github.com/core-coin/go-core/v2@v2.1.9/accounts/abi/event_test.go (about) 1 // Copyright 2016 by the Authors 2 // This file is part of the go-core library. 3 // 4 // The go-core library is free software: you can redistribute it and/or modify 5 // it under the terms of the GNU Lesser General Public License as published by 6 // the Free Software Foundation, either version 3 of the License, or 7 // (at your option) any later version. 8 // 9 // The go-core library is distributed in the hope that it will be useful, 10 // but WITHOUT ANY WARRANTY; without even the implied warranty of 11 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 12 // GNU Lesser General Public License for more details. 13 // 14 // You should have received a copy of the GNU Lesser General Public License 15 // along with the go-core library. If not, see <http://www.gnu.org/licenses/>. 16 17 package abi 18 19 import ( 20 "bytes" 21 "encoding/hex" 22 "encoding/json" 23 "math/big" 24 "reflect" 25 "strings" 26 "testing" 27 28 "github.com/stretchr/testify/assert" 29 "github.com/stretchr/testify/require" 30 31 "github.com/core-coin/go-core/v2/common" 32 "github.com/core-coin/go-core/v2/crypto" 33 ) 34 35 var jsonEventTransfer = []byte(`{ 36 "anonymous": false, 37 "inputs": [ 38 { 39 "indexed": true, "name": "from", "type": "address" 40 }, { 41 "indexed": true, "name": "to", "type": "address" 42 }, { 43 "indexed": false, "name": "value", "type": "uint256" 44 }], 45 "name": "Transfer", 46 "type": "event" 47 }`) 48 49 var jsonEventPledge = []byte(`{ 50 "anonymous": false, 51 "inputs": [{ 52 "indexed": false, "name": "who", "type": "address" 53 }, { 54 "indexed": false, "name": "wad", "type": "uint128" 55 }, { 56 "indexed": false, "name": "currency", "type": "bytes3" 57 }], 58 "name": "Pledge", 59 "type": "event" 60 }`) 61 62 var jsonEventMixedCase = []byte(`{ 63 "anonymous": false, 64 "inputs": [{ 65 "indexed": false, "name": "value", "type": "uint256" 66 }, { 67 "indexed": false, "name": "_value", "type": "uint256" 68 }, { 69 "indexed": false, "name": "Value", "type": "uint256" 70 }], 71 "name": "MixedCase", 72 "type": "event" 73 }`) 74 75 // 1000000 76 var transferData1 = "00000000000000000000000000000000000000000000000000000000000f4240" 77 78 // "cb6000ce0d46d924cc8437c806721496599fc3ffa268", 2218516807680, "usd" 79 var pledgeData1 = "00000000000000000000cb6000ce0d46d924cc8437c806721496599fc3ffa2680000000000000000000000000000000000000000000000000000020489e800007573640000000000000000000000000000000000000000000000000000000000" 80 81 // 1000000,2218516807680,1000001 82 var mixedCaseData1 = "00000000000000000000000000000000000000000000000000000000000f42400000000000000000000000000000000000000000000000000000020489e8000000000000000000000000000000000000000000000000000000000000000f4241" 83 84 func TestEventId(t *testing.T) { 85 var table = []struct { 86 definition string 87 expectations map[string]common.Hash 88 }{ 89 { 90 definition: `[ 91 { "type" : "event", "name" : "Balance", "inputs": [{ "name" : "in", "type": "uint256" }] }, 92 { "type" : "event", "name" : "Check", "inputs": [{ "name" : "t", "type": "address" }, { "name": "b", "type": "uint256" }] } 93 ]`, 94 expectations: map[string]common.Hash{ 95 "Balance": crypto.SHA3Hash([]byte("Balance(uint256)")), 96 "Check": crypto.SHA3Hash([]byte("Check(address,uint256)")), 97 }, 98 }, 99 } 100 101 for _, test := range table { 102 abi, err := JSON(strings.NewReader(test.definition)) 103 if err != nil { 104 t.Fatal(err) 105 } 106 107 for name, event := range abi.Events { 108 if event.ID != test.expectations[name] { 109 t.Errorf("expected id to be %x, got %x", test.expectations[name], event.ID) 110 } 111 } 112 } 113 } 114 115 func TestEventString(t *testing.T) { 116 var table = []struct { 117 definition string 118 expectations map[string]string 119 }{ 120 { 121 definition: `[ 122 { "type" : "event", "name" : "Balance", "inputs": [{ "name" : "in", "type": "uint256" }] }, 123 { "type" : "event", "name" : "Check", "inputs": [{ "name" : "t", "type": "address" }, { "name": "b", "type": "uint256" }] }, 124 { "type" : "event", "name" : "Transfer", "inputs": [{ "name": "from", "type": "address", "indexed": true }, { "name": "to", "type": "address", "indexed": true }, { "name": "value", "type": "uint256" }] } 125 ]`, 126 expectations: map[string]string{ 127 "Balance": "event Balance(uint256 in)", 128 "Check": "event Check(address t, uint256 b)", 129 "Transfer": "event Transfer(address indexed from, address indexed to, uint256 value)", 130 }, 131 }, 132 } 133 134 for _, test := range table { 135 abi, err := JSON(strings.NewReader(test.definition)) 136 if err != nil { 137 t.Fatal(err) 138 } 139 140 for name, event := range abi.Events { 141 if event.String() != test.expectations[name] { 142 t.Errorf("expected string to be %s, got %s", test.expectations[name], event.String()) 143 } 144 } 145 } 146 } 147 148 // TestEventMultiValueWithArrayUnpack verifies that array fields will be counted after parsing array. 149 func TestEventMultiValueWithArrayUnpack(t *testing.T) { 150 definition := `[{"name": "test", "type": "event", "inputs": [{"indexed": false, "name":"value1", "type":"uint8[2]"},{"indexed": false, "name":"value2", "type":"uint8"}]}]` 151 abi, err := JSON(strings.NewReader(definition)) 152 require.NoError(t, err) 153 var b bytes.Buffer 154 var i uint8 = 1 155 for ; i <= 3; i++ { 156 b.Write(packNum(reflect.ValueOf(i))) 157 } 158 unpacked, err := abi.Unpack("test", b.Bytes()) 159 require.NoError(t, err) 160 require.Equal(t, [2]uint8{1, 2}, unpacked[0]) 161 require.Equal(t, uint8(3), unpacked[1]) 162 } 163 164 func TestEventTupleUnpack(t *testing.T) { 165 166 type EventTransfer struct { 167 Value *big.Int 168 } 169 170 type EventTransferWithTag struct { 171 // this is valid because `value` is not exportable, 172 // so value is only unmarshalled into `Value1`. 173 value *big.Int //lint:ignore U1000 unused field is part of test 174 Value1 *big.Int `abi:"value"` 175 } 176 177 type BadEventTransferWithSameFieldAndTag struct { 178 Value *big.Int 179 Value1 *big.Int `abi:"value"` 180 } 181 182 type BadEventTransferWithDuplicatedTag struct { 183 Value1 *big.Int `abi:"value"` 184 Value2 *big.Int `abi:"value"` 185 } 186 187 type BadEventTransferWithEmptyTag struct { 188 Value *big.Int `abi:""` 189 } 190 191 type EventPledge struct { 192 Who common.Address 193 Wad *big.Int 194 Currency [3]byte 195 } 196 197 type BadEventPledge struct { 198 Who string 199 Wad int 200 Currency [3]byte 201 } 202 203 type EventMixedCase struct { 204 Value1 *big.Int `abi:"value"` 205 Value2 *big.Int `abi:"_value"` 206 Value3 *big.Int `abi:"Value"` 207 } 208 209 bigint := new(big.Int) 210 bigintExpected := big.NewInt(1000000) 211 bigintExpected2 := big.NewInt(2218516807680) 212 bigintExpected3 := big.NewInt(1000001) 213 addr, err := common.HexToAddress("cb6000ce0d46d924cc8437c806721496599fc3ffa268") 214 if err != nil { 215 t.Error(err) 216 } 217 var testCases = []struct { 218 data string 219 dest interface{} 220 expected interface{} 221 jsonLog []byte 222 error string 223 name string 224 }{{ 225 transferData1, 226 &EventTransfer{}, 227 &EventTransfer{Value: bigintExpected}, 228 jsonEventTransfer, 229 "", 230 "Can unpack CRC20 Transfer event into structure", 231 }, { 232 transferData1, 233 &[]interface{}{&bigint}, 234 &[]interface{}{&bigintExpected}, 235 jsonEventTransfer, 236 "", 237 "Can unpack CRC20 Transfer event into slice", 238 }, { 239 transferData1, 240 &EventTransferWithTag{}, 241 &EventTransferWithTag{Value1: bigintExpected}, 242 jsonEventTransfer, 243 "", 244 "Can unpack CRC20 Transfer event into structure with abi: tag", 245 }, { 246 transferData1, 247 &BadEventTransferWithDuplicatedTag{}, 248 &BadEventTransferWithDuplicatedTag{}, 249 jsonEventTransfer, 250 "struct: abi tag in 'Value2' already mapped", 251 "Can not unpack CRC20 Transfer event with duplicated abi tag", 252 }, { 253 transferData1, 254 &BadEventTransferWithSameFieldAndTag{}, 255 &BadEventTransferWithSameFieldAndTag{}, 256 jsonEventTransfer, 257 "abi: multiple variables maps to the same abi field 'value'", 258 "Can not unpack CRC20 Transfer event with a field and a tag mapping to the same abi variable", 259 }, { 260 transferData1, 261 &BadEventTransferWithEmptyTag{}, 262 &BadEventTransferWithEmptyTag{}, 263 jsonEventTransfer, 264 "struct: abi tag in 'Value' is empty", 265 "Can not unpack CRC20 Transfer event with an empty tag", 266 }, { 267 pledgeData1, 268 &EventPledge{}, 269 &EventPledge{ 270 addr, 271 bigintExpected2, 272 [3]byte{'u', 's', 'd'}}, 273 jsonEventPledge, 274 "", 275 "Can unpack Pledge event into structure", 276 }, { 277 pledgeData1, 278 &[]interface{}{&common.Address{}, &bigint, &[3]byte{}}, 279 &[]interface{}{ 280 &addr, 281 &bigintExpected2, 282 &[3]byte{'u', 's', 'd'}}, 283 jsonEventPledge, 284 "", 285 "Can unpack Pledge event into slice", 286 }, { 287 pledgeData1, 288 &[3]interface{}{&common.Address{}, &bigint, &[3]byte{}}, 289 &[3]interface{}{ 290 &addr, 291 &bigintExpected2, 292 &[3]byte{'u', 's', 'd'}}, 293 jsonEventPledge, 294 "", 295 "Can unpack Pledge event into an array", 296 }, { 297 pledgeData1, 298 &[]interface{}{new(int), 0, 0}, 299 &[]interface{}{}, 300 jsonEventPledge, 301 "abi: cannot unmarshal common.Address in to int", 302 "Can not unpack Pledge event into slice with wrong types", 303 }, { 304 pledgeData1, 305 &BadEventPledge{}, 306 &BadEventPledge{}, 307 jsonEventPledge, 308 "abi: cannot unmarshal common.Address in to string", 309 "Can not unpack Pledge event into struct with wrong filed types", 310 }, { 311 pledgeData1, 312 &[]interface{}{common.Address{}, new(big.Int)}, 313 &[]interface{}{}, 314 jsonEventPledge, 315 "abi: insufficient number of arguments for unpack, want 3, got 2", 316 "Can not unpack Pledge event into too short slice", 317 }, { 318 pledgeData1, 319 new(map[string]interface{}), 320 &[]interface{}{}, 321 jsonEventPledge, 322 "abi:[2] cannot unmarshal tuple in to map[string]interface {}", 323 "Can not unpack Pledge event into map", 324 }, { 325 mixedCaseData1, 326 &EventMixedCase{}, 327 &EventMixedCase{Value1: bigintExpected, Value2: bigintExpected2, Value3: bigintExpected3}, 328 jsonEventMixedCase, 329 "", 330 "Can unpack abi variables with mixed case", 331 }} 332 333 for _, tc := range testCases { 334 assert := assert.New(t) 335 tc := tc 336 t.Run(tc.name, func(t *testing.T) { 337 err := unpackTestEventData(tc.dest, tc.data, tc.jsonLog, assert) 338 if tc.error == "" { 339 assert.Nil(err, "Should be able to unpack event data.") 340 assert.Equal(tc.expected, tc.dest, tc.name) 341 } else { 342 assert.EqualError(err, tc.error, tc.name) 343 } 344 }) 345 } 346 } 347 348 func unpackTestEventData(dest interface{}, hexData string, jsonEvent []byte, assert *assert.Assertions) error { 349 data, err := hex.DecodeString(hexData) 350 assert.NoError(err, "Hex data should be a correct hex-string") 351 var e Event 352 assert.NoError(json.Unmarshal(jsonEvent, &e), "Should be able to unmarshal event ABI") 353 a := ABI{Events: map[string]Event{"e": e}} 354 return a.UnpackIntoInterface(dest, "e", data) 355 } 356 357 // TestEventUnpackIndexed verifies that indexed field will be skipped by event decoder. 358 func TestEventUnpackIndexed(t *testing.T) { 359 definition := `[{"name": "test", "type": "event", "inputs": [{"indexed": true, "name":"value1", "type":"uint8"},{"indexed": false, "name":"value2", "type":"uint8"}]}]` 360 type testStruct struct { 361 Value1 uint8 // indexed 362 Value2 uint8 363 } 364 abi, err := JSON(strings.NewReader(definition)) 365 require.NoError(t, err) 366 var b bytes.Buffer 367 b.Write(packNum(reflect.ValueOf(uint8(8)))) 368 var rst testStruct 369 require.NoError(t, abi.UnpackIntoInterface(&rst, "test", b.Bytes())) 370 require.Equal(t, uint8(0), rst.Value1) 371 require.Equal(t, uint8(8), rst.Value2) 372 } 373 374 // TestEventIndexedWithArrayUnpack verifies that decoder will not overflow when static array is indexed input. 375 func TestEventIndexedWithArrayUnpack(t *testing.T) { 376 definition := `[{"name": "test", "type": "event", "inputs": [{"indexed": true, "name":"value1", "type":"uint8[2]"},{"indexed": false, "name":"value2", "type":"string"}]}]` 377 type testStruct struct { 378 Value1 [2]uint8 // indexed 379 Value2 string 380 } 381 abi, err := JSON(strings.NewReader(definition)) 382 require.NoError(t, err) 383 var b bytes.Buffer 384 stringOut := "abc" 385 // number of fields that will be encoded * 32 386 b.Write(packNum(reflect.ValueOf(32))) 387 b.Write(packNum(reflect.ValueOf(len(stringOut)))) 388 b.Write(common.RightPadBytes([]byte(stringOut), 32)) 389 390 var rst testStruct 391 require.NoError(t, abi.UnpackIntoInterface(&rst, "test", b.Bytes())) 392 require.Equal(t, [2]uint8{0, 0}, rst.Value1) 393 require.Equal(t, stringOut, rst.Value2) 394 }