├── LICENSE ├── Readme.md ├── example.hccap ├── main.go ├── vendor └── golang.org │ └── x │ └── crypto │ └── pbkdf2 │ ├── pbkdf2.go │ └── pbkdf2_test.go └── wifimaps-wordlist.txt /LICENSE: -------------------------------------------------------------------------------- 1 | GNU GENERAL PUBLIC LICENSE 2 | Version 3, 29 June 2007 3 | 4 | Copyright (C) 2007 Free Software Foundation, Inc. 5 | Everyone is permitted to copy and distribute verbatim copies 6 | of this license document, but changing it is not allowed. 7 | 8 | Preamble 9 | 10 | The GNU General Public License is a free, copyleft license for 11 | software and other kinds of works. 12 | 13 | The licenses for most software and other practical works are designed 14 | to take away your freedom to share and change the works. By contrast, 15 | the GNU General Public License is intended to guarantee your freedom to 16 | share and change all versions of a program--to make sure it remains free 17 | software for all its users. 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It is safest 630 | to attach them to the start of each source file to most effectively 631 | state the exclusion of warranty; and each file should have at least 632 | the "copyright" line and a pointer to where the full notice is found. 633 | 634 | {one line to give the program's name and a brief idea of what it does.} 635 | Copyright (C) {year} {name of author} 636 | 637 | This program is free software: you can redistribute it and/or modify 638 | it under the terms of the GNU General Public License as published by 639 | the Free Software Foundation, either version 3 of the License, or 640 | (at your option) any later version. 641 | 642 | This program is distributed in the hope that it will be useful, 643 | but WITHOUT ANY WARRANTY; without even the implied warranty of 644 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 645 | GNU General Public License for more details. 646 | 647 | You should have received a copy of the GNU General Public License 648 | along with this program. If not, see . 649 | 650 | Also add information on how to contact you by electronic and paper mail. 651 | 652 | If the program does terminal interaction, make it output a short 653 | notice like this when it starts in an interactive mode: 654 | 655 | {project} Copyright (C) {year} {fullname} 656 | This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'. 657 | This is free software, and you are welcome to redistribute it 658 | under certain conditions; type `show c' for details. 659 | 660 | The hypothetical commands `show w' and `show c' should show the appropriate 661 | parts of the General Public License. Of course, your program's commands 662 | might be different; for a GUI interface, you would use an "about box". 663 | 664 | You should also get your employer (if you work as a programmer) or school, 665 | if any, to sign a "copyright disclaimer" for the program, if necessary. 666 | For more information on this, and how to apply and follow the GNU GPL, see 667 | . 668 | 669 | The GNU General Public License does not permit incorporating your program 670 | into proprietary programs. If your program is a subroutine library, you 671 | may consider it more useful to permit linking proprietary applications with 672 | the library. If this is what you want to do, use the GNU Lesser General 673 | Public License instead of this License. But first, please read 674 | . -------------------------------------------------------------------------------- /Readme.md: -------------------------------------------------------------------------------- 1 | ### About 2 | `A(ttack)WPA` WPA2 brute force implementation in pure Go. 3 | Supported hccap files (hashcat format) only. 4 | 5 | ### Build 6 | ``` 7 | go build 8 | ``` 9 | 10 | ### Example (dictionary) 11 | ``` 12 | awpa.exe -hs example.hccap -w wifimaps-wordlist.txt 13 | ``` 14 | 15 | ### Output 16 | ``` 17 | 2017/08/09 14:16:51 Current speed: 3 18 | 2017/08/09 14:16:57 Current speed: 652 19 | 2017/08/09 14:17:00 Found password: Password 20 | ``` 21 | 22 | ### Example (check a single password) 23 | ``` 24 | awpa.exe -hs example.hccap -p Password 25 | ``` 26 | 27 | ### Output 28 | ``` 29 | Password is valid 30 | ``` -------------------------------------------------------------------------------- /example.hccap: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/akamajoris/AWPA/8a055acc5754e8afddb48807bf2b229aefb8c99d/example.hccap -------------------------------------------------------------------------------- /main.go: -------------------------------------------------------------------------------- 1 | package main 2 | 3 | import ( 4 | "bufio" 5 | "bytes" 6 | "crypto/hmac" 7 | "crypto/md5" 8 | "crypto/sha1" 9 | "encoding/binary" 10 | "flag" 11 | "fmt" 12 | 13 | "io/ioutil" 14 | "log" 15 | "os" 16 | "strings" 17 | "sync" 18 | "time" 19 | 20 | "golang.org/x/crypto/pbkdf2" 21 | ) 22 | 23 | const ( 24 | MAX_WORKERS = 50 // Maximum worker goroutines 25 | HOLDING_CAPACITY = 30 // Holding capacity of the channel 26 | ) 27 | 28 | type Handshake struct { 29 | Raw []byte 30 | Essid []byte 31 | Bssid []byte 32 | Cmac []byte 33 | Snonce []byte 34 | Anonce []byte 35 | Eapol []byte 36 | Eapol_size int 37 | Kver int 38 | Kmic []byte 39 | 40 | PMK []byte 41 | PKE []byte 42 | PTK []byte 43 | MIC []byte 44 | Pass string 45 | } 46 | 47 | type RH struct { 48 | Raw []byte 49 | essid []byte 50 | bssid []byte 51 | cmac []byte 52 | snonce []byte 53 | anonce []byte 54 | eapol []byte 55 | eapol_size int 56 | kver int 57 | kmic []byte 58 | 59 | PKE []byte 60 | } 61 | 62 | func (self *RH) Essid() []byte { 63 | return self.essid 64 | } 65 | func (self *RH) Bssid() []byte { 66 | return self.bssid 67 | } 68 | func (self *RH) Cmac() []byte { 69 | return self.cmac 70 | } 71 | func (self *RH) Snonce() []byte { 72 | return self.snonce 73 | } 74 | func (self *RH) Anonce() []byte { 75 | return self.anonce 76 | } 77 | func (self *RH) Eapol() []byte { 78 | return self.eapol 79 | } 80 | func (self *RH) Eapol_size() int { 81 | return self.eapol_size 82 | } 83 | func (self *RH) Kver() int { 84 | return self.kver 85 | } 86 | func (self *RH) Kmic() []byte { 87 | return self.kmic 88 | } 89 | 90 | type Stat struct { 91 | mu sync.Mutex 92 | Ctr int64 93 | } 94 | 95 | func (self *Stat) Speed() int64 { 96 | self.mu.Lock() 97 | defer func() { 98 | self.mu.Unlock() 99 | self.Ctr = 0 100 | }() 101 | 102 | return self.Ctr 103 | } 104 | func (self *Stat) inc() { 105 | self.mu.Lock() 106 | defer self.mu.Unlock() 107 | self.Ctr++ 108 | } 109 | 110 | var stat Stat 111 | 112 | var _p = flag.String("p", "", "plain password") 113 | var _hs = flag.String("hs", "", "path to (cap|hccap)") 114 | var _w = flag.String("w", "", "path to wordlist") 115 | var _o = flag.String("o", "", "path to output file") 116 | var _t = flag.Int("t", 1, "threads") 117 | 118 | func (self *RH) LoadFromFile(path string) { 119 | data, err := ioutil.ReadFile(path) 120 | if err != nil { 121 | log.Println(err) 122 | os.Exit(-1) 123 | } 124 | self.Raw = data 125 | self.parse() 126 | } 127 | 128 | func (self *RH) parse() { 129 | // ap name 130 | for i := 0; i <= 35; i++ { 131 | if self.Raw[i] != byte(0) { 132 | self.essid = append(self.essid, self.Raw[i]) 133 | } 134 | } 135 | 136 | // ap mac 137 | for i := 36; i <= 41; i++ { 138 | self.bssid = append(self.bssid, self.Raw[i]) 139 | } 140 | 141 | // client mac 142 | for i := 42; i <= 47; i++ { 143 | self.cmac = append(self.cmac, self.Raw[i]) 144 | } 145 | 146 | // snonce 147 | for i := 48; i <= 79; i++ { 148 | self.snonce = append(self.snonce, self.Raw[i]) 149 | } 150 | 151 | // anonce 152 | for i := 80; i <= 111; i++ { 153 | self.anonce = append(self.anonce, self.Raw[i]) 154 | } 155 | 156 | // eapol_size 157 | var tmp_eapol_size []byte 158 | for i := 368; i <= 371; i++ { 159 | tmp_eapol_size = append(tmp_eapol_size, self.Raw[i]) 160 | } 161 | self.eapol_size = int(binary.LittleEndian.Uint32(tmp_eapol_size)) 162 | 163 | // eapol 164 | var checker int 165 | for i := 112; i <= 367; i++ { 166 | checker++ 167 | if checker <= self.eapol_size { 168 | self.eapol = append(self.eapol, self.Raw[i]) 169 | } 170 | } 171 | 172 | var tmp_kver []byte 173 | tmp_kver = append(tmp_kver, self.Raw[372]) 174 | if tmp_eapol_size[0] == byte(1) { 175 | self.kver = 1 176 | } else { 177 | self.kver = 2 178 | } 179 | 180 | for i := 376; i <= 391; i++ { 181 | self.kmic = append(self.kmic, self.Raw[i]) 182 | } 183 | 184 | } 185 | 186 | func (self *RH) Dump() { 187 | fmt.Printf("essid: %s\nbssid: %x\nclient mac: %x\nsnonce: %x\nanonce: %x\neapol: %x\neapol size: %d\nkey ver: %d\nkey mic: %x\nPKE: %x\nPTK: %x\nMIC: %x\n**************", 188 | self.essid, self.bssid, self.cmac, self.snonce, self.anonce, self.eapol, self.eapol_size, self.kver, self.kmic, self.PKE) 189 | } 190 | 191 | func (self *Handshake) Dump() { 192 | fmt.Printf("essid: %s\nbssid: %x\nclient mac: %x\nsnonce: %x\nanonce: %x\neapol: %x\neapol size: %d\nkey ver: %d\nkey mic: %x\nPKE: %x\nPTK: %x\nMIC: %x\n", 193 | self.Essid, self.Bssid, self.Cmac, self.Snonce, self.Anonce, self.Eapol, self.Eapol_size, self.Kver, self.Kmic, self.PKE, self.PTK, self.MIC) 194 | } 195 | 196 | func (self *Handshake) getPMK(password string) { 197 | self.PMK = pbkdf2.Key([]byte(password), []byte(self.Essid), 4096, 32, sha1.New) 198 | } 199 | func (self *Handshake) getPTK() { 200 | for i := 0; i < 4; i++ { 201 | self.PKE[99] = byte(i) 202 | h := hmac.New(sha1.New, self.PMK) 203 | _, err := h.Write(self.PKE) 204 | if err != nil { 205 | log.Println("Fuck bleat") 206 | return 207 | } 208 | self.PTK = append(self.PTK, h.Sum(nil)...) 209 | } 210 | } 211 | func (self *Handshake) getMIC() error { 212 | if self.Kver == 2 { 213 | h := hmac.New(sha1.New, self.PTK[0:16]) 214 | _, err := h.Write(self.Eapol) 215 | if err != nil { 216 | 217 | return err 218 | } 219 | self.MIC = h.Sum(nil) 220 | } else { 221 | h := hmac.New(md5.New, self.PTK[:16]) 222 | _, err := h.Write(self.Eapol) 223 | if err != nil { 224 | log.Println("Fuck bleat") 225 | return err 226 | } 227 | self.MIC = h.Sum(nil) 228 | } 229 | return nil 230 | } 231 | 232 | func (self *Handshake) CheckPassword(password string) (bool, error) { 233 | var err error 234 | self.getPMK(password) 235 | self.getPTK() 236 | if err = self.getMIC(); err != nil { 237 | return false, err 238 | } 239 | if bytes.Compare(self.MIC[0:16], self.Kmic[0:16]) == 0 { 240 | return true, nil 241 | } 242 | return false, nil 243 | } 244 | 245 | func (self *RH) initPKE() { 246 | self.PKE = append(self.PKE, []byte("Pairwise key expansion")...) 247 | self.PKE = append(self.PKE, []byte{0}...) 248 | 249 | if bytes.Compare(self.cmac, self.bssid) < 0 { 250 | self.PKE = append(self.PKE, self.cmac...) 251 | self.PKE = append(self.PKE, self.bssid...) 252 | } else { 253 | self.PKE = append(self.PKE, self.bssid...) 254 | self.PKE = append(self.PKE, self.cmac...) 255 | } 256 | if bytes.Compare(self.snonce, self.anonce) < 0 { 257 | self.PKE = append(self.PKE, self.snonce...) 258 | self.PKE = append(self.PKE, self.anonce...) 259 | } else { 260 | self.PKE = append(self.PKE, self.anonce...) 261 | self.PKE = append(self.PKE, self.snonce...) 262 | } 263 | self.PKE = append(self.PKE, []byte{0}...) 264 | } 265 | 266 | func (hs *Handshake) Brute(check bool) { 267 | shard.inc() 268 | defer shard.dec() 269 | result, err := hs.CheckPassword(hs.Pass) 270 | stat.inc() 271 | if err != nil { 272 | log.Println("Failed to check...", err) 273 | os.Exit(-1) 274 | } 275 | 276 | if check { 277 | if result { 278 | fmt.Println("Password is valid") 279 | } else { 280 | fmt.Println("Password is invalid") 281 | } 282 | os.Exit(0) 283 | } 284 | 285 | if result { 286 | log.Printf("Found password: %s\n", hs.Pass) 287 | os.Exit(0) 288 | } 289 | } 290 | 291 | type Shard struct { 292 | mu sync.Mutex 293 | space int 294 | } 295 | 296 | func (s *Shard) inc() { 297 | s.mu.Lock() 298 | defer s.mu.Unlock() 299 | s.space++ 300 | } 301 | func (s *Shard) dec() { 302 | s.mu.Lock() 303 | defer s.mu.Unlock() 304 | s.space-- 305 | } 306 | 307 | var shard Shard 308 | 309 | func main() { 310 | var wg sync.WaitGroup 311 | var rh RH = RH{} 312 | activeHandshakes := make(chan *Handshake, HOLDING_CAPACITY) 313 | defer close(activeHandshakes) 314 | rh.LoadFromFile(*_hs) 315 | rh.initPKE() 316 | 317 | if *_p != "" && len(*_p) > 7 && len(*_p) < 64 { 318 | var tmpHs = Handshake{ 319 | Essid: rh.Essid(), 320 | Bssid: rh.Bssid(), 321 | Anonce: rh.Anonce(), 322 | Snonce: rh.Snonce(), 323 | Eapol: rh.Eapol(), 324 | Eapol_size: rh.Eapol_size(), 325 | Kmic: rh.Kmic(), 326 | Kver: rh.Kver(), 327 | 328 | PKE: rh.PKE, 329 | Pass: strings.Trim(string(*_p), "\n\r"), 330 | } 331 | tmpHs.Brute(true) 332 | os.Exit(0) 333 | } 334 | 335 | file, err := os.Open(*_w) 336 | if err != nil { 337 | log.Println(err) 338 | os.Exit(-1) 339 | } 340 | defer file.Close() 341 | 342 | go func() { 343 | for { 344 | log.Printf("Current speed: %d\n", stat.Speed()/5) 345 | time.Sleep(time.Second * 5) 346 | } 347 | }() 348 | 349 | for i := 0; i < MAX_WORKERS; i++ { 350 | wg.Add(1) 351 | go func() { 352 | for h := range activeHandshakes { 353 | h.Brute(false) 354 | } 355 | wg.Done() 356 | }() 357 | } 358 | 359 | scanner := bufio.NewScanner(file) 360 | for scanner.Scan() { 361 | password := scanner.Text() 362 | activeHandshakes <- &Handshake{ 363 | Essid: rh.Essid(), 364 | Bssid: rh.Bssid(), 365 | Anonce: rh.Anonce(), 366 | Snonce: rh.Snonce(), 367 | Eapol: rh.Eapol(), 368 | Eapol_size: rh.Eapol_size(), 369 | Kmic: rh.Kmic(), 370 | Kver: rh.Kver(), 371 | 372 | PKE: rh.PKE, 373 | Pass: strings.Trim(string(password), "\n\r"), 374 | } 375 | } 376 | log.Println("Wordlist finished") 377 | wg.Wait() 378 | } 379 | 380 | func init() { 381 | flag.Parse() 382 | if *_p == "" && *_w == "" { 383 | log.Println("Chose a password or wordlist!") 384 | os.Exit(-1) 385 | } 386 | if *_hs == "" { 387 | log.Println("Chose target file") 388 | os.Exit(-1) 389 | } 390 | 391 | } 392 | -------------------------------------------------------------------------------- /vendor/golang.org/x/crypto/pbkdf2/pbkdf2.go: -------------------------------------------------------------------------------- 1 | // Copyright 2012 The Go Authors. All rights reserved. 2 | // Use of this source code is governed by a BSD-style 3 | // license that can be found in the LICENSE file. 4 | 5 | /* 6 | Package pbkdf2 implements the key derivation function PBKDF2 as defined in RFC 7 | 2898 / PKCS #5 v2.0. 8 | 9 | A key derivation function is useful when encrypting data based on a password 10 | or any other not-fully-random data. It uses a pseudorandom function to derive 11 | a secure encryption key based on the password. 12 | 13 | While v2.0 of the standard defines only one pseudorandom function to use, 14 | HMAC-SHA1, the drafted v2.1 specification allows use of all five FIPS Approved 15 | Hash Functions SHA-1, SHA-224, SHA-256, SHA-384 and SHA-512 for HMAC. To 16 | choose, you can pass the `New` functions from the different SHA packages to 17 | pbkdf2.Key. 18 | */ 19 | package pbkdf2 // import "golang.org/x/crypto/pbkdf2" 20 | 21 | import ( 22 | "crypto/hmac" 23 | "hash" 24 | ) 25 | 26 | // Key derives a key from the password, salt and iteration count, returning a 27 | // []byte of length keylen that can be used as cryptographic key. The key is 28 | // derived based on the method described as PBKDF2 with the HMAC variant using 29 | // the supplied hash function. 30 | // 31 | // For example, to use a HMAC-SHA-1 based PBKDF2 key derivation function, you 32 | // can get a derived key for e.g. AES-256 (which needs a 32-byte key) by 33 | // doing: 34 | // 35 | // dk := pbkdf2.Key([]byte("some password"), salt, 4096, 32, sha1.New) 36 | // 37 | // Remember to get a good random salt. At least 8 bytes is recommended by the 38 | // RFC. 39 | // 40 | // Using a higher iteration count will increase the cost of an exhaustive 41 | // search but will also make derivation proportionally slower. 42 | func Key(password, salt []byte, iter, keyLen int, h func() hash.Hash) []byte { 43 | prf := hmac.New(h, password) 44 | hashLen := prf.Size() 45 | numBlocks := (keyLen + hashLen - 1) / hashLen 46 | 47 | var buf [4]byte 48 | dk := make([]byte, 0, numBlocks*hashLen) 49 | U := make([]byte, hashLen) 50 | for block := 1; block <= numBlocks; block++ { 51 | // N.B.: || means concatenation, ^ means XOR 52 | // for each block T_i = U_1 ^ U_2 ^ ... ^ U_iter 53 | // U_1 = PRF(password, salt || uint(i)) 54 | prf.Reset() 55 | prf.Write(salt) 56 | buf[0] = byte(block >> 24) 57 | buf[1] = byte(block >> 16) 58 | buf[2] = byte(block >> 8) 59 | buf[3] = byte(block) 60 | prf.Write(buf[:4]) 61 | dk = prf.Sum(dk) 62 | T := dk[len(dk)-hashLen:] 63 | copy(U, T) 64 | 65 | // U_n = PRF(password, U_(n-1)) 66 | for n := 2; n <= iter; n++ { 67 | prf.Reset() 68 | prf.Write(U) 69 | U = U[:0] 70 | U = prf.Sum(U) 71 | for x := range U { 72 | T[x] ^= U[x] 73 | } 74 | } 75 | } 76 | return dk[:keyLen] 77 | } 78 | -------------------------------------------------------------------------------- /vendor/golang.org/x/crypto/pbkdf2/pbkdf2_test.go: -------------------------------------------------------------------------------- 1 | // Copyright 2012 The Go Authors. All rights reserved. 2 | // Use of this source code is governed by a BSD-style 3 | // license that can be found in the LICENSE file. 4 | 5 | package pbkdf2 6 | 7 | import ( 8 | "bytes" 9 | "crypto/sha1" 10 | "crypto/sha256" 11 | "hash" 12 | "testing" 13 | ) 14 | 15 | type testVector struct { 16 | password string 17 | salt string 18 | iter int 19 | output []byte 20 | } 21 | 22 | // Test vectors from RFC 6070, http://tools.ietf.org/html/rfc6070 23 | var sha1TestVectors = []testVector{ 24 | { 25 | "password", 26 | "salt", 27 | 1, 28 | []byte{ 29 | 0x0c, 0x60, 0xc8, 0x0f, 0x96, 0x1f, 0x0e, 0x71, 30 | 0xf3, 0xa9, 0xb5, 0x24, 0xaf, 0x60, 0x12, 0x06, 31 | 0x2f, 0xe0, 0x37, 0xa6, 32 | }, 33 | }, 34 | { 35 | "password", 36 | "salt", 37 | 2, 38 | []byte{ 39 | 0xea, 0x6c, 0x01, 0x4d, 0xc7, 0x2d, 0x6f, 0x8c, 40 | 0xcd, 0x1e, 0xd9, 0x2a, 0xce, 0x1d, 0x41, 0xf0, 41 | 0xd8, 0xde, 0x89, 0x57, 42 | }, 43 | }, 44 | { 45 | "password", 46 | "salt", 47 | 4096, 48 | []byte{ 49 | 0x4b, 0x00, 0x79, 0x01, 0xb7, 0x65, 0x48, 0x9a, 50 | 0xbe, 0xad, 0x49, 0xd9, 0x26, 0xf7, 0x21, 0xd0, 51 | 0x65, 0xa4, 0x29, 0xc1, 52 | }, 53 | }, 54 | // // This one takes too long 55 | // { 56 | // "password", 57 | // "salt", 58 | // 16777216, 59 | // []byte{ 60 | // 0xee, 0xfe, 0x3d, 0x61, 0xcd, 0x4d, 0xa4, 0xe4, 61 | // 0xe9, 0x94, 0x5b, 0x3d, 0x6b, 0xa2, 0x15, 0x8c, 62 | // 0x26, 0x34, 0xe9, 0x84, 63 | // }, 64 | // }, 65 | { 66 | "passwordPASSWORDpassword", 67 | "saltSALTsaltSALTsaltSALTsaltSALTsalt", 68 | 4096, 69 | []byte{ 70 | 0x3d, 0x2e, 0xec, 0x4f, 0xe4, 0x1c, 0x84, 0x9b, 71 | 0x80, 0xc8, 0xd8, 0x36, 0x62, 0xc0, 0xe4, 0x4a, 72 | 0x8b, 0x29, 0x1a, 0x96, 0x4c, 0xf2, 0xf0, 0x70, 73 | 0x38, 74 | }, 75 | }, 76 | { 77 | "pass\000word", 78 | "sa\000lt", 79 | 4096, 80 | []byte{ 81 | 0x56, 0xfa, 0x6a, 0xa7, 0x55, 0x48, 0x09, 0x9d, 82 | 0xcc, 0x37, 0xd7, 0xf0, 0x34, 0x25, 0xe0, 0xc3, 83 | }, 84 | }, 85 | } 86 | 87 | // Test vectors from 88 | // http://stackoverflow.com/questions/5130513/pbkdf2-hmac-sha2-test-vectors 89 | var sha256TestVectors = []testVector{ 90 | { 91 | "password", 92 | "salt", 93 | 1, 94 | []byte{ 95 | 0x12, 0x0f, 0xb6, 0xcf, 0xfc, 0xf8, 0xb3, 0x2c, 96 | 0x43, 0xe7, 0x22, 0x52, 0x56, 0xc4, 0xf8, 0x37, 97 | 0xa8, 0x65, 0x48, 0xc9, 98 | }, 99 | }, 100 | { 101 | "password", 102 | "salt", 103 | 2, 104 | []byte{ 105 | 0xae, 0x4d, 0x0c, 0x95, 0xaf, 0x6b, 0x46, 0xd3, 106 | 0x2d, 0x0a, 0xdf, 0xf9, 0x28, 0xf0, 0x6d, 0xd0, 107 | 0x2a, 0x30, 0x3f, 0x8e, 108 | }, 109 | }, 110 | { 111 | "password", 112 | "salt", 113 | 4096, 114 | []byte{ 115 | 0xc5, 0xe4, 0x78, 0xd5, 0x92, 0x88, 0xc8, 0x41, 116 | 0xaa, 0x53, 0x0d, 0xb6, 0x84, 0x5c, 0x4c, 0x8d, 117 | 0x96, 0x28, 0x93, 0xa0, 118 | }, 119 | }, 120 | { 121 | "passwordPASSWORDpassword", 122 | "saltSALTsaltSALTsaltSALTsaltSALTsalt", 123 | 4096, 124 | []byte{ 125 | 0x34, 0x8c, 0x89, 0xdb, 0xcb, 0xd3, 0x2b, 0x2f, 126 | 0x32, 0xd8, 0x14, 0xb8, 0x11, 0x6e, 0x84, 0xcf, 127 | 0x2b, 0x17, 0x34, 0x7e, 0xbc, 0x18, 0x00, 0x18, 128 | 0x1c, 129 | }, 130 | }, 131 | { 132 | "pass\000word", 133 | "sa\000lt", 134 | 4096, 135 | []byte{ 136 | 0x89, 0xb6, 0x9d, 0x05, 0x16, 0xf8, 0x29, 0x89, 137 | 0x3c, 0x69, 0x62, 0x26, 0x65, 0x0a, 0x86, 0x87, 138 | }, 139 | }, 140 | } 141 | 142 | func testHash(t *testing.T, h func() hash.Hash, hashName string, vectors []testVector) { 143 | for i, v := range vectors { 144 | o := Key([]byte(v.password), []byte(v.salt), v.iter, len(v.output), h) 145 | if !bytes.Equal(o, v.output) { 146 | t.Errorf("%s %d: expected %x, got %x", hashName, i, v.output, o) 147 | } 148 | } 149 | } 150 | 151 | func TestWithHMACSHA1(t *testing.T) { 152 | testHash(t, sha1.New, "SHA1", sha1TestVectors) 153 | } 154 | 155 | func TestWithHMACSHA256(t *testing.T) { 156 | testHash(t, sha256.New, "SHA256", sha256TestVectors) 157 | } 158 | --------------------------------------------------------------------------------