 321

func wrapTypeError(err error, typ reflect.Type) error {
	if _, ok := err.(*decError); ok {
		return &json.UnmarshalTypeError{Value: err.Error(), Type: typ}
	}
	return err
}

func errNonString(typ reflect.Type) error {
	return &json.UnmarshalTypeError{Value: "non-string", Type: typ}
}