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| 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "net/cookies/cookie_util.h" | 5 #include "net/cookies/cookie_util.h" |
| 6 | 6 |
| 7 #include <cstdio> | 7 #include <cstdio> |
| 8 #include <cstdlib> | 8 #include <cstdlib> |
| 9 | 9 |
| 10 #include "base/logging.h" | 10 #include "base/logging.h" |
| 11 #include "base/strings/string_tokenizer.h" | 11 #include "base/strings/string_tokenizer.h" |
| 12 #include "base/strings/string_util.h" | 12 #include "base/strings/string_util.h" |
| 13 #include "build/build_config.h" | 13 #include "build/build_config.h" |
| 14 #include "net/base/registry_controlled_domains/registry_controlled_domain.h" | 14 #include "net/base/registry_controlled_domains/registry_controlled_domain.h" |
| 15 #include "net/base/url_util.h" | 15 #include "net/base/url_util.h" |
| 16 #include "url/gurl.h" | 16 #include "url/gurl.h" |
| 17 | 17 |
| 18 namespace net { | 18 namespace net { |
| 19 namespace cookie_util { | 19 namespace cookie_util { |
| 20 | 20 |
| 21 namespace { | |
| 22 | |
| 23 base::Time MinNonNullTime() { | |
| 24 return base::Time::FromInternalValue(1); | |
| 25 } | |
| 26 | |
| 27 // Tries to assemble a base::Time given a base::Time::Exploded representing a | |
| 28 // UTC calendar date. | |
| 29 // | |
| 30 // If the date falls outside of the range supported internally by | |
| 31 // FromUTCExploded(), then the result is clamped to: | |
| 32 // | |
| 33 // * Time(1) as the minimum value | |
| 34 // * Time::Max() as the maximum value | |
|
eroman
2016/10/18 22:55:18
Update this comment.
mmenke
2016/10/19 14:45:31
Done.
| |
| 35 bool SaturatedTimeFromUTCExploded(const base::Time::Exploded& exploded, | |
| 36 base::Time* out) { | |
| 37 // Try to calculate the base::Time in the normal fashion. | |
| 38 if (base::Time::FromUTCExploded(exploded, out)) { | |
| 39 // Don't return Time(0) on success. | |
| 40 if (out->is_null()) | |
| 41 *out = MinNonNullTime(); | |
| 42 return true; | |
| 43 } | |
| 44 | |
| 45 // base::Time::FromUTCExploded() has platform-specific limits: | |
| 46 // | |
| 47 // * Windows: Years 1601 - 30827 | |
| 48 // * 32-bit POSIX: Years 1970 - 2038 | |
| 49 // | |
| 50 // Work around this by clamping values when imploding the time is doomed | |
| 51 // to fail. | |
| 52 // | |
| 53 // Note that the following implementation is NOT perfect. It will accept | |
| 54 // some invalid calendar dates in the out-of-range case. | |
| 55 if (!exploded.HasValidValues()) | |
| 56 return false; | |
| 57 #if defined(OS_POSIX) && !defined(OS_MACOSX) | |
| 58 // Allow dates prior to unix epoch (which fail on non-Mac/iOS POSIX). | |
| 59 if (exploded.year < 1970) { | |
| 60 *out = base::Time::UnixEpoch(); | |
| 61 return true; | |
| 62 } | |
| 63 | |
| 64 // On 32-bit non-Mac/iOS POSIX systems, the time_t value that FromExploded() | |
| 65 // returns overflows in the middle of year 2038. In that case, return the max | |
| 66 // value that can be represented by a 32-bit time_t. | |
| 67 if (sizeof(time_t) == 4u && exploded.year >= 2038) { | |
| 68 *out = base::Time::FromTimeT(std::numeric_limits<time_t>::max()); | |
| 69 return true; | |
| 70 } | |
| 71 #endif // defined(OS_POSIX) && !defined(OS_MACOSX) | |
| 72 | |
| 73 #if defined(OS_WIN) | |
| 74 // Allow dates prior to Windows epoch. | |
| 75 if (exploded.year < 1601) { | |
| 76 *out = MinNonNullTime(); | |
| 77 return true; | |
| 78 } | |
| 79 | |
| 80 // Allow dates after the Windows epoch. | |
| 81 if (exploded.year >= 30827) { | |
| 82 // This is the maximum value a FILETIME can represent, though FromExploded() | |
| 83 // does fail on marginally smaller FILETIME values. The division by 10 is | |
| 84 // needed because FILETIMEs are in terms of hundreds of nanoseconds. | |
| 85 // This relies on base::Time() returning the start of the Windows epoch. | |
| 86 *out = base::Time::FromInternalValue( | |
| 87 std::numeric_limits<int64_t>::max() / 10); | |
| 88 return true; | |
| 89 } | |
| 90 #endif // defined(OS_WIN) | |
| 91 | |
| 92 return false; | |
| 93 } | |
| 94 | |
| 95 } // namespace | |
| 96 | |
| 21 bool DomainIsHostOnly(const std::string& domain_string) { | 97 bool DomainIsHostOnly(const std::string& domain_string) { |
| 22 return (domain_string.empty() || domain_string[0] != '.'); | 98 return (domain_string.empty() || domain_string[0] != '.'); |
| 23 } | 99 } |
| 24 | 100 |
| 25 std::string GetEffectiveDomain(const std::string& scheme, | 101 std::string GetEffectiveDomain(const std::string& scheme, |
| 26 const std::string& host) { | 102 const std::string& host) { |
| 27 if (scheme == "http" || scheme == "https" || scheme == "ws" || | 103 if (scheme == "http" || scheme == "https" || scheme == "ws" || |
| 28 scheme == "wss") { | 104 scheme == "wss") { |
| 29 return registry_controlled_domains::GetDomainAndRegistry( | 105 return registry_controlled_domains::GetDomainAndRegistry( |
| 30 host, | 106 host, |
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| 96 } | 172 } |
| 97 | 173 |
| 98 // Parse a cookie expiration time. We try to be lenient, but we need to | 174 // Parse a cookie expiration time. We try to be lenient, but we need to |
| 99 // assume some order to distinguish the fields. The basic rules: | 175 // assume some order to distinguish the fields. The basic rules: |
| 100 // - The month name must be present and prefix the first 3 letters of the | 176 // - The month name must be present and prefix the first 3 letters of the |
| 101 // full month name (jan for January, jun for June). | 177 // full month name (jan for January, jun for June). |
| 102 // - If the year is <= 2 digits, it must occur after the day of month. | 178 // - If the year is <= 2 digits, it must occur after the day of month. |
| 103 // - The time must be of the format hh:mm:ss. | 179 // - The time must be of the format hh:mm:ss. |
| 104 // An average cookie expiration will look something like this: | 180 // An average cookie expiration will look something like this: |
| 105 // Sat, 15-Apr-17 21:01:22 GMT | 181 // Sat, 15-Apr-17 21:01:22 GMT |
| 106 base::Time ParseCookieTime(const std::string& time_string) { | 182 base::Time ParseCookieExpirationTime(const std::string& time_string) { |
| 107 static const char* const kMonths[] = { | 183 static const char* const kMonths[] = { |
| 108 "jan", "feb", "mar", "apr", "may", "jun", | 184 "jan", "feb", "mar", "apr", "may", "jun", |
| 109 "jul", "aug", "sep", "oct", "nov", "dec" }; | 185 "jul", "aug", "sep", "oct", "nov", "dec" }; |
| 110 static const int kMonthsLen = arraysize(kMonths); | 186 static const int kMonthsLen = arraysize(kMonths); |
| 111 // We want to be pretty liberal, and support most non-ascii and non-digit | 187 // We want to be pretty liberal, and support most non-ascii and non-digit |
| 112 // characters as a delimiter. We can't treat : as a delimiter, because it | 188 // characters as a delimiter. We can't treat : as a delimiter, because it |
| 113 // is the delimiter for hh:mm:ss, and we want to keep this field together. | 189 // is the delimiter for hh:mm:ss, and we want to keep this field together. |
| 114 // We make sure to include - and +, since they could prefix numbers. | 190 // We make sure to include - and +, since they could prefix numbers. |
| 115 // If the cookie attribute came in in quotes (ex expires="XXX"), the quotes | 191 // If the cookie attribute came in in quotes (ex expires="XXX"), the quotes |
| 116 // will be preserved, and we will get them here. So we make sure to include | 192 // will be preserved, and we will get them here. So we make sure to include |
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| 193 // NOTREACHED() << "Cookie parse expiration failed: " << time_string; | 269 // NOTREACHED() << "Cookie parse expiration failed: " << time_string; |
| 194 return base::Time(); | 270 return base::Time(); |
| 195 } | 271 } |
| 196 | 272 |
| 197 // Normalize the year to expand abbreviated years to the full year. | 273 // Normalize the year to expand abbreviated years to the full year. |
| 198 if (exploded.year >= 69 && exploded.year <= 99) | 274 if (exploded.year >= 69 && exploded.year <= 99) |
| 199 exploded.year += 1900; | 275 exploded.year += 1900; |
| 200 if (exploded.year >= 0 && exploded.year <= 68) | 276 if (exploded.year >= 0 && exploded.year <= 68) |
| 201 exploded.year += 2000; | 277 exploded.year += 2000; |
| 202 | 278 |
| 203 // If our values are within their correct ranges, we got our time. | 279 // Note that clipping the date if it is outside of a platform-specific range |
| 204 if (exploded.day_of_month >= 1 && exploded.day_of_month <= 31 && | 280 // is permitted by: https://tools.ietf.org/html/rfc6265#section-5.2.1 |
| 205 exploded.month >= 1 && exploded.month <= 12 && | 281 base::Time result; |
| 206 exploded.year >= 1601 && exploded.year <= 30827 && | 282 if (SaturatedTimeFromUTCExploded(exploded, &result)) |
| 207 exploded.hour <= 23 && exploded.minute <= 59 && exploded.second <= 59) { | 283 return result; |
| 208 return base::Time::FromUTCExploded(exploded); | |
| 209 } | |
| 210 | 284 |
| 211 // One of our values was out of expected range. For well-formed input, | 285 // One of our values was out of expected range. For well-formed input, |
| 212 // the following check would be reasonable: | 286 // the following check would be reasonable: |
| 213 // NOTREACHED() << "Cookie exploded expiration failed: " << time_string; | 287 // NOTREACHED() << "Cookie exploded expiration failed: " << time_string; |
| 214 | 288 |
| 215 return base::Time(); | 289 return base::Time(); |
| 216 } | 290 } |
| 217 | 291 |
| 218 GURL CookieOriginToURL(const std::string& domain, bool is_https) { | 292 GURL CookieOriginToURL(const std::string& domain, bool is_https) { |
| 219 if (domain.empty()) | 293 if (domain.empty()) |
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| 273 buffer.append("; "); | 347 buffer.append("; "); |
| 274 buffer.append(i->first.begin(), i->first.end()); | 348 buffer.append(i->first.begin(), i->first.end()); |
| 275 buffer.push_back('='); | 349 buffer.push_back('='); |
| 276 buffer.append(i->second.begin(), i->second.end()); | 350 buffer.append(i->second.begin(), i->second.end()); |
| 277 } | 351 } |
| 278 return buffer; | 352 return buffer; |
| 279 } | 353 } |
| 280 | 354 |
| 281 } // namespace cookie_util | 355 } // namespace cookie_util |
| 282 } // namespace net | 356 } // namespace net |
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