gitee.com/zhaochuninhefei/gmgo@v0.0.31-0.20240209061119-069254a02979/x509/x509_test.go (about) 1 // Copyright 2009 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 x509 6 7 import ( 8 "bytes" 9 "crypto" 10 "crypto/ecdsa" 11 "crypto/ed25519" 12 "crypto/elliptic" 13 "crypto/rand" 14 "crypto/rsa" 15 _ "crypto/sha256" 16 _ "crypto/sha512" 17 "crypto/x509/pkix" 18 "encoding/asn1" 19 "encoding/base64" 20 "encoding/hex" 21 "encoding/pem" 22 "fmt" 23 "gitee.com/zhaochuninhefei/gmgo/ecdsa_ext" 24 "gitee.com/zhaochuninhefei/gmgo/utils" 25 "gitee.com/zhaochuninhefei/zcgolog/zclog" 26 "io" 27 "math/big" 28 "net" 29 "net/url" 30 "os" 31 "os/exec" 32 "reflect" 33 "runtime" 34 "strings" 35 "testing" 36 "time" 37 38 "gitee.com/zhaochuninhefei/gmgo/internal/testenv" 39 "gitee.com/zhaochuninhefei/gmgo/sm2" 40 ) 41 42 func TestMain(m *testing.M) { 43 zclog.Level = zclog.LOG_LEVEL_DEBUG 44 zclog.Debug("TestMain") 45 os.Exit(m.Run()) 46 } 47 48 func TestParsePKCS1PrivateKey(t *testing.T) { 49 block, _ := pem.Decode([]byte(pemPrivateKey)) 50 priv, err := ParsePKCS1PrivateKey(block.Bytes) 51 if err != nil { 52 t.Errorf("Failed to parse private key: %s", err) 53 return 54 } 55 if priv.PublicKey.N.Cmp(rsaPrivateKey.PublicKey.N) != 0 || 56 priv.PublicKey.E != rsaPrivateKey.PublicKey.E || 57 priv.D.Cmp(rsaPrivateKey.D) != 0 || 58 priv.Primes[0].Cmp(rsaPrivateKey.Primes[0]) != 0 || 59 priv.Primes[1].Cmp(rsaPrivateKey.Primes[1]) != 0 { 60 t.Errorf("got:%+v want:%+v", priv, rsaPrivateKey) 61 } 62 63 // This private key includes an invalid prime that 64 // rsa.PrivateKey.Validate should reject. 65 data := []byte("0\x16\x02\x00\x02\x02\u007f\x00\x02\x0200\x02\x0200\x02\x02\x00\x01\x02\x02\u007f\x00") 66 if _, err := ParsePKCS1PrivateKey(data); err == nil { 67 t.Errorf("parsing invalid private key did not result in an error") 68 } 69 } 70 71 func TestPKCS1MismatchPublicKeyFormat(t *testing.T) { 72 73 const pkixPublicKey = "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" 74 const errorContains = "use ParsePKIXPublicKey instead" 75 derBytes, _ := hex.DecodeString(pkixPublicKey) 76 _, err := ParsePKCS1PublicKey(derBytes) 77 if !strings.Contains(err.Error(), errorContains) { 78 t.Errorf("expected error containing %q, got %s", errorContains, err) 79 } 80 } 81 82 func testParsePKIXPublicKey(t *testing.T, pemBytes string) (pub interface{}) { 83 block, _ := pem.Decode([]byte(pemBytes)) 84 pub, err := ParsePKIXPublicKey(block.Bytes) 85 if err != nil { 86 t.Fatalf("Failed to parse public key: %s", err) 87 } 88 89 pubBytes2, err := MarshalPKIXPublicKey(pub) 90 if err != nil { 91 t.Errorf("Failed to marshal public key for the second time: %s", err) 92 return 93 } 94 if !bytes.Equal(pubBytes2, block.Bytes) { 95 t.Errorf("Reserialization of public key didn't match. got %x, want %x", pubBytes2, block.Bytes) 96 } 97 return 98 } 99 100 func TestParsePKIXPublicKey(t *testing.T) { 101 t.Run("RSA", func(t *testing.T) { 102 pub := testParsePKIXPublicKey(t, pemPublicKey) 103 _, ok := pub.(*rsa.PublicKey) 104 if !ok { 105 t.Errorf("Value returned from ParsePKIXPublicKey was not an RSA public key") 106 } 107 }) 108 t.Run("Ed25519", func(t *testing.T) { 109 pub := testParsePKIXPublicKey(t, pemEd25519Key) 110 _, ok := pub.(ed25519.PublicKey) 111 if !ok { 112 t.Errorf("Value returned from ParsePKIXPublicKey was not an Ed25519 public key") 113 } 114 }) 115 } 116 117 var pemPublicKey = `-----BEGIN PUBLIC KEY----- 118 MIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEA3VoPN9PKUjKFLMwOge6+ 119 wnDi8sbETGIx2FKXGgqtAKpzmem53kRGEQg8WeqRmp12wgp74TGpkEXsGae7RS1k 120 enJCnma4fii+noGH7R0qKgHvPrI2Bwa9hzsH8tHxpyM3qrXslOmD45EH9SxIDUBJ 121 FehNdaPbLP1gFyahKMsdfxFJLUvbUycuZSJ2ZnIgeVxwm4qbSvZInL9Iu4FzuPtg 122 fINKcbbovy1qq4KvPIrXzhbY3PWDc6btxCf3SE0JdE1MCPThntB62/bLMSQ7xdDR 123 FF53oIpvxe/SCOymfWq/LW849Ytv3Xwod0+wzAP8STXG4HSELS4UedPYeHJJJYcZ 124 +QIDAQAB 125 -----END PUBLIC KEY----- 126 ` 127 128 var pemPrivateKey = testingKey(` 129 -----BEGIN RSA TESTING KEY----- 130 MIICXAIBAAKBgQCxoeCUW5KJxNPxMp+KmCxKLc1Zv9Ny+4CFqcUXVUYH69L3mQ7v 131 IWrJ9GBfcaA7BPQqUlWxWM+OCEQZH1EZNIuqRMNQVuIGCbz5UQ8w6tS0gcgdeGX7 132 J7jgCQ4RK3F/PuCM38QBLaHx988qG8NMc6VKErBjctCXFHQt14lerd5KpQIDAQAB 133 AoGAYrf6Hbk+mT5AI33k2Jt1kcweodBP7UkExkPxeuQzRVe0KVJw0EkcFhywKpr1 134 V5eLMrILWcJnpyHE5slWwtFHBG6a5fLaNtsBBtcAIfqTQ0Vfj5c6SzVaJv0Z5rOd 135 7gQF6isy3t3w9IF3We9wXQKzT6q5ypPGdm6fciKQ8RnzREkCQQDZwppKATqQ41/R 136 vhSj90fFifrGE6aVKC1hgSpxGQa4oIdsYYHwMzyhBmWW9Xv/R+fPyr8ZwPxp2c12 137 33QwOLPLAkEA0NNUb+z4ebVVHyvSwF5jhfJxigim+s49KuzJ1+A2RaSApGyBZiwS 138 rWvWkB471POAKUYt5ykIWVZ83zcceQiNTwJBAMJUFQZX5GDqWFc/zwGoKkeR49Yi 139 MTXIvf7Wmv6E++eFcnT461FlGAUHRV+bQQXGsItR/opIG7mGogIkVXa3E1MCQARX 140 AAA7eoZ9AEHflUeuLn9QJI/r0hyQQLEtrpwv6rDT1GCWaLII5HJ6NUFVf4TTcqxo 141 6vdM4QGKTJoO+SaCyP0CQFdpcxSAuzpFcKv0IlJ8XzS/cy+mweCMwyJ1PFEc4FX6 142 wg/HcAJWY60xZTJDFN+Qfx8ZQvBEin6c2/h+zZi5IVY= 143 -----END RSA TESTING KEY----- 144 `) 145 146 // pemEd25519Key is the example from RFC 8410, Secrion 4. 147 var pemEd25519Key = ` 148 -----BEGIN PUBLIC KEY----- 149 MCowBQYDK2VwAyEAGb9ECWmEzf6FQbrBZ9w7lshQhqowtrbLDFw4rXAxZuE= 150 -----END PUBLIC KEY----- 151 ` 152 153 func TestPKIXMismatchPublicKeyFormat(t *testing.T) { 154 155 const pkcs1PublicKey = "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" 156 const errorContains = "use ParsePKCS1PublicKey instead" 157 derBytes, _ := hex.DecodeString(pkcs1PublicKey) 158 _, err := ParsePKIXPublicKey(derBytes) 159 if !strings.Contains(err.Error(), errorContains) { 160 t.Errorf("expected error containing %q, got %s", errorContains, err) 161 } 162 } 163 164 var testPrivateKey *rsa.PrivateKey 165 166 func init() { 167 block, _ := pem.Decode([]byte(pemPrivateKey)) 168 169 var err error 170 if testPrivateKey, err = ParsePKCS1PrivateKey(block.Bytes); err != nil { 171 panic("Failed to parse private key: " + err.Error()) 172 } 173 } 174 175 func bigFromString(s string) *big.Int { 176 ret := new(big.Int) 177 ret.SetString(s, 10) 178 return ret 179 } 180 181 func fromBase10(base10 string) *big.Int { 182 i := new(big.Int) 183 i.SetString(base10, 10) 184 return i 185 } 186 187 //goland:noinspection GoUnusedFunction 188 func bigFromHexString(s string) *big.Int { 189 ret := new(big.Int) 190 ret.SetString(s, 16) 191 return ret 192 } 193 194 var rsaPrivateKey = &rsa.PrivateKey{ 195 PublicKey: rsa.PublicKey{ 196 N: bigFromString("124737666279038955318614287965056875799409043964547386061640914307192830334599556034328900586693254156136128122194531292927142396093148164407300419162827624945636708870992355233833321488652786796134504707628792159725681555822420087112284637501705261187690946267527866880072856272532711620639179596808018872997"), 197 E: 65537, 198 }, 199 D: bigFromString("69322600686866301945688231018559005300304807960033948687567105312977055197015197977971637657636780793670599180105424702854759606794705928621125408040473426339714144598640466128488132656829419518221592374964225347786430566310906679585739468938549035854760501049443920822523780156843263434219450229353270690889"), 200 Primes: []*big.Int{ 201 bigFromString("11405025354575369741595561190164746858706645478381139288033759331174478411254205003127028642766986913445391069745480057674348716675323735886284176682955723"), 202 bigFromString("10937079261204603443118731009201819560867324167189758120988909645641782263430128449826989846631183550578761324239709121189827307416350485191350050332642639"), 203 }, 204 } 205 206 func TestMarshalRSAPrivateKey(t *testing.T) { 207 priv := &rsa.PrivateKey{ 208 PublicKey: rsa.PublicKey{ 209 N: fromBase10("16346378922382193400538269749936049106320265317511766357599732575277382844051791096569333808598921852351577762718529818072849191122419410612033592401403764925096136759934497687765453905884149505175426053037420486697072448609022753683683718057795566811401938833367954642951433473337066311978821180526439641496973296037000052546108507805269279414789035461158073156772151892452251106173507240488993608650881929629163465099476849643165682709047462010581308719577053905787496296934240246311806555924593059995202856826239801816771116902778517096212527979497399966526283516447337775509777558018145573127308919204297111496233"), 210 E: 3, 211 }, 212 D: fromBase10("10897585948254795600358846499957366070880176878341177571733155050184921896034527397712889205732614568234385175145686545381899460748279607074689061600935843283397424506622998458510302603922766336783617368686090042765718290914099334449154829375179958369993407724946186243249568928237086215759259909861748642124071874879861299389874230489928271621259294894142840428407196932444474088857746123104978617098858619445675532587787023228852383149557470077802718705420275739737958953794088728369933811184572620857678792001136676902250566845618813972833750098806496641114644760255910789397593428910198080271317419213080834885003"), 213 Primes: []*big.Int{ 214 fromBase10("1025363189502892836833747188838978207017355117492483312747347695538428729137306368764177201532277413433182799108299960196606011786562992097313508180436744488171474690412562218914213688661311117337381958560443"), 215 fromBase10("3467903426626310123395340254094941045497208049900750380025518552334536945536837294961497712862519984786362199788654739924501424784631315081391467293694361474867825728031147665777546570788493758372218019373"), 216 fromBase10("4597024781409332673052708605078359346966325141767460991205742124888960305710298765592730135879076084498363772408626791576005136245060321874472727132746643162385746062759369754202494417496879741537284589047"), 217 }, 218 } 219 220 derBytes := MarshalPKCS1PrivateKey(priv) 221 222 priv2, err := ParsePKCS1PrivateKey(derBytes) 223 if err != nil { 224 t.Errorf("error parsing serialized key: %s", err) 225 return 226 } 227 if priv.PublicKey.N.Cmp(priv2.PublicKey.N) != 0 || 228 priv.PublicKey.E != priv2.PublicKey.E || 229 priv.D.Cmp(priv2.D) != 0 || 230 len(priv2.Primes) != 3 || 231 priv.Primes[0].Cmp(priv2.Primes[0]) != 0 || 232 priv.Primes[1].Cmp(priv2.Primes[1]) != 0 || 233 priv.Primes[2].Cmp(priv2.Primes[2]) != 0 { 234 t.Errorf("got:%+v want:%+v", priv, priv2) 235 } 236 } 237 238 func TestMarshalRSAPublicKey(t *testing.T) { 239 pub := &rsa.PublicKey{ 240 N: fromBase10("16346378922382193400538269749936049106320265317511766357599732575277382844051791096569333808598921852351577762718529818072849191122419410612033592401403764925096136759934497687765453905884149505175426053037420486697072448609022753683683718057795566811401938833367954642951433473337066311978821180526439641496973296037000052546108507805269279414789035461158073156772151892452251106173507240488993608650881929629163465099476849643165682709047462010581308719577053905787496296934240246311806555924593059995202856826239801816771116902778517096212527979497399966526283516447337775509777558018145573127308919204297111496233"), 241 E: 3, 242 } 243 derBytes := MarshalPKCS1PublicKey(pub) 244 pub2, err := ParsePKCS1PublicKey(derBytes) 245 if err != nil { 246 t.Errorf("ParsePKCS1PublicKey: %s", err) 247 } 248 if pub.N.Cmp(pub2.N) != 0 || pub.E != pub2.E { 249 t.Errorf("ParsePKCS1PublicKey = %+v, want %+v", pub, pub2) 250 } 251 252 // It's never been documented that asn1.Marshal/Unmarshal on rsa.PublicKey works, 253 // but it does, and we know of code that depends on it. 254 // Lock that in, even though we'd prefer that people use MarshalPKCS1PublicKey and ParsePKCS1PublicKey. 255 derBytes2, err := asn1.Marshal(*pub) 256 if err != nil { 257 t.Errorf("Marshal(rsa.PublicKey): %v", err) 258 } else if !bytes.Equal(derBytes, derBytes2) { 259 t.Errorf("Marshal(rsa.PublicKey) = %x, want %x", derBytes2, derBytes) 260 } 261 pub3 := new(rsa.PublicKey) 262 rest, err := asn1.Unmarshal(derBytes, pub3) 263 if err != nil { 264 t.Errorf("Unmarshal(rsa.PublicKey): %v", err) 265 } 266 if len(rest) != 0 || pub.N.Cmp(pub3.N) != 0 || pub.E != pub3.E { 267 t.Errorf("Unmarshal(rsa.PublicKey) = %+v, %q want %+v, %q", pub, rest, pub2, []byte(nil)) 268 } 269 270 publicKeys := []struct { 271 derBytes []byte 272 expectedErrSubstr string 273 }{ 274 { 275 derBytes: []byte{ 276 0x30, 6, // SEQUENCE, 6 bytes 277 0x02, 1, // INTEGER, 1 byte 278 17, 279 0x02, 1, // INTEGER, 1 byte 280 3, // 3 281 }, 282 }, { 283 derBytes: []byte{ 284 0x30, 6, // SEQUENCE 285 0x02, 1, // INTEGER, 1 byte 286 0xff, // -1 287 0x02, 1, // INTEGER, 1 byte 288 3, 289 }, 290 expectedErrSubstr: "zero or negative", 291 }, { 292 derBytes: []byte{ 293 0x30, 6, // SEQUENCE 294 0x02, 1, // INTEGER, 1 byte 295 17, 296 0x02, 1, // INTEGER, 1 byte 297 0xff, // -1 298 }, 299 expectedErrSubstr: "zero or negative", 300 }, { 301 derBytes: []byte{ 302 0x30, 6, // SEQUENCE 303 0x02, 1, // INTEGER, 1 byte 304 17, 305 0x02, 1, // INTEGER, 1 byte 306 3, 307 1, 308 }, 309 expectedErrSubstr: "trailing data", 310 }, { 311 derBytes: []byte{ 312 0x30, 9, // SEQUENCE 313 0x02, 1, // INTEGER, 1 byte 314 17, 315 0x02, 4, // INTEGER, 4 bytes 316 0x7f, 0xff, 0xff, 0xff, 317 }, 318 }, { 319 derBytes: []byte{ 320 0x30, 10, // SEQUENCE 321 0x02, 1, // INTEGER, 1 byte 322 17, 323 0x02, 5, // INTEGER, 5 bytes 324 0x00, 0x80, 0x00, 0x00, 0x00, 325 }, 326 // On 64-bit systems, encoding/asn1 will accept the 327 // public exponent, but ParsePKCS1PublicKey will return 328 // an error. On 32-bit systems, encoding/asn1 will 329 // return the error. The common substring of both error 330 // is the word “large”. 331 expectedErrSubstr: "large", 332 }, 333 } 334 335 for i, test := range publicKeys { 336 shouldFail := len(test.expectedErrSubstr) > 0 337 pub, err := ParsePKCS1PublicKey(test.derBytes) 338 if shouldFail { 339 if err == nil { 340 t.Errorf("#%d: unexpected success, got %#v", i, pub) 341 } else if !strings.Contains(err.Error(), test.expectedErrSubstr) { 342 t.Errorf("#%d: expected error containing %q, got %s", i, test.expectedErrSubstr, err) 343 } 344 } else { 345 if err != nil { 346 t.Errorf("#%d: unexpected failure: %s", i, err) 347 continue 348 } 349 reserialized := MarshalPKCS1PublicKey(pub) 350 if !bytes.Equal(reserialized, test.derBytes) { 351 t.Errorf("#%d: failed to reserialize: got %x, expected %x", i, reserialized, test.derBytes) 352 } 353 } 354 } 355 } 356 357 type matchHostnamesTest struct { 358 pattern, host string 359 ok bool 360 } 361 362 var matchHostnamesTests = []matchHostnamesTest{ 363 {"a.b.c", "a.b.c", true}, 364 {"a.b.c", "b.b.c", false}, 365 {"", "b.b.c", false}, 366 {"a.b.c", "", false}, 367 {"example.com", "example.com", true}, 368 {"example.com", "www.example.com", false}, 369 {"*.example.com", "example.com", false}, 370 {"*.example.com", "www.example.com", true}, 371 {"*.example.com", "www.example.com.", true}, 372 {"*.example.com", "xyz.www.example.com", false}, 373 {"*.example.com", "https://www.example.com", false}, // Issue 27591 374 {"*.example..com", "www.example..com", false}, 375 {"www.example..com", "www.example..com", true}, 376 {"*.*.example.com", "xyz.www.example.com", false}, 377 {"*.www.*.com", "xyz.www.example.com", false}, 378 {"*bar.example.com", "foobar.example.com", false}, 379 {"f*.example.com", "foobar.example.com", false}, 380 {"www.example.com", "*.example.com", false}, 381 {"", ".", false}, 382 {".", "", false}, 383 {".", ".", false}, 384 {"example.com", "example.com.", true}, 385 {"example.com.", "example.com", false}, 386 {"example.com.", "example.com.", true}, // perfect matches allow trailing dots in patterns 387 {"*.com.", "example.com.", false}, 388 {"*.com.", "example.com", false}, 389 {"*.com", "example.com", true}, 390 {"*.com", "example.com.", true}, 391 {"foo:bar", "foo:bar", true}, 392 {"*.foo:bar", "xxx.foo:bar", false}, 393 {"*.2.3.4", "1.2.3.4", false}, 394 {"*.2.3.4", "[1.2.3.4]", false}, 395 {"*:4860:4860::8888", "2001:4860:4860::8888", false}, 396 {"*:4860:4860::8888", "[2001:4860:4860::8888]", false}, 397 {"2001:4860:4860::8888", "2001:4860:4860::8888", false}, 398 {"2001:4860:4860::8888", "[2001:4860:4860::8888]", false}, 399 {"[2001:4860:4860::8888]", "2001:4860:4860::8888", false}, 400 {"[2001:4860:4860::8888]", "[2001:4860:4860::8888]", false}, 401 } 402 403 func TestMatchHostnames(t *testing.T) { 404 for i, test := range matchHostnamesTests { 405 c := &Certificate{DNSNames: []string{test.pattern}} 406 r := c.VerifyHostname(test.host) == nil 407 if r != test.ok { 408 t.Errorf("#%d mismatch got: %t want: %t when matching '%s' against '%s'", i, r, test.ok, test.host, test.pattern) 409 } 410 } 411 } 412 413 func TestMatchIP(t *testing.T) { 414 // Check that pattern matching is working. 415 c := &Certificate{ 416 DNSNames: []string{"*.foo.bar.baz"}, 417 Subject: pkix.Name{ 418 CommonName: "*.foo.bar.baz", 419 }, 420 } 421 err := c.VerifyHostname("quux.foo.bar.baz") 422 if err != nil { 423 t.Fatalf("VerifyHostname(quux.foo.bar.baz): %v", err) 424 } 425 426 // But check that if we change it to be matching against an IP address, 427 // it is rejected. 428 c = &Certificate{ 429 DNSNames: []string{"*.2.3.4"}, 430 Subject: pkix.Name{ 431 CommonName: "*.2.3.4", 432 }, 433 } 434 err = c.VerifyHostname("1.2.3.4") 435 if err == nil { 436 t.Fatalf("VerifyHostname(1.2.3.4) should have failed, did not") 437 } 438 439 c = &Certificate{ 440 IPAddresses: []net.IP{net.ParseIP("127.0.0.1"), net.ParseIP("::1")}, 441 } 442 err = c.VerifyHostname("127.0.0.1") 443 if err != nil { 444 t.Fatalf("VerifyHostname(127.0.0.1): %v", err) 445 } 446 err = c.VerifyHostname("::1") 447 if err != nil { 448 t.Fatalf("VerifyHostname(::1): %v", err) 449 } 450 err = c.VerifyHostname("[::1]") 451 if err != nil { 452 t.Fatalf("VerifyHostname([::1]): %v", err) 453 } 454 } 455 456 func TestCertificateParse(t *testing.T) { 457 s, _ := base64.StdEncoding.DecodeString(certBytes) 458 certs, err := ParseCertificates(s) 459 if err != nil { 460 t.Error(err) 461 } 462 if len(certs) != 2 { 463 t.Errorf("Wrong number of certs: got %d want 2", len(certs)) 464 return 465 } 466 467 err = certs[0].CheckSignatureFrom(certs[1]) 468 if err != nil { 469 t.Error(err) 470 } 471 472 if err := certs[0].VerifyHostname("mail.google.com"); err != nil { 473 t.Error(err) 474 } 475 476 const expectedExtensions = 10 477 if n := len(certs[0].Extensions); n != expectedExtensions { 478 t.Errorf("want %d extensions, got %d", expectedExtensions, n) 479 } 480 } 481 482 func TestCertificateEqualOnNil(t *testing.T) { 483 cNonNil := new(Certificate) 484 var cNil1, cNil2 *Certificate 485 if !cNil1.Equal(cNil2) { 486 t.Error("Nil certificates: cNil1 is not equal to cNil2") 487 } 488 if !cNil2.Equal(cNil1) { 489 t.Error("Nil certificates: cNil2 is not equal to cNil1") 490 } 491 if cNil1.Equal(cNonNil) { 492 t.Error("Unexpectedly cNil1 is equal to cNonNil") 493 } 494 if cNonNil.Equal(cNil1) { 495 t.Error("Unexpectedly cNonNil is equal to cNil1") 496 } 497 } 498 499 func TestMismatchedSignatureAlgorithm(t *testing.T) { 500 der, _ := pem.Decode([]byte(rsaPSSSelfSignedPEM)) 501 if der == nil { 502 t.Fatal("Failed to find PEM block") 503 } 504 505 cert, err := ParseCertificate(der.Bytes) 506 if err != nil { 507 t.Fatal(err) 508 } 509 510 if err = cert.CheckSignature(ECDSAWithSHA256, nil, nil); err == nil { 511 t.Fatal("CheckSignature unexpectedly return no error") 512 } 513 514 const expectedSubstring = " but have public key of type " 515 if !strings.Contains(err.Error(), expectedSubstring) { 516 t.Errorf("Expected error containing %q, but got %q", expectedSubstring, err) 517 } 518 } 519 520 var certBytes = "MIIE0jCCA7qgAwIBAgIQWcvS+TTB3GwCAAAAAGEAWzANBgkqhkiG9w0BAQsFADBCMQswCQYD" + 521 "VQQGEwJVUzEeMBwGA1UEChMVR29vZ2xlIFRydXN0IFNlcnZpY2VzMRMwEQYDVQQDEwpHVFMg" + 522 "Q0EgMU8xMB4XDTIwMDQwMTEyNTg1NloXDTIwMDYyNDEyNTg1NlowaTELMAkGA1UEBhMCVVMx" + 523 "EzARBgNVBAgTCkNhbGlmb3JuaWExFjAUBgNVBAcTDU1vdW50YWluIFZpZXcxEzARBgNVBAoT" + 524 "Ckdvb2dsZSBMTEMxGDAWBgNVBAMTD21haWwuZ29vZ2xlLmNvbTBZMBMGByqGSM49AgEGCCqG" + 525 "SM49AwEHA0IABO+dYiPnkFl+cZVf6mrWeNp0RhQcJSBGH+sEJxjvc+cYlW3QJCnm57qlpFdd" + 526 "pz3MPyVejvXQdM6iI1mEWP4C2OujggJmMIICYjAOBgNVHQ8BAf8EBAMCB4AwEwYDVR0lBAww" + 527 "CgYIKwYBBQUHAwEwDAYDVR0TAQH/BAIwADAdBgNVHQ4EFgQUI6pZhnQ/lQgmPDwSKR2A54G7" + 528 "AS4wHwYDVR0jBBgwFoAUmNH4bhDrz5vsYJ8YkBug630J/SswZAYIKwYBBQUHAQEEWDBWMCcG" + 529 "CCsGAQUFBzABhhtodHRwOi8vb2NzcC5wa2kuZ29vZy9ndHMxbzEwKwYIKwYBBQUHMAKGH2h0" + 530 "dHA6Ly9wa2kuZ29vZy9nc3IyL0dUUzFPMS5jcnQwLAYDVR0RBCUwI4IPbWFpbC5nb29nbGUu" + 531 "Y29tghBpbmJveC5nb29nbGUuY29tMCEGA1UdIAQaMBgwCAYGZ4EMAQICMAwGCisGAQQB1nkC" + 532 "BQMwLwYDVR0fBCgwJjAkoCKgIIYeaHR0cDovL2NybC5wa2kuZ29vZy9HVFMxTzEuY3JsMIIB" + 533 "AwYKKwYBBAHWeQIEAgSB9ASB8QDvAHYAsh4FzIuizYogTodm+Su5iiUgZ2va+nDnsklTLe+L" + 534 "kF4AAAFxNgmxKgAABAMARzBFAiEA12/OHdTGXQ3qHHC3NvYCyB8aEz/+ZFOLCAI7lhqj28sC" + 535 "IG2/7Yz2zK6S6ai+dH7cTMZmoFGo39gtaTqtZAqEQX7nAHUAXqdz+d9WwOe1Nkh90EngMnqR" + 536 "mgyEoRIShBh1loFxRVgAAAFxNgmxTAAABAMARjBEAiA7PNq+MFfv6O9mBkxFViS2TfU66yRB" + 537 "/njcebWglLQjZQIgOyRKhxlEizncFRml7yn4Bg48ktXKGjo+uiw6zXEINb0wDQYJKoZIhvcN" + 538 "AQELBQADggEBADM2Rh306Q10PScsolYMxH1B/K4Nb2WICvpY0yDPJFdnGjqCYym196TjiEvs" + 539 "R6etfeHdyzlZj6nh82B4TVyHjiWM02dQgPalOuWQcuSy0OvLh7F1E7CeHzKlczdFPBTOTdM1" + 540 "RDTxlvw1bAqc0zueM8QIAyEy3opd7FxAcGQd5WRIJhzLBL+dbbMOW/LTeW7cm/Xzq8cgCybN" + 541 "BSZAvhjseJ1L29OlCTZL97IfnX0IlFQzWuvvHy7V2B0E3DHlzM0kjwkkCKDUUp/wajv2NZKC" + 542 "TkhEyERacZRKc9U0ADxwsAzHrdz5+5zfD2usEV/MQ5V6d8swLXs+ko0X6swrd4YCiB8wggRK" + 543 "MIIDMqADAgECAg0B47SaoY2KqYElaVC4MA0GCSqGSIb3DQEBCwUAMEwxIDAeBgNVBAsTF0ds" + 544 "b2JhbFNpZ24gUm9vdCBDQSAtIFIyMRMwEQYDVQQKEwpHbG9iYWxTaWduMRMwEQYDVQQDEwpH" + 545 "bG9iYWxTaWduMB4XDTE3MDYxNTAwMDA0MloXDTIxMTIxNTAwMDA0MlowQjELMAkGA1UEBhMC" + 546 "VVMxHjAcBgNVBAoTFUdvb2dsZSBUcnVzdCBTZXJ2aWNlczETMBEGA1UEAxMKR1RTIENBIDFP" + 547 "MTCCASIwDQYJKoZIhvcNAQEBBQADggEPADCCAQoCggEBANAYz0XUi83TnORA73603WkhG8nP" + 548 "PI5MdbkPMRmEPZ48Ke9QDRCTbwWAgJ8qoL0SSwLhPZ9YFiT+MJ8LdHdVkx1L903hkoIQ9lGs" + 549 "DMOyIpQPNGuYEEnnC52DOd0gxhwt79EYYWXnI4MgqCMS/9Ikf9Qv50RqW03XUGawr55CYwX7" + 550 "4BzEY2Gvn2oz/2KXvUjZ03wUZ9x13C5p6PhteGnQtxAFuPExwjsk/RozdPgj4OxrGYoWxuPN" + 551 "pM0L27OkWWA4iDutHbnGjKdTG/y82aSrvN08YdeTFZjugb2P4mRHIEAGTtesl+i5wFkSoUkl" + 552 "I+TtcDQspbRjfPmjPYPRzW0krAcCAwEAAaOCATMwggEvMA4GA1UdDwEB/wQEAwIBhjAdBgNV" + 553 "HSUEFjAUBggrBgEFBQcDAQYIKwYBBQUHAwIwEgYDVR0TAQH/BAgwBgEB/wIBADAdBgNVHQ4E" + 554 "FgQUmNH4bhDrz5vsYJ8YkBug630J/SswHwYDVR0jBBgwFoAUm+IHV2ccHsBqBt5ZtJot39wZ" + 555 "hi4wNQYIKwYBBQUHAQEEKTAnMCUGCCsGAQUFBzABhhlodHRwOi8vb2NzcC5wa2kuZ29vZy9n" + 556 "c3IyMDIGA1UdHwQrMCkwJ6AloCOGIWh0dHA6Ly9jcmwucGtpLmdvb2cvZ3NyMi9nc3IyLmNy" + 557 "bDA/BgNVHSAEODA2MDQGBmeBDAECAjAqMCgGCCsGAQUFBwIBFhxodHRwczovL3BraS5nb29n" + 558 "L3JlcG9zaXRvcnkvMA0GCSqGSIb3DQEBCwUAA4IBAQAagD42efvzLqlGN31eVBY1rsdOCJn+" + 559 "vdE0aSZSZgc9CrpJy2L08RqO/BFPaJZMdCvTZ96yo6oFjYRNTCBlD6WW2g0W+Gw7228EI4hr" + 560 "OmzBYL1on3GO7i1YNAfw1VTphln9e14NIZT1jMmo+NjyrcwPGvOap6kEJ/mjybD/AnhrYbrH" + 561 "NSvoVvpPwxwM7bY8tEvq7czhPOzcDYzWPpvKQliLzBYhF0C8otZm79rEFVvNiaqbCSbnMtIN" + 562 "bmcgAlsQsJAJnAwfnq3YO+qh/GzoEFwIUhlRKnG7rHq13RXtK8kIKiyKtKYhq2P/11JJUNCJ" + 563 "t63yr/tQri/hlQ3zRq2dnPXK" 564 565 func parseCIDR(s string) *net.IPNet { 566 _, n, err := net.ParseCIDR(s) 567 if err != nil { 568 panic(err) 569 } 570 return n 571 } 572 573 func parseURI(s string) *url.URL { 574 uri, err := url.Parse(s) 575 if err != nil { 576 panic(err) 577 } 578 return uri 579 } 580 581 func TestCreateSelfSignedCertificate(t *testing.T) { 582 random := rand.Reader 583 584 ecdsaPriv, err := ecdsa.GenerateKey(elliptic.P256(), rand.Reader) 585 if err != nil { 586 t.Fatalf("Failed to generate ECDSA key: %s", err) 587 } 588 589 ed25519Pub, ed25519Priv, err := ed25519.GenerateKey(random) 590 if err != nil { 591 t.Fatalf("Failed to generate Ed25519 key: %s", err) 592 } 593 594 tests := []struct { 595 name string 596 pub, priv interface{} 597 checkSig bool 598 sigAlgo SignatureAlgorithm 599 }{ 600 {"RSA/RSA", &testPrivateKey.PublicKey, testPrivateKey, true, SHA1WithRSA}, 601 {"RSA/ECDSA", &testPrivateKey.PublicKey, ecdsaPriv, false, ECDSAWithSHA384}, 602 {"ECDSA/RSA", &ecdsaPriv.PublicKey, testPrivateKey, false, SHA256WithRSA}, 603 {"ECDSA/ECDSA", &ecdsaPriv.PublicKey, ecdsaPriv, true, ECDSAWithSHA1}, 604 {"RSAPSS/RSAPSS", &testPrivateKey.PublicKey, testPrivateKey, true, SHA256WithRSAPSS}, 605 {"ECDSA/RSAPSS", &ecdsaPriv.PublicKey, testPrivateKey, false, SHA256WithRSAPSS}, 606 {"RSAPSS/ECDSA", &testPrivateKey.PublicKey, ecdsaPriv, false, ECDSAWithSHA384}, 607 {"Ed25519", ed25519Pub, ed25519Priv, true, PureEd25519}, 608 } 609 610 testExtKeyUsage := []ExtKeyUsage{ExtKeyUsageClientAuth, ExtKeyUsageServerAuth} 611 testUnknownExtKeyUsage := []asn1.ObjectIdentifier{[]int{1, 2, 3}, []int{2, 59, 1}} 612 extraExtensionData := []byte("extra extension") 613 614 for _, test := range tests { 615 commonName := "test.example.com" 616 //goland:noinspection HttpUrlsUsage 617 template := Certificate{ 618 // SerialNumber is negative to ensure that negative 619 // values are parsed. This is due to the prevalence of 620 // buggy code that produces certificates with negative 621 // serial numbers. 622 SerialNumber: big.NewInt(-1), 623 Subject: pkix.Name{ 624 CommonName: commonName, 625 Organization: []string{"Σ Acme Co"}, 626 Country: []string{"US"}, 627 ExtraNames: []pkix.AttributeTypeAndValue{ 628 { 629 Type: []int{2, 5, 4, 42}, 630 Value: "Gopher", 631 }, 632 // This should override the Country, above. 633 { 634 Type: []int{2, 5, 4, 6}, 635 Value: "NL", 636 }, 637 }, 638 }, 639 NotBefore: time.Unix(1000, 0), 640 NotAfter: time.Unix(100000, 0), 641 642 SignatureAlgorithm: test.sigAlgo, 643 644 SubjectKeyId: []byte{1, 2, 3, 4}, 645 KeyUsage: KeyUsageCertSign, 646 647 ExtKeyUsage: testExtKeyUsage, 648 UnknownExtKeyUsage: testUnknownExtKeyUsage, 649 650 BasicConstraintsValid: true, 651 IsCA: true, 652 653 OCSPServer: []string{"http://ocsp.example.com"}, 654 IssuingCertificateURL: []string{"http://crt.example.com/ca1.crt"}, 655 656 DNSNames: []string{"test.example.com"}, 657 EmailAddresses: []string{"gopher@golang.org"}, 658 IPAddresses: []net.IP{net.IPv4(127, 0, 0, 1).To4(), net.ParseIP("2001:4860:0:2001::68")}, 659 URIs: []*url.URL{parseURI("https://foo.com/wibble#foo")}, 660 661 PolicyIdentifiers: []asn1.ObjectIdentifier{[]int{1, 2, 3}}, 662 PermittedDNSDomains: []string{".example.com", "example.com"}, 663 ExcludedDNSDomains: []string{"bar.example.com"}, 664 PermittedIPRanges: []*net.IPNet{parseCIDR("192.168.1.1/16"), parseCIDR("1.2.3.4/8")}, 665 ExcludedIPRanges: []*net.IPNet{parseCIDR("2001:db8::/48")}, 666 PermittedEmailAddresses: []string{"foo@example.com"}, 667 ExcludedEmailAddresses: []string{".example.com", "example.com"}, 668 PermittedURIDomains: []string{".bar.com", "bar.com"}, 669 ExcludedURIDomains: []string{".bar2.com", "bar2.com"}, 670 671 CRLDistributionPoints: []string{"http://crl1.example.com/ca1.crl", "http://crl2.example.com/ca1.crl"}, 672 673 ExtraExtensions: []pkix.Extension{ 674 { 675 Id: []int{1, 2, 3, 4}, 676 Value: extraExtensionData, 677 }, 678 // This extension should override the SubjectKeyId, above. 679 { 680 Id: oidExtensionSubjectKeyId, 681 Critical: false, 682 Value: []byte{0x04, 0x04, 4, 3, 2, 1}, 683 }, 684 }, 685 } 686 687 derBytes, err := CreateCertificate(random, &template, &template, test.pub, test.priv) 688 if err != nil { 689 t.Errorf("%s: failed to create certificate: %s", test.name, err) 690 continue 691 } 692 693 cert, err := ParseCertificate(derBytes) 694 if err != nil { 695 t.Errorf("%s: failed to parse certificate: %s", test.name, err) 696 continue 697 } 698 699 if len(cert.PolicyIdentifiers) != 1 || !cert.PolicyIdentifiers[0].Equal(template.PolicyIdentifiers[0]) { 700 t.Errorf("%s: failed to parse policy identifiers: got:%#v want:%#v", test.name, cert.PolicyIdentifiers, template.PolicyIdentifiers) 701 } 702 703 if len(cert.PermittedDNSDomains) != 2 || cert.PermittedDNSDomains[0] != ".example.com" || cert.PermittedDNSDomains[1] != "example.com" { 704 t.Errorf("%s: failed to parse name constraints: %#v", test.name, cert.PermittedDNSDomains) 705 } 706 707 if len(cert.ExcludedDNSDomains) != 1 || cert.ExcludedDNSDomains[0] != "bar.example.com" { 708 t.Errorf("%s: failed to parse name constraint exclusions: %#v", test.name, cert.ExcludedDNSDomains) 709 } 710 711 if len(cert.PermittedIPRanges) != 2 || cert.PermittedIPRanges[0].String() != "192.168.0.0/16" || cert.PermittedIPRanges[1].String() != "1.0.0.0/8" { 712 t.Errorf("%s: failed to parse IP constraints: %#v", test.name, cert.PermittedIPRanges) 713 } 714 715 if len(cert.ExcludedIPRanges) != 1 || cert.ExcludedIPRanges[0].String() != "2001:db8::/48" { 716 t.Errorf("%s: failed to parse IP constraint exclusions: %#v", test.name, cert.ExcludedIPRanges) 717 } 718 719 if len(cert.PermittedEmailAddresses) != 1 || cert.PermittedEmailAddresses[0] != "foo@example.com" { 720 t.Errorf("%s: failed to parse permitted email addreses: %#v", test.name, cert.PermittedEmailAddresses) 721 } 722 723 if len(cert.ExcludedEmailAddresses) != 2 || cert.ExcludedEmailAddresses[0] != ".example.com" || cert.ExcludedEmailAddresses[1] != "example.com" { 724 t.Errorf("%s: failed to parse excluded email addreses: %#v", test.name, cert.ExcludedEmailAddresses) 725 } 726 727 if len(cert.PermittedURIDomains) != 2 || cert.PermittedURIDomains[0] != ".bar.com" || cert.PermittedURIDomains[1] != "bar.com" { 728 t.Errorf("%s: failed to parse permitted URIs: %#v", test.name, cert.PermittedURIDomains) 729 } 730 731 if len(cert.ExcludedURIDomains) != 2 || cert.ExcludedURIDomains[0] != ".bar2.com" || cert.ExcludedURIDomains[1] != "bar2.com" { 732 t.Errorf("%s: failed to parse excluded URIs: %#v", test.name, cert.ExcludedURIDomains) 733 } 734 735 if cert.Subject.CommonName != commonName { 736 t.Errorf("%s: subject wasn't correctly copied from the template. Got %s, want %s", test.name, cert.Subject.CommonName, commonName) 737 } 738 739 if len(cert.Subject.Country) != 1 || cert.Subject.Country[0] != "NL" { 740 t.Errorf("%s: ExtraNames didn't override Country", test.name) 741 } 742 743 for _, ext := range cert.Extensions { 744 if ext.Id.Equal(oidExtensionSubjectAltName) { 745 if ext.Critical { 746 t.Fatal("SAN extension is marked critical") 747 } 748 } 749 } 750 751 found := false 752 for _, atv := range cert.Subject.Names { 753 if atv.Type.Equal([]int{2, 5, 4, 42}) { 754 found = true 755 break 756 } 757 } 758 if !found { 759 t.Errorf("%s: Names didn't contain oid 2.5.4.42 from ExtraNames", test.name) 760 } 761 762 if cert.Issuer.CommonName != commonName { 763 t.Errorf("%s: issuer wasn't correctly copied from the template. Got %s, want %s", test.name, cert.Issuer.CommonName, commonName) 764 } 765 766 if cert.SignatureAlgorithm != test.sigAlgo { 767 t.Errorf("%s: SignatureAlgorithm wasn't copied from template. Got %v, want %v", test.name, cert.SignatureAlgorithm, test.sigAlgo) 768 } 769 770 if !reflect.DeepEqual(cert.ExtKeyUsage, testExtKeyUsage) { 771 t.Errorf("%s: extkeyusage wasn't correctly copied from the template. Got %v, want %v", test.name, cert.ExtKeyUsage, testExtKeyUsage) 772 } 773 774 if !reflect.DeepEqual(cert.UnknownExtKeyUsage, testUnknownExtKeyUsage) { 775 t.Errorf("%s: unknown extkeyusage wasn't correctly copied from the template. Got %v, want %v", test.name, cert.UnknownExtKeyUsage, testUnknownExtKeyUsage) 776 } 777 778 if !reflect.DeepEqual(cert.OCSPServer, template.OCSPServer) { 779 t.Errorf("%s: OCSP servers differ from template. Got %v, want %v", test.name, cert.OCSPServer, template.OCSPServer) 780 } 781 782 if !reflect.DeepEqual(cert.IssuingCertificateURL, template.IssuingCertificateURL) { 783 t.Errorf("%s: Issuing certificate URLs differ from template. Got %v, want %v", test.name, cert.IssuingCertificateURL, template.IssuingCertificateURL) 784 } 785 786 if !reflect.DeepEqual(cert.DNSNames, template.DNSNames) { 787 t.Errorf("%s: SAN DNS names differ from template. Got %v, want %v", test.name, cert.DNSNames, template.DNSNames) 788 } 789 790 if !reflect.DeepEqual(cert.EmailAddresses, template.EmailAddresses) { 791 t.Errorf("%s: SAN emails differ from template. Got %v, want %v", test.name, cert.EmailAddresses, template.EmailAddresses) 792 } 793 794 if len(cert.URIs) != 1 || cert.URIs[0].String() != "https://foo.com/wibble#foo" { 795 t.Errorf("%s: URIs differ from template. Got %v, want %v", test.name, cert.URIs, template.URIs) 796 } 797 798 if !reflect.DeepEqual(cert.IPAddresses, template.IPAddresses) { 799 t.Errorf("%s: SAN IPs differ from template. Got %v, want %v", test.name, cert.IPAddresses, template.IPAddresses) 800 } 801 802 if !reflect.DeepEqual(cert.CRLDistributionPoints, template.CRLDistributionPoints) { 803 t.Errorf("%s: CRL distribution points differ from template. Got %v, want %v", test.name, cert.CRLDistributionPoints, template.CRLDistributionPoints) 804 } 805 806 if !bytes.Equal(cert.SubjectKeyId, []byte{4, 3, 2, 1}) { 807 t.Errorf("%s: ExtraExtensions didn't override SubjectKeyId", test.name) 808 } 809 810 if !bytes.Contains(derBytes, extraExtensionData) { 811 t.Errorf("%s: didn't find extra extension in DER output", test.name) 812 } 813 814 if test.checkSig { 815 err = cert.CheckSignatureFrom(cert) 816 if err != nil { 817 t.Errorf("%s: signature verification failed: %s", test.name, err) 818 } 819 } 820 } 821 } 822 823 // Self-signed certificate using ECDSA with SHA1 & secp256r1 824 var ecdsaSHA1CertPem = ` 825 -----BEGIN CERTIFICATE----- 826 MIICDjCCAbUCCQDF6SfN0nsnrjAJBgcqhkjOPQQBMIGPMQswCQYDVQQGEwJVUzET 827 MBEGA1UECAwKQ2FsaWZvcm5pYTEWMBQGA1UEBwwNTW91bnRhaW4gVmlldzEVMBMG 828 A1UECgwMR29vZ2xlLCBJbmMuMRcwFQYDVQQDDA53d3cuZ29vZ2xlLmNvbTEjMCEG 829 CSqGSIb3DQEJARYUZ29sYW5nLWRldkBnbWFpbC5jb20wHhcNMTIwNTIwMjAyMDUw 830 WhcNMjIwNTE4MjAyMDUwWjCBjzELMAkGA1UEBhMCVVMxEzARBgNVBAgMCkNhbGlm 831 b3JuaWExFjAUBgNVBAcMDU1vdW50YWluIFZpZXcxFTATBgNVBAoMDEdvb2dsZSwg 832 SW5jLjEXMBUGA1UEAwwOd3d3Lmdvb2dsZS5jb20xIzAhBgkqhkiG9w0BCQEWFGdv 833 bGFuZy1kZXZAZ21haWwuY29tMFkwEwYHKoZIzj0CAQYIKoZIzj0DAQcDQgAE/Wgn 834 WQDo5+bz71T0327ERgd5SDDXFbXLpzIZDXTkjpe8QTEbsF+ezsQfrekrpDPC4Cd3 835 P9LY0tG+aI8IyVKdUjAJBgcqhkjOPQQBA0gAMEUCIGlsqMcRqWVIWTD6wXwe6Jk2 836 DKxL46r/FLgJYnzBEH99AiEA3fBouObsvV1R3oVkb4BQYnD4/4LeId6lAT43YvyV 837 a/A= 838 -----END CERTIFICATE----- 839 ` 840 841 // Self-signed certificate using ECDSA with SHA256 & secp256r1 842 var ecdsaSHA256p256CertPem = ` 843 -----BEGIN CERTIFICATE----- 844 MIICDzCCAbYCCQDlsuMWvgQzhTAKBggqhkjOPQQDAjCBjzELMAkGA1UEBhMCVVMx 845 EzARBgNVBAgMCkNhbGlmb3JuaWExFjAUBgNVBAcMDU1vdW50YWluIFZpZXcxFTAT 846 BgNVBAoMDEdvb2dsZSwgSW5jLjEXMBUGA1UEAwwOd3d3Lmdvb2dsZS5jb20xIzAh 847 BgkqhkiG9w0BCQEWFGdvbGFuZy1kZXZAZ21haWwuY29tMB4XDTEyMDUyMTAwMTkx 848 NloXDTIyMDUxOTAwMTkxNlowgY8xCzAJBgNVBAYTAlVTMRMwEQYDVQQIDApDYWxp 849 Zm9ybmlhMRYwFAYDVQQHDA1Nb3VudGFpbiBWaWV3MRUwEwYDVQQKDAxHb29nbGUs 850 IEluYy4xFzAVBgNVBAMMDnd3dy5nb29nbGUuY29tMSMwIQYJKoZIhvcNAQkBFhRn 851 b2xhbmctZGV2QGdtYWlsLmNvbTBZMBMGByqGSM49AgEGCCqGSM49AwEHA0IABPMt 852 2ErhxAty5EJRu9yM+MTy+hUXm3pdW1ensAv382KoGExSXAFWP7pjJnNtHO+XSwVm 853 YNtqjcAGFKpweoN//kQwCgYIKoZIzj0EAwIDRwAwRAIgIYSaUA/IB81gjbIw/hUV 854 70twxJr5EcgOo0hLp3Jm+EYCIFDO3NNcgmURbJ1kfoS3N/0O+irUtoPw38YoNkqJ 855 h5wi 856 -----END CERTIFICATE----- 857 ` 858 859 // Self-signed certificate using ECDSA with SHA256 & secp384r1 860 var ecdsaSHA256p384CertPem = ` 861 -----BEGIN CERTIFICATE----- 862 MIICSjCCAdECCQDje/no7mXkVzAKBggqhkjOPQQDAjCBjjELMAkGA1UEBhMCVVMx 863 EzARBgNVBAgMCkNhbGlmb3JuaWExFjAUBgNVBAcMDU1vdW50YWluIFZpZXcxFDAS 864 BgNVBAoMC0dvb2dsZSwgSW5jMRcwFQYDVQQDDA53d3cuZ29vZ2xlLmNvbTEjMCEG 865 CSqGSIb3DQEJARYUZ29sYW5nLWRldkBnbWFpbC5jb20wHhcNMTIwNTIxMDYxMDM0 866 WhcNMjIwNTE5MDYxMDM0WjCBjjELMAkGA1UEBhMCVVMxEzARBgNVBAgMCkNhbGlm 867 b3JuaWExFjAUBgNVBAcMDU1vdW50YWluIFZpZXcxFDASBgNVBAoMC0dvb2dsZSwg 868 SW5jMRcwFQYDVQQDDA53d3cuZ29vZ2xlLmNvbTEjMCEGCSqGSIb3DQEJARYUZ29s 869 YW5nLWRldkBnbWFpbC5jb20wdjAQBgcqhkjOPQIBBgUrgQQAIgNiAARRuzRNIKRK 870 jIktEmXanNmrTR/q/FaHXLhWRZ6nHWe26Fw7Rsrbk+VjGy4vfWtNn7xSFKrOu5ze 871 qxKnmE0h5E480MNgrUiRkaGO2GMJJVmxx20aqkXOk59U8yGA4CghE6MwCgYIKoZI 872 zj0EAwIDZwAwZAIwBZEN8gvmRmfeP/9C1PRLzODIY4JqWub2PLRT4mv9GU+yw3Gr 873 PU9A3CHMdEcdw/MEAjBBO1lId8KOCh9UZunsSMfqXiVurpzmhWd6VYZ/32G+M+Mh 874 3yILeYQzllt/g0rKVRk= 875 -----END CERTIFICATE----- 876 ` 877 878 // Self-signed certificate using ECDSA with SHA384 & secp521r1 879 var ecdsaSHA384p521CertPem = ` 880 -----BEGIN CERTIFICATE----- 881 MIICljCCAfcCCQDhp1AFD/ahKjAKBggqhkjOPQQDAzCBjjELMAkGA1UEBhMCVVMx 882 EzARBgNVBAgMCkNhbGlmb3JuaWExFjAUBgNVBAcMDU1vdW50YWluIFZpZXcxFDAS 883 BgNVBAoMC0dvb2dsZSwgSW5jMRcwFQYDVQQDDA53d3cuZ29vZ2xlLmNvbTEjMCEG 884 CSqGSIb3DQEJARYUZ29sYW5nLWRldkBnbWFpbC5jb20wHhcNMTIwNTIxMTUwNDI5 885 WhcNMjIwNTE5MTUwNDI5WjCBjjELMAkGA1UEBhMCVVMxEzARBgNVBAgMCkNhbGlm 886 b3JuaWExFjAUBgNVBAcMDU1vdW50YWluIFZpZXcxFDASBgNVBAoMC0dvb2dsZSwg 887 SW5jMRcwFQYDVQQDDA53d3cuZ29vZ2xlLmNvbTEjMCEGCSqGSIb3DQEJARYUZ29s 888 YW5nLWRldkBnbWFpbC5jb20wgZswEAYHKoZIzj0CAQYFK4EEACMDgYYABACqx9Rv 889 IssRs1LWYcNN+WffwlHw4Tv3y8/LIAA9MF1ZScIonU9nRMxt4a2uGJVCPDw6JHpz 890 PaYc0E9puLoE9AfKpwFr59Jkot7dBg55SKPEFkddoip/rvmN7NPAWjMBirOwjOkm 891 8FPthvPhGPqsu9AvgVuHu3PosWiHGNrhh379pva8MzAKBggqhkjOPQQDAwOBjAAw 892 gYgCQgEHNmswkUdPpHqrVxp9PvLVl+xxPuHBkT+75z9JizyxtqykHQo9Uh6SWCYH 893 BF9KLolo01wMt8DjoYP5Fb3j5MH7xwJCAbWZzTOp4l4DPkIvAh4LeC4VWbwPPyqh 894 kBg71w/iEcSY3wUKgHGcJJrObZw7wys91I5kENljqw/Samdr3ka+jBJa 895 -----END CERTIFICATE----- 896 ` 897 898 var ecdsaTests = []struct { 899 sigAlgo SignatureAlgorithm 900 pemCert string 901 }{ 902 {ECDSAWithSHA1, ecdsaSHA1CertPem}, 903 {ECDSAWithSHA256, ecdsaSHA256p256CertPem}, 904 {ECDSAWithSHA256, ecdsaSHA256p384CertPem}, 905 {ECDSAWithSHA384, ecdsaSHA384p521CertPem}, 906 } 907 908 func TestECDSA(t *testing.T) { 909 for i, test := range ecdsaTests { 910 pemBlock, _ := pem.Decode([]byte(test.pemCert)) 911 cert, err := ParseCertificate(pemBlock.Bytes) 912 if err != nil { 913 t.Errorf("%d: failed to parse certificate: %s", i, err) 914 continue 915 } 916 if sa := cert.SignatureAlgorithm; sa != test.sigAlgo { 917 t.Errorf("%d: signature algorithm is %v, want %v", i, sa, test.sigAlgo) 918 } 919 if parsedKey, ok := cert.PublicKey.(*ecdsa.PublicKey); !ok { 920 t.Errorf("%d: wanted an ECDSA public key but found: %#v", i, parsedKey) 921 } 922 if pka := cert.PublicKeyAlgorithm; pka != ECDSA { 923 t.Errorf("%d: public key algorithm is %v, want ECDSA", i, pka) 924 } 925 if err = cert.CheckSignatureFrom(cert); err != nil { 926 t.Errorf("%d: certificate verification failed: %s", i, err) 927 } 928 } 929 } 930 931 // Self-signed certificate using DSA with SHA1 932 var dsaCertPem = `-----BEGIN CERTIFICATE----- 933 MIIEDTCCA82gAwIBAgIJALHPghaoxeDhMAkGByqGSM44BAMweTELMAkGA1UEBhMC 934 VVMxCzAJBgNVBAgTAk5DMQ8wDQYDVQQHEwZOZXd0b24xFDASBgNVBAoTC0dvb2ds 935 ZSwgSW5jMRIwEAYDVQQDEwlKb24gQWxsaWUxIjAgBgkqhkiG9w0BCQEWE2pvbmFs 936 bGllQGdvb2dsZS5jb20wHhcNMTEwNTE0MDMwMTQ1WhcNMTEwNjEzMDMwMTQ1WjB5 937 MQswCQYDVQQGEwJVUzELMAkGA1UECBMCTkMxDzANBgNVBAcTBk5ld3RvbjEUMBIG 938 A1UEChMLR29vZ2xlLCBJbmMxEjAQBgNVBAMTCUpvbiBBbGxpZTEiMCAGCSqGSIb3 939 DQEJARYTam9uYWxsaWVAZ29vZ2xlLmNvbTCCAbcwggEsBgcqhkjOOAQBMIIBHwKB 940 gQC8hLUnQ7FpFYu4WXTj6DKvXvz8QrJkNJCVMTpKAT7uBpobk32S5RrPKXocd4gN 941 8lyGB9ggS03EVlEwXvSmO0DH2MQtke2jl9j1HLydClMf4sbx5V6TV9IFw505U1iW 942 jL7awRMgxge+FsudtJK254FjMFo03ZnOQ8ZJJ9E6AEDrlwIVAJpnBn9moyP11Ox5 943 Asc/5dnjb6dPAoGBAJFHd4KVv1iTVCvEG6gGiYop5DJh28hUQcN9kul+2A0yPUSC 944 X93oN00P8Vh3eYgSaCWZsha7zDG53MrVJ0Zf6v/X/CoZNhLldeNOepivTRAzn+Rz 945 kKUYy5l1sxYLHQKF0UGNCXfFKZT0PCmgU+PWhYNBBMn6/cIh44vp85ideo5CA4GE 946 AAKBgFmifCafzeRaohYKXJgMGSEaggCVCRq5xdyDCat+wbOkjC4mfG01/um3G8u5 947 LxasjlWRKTR/tcAL7t0QuokVyQaYdVypZXNaMtx1db7YBuHjj3aP+8JOQRI9xz8c 948 bp5NDJ5pISiFOv4p3GZfqZPcqckDt78AtkQrmnal2txhhjF6o4HeMIHbMB0GA1Ud 949 DgQWBBQVyyr7hO11ZFFpWX50298Sa3V+rzCBqwYDVR0jBIGjMIGggBQVyyr7hO11 950 ZFFpWX50298Sa3V+r6F9pHsweTELMAkGA1UEBhMCVVMxCzAJBgNVBAgTAk5DMQ8w 951 DQYDVQQHEwZOZXd0b24xFDASBgNVBAoTC0dvb2dsZSwgSW5jMRIwEAYDVQQDEwlK 952 b24gQWxsaWUxIjAgBgkqhkiG9w0BCQEWE2pvbmFsbGllQGdvb2dsZS5jb22CCQCx 953 z4IWqMXg4TAMBgNVHRMEBTADAQH/MAkGByqGSM44BAMDLwAwLAIUPtn/5j8Q1jJI 954 7ggOIsgrhgUdjGQCFCsmDq1H11q9+9Wp9IMeGrTSKHIM 955 -----END CERTIFICATE----- 956 ` 957 958 // func TestParseCertificateWithDsaPublicKey(t *testing.T) { 959 // expectedKey := &dsa.PublicKey{ 960 // Parameters: dsa.Parameters{ 961 // P: bigFromHexString("00BC84B52743B169158BB85974E3E832AF5EFCFC42B264349095313A4A013EEE069A1B937D92E51ACF297A1C77880DF25C8607D8204B4DC45651305EF4A63B40C7D8C42D91EDA397D8F51CBC9D0A531FE2C6F1E55E9357D205C39D395358968CBEDAC11320C607BE16CB9DB492B6E78163305A34DD99CE43C64927D13A0040EB97"), 962 // Q: bigFromHexString("009A67067F66A323F5D4EC7902C73FE5D9E36FA74F"), 963 // G: bigFromHexString("009147778295BF5893542BC41BA806898A29E43261DBC85441C37D92E97ED80D323D44825FDDE8374D0FF15877798812682599B216BBCC31B9DCCAD527465FEAFFD7FC2A193612E575E34E7A98AF4D10339FE47390A518CB9975B3160B1D0285D1418D0977C52994F43C29A053E3D685834104C9FAFDC221E38BE9F3989D7A8E42"), 964 // }, 965 // Y: bigFromHexString("59A27C269FCDE45AA2160A5C980C19211A820095091AB9C5DC8309AB7EC1B3A48C2E267C6D35FEE9B71BCBB92F16AC8E559129347FB5C00BEEDD10BA8915C90698755CA965735A32DC7575BED806E1E38F768FFBC24E41123DC73F1C6E9E4D0C9E692128853AFE29DC665FA993DCA9C903B7BF00B6442B9A76A5DADC6186317A"), 966 // } 967 // pemBlock, _ := pem.Decode([]byte(dsaCertPem)) 968 // cert, err := ParseCertificate(pemBlock.Bytes) 969 // if err != nil { 970 // t.Fatalf("Failed to parse certificate: %s", err) 971 // } 972 // if cert.PublicKeyAlgorithm != DSA { 973 // t.Errorf("Parsed key algorithm was not DSA") 974 // } 975 // parsedKey, ok := cert.PublicKey.(*dsa.PublicKey) 976 // if !ok { 977 // t.Fatalf("Parsed key was not a DSA key: %s", err) 978 // } 979 // if expectedKey.Y.Cmp(parsedKey.Y) != 0 || 980 // expectedKey.P.Cmp(parsedKey.P) != 0 || 981 // expectedKey.Q.Cmp(parsedKey.Q) != 0 || 982 // expectedKey.G.Cmp(parsedKey.G) != 0 { 983 // t.Fatal("Parsed key differs from expected key") 984 // } 985 // } 986 987 func TestParseCertificateWithDSASignatureAlgorithm(t *testing.T) { 988 pemBlock, _ := pem.Decode([]byte(dsaCertPem)) 989 cert, err := ParseCertificate(pemBlock.Bytes) 990 if err != nil { 991 t.Fatalf("Failed to parse certificate: %s", err) 992 } 993 if cert.SignatureAlgorithm != DSAWithSHA1 { 994 t.Errorf("Parsed signature algorithm was not DSAWithSHA1") 995 } 996 } 997 998 func TestVerifyCertificateWithDSASignature(t *testing.T) { 999 pemBlock, _ := pem.Decode([]byte(dsaCertPem)) 1000 cert, err := ParseCertificate(pemBlock.Bytes) 1001 if err != nil { 1002 t.Fatalf("Failed to parse certificate: %s", err) 1003 } 1004 // test cert is self-signed 1005 if err = cert.CheckSignatureFrom(cert); err == nil { 1006 t.Fatalf("Expected error verifying DSA certificate") 1007 } 1008 } 1009 1010 var rsaPSSSelfSignedPEM = `-----BEGIN CERTIFICATE----- 1011 MIIGHjCCA9KgAwIBAgIBdjBBBgkqhkiG9w0BAQowNKAPMA0GCWCGSAFlAwQCAQUA 1012 oRwwGgYJKoZIhvcNAQEIMA0GCWCGSAFlAwQCAQUAogMCASAwbjELMAkGA1UEBhMC 1013 SlAxHDAaBgNVBAoME0phcGFuZXNlIEdvdmVybm1lbnQxKDAmBgNVBAsMH1RoZSBN 1014 aW5pc3RyeSBvZiBGb3JlaWduIEFmZmFpcnMxFzAVBgNVBAMMDmUtcGFzc3BvcnRD 1015 U0NBMB4XDTEzMDUxNDA1MDczMFoXDTI5MDUxNDA1MDczMFowbjELMAkGA1UEBhMC 1016 SlAxHDAaBgNVBAoME0phcGFuZXNlIEdvdmVybm1lbnQxKDAmBgNVBAsMH1RoZSBN 1017 aW5pc3RyeSBvZiBGb3JlaWduIEFmZmFpcnMxFzAVBgNVBAMMDmUtcGFzc3BvcnRD 1018 U0NBMIICIjANBgkqhkiG9w0BAQEFAAOCAg8AMIICCgKCAgEAx/E3WRVxcCDXhoST 1019 8nVSLjW6hwM4Ni99AegWzcGtfGFo0zjFA1Cl5URqxauvYu3gQgQHBGA1CovWeGrl 1020 yVSRzOL1imcYsSgLOcnhVYB3Xcrof4ebv9+W+TwNdc9YzAwcj8rNd5nP6PKXIQ+W 1021 PCkEOXdyb80YEnxuT+NPjkVfFSPBS7QYZpvT2fwy4fZ0eh48253+7VleSmTO0mqj 1022 7TlzaG56q150SLZbhpOd8jD8bM/wACnLCPR88wj4hCcDLEwoLyY85HJCTIQQMnoT 1023 UpqyzEeupPREIm6yi4d8C9YqIWFn2YTnRcWcmMaJLzq+kYwKoudfnoC6RW2vzZXn 1024 defQs68IZuK+uALu9G3JWGPgu0CQGj0JNDT8zkiDV++4eNrZczWKjr1YnAL+VbLK 1025 bApwL2u19l2WDpfUklimhWfraqHNIUKU6CjZOG31RzXcplIj0mtqs0E1r7r357Es 1026 yFoB28iNo4cz1lCulh0E4WJzWzLZcT4ZspHHRCFyvYnXoibXEV1nULq8ByKKG0FS 1027 7nn4SseoV+8PvjHLPhmHGMvi4mxkbcXdV3wthHT1/HXdqY84A4xHWt1+sB/TpTek 1028 tDhFlEfcUygvTu58UtOnysomOVVeERmi7WSujfzKsGJAJYeetiA5R+zX7BxeyFVE 1029 qW0zh1Tkwh0S8LRe5diJh4+6FG0CAwEAAaNfMF0wHQYDVR0OBBYEFD+oahaikBTV 1030 Urk81Uz7kRS2sx0aMA4GA1UdDwEB/wQEAwIBBjAYBgNVHSAEETAPMA0GCyqDCIaP 1031 fgYFAQEBMBIGA1UdEwEB/wQIMAYBAf8CAQAwQQYJKoZIhvcNAQEKMDSgDzANBglg 1032 hkgBZQMEAgEFAKEcMBoGCSqGSIb3DQEBCDANBglghkgBZQMEAgEFAKIDAgEgA4IC 1033 AQAaxWBQn5CZuNBfyzL57mn31ukHUFd61OMROSX3PT7oCv1Dy+C2AdRlxOcbN3/n 1034 li0yfXUUqiY3COlLAHKRlkr97mLtxEFoJ0R8nVN2IQdChNQM/XSCzSGyY8NVa1OR 1035 TTpEWLnexJ9kvIdbFXwUqdTnAkOI0m7Rg8j+E+lRRHg1xDAA1qKttrtUj3HRQWf3 1036 kNTu628SiMvap6aIdncburaK56MP7gkR1Wr/ichOfjIA3Jgw2PapI31i0GqeMd66 1037 U1+lC9FeyMAJpuSVp/SoiYzYo+79SFcVoM2yw3yAnIKg7q9GLYYqzncdykT6C06c 1038 15gWFI6igmReAsD9ITSvYh0jLrLHfEYcPTOD3ZXJ4EwwHtWSoO3gq1EAtOYKu/Lv 1039 C8zfBsZcFdsHvsSiYeBU8Oioe42mguky3Ax9O7D805Ek6R68ra07MW/G4YxvV7IN 1040 2BfSaYy8MX9IG0ZMIOcoc0FeF5xkFmJ7kdrlTaJzC0IE9PNxNaH5QnOAFB8vxHcO 1041 FioUxb6UKdHcPLR1VZtAdTdTMjSJxUqD/35Cdfqs7oDJXz8f6TXO2Tdy6G++YUs9 1042 qsGZWxzFvvkXUkQSl0dQQ5jO/FtUJcAVXVVp20LxPemfatAHpW31WdJYeWSQWky2 1043 +f9b5TXKXVyjlUL7uHxowWrT2AtTchDH22wTEtqLEF9Z3Q== 1044 -----END CERTIFICATE-----` 1045 1046 // openssl req -newkey rsa:2048 -keyout test.key -sha256 -sigopt \ 1047 // rsa_padding_mode:pss -sigopt rsa_pss_saltlen:32 -sigopt rsa_mgf1_md:sha256 \ 1048 // -x509 -days 3650 -nodes -subj '/C=US/ST=CA/L=SF/O=Test/CN=Test' -out \ 1049 // test.pem 1050 var rsaPSSSelfSignedOpenSSL110PEM = `-----BEGIN CERTIFICATE----- 1051 MIIDwDCCAnigAwIBAgIJAM9LAMHTE5xpMD0GCSqGSIb3DQEBCjAwoA0wCwYJYIZI 1052 AWUDBAIBoRowGAYJKoZIhvcNAQEIMAsGCWCGSAFlAwQCAaIDAgEgMEUxCzAJBgNV 1053 BAYTAlVTMQswCQYDVQQIDAJDQTELMAkGA1UEBwwCU0YxDTALBgNVBAoMBFRlc3Qx 1054 DTALBgNVBAMMBFRlc3QwHhcNMTgwMjIyMjIxMzE4WhcNMjgwMjIwMjIxMzE4WjBF 1055 MQswCQYDVQQGEwJVUzELMAkGA1UECAwCQ0ExCzAJBgNVBAcMAlNGMQ0wCwYDVQQK 1056 DARUZXN0MQ0wCwYDVQQDDARUZXN0MIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIB 1057 CgKCAQEA4Zrsydod+GoTAJLLutWNF87qhhVPBsK1zB1Gj+NAAe4+VbrZ1E41H1wp 1058 qITx7DA8DRtJEf+NqrTAnAdZWBG/tAOA5LfXVax0ZSQtLnYLSeylLoMtDyY3eFAj 1059 TmuTOoyVy6raktowCnHCh01NsstqqTfrx6SbmzOmDmKTkq/I+7K0MCVsn41xRDVM 1060 +ShD0WGFGioEGoiWnFSWupxJDA3Q6jIDEygVwNKHwnhv/2NgG2kqZzrZSQA67en0 1061 iKAXtoDNPpmyD5oS9YbEJ+2Nbm7oLeON30i6kZvXKIzJXx+UWViazHZqnsi5rQ8G 1062 RHF+iVFXsqd0MzDKmkKOT5FDhrsbKQIDAQABo1MwUTAdBgNVHQ4EFgQU9uFY/nlg 1063 gLH00NBnr/o7QvpN9ugwHwYDVR0jBBgwFoAU9uFY/nlggLH00NBnr/o7QvpN9ugw 1064 DwYDVR0TAQH/BAUwAwEB/zA9BgkqhkiG9w0BAQowMKANMAsGCWCGSAFlAwQCAaEa 1065 MBgGCSqGSIb3DQEBCDALBglghkgBZQMEAgGiAwIBIAOCAQEAhJzpwxBNGKvzKWDe 1066 WLqv6RMrl/q4GcH3b7M9wjxe0yOm4F+Tb2zJ7re4h+D39YkJf8cX1NV9UQVu6z4s 1067 Fvo2kmlR0qZOXAg5augmCQ1xS0WHFoF6B52anNzHkZQbAIYJ3kGoFsUHzs7Sz7F/ 1068 656FsRpHA9UzJQ3avPPMrA4Y4aoJ7ANJ6XIwTrdWrhULOVuvYRLCl4CdTVztVFX6 1069 wxX8nS1ISYd8jXPUMgsBKVbWufvLoIymMJW8CZbpprVZel5zFn0bmPrON8IHS30w 1070 Gs+ITJjKEnZgXmAQ25SLKVzkZkBcGANs2GsdHNJ370Puisy0FIPD2NXR5uASAf7J 1071 +w9fjQ== 1072 -----END CERTIFICATE-----` 1073 1074 func TestRSAPSSSelfSigned(t *testing.T) { 1075 for i, pemBlock := range []string{rsaPSSSelfSignedPEM, rsaPSSSelfSignedOpenSSL110PEM} { 1076 der, _ := pem.Decode([]byte(pemBlock)) 1077 if der == nil { 1078 t.Errorf("#%d: failed to find PEM block", i) 1079 continue 1080 } 1081 1082 cert, err := ParseCertificate(der.Bytes) 1083 if err != nil { 1084 t.Errorf("#%d: failed to parse: %s", i, err) 1085 continue 1086 } 1087 1088 if err = cert.CheckSignatureFrom(cert); err != nil { 1089 t.Errorf("#%d: signature check failed: %s", i, err) 1090 continue 1091 } 1092 } 1093 } 1094 1095 const ed25519Certificate = ` 1096 Certificate: 1097 Data: 1098 Version: 3 (0x2) 1099 Serial Number: 1100 0c:83:d8:21:2b:82:cb:23:98:23:63:e2:f7:97:8a:43:5b:f3:bd:92 1101 Signature Algorithm: ED25519 1102 Issuer: CN = Ed25519 test certificate 1103 Validity 1104 Not Before: May 6 17:27:16 2019 GMT 1105 Not After : Jun 5 17:27:16 2019 GMT 1106 Subject: CN = Ed25519 test certificate 1107 Subject Public Key Info: 1108 Public Key Algorithm: ED25519 1109 ED25519 Public-Key: 1110 pub: 1111 36:29:c5:6c:0d:4f:14:6c:81:d0:ff:75:d3:6a:70: 1112 5f:69:cd:0f:4d:66:d5:da:98:7e:82:49:89:a3:8a: 1113 3c:fa 1114 X509v3 extensions: 1115 X509v3 Subject Key Identifier: 1116 09:3B:3A:9D:4A:29:D8:95:FF:68:BE:7B:43:54:72:E0:AD:A2:E3:AE 1117 X509v3 Authority Key Identifier: 1118 keyid:09:3B:3A:9D:4A:29:D8:95:FF:68:BE:7B:43:54:72:E0:AD:A2:E3:AE 1119 1120 X509v3 Basic Constraints: critical 1121 CA:TRUE 1122 Signature Algorithm: ED25519 1123 53:a5:58:1c:2c:3b:2a:9e:ac:9d:4e:a5:1d:5f:5d:6d:a6:b5: 1124 08:de:12:82:f3:97:20:ae:fa:d8:98:f4:1a:83:32:6b:91:f5: 1125 24:1d:c4:20:7f:2c:e2:4d:da:13:3b:6d:54:1a:d2:a8:28:dc: 1126 60:b9:d4:f4:78:4b:3c:1c:91:00 1127 -----BEGIN CERTIFICATE----- 1128 MIIBWzCCAQ2gAwIBAgIUDIPYISuCyyOYI2Pi95eKQ1vzvZIwBQYDK2VwMCMxITAf 1129 BgNVBAMMGEVkMjU1MTkgdGVzdCBjZXJ0aWZpY2F0ZTAeFw0xOTA1MDYxNzI3MTZa 1130 Fw0xOTA2MDUxNzI3MTZaMCMxITAfBgNVBAMMGEVkMjU1MTkgdGVzdCBjZXJ0aWZp 1131 Y2F0ZTAqMAUGAytlcAMhADYpxWwNTxRsgdD/ddNqcF9pzQ9NZtXamH6CSYmjijz6 1132 o1MwUTAdBgNVHQ4EFgQUCTs6nUop2JX/aL57Q1Ry4K2i464wHwYDVR0jBBgwFoAU 1133 CTs6nUop2JX/aL57Q1Ry4K2i464wDwYDVR0TAQH/BAUwAwEB/zAFBgMrZXADQQBT 1134 pVgcLDsqnqydTqUdX11tprUI3hKC85cgrvrYmPQagzJrkfUkHcQgfyziTdoTO21U 1135 GtKoKNxgudT0eEs8HJEA 1136 -----END CERTIFICATE-----` 1137 1138 func TestEd25519SelfSigned(t *testing.T) { 1139 der, _ := pem.Decode([]byte(ed25519Certificate)) 1140 if der == nil { 1141 t.Fatalf("Failed to find PEM block") 1142 } 1143 1144 cert, err := ParseCertificate(der.Bytes) 1145 if err != nil { 1146 t.Fatalf("Failed to parse: %s", err) 1147 } 1148 1149 if cert.PublicKeyAlgorithm != Ed25519 { 1150 t.Fatalf("Parsed key algorithm was not Ed25519") 1151 } 1152 parsedKey, ok := cert.PublicKey.(ed25519.PublicKey) 1153 if !ok { 1154 t.Fatalf("Parsed key was not an Ed25519 key: %s", err) 1155 } 1156 if len(parsedKey) != ed25519.PublicKeySize { 1157 t.Fatalf("Invalid Ed25519 key") 1158 } 1159 1160 if err = cert.CheckSignatureFrom(cert); err != nil { 1161 t.Fatalf("Signature check failed: %s", err) 1162 } 1163 } 1164 1165 const pemCertificate = `-----BEGIN CERTIFICATE----- 1166 MIIDATCCAemgAwIBAgIRAKQkkrFx1T/dgB/Go/xBM5swDQYJKoZIhvcNAQELBQAw 1167 EjEQMA4GA1UEChMHQWNtZSBDbzAeFw0xNjA4MTcyMDM2MDdaFw0xNzA4MTcyMDM2 1168 MDdaMBIxEDAOBgNVBAoTB0FjbWUgQ28wggEiMA0GCSqGSIb3DQEBAQUAA4IBDwAw 1169 ggEKAoIBAQDAoJtjG7M6InsWwIo+l3qq9u+g2rKFXNu9/mZ24XQ8XhV6PUR+5HQ4 1170 jUFWC58ExYhottqK5zQtKGkw5NuhjowFUgWB/VlNGAUBHtJcWR/062wYrHBYRxJH 1171 qVXOpYKbIWwFKoXu3hcpg/CkdOlDWGKoZKBCwQwUBhWE7MDhpVdQ+ZljUJWL+FlK 1172 yQK5iRsJd5TGJ6VUzLzdT4fmN2DzeK6GLeyMpVpU3sWV90JJbxWQ4YrzkKzYhMmB 1173 EcpXTG2wm+ujiHU/k2p8zlf8Sm7VBM/scmnMFt0ynNXop4FWvJzEm1G0xD2t+e2I 1174 5Utr04dOZPCgkm++QJgYhtZvgW7ZZiGTAgMBAAGjUjBQMA4GA1UdDwEB/wQEAwIF 1175 oDATBgNVHSUEDDAKBggrBgEFBQcDATAMBgNVHRMBAf8EAjAAMBsGA1UdEQQUMBKC 1176 EHRlc3QuZXhhbXBsZS5jb20wDQYJKoZIhvcNAQELBQADggEBADpqKQxrthH5InC7 1177 X96UP0OJCu/lLEMkrjoEWYIQaFl7uLPxKH5AmQPH4lYwF7u7gksR7owVG9QU9fs6 1178 1fK7II9CVgCd/4tZ0zm98FmU4D0lHGtPARrrzoZaqVZcAvRnFTlPX5pFkPhVjjai 1179 /mkxX9LpD8oK1445DFHxK5UjLMmPIIWd8EOi+v5a+hgGwnJpoW7hntSl8kHMtTmy 1180 fnnktsblSUV4lRCit0ymC7Ojhe+gzCCwkgs5kDzVVag+tnl/0e2DloIjASwOhpbH 1181 KVcg7fBd484ht/sS+l0dsB4KDOSpd8JzVDMF8OZqlaydizoJO0yWr9GbCN1+OKq5 1182 EhLrEqU= 1183 -----END CERTIFICATE-----` 1184 1185 const ed25519CRLCertificate = ` 1186 Certificate: 1187 Data: 1188 Version: 3 (0x2) 1189 Serial Number: 1190 7a:07:a0:9d:14:04:16:fc:1f:d8:e5:fe:d1:1d:1f:8d 1191 Signature Algorithm: ED25519 1192 Issuer: CN = Ed25519 CRL Test CA 1193 Validity 1194 Not Before: Oct 30 01:20:20 2019 GMT 1195 Not After : Dec 31 23:59:59 9999 GMT 1196 Subject: CN = Ed25519 CRL Test CA 1197 Subject Public Key Info: 1198 Public Key Algorithm: ED25519 1199 ED25519 Public-Key: 1200 pub: 1201 95:73:3b:b0:06:2a:31:5a:b6:a7:a6:6e:ef:71:df: 1202 ac:6f:6b:39:03:85:5e:63:4b:f8:a6:0f:68:c6:6f: 1203 75:21 1204 X509v3 extensions: 1205 X509v3 Key Usage: critical 1206 Digital Signature, Certificate Sign, CRL Sign 1207 X509v3 Extended Key Usage: 1208 TLS Web Client Authentication, TLS Web Server Authentication, OCSP Signing 1209 X509v3 Basic Constraints: critical 1210 CA:TRUE 1211 X509v3 Subject Key Identifier: 1212 B7:17:DA:16:EA:C5:ED:1F:18:49:44:D3:D2:E3:A0:35:0A:81:93:60 1213 X509v3 Authority Key Identifier: 1214 keyid:B7:17:DA:16:EA:C5:ED:1F:18:49:44:D3:D2:E3:A0:35:0A:81:93:60 1215 1216 Signature Algorithm: ED25519 1217 fc:3e:14:ea:bb:70:c2:6f:38:34:70:bc:c8:a7:f4:7c:0d:1e: 1218 28:d7:2a:9f:22:8a:45:e8:02:76:84:1e:2d:64:2d:1e:09:b5: 1219 29:71:1f:95:8a:4e:79:87:51:60:9a:e7:86:40:f6:60:c7:d1: 1220 ee:68:76:17:1d:90:cc:92:93:07 1221 -----BEGIN CERTIFICATE----- 1222 MIIBijCCATygAwIBAgIQegegnRQEFvwf2OX+0R0fjTAFBgMrZXAwHjEcMBoGA1UE 1223 AxMTRWQyNTUxOSBDUkwgVGVzdCBDQTAgFw0xOTEwMzAwMTIwMjBaGA85OTk5MTIz 1224 MTIzNTk1OVowHjEcMBoGA1UEAxMTRWQyNTUxOSBDUkwgVGVzdCBDQTAqMAUGAytl 1225 cAMhAJVzO7AGKjFatqembu9x36xvazkDhV5jS/imD2jGb3Uho4GNMIGKMA4GA1Ud 1226 DwEB/wQEAwIBhjAnBgNVHSUEIDAeBggrBgEFBQcDAgYIKwYBBQUHAwEGCCsGAQUF 1227 BwMJMA8GA1UdEwEB/wQFMAMBAf8wHQYDVR0OBBYEFLcX2hbqxe0fGElE09LjoDUK 1228 gZNgMB8GA1UdIwQYMBaAFLcX2hbqxe0fGElE09LjoDUKgZNgMAUGAytlcANBAPw+ 1229 FOq7cMJvODRwvMin9HwNHijXKp8iikXoAnaEHi1kLR4JtSlxH5WKTnmHUWCa54ZA 1230 9mDH0e5odhcdkMySkwc= 1231 -----END CERTIFICATE-----` 1232 1233 var ed25519CRLKey = testingKey(`-----BEGIN TEST KEY----- 1234 MC4CAQAwBQYDK2VwBCIEINdKh2096vUBYu4EIFpjShsUSh3vimKya1sQ1YTT4RZG 1235 -----END TEST KEY-----`) 1236 1237 func TestCRLCreation(t *testing.T) { 1238 block, _ := pem.Decode([]byte(pemPrivateKey)) 1239 privRSA, _ := ParsePKCS1PrivateKey(block.Bytes) 1240 block, _ = pem.Decode([]byte(pemCertificate)) 1241 certRSA, _ := ParseCertificate(block.Bytes) 1242 1243 block, _ = pem.Decode([]byte(ed25519CRLKey)) 1244 privEd25519, _ := ParsePKCS8PrivateKey(block.Bytes) 1245 block, _ = pem.Decode([]byte(ed25519CRLCertificate)) 1246 certEd25519, _ := ParseCertificate(block.Bytes) 1247 1248 tests := []struct { 1249 name string 1250 priv interface{} 1251 cert *Certificate 1252 }{ 1253 {"RSA CA", privRSA, certRSA}, 1254 {"Ed25519 CA", privEd25519, certEd25519}, 1255 } 1256 1257 loc := time.FixedZone("Oz/Atlantis", int((2 * time.Hour).Seconds())) 1258 1259 now := time.Unix(1000, 0).In(loc) 1260 nowUTC := now.UTC() 1261 expiry := time.Unix(10000, 0) 1262 1263 revokedCerts := []pkix.RevokedCertificate{ 1264 { 1265 SerialNumber: big.NewInt(1), 1266 RevocationTime: nowUTC, 1267 }, 1268 { 1269 SerialNumber: big.NewInt(42), 1270 // RevocationTime should be converted to UTC before marshaling. 1271 RevocationTime: now, 1272 }, 1273 } 1274 expectedCerts := []pkix.RevokedCertificate{ 1275 { 1276 SerialNumber: big.NewInt(1), 1277 RevocationTime: nowUTC, 1278 }, 1279 { 1280 SerialNumber: big.NewInt(42), 1281 RevocationTime: nowUTC, 1282 }, 1283 } 1284 1285 for _, test := range tests { 1286 crlBytes, err := test.cert.CreateCRL(rand.Reader, test.priv, revokedCerts, now, expiry) 1287 if err != nil { 1288 t.Errorf("%s: error creating CRL: %s", test.name, err) 1289 } 1290 1291 parsedCRL, err := ParseDERCRL(crlBytes) 1292 if err != nil { 1293 t.Errorf("%s: error reparsing CRL: %s", test.name, err) 1294 } 1295 if !reflect.DeepEqual(parsedCRL.TBSCertList.RevokedCertificates, expectedCerts) { 1296 t.Errorf("%s: RevokedCertificates mismatch: got %v; want %v.", test.name, 1297 parsedCRL.TBSCertList.RevokedCertificates, expectedCerts) 1298 } 1299 } 1300 } 1301 1302 func fromBase64(in string) []byte { 1303 out := make([]byte, base64.StdEncoding.DecodedLen(len(in))) 1304 n, err := base64.StdEncoding.Decode(out, []byte(in)) 1305 if err != nil { 1306 panic("failed to base64 decode") 1307 } 1308 return out[:n] 1309 } 1310 1311 func TestParseDERCRL(t *testing.T) { 1312 derBytes := fromBase64(derCRLBase64) 1313 certList, err := ParseDERCRL(derBytes) 1314 if err != nil { 1315 t.Errorf("error parsing: %s", err) 1316 return 1317 } 1318 numCerts := len(certList.TBSCertList.RevokedCertificates) 1319 expected := 88 1320 if numCerts != expected { 1321 t.Errorf("bad number of revoked certificates. got: %d want: %d", numCerts, expected) 1322 } 1323 1324 if certList.HasExpired(time.Unix(1302517272, 0)) { 1325 t.Errorf("CRL has expired (but shouldn't have)") 1326 } 1327 1328 // Can't check the signature here without a package cycle. 1329 } 1330 1331 func TestCRLWithoutExpiry(t *testing.T) { 1332 derBytes := fromBase64("MIHYMIGZMAkGByqGSM44BAMwEjEQMA4GA1UEAxMHQ2FybERTUxcNOTkwODI3MDcwMDAwWjBpMBMCAgDIFw05OTA4MjIwNzAwMDBaMBMCAgDJFw05OTA4MjIwNzAwMDBaMBMCAgDTFw05OTA4MjIwNzAwMDBaMBMCAgDSFw05OTA4MjIwNzAwMDBaMBMCAgDUFw05OTA4MjQwNzAwMDBaMAkGByqGSM44BAMDLwAwLAIUfmVSdjP+NHMX0feW+aDU2G1cfT0CFAJ6W7fVWxjBz4fvftok8yqDnDWh") 1333 certList, err := ParseDERCRL(derBytes) 1334 if err != nil { 1335 t.Fatal(err) 1336 } 1337 if !certList.TBSCertList.NextUpdate.IsZero() { 1338 t.Errorf("NextUpdate is not the zero value") 1339 } 1340 } 1341 1342 func TestParsePEMCRL(t *testing.T) { 1343 pemBytes := fromBase64(pemCRLBase64) 1344 certList, err := ParseCRL(pemBytes) 1345 if err != nil { 1346 t.Errorf("error parsing: %s", err) 1347 return 1348 } 1349 numCerts := len(certList.TBSCertList.RevokedCertificates) 1350 expected := 2 1351 if numCerts != expected { 1352 t.Errorf("bad number of revoked certificates. got: %d want: %d", numCerts, expected) 1353 } 1354 1355 if certList.HasExpired(time.Unix(1302517272, 0)) { 1356 t.Errorf("CRL has expired (but shouldn't have)") 1357 } 1358 1359 // Can't check the signature here without a package cycle. 1360 } 1361 1362 func TestImports(t *testing.T) { 1363 if testing.Short() { 1364 t.Skip("skipping in -short mode") 1365 } 1366 testenv.MustHaveGoRun(t) 1367 1368 if out, err := exec.Command(testenv.GoToolPath(t), "run", "x509_test_import.go").CombinedOutput(); err != nil { 1369 t.Errorf("failed to run x509_test_import.go: %s\n%s", err, out) 1370 } 1371 } 1372 1373 const derCRLBase64 = "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" 1374 1375 const pemCRLBase64 = "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" 1376 1377 func TestCreateCertificateRequest(t *testing.T) { 1378 random := rand.Reader 1379 1380 ecdsa256Priv, err := ecdsa_ext.GenerateKey(elliptic.P256(), rand.Reader) 1381 if err != nil { 1382 t.Fatalf("Failed to generate ECDSA key: %s", err) 1383 } 1384 1385 ecdsa384Priv, err := ecdsa.GenerateKey(elliptic.P384(), rand.Reader) 1386 if err != nil { 1387 t.Fatalf("Failed to generate ECDSA key: %s", err) 1388 } 1389 1390 ecdsa521Priv, err := ecdsa.GenerateKey(elliptic.P521(), rand.Reader) 1391 if err != nil { 1392 t.Fatalf("Failed to generate ECDSA key: %s", err) 1393 } 1394 1395 _, ed25519Priv, err := ed25519.GenerateKey(random) 1396 if err != nil { 1397 t.Fatalf("Failed to generate Ed25519 key: %s", err) 1398 } 1399 1400 sm2Priv, err := sm2.GenerateKey(random) 1401 if err != nil { 1402 t.Fatalf("Failed to generate SM2 key: %s", err) 1403 } 1404 1405 tests := []struct { 1406 name string 1407 priv interface{} 1408 sigAlgo SignatureAlgorithm 1409 }{ 1410 {"RSA", testPrivateKey, SHA1WithRSA}, 1411 {"ECDSA-EXT-256", ecdsa256Priv, ECDSAEXTWithSHA256}, 1412 {"ECDSA-384", ecdsa384Priv, ECDSAWithSHA1}, 1413 {"ECDSA-521", ecdsa521Priv, ECDSAWithSHA1}, 1414 {"Ed25519", ed25519Priv, PureEd25519}, 1415 {"SM2", sm2Priv, SM2WithSM3}, 1416 } 1417 1418 for _, test := range tests { 1419 zclog.Debugf("开始测试 %s", test.name) 1420 template := CertificateRequest{ 1421 Subject: pkix.Name{ 1422 CommonName: "test.example.com", 1423 Organization: []string{"Σ Acme Co"}, 1424 }, 1425 SignatureAlgorithm: test.sigAlgo, 1426 DNSNames: []string{"test.example.com"}, 1427 EmailAddresses: []string{"gopher@golang.org"}, 1428 IPAddresses: []net.IP{net.IPv4(127, 0, 0, 1).To4(), net.ParseIP("2001:4860:0:2001::68")}, 1429 } 1430 1431 derBytes, err := CreateCertificateRequest(random, &template, test.priv) 1432 if err != nil { 1433 t.Errorf("%s: failed to create certificate request: %s", test.name, err) 1434 continue 1435 } 1436 1437 out, err := ParseCertificateRequest(derBytes) 1438 if err != nil { 1439 t.Errorf("%s: failed to create certificate request: %s", test.name, err) 1440 continue 1441 } 1442 1443 err = out.CheckSignature() 1444 if err != nil { 1445 t.Errorf("%s: failed to check certificate request signature: %s", test.name, err) 1446 continue 1447 } 1448 1449 if out.Subject.CommonName != template.Subject.CommonName { 1450 t.Errorf("%s: output subject common name and template subject common name don't match", test.name) 1451 } else if len(out.Subject.Organization) != len(template.Subject.Organization) { 1452 t.Errorf("%s: output subject organisation and template subject organisation don't match", test.name) 1453 } else if len(out.DNSNames) != len(template.DNSNames) { 1454 t.Errorf("%s: output DNS names and template DNS names don't match", test.name) 1455 } else if len(out.EmailAddresses) != len(template.EmailAddresses) { 1456 t.Errorf("%s: output email addresses and template email addresses don't match", test.name) 1457 } else if len(out.IPAddresses) != len(template.IPAddresses) { 1458 t.Errorf("%s: output IP addresses and template IP addresses names don't match", test.name) 1459 } 1460 } 1461 } 1462 1463 func marshalAndParseCSR(t *testing.T, template *CertificateRequest) *CertificateRequest { 1464 derBytes, err := CreateCertificateRequest(rand.Reader, template, testPrivateKey) 1465 if err != nil { 1466 t.Fatal(err) 1467 } 1468 1469 csr, err := ParseCertificateRequest(derBytes) 1470 if err != nil { 1471 t.Fatal(err) 1472 } 1473 1474 return csr 1475 } 1476 1477 func TestCertificateRequestOverrides(t *testing.T) { 1478 sanContents, err := marshalSANs([]string{"foo.example.com"}, nil, nil, nil) 1479 if err != nil { 1480 t.Fatal(err) 1481 } 1482 1483 template := CertificateRequest{ 1484 Subject: pkix.Name{ 1485 CommonName: "test.example.com", 1486 Organization: []string{"Σ Acme Co"}, 1487 }, 1488 DNSNames: []string{"test.example.com"}, 1489 1490 // An explicit extension should override the DNSNames from the 1491 // template. 1492 ExtraExtensions: []pkix.Extension{ 1493 { 1494 Id: oidExtensionSubjectAltName, 1495 Value: sanContents, 1496 Critical: true, 1497 }, 1498 }, 1499 } 1500 1501 csr := marshalAndParseCSR(t, &template) 1502 1503 if len(csr.DNSNames) != 1 || csr.DNSNames[0] != "foo.example.com" { 1504 t.Errorf("Extension did not override template. Got %v\n", csr.DNSNames) 1505 } 1506 1507 if len(csr.Extensions) != 1 || !csr.Extensions[0].Id.Equal(oidExtensionSubjectAltName) || !csr.Extensions[0].Critical { 1508 t.Errorf("SAN extension was not faithfully copied, got %#v", csr.Extensions) 1509 } 1510 1511 // If there is already an attribute with X.509 extensions then the 1512 // extra extensions should be added to it rather than creating a CSR 1513 // with two extension attributes. 1514 1515 //goland:noinspection GoDeprecation 1516 template.Attributes = []pkix.AttributeTypeAndValueSET{ 1517 { 1518 Type: oidExtensionRequest, 1519 Value: [][]pkix.AttributeTypeAndValue{ 1520 { 1521 { 1522 Type: oidExtensionAuthorityInfoAccess, 1523 Value: []byte("foo"), 1524 }, 1525 }, 1526 }, 1527 }, 1528 } 1529 1530 csr = marshalAndParseCSR(t, &template) 1531 //goland:noinspection GoDeprecation 1532 if l := len(csr.Attributes); l != 1 { 1533 t.Errorf("incorrect number of attributes: %d\n", l) 1534 } 1535 1536 //goland:noinspection GoDeprecation 1537 if !csr.Attributes[0].Type.Equal(oidExtensionRequest) || 1538 len(csr.Attributes[0].Value) != 1 || 1539 len(csr.Attributes[0].Value[0]) != 2 { 1540 t.Errorf("bad attributes: %#v\n", csr.Attributes) 1541 } 1542 1543 sanContents2, err := marshalSANs([]string{"foo2.example.com"}, nil, nil, nil) 1544 if err != nil { 1545 t.Fatal(err) 1546 } 1547 1548 // Extensions in Attributes should override those in ExtraExtensions. 1549 //goland:noinspection GoDeprecation 1550 template.Attributes[0].Value[0] = append(template.Attributes[0].Value[0], pkix.AttributeTypeAndValue{ 1551 Type: oidExtensionSubjectAltName, 1552 Value: sanContents2, 1553 }) 1554 1555 csr = marshalAndParseCSR(t, &template) 1556 1557 if len(csr.DNSNames) != 1 || csr.DNSNames[0] != "foo2.example.com" { 1558 t.Errorf("Attributes did not override ExtraExtensions. Got %v\n", csr.DNSNames) 1559 } 1560 } 1561 1562 func TestParseCertificateRequest(t *testing.T) { 1563 for _, csrBase64 := range csrBase64Array { 1564 csrBytes := fromBase64(csrBase64) 1565 csr, err := ParseCertificateRequest(csrBytes) 1566 if err != nil { 1567 t.Fatalf("failed to parse CSR: %s", err) 1568 } 1569 1570 if len(csr.EmailAddresses) != 1 || csr.EmailAddresses[0] != "gopher@golang.org" { 1571 t.Errorf("incorrect email addresses found: %v", csr.EmailAddresses) 1572 } 1573 1574 if len(csr.DNSNames) != 1 || csr.DNSNames[0] != "test.example.com" { 1575 t.Errorf("incorrect DNS names found: %v", csr.DNSNames) 1576 } 1577 1578 if len(csr.Subject.Country) != 1 || csr.Subject.Country[0] != "AU" { 1579 t.Errorf("incorrect Subject name: %v", csr.Subject) 1580 } 1581 1582 found := false 1583 for _, e := range csr.Extensions { 1584 if e.Id.Equal(oidExtensionBasicConstraints) { 1585 found = true 1586 break 1587 } 1588 } 1589 if !found { 1590 t.Errorf("basic constraints extension not found in CSR") 1591 } 1592 } 1593 } 1594 1595 func TestCriticalFlagInCSRRequestedExtensions(t *testing.T) { 1596 // This CSR contains an extension request where the extensions have a 1597 // critical flag in them. In the past we failed to handle this. 1598 const csrBase64 = "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" 1599 1600 csrBytes := fromBase64(csrBase64) 1601 csr, err := ParseCertificateRequest(csrBytes) 1602 if err != nil { 1603 t.Fatalf("failed to parse CSR: %s", err) 1604 } 1605 1606 expected := []struct { 1607 Id asn1.ObjectIdentifier 1608 Value []byte 1609 }{ 1610 {oidExtensionBasicConstraints, fromBase64("MAYBAf8CAQA=")}, 1611 {oidExtensionKeyUsage, fromBase64("AwIChA==")}, 1612 } 1613 1614 if n := len(csr.Extensions); n != len(expected) { 1615 t.Fatalf("expected to find %d extensions but found %d", len(expected), n) 1616 } 1617 1618 for i, extension := range csr.Extensions { 1619 if !extension.Id.Equal(expected[i].Id) { 1620 t.Fatalf("extension #%d has unexpected type %v (expected %v)", i, extension.Id, expected[i].Id) 1621 } 1622 1623 if !bytes.Equal(extension.Value, expected[i].Value) { 1624 t.Fatalf("extension #%d has unexpected contents %x (expected %x)", i, extension.Value, expected[i].Value) 1625 } 1626 } 1627 } 1628 1629 // serialiseAndParse generates a self-signed certificate from template and 1630 // returns a parsed version of it. 1631 func serialiseAndParse(t *testing.T, template *Certificate) *Certificate { 1632 derBytes, err := CreateCertificate(rand.Reader, template, template, &testPrivateKey.PublicKey, testPrivateKey) 1633 if err != nil { 1634 t.Fatalf("failed to create certificate: %s", err) 1635 return nil 1636 } 1637 1638 cert, err := ParseCertificate(derBytes) 1639 if err != nil { 1640 t.Fatalf("failed to parse certificate: %s", err) 1641 return nil 1642 } 1643 1644 return cert 1645 } 1646 1647 func TestMaxPathLenNotCA(t *testing.T) { 1648 template := &Certificate{ 1649 SerialNumber: big.NewInt(1), 1650 Subject: pkix.Name{ 1651 CommonName: "Σ Acme Co", 1652 }, 1653 NotBefore: time.Unix(1000, 0), 1654 NotAfter: time.Unix(100000, 0), 1655 1656 BasicConstraintsValid: true, 1657 IsCA: false, 1658 } 1659 if m := serialiseAndParse(t, template).MaxPathLen; m != -1 { 1660 t.Errorf("MaxPathLen should be -1 when IsCa is false, got %d", m) 1661 } 1662 1663 template.MaxPathLen = -1 1664 if m := serialiseAndParse(t, template).MaxPathLen; m != -1 { 1665 t.Errorf("MaxPathLen should be -1 when IsCa is false and MaxPathLen set to -1, got %d", m) 1666 } 1667 1668 template.MaxPathLen = 5 1669 if _, err := CreateCertificate(rand.Reader, template, template, &testPrivateKey.PublicKey, testPrivateKey); err == nil { 1670 t.Error("specifying a MaxPathLen when IsCA is false should fail") 1671 } 1672 1673 template.MaxPathLen = 0 1674 template.MaxPathLenZero = true 1675 if _, err := CreateCertificate(rand.Reader, template, template, &testPrivateKey.PublicKey, testPrivateKey); err == nil { 1676 t.Error("setting MaxPathLenZero when IsCA is false should fail") 1677 } 1678 1679 template.BasicConstraintsValid = false 1680 if m := serialiseAndParse(t, template).MaxPathLen; m != 0 { 1681 t.Errorf("Bad MaxPathLen should be ignored if BasicConstraintsValid is false, got %d", m) 1682 } 1683 } 1684 1685 func TestMaxPathLen(t *testing.T) { 1686 template := &Certificate{ 1687 SerialNumber: big.NewInt(1), 1688 Subject: pkix.Name{ 1689 CommonName: "Σ Acme Co", 1690 }, 1691 NotBefore: time.Unix(1000, 0), 1692 NotAfter: time.Unix(100000, 0), 1693 1694 BasicConstraintsValid: true, 1695 IsCA: true, 1696 } 1697 1698 cert1 := serialiseAndParse(t, template) 1699 if m := cert1.MaxPathLen; m != -1 { 1700 t.Errorf("Omitting MaxPathLen didn't turn into -1, got %d", m) 1701 } 1702 if cert1.MaxPathLenZero { 1703 t.Errorf("Omitting MaxPathLen resulted in MaxPathLenZero") 1704 } 1705 1706 template.MaxPathLen = 1 1707 cert2 := serialiseAndParse(t, template) 1708 if m := cert2.MaxPathLen; m != 1 { 1709 t.Errorf("Setting MaxPathLen didn't work. Got %d but set 1", m) 1710 } 1711 if cert2.MaxPathLenZero { 1712 t.Errorf("Setting MaxPathLen resulted in MaxPathLenZero") 1713 } 1714 1715 template.MaxPathLen = 0 1716 template.MaxPathLenZero = true 1717 cert3 := serialiseAndParse(t, template) 1718 if m := cert3.MaxPathLen; m != 0 { 1719 t.Errorf("Setting MaxPathLenZero didn't work, got %d", m) 1720 } 1721 if !cert3.MaxPathLenZero { 1722 t.Errorf("Setting MaxPathLen to zero didn't result in MaxPathLenZero") 1723 } 1724 } 1725 1726 func TestNoAuthorityKeyIdInSelfSignedCert(t *testing.T) { 1727 template := &Certificate{ 1728 SerialNumber: big.NewInt(1), 1729 Subject: pkix.Name{ 1730 CommonName: "Σ Acme Co", 1731 }, 1732 NotBefore: time.Unix(1000, 0), 1733 NotAfter: time.Unix(100000, 0), 1734 1735 BasicConstraintsValid: true, 1736 IsCA: true, 1737 SubjectKeyId: []byte{1, 2, 3, 4}, 1738 } 1739 1740 if cert := serialiseAndParse(t, template); len(cert.AuthorityKeyId) != 0 { 1741 t.Fatalf("self-signed certificate contained default authority key id") 1742 } 1743 1744 template.AuthorityKeyId = []byte{1, 2, 3, 4} 1745 if cert := serialiseAndParse(t, template); len(cert.AuthorityKeyId) == 0 { 1746 t.Fatalf("self-signed certificate erased explicit authority key id") 1747 } 1748 } 1749 1750 func TestNoSubjectKeyIdInCert(t *testing.T) { 1751 template := &Certificate{ 1752 SerialNumber: big.NewInt(1), 1753 Subject: pkix.Name{ 1754 CommonName: "Σ Acme Co", 1755 }, 1756 NotBefore: time.Unix(1000, 0), 1757 NotAfter: time.Unix(100000, 0), 1758 1759 BasicConstraintsValid: true, 1760 IsCA: true, 1761 } 1762 if cert := serialiseAndParse(t, template); len(cert.SubjectKeyId) == 0 { 1763 t.Fatalf("self-signed certificate did not generate subject key id using the public key") 1764 } 1765 1766 template.IsCA = false 1767 if cert := serialiseAndParse(t, template); len(cert.SubjectKeyId) != 0 { 1768 t.Fatalf("self-signed certificate generated subject key id when it isn't a CA") 1769 } 1770 1771 template.SubjectKeyId = []byte{1, 2, 3, 4} 1772 if cert := serialiseAndParse(t, template); len(cert.SubjectKeyId) == 0 { 1773 t.Fatalf("self-signed certificate erased explicit subject key id") 1774 } 1775 } 1776 1777 func TestASN1BitLength(t *testing.T) { 1778 tests := []struct { 1779 bytes []byte 1780 bitLen int 1781 }{ 1782 {nil, 0}, 1783 {[]byte{0x00}, 0}, 1784 {[]byte{0x00, 0x00}, 0}, 1785 {[]byte{0xf0}, 4}, 1786 {[]byte{0x88}, 5}, 1787 {[]byte{0xff}, 8}, 1788 {[]byte{0xff, 0x80}, 9}, 1789 {[]byte{0xff, 0x81}, 16}, 1790 } 1791 1792 for i, test := range tests { 1793 if got := asn1BitLength(test.bytes); got != test.bitLen { 1794 t.Errorf("#%d: calculated bit-length of %d for %x, wanted %d", i, got, test.bytes, test.bitLen) 1795 } 1796 } 1797 } 1798 1799 func TestVerifyEmptyCertificate(t *testing.T) { 1800 if _, err := new(Certificate).Verify(VerifyOptions{}); err != errNotParsed { 1801 t.Errorf("Verifying empty certificate resulted in unexpected error: %q (wanted %q)", err, errNotParsed) 1802 } 1803 } 1804 1805 func TestInsecureAlgorithmErrorString(t *testing.T) { 1806 tests := []struct { 1807 sa SignatureAlgorithm 1808 want string 1809 }{ 1810 {MD2WithRSA, "x509: cannot verify signature: insecure algorithm MD2-RSA"}, 1811 {-1, "x509: cannot verify signature: insecure algorithm -1"}, 1812 {0, "x509: cannot verify signature: insecure algorithm 0"}, 1813 {9999, "x509: cannot verify signature: insecure algorithm 9999"}, 1814 } 1815 for i, tt := range tests { 1816 if got := fmt.Sprint(InsecureAlgorithmError(tt.sa)); got != tt.want { 1817 t.Errorf("%d. mismatch.\n got: %s\nwant: %s\n", i, got, tt.want) 1818 } 1819 } 1820 } 1821 1822 // These CSR was generated with OpenSSL: 1823 // openssl req -out CSR.csr -new -sha256 -nodes -keyout privateKey.key -config openssl.cnf 1824 // 1825 // With openssl.cnf containing the following sections: 1826 // [ v3_req ] 1827 // basicConstraints = CA:FALSE 1828 // keyUsage = nonRepudiation, digitalSignature, keyEncipherment 1829 // subjectAltName = email:gopher@golang.org,DNS:test.example.com 1830 // [ req_attributes ] 1831 // challengePassword = ignored challenge 1832 // unstructuredName = ignored unstructured name 1833 var csrBase64Array = [...]string{ 1834 // Just [ v3_req ] 1835 "MIIDHDCCAgQCAQAwfjELMAkGA1UEBhMCQVUxEzARBgNVBAgMClNvbWUtU3RhdGUxITAfBgNVBAoMGEludGVybmV0IFdpZGdpdHMgUHR5IEx0ZDEUMBIGA1UEAwwLQ29tbW9uIE5hbWUxITAfBgkqhkiG9w0BCQEWEnRlc3RAZW1haWwuYWRkcmVzczCCASIwDQYJKoZIhvcNAQEBBQADggEPADCCAQoCggEBAK1GY4YFx2ujlZEOJxQVYmsjUnLsd5nFVnNpLE4cV+77sgv9NPNlB8uhn3MXt5leD34rm/2BisCHOifPucYlSrszo2beuKhvwn4+2FxDmWtBEMu/QA16L5IvoOfYZm/gJTsPwKDqvaR0tTU67a9OtxwNTBMI56YKtmwd/o8d3hYv9cg+9ZGAZ/gKONcg/OWYx/XRh6bd0g8DMbCikpWgXKDsvvK1Nk+VtkDO1JxuBaj4Lz/p/MifTfnHoqHxWOWl4EaTs4Ychxsv34/rSj1KD1tJqorIv5Xv2aqv4sjxfbrYzX4kvS5SC1goIovLnhj5UjmQ3Qy8u65eow/LLWw+YFcCAwEAAaBZMFcGCSqGSIb3DQEJDjFKMEgwCQYDVR0TBAIwADALBgNVHQ8EBAMCBeAwLgYDVR0RBCcwJYERZ29waGVyQGdvbGFuZy5vcmeCEHRlc3QuZXhhbXBsZS5jb20wDQYJKoZIhvcNAQELBQADggEBAB6VPMRrchvNW61Tokyq3ZvO6/NoGIbuwUn54q6l5VZW0Ep5Nq8juhegSSnaJ0jrovmUgKDN9vEo2KxuAtwG6udS6Ami3zP+hRd4k9Q8djJPb78nrjzWiindLK5Fps9U5mMoi1ER8ViveyAOTfnZt/jsKUaRsscY2FzE9t9/o5moE6LTcHUS4Ap1eheR+J72WOnQYn3cifYaemsA9MJuLko+kQ6xseqttbh9zjqd9fiCSh/LNkzos9c+mg2yMADitaZinAh+HZi50ooEbjaT3erNq9O6RqwJlgD00g6MQdoz9bTAryCUhCQfkIaepmQ7BxS0pqWNW3MMwfDwx/Snz6g=", 1836 // Both [ v3_req ] and [ req_attributes ] 1837 "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", 1838 } 1839 1840 var md5cert = ` 1841 -----BEGIN CERTIFICATE----- 1842 MIIB4TCCAUoCCQCfmw3vMgPS5TANBgkqhkiG9w0BAQQFADA1MQswCQYDVQQGEwJB 1843 VTETMBEGA1UECBMKU29tZS1TdGF0ZTERMA8GA1UEChMITUQ1IEluYy4wHhcNMTUx 1844 MjAzMTkyOTMyWhcNMjkwODEyMTkyOTMyWjA1MQswCQYDVQQGEwJBVTETMBEGA1UE 1845 CBMKU29tZS1TdGF0ZTERMA8GA1UEChMITUQ1IEluYy4wgZ8wDQYJKoZIhvcNAQEB 1846 BQADgY0AMIGJAoGBANrq2nhLQj5mlXbpVX3QUPhfEm/vdEqPkoWtR/jRZIWm4WGf 1847 Wpq/LKHJx2Pqwn+t117syN8l4U5unyAi1BJSXjBwPZNd7dXjcuJ+bRLV7FZ/iuvs 1848 cfYyQQFTxan4TaJMd0x1HoNDbNbjHa02IyjjYE/r3mb/PIg+J2t5AZEh80lPAgMB 1849 AAEwDQYJKoZIhvcNAQEEBQADgYEAjGzp3K3ey/YfKHohf33yHHWd695HQxDAP+wY 1850 cs9/TAyLR+gJzJP7d18EcDDLJWVi7bhfa4EAD86di05azOh9kWSn4b3o9QYRGCSw 1851 GNnI3Zk0cwNKA49hZntKKiy22DhRk7JAHF01d6Bu3KkHkmENrtJ+zj/+159WAnUa 1852 qViorq4= 1853 -----END CERTIFICATE----- 1854 ` 1855 1856 func TestMD5(t *testing.T) { 1857 pemBlock, _ := pem.Decode([]byte(md5cert)) 1858 cert, err := ParseCertificate(pemBlock.Bytes) 1859 if err != nil { 1860 t.Fatalf("failed to parse certificate: %s", err) 1861 } 1862 if sa := cert.SignatureAlgorithm; sa != MD5WithRSA { 1863 t.Errorf("signature algorithm is %v, want %v", sa, MD5WithRSA) 1864 } 1865 if err = cert.CheckSignatureFrom(cert); err == nil { 1866 t.Fatalf("certificate verification succeeded incorrectly") 1867 } 1868 if _, ok := err.(InsecureAlgorithmError); !ok { 1869 t.Fatalf("certificate verification returned %v (%T), wanted InsecureAlgorithmError", err, err) 1870 } 1871 } 1872 1873 // certMissingRSANULL contains an RSA public key where the AlgorithmIdentifier 1874 // parameters are omitted rather than being an ASN.1 NULL. 1875 const certMissingRSANULL = ` 1876 -----BEGIN CERTIFICATE----- 1877 MIIB7TCCAVigAwIBAgIBADALBgkqhkiG9w0BAQUwJjEQMA4GA1UEChMHQWNtZSBD 1878 bzESMBAGA1UEAxMJMTI3LjAuMC4xMB4XDTExMTIwODA3NTUxMloXDTEyMTIwNzA4 1879 MDAxMlowJjEQMA4GA1UEChMHQWNtZSBDbzESMBAGA1UEAxMJMTI3LjAuMC4xMIGc 1880 MAsGCSqGSIb3DQEBAQOBjAAwgYgCgYBO0Hsx44Jk2VnAwoekXh6LczPHY1PfZpIG 1881 hPZk1Y/kNqcdK+izIDZFI7Xjla7t4PUgnI2V339aEu+H5Fto5OkOdOwEin/ekyfE 1882 ARl6vfLcPRSr0FTKIQzQTW6HLlzF0rtNS0/Otiz3fojsfNcCkXSmHgwa2uNKWi7e 1883 E5xMQIhZkwIDAQABozIwMDAOBgNVHQ8BAf8EBAMCAKAwDQYDVR0OBAYEBAECAwQw 1884 DwYDVR0jBAgwBoAEAQIDBDALBgkqhkiG9w0BAQUDgYEANh+zegx1yW43RmEr1b3A 1885 p0vMRpqBWHyFeSnIyMZn3TJWRSt1tukkqVCavh9a+hoV2cxVlXIWg7nCto/9iIw4 1886 hB2rXZIxE0/9gzvGnfERYraL7KtnvshksBFQRlgXa5kc0x38BvEO5ZaoDPl4ILdE 1887 GFGNEH5PlGffo05wc46QkYU= 1888 -----END CERTIFICATE-----` 1889 1890 func TestRSAMissingNULLParameters(t *testing.T) { 1891 block, _ := pem.Decode([]byte(certMissingRSANULL)) 1892 if _, err := ParseCertificate(block.Bytes); err == nil { 1893 t.Error("unexpected success when parsing certificate with missing RSA NULL parameter") 1894 } else if !strings.Contains(err.Error(), "missing NULL") { 1895 t.Errorf("unrecognised error when parsing certificate with missing RSA NULL parameter: %s", err) 1896 } 1897 } 1898 1899 const certISOOID = ` 1900 -----BEGIN CERTIFICATE----- 1901 MIIB5TCCAVKgAwIBAgIQtwyL3RPWV7dJQp34HwZG9DAJBgUrDgMCHQUAMBExDzAN 1902 BgNVBAMTBm15dGVzdDAeFw0xNjA4MDkyMjExMDVaFw0zOTEyMzEyMzU5NTlaMBEx 1903 DzANBgNVBAMTBm15dGVzdDCBnzANBgkqhkiG9w0BAQEFAAOBjQAwgYkCgYEArzIH 1904 GsyDB3ohIGkkvijF2PTRUX1bvOtY1eUUpjwHyu0twpAKSuaQv2Ha+/63+aHe8O86 1905 BT+98wjXFX6RFSagtAujo80rIF2dSm33BGt18pDN8v6zp93dnAm0jRaSQrHJ75xw 1906 5O+S1oEYR1LtUoFJy6qB104j6aINBAgOiLIKiMkCAwEAAaNGMEQwQgYDVR0BBDsw 1907 OYAQVuYVQ/WDjdGSkZRlTtJDNKETMBExDzANBgNVBAMTBm15dGVzdIIQtwyL3RPW 1908 V7dJQp34HwZG9DAJBgUrDgMCHQUAA4GBABngrSkH7vG5lY4sa4AZF59lAAXqBVJE 1909 J4TBiKC62hCdZv18rBleP6ETfhbPg7pTs8p4ebQbpmtNxRS9Lw3MzQ8Ya5Ybwzj2 1910 NwBSyCtCQl7mrEg4nJqJl4A2EUhnET/oVxU0oTV/SZ3ziGXcY1oG1s6vidV7TZTu 1911 MCRtdSdaM7g3 1912 -----END CERTIFICATE-----` 1913 1914 func TestISOOIDInCertificate(t *testing.T) { 1915 block, _ := pem.Decode([]byte(certISOOID)) 1916 if cert, err := ParseCertificate(block.Bytes); err != nil { 1917 t.Errorf("certificate with ISO OID failed to parse: %s", err) 1918 } else if cert.SignatureAlgorithm == UnknownSignatureAlgorithm { 1919 t.Errorf("ISO OID not recognised in certificate") 1920 } 1921 } 1922 1923 // certMultipleRDN contains a RelativeDistinguishedName with two elements (the 1924 // common name and serial number). This particular certificate was the first 1925 // such certificate in the “Pilot” Certificate Transparency log. 1926 const certMultipleRDN = ` 1927 -----BEGIN CERTIFICATE----- 1928 MIIFRzCCBC+gAwIBAgIEOl59NTANBgkqhkiG9w0BAQUFADA9MQswCQYDVQQGEwJz 1929 aTEbMBkGA1UEChMSc3RhdGUtaW5zdGl0dXRpb25zMREwDwYDVQQLEwhzaWdvdi1j 1930 YTAeFw0xMjExMTYxMDUyNTdaFw0xNzExMTYxMjQ5MDVaMIGLMQswCQYDVQQGEwJz 1931 aTEbMBkGA1UEChMSc3RhdGUtaW5zdGl0dXRpb25zMRkwFwYDVQQLExB3ZWItY2Vy 1932 dGlmaWNhdGVzMRAwDgYDVQQLEwdTZXJ2ZXJzMTIwFAYDVQQFEw0xMjM2NDg0MDEw 1933 MDEwMBoGA1UEAxMTZXBvcnRhbC5tc3MuZWR1cy5zaTCCASIwDQYJKoZIhvcNAQEB 1934 BQADggEPADCCAQoCggEBAMrNkZH9MPuBTjMGNk3sJX8V+CkFx/4ru7RTlLS6dlYM 1935 098dtSfJ3s2w0p/1NB9UmR8j0yS0Kg6yoZ3ShsSO4DWBtcQD8820a6BYwqxxQTNf 1936 HSRZOc+N/4TQrvmK6t4k9Aw+YEYTMrWOU4UTeyhDeCcUsBdh7HjfWsVaqNky+2sv 1937 oic3zP5gF+2QfPkvOoHT3FLR8olNhViIE6Kk3eFIEs4dkq/ZzlYdLb8pHQoj/sGI 1938 zFmA5AFvm1HURqOmJriFjBwaCtn8AVEYOtQrnUCzJYu1ex8azyS2ZgYMX0u8A5Z/ 1939 y2aMS/B2W+H79WcgLpK28vPwe7vam0oFrVytAd+u65ECAwEAAaOCAf4wggH6MA4G 1940 A1UdDwEB/wQEAwIFoDBABgNVHSAEOTA3MDUGCisGAQQBr1kBAwMwJzAlBggrBgEF 1941 BQcCARYZaHR0cDovL3d3dy5jYS5nb3Yuc2kvY3BzLzAfBgNVHREEGDAWgRRwb2Rw 1942 b3JhLm1pemtzQGdvdi5zaTCB8QYDVR0fBIHpMIHmMFWgU6BRpE8wTTELMAkGA1UE 1943 BhMCc2kxGzAZBgNVBAoTEnN0YXRlLWluc3RpdHV0aW9uczERMA8GA1UECxMIc2ln 1944 b3YtY2ExDjAMBgNVBAMTBUNSTDM5MIGMoIGJoIGGhldsZGFwOi8veDUwMC5nb3Yu 1945 c2kvb3U9c2lnb3YtY2Esbz1zdGF0ZS1pbnN0aXR1dGlvbnMsYz1zaT9jZXJ0aWZp 1946 Y2F0ZVJldm9jYXRpb25MaXN0P2Jhc2WGK2h0dHA6Ly93d3cuc2lnb3YtY2EuZ292 1947 LnNpL2NybC9zaWdvdi1jYS5jcmwwKwYDVR0QBCQwIoAPMjAxMjExMTYxMDUyNTda 1948 gQ8yMDE3MTExNjEyNDkwNVowHwYDVR0jBBgwFoAUHvjUU2uzgwbpBAZXAvmlv8ZY 1949 PHIwHQYDVR0OBBYEFGI1Duuu+wTGDZka/xHNbwcbM69ZMAkGA1UdEwQCMAAwGQYJ 1950 KoZIhvZ9B0EABAwwChsEVjcuMQMCA6gwDQYJKoZIhvcNAQEFBQADggEBAHny0K1y 1951 BQznrzDu3DDpBcGYguKU0dvU9rqsV1ua4nxkriSMWjgsX6XJFDdDW60I3P4VWab5 1952 ag5fZzbGqi8kva/CzGgZh+CES0aWCPy+4Gb8lwOTt+854/laaJvd6kgKTER7z7U9 1953 9C86Ch2y4sXNwwwPJ1A9dmrZJZOcJjS/WYZgwaafY2Hdxub5jqPE5nehwYUPVu9R 1954 uH6/skk4OEKcfOtN0hCnISOVuKYyS4ANARWRG5VGHIH06z3lGUVARFRJ61gtAprd 1955 La+fgSS+LVZ+kU2TkeoWAKvGq8MAgDq4D4Xqwekg7WKFeuyusi/NI5rm40XgjBMF 1956 DF72IUofoVt7wo0= 1957 -----END CERTIFICATE-----` 1958 1959 func TestMultipleRDN(t *testing.T) { 1960 block, _ := pem.Decode([]byte(certMultipleRDN)) 1961 cert, err := ParseCertificate(block.Bytes) 1962 if err != nil { 1963 t.Fatalf("certificate with two elements in an RDN failed to parse: %v", err) 1964 } 1965 1966 if want := "eportal.mss.edus.si"; cert.Subject.CommonName != want { 1967 t.Errorf("got common name of %q, but want %q", cert.Subject.CommonName, want) 1968 } 1969 1970 if want := "1236484010010"; cert.Subject.SerialNumber != want { 1971 t.Errorf("got serial number of %q, but want %q", cert.Subject.SerialNumber, want) 1972 } 1973 } 1974 1975 func TestSystemCertPool(t *testing.T) { 1976 if runtime.GOOS == "windows" { 1977 t.Skip("not implemented on Windows; Issue 16736, 18609") 1978 } 1979 a, err := SystemCertPool() 1980 if err != nil { 1981 t.Fatal(err) 1982 } 1983 b, err := SystemCertPool() 1984 if err != nil { 1985 t.Fatal(err) 1986 } 1987 if !certPoolEqual(a, b) { 1988 t.Fatal("two calls to SystemCertPool had different results") 1989 } 1990 if ok := b.AppendCertsFromPEM([]byte(` 1991 -----BEGIN CERTIFICATE----- 1992 MIIDBjCCAe6gAwIBAgIRANXM5I3gjuqDfTp/PYrs+u8wDQYJKoZIhvcNAQELBQAw 1993 EjEQMA4GA1UEChMHQWNtZSBDbzAeFw0xODAzMjcxOTU2MjFaFw0xOTAzMjcxOTU2 1994 MjFaMBIxEDAOBgNVBAoTB0FjbWUgQ28wggEiMA0GCSqGSIb3DQEBAQUAA4IBDwAw 1995 ggEKAoIBAQDK+9m3rjsO2Djes6bIYQZ3eV29JF09ZrjOrEHLtaKrD6/acsoSoTsf 1996 cQr+rzzztdB5ijWXCS64zo/0OiqBeZUNZ67jVdToa9qW5UYe2H0Y+ZNdfA5GYMFD 1997 yk/l3/uBu3suTZPfXiW2TjEi27Q8ruNUIZ54DpTcs6y2rBRFzadPWwn/VQMlvRXM 1998 jrzl8Y08dgnYmaAHprxVzwMXcQ/Brol+v9GvjaH1DooHqkn8O178wsPQNhdtvN01 1999 IXL46cYdcUwWrE/GX5u+9DaSi+0KWxAPQ+NVD5qUI0CKl4714yGGh7feXMjJdHgl 2000 VG4QJZlJvC4FsURgCHJT6uHGIelnSwhbAgMBAAGjVzBVMA4GA1UdDwEB/wQEAwIF 2001 oDATBgNVHSUEDDAKBggrBgEFBQcDATAMBgNVHRMBAf8EAjAAMCAGA1UdEQQZMBeC 2002 FVRlc3RTeXN0ZW1DZXJ0UG9vbC5nbzANBgkqhkiG9w0BAQsFAAOCAQEAwuSRx/VR 2003 BKh2ICxZjL6jBwk/7UlU1XKbhQD96RqkidDNGEc6eLZ90Z5XXTurEsXqdm5jQYPs 2004 1cdcSW+fOSMl7MfW9e5tM66FaIPZl9rKZ1r7GkOfgn93xdLAWe8XHd19xRfDreub 2005 YC8DVqgLASOEYFupVSl76ktPfxkU5KCvmUf3P2PrRybk1qLGFytGxfyice2gHSNI 2006 gify3K/+H/7wCkyFW4xYvzl7WW4mXxoqPRPjQt1J423DhnnQ4G1P8V/vhUpXNXOq 2007 N9IEPnWuihC09cyx/WMQIUlWnaQLHdfpPS04Iez3yy2PdfXJzwfPrja7rNE+skK6 2008 pa/O1nF0AfWOpw== 2009 -----END CERTIFICATE----- 2010 `)); !ok { 2011 t.Fatal("AppendCertsFromPEM failed") 2012 } 2013 if reflect.DeepEqual(a, b) { 2014 t.Fatal("changing one pool modified the other") 2015 } 2016 } 2017 2018 const emptyNameConstraintsPEM = ` 2019 -----BEGIN CERTIFICATE----- 2020 MIIC1jCCAb6gAwIBAgICEjQwDQYJKoZIhvcNAQELBQAwKDEmMCQGA1UEAxMdRW1w 2021 dHkgbmFtZSBjb25zdHJhaW50cyBpc3N1ZXIwHhcNMTMwMjAxMDAwMDAwWhcNMjAw 2022 NTMwMTA0ODM4WjAhMR8wHQYDVQQDExZFbXB0eSBuYW1lIGNvbnN0cmFpbnRzMIIB 2023 IjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEAwriElUIt3LCqmJObs+yDoWPD 2024 F5IqgWk6moIobYjPfextZiYU6I3EfvAwoNxPDkN2WowcocUZMJbEeEq5ebBksFnx 2025 f12gBxlIViIYwZAzu7aFvhDMyPKQI3C8CG0ZSC9ABZ1E3umdA3CEueNOmP/TChNq 2026 Cl23+BG1Qb/PJkpAO+GfpWSVhTcV53Mf/cKvFHcjGNrxzdSoq9fyW7a6gfcGEQY0 2027 LVkmwFWUfJ0wT8kaeLr0E0tozkIfo01KNWNzv6NcYP80QOBRDlApWu9ODmEVJHPD 2028 blx4jzTQ3JLa+4DvBNOjVUOp+mgRmjiW0rLdrxwOxIqIOwNjweMCp/hgxX/hTQID 2029 AQABoxEwDzANBgNVHR4EBjAEoAChADANBgkqhkiG9w0BAQsFAAOCAQEAWG+/zUMH 2030 QhP8uNCtgSHyim/vh7wminwAvWgMKxlkLBFns6nZeQqsOV1lABY7U0Zuoqa1Z5nb 2031 6L+iJa4ElREJOi/erLc9uLwBdDCAR0hUTKD7a6i4ooS39DTle87cUnj0MW1CUa6H 2032 v5SsvpYW+1XleYJk/axQOOTcy4Es53dvnZsjXH0EA/QHnn7UV+JmlE3rtVxcYp6M 2033 LYPmRhTioROA/drghicRkiu9hxdPyxkYS16M5g3Zj30jdm+k/6C6PeNtN9YmOOga 2034 nCOSyFYfGhqOANYzpmuV+oIedAsPpIbfIzN8njYUs1zio+1IoI4o8ddM9sCbtPU8 2035 o+WoY6IsCKXV/g== 2036 -----END CERTIFICATE-----` 2037 2038 func TestEmptyNameConstraints(t *testing.T) { 2039 block, _ := pem.Decode([]byte(emptyNameConstraintsPEM)) 2040 _, err := ParseCertificate(block.Bytes) 2041 if err == nil { 2042 t.Fatal("unexpected success") 2043 } 2044 2045 const expected = "empty name constraints" 2046 if str := err.Error(); !strings.Contains(str, expected) { 2047 t.Errorf("expected %q in error but got %q", expected, str) 2048 } 2049 } 2050 2051 func TestPKIXNameString(t *testing.T) { 2052 der, err := base64.StdEncoding.DecodeString(certBytes) 2053 if err != nil { 2054 t.Fatal(err) 2055 } 2056 certs, err := ParseCertificates(der) 2057 if err != nil { 2058 t.Fatal(err) 2059 } 2060 2061 // Check that parsed non-standard attributes are printed. 2062 //goland:noinspection GoRedundantConversion 2063 rdns := pkix.Name{ 2064 Locality: []string{"Gophertown"}, 2065 ExtraNames: []pkix.AttributeTypeAndValue{ 2066 {Type: asn1.ObjectIdentifier([]int{1, 2, 3, 4, 5}), Value: "golang.org"}}, 2067 }.ToRDNSequence() 2068 nn := pkix.Name{} 2069 nn.FillFromRDNSequence(&rdns) 2070 2071 // Check that zero-length non-nil ExtraNames hide Names. 2072 extra := []pkix.AttributeTypeAndValue{ 2073 {Type: asn1.ObjectIdentifier([]int{1, 2, 3, 4, 5}), Value: "backing array"}} 2074 extraNotNil := pkix.Name{ 2075 Locality: []string{"Gophertown"}, 2076 ExtraNames: extra[:0], 2077 Names: []pkix.AttributeTypeAndValue{ 2078 {Type: asn1.ObjectIdentifier([]int{1, 2, 3, 4, 5}), Value: "golang.org"}}, 2079 } 2080 2081 tests := []struct { 2082 dn pkix.Name 2083 want string 2084 }{ 2085 {nn, "L=Gophertown,1.2.3.4.5=#130a676f6c616e672e6f7267"}, 2086 {extraNotNil, "L=Gophertown"}, 2087 {pkix.Name{ 2088 CommonName: "Steve Kille", 2089 Organization: []string{"Isode Limited"}, 2090 OrganizationalUnit: []string{"RFCs"}, 2091 Locality: []string{"Richmond"}, 2092 Province: []string{"Surrey"}, 2093 StreetAddress: []string{"The Square"}, 2094 PostalCode: []string{"TW9 1DT"}, 2095 SerialNumber: "RFC 2253", 2096 Country: []string{"GB"}, 2097 }, "SERIALNUMBER=RFC 2253,CN=Steve Kille,OU=RFCs,O=Isode Limited,POSTALCODE=TW9 1DT,STREET=The Square,L=Richmond,ST=Surrey,C=GB"}, 2098 {certs[0].Subject, 2099 "CN=mail.google.com,O=Google LLC,L=Mountain View,ST=California,C=US"}, 2100 {pkix.Name{ 2101 Organization: []string{"#Google, Inc. \n-> 'Alphabet\" "}, 2102 Country: []string{"US"}, 2103 }, "O=\\#Google\\, Inc. \n-\\> 'Alphabet\\\"\\ ,C=US"}, 2104 {pkix.Name{ 2105 CommonName: "foo.com", 2106 Organization: []string{"Gopher Industries"}, 2107 ExtraNames: []pkix.AttributeTypeAndValue{ 2108 {Type: asn1.ObjectIdentifier([]int{2, 5, 4, 3}), Value: "bar.com"}}, 2109 }, "CN=bar.com,O=Gopher Industries"}, 2110 {pkix.Name{ 2111 Locality: []string{"Gophertown"}, 2112 ExtraNames: []pkix.AttributeTypeAndValue{ 2113 {Type: asn1.ObjectIdentifier([]int{1, 2, 3, 4, 5}), Value: "golang.org"}}, 2114 }, "1.2.3.4.5=#130a676f6c616e672e6f7267,L=Gophertown"}, 2115 // If there are no ExtraNames, the Names are printed instead. 2116 {pkix.Name{ 2117 Locality: []string{"Gophertown"}, 2118 Names: []pkix.AttributeTypeAndValue{ 2119 {Type: asn1.ObjectIdentifier([]int{1, 2, 3, 4, 5}), Value: "golang.org"}}, 2120 }, "L=Gophertown,1.2.3.4.5=#130a676f6c616e672e6f7267"}, 2121 // If there are both, print only the ExtraNames. 2122 {pkix.Name{ 2123 Locality: []string{"Gophertown"}, 2124 ExtraNames: []pkix.AttributeTypeAndValue{ 2125 {Type: asn1.ObjectIdentifier([]int{1, 2, 3, 4, 5}), Value: "golang.org"}}, 2126 Names: []pkix.AttributeTypeAndValue{ 2127 {Type: asn1.ObjectIdentifier([]int{1, 2, 3, 4, 6}), Value: "example.com"}}, 2128 }, "1.2.3.4.5=#130a676f6c616e672e6f7267,L=Gophertown"}, 2129 } 2130 2131 for i, test := range tests { 2132 if got := test.dn.String(); got != test.want { 2133 t.Errorf("#%d: String() = \n%s\n, want \n%s", i, got, test.want) 2134 } 2135 } 2136 2137 if extra[0].Value != "backing array" { 2138 t.Errorf("the backing array of an empty ExtraNames got modified by String") 2139 } 2140 } 2141 2142 func TestRDNSequenceString(t *testing.T) { 2143 // Test some extra cases that get lost in pkix.Name conversions such as 2144 // multi-valued attributes. 2145 2146 var ( 2147 oidCountry = []int{2, 5, 4, 6} 2148 oidOrganization = []int{2, 5, 4, 10} 2149 oidOrganizationalUnit = []int{2, 5, 4, 11} 2150 oidCommonName = []int{2, 5, 4, 3} 2151 ) 2152 2153 tests := []struct { 2154 seq pkix.RDNSequence 2155 want string 2156 }{ 2157 { 2158 seq: pkix.RDNSequence{ 2159 pkix.RelativeDistinguishedNameSET{ 2160 pkix.AttributeTypeAndValue{Type: oidCountry, Value: "US"}, 2161 }, 2162 pkix.RelativeDistinguishedNameSET{ 2163 pkix.AttributeTypeAndValue{Type: oidOrganization, Value: "Widget Inc."}, 2164 }, 2165 pkix.RelativeDistinguishedNameSET{ 2166 pkix.AttributeTypeAndValue{Type: oidOrganizationalUnit, Value: "Sales"}, 2167 pkix.AttributeTypeAndValue{Type: oidCommonName, Value: "J. Smith"}, 2168 }, 2169 }, 2170 want: "OU=Sales+CN=J. Smith,O=Widget Inc.,C=US", 2171 }, 2172 } 2173 2174 for i, test := range tests { 2175 if got := test.seq.String(); got != test.want { 2176 t.Errorf("#%d: String() = \n%s\n, want \n%s", i, got, test.want) 2177 } 2178 } 2179 } 2180 2181 const criticalNameConstraintWithUnknownTypePEM = ` 2182 -----BEGIN CERTIFICATE----- 2183 MIIC/TCCAeWgAwIBAgICEjQwDQYJKoZIhvcNAQELBQAwKDEmMCQGA1UEAxMdRW1w 2184 dHkgbmFtZSBjb25zdHJhaW50cyBpc3N1ZXIwHhcNMTMwMjAxMDAwMDAwWhcNMjAw 2185 NTMwMTA0ODM4WjAhMR8wHQYDVQQDExZFbXB0eSBuYW1lIGNvbnN0cmFpbnRzMIIB 2186 IjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEAwriElUIt3LCqmJObs+yDoWPD 2187 F5IqgWk6moIobYjPfextZiYU6I3EfvAwoNxPDkN2WowcocUZMJbEeEq5ebBksFnx 2188 f12gBxlIViIYwZAzu7aFvhDMyPKQI3C8CG0ZSC9ABZ1E3umdA3CEueNOmP/TChNq 2189 Cl23+BG1Qb/PJkpAO+GfpWSVhTcV53Mf/cKvFHcjGNrxzdSoq9fyW7a6gfcGEQY0 2190 LVkmwFWUfJ0wT8kaeLr0E0tozkIfo01KNWNzv6NcYP80QOBRDlApWu9ODmEVJHPD 2191 blx4jzTQ3JLa+4DvBNOjVUOp+mgRmjiW0rLdrxwOxIqIOwNjweMCp/hgxX/hTQID 2192 AQABozgwNjA0BgNVHR4BAf8EKjAooCQwIokgIACrzQAAAAAAAAAAAAAAAP////8A 2193 AAAAAAAAAAAAAAChADANBgkqhkiG9w0BAQsFAAOCAQEAWG+/zUMHQhP8uNCtgSHy 2194 im/vh7wminwAvWgMKxlkLBFns6nZeQqsOV1lABY7U0Zuoqa1Z5nb6L+iJa4ElREJ 2195 Oi/erLc9uLwBdDCAR0hUTKD7a6i4ooS39DTle87cUnj0MW1CUa6Hv5SsvpYW+1Xl 2196 eYJk/axQOOTcy4Es53dvnZsjXH0EA/QHnn7UV+JmlE3rtVxcYp6MLYPmRhTioROA 2197 /drghicRkiu9hxdPyxkYS16M5g3Zj30jdm+k/6C6PeNtN9YmOOganCOSyFYfGhqO 2198 ANYzpmuV+oIedAsPpIbfIzN8njYUs1zio+1IoI4o8ddM9sCbtPU8o+WoY6IsCKXV 2199 /g== 2200 -----END CERTIFICATE-----` 2201 2202 func TestCriticalNameConstraintWithUnknownType(t *testing.T) { 2203 block, _ := pem.Decode([]byte(criticalNameConstraintWithUnknownTypePEM)) 2204 cert, err := ParseCertificate(block.Bytes) 2205 if err != nil { 2206 t.Fatalf("unexpected parsing failure: %s", err) 2207 } 2208 2209 if l := len(cert.UnhandledCriticalExtensions); l != 1 { 2210 t.Fatalf("expected one unhandled critical extension, but found %d", l) 2211 } 2212 } 2213 2214 const badIPMaskPEM = ` 2215 -----BEGIN CERTIFICATE----- 2216 MIICzzCCAbegAwIBAgICEjQwDQYJKoZIhvcNAQELBQAwHTEbMBkGA1UEAxMSQmFk 2217 IElQIG1hc2sgaXNzdWVyMB4XDTEzMDIwMTAwMDAwMFoXDTIwMDUzMDEwNDgzOFow 2218 FjEUMBIGA1UEAxMLQmFkIElQIG1hc2swggEiMA0GCSqGSIb3DQEBAQUAA4IBDwAw 2219 ggEKAoIBAQDCuISVQi3csKqYk5uz7IOhY8MXkiqBaTqagihtiM997G1mJhTojcR+ 2220 8DCg3E8OQ3ZajByhxRkwlsR4Srl5sGSwWfF/XaAHGUhWIhjBkDO7toW+EMzI8pAj 2221 cLwIbRlIL0AFnUTe6Z0DcIS5406Y/9MKE2oKXbf4EbVBv88mSkA74Z+lZJWFNxXn 2222 cx/9wq8UdyMY2vHN1Kir1/JbtrqB9wYRBjQtWSbAVZR8nTBPyRp4uvQTS2jOQh+j 2223 TUo1Y3O/o1xg/zRA4FEOUCla704OYRUkc8NuXHiPNNDcktr7gO8E06NVQ6n6aBGa 2224 OJbSst2vHA7Eiog7A2PB4wKn+GDFf+FNAgMBAAGjIDAeMBwGA1UdHgEB/wQSMBCg 2225 DDAKhwgBAgME//8BAKEAMA0GCSqGSIb3DQEBCwUAA4IBAQBYb7/NQwdCE/y40K2B 2226 IfKKb++HvCaKfAC9aAwrGWQsEWezqdl5Cqw5XWUAFjtTRm6iprVnmdvov6IlrgSV 2227 EQk6L96stz24vAF0MIBHSFRMoPtrqLiihLf0NOV7ztxSePQxbUJRroe/lKy+lhb7 2228 VeV5gmT9rFA45NzLgSznd2+dmyNcfQQD9AeeftRX4maUTeu1XFxinowtg+ZGFOKh 2229 E4D92uCGJxGSK72HF0/LGRhLXozmDdmPfSN2b6T/oLo942031iY46BqcI5LIVh8a 2230 Go4A1jOma5X6gh50Cw+kht8jM3yeNhSzXOKj7Uigjijx10z2wJu09Tyj5ahjoiwI 2231 pdX+ 2232 -----END CERTIFICATE-----` 2233 2234 func TestBadIPMask(t *testing.T) { 2235 block, _ := pem.Decode([]byte(badIPMaskPEM)) 2236 _, err := ParseCertificate(block.Bytes) 2237 if err == nil { 2238 t.Fatalf("unexpected success") 2239 } 2240 2241 const expected = "contained invalid mask" 2242 if !strings.Contains(err.Error(), expected) { 2243 t.Fatalf("expected %q in error but got: %s", expected, err) 2244 } 2245 } 2246 2247 const additionalGeneralSubtreePEM = ` 2248 -----BEGIN CERTIFICATE----- 2249 MIIG4TCCBMmgAwIBAgIRALss+4rLw2Ia7tFFhxE8g5cwDQYJKoZIhvcNAQELBQAw 2250 bjELMAkGA1UEBhMCTkwxIDAeBgNVBAoMF01pbmlzdGVyaWUgdmFuIERlZmVuc2ll 2251 MT0wOwYDVQQDDDRNaW5pc3RlcmllIHZhbiBEZWZlbnNpZSBDZXJ0aWZpY2F0aWUg 2252 QXV0b3JpdGVpdCAtIEcyMB4XDTEzMDMwNjEyMDM0OVoXDTEzMTEzMDEyMDM1MFow 2253 bDELMAkGA1UEBhMCVVMxFjAUBgNVBAoTDUNlcnRpUGF0aCBMTEMxIjAgBgNVBAsT 2254 GUNlcnRpZmljYXRpb24gQXV0aG9yaXRpZXMxITAfBgNVBAMTGENlcnRpUGF0aCBC 2255 cmlkZ2UgQ0EgLSBHMjCCASIwDQYJKoZIhvcNAQEBBQADggEPADCCAQoCggEBANLW 2256 4kXiRqvwBhJfN9uz12FA+P2D34MPxOt7TGXljm2plJ2CLzvaH8/ymsMdSWdJBS1M 2257 8FmwvNL1w3A6ZuzksJjPikAu8kY3dcp3mrkk9eCPORDAwGtfsXwZysLiuEaDWpbD 2258 dHOaHnI6qWU0N6OI+hNX58EjDpIGC1WQdho1tHOTPc5Hf5/hOpM/29v/wr7kySjs 2259 Z+7nsvkm5rNhuJNzPsLsgzVaJ5/BVyOplZy24FKM8Y43MjR4osZm+a2e0zniqw6/ 2260 rvcjcGYabYaznZfQG1GXoyf2Vea+CCgpgUhlVafgkwEs8izl8rIpvBzXiFAgFQuG 2261 Ituoy92PJbDs430fA/cCAwEAAaOCAnowggJ2MEUGCCsGAQUFBwEBBDkwNzA1Bggr 2262 BgEFBQcwAoYpaHR0cDovL2NlcnRzLmNhLm1pbmRlZi5ubC9taW5kZWYtY2EtMi5w 2263 N2MwHwYDVR0jBBgwFoAUzln9WSPz2M64Rl2HYf2/KD8StmQwDwYDVR0TAQH/BAUw 2264 AwEB/zCB6QYDVR0gBIHhMIHeMEgGCmCEEAGHawECBQEwOjA4BggrBgEFBQcCARYs 2265 aHR0cDovL2Nwcy5kcC5jYS5taW5kZWYubmwvbWluZGVmLWNhLWRwLWNwcy8wSAYK 2266 YIQQAYdrAQIFAjA6MDgGCCsGAQUFBwIBFixodHRwOi8vY3BzLmRwLmNhLm1pbmRl 2267 Zi5ubC9taW5kZWYtY2EtZHAtY3BzLzBIBgpghBABh2sBAgUDMDowOAYIKwYBBQUH 2268 AgEWLGh0dHA6Ly9jcHMuZHAuY2EubWluZGVmLm5sL21pbmRlZi1jYS1kcC1jcHMv 2269 MDkGA1UdHwQyMDAwLqAsoCqGKGh0dHA6Ly9jcmxzLmNhLm1pbmRlZi5ubC9taW5k 2270 ZWYtY2EtMi5jcmwwDgYDVR0PAQH/BAQDAgEGMEYGA1UdHgEB/wQ8MDqhODA2pDEw 2271 LzELMAkGA1UEBhMCTkwxIDAeBgNVBAoTF01pbmlzdGVyaWUgdmFuIERlZmVuc2ll 2272 gQFjMF0GA1UdIQRWMFQwGgYKYIQQAYdrAQIFAQYMKwYBBAGBu1MBAQECMBoGCmCE 2273 EAGHawECBQIGDCsGAQQBgbtTAQEBAjAaBgpghBABh2sBAgUDBgwrBgEEAYG7UwEB 2274 AQIwHQYDVR0OBBYEFNDCjBM3M3ZKkag84ei3/aKc0d0UMA0GCSqGSIb3DQEBCwUA 2275 A4ICAQAQXFn9jF90/DNFf15JhoGtta/0dNInb14PMu3PAjcdrXYCDPpQZOArTUng 2276 5YT1WuzfmjnXiTsziT3my0r9Mxvz/btKK/lnVOMW4c2q/8sIsIPnnW5ZaRGrsANB 2277 dNDZkzMYmeG2Pfgvd0AQSOrpE/TVgWfu/+MMRWwX9y6VbooBR7BLv7zMuVH0WqLn 2278 6OMFth7fqsThlfMSzkE/RDSaU6n3wXAWT1SIqBITtccRjSUQUFm/q3xrb2cwcZA6 2279 8vdS4hzNd+ttS905ay31Ks4/1Wrm1bH5RhEfRSH0VSXnc0b+z+RyBbmiwtVZqzxE 2280 u3UQg/rAmtLDclLFEzjp8YDTIRYSLwstDbEXO/0ArdGrQm79HQ8i/3ZbP2357myW 2281 i15qd6gMJIgGHS4b8Hc7R1K8LQ9Gm1aLKBEWVNGZlPK/cpXThpVmoEyslN2DHCrc 2282 fbMbjNZpXlTMa+/b9z7Fa4X8dY8u/ELzZuJXJv5Rmqtg29eopFFYDCl0Nkh1XAjo 2283 QejEoHHUvYV8TThHZr6Z6Ib8CECgTehU4QvepkgDXNoNrKRZBG0JhLjkwxh2whZq 2284 nvWBfALC2VuNOM6C0rDY+HmhMlVt0XeqnybD9MuQALMit7Z00Cw2CIjNsBI9xBqD 2285 xKK9CjUb7gzRUWSpB9jGHsvpEMHOzIFhufvH2Bz1XJw+Cl7khw== 2286 -----END CERTIFICATE-----` 2287 2288 func TestAdditionFieldsInGeneralSubtree(t *testing.T) { 2289 // Very rarely, certificates can include additional fields in the 2290 // GeneralSubtree structure. This tests that such certificates can be 2291 // parsed. 2292 block, _ := pem.Decode([]byte(additionalGeneralSubtreePEM)) 2293 if _, err := ParseCertificate(block.Bytes); err != nil { 2294 t.Fatalf("failed to parse certificate: %s", err) 2295 } 2296 } 2297 2298 func TestEmptySubject(t *testing.T) { 2299 template := Certificate{ 2300 SerialNumber: big.NewInt(1), 2301 DNSNames: []string{"example.com"}, 2302 } 2303 2304 derBytes, err := CreateCertificate(rand.Reader, &template, &template, &testPrivateKey.PublicKey, testPrivateKey) 2305 if err != nil { 2306 t.Fatalf("failed to create certificate: %s", err) 2307 } 2308 2309 cert, err := ParseCertificate(derBytes) 2310 if err != nil { 2311 t.Fatalf("failed to parse certificate: %s", err) 2312 } 2313 2314 for _, ext := range cert.Extensions { 2315 if ext.Id.Equal(oidExtensionSubjectAltName) { 2316 if !ext.Critical { 2317 t.Fatal("SAN extension is not critical") 2318 } 2319 return 2320 } 2321 } 2322 2323 t.Fatal("SAN extension is missing") 2324 } 2325 2326 // multipleURLsInCRLDPPEM contains two URLs in a single CRL DistributionPoint 2327 // structure. It is taken from https://crt.sh/?id=12721534. 2328 const multipleURLsInCRLDPPEM = ` 2329 -----BEGIN CERTIFICATE----- 2330 MIIF4TCCBMmgAwIBAgIQc+6uFePfrahUGpXs8lhiTzANBgkqhkiG9w0BAQsFADCB 2331 8zELMAkGA1UEBhMCRVMxOzA5BgNVBAoTMkFnZW5jaWEgQ2F0YWxhbmEgZGUgQ2Vy 2332 dGlmaWNhY2lvIChOSUYgUS0wODAxMTc2LUkpMSgwJgYDVQQLEx9TZXJ2ZWlzIFB1 2333 YmxpY3MgZGUgQ2VydGlmaWNhY2lvMTUwMwYDVQQLEyxWZWdldSBodHRwczovL3d3 2334 dy5jYXRjZXJ0Lm5ldC92ZXJhcnJlbCAoYykwMzE1MDMGA1UECxMsSmVyYXJxdWlh 2335 IEVudGl0YXRzIGRlIENlcnRpZmljYWNpbyBDYXRhbGFuZXMxDzANBgNVBAMTBkVD 2336 LUFDQzAeFw0xNDA5MTgwODIxMDBaFw0zMDA5MTgwODIxMDBaMIGGMQswCQYDVQQG 2337 EwJFUzEzMDEGA1UECgwqQ09OU09SQ0kgQURNSU5JU1RSQUNJTyBPQkVSVEEgREUg 2338 Q0FUQUxVTllBMSowKAYDVQQLDCFTZXJ2ZWlzIFDDumJsaWNzIGRlIENlcnRpZmlj 2339 YWNpw7MxFjAUBgNVBAMMDUVDLUNpdXRhZGFuaWEwggEiMA0GCSqGSIb3DQEBAQUA 2340 A4IBDwAwggEKAoIBAQDFkHPRZPZlXTWZ5psJhbS/Gx+bxcTpGrlVQHHtIkgGz77y 2341 TA7UZUFb2EQMncfbOhR0OkvQQn1aMvhObFJSR6nI+caf2D+h/m/InMl1MyH3S0Ak 2342 YGZZsthnyC6KxqK2A/NApncrOreh70ULkQs45aOKsi1kR1W0zE+iFN+/P19P7AkL 2343 Rl3bXBCVd8w+DLhcwRrkf1FCDw6cEqaFm3cGgf5cbBDMaVYAweWTxwBZAq2RbQAW 2344 jE7mledcYghcZa4U6bUmCBPuLOnO8KMFAvH+aRzaf3ws5/ZoOVmryyLLJVZ54peZ 2345 OwnP9EL4OuWzmXCjBifXR2IAblxs5JYj57tls45nAgMBAAGjggHaMIIB1jASBgNV 2346 HRMBAf8ECDAGAQH/AgEAMA4GA1UdDwEB/wQEAwIBBjAdBgNVHQ4EFgQUC2hZPofI 2347 oxUa4ECCIl+fHbLFNxUwHwYDVR0jBBgwFoAUoMOLRKo3pUW/l4Ba0fF4opvpXY0w 2348 gdYGA1UdIASBzjCByzCByAYEVR0gADCBvzAxBggrBgEFBQcCARYlaHR0cHM6Ly93 2349 d3cuYW9jLmNhdC9DQVRDZXJ0L1JlZ3VsYWNpbzCBiQYIKwYBBQUHAgIwfQx7QXF1 2350 ZXN0IGNlcnRpZmljYXQgw6lzIGVtw6hzIMO6bmljYSBpIGV4Y2x1c2l2YW1lbnQg 2351 YSBFbnRpdGF0cyBkZSBDZXJ0aWZpY2FjacOzLiBWZWdldSBodHRwczovL3d3dy5h 2352 b2MuY2F0L0NBVENlcnQvUmVndWxhY2lvMDMGCCsGAQUFBwEBBCcwJTAjBggrBgEF 2353 BQcwAYYXaHR0cDovL29jc3AuY2F0Y2VydC5jYXQwYgYDVR0fBFswWTBXoFWgU4Yn 2354 aHR0cDovL2Vwc2NkLmNhdGNlcnQubmV0L2NybC9lYy1hY2MuY3JshihodHRwOi8v 2355 ZXBzY2QyLmNhdGNlcnQubmV0L2NybC9lYy1hY2MuY3JsMA0GCSqGSIb3DQEBCwUA 2356 A4IBAQChqFTjlAH5PyIhLjLgEs68CyNNC1+vDuZXRhy22TI83JcvGmQrZosPvVIL 2357 PsUXx+C06Pfqmh48Q9S89X9K8w1SdJxP/rZeGEoRiKpwvQzM4ArD9QxyC8jirxex 2358 3Umg9Ai/sXQ+1lBf6xw4HfUUr1WIp7pNHj0ZWLo106urqktcdeAFWme+/klis5fu 2359 labCSVPuT/QpwakPrtqOhRms8vgpKiXa/eLtL9ZiA28X/Mker0zlAeTA7Z7uAnp6 2360 oPJTlZu1Gg1ZDJueTWWsLlO+P+Wzm3MRRIbcgdRzm4mdO7ubu26SzX/aQXDhuih+ 2361 eVxXDTCfs7GUlxnjOp5j559X/N0A 2362 -----END CERTIFICATE----- 2363 ` 2364 2365 func TestMultipleURLsInCRLDP(t *testing.T) { 2366 block, _ := pem.Decode([]byte(multipleURLsInCRLDPPEM)) 2367 cert, err := ParseCertificate(block.Bytes) 2368 if err != nil { 2369 t.Fatalf("failed to parse certificate: %s", err) 2370 } 2371 2372 //goland:noinspection HttpUrlsUsage 2373 want := []string{ 2374 "http://epscd.catcert.net/crl/ec-acc.crl", 2375 "http://epscd2.catcert.net/crl/ec-acc.crl", 2376 } 2377 if got := cert.CRLDistributionPoints; !reflect.DeepEqual(got, want) { 2378 t.Errorf("CRL distribution points = %#v, want #%v", got, want) 2379 } 2380 } 2381 2382 const hexPKCS1TestPKCS8Key = "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" 2383 const hexPKCS1TestECKey = "3081a40201010430bdb9839c08ee793d1157886a7a758a3c8b2a17a4df48f17ace57c72c56b4723cf21dcda21d4e1ad57ff034f19fcfd98ea00706052b81040022a16403620004feea808b5ee2429cfcce13c32160e1c960990bd050bb0fdf7222f3decd0a55008e32a6aa3c9062051c4cba92a7a3b178b24567412d43cdd2f882fa5addddd726fe3e208d2c26d733a773a597abb749714df7256ead5105fa6e7b3650de236b50" 2384 2385 var pkcs1MismatchKeyTests = []struct { 2386 hexKey string 2387 errorContains string 2388 }{ 2389 {hexKey: hexPKCS1TestPKCS8Key, errorContains: "use ParsePKCS8PrivateKey instead"}, 2390 {hexKey: hexPKCS1TestECKey, errorContains: "use ParseECPrivateKey instead"}, 2391 } 2392 2393 func TestPKCS1MismatchKeyFormat(t *testing.T) { 2394 for i, test := range pkcs1MismatchKeyTests { 2395 derBytes, _ := hex.DecodeString(test.hexKey) 2396 _, err := ParsePKCS1PrivateKey(derBytes) 2397 if !strings.Contains(err.Error(), test.errorContains) { 2398 t.Errorf("#%d: expected error containing %q, got %s", i, test.errorContains, err) 2399 } 2400 } 2401 } 2402 2403 func TestCreateRevocationList(t *testing.T) { 2404 ec256Priv, err := ecdsa.GenerateKey(elliptic.P256(), rand.Reader) 2405 if err != nil { 2406 t.Fatalf("Failed to generate ECDSA P256 key: %s", err) 2407 } 2408 _, ed25519Priv, err := ed25519.GenerateKey(rand.Reader) 2409 if err != nil { 2410 t.Fatalf("Failed to generate Ed25519 key: %s", err) 2411 } 2412 tests := []struct { 2413 name string 2414 key crypto.Signer 2415 issuer *Certificate 2416 template *RevocationList 2417 expectedError string 2418 }{ 2419 { 2420 name: "nil template", 2421 key: ec256Priv, 2422 issuer: nil, 2423 template: nil, 2424 expectedError: "x509: template can not be nil", 2425 }, 2426 { 2427 name: "nil issuer", 2428 key: ec256Priv, 2429 issuer: nil, 2430 template: &RevocationList{}, 2431 expectedError: "x509: issuer can not be nil", 2432 }, 2433 { 2434 name: "issuer doesn't have crlSign key usage bit set", 2435 key: ec256Priv, 2436 issuer: &Certificate{ 2437 KeyUsage: KeyUsageCertSign, 2438 }, 2439 template: &RevocationList{}, 2440 expectedError: "x509: issuer must have the crlSign key usage bit set", 2441 }, 2442 { 2443 name: "issuer missing SubjectKeyId", 2444 key: ec256Priv, 2445 issuer: &Certificate{ 2446 KeyUsage: KeyUsageCRLSign, 2447 }, 2448 template: &RevocationList{}, 2449 expectedError: "x509: issuer certificate doesn't contain a subject key identifier", 2450 }, 2451 { 2452 name: "nextUpdate before thisUpdate", 2453 key: ec256Priv, 2454 issuer: &Certificate{ 2455 KeyUsage: KeyUsageCRLSign, 2456 Subject: pkix.Name{ 2457 CommonName: "testing", 2458 }, 2459 SubjectKeyId: []byte{1, 2, 3}, 2460 }, 2461 template: &RevocationList{ 2462 ThisUpdate: time.Time{}.Add(time.Hour), 2463 NextUpdate: time.Time{}, 2464 }, 2465 expectedError: "x509: template.ThisUpdate is after template.NextUpdate", 2466 }, 2467 { 2468 name: "nil Number", 2469 key: ec256Priv, 2470 issuer: &Certificate{ 2471 KeyUsage: KeyUsageCRLSign, 2472 Subject: pkix.Name{ 2473 CommonName: "testing", 2474 }, 2475 SubjectKeyId: []byte{1, 2, 3}, 2476 }, 2477 template: &RevocationList{ 2478 ThisUpdate: time.Time{}.Add(time.Hour * 24), 2479 NextUpdate: time.Time{}.Add(time.Hour * 48), 2480 }, 2481 expectedError: "x509: template contains nil Number field", 2482 }, 2483 { 2484 name: "invalid signature algorithm", 2485 key: ec256Priv, 2486 issuer: &Certificate{ 2487 KeyUsage: KeyUsageCRLSign, 2488 Subject: pkix.Name{ 2489 CommonName: "testing", 2490 }, 2491 SubjectKeyId: []byte{1, 2, 3}, 2492 }, 2493 template: &RevocationList{ 2494 SignatureAlgorithm: SHA256WithRSA, 2495 RevokedCertificates: []pkix.RevokedCertificate{ 2496 { 2497 SerialNumber: big.NewInt(2), 2498 RevocationTime: time.Time{}.Add(time.Hour), 2499 }, 2500 }, 2501 Number: big.NewInt(5), 2502 ThisUpdate: time.Time{}.Add(time.Hour * 24), 2503 NextUpdate: time.Time{}.Add(time.Hour * 48), 2504 }, 2505 expectedError: "x509: requested SignatureAlgorithm does not match private key type", 2506 }, 2507 { 2508 name: "valid", 2509 key: ec256Priv, 2510 issuer: &Certificate{ 2511 KeyUsage: KeyUsageCRLSign, 2512 Subject: pkix.Name{ 2513 CommonName: "testing", 2514 }, 2515 SubjectKeyId: []byte{1, 2, 3}, 2516 }, 2517 template: &RevocationList{ 2518 RevokedCertificates: []pkix.RevokedCertificate{ 2519 { 2520 SerialNumber: big.NewInt(2), 2521 RevocationTime: time.Time{}.Add(time.Hour), 2522 }, 2523 }, 2524 Number: big.NewInt(5), 2525 ThisUpdate: time.Time{}.Add(time.Hour * 24), 2526 NextUpdate: time.Time{}.Add(time.Hour * 48), 2527 }, 2528 }, 2529 { 2530 name: "valid, Ed25519 key", 2531 key: ed25519Priv, 2532 issuer: &Certificate{ 2533 KeyUsage: KeyUsageCRLSign, 2534 Subject: pkix.Name{ 2535 CommonName: "testing", 2536 }, 2537 SubjectKeyId: []byte{1, 2, 3}, 2538 }, 2539 template: &RevocationList{ 2540 RevokedCertificates: []pkix.RevokedCertificate{ 2541 { 2542 SerialNumber: big.NewInt(2), 2543 RevocationTime: time.Time{}.Add(time.Hour), 2544 }, 2545 }, 2546 Number: big.NewInt(5), 2547 ThisUpdate: time.Time{}.Add(time.Hour * 24), 2548 NextUpdate: time.Time{}.Add(time.Hour * 48), 2549 }, 2550 }, 2551 { 2552 name: "valid, non-default signature algorithm", 2553 key: ec256Priv, 2554 issuer: &Certificate{ 2555 KeyUsage: KeyUsageCRLSign, 2556 Subject: pkix.Name{ 2557 CommonName: "testing", 2558 }, 2559 SubjectKeyId: []byte{1, 2, 3}, 2560 }, 2561 template: &RevocationList{ 2562 SignatureAlgorithm: ECDSAWithSHA512, 2563 RevokedCertificates: []pkix.RevokedCertificate{ 2564 { 2565 SerialNumber: big.NewInt(2), 2566 RevocationTime: time.Time{}.Add(time.Hour), 2567 }, 2568 }, 2569 Number: big.NewInt(5), 2570 ThisUpdate: time.Time{}.Add(time.Hour * 24), 2571 NextUpdate: time.Time{}.Add(time.Hour * 48), 2572 }, 2573 }, 2574 { 2575 name: "valid, extra extension", 2576 key: ec256Priv, 2577 issuer: &Certificate{ 2578 KeyUsage: KeyUsageCRLSign, 2579 Subject: pkix.Name{ 2580 CommonName: "testing", 2581 }, 2582 SubjectKeyId: []byte{1, 2, 3}, 2583 }, 2584 template: &RevocationList{ 2585 RevokedCertificates: []pkix.RevokedCertificate{ 2586 { 2587 SerialNumber: big.NewInt(2), 2588 RevocationTime: time.Time{}.Add(time.Hour), 2589 }, 2590 }, 2591 Number: big.NewInt(5), 2592 ThisUpdate: time.Time{}.Add(time.Hour * 24), 2593 NextUpdate: time.Time{}.Add(time.Hour * 48), 2594 ExtraExtensions: []pkix.Extension{ 2595 { 2596 Id: []int{2, 5, 29, 99}, 2597 Value: []byte{5, 0}, 2598 }, 2599 }, 2600 }, 2601 }, 2602 { 2603 name: "valid, empty list", 2604 key: ec256Priv, 2605 issuer: &Certificate{ 2606 KeyUsage: KeyUsageCRLSign, 2607 Subject: pkix.Name{ 2608 CommonName: "testing", 2609 }, 2610 SubjectKeyId: []byte{1, 2, 3}, 2611 }, 2612 template: &RevocationList{ 2613 Number: big.NewInt(5), 2614 ThisUpdate: time.Time{}.Add(time.Hour * 24), 2615 NextUpdate: time.Time{}.Add(time.Hour * 48), 2616 }, 2617 }, 2618 } 2619 2620 for _, tc := range tests { 2621 t.Run(tc.name, func(t *testing.T) { 2622 crl, err := CreateRevocationList(rand.Reader, tc.template, tc.issuer, tc.key) 2623 if err != nil && tc.expectedError == "" { 2624 t.Fatalf("CreateRevocationList failed unexpectedly: %s", err) 2625 } else if err != nil && tc.expectedError != err.Error() { 2626 t.Fatalf("CreateRevocationList failed unexpectedly, wanted: %s, got: %s", tc.expectedError, err) 2627 } else if err == nil && tc.expectedError != "" { 2628 t.Fatalf("CreateRevocationList didn't fail, expected: %s", tc.expectedError) 2629 } 2630 if tc.expectedError != "" { 2631 return 2632 } 2633 2634 parsedCRL, err := ParseDERCRL(crl) 2635 if err != nil { 2636 t.Fatalf("Failed to parse generated CRL: %s", err) 2637 } 2638 2639 if tc.template.SignatureAlgorithm != UnknownSignatureAlgorithm && 2640 parsedCRL.SignatureAlgorithm.Algorithm.Equal(signatureAlgorithmDetails[tc.template.SignatureAlgorithm].oid) { 2641 t.Fatalf("SignatureAlgorithm mismatch: got %v; want %v.", parsedCRL.SignatureAlgorithm, 2642 tc.template.SignatureAlgorithm) 2643 } 2644 2645 if !reflect.DeepEqual(parsedCRL.TBSCertList.RevokedCertificates, tc.template.RevokedCertificates) { 2646 t.Fatalf("RevokedCertificates mismatch: got %v; want %v.", 2647 parsedCRL.TBSCertList.RevokedCertificates, tc.template.RevokedCertificates) 2648 } 2649 2650 if len(parsedCRL.TBSCertList.Extensions) != 2+len(tc.template.ExtraExtensions) { 2651 t.Fatalf("Generated CRL has wrong number of extensions, wanted: %d, got: %d", 2+len(tc.template.ExtraExtensions), len(parsedCRL.TBSCertList.Extensions)) 2652 } 2653 expectedAKI, err := asn1.Marshal(authKeyId{Id: tc.issuer.SubjectKeyId}) 2654 if err != nil { 2655 t.Fatalf("asn1.Marshal failed: %s", err) 2656 } 2657 akiExt := pkix.Extension{ 2658 Id: oidExtensionAuthorityKeyId, 2659 Value: expectedAKI, 2660 } 2661 if !reflect.DeepEqual(parsedCRL.TBSCertList.Extensions[0], akiExt) { 2662 t.Fatalf("Unexpected first extension: got %v, want %v", 2663 parsedCRL.TBSCertList.Extensions[0], akiExt) 2664 } 2665 expectedNum, err := asn1.Marshal(tc.template.Number) 2666 if err != nil { 2667 t.Fatalf("asn1.Marshal failed: %s", err) 2668 } 2669 crlExt := pkix.Extension{ 2670 Id: oidExtensionCRLNumber, 2671 Value: expectedNum, 2672 } 2673 if !reflect.DeepEqual(parsedCRL.TBSCertList.Extensions[1], crlExt) { 2674 t.Fatalf("Unexpected second extension: got %v, want %v", 2675 parsedCRL.TBSCertList.Extensions[1], crlExt) 2676 } 2677 if len(parsedCRL.TBSCertList.Extensions[2:]) == 0 && len(tc.template.ExtraExtensions) == 0 { 2678 // If we don't have anything to check return early so we don't 2679 // hit a [] != nil false positive below. 2680 return 2681 } 2682 if !reflect.DeepEqual(parsedCRL.TBSCertList.Extensions[2:], tc.template.ExtraExtensions) { 2683 t.Fatalf("Extensions mismatch: got %v; want %v.", 2684 parsedCRL.TBSCertList.Extensions[2:], tc.template.ExtraExtensions) 2685 } 2686 }) 2687 } 2688 } 2689 2690 func TestRSAPSAParameters(t *testing.T) { 2691 generateParams := func(hashFunc Hash) []byte { 2692 var hashOID asn1.ObjectIdentifier 2693 2694 switch hashFunc { 2695 case SHA256: 2696 hashOID = oidSHA256 2697 case SHA384: 2698 hashOID = oidSHA384 2699 case SHA512: 2700 hashOID = oidSHA512 2701 } 2702 2703 params := pssParameters{ 2704 Hash: pkix.AlgorithmIdentifier{ 2705 Algorithm: hashOID, 2706 Parameters: asn1.NullRawValue, 2707 }, 2708 MGF: pkix.AlgorithmIdentifier{ 2709 Algorithm: oidMGF1, 2710 }, 2711 SaltLength: hashFunc.Size(), 2712 TrailerField: 1, 2713 } 2714 2715 mgf1Params := pkix.AlgorithmIdentifier{ 2716 Algorithm: hashOID, 2717 Parameters: asn1.NullRawValue, 2718 } 2719 2720 var err error 2721 params.MGF.Parameters.FullBytes, err = asn1.Marshal(mgf1Params) 2722 if err != nil { 2723 t.Fatalf("failed to marshal MGF parameters: %s", err) 2724 } 2725 2726 serialized, err := asn1.Marshal(params) 2727 if err != nil { 2728 t.Fatalf("failed to marshal parameters: %s", err) 2729 } 2730 2731 return serialized 2732 } 2733 2734 for h, params := range hashToPSSParameters { 2735 generated := generateParams(h) 2736 if !bytes.Equal(params.FullBytes, generated) { 2737 t.Errorf("hardcoded parameters for %s didn't match generated parameters: got (generated) %x, wanted (hardcoded) %x", h, generated, params.FullBytes) 2738 } 2739 } 2740 } 2741 2742 func TestUnknownExtKey(t *testing.T) { 2743 const errorContains = "unknown extended key usage" 2744 2745 template := &Certificate{ 2746 SerialNumber: big.NewInt(10), 2747 DNSNames: []string{"foo"}, 2748 ExtKeyUsage: []ExtKeyUsage{ExtKeyUsage(-1)}, 2749 } 2750 signer, err := rsa.GenerateKey(rand.Reader, 1024) 2751 if err != nil { 2752 t.Errorf("failed to generate key for TestUnknownExtKey") 2753 } 2754 2755 _, err = CreateCertificate(rand.Reader, template, template, signer.Public(), signer) 2756 if !strings.Contains(err.Error(), errorContains) { 2757 t.Errorf("expected error containing %q, got %s", errorContains, err) 2758 } 2759 } 2760 2761 func TestIA5SANEnforcement(t *testing.T) { 2762 k, err := ecdsa.GenerateKey(elliptic.P256(), rand.Reader) 2763 if err != nil { 2764 t.Fatalf("ecdsa.GenerateKey failed: %s", err) 2765 } 2766 2767 testURL, err := url.Parse("https://example.com/") 2768 if err != nil { 2769 t.Fatalf("url.Parse failed: %s", err) 2770 } 2771 testURL.RawQuery = "∞" 2772 2773 marshalTests := []struct { 2774 name string 2775 template *Certificate 2776 expectedError string 2777 }{ 2778 { 2779 name: "marshal: unicode dNSName", 2780 template: &Certificate{ 2781 SerialNumber: big.NewInt(0), 2782 DNSNames: []string{"∞"}, 2783 }, 2784 expectedError: "x509: \"∞\" cannot be encoded as an IA5String", 2785 }, 2786 { 2787 name: "marshal: unicode rfc822Name", 2788 template: &Certificate{ 2789 SerialNumber: big.NewInt(0), 2790 EmailAddresses: []string{"∞"}, 2791 }, 2792 expectedError: "x509: \"∞\" cannot be encoded as an IA5String", 2793 }, 2794 { 2795 name: "marshal: unicode uniformResourceIdentifier", 2796 template: &Certificate{ 2797 SerialNumber: big.NewInt(0), 2798 URIs: []*url.URL{testURL}, 2799 }, 2800 expectedError: "x509: \"https://example.com/?∞\" cannot be encoded as an IA5String", 2801 }, 2802 } 2803 2804 for _, tc := range marshalTests { 2805 t.Run(tc.name, func(t *testing.T) { 2806 _, err := CreateCertificate(rand.Reader, tc.template, tc.template, k.Public(), k) 2807 if err == nil { 2808 t.Errorf("expected CreateCertificate to fail with template: %v", tc.template) 2809 } else if err.Error() != tc.expectedError { 2810 t.Errorf("unexpected error: got %q, want %q", err.Error(), tc.expectedError) 2811 } 2812 }) 2813 } 2814 2815 unmarshalTests := []struct { 2816 name string 2817 cert string 2818 expectedError string 2819 }{ 2820 { 2821 name: "unmarshal: unicode dNSName", 2822 cert: "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", 2823 expectedError: "x509: SAN dNSName is malformed", 2824 }, 2825 { 2826 name: "unmarshal: unicode rfc822Name", 2827 cert: "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", 2828 expectedError: "x509: SAN rfc822Name is malformed", 2829 }, 2830 { 2831 name: "unmarshal: unicode uniformResourceIdentifier", 2832 cert: "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", 2833 expectedError: "x509: SAN uniformResourceIdentifier is malformed", 2834 }, 2835 } 2836 2837 for _, tc := range unmarshalTests { 2838 der, err := hex.DecodeString(tc.cert) 2839 if err != nil { 2840 t.Fatalf("failed to decode test cert: %s", err) 2841 } 2842 _, err = ParseCertificate(der) 2843 if err == nil { 2844 t.Error("expected CreateCertificate to fail") 2845 } else if err.Error() != tc.expectedError { 2846 t.Errorf("unexpected error: got %q, want %q", err.Error(), tc.expectedError) 2847 } 2848 } 2849 } 2850 2851 func BenchmarkCreateCertificate(b *testing.B) { 2852 template := &Certificate{ 2853 SerialNumber: big.NewInt(10), 2854 DNSNames: []string{"example.com"}, 2855 } 2856 tests := []struct { 2857 name string 2858 gen func() crypto.Signer 2859 }{ 2860 { 2861 name: "RSA 2048", 2862 gen: func() crypto.Signer { 2863 k, err := rsa.GenerateKey(rand.Reader, 2048) 2864 if err != nil { 2865 b.Fatalf("failed to generate test key: %s", err) 2866 } 2867 return k 2868 }, 2869 }, 2870 { 2871 name: "ECDSA P256", 2872 gen: func() crypto.Signer { 2873 k, err := ecdsa.GenerateKey(elliptic.P256(), rand.Reader) 2874 if err != nil { 2875 b.Fatalf("failed to generate test key: %s", err) 2876 } 2877 return k 2878 }, 2879 }, 2880 } 2881 2882 for _, tc := range tests { 2883 k := tc.gen() 2884 b.ResetTimer() 2885 b.Run(tc.name, func(b *testing.B) { 2886 for i := 0; i < b.N; i++ { 2887 _, err := CreateCertificate(rand.Reader, template, template, k.Public(), k) 2888 if err != nil { 2889 b.Fatalf("failed to create certificate: %s", err) 2890 } 2891 } 2892 }) 2893 } 2894 } 2895 2896 type brokenSigner struct { 2897 pub crypto.PublicKey 2898 } 2899 2900 func (bs *brokenSigner) Public() crypto.PublicKey { 2901 return bs.pub 2902 } 2903 2904 func (bs *brokenSigner) Sign(_ io.Reader, _ []byte, _ crypto.SignerOpts) ([]byte, error) { 2905 return []byte{1, 2, 3}, nil 2906 } 2907 2908 func TestCreateCertificateBrokenSigner(t *testing.T) { 2909 template := &Certificate{ 2910 SerialNumber: big.NewInt(10), 2911 DNSNames: []string{"example.com"}, 2912 } 2913 k, err := rsa.GenerateKey(rand.Reader, 1024) 2914 if err != nil { 2915 t.Fatalf("failed to generate test key: %s", err) 2916 } 2917 expectedErr := "x509: signature over certificate returned by signer is invalid: crypto/rsa: verification error" 2918 _, err = CreateCertificate(rand.Reader, template, template, k.Public(), &brokenSigner{k.Public()}) 2919 if err == nil { 2920 t.Fatal("expected CreateCertificate to fail with a broken signer") 2921 } else if err.Error() != expectedErr { 2922 t.Fatalf("CreateCertificate returned an unexpected error: got %q, want %q", err, expectedErr) 2923 } 2924 } 2925 2926 func TestCreateCertificateMD5(t *testing.T) { 2927 template := &Certificate{ 2928 SerialNumber: big.NewInt(10), 2929 DNSNames: []string{"example.com"}, 2930 SignatureAlgorithm: MD5WithRSA, 2931 } 2932 k, err := rsa.GenerateKey(rand.Reader, 1024) 2933 if err != nil { 2934 t.Fatalf("failed to generate test key: %s", err) 2935 } 2936 _, err = CreateCertificate(rand.Reader, template, template, k.Public(), &brokenSigner{k.Public()}) 2937 if err != nil { 2938 t.Fatalf("CreateCertificate failed when SignatureAlgorithm = MD5WithRSA: %s", err) 2939 } 2940 } 2941 2942 func (s *CertPool) mustCert(t *testing.T, n int) *Certificate { 2943 c, err := s.lazyCerts[n].getCert() 2944 if err != nil { 2945 t.Fatalf("failed to load cert %d: %v", n, err) 2946 } 2947 return c 2948 } 2949 2950 func allCerts(t *testing.T, p *CertPool) []*Certificate { 2951 all := make([]*Certificate, p.len()) 2952 for i := range all { 2953 all[i] = p.mustCert(t, i) 2954 } 2955 return all 2956 } 2957 2958 // certPoolEqual reports whether a and b are equal, except for the 2959 // function pointers. 2960 func certPoolEqual(a, b *CertPool) bool { 2961 if (a != nil) != (b != nil) { 2962 return false 2963 } 2964 if a == nil { 2965 return true 2966 } 2967 if !reflect.DeepEqual(a.byName, b.byName) || 2968 len(a.lazyCerts) != len(b.lazyCerts) { 2969 return false 2970 } 2971 for i := range a.lazyCerts { 2972 la, lb := a.lazyCerts[i], b.lazyCerts[i] 2973 if !bytes.Equal(la.rawSubject, lb.rawSubject) { 2974 return false 2975 } 2976 ca, err := la.getCert() 2977 if err != nil { 2978 panic(err) 2979 } 2980 cb, err := la.getCert() 2981 if err != nil { 2982 panic(err) 2983 } 2984 if !ca.Equal(cb) { 2985 return false 2986 } 2987 } 2988 2989 return true 2990 } 2991 2992 func TestCertificateRequestRoundtripFields(t *testing.T) { 2993 urlA, err := url.Parse("https://example.com/_") 2994 if err != nil { 2995 t.Fatal(err) 2996 } 2997 urlB, err := url.Parse("https://example.org/_") 2998 if err != nil { 2999 t.Fatal(err) 3000 } 3001 in := &CertificateRequest{ 3002 DNSNames: []string{"example.com", "example.org"}, 3003 EmailAddresses: []string{"a@example.com", "b@example.com"}, 3004 IPAddresses: []net.IP{net.IPv4(192, 0, 2, 0), net.IPv6loopback}, 3005 URIs: []*url.URL{urlA, urlB}, 3006 } 3007 out := marshalAndParseCSR(t, in) 3008 3009 if !reflect.DeepEqual(in.DNSNames, out.DNSNames) { 3010 t.Fatalf("Unexpected DNSNames: got %v, want %v", out.DNSNames, in.DNSNames) 3011 } 3012 if !reflect.DeepEqual(in.EmailAddresses, out.EmailAddresses) { 3013 t.Fatalf("Unexpected EmailAddresses: got %v, want %v", out.EmailAddresses, in.EmailAddresses) 3014 } 3015 if len(in.IPAddresses) != len(out.IPAddresses) || 3016 !in.IPAddresses[0].Equal(out.IPAddresses[0]) || 3017 !in.IPAddresses[1].Equal(out.IPAddresses[1]) { 3018 t.Fatalf("Unexpected IPAddresses: got %v, want %v", out.IPAddresses, in.IPAddresses) 3019 } 3020 if !reflect.DeepEqual(in.URIs, out.URIs) { 3021 t.Fatalf("Unexpected URIs: got %v, want %v", out.URIs, in.URIs) 3022 } 3023 } 3024 3025 func BenchmarkParseCertificate(b *testing.B) { 3026 cases := []struct { 3027 name string 3028 pem string 3029 }{ 3030 { 3031 name: "ecdsa leaf", 3032 pem: `-----BEGIN CERTIFICATE----- 3033 MIIINjCCBx6gAwIBAgIQHdQ6oBMoe/MJAAAAAEHzmTANBgkqhkiG9w0BAQsFADBG 3034 MQswCQYDVQQGEwJVUzEiMCAGA1UEChMZR29vZ2xlIFRydXN0IFNlcnZpY2VzIExM 3035 QzETMBEGA1UEAxMKR1RTIENBIDFDMzAeFw0yMDEyMDgwOTExMzZaFw0yMTAzMDIw 3036 OTExMzVaMBcxFTATBgNVBAMMDCouZ29vZ2xlLmNvbTBZMBMGByqGSM49AgEGCCqG 3037 SM49AwEHA0IABEFYegyHh1AHRS1nar5+zYJgMACcsIQMtg0YMyK/59ml8ERIt/JF 3038 kXM3XIvQuCJhghUawZrrAcAs8djZF1U9M4mjggYYMIIGFDAOBgNVHQ8BAf8EBAMC 3039 B4AwEwYDVR0lBAwwCgYIKwYBBQUHAwEwDAYDVR0TAQH/BAIwADAdBgNVHQ4EFgQU 3040 6SWWF36XBsmXJ6iV0EHPXUFoMbwwHwYDVR0jBBgwFoAUinR/r4XN7pXNPZzQ4kYU 3041 83E1HScwagYIKwYBBQUHAQEEXjBcMCcGCCsGAQUFBzABhhtodHRwOi8vb2NzcC5w 3042 a2kuZ29vZy9ndHMxYzMwMQYIKwYBBQUHMAKGJWh0dHA6Ly9wa2kuZ29vZy9yZXBv 3043 L2NlcnRzL2d0czFjMy5kZXIwggTCBgNVHREEggS5MIIEtYIMKi5nb29nbGUuY29t 3044 gg0qLmFuZHJvaWQuY29tghYqLmFwcGVuZ2luZS5nb29nbGUuY29tggkqLmJkbi5k 3045 ZXaCEiouY2xvdWQuZ29vZ2xlLmNvbYIYKi5jcm93ZHNvdXJjZS5nb29nbGUuY29t 3046 ghgqLmRhdGFjb21wdXRlLmdvb2dsZS5jb22CBiouZy5jb4IOKi5nY3AuZ3Z0Mi5j 3047 b22CESouZ2NwY2RuLmd2dDEuY29tggoqLmdncGh0LmNugg4qLmdrZWNuYXBwcy5j 3048 boIWKi5nb29nbGUtYW5hbHl0aWNzLmNvbYILKi5nb29nbGUuY2GCCyouZ29vZ2xl 3049 LmNsgg4qLmdvb2dsZS5jby5pboIOKi5nb29nbGUuY28uanCCDiouZ29vZ2xlLmNv 3050 LnVrgg8qLmdvb2dsZS5jb20uYXKCDyouZ29vZ2xlLmNvbS5hdYIPKi5nb29nbGUu 3051 Y29tLmJygg8qLmdvb2dsZS5jb20uY2+CDyouZ29vZ2xlLmNvbS5teIIPKi5nb29n 3052 bGUuY29tLnRygg8qLmdvb2dsZS5jb20udm6CCyouZ29vZ2xlLmRlggsqLmdvb2ds 3053 ZS5lc4ILKi5nb29nbGUuZnKCCyouZ29vZ2xlLmh1ggsqLmdvb2dsZS5pdIILKi5n 3054 b29nbGUubmyCCyouZ29vZ2xlLnBsggsqLmdvb2dsZS5wdIISKi5nb29nbGVhZGFw 3055 aXMuY29tgg8qLmdvb2dsZWFwaXMuY26CESouZ29vZ2xlY25hcHBzLmNughQqLmdv 3056 b2dsZWNvbW1lcmNlLmNvbYIRKi5nb29nbGV2aWRlby5jb22CDCouZ3N0YXRpYy5j 3057 boINKi5nc3RhdGljLmNvbYISKi5nc3RhdGljY25hcHBzLmNuggoqLmd2dDEuY29t 3058 ggoqLmd2dDIuY29tghQqLm1ldHJpYy5nc3RhdGljLmNvbYIMKi51cmNoaW4uY29t 3059 ghAqLnVybC5nb29nbGUuY29tghMqLndlYXIuZ2tlY25hcHBzLmNughYqLnlvdXR1 3060 YmUtbm9jb29raWUuY29tgg0qLnlvdXR1YmUuY29tghYqLnlvdXR1YmVlZHVjYXRp 3061 b24uY29tghEqLnlvdXR1YmVraWRzLmNvbYIHKi55dC5iZYILKi55dGltZy5jb22C 3062 GmFuZHJvaWQuY2xpZW50cy5nb29nbGUuY29tggthbmRyb2lkLmNvbYIbZGV2ZWxv 3063 cGVyLmFuZHJvaWQuZ29vZ2xlLmNughxkZXZlbG9wZXJzLmFuZHJvaWQuZ29vZ2xl 3064 LmNuggRnLmNvgghnZ3BodC5jboIMZ2tlY25hcHBzLmNuggZnb28uZ2yCFGdvb2ds 3065 ZS1hbmFseXRpY3MuY29tggpnb29nbGUuY29tgg9nb29nbGVjbmFwcHMuY26CEmdv 3066 b2dsZWNvbW1lcmNlLmNvbYIYc291cmNlLmFuZHJvaWQuZ29vZ2xlLmNuggp1cmNo 3067 aW4uY29tggp3d3cuZ29vLmdsggh5b3V0dS5iZYILeW91dHViZS5jb22CFHlvdXR1 3068 YmVlZHVjYXRpb24uY29tgg95b3V0dWJla2lkcy5jb22CBXl0LmJlMCEGA1UdIAQa 3069 MBgwCAYGZ4EMAQIBMAwGCisGAQQB1nkCBQMwNQYDVR0fBC4wLDAqoCigJoYkaHR0 3070 cDovL2NybC5wa2kuZ29vZy9ndHNyMS9ndHMxYzMuY3JsMBMGCisGAQQB1nkCBAMB 3071 Af8EAgUAMA0GCSqGSIb3DQEBCwUAA4IBAQAlDQm5zY7JcPxcJ9ulfTGsWV/m6Pro 3072 gLYmAlBUPGKy313aetT4Zjz44ZseVtUOKsXVHh4avPA9O+ta1FgkASlbkgJ05ivb 3073 j/+MMqkrLemdMv9Svvx3CNaAq2jJ2E+8GdrA1RzMkiNthJCiRafaPnXnN6hOHGNr 3074 GtqYfMHsvrRHW8J2IPHW0/MUHmJ/NDu/vNchxke2OEfCPLtseo3hJt8l8HbH+yE8 3075 DFrt8YVRi1CLomEyuPJDF4og3O3ZsoXuxcPd9UPxULOCxycdolRw8Iv/Xgr082j3 3076 svXC3HUd3apM2Yy3xJAlk/mUkzVXfdJZ+Zy1huNsUoJ+gM8rmpyGhYyx 3077 -----END CERTIFICATE-----`, 3078 }, 3079 { 3080 name: "rsa leaf", 3081 pem: `-----BEGIN CERTIFICATE----- 3082 MIIJXjCCCEagAwIBAgIRAPYaTUsjP4iRBQAAAACHSSgwDQYJKoZIhvcNAQELBQAw 3083 QjELMAkGA1UEBhMCVVMxHjAcBgNVBAoTFUdvb2dsZSBUcnVzdCBTZXJ2aWNlczET 3084 MBEGA1UEAxMKR1RTIENBIDFPMTAeFw0yMTAxMjYwODQ2MzRaFw0yMTA0MjAwODQ2 3085 MzNaMGYxCzAJBgNVBAYTAlVTMRMwEQYDVQQIEwpDYWxpZm9ybmlhMRYwFAYDVQQH 3086 Ew1Nb3VudGFpbiBWaWV3MRMwEQYDVQQKEwpHb29nbGUgTExDMRUwEwYDVQQDDAwq 3087 Lmdvb2dsZS5jb20wggEiMA0GCSqGSIb3DQEBAQUAA4IBDwAwggEKAoIBAQC76xx0 3088 UdZ36/41rZNPfQ/yQ05vsBLUO0d+3uMOhvDlpst+XvIsG6L+vLDgf3RiQRFlei0h 3089 KqqLOtWLDc/y0+OmaaC+8ft1zljBYdvQlAYoZrT79Cc5pAIDq7G1OZ7cC4ahDno/ 3090 n46FHjT/UTUAMYa8cKWBaMPneMIsKvn8nMdZzHkfO2nUd6OEecn90XweMvNmx8De 3091 6h5AlIgG3m66hkD/UCSdxn7yJHBQVdHgkfTqzv3sz2YyBQGNi288F1bn541f6khE 3092 fYti1MvXRtkky7yLCQNUG6PtvuSU4cKaNvRklHigf5i1nVdGEuH61gAElZIklSia 3093 OVK46UyU4DGtbdWNAgMBAAGjggYpMIIGJTAOBgNVHQ8BAf8EBAMCBaAwEwYDVR0l 3094 BAwwCgYIKwYBBQUHAwEwDAYDVR0TAQH/BAIwADAdBgNVHQ4EFgQU8zCvllLd3jhB 3095 k//+Wdjo40Q+T3gwHwYDVR0jBBgwFoAUmNH4bhDrz5vsYJ8YkBug630J/SswaAYI 3096 KwYBBQUHAQEEXDBaMCsGCCsGAQUFBzABhh9odHRwOi8vb2NzcC5wa2kuZ29vZy9n 3097 dHMxbzFjb3JlMCsGCCsGAQUFBzAChh9odHRwOi8vcGtpLmdvb2cvZ3NyMi9HVFMx 3098 TzEuY3J0MIIE1wYDVR0RBIIEzjCCBMqCDCouZ29vZ2xlLmNvbYINKi5hbmRyb2lk 3099 LmNvbYIWKi5hcHBlbmdpbmUuZ29vZ2xlLmNvbYIJKi5iZG4uZGV2ghIqLmNsb3Vk 3100 Lmdvb2dsZS5jb22CGCouY3Jvd2Rzb3VyY2UuZ29vZ2xlLmNvbYIYKi5kYXRhY29t 3101 cHV0ZS5nb29nbGUuY29tghMqLmZsYXNoLmFuZHJvaWQuY29tggYqLmcuY2+CDiou 3102 Z2NwLmd2dDIuY29tghEqLmdjcGNkbi5ndnQxLmNvbYIKKi5nZ3BodC5jboIOKi5n 3103 a2VjbmFwcHMuY26CFiouZ29vZ2xlLWFuYWx5dGljcy5jb22CCyouZ29vZ2xlLmNh 3104 ggsqLmdvb2dsZS5jbIIOKi5nb29nbGUuY28uaW6CDiouZ29vZ2xlLmNvLmpwgg4q 3105 Lmdvb2dsZS5jby51a4IPKi5nb29nbGUuY29tLmFygg8qLmdvb2dsZS5jb20uYXWC 3106 DyouZ29vZ2xlLmNvbS5icoIPKi5nb29nbGUuY29tLmNvgg8qLmdvb2dsZS5jb20u 3107 bXiCDyouZ29vZ2xlLmNvbS50coIPKi5nb29nbGUuY29tLnZuggsqLmdvb2dsZS5k 3108 ZYILKi5nb29nbGUuZXOCCyouZ29vZ2xlLmZyggsqLmdvb2dsZS5odYILKi5nb29n 3109 bGUuaXSCCyouZ29vZ2xlLm5sggsqLmdvb2dsZS5wbIILKi5nb29nbGUucHSCEiou 3110 Z29vZ2xlYWRhcGlzLmNvbYIPKi5nb29nbGVhcGlzLmNughEqLmdvb2dsZWNuYXBw 3111 cy5jboIUKi5nb29nbGVjb21tZXJjZS5jb22CESouZ29vZ2xldmlkZW8uY29tggwq 3112 LmdzdGF0aWMuY26CDSouZ3N0YXRpYy5jb22CEiouZ3N0YXRpY2NuYXBwcy5jboIK 3113 Ki5ndnQxLmNvbYIKKi5ndnQyLmNvbYIUKi5tZXRyaWMuZ3N0YXRpYy5jb22CDCou 3114 dXJjaGluLmNvbYIQKi51cmwuZ29vZ2xlLmNvbYITKi53ZWFyLmdrZWNuYXBwcy5j 3115 boIWKi55b3V0dWJlLW5vY29va2llLmNvbYINKi55b3V0dWJlLmNvbYIWKi55b3V0 3116 dWJlZWR1Y2F0aW9uLmNvbYIRKi55b3V0dWJla2lkcy5jb22CByoueXQuYmWCCyou 3117 eXRpbWcuY29tghphbmRyb2lkLmNsaWVudHMuZ29vZ2xlLmNvbYILYW5kcm9pZC5j 3118 b22CG2RldmVsb3Blci5hbmRyb2lkLmdvb2dsZS5jboIcZGV2ZWxvcGVycy5hbmRy 3119 b2lkLmdvb2dsZS5jboIEZy5jb4IIZ2dwaHQuY26CDGdrZWNuYXBwcy5jboIGZ29v 3120 LmdsghRnb29nbGUtYW5hbHl0aWNzLmNvbYIKZ29vZ2xlLmNvbYIPZ29vZ2xlY25h 3121 cHBzLmNughJnb29nbGVjb21tZXJjZS5jb22CGHNvdXJjZS5hbmRyb2lkLmdvb2ds 3122 ZS5jboIKdXJjaGluLmNvbYIKd3d3Lmdvby5nbIIIeW91dHUuYmWCC3lvdXR1YmUu 3123 Y29tghR5b3V0dWJlZWR1Y2F0aW9uLmNvbYIPeW91dHViZWtpZHMuY29tggV5dC5i 3124 ZTAhBgNVHSAEGjAYMAgGBmeBDAECAjAMBgorBgEEAdZ5AgUDMDMGA1UdHwQsMCow 3125 KKAmoCSGImh0dHA6Ly9jcmwucGtpLmdvb2cvR1RTMU8xY29yZS5jcmwwEwYKKwYB 3126 BAHWeQIEAwEB/wQCBQAwDQYJKoZIhvcNAQELBQADggEBAHh9/ozYUGRd+W5akWlM 3127 4WvX808TK2oUISnagbxCCFZ2trpg2oi03CJf4o4o3Je5Qzzz10s22oQY6gPHAR0B 3128 QHzrpqAveQw9D5vd8xjgtQ/SAujPzPKNQee5511rS7/EKW9I83ccd5XhhoEyx8A1 3129 /65RTS+2hKpJKTMkr0yHBPJV7kUW+n/KIef5YaSOA9VYK7hyH0niDpvm9EmoqvWS 3130 U5xAFAe/Xrrq3sxTuDJPQA8alk6h/ql5Klkw6dL53csiPka/MevDqdifWkzuT/6n 3131 YK/ePeJzPD17FA9V+N1rcuF3Wk29AZvCOSasdIkIuE82vGr3dfNrsrn9E9lWIbCr 3132 Qc4= 3133 -----END CERTIFICATE-----`, 3134 }, 3135 } 3136 for _, c := range cases { 3137 b.Run(c.name, func(b *testing.B) { 3138 pemBlock, _ := pem.Decode([]byte(c.pem)) 3139 b.ReportAllocs() 3140 b.ResetTimer() 3141 for i := 0; i < b.N; i++ { 3142 _, err := ParseCertificate(pemBlock.Bytes) 3143 if err != nil { 3144 b.Fatal(err) 3145 } 3146 } 3147 }) 3148 } 3149 } 3150 3151 func TestParseCertificateRawEquals(t *testing.T) { 3152 p, _ := pem.Decode([]byte(pemCertificate)) 3153 cert, err := ParseCertificate(p.Bytes) 3154 if err != nil { 3155 t.Fatalf("failed to parse certificate: %s", err) 3156 } 3157 if !bytes.Equal(p.Bytes, cert.Raw) { 3158 t.Fatalf("unexpected Certificate.Raw\ngot: %x\nwant: %x\n", cert.Raw, p.Bytes) 3159 } 3160 fmt.Printf("in: %x\nout: %x\n", p.Bytes, cert.Raw) 3161 } 3162 3163 // mismatchingSigAlgIDPEM contains a certificate where the Certificate 3164 // signatureAlgorithm and the TBSCertificate signature contain 3165 // mismatching OIDs 3166 const mismatchingSigAlgIDPEM = `-----BEGIN CERTIFICATE----- 3167 MIIBBzCBrqADAgECAgEAMAoGCCqGSM49BAMCMAAwIhgPMDAwMTAxMDEwMDAwMDBa 3168 GA8wMDAxMDEwMTAwMDAwMFowADBZMBMGByqGSM49AgEGCCqGSM49AwEHA0IABOqV 3169 EDuVXxwZgIU3+dOwv1SsMu0xuV48hf7xmK8n7sAMYgllB+96DnPqBeboJj4snYnx 3170 0AcE0PDVQ1l4Z3YXsQWjFTATMBEGA1UdEQEB/wQHMAWCA2FzZDAKBggqhkjOPQQD 3171 AwNIADBFAiBi1jz/T2HT5nAfrD7zsgR+68qh7Erc6Q4qlxYBOgKG4QIhAOtjIn+Q 3172 tA+bq+55P3ntxTOVRq0nv1mwnkjwt9cQR9Fn 3173 -----END CERTIFICATE-----` 3174 3175 // mismatchingSigAlgParamPEM contains a certificate where the Certificate 3176 // signatureAlgorithm and the TBSCertificate signature contain 3177 // mismatching parameters 3178 const mismatchingSigAlgParamPEM = `-----BEGIN CERTIFICATE----- 3179 MIIBCTCBrqADAgECAgEAMAoGCCqGSM49BAMCMAAwIhgPMDAwMTAxMDEwMDAwMDBa 3180 GA8wMDAxMDEwMTAwMDAwMFowADBZMBMGByqGSM49AgEGCCqGSM49AwEHA0IABOqV 3181 EDuVXxwZgIU3+dOwv1SsMu0xuV48hf7xmK8n7sAMYgllB+96DnPqBeboJj4snYnx 3182 0AcE0PDVQ1l4Z3YXsQWjFTATMBEGA1UdEQEB/wQHMAWCA2FzZDAMBggqhkjOPQQD 3183 AgUAA0gAMEUCIGLWPP9PYdPmcB+sPvOyBH7ryqHsStzpDiqXFgE6AobhAiEA62Mi 3184 f5C0D5ur7nk/ee3FM5VGrSe/WbCeSPC31xBH0Wc= 3185 -----END CERTIFICATE-----` 3186 3187 func TestSigAlgMismatch(t *testing.T) { 3188 for _, certPEM := range []string{mismatchingSigAlgIDPEM, mismatchingSigAlgParamPEM} { 3189 b, _ := pem.Decode([]byte(certPEM)) 3190 if b == nil { 3191 t.Fatalf("couldn't decode test certificate") 3192 } 3193 _, err := ParseCertificate(b.Bytes) 3194 if err == nil { 3195 t.Fatalf("expected ParseCertificate to fail") 3196 } 3197 expected := "x509: inner and outer signature algorithm identifiers don't match" 3198 if err.Error() != expected { 3199 t.Errorf("unexpected error from ParseCertificate: got %q, want %q", err.Error(), expected) 3200 } 3201 } 3202 } 3203 3204 const optionalAuthKeyIDPEM = `-----BEGIN CERTIFICATE----- 3205 MIIFEjCCBHugAwIBAgICAQwwDQYJKoZIhvcNAQEFBQAwgbsxJDAiBgNVBAcTG1Zh 3206 bGlDZXJ0IFZhbGlkYXRpb24gTmV0d29yazEXMBUGA1UEChMOVmFsaUNlcnQsIElu 3207 Yy4xNTAzBgNVBAsTLFZhbGlDZXJ0IENsYXNzIDIgUG9saWN5IFZhbGlkYXRpb24g 3208 QXV0aG9yaXR5MSEwHwYDVQQDExhodHRwOi8vd3d3LnZhbGljZXJ0LmNvbS8xIDAe 3209 BgkqhkiG9w0BCQEWEWluZm9AdmFsaWNlcnQuY29tMB4XDTA0MDYyOTE3MzkxNloX 3210 DTI0MDYyOTE3MzkxNlowaDELMAkGA1UEBhMCVVMxJTAjBgNVBAoTHFN0YXJmaWVs 3211 ZCBUZWNobm9sb2dpZXMsIEluYy4xMjAwBgNVBAsTKVN0YXJmaWVsZCBDbGFzcyAy 3212 IENlcnRpZmljYXRpb24gQXV0aG9yaXR5MIIBIDANBgkqhkiG9w0BAQEFAAOCAQ0A 3213 MIIBCAKCAQEAtzLI/ulxpgSFrQwRZN/OTe/IAxiHP6Gr+zymn/DDodrU2G4rU5D7 3214 JKQ+hPCe6F/s5SdE9SimP3ve4CrwyK9TL57KBQGTHo9mHDmnTfpatnMEJWbrd3/n 3215 WcZKmSUUVOsmx/N/GdUwcI+vsEYq/63rKe3Xn6oEh6PU+YmlNF/bQ5GCNtlmPLG4 3216 uYL9nDo+EMg77wZlZnqbGRg9/3FRPDAuX749d3OyXQZswyNWmiuFJpIcpwKz5D8N 3217 rwh5grg2Peqc0zWzvGnK9cyd6P1kjReAM25eSl2ZyR6HtJ0awNVuEzUjXt+bXz3v 3218 1vd2wuo+u3gNHEJnawTY+Nbab4vyRKABqwIBA6OCAfMwggHvMB0GA1UdDgQWBBS/ 3219 X7fRzt0fhvRbVazc1xDCDqmI5zCB0gYDVR0jBIHKMIHHoYHBpIG+MIG7MSQwIgYD 3220 VQQHExtWYWxpQ2VydCBWYWxpZGF0aW9uIE5ldHdvcmsxFzAVBgNVBAoTDlZhbGlD 3221 ZXJ0LCBJbmMuMTUwMwYDVQQLEyxWYWxpQ2VydCBDbGFzcyAyIFBvbGljeSBWYWxp 3222 ZGF0aW9uIEF1dGhvcml0eTEhMB8GA1UEAxMYaHR0cDovL3d3dy52YWxpY2VydC5j 3223 b20vMSAwHgYJKoZIhvcNAQkBFhFpbmZvQHZhbGljZXJ0LmNvbYIBATAPBgNVHRMB 3224 Af8EBTADAQH/MDkGCCsGAQUFBwEBBC0wKzApBggrBgEFBQcwAYYdaHR0cDovL29j 3225 c3Auc3RhcmZpZWxkdGVjaC5jb20wSgYDVR0fBEMwQTA/oD2gO4Y5aHR0cDovL2Nl 3226 cnRpZmljYXRlcy5zdGFyZmllbGR0ZWNoLmNvbS9yZXBvc2l0b3J5L3Jvb3QuY3Js 3227 MFEGA1UdIARKMEgwRgYEVR0gADA+MDwGCCsGAQUFBwIBFjBodHRwOi8vY2VydGlm 3228 aWNhdGVzLnN0YXJmaWVsZHRlY2guY29tL3JlcG9zaXRvcnkwDgYDVR0PAQH/BAQD 3229 AgEGMA0GCSqGSIb3DQEBBQUAA4GBAKVi8afCXSWlcD284ipxs33kDTcdVWptobCr 3230 mADkhWBKIMuh8D1195TaQ39oXCUIuNJ9MxB73HZn8bjhU3zhxoNbKXuNSm8uf0So 3231 GkVrMgfHeMpkksK0hAzc3S1fTbvdiuo43NlmouxBulVtWmQ9twPMHOKRUJ7jCUSV 3232 FxdzPcwl 3233 -----END CERTIFICATE-----` 3234 3235 func TestAuthKeyIdOptional(t *testing.T) { 3236 b, _ := pem.Decode([]byte(optionalAuthKeyIDPEM)) 3237 if b == nil { 3238 t.Fatalf("couldn't decode test certificate") 3239 } 3240 _, err := ParseCertificate(b.Bytes) 3241 if err != nil { 3242 t.Fatalf("ParseCertificate to failed to parse certificate with optional authority key identifier fields: %s", err) 3243 } 3244 } 3245 3246 // 国密相关测试案例 3247 3248 func TestX509(t *testing.T) { 3249 // 生成sm2密钥对 3250 // priv, err := sm2.GenerateKey(nil) 3251 priv, err := sm2.GenerateKey(rand.Reader) 3252 if err != nil { 3253 t.Fatal(err) 3254 } 3255 // 生成私钥文件字节流 3256 privPem, err := WritePrivateKeyToPem(priv, nil) 3257 if err != nil { 3258 t.Fatal(err) 3259 } 3260 pubKey, _ := priv.Public().(*sm2.PublicKey) 3261 // 生成公钥文件字节流 3262 pubkeyPem, _ := WritePublicKeyToPem(pubKey) 3263 // 读取私钥 3264 privKey, err := ReadPrivateKeyFromPem(privPem, nil) 3265 if err != nil { 3266 t.Fatal(err) 3267 } 3268 // 读取公钥 3269 pkTmp, err := ReadPublicKeyFromPem(pubkeyPem) 3270 if err != nil { 3271 t.Fatal(err) 3272 } 3273 pubKey = pkTmp.(*sm2.PublicKey) 3274 // 定义证书申请模板 3275 templateReq := CertificateRequest{ 3276 Subject: pkix.Name{ 3277 CommonName: "pangzi.com", 3278 Organization: []string{"PANGZIXIEHUI"}, 3279 }, 3280 // SignatureAlgorithm: ECDSAWithSHA256, 3281 SignatureAlgorithm: SM2WithSM3, 3282 } 3283 // 创建证书申请pem字节流并签名 3284 reqPem, err := CreateCertificateRequestToPem(&templateReq, privKey) 3285 if err != nil { 3286 t.Fatal(err) 3287 } 3288 // 从pem读取证书申请 3289 req, err := ReadCertificateRequestFromPem(reqPem) 3290 if err != nil { 3291 t.Fatal(err) 3292 } 3293 // 检查证书申请的签名 3294 err = req.CheckSignature() 3295 if err != nil { 3296 t.Fatalf("Request CheckSignature error:%v", err) 3297 } else { 3298 fmt.Printf("CheckSignature ok\n") 3299 } 3300 testExtKeyUsage := []ExtKeyUsage{ExtKeyUsageClientAuth, ExtKeyUsageServerAuth} 3301 testUnknownExtKeyUsage := []asn1.ObjectIdentifier{[]int{1, 2, 3}, []int{2, 59, 1}} 3302 extraExtensionData := []byte("extra extension") 3303 commonName := "pangzi.com" 3304 // 定义证书模板 3305 //goland:noinspection HttpUrlsUsage 3306 template := Certificate{ 3307 // SerialNumber is negative to ensure that negative 3308 // values are parsed. This is due to the prevalence of 3309 // buggy code that produces certificates with negative 3310 // serial numbers. 3311 SerialNumber: big.NewInt(-1), 3312 Subject: pkix.Name{ 3313 CommonName: commonName, 3314 Organization: []string{"PANGZIXIEHUI"}, 3315 Country: []string{"China"}, 3316 ExtraNames: []pkix.AttributeTypeAndValue{ 3317 { 3318 Type: []int{2, 5, 4, 42}, 3319 Value: "Gopher", 3320 }, 3321 // This should override the Country, above. 3322 { 3323 Type: []int{2, 5, 4, 6}, 3324 Value: "NL", 3325 }, 3326 }, 3327 }, 3328 NotBefore: time.Now(), 3329 NotAfter: time.Date(2032, time.December, 31, 23, 59, 59, 1, time.UTC), 3330 3331 // SignatureAlgorithm: ECDSAWithSHA256, 3332 SignatureAlgorithm: SM2WithSM3, 3333 3334 SubjectKeyId: []byte{1, 2, 3, 4}, 3335 KeyUsage: KeyUsageCertSign, 3336 3337 ExtKeyUsage: testExtKeyUsage, 3338 UnknownExtKeyUsage: testUnknownExtKeyUsage, 3339 3340 BasicConstraintsValid: true, 3341 IsCA: true, 3342 3343 OCSPServer: []string{"http://ocsp.pangzi.com"}, 3344 IssuingCertificateURL: []string{"http://crt.pangzi.com/ca1.crt"}, 3345 3346 DNSNames: []string{"pangzi.com"}, 3347 EmailAddresses: []string{"gopher@golang.org"}, 3348 IPAddresses: []net.IP{net.IPv4(127, 0, 0, 1).To4(), net.ParseIP("2001:4860:0:2001::68")}, 3349 3350 PolicyIdentifiers: []asn1.ObjectIdentifier{[]int{1, 2, 3}}, 3351 PermittedDNSDomains: []string{".pangzi.com", "pangzi.com"}, 3352 3353 CRLDistributionPoints: []string{"http://crl1.pangzi.com/ca1.crl", "http://crl2.pangzi.com/ca1.crl"}, 3354 3355 ExtraExtensions: []pkix.Extension{ 3356 { 3357 Id: []int{1, 2, 3, 4}, 3358 Value: extraExtensionData, 3359 }, 3360 // This extension should override the SubjectKeyId, above. 3361 { 3362 Id: oidExtensionSubjectKeyId, 3363 Critical: false, 3364 Value: []byte{0x04, 0x04, 4, 3, 2, 1}, 3365 }, 3366 }, 3367 } 3368 // pubKey, _ = priv.Public().(*sm2.PublicKey) 3369 // 创建证书pem字节流 3370 certpem, err := CreateCertificateToPem(&template, &template, pubKey, privKey) 3371 if err != nil { 3372 t.Fatal("failed to create cert file") 3373 } 3374 // 读取证书pem 3375 cert, err := ReadCertificateFromPem(certpem) 3376 if err != nil { 3377 t.Fatal("failed to read cert file") 3378 } 3379 // 检查证书签名 3380 err = cert.CheckSignature(cert.SignatureAlgorithm, cert.RawTBSCertificate, cert.Signature) 3381 if err != nil { 3382 t.Fatal(err) 3383 } else { 3384 fmt.Printf("CheckSignature ok\n") 3385 } 3386 } 3387 3388 func TestX509WithFile(t *testing.T) { 3389 // 生成sm2密钥对 3390 priv, err := sm2.GenerateKey(rand.Reader) 3391 if err != nil { 3392 t.Fatal(err) 3393 } 3394 pub := &priv.PublicKey 3395 // 生成私钥pem文件 3396 _, err = WritePrivateKeytoPemFile("testdata/pri_key.pem", priv, nil) 3397 if err != nil { 3398 t.Fatal(err) 3399 } 3400 // 生成公钥pem文件 3401 _, err = WritePublicKeytoPemFile("testdata/pub_key.pem", pub) 3402 if err != nil { 3403 t.Fatal(err) 3404 } 3405 // 从pem文件读取私钥 3406 privKey, err := ReadPrivateKeyFromPemFile("testdata/pri_key.pem", nil) 3407 if err != nil { 3408 t.Fatal(err) 3409 } 3410 fmt.Printf("读取到sm2私钥 : %v\n", privKey) 3411 // 从pem文件读取公钥 3412 pubKey, err := ReadPublicKeyFromPemFile("testdata/pub_key.pem") 3413 if err != nil { 3414 t.Fatal(err) 3415 } 3416 fmt.Printf("读取到sm2公钥 : %v\n", pubKey) 3417 fmt.Println("测试sm2私钥与公钥文件读写成功") 3418 3419 // 定义证书申请模板 3420 templateReq := CertificateRequest{ 3421 Subject: pkix.Name{ 3422 // Subject行的CN 3423 CommonName: "test.pangzi.com", 3424 // Subject行的O 3425 Organization: []string{"PANGZIXIEHUI", "dapangzixiehui"}, 3426 }, 3427 SignatureAlgorithm: SM2WithSM3, 3428 } 3429 // 创建证书申请pem字节流并签名 3430 _, err = CreateCertificateRequestToPemFile("testdata/csr.pem", &templateReq, privKey) 3431 if err != nil { 3432 t.Fatal(err) 3433 } 3434 // 创建证书申请csr文件后,可以用`openssl req -noout -text -in testdata/csr.pem`命令查看文件内容 3435 3436 // 模拟ca检查证书申请 3437 // 从pem读取证书申请 3438 req, err := ReadCertificateRequestFromPemFile("testdata/csr.pem") 3439 if err != nil { 3440 t.Fatal(err) 3441 } 3442 // 检查证书申请的签名 3443 err = req.CheckSignature() 3444 if err != nil { 3445 t.Fatalf("证书申请验签失败 : %v", err) 3446 } else { 3447 fmt.Printf("证书申请验签成功\n") 3448 } 3449 fmt.Println("测试证书申请文件读写与验签成功") 3450 3451 // 模拟ca发布证书 3452 testExtKeyUsage := []ExtKeyUsage{ExtKeyUsageClientAuth, ExtKeyUsageServerAuth} 3453 testUnknownExtKeyUsage := []asn1.ObjectIdentifier{[]int{1, 2, 3}, []int{2, 59, 1}} 3454 extraExtensionData := []byte("extra extension") 3455 commonName := "test.pangzi.com" 3456 // 定义证书模板 3457 //goland:noinspection HttpUrlsUsage 3458 template := Certificate{ 3459 SerialNumber: big.NewInt(-1), 3460 Subject: pkix.Name{ 3461 // Subject行的CN 3462 CommonName: commonName, 3463 // Subject行的O 3464 Organization: []string{"PANGZIXIEHUI", "dapangzixiehui"}, 3465 Country: []string{"China"}, 3466 // CN之后的附加名称 3467 ExtraNames: []pkix.AttributeTypeAndValue{ 3468 { 3469 // GN 3470 Type: []int{2, 5, 4, 42}, 3471 Value: "Gopher", 3472 }, 3473 // This should override the Country, above. 3474 { 3475 // C 3476 Type: []int{2, 5, 4, 6}, 3477 Value: "NL", 3478 }, 3479 }, 3480 }, 3481 NotBefore: time.Now(), 3482 NotAfter: time.Date(2032, time.December, 31, 23, 59, 59, 1, time.UTC), 3483 3484 SignatureAlgorithm: SM2WithSM3, 3485 3486 SubjectKeyId: []byte{1, 2, 3, 4}, 3487 KeyUsage: KeyUsageCertSign, 3488 3489 ExtKeyUsage: testExtKeyUsage, 3490 UnknownExtKeyUsage: testUnknownExtKeyUsage, 3491 3492 BasicConstraintsValid: true, 3493 IsCA: true, 3494 3495 OCSPServer: []string{"http://ocsp.pangzi.com"}, 3496 IssuingCertificateURL: []string{"http://crt.pangzi.com/ca1.crt"}, 3497 3498 DNSNames: []string{"test.pangzi.com"}, 3499 EmailAddresses: []string{"gopher@golang.org"}, 3500 IPAddresses: []net.IP{net.IPv4(127, 0, 0, 1).To4(), net.ParseIP("2001:4860:0:2001::68")}, 3501 3502 PolicyIdentifiers: []asn1.ObjectIdentifier{[]int{1, 2, 3}}, 3503 PermittedDNSDomains: []string{".pangzi.com", "pangzi.com"}, 3504 3505 CRLDistributionPoints: []string{"http://crl1.pangzi.com/ca1.crl", "http://crl2.pangzi.com/ca1.crl"}, 3506 3507 ExtraExtensions: []pkix.Extension{ 3508 { 3509 Id: []int{1, 2, 3, 4}, 3510 Value: extraExtensionData, 3511 }, 3512 // This extension should override the SubjectKeyId, above. 3513 { 3514 Id: oidExtensionSubjectKeyId, 3515 Critical: false, 3516 Value: []byte{0x04, 0x04, 4, 3, 2, 1}, 3517 }, 3518 }, 3519 } 3520 // 创建证书pem文件 3521 _, err = CreateCertificateToPemFile("testdata/cert.cer", &template, &template, pubKey, privKey) 3522 if err != nil { 3523 t.Fatal("failed to create cert file") 3524 } 3525 // 可以使用命令`openssl x509 -noout -text -in testdata/cert.cer`查看生成的x509证书 3526 // 读取证书pem文件 3527 cert, err := ReadCertificateFromPemFile("testdata/cert.cer") 3528 if err != nil { 3529 t.Fatal("failed to read cert file") 3530 } 3531 // 检查证书签名 3532 err = cert.CheckSignature(cert.SignatureAlgorithm, cert.RawTBSCertificate, cert.Signature) 3533 if err != nil { 3534 t.Fatal(err) 3535 } else { 3536 fmt.Printf("CheckSignature ok\n") 3537 } 3538 fmt.Println("测试证书文件读写与验签成功") 3539 } 3540 3541 func TestCreateCertFromCA_sm2(t *testing.T) { 3542 certTypePre := "sm2_" 3543 3544 certType := certTypePre + "ca" 3545 caPriv, caCert, err := createCACert(certType) 3546 if err != nil { 3547 t.Fatal(err) 3548 } 3549 fmt.Printf("生成CA密钥对与CA证书成功 %s\n", certType) 3550 3551 certType = certTypePre + "sign" 3552 err = createSignCert(caPriv, caCert, certType) 3553 if err != nil { 3554 t.Fatal(err) 3555 } 3556 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3557 3558 certType = certTypePre + "enc" 3559 err = createEncCert(caPriv, caCert, certType) 3560 if err != nil { 3561 t.Fatal(err) 3562 } 3563 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3564 3565 certType = certTypePre + "auth" 3566 err = createAuthCert(caPriv, caCert, certType) 3567 if err != nil { 3568 t.Fatal(err) 3569 } 3570 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3571 } 3572 3573 func TestCreateCertFromCA_ecdsa(t *testing.T) { 3574 certTypePre := "ecdsa_" 3575 certType := certTypePre + "ca" 3576 caPriv, caCert, err := createCACert(certType) 3577 if err != nil { 3578 t.Fatal(err) 3579 } 3580 fmt.Printf("生成CA密钥对与CA证书成功 %s\n", certType) 3581 3582 certType = certTypePre + "sign" 3583 err = createSignCert(caPriv, caCert, certType) 3584 if err != nil { 3585 t.Fatal(err) 3586 } 3587 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3588 3589 certType = certTypePre + "enc" 3590 err = createEncCert(caPriv, caCert, certType) 3591 if err != nil { 3592 t.Fatal(err) 3593 } 3594 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3595 3596 certType = certTypePre + "auth" 3597 err = createAuthCert(caPriv, caCert, certType) 3598 if err != nil { 3599 t.Fatal(err) 3600 } 3601 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3602 } 3603 3604 func TestCreateCertFromCA_ecdsaext(t *testing.T) { 3605 zclog.Level = zclog.LOG_LEVEL_DEBUG 3606 certTypePre := "ecdsaext_" 3607 certType := certTypePre + "ca" 3608 3609 caPriv, caCert, err := createCACert(certType) 3610 if err != nil { 3611 t.Fatal(err) 3612 } 3613 //caCertPem := 3614 ////caCert.Verify() 3615 fmt.Printf("生成CA密钥对与CA证书成功 %s\n", certType) 3616 3617 certType = certTypePre + "sign" 3618 err = createSignCert(caPriv, caCert, certType) 3619 if err != nil { 3620 t.Fatal(err) 3621 } 3622 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3623 3624 certType = certTypePre + "enc" 3625 err = createEncCert(caPriv, caCert, certType) 3626 if err != nil { 3627 t.Fatal(err) 3628 } 3629 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3630 3631 certType = certTypePre + "auth" 3632 err = createAuthCert(caPriv, caCert, certType) 3633 if err != nil { 3634 t.Fatal(err) 3635 } 3636 fmt.Printf("生成 %s 密钥对并模拟CA为其颁发证书成功\n", certType) 3637 } 3638 3639 func createCACert(certType string) (interface{}, *Certificate, error) { 3640 // 生成密钥对 3641 privKey, pubKey, err := createKeys(certType) 3642 if err != nil { 3643 return nil, nil, err 3644 } 3645 userKeyUsage := KeyUsageCertSign + KeyUsageCRLSign 3646 //goland:noinspection GoPreferNilSlice 3647 userExtKeyUsage := []ExtKeyUsage{ 3648 // ExtKeyUsageAny, 3649 // ExtKeyUsageServerAuth, 3650 // ExtKeyUsageClientAuth, 3651 // ExtKeyUsageCodeSigning, 3652 // ExtKeyUsageEmailProtection, 3653 // ExtKeyUsageIPSECEndSystem, 3654 // ExtKeyUsageIPSECTunnel, 3655 // ExtKeyUsageIPSECUser, 3656 // ExtKeyUsageTimeStamping, 3657 // ExtKeyUsageOCSPSigning, 3658 // ExtKeyUsageMicrosoftServerGatedCrypto, 3659 // ExtKeyUsageNetscapeServerGatedCrypto, 3660 } 3661 // 创建证书,ca证书自签名 3662 cert, err := createCertSignSelf("ca.test.com", "catest", "CN", "Anhui Hefei", true, true, userKeyUsage, userExtKeyUsage, nil, certType, pubKey, privKey) 3663 if err != nil { 3664 return nil, nil, err 3665 } 3666 // 检查证书签名,因为是ca证书自签名,所以使用本证书自验 3667 err = cert.CheckSignature(cert.SignatureAlgorithm, cert.RawTBSCertificate, cert.Signature) 3668 if err != nil { 3669 return nil, nil, err 3670 } else { 3671 fmt.Printf("CheckSignature ok\n") 3672 } 3673 return privKey, cert, nil 3674 } 3675 3676 func createSignCert(caPriv interface{}, caCert *Certificate, certType string) error { 3677 // 生成sm2密钥对 3678 _, pubKey, err := createKeys(certType) 3679 if err != nil { 3680 return err 3681 } 3682 userKeyUsage := KeyUsageDigitalSignature + KeyUsageContentCommitment 3683 userExtKeyUsage := []ExtKeyUsage{ 3684 // ExtKeyUsageAny, 3685 ExtKeyUsageServerAuth, 3686 ExtKeyUsageClientAuth, 3687 // ExtKeyUsageCodeSigning, 3688 // ExtKeyUsageEmailProtection, 3689 // ExtKeyUsageIPSECEndSystem, 3690 // ExtKeyUsageIPSECTunnel, 3691 // ExtKeyUsageIPSECUser, 3692 // ExtKeyUsageTimeStamping, 3693 // ExtKeyUsageOCSPSigning, 3694 // ExtKeyUsageMicrosoftServerGatedCrypto, 3695 // ExtKeyUsageNetscapeServerGatedCrypto, 3696 } 3697 // 模拟CA颁发证书,注意此时ca证书是父证书 3698 cert, err := createCertSignParent("server.test.com", "server_test", "CN", "Anhui Hefei", false, false, userKeyUsage, userExtKeyUsage, nil, certType, pubKey, caPriv, caCert) 3699 if err != nil { 3700 return err 3701 } 3702 // 使用父证书caCert验签 3703 err = caCert.CheckSignature(cert.SignatureAlgorithm, cert.RawTBSCertificate, cert.Signature) 3704 if err != nil { 3705 return err 3706 } else { 3707 fmt.Printf("CheckSignature ok\n") 3708 } 3709 return nil 3710 } 3711 3712 func createEncCert(caPriv interface{}, caCert *Certificate, certType string) error { 3713 // 生成密钥对 3714 _, pubKey, err := createKeys(certType) 3715 if err != nil { 3716 return err 3717 } 3718 userKeyUsage := KeyUsageKeyEncipherment + KeyUsageDataEncipherment 3719 //goland:noinspection GoPreferNilSlice 3720 userExtKeyUsage := []ExtKeyUsage{ 3721 // ExtKeyUsageAny, 3722 // ExtKeyUsageServerAuth, 3723 // ExtKeyUsageClientAuth, 3724 // ExtKeyUsageCodeSigning, 3725 // ExtKeyUsageEmailProtection, 3726 // ExtKeyUsageIPSECEndSystem, 3727 // ExtKeyUsageIPSECTunnel, 3728 // ExtKeyUsageIPSECUser, 3729 // ExtKeyUsageTimeStamping, 3730 // ExtKeyUsageOCSPSigning, 3731 // ExtKeyUsageMicrosoftServerGatedCrypto, 3732 // ExtKeyUsageNetscapeServerGatedCrypto, 3733 } 3734 // 模拟CA颁发证书,注意此时ca证书是父证书 3735 cert, err := createCertSignParent("server.test.com", "server_test", "CN", "Anhui Hefei", false, false, userKeyUsage, userExtKeyUsage, nil, certType, pubKey, caPriv, caCert) 3736 if err != nil { 3737 return err 3738 } 3739 // 使用父证书caCert验签 3740 err = caCert.CheckSignature(cert.SignatureAlgorithm, cert.RawTBSCertificate, cert.Signature) 3741 if err != nil { 3742 return err 3743 } else { 3744 fmt.Printf("CheckSignature ok\n") 3745 } 3746 return nil 3747 } 3748 3749 func createAuthCert(caPriv interface{}, caCert *Certificate, certType string) error { 3750 // 生成密钥对 3751 _, pubKey, err := createKeys(certType) 3752 if err != nil { 3753 return err 3754 } 3755 userKeyUsage := KeyUsageDigitalSignature + KeyUsageContentCommitment 3756 userExtKeyUsage := []ExtKeyUsage{ 3757 // ExtKeyUsageAny, 3758 ExtKeyUsageServerAuth, 3759 ExtKeyUsageClientAuth, 3760 // ExtKeyUsageCodeSigning, 3761 // ExtKeyUsageEmailProtection, 3762 // ExtKeyUsageIPSECEndSystem, 3763 // ExtKeyUsageIPSECTunnel, 3764 // ExtKeyUsageIPSECUser, 3765 // ExtKeyUsageTimeStamping, 3766 // ExtKeyUsageOCSPSigning, 3767 // ExtKeyUsageMicrosoftServerGatedCrypto, 3768 // ExtKeyUsageNetscapeServerGatedCrypto, 3769 } 3770 // 模拟CA颁发证书,注意此时ca证书是父证书 3771 cert, err := createCertSignParent("client.test.com", "client_test", "CN", "Anhui Hefei", false, false, userKeyUsage, userExtKeyUsage, nil, certType, pubKey, caPriv, caCert) 3772 if err != nil { 3773 return err 3774 } 3775 // 使用父证书caCert验签 3776 err = caCert.CheckSignature(cert.SignatureAlgorithm, cert.RawTBSCertificate, cert.Signature) 3777 if err != nil { 3778 return err 3779 } else { 3780 fmt.Printf("CheckSignature ok\n") 3781 } 3782 return nil 3783 } 3784 3785 func createKeys(certType string) (interface{}, interface{}, error) { 3786 var priv, pub interface{} 3787 var err error 3788 3789 if strings.HasPrefix(certType, "sm2_") { 3790 // 生成sm2密钥对 3791 priv, err = sm2.GenerateKey(rand.Reader) 3792 if err != nil { 3793 return nil, nil, err 3794 } 3795 pub = &priv.(*sm2.PrivateKey).PublicKey 3796 } else if strings.HasPrefix(certType, "ecdsa_") { 3797 // 生成ecdsa密钥对 3798 priv, err = ecdsa.GenerateKey(elliptic.P256(), rand.Reader) 3799 if err != nil { 3800 return nil, nil, err 3801 } 3802 pub = &priv.(*ecdsa.PrivateKey).PublicKey 3803 } else if strings.HasPrefix(certType, "ecdsaext_") { 3804 // 生成ecdsa_ext密钥对 3805 priv, err = ecdsa_ext.GenerateKey(elliptic.P256(), rand.Reader) 3806 if err != nil { 3807 return nil, nil, err 3808 } 3809 pub = priv.(*ecdsa_ext.PrivateKey).Public().(*ecdsa_ext.PublicKey) 3810 } 3811 // 生成私钥pem文件 3812 _, err = WritePrivateKeytoPemFile("testdata/"+certType+"_key.pem", priv, nil) 3813 if err != nil { 3814 return nil, nil, err 3815 } 3816 // 生成公钥pem文件 3817 _, err = WritePublicKeytoPemFile("testdata/"+certType+"_pubkey.pem", pub) 3818 if err != nil { 3819 return nil, nil, err 3820 } 3821 // 从pem文件读取私钥 3822 privKey, err := ReadPrivateKeyFromPemFile("testdata/"+certType+"_key.pem", nil) 3823 if err != nil { 3824 return nil, nil, err 3825 } 3826 // 从pem文件读取公钥 3827 pubKey, err := ReadPublicKeyFromPemFile("testdata/" + certType + "_pubkey.pem") 3828 if err != nil { 3829 return nil, nil, err 3830 } 3831 return privKey, pubKey, nil 3832 } 3833 3834 func createCertSignSelf(cn string, o string, c string, st string, bcs bool, isca bool, 3835 ku KeyUsage, ekus []ExtKeyUsage, uekus []asn1.ObjectIdentifier, 3836 certType string, pubKey interface{}, privKey interface{}) (*Certificate, error) { 3837 // 获取ski 3838 var ski []byte 3839 switch pk := pubKey.(type) { 3840 case *sm2.PublicKey: 3841 ski = CreateEllipticSKI(pk.Curve, pk.X, pk.Y) 3842 case *ecdsa.PublicKey: 3843 ski = CreateEllipticSKI(pk.Curve, pk.X, pk.Y) 3844 case *ecdsa_ext.PublicKey: 3845 ski = CreateEllipticSKI(pk.Curve, pk.X, pk.Y) 3846 default: 3847 panic("不支持的公钥类型") 3848 } 3849 // 定义证书模板 3850 template := createTemplate(cn, o, c, st, bcs, isca, ski, ku, ekus, uekus, privKey) 3851 // 创建自签名证书pem文件 3852 _, err := CreateCertificateToPemFile("testdata/"+certType+"_cert.cer", template, template, pubKey, privKey) 3853 if err != nil { 3854 return nil, err 3855 } 3856 // 可以使用命令`openssl x509 -noout -text -in testdata/user_cert.cer`查看生成的x509证书 3857 // 读取证书pem文件 3858 cert, err := ReadCertificateFromPemFile("testdata/" + certType + "_cert.cer") 3859 if err != nil { 3860 return nil, err 3861 } 3862 text, err := CertificateText(cert) 3863 if err != nil { 3864 return nil, err 3865 } 3866 fmt.Println("打印证书信息:") 3867 fmt.Println(text) 3868 return cert, nil 3869 } 3870 3871 func createCertSignParent(cn string, o string, c string, st string, bcs bool, isca bool, 3872 ku KeyUsage, ekus []ExtKeyUsage, uekus []asn1.ObjectIdentifier, 3873 certType string, pubKey interface{}, privKey interface{}, parent *Certificate) (*Certificate, error) { 3874 3875 // 获取ski 3876 var ski []byte 3877 switch pk := pubKey.(type) { 3878 case *sm2.PublicKey: 3879 ski = CreateEllipticSKI(pk.Curve, pk.X, pk.Y) 3880 case *ecdsa.PublicKey: 3881 ski = CreateEllipticSKI(pk.Curve, pk.X, pk.Y) 3882 case *ecdsa_ext.PublicKey: 3883 ski = CreateEllipticSKI(pk.Curve, pk.X, pk.Y) 3884 default: 3885 panic("不支持的公钥类型") 3886 } 3887 // 定义证书模板 3888 template := createTemplate(cn, o, c, st, bcs, isca, ski, ku, ekus, uekus, privKey) 3889 // 创建自签名证书pem文件 3890 _, err := CreateCertificateToPemFile("testdata/"+certType+"_cert.cer", template, parent, pubKey, privKey) 3891 if err != nil { 3892 return nil, err 3893 } 3894 // 可以使用命令`openssl x509 -noout -text -in testdata/user_cert.cer`查看生成的x509证书 3895 // 读取证书pem文件 3896 cert, err := ReadCertificateFromPemFile("testdata/" + certType + "_cert.cer") 3897 if err != nil { 3898 return nil, err 3899 } 3900 return cert, nil 3901 } 3902 3903 func createTemplate(cn string, o string, c string, st string, bcs bool, isca bool, sId []byte, ku KeyUsage, ekus []ExtKeyUsage, uekus []asn1.ObjectIdentifier, privKey interface{}) *Certificate { 3904 var signAlg SignatureAlgorithm 3905 switch privKey.(type) { 3906 case *sm2.PrivateKey: 3907 signAlg = SM2WithSM3 3908 case *ecdsa.PrivateKey: 3909 signAlg = ECDSAWithSHA256 3910 case *ecdsa_ext.PrivateKey: 3911 signAlg = ECDSAEXTWithSHA256 3912 default: 3913 panic("不支持的私钥类型") 3914 } 3915 3916 // 定义证书模板 3917 template := &Certificate{ 3918 // 证书序列号 3919 SerialNumber: utils.GetRandBigInt(), 3920 // 证书拥有者 3921 Subject: pkix.Name{ 3922 // CN 证书拥有者通用名, 一般是域名 3923 CommonName: cn, 3924 // O 证书拥有者组织机构 3925 Organization: []string{o}, 3926 // C 证书拥有者所在国家 3927 Country: []string{"China"}, 3928 // 附加名称 3929 ExtraNames: []pkix.AttributeTypeAndValue{ 3930 // This should override the Country, above. 3931 { 3932 // C 会覆盖Country 3933 Type: []int{2, 5, 4, 6}, 3934 Value: c, 3935 }, 3936 { 3937 // ST 省市 3938 Type: []int{2, 5, 4, 8}, 3939 Value: st, 3940 }, 3941 }, 3942 }, 3943 // 证书有效期 十年 3944 // NotBefore: time.Now(), 3945 // NotAfter: time.Date(2032, time.December, 31, 23, 59, 59, 1, time.UTC), 3946 NotBefore: time.Now().Add(-1 * time.Hour), 3947 NotAfter: time.Now().Add(87600 * time.Hour), 3948 // 证书签名算法 3949 SignatureAlgorithm: signAlg, 3950 BasicConstraintsValid: bcs, 3951 IsCA: isca, 3952 SubjectKeyId: sId, 3953 // AuthorityKeyId: aId, 3954 KeyUsage: ku, 3955 ExtKeyUsage: ekus, 3956 UnknownExtKeyUsage: uekus, 3957 // x509 v3 版本不再使用 CommonName 而是使用这里的SAN扩展信息 3958 DNSNames: []string{cn, "test.example.com"}, 3959 EmailAddresses: []string{"gopher@golang.org"}, 3960 IPAddresses: []net.IP{net.IPv4(127, 0, 0, 1).To4(), net.ParseIP("2001:4860:0:2001::68")}, 3961 URIs: []*url.URL{parseURI("https://foo.com/wibble#foo")}, 3962 } 3963 return template 3964 }