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| 1 // Copyright 2014 The Chromium Authors. All rights reserved. | |
| 2 // Use of this source code is governed by a BSD-style license that can be | |
| 3 // found in the LICENSE file. | |
| 4 | |
| 5 #include <vector> | |
| 6 | |
| 7 #include "chrome/browser/ssl/ssl_error_classification.h" | |
| 8 | |
| 9 #include "base/build_time.h" | |
| 10 #include "base/metrics/histogram_macros.h" | |
| 11 #include "base/strings/string_split.h" | |
| 12 #include "base/strings/utf_string_conversions.h" | |
| 13 #include "base/time/time.h" | |
| 14 #include "components/ssl_errors/error_info.h" | |
| 15 #include "net/base/net_util.h" | |
| 16 #include "net/base/registry_controlled_domains/registry_controlled_domain.h" | |
| 17 #include "net/cert/x509_cert_types.h" | |
| 18 #include "net/cert/x509_certificate.h" | |
| 19 #include "url/gurl.h" | |
| 20 | |
| 21 #if defined(OS_WIN) | |
| 22 #include "base/win/win_util.h" | |
| 23 #include "base/win/windows_version.h" | |
| 24 #endif | |
| 25 | |
| 26 using base::Time; | |
| 27 using base::TimeTicks; | |
| 28 using base::TimeDelta; | |
| 29 | |
| 30 namespace { | |
| 31 | |
| 32 // Events for UMA. Do not reorder or change! | |
| 33 enum SSLInterstitialCause { | |
| 34 CLOCK_PAST, | |
| 35 CLOCK_FUTURE, | |
| 36 WWW_SUBDOMAIN_MATCH, | |
| 37 SUBDOMAIN_MATCH, | |
| 38 SUBDOMAIN_INVERSE_MATCH, | |
| 39 SUBDOMAIN_OUTSIDE_WILDCARD, | |
| 40 HOST_NAME_NOT_KNOWN_TLD, | |
| 41 LIKELY_MULTI_TENANT_HOSTING, | |
| 42 LOCALHOST, | |
| 43 PRIVATE_URL, | |
| 44 AUTHORITY_ERROR_CAPTIVE_PORTAL, // Deprecated in M47. | |
| 45 SELF_SIGNED, | |
| 46 EXPIRED_RECENTLY, | |
| 47 LIKELY_SAME_DOMAIN, | |
| 48 UNUSED_INTERSTITIAL_CAUSE_ENTRY, | |
| 49 }; | |
| 50 | |
| 51 void RecordSSLInterstitialCause(bool overridable, SSLInterstitialCause event) { | |
| 52 if (overridable) { | |
| 53 UMA_HISTOGRAM_ENUMERATION("interstitial.ssl.cause.overridable", event, | |
| 54 UNUSED_INTERSTITIAL_CAUSE_ENTRY); | |
| 55 } else { | |
| 56 UMA_HISTOGRAM_ENUMERATION("interstitial.ssl.cause.nonoverridable", event, | |
| 57 UNUSED_INTERSTITIAL_CAUSE_ENTRY); | |
| 58 } | |
| 59 } | |
| 60 | |
| 61 int GetLevensteinDistance(const std::string& str1, | |
| 62 const std::string& str2) { | |
| 63 if (str1 == str2) | |
| 64 return 0; | |
| 65 if (str1.size() == 0) | |
| 66 return str2.size(); | |
| 67 if (str2.size() == 0) | |
| 68 return str1.size(); | |
| 69 std::vector<int> kFirstRow(str2.size() + 1, 0); | |
| 70 std::vector<int> kSecondRow(str2.size() + 1, 0); | |
| 71 | |
| 72 for (size_t i = 0; i < kFirstRow.size(); ++i) | |
| 73 kFirstRow[i] = i; | |
| 74 for (size_t i = 0; i < str1.size(); ++i) { | |
| 75 kSecondRow[0] = i + 1; | |
| 76 for (size_t j = 0; j < str2.size(); ++j) { | |
| 77 int cost = str1[i] == str2[j] ? 0 : 1; | |
| 78 kSecondRow[j+1] = std::min(std::min( | |
| 79 kSecondRow[j] + 1, kFirstRow[j + 1] + 1), kFirstRow[j] + cost); | |
| 80 } | |
| 81 for (size_t j = 0; j < kFirstRow.size(); j++) | |
| 82 kFirstRow[j] = kSecondRow[j]; | |
| 83 } | |
| 84 return kSecondRow[str2.size()]; | |
| 85 } | |
| 86 | |
| 87 // The time to use when doing build time operations in browser tests. | |
| 88 base::Time g_testing_build_time; | |
| 89 | |
| 90 } // namespace | |
| 91 | |
| 92 SSLErrorClassification::SSLErrorClassification(const base::Time& current_time, | |
| 93 const GURL& url, | |
| 94 int cert_error, | |
| 95 const net::X509Certificate& cert) | |
| 96 : current_time_(current_time), | |
| 97 request_url_(url), | |
| 98 cert_error_(cert_error), | |
| 99 cert_(cert) {} | |
| 100 | |
| 101 SSLErrorClassification::~SSLErrorClassification() { } | |
| 102 | |
| 103 void SSLErrorClassification::RecordUMAStatistics( | |
| 104 bool overridable) const { | |
| 105 ssl_errors::ErrorInfo::ErrorType type = | |
| 106 ssl_errors::ErrorInfo::NetErrorToErrorType(cert_error_); | |
| 107 UMA_HISTOGRAM_ENUMERATION("interstitial.ssl_error_type", type, | |
| 108 ssl_errors::ErrorInfo::END_OF_ENUM); | |
| 109 switch (type) { | |
| 110 case ssl_errors::ErrorInfo::CERT_DATE_INVALID: { | |
| 111 if (IsUserClockInThePast(base::Time::NowFromSystemTime())) { | |
| 112 RecordSSLInterstitialCause(overridable, CLOCK_PAST); | |
| 113 } else if (IsUserClockInTheFuture(base::Time::NowFromSystemTime())) { | |
| 114 RecordSSLInterstitialCause(overridable, CLOCK_FUTURE); | |
| 115 } else if (cert_.HasExpired() && | |
| 116 (current_time_ - cert_.valid_expiry()).InDays() < 28) { | |
| 117 RecordSSLInterstitialCause(overridable, EXPIRED_RECENTLY); | |
| 118 } | |
| 119 break; | |
| 120 } | |
| 121 case ssl_errors::ErrorInfo::CERT_COMMON_NAME_INVALID: { | |
| 122 std::string host_name = request_url_.host(); | |
| 123 if (IsHostNameKnownTLD(host_name)) { | |
| 124 Tokens host_name_tokens = Tokenize(host_name); | |
| 125 if (IsWWWSubDomainMatch()) | |
| 126 RecordSSLInterstitialCause(overridable, WWW_SUBDOMAIN_MATCH); | |
| 127 if (IsSubDomainOutsideWildcard(host_name_tokens)) | |
| 128 RecordSSLInterstitialCause(overridable, SUBDOMAIN_OUTSIDE_WILDCARD); | |
| 129 std::vector<std::string> dns_names; | |
| 130 cert_.GetDNSNames(&dns_names); | |
| 131 std::vector<Tokens> dns_name_tokens = GetTokenizedDNSNames(dns_names); | |
| 132 if (NameUnderAnyNames(host_name_tokens, dns_name_tokens)) | |
| 133 RecordSSLInterstitialCause(overridable, SUBDOMAIN_MATCH); | |
| 134 if (AnyNamesUnderName(dns_name_tokens, host_name_tokens)) | |
| 135 RecordSSLInterstitialCause(overridable, SUBDOMAIN_INVERSE_MATCH); | |
| 136 if (IsCertLikelyFromMultiTenantHosting()) | |
| 137 RecordSSLInterstitialCause(overridable, LIKELY_MULTI_TENANT_HOSTING); | |
| 138 if (IsCertLikelyFromSameDomain()) | |
| 139 RecordSSLInterstitialCause(overridable, LIKELY_SAME_DOMAIN); | |
| 140 } else { | |
| 141 RecordSSLInterstitialCause(overridable, HOST_NAME_NOT_KNOWN_TLD); | |
| 142 } | |
| 143 break; | |
| 144 } | |
| 145 case ssl_errors::ErrorInfo::CERT_AUTHORITY_INVALID: { | |
| 146 const std::string& hostname = request_url_.HostNoBrackets(); | |
| 147 if (net::IsLocalhost(hostname)) | |
| 148 RecordSSLInterstitialCause(overridable, LOCALHOST); | |
| 149 if (IsHostnameNonUniqueOrDotless(hostname)) | |
| 150 RecordSSLInterstitialCause(overridable, PRIVATE_URL); | |
| 151 if (net::X509Certificate::IsSelfSigned(cert_.os_cert_handle())) | |
| 152 RecordSSLInterstitialCause(overridable, SELF_SIGNED); | |
| 153 break; | |
| 154 } | |
| 155 default: | |
| 156 break; | |
| 157 } | |
| 158 UMA_HISTOGRAM_ENUMERATION("interstitial.ssl.connection_type", | |
| 159 net::NetworkChangeNotifier::GetConnectionType(), | |
| 160 net::NetworkChangeNotifier::CONNECTION_LAST); | |
| 161 } | |
| 162 | |
| 163 bool SSLErrorClassification::IsUserClockInThePast(const base::Time& time_now) { | |
| 164 base::Time build_time; | |
| 165 if (!g_testing_build_time.is_null()) { | |
| 166 build_time = g_testing_build_time; | |
| 167 } else { | |
| 168 #if defined(DONT_EMBED_BUILD_METADATA) && !defined(OFFICIAL_BUILD) | |
| 169 return false; | |
| 170 #else | |
| 171 build_time = base::GetBuildTime(); | |
| 172 #endif | |
| 173 } | |
| 174 | |
| 175 if (time_now < build_time - base::TimeDelta::FromDays(2)) | |
| 176 return true; | |
| 177 return false; | |
| 178 } | |
| 179 | |
| 180 bool SSLErrorClassification::IsUserClockInTheFuture( | |
| 181 const base::Time& time_now) { | |
| 182 base::Time build_time; | |
| 183 if (!g_testing_build_time.is_null()) { | |
| 184 build_time = g_testing_build_time; | |
| 185 } else { | |
| 186 #if defined(DONT_EMBED_BUILD_METADATA) && !defined(OFFICIAL_BUILD) | |
| 187 return false; | |
| 188 #else | |
| 189 build_time = base::GetBuildTime(); | |
| 190 #endif | |
| 191 } | |
| 192 | |
| 193 if (time_now > build_time + base::TimeDelta::FromDays(365)) | |
| 194 return true; | |
| 195 return false; | |
| 196 } | |
| 197 | |
| 198 // static | |
| 199 void SSLErrorClassification::SetBuildTimeForTesting( | |
| 200 const base::Time& testing_time) { | |
| 201 g_testing_build_time = testing_time; | |
| 202 } | |
| 203 | |
| 204 bool SSLErrorClassification::MaybeWindowsLacksSHA256Support() { | |
| 205 #if defined(OS_WIN) | |
| 206 return !base::win::MaybeHasSHA256Support(); | |
| 207 #else | |
| 208 return false; | |
| 209 #endif | |
| 210 } | |
| 211 | |
| 212 bool SSLErrorClassification::IsHostNameKnownTLD(const std::string& host_name) { | |
| 213 size_t tld_length = | |
| 214 net::registry_controlled_domains::GetRegistryLength( | |
| 215 host_name, | |
| 216 net::registry_controlled_domains::EXCLUDE_UNKNOWN_REGISTRIES, | |
| 217 net::registry_controlled_domains::INCLUDE_PRIVATE_REGISTRIES); | |
| 218 if (tld_length == 0 || tld_length == std::string::npos) | |
| 219 return false; | |
| 220 return true; | |
| 221 } | |
| 222 | |
| 223 std::vector<SSLErrorClassification::Tokens> SSLErrorClassification:: | |
| 224 GetTokenizedDNSNames(const std::vector<std::string>& dns_names) { | |
| 225 std::vector<std::vector<std::string>> dns_name_tokens; | |
| 226 for (size_t i = 0; i < dns_names.size(); ++i) { | |
| 227 std::vector<std::string> dns_name_token_single; | |
| 228 if (dns_names[i].empty() || dns_names[i].find('\0') != std::string::npos | |
| 229 || !(IsHostNameKnownTLD(dns_names[i]))) { | |
| 230 dns_name_token_single.push_back(std::string()); | |
| 231 } else { | |
| 232 dns_name_token_single = Tokenize(dns_names[i]); | |
| 233 } | |
| 234 dns_name_tokens.push_back(dns_name_token_single); | |
| 235 } | |
| 236 return dns_name_tokens; | |
| 237 } | |
| 238 | |
| 239 size_t SSLErrorClassification::FindSubDomainDifference( | |
| 240 const Tokens& potential_subdomain, const Tokens& parent) const { | |
| 241 // A check to ensure that the number of tokens in the tokenized_parent is | |
| 242 // less than the tokenized_potential_subdomain. | |
| 243 if (parent.size() >= potential_subdomain.size()) | |
| 244 return 0; | |
| 245 | |
| 246 size_t tokens_match = 0; | |
| 247 size_t diff_size = potential_subdomain.size() - parent.size(); | |
| 248 for (size_t i = 0; i < parent.size(); ++i) { | |
| 249 if (parent[i] == potential_subdomain[i + diff_size]) | |
| 250 tokens_match++; | |
| 251 } | |
| 252 if (tokens_match == parent.size()) | |
| 253 return diff_size; | |
| 254 return 0; | |
| 255 } | |
| 256 | |
| 257 SSLErrorClassification::Tokens SSLErrorClassification:: | |
| 258 Tokenize(const std::string& name) { | |
| 259 return base::SplitString( | |
| 260 name, ".", base::KEEP_WHITESPACE, base::SPLIT_WANT_ALL); | |
| 261 } | |
| 262 | |
| 263 // We accept the inverse case for www for historical reasons. | |
| 264 bool SSLErrorClassification::GetWWWSubDomainMatch( | |
| 265 const std::string& host_name, | |
| 266 const std::vector<std::string>& dns_names, | |
| 267 std::string* www_match_host_name) { | |
| 268 if (IsHostNameKnownTLD(host_name)) { | |
| 269 // Need to account for all possible domains given in the SSL certificate. | |
| 270 for (size_t i = 0; i < dns_names.size(); ++i) { | |
| 271 if (dns_names[i].empty() || | |
| 272 dns_names[i].find('\0') != std::string::npos || | |
| 273 dns_names[i].length() == host_name.length() || | |
| 274 !IsHostNameKnownTLD(dns_names[i])) { | |
| 275 continue; | |
| 276 } else if (dns_names[i].length() > host_name.length()) { | |
| 277 if (net::StripWWW(base::ASCIIToUTF16(dns_names[i])) == | |
| 278 base::ASCIIToUTF16(host_name)) { | |
| 279 *www_match_host_name = dns_names[i]; | |
| 280 return true; | |
| 281 } | |
| 282 } else { | |
| 283 if (net::StripWWW(base::ASCIIToUTF16(host_name)) == | |
| 284 base::ASCIIToUTF16(dns_names[i])) { | |
| 285 *www_match_host_name = dns_names[i]; | |
| 286 return true; | |
| 287 } | |
| 288 } | |
| 289 } | |
| 290 } | |
| 291 return false; | |
| 292 } | |
| 293 | |
| 294 bool SSLErrorClassification::IsWWWSubDomainMatch() const { | |
| 295 const std::string& host_name = request_url_.host(); | |
| 296 std::vector<std::string> dns_names; | |
| 297 cert_.GetDNSNames(&dns_names); | |
| 298 std::string www_host; | |
| 299 return GetWWWSubDomainMatch(host_name, dns_names, &www_host); | |
| 300 } | |
| 301 | |
| 302 bool SSLErrorClassification::NameUnderAnyNames( | |
| 303 const Tokens& child, | |
| 304 const std::vector<Tokens>& potential_parents) const { | |
| 305 bool result = false; | |
| 306 // Need to account for all the possible domains given in the SSL certificate. | |
| 307 for (size_t i = 0; i < potential_parents.size(); ++i) { | |
| 308 if (potential_parents[i].empty() || | |
| 309 potential_parents[i].size() >= child.size()) { | |
| 310 result = result || false; | |
| 311 } else { | |
| 312 size_t domain_diff = FindSubDomainDifference(child, | |
| 313 potential_parents[i]); | |
| 314 if (domain_diff == 1 && child[0] != "www") | |
| 315 result = result || true; | |
| 316 } | |
| 317 } | |
| 318 return result; | |
| 319 } | |
| 320 | |
| 321 bool SSLErrorClassification::AnyNamesUnderName( | |
| 322 const std::vector<Tokens>& potential_children, | |
| 323 const Tokens& parent) const { | |
| 324 bool result = false; | |
| 325 // Need to account for all the possible domains given in the SSL certificate. | |
| 326 for (size_t i = 0; i < potential_children.size(); ++i) { | |
| 327 if (potential_children[i].empty() || | |
| 328 potential_children[i].size() <= parent.size()) { | |
| 329 result = result || false; | |
| 330 } else { | |
| 331 size_t domain_diff = FindSubDomainDifference(potential_children[i], | |
| 332 parent); | |
| 333 if (domain_diff == 1 && potential_children[i][0] != "www") | |
| 334 result = result || true; | |
| 335 } | |
| 336 } | |
| 337 return result; | |
| 338 } | |
| 339 | |
| 340 bool SSLErrorClassification::IsSubDomainOutsideWildcard( | |
| 341 const Tokens& host_name_tokens) const { | |
| 342 std::string host_name = request_url_.host(); | |
| 343 std::vector<std::string> dns_names; | |
| 344 cert_.GetDNSNames(&dns_names); | |
| 345 bool result = false; | |
| 346 | |
| 347 // This method requires that the host name be longer than the dns name on | |
| 348 // the certificate. | |
| 349 for (size_t i = 0; i < dns_names.size(); ++i) { | |
| 350 const std::string& name = dns_names[i]; | |
| 351 if (name.length() < 2 || name.length() >= host_name.length() || | |
| 352 name.find('\0') != std::string::npos || | |
| 353 !IsHostNameKnownTLD(name) | |
| 354 || name[0] != '*' || name[1] != '.') { | |
| 355 continue; | |
| 356 } | |
| 357 | |
| 358 // Move past the "*.". | |
| 359 std::string extracted_dns_name = name.substr(2); | |
| 360 if (FindSubDomainDifference( | |
| 361 host_name_tokens, Tokenize(extracted_dns_name)) == 2) { | |
| 362 return true; | |
| 363 } | |
| 364 } | |
| 365 return result; | |
| 366 } | |
| 367 | |
| 368 bool SSLErrorClassification::IsCertLikelyFromMultiTenantHosting() const { | |
| 369 std::string host_name = request_url_.host(); | |
| 370 std::vector<std::string> dns_names; | |
| 371 std::vector<std::string> dns_names_domain; | |
| 372 cert_.GetDNSNames(&dns_names); | |
| 373 size_t dns_names_size = dns_names.size(); | |
| 374 | |
| 375 // If there is only 1 DNS name then it is definitely not a shared certificate. | |
| 376 if (dns_names_size == 0 || dns_names_size == 1) | |
| 377 return false; | |
| 378 | |
| 379 // Check to see if all the domains in the SAN field in the SSL certificate are | |
| 380 // the same or not. | |
| 381 for (size_t i = 0; i < dns_names_size; ++i) { | |
| 382 dns_names_domain.push_back( | |
| 383 net::registry_controlled_domains:: | |
| 384 GetDomainAndRegistry( | |
| 385 dns_names[i], | |
| 386 net::registry_controlled_domains::INCLUDE_PRIVATE_REGISTRIES)); | |
| 387 } | |
| 388 for (size_t i = 1; i < dns_names_domain.size(); ++i) { | |
| 389 if (dns_names_domain[i] != dns_names_domain[0]) | |
| 390 return false; | |
| 391 } | |
| 392 | |
| 393 // If the number of DNS names is more than 5 then assume that it is a shared | |
| 394 // certificate. | |
| 395 static const int kDistinctNameThreshold = 5; | |
| 396 if (dns_names_size > kDistinctNameThreshold) | |
| 397 return true; | |
| 398 | |
| 399 // Heuristic - The edit distance between all the strings should be at least 5 | |
| 400 // for it to be counted as a shared SSLCertificate. If even one pair of | |
| 401 // strings edit distance is below 5 then the certificate is no longer | |
| 402 // considered as a shared certificate. Include the host name in the URL also | |
| 403 // while comparing. | |
| 404 dns_names.push_back(host_name); | |
| 405 static const int kMinimumEditDsitance = 5; | |
| 406 for (size_t i = 0; i < dns_names_size; ++i) { | |
| 407 for (size_t j = i + 1; j < dns_names_size; ++j) { | |
| 408 int edit_distance = GetLevensteinDistance(dns_names[i], dns_names[j]); | |
| 409 if (edit_distance < kMinimumEditDsitance) | |
| 410 return false; | |
| 411 } | |
| 412 } | |
| 413 return true; | |
| 414 } | |
| 415 | |
| 416 bool SSLErrorClassification::IsCertLikelyFromSameDomain() const { | |
| 417 std::string host_name = request_url_.host(); | |
| 418 std::vector<std::string> dns_names; | |
| 419 cert_.GetDNSNames(&dns_names); | |
| 420 | |
| 421 dns_names.push_back(host_name); | |
| 422 std::vector<std::string> dns_names_domain; | |
| 423 | |
| 424 for (const std::string& dns_name : dns_names) { | |
| 425 dns_names_domain.push_back( | |
| 426 net::registry_controlled_domains::GetDomainAndRegistry( | |
| 427 dns_name, | |
| 428 net::registry_controlled_domains::INCLUDE_PRIVATE_REGISTRIES)); | |
| 429 } | |
| 430 | |
| 431 DCHECK(!dns_names_domain.empty()); | |
| 432 const std::string& host_name_domain = dns_names_domain.back(); | |
| 433 | |
| 434 // Last element is the original domain. So, excluding it. | |
| 435 return std::find(dns_names_domain.begin(), dns_names_domain.end() - 1, | |
| 436 host_name_domain) != dns_names_domain.end() - 1; | |
| 437 } | |
| 438 | |
| 439 // static | |
| 440 bool SSLErrorClassification::IsHostnameNonUniqueOrDotless( | |
| 441 const std::string& hostname) { | |
| 442 return net::IsHostnameNonUnique(hostname) || | |
| 443 hostname.find('.') == std::string::npos; | |
| 444 } | |
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