ParsedCookie.cpp 14 KB

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  1. /*
  2. * Copyright (c) 2021, Tim Flynn <trflynn89@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include "ParsedCookie.h"
  7. #include <AK/DateConstants.h>
  8. #include <AK/Function.h>
  9. #include <AK/StdLibExtras.h>
  10. #include <AK/Vector.h>
  11. #include <LibIPC/Decoder.h>
  12. #include <LibIPC/Encoder.h>
  13. #include <ctype.h>
  14. namespace Web::Cookie {
  15. static constexpr size_t s_max_cookie_size = 4096;
  16. static void parse_attributes(ParsedCookie& parsed_cookie, StringView unparsed_attributes);
  17. static void process_attribute(ParsedCookie& parsed_cookie, StringView attribute_name, StringView attribute_value);
  18. static void on_expires_attribute(ParsedCookie& parsed_cookie, StringView attribute_value);
  19. static void on_max_age_attribute(ParsedCookie& parsed_cookie, StringView attribute_value);
  20. static void on_domain_attribute(ParsedCookie& parsed_cookie, StringView attribute_value);
  21. static void on_path_attribute(ParsedCookie& parsed_cookie, StringView attribute_value);
  22. static void on_secure_attribute(ParsedCookie& parsed_cookie);
  23. static void on_http_only_attribute(ParsedCookie& parsed_cookie);
  24. static Optional<Core::DateTime> parse_date_time(StringView date_string);
  25. Optional<ParsedCookie> parse_cookie(String const& cookie_string)
  26. {
  27. // https://tools.ietf.org/html/rfc6265#section-5.2
  28. if (cookie_string.length() > s_max_cookie_size)
  29. return {};
  30. StringView name_value_pair;
  31. StringView unparsed_attributes;
  32. // 1. If the set-cookie-string contains a %x3B (";") character:
  33. if (auto position = cookie_string.find(';'); position.has_value()) {
  34. // The name-value-pair string consists of the characters up to, but not including, the first %x3B (";"), and the unparsed-
  35. // attributes consist of the remainder of the set-cookie-string (including the %x3B (";") in question).
  36. name_value_pair = cookie_string.substring_view(0, position.value());
  37. unparsed_attributes = cookie_string.substring_view(position.value());
  38. } else {
  39. // The name-value-pair string consists of all the characters contained in the set-cookie-string, and the unparsed-
  40. // attributes is the empty string.
  41. name_value_pair = cookie_string;
  42. }
  43. StringView name;
  44. StringView value;
  45. if (auto position = name_value_pair.find('='); position.has_value()) {
  46. // 3. The (possibly empty) name string consists of the characters up to, but not including, the first %x3D ("=") character, and the
  47. // (possibly empty) value string consists of the characters after the first %x3D ("=") character.
  48. name = name_value_pair.substring_view(0, position.value());
  49. if (position.value() < name_value_pair.length() - 1)
  50. value = name_value_pair.substring_view(position.value() + 1);
  51. } else {
  52. // 2. If the name-value-pair string lacks a %x3D ("=") character, ignore the set-cookie-string entirely.
  53. return {};
  54. }
  55. // 4. Remove any leading or trailing WSP characters from the name string and the value string.
  56. name = name.trim_whitespace();
  57. value = value.trim_whitespace();
  58. // 5. If the name string is empty, ignore the set-cookie-string entirely.
  59. if (name.is_empty())
  60. return {};
  61. // 6. The cookie-name is the name string, and the cookie-value is the value string.
  62. ParsedCookie parsed_cookie { name, value };
  63. parse_attributes(parsed_cookie, unparsed_attributes);
  64. return parsed_cookie;
  65. }
  66. void parse_attributes(ParsedCookie& parsed_cookie, StringView unparsed_attributes)
  67. {
  68. // 1. If the unparsed-attributes string is empty, skip the rest of these steps.
  69. if (unparsed_attributes.is_empty())
  70. return;
  71. // 2. Discard the first character of the unparsed-attributes (which will be a %x3B (";") character).
  72. unparsed_attributes = unparsed_attributes.substring_view(1);
  73. StringView cookie_av;
  74. // 3. If the remaining unparsed-attributes contains a %x3B (";") character:
  75. if (auto position = unparsed_attributes.find(';'); position.has_value()) {
  76. // Consume the characters of the unparsed-attributes up to, but not including, the first %x3B (";") character.
  77. cookie_av = unparsed_attributes.substring_view(0, position.value());
  78. unparsed_attributes = unparsed_attributes.substring_view(position.value());
  79. } else {
  80. // Consume the remainder of the unparsed-attributes.
  81. cookie_av = unparsed_attributes;
  82. unparsed_attributes = {};
  83. }
  84. StringView attribute_name;
  85. StringView attribute_value;
  86. // 4. If the cookie-av string contains a %x3D ("=") character:
  87. if (auto position = cookie_av.find('='); position.has_value()) {
  88. // The (possibly empty) attribute-name string consists of the characters up to, but not including, the first %x3D ("=")
  89. // character, and the (possibly empty) attribute-value string consists of the characters after the first %x3D ("=") character.
  90. attribute_name = cookie_av.substring_view(0, position.value());
  91. if (position.value() < cookie_av.length() - 1)
  92. attribute_value = cookie_av.substring_view(position.value() + 1);
  93. } else {
  94. // The attribute-name string consists of the entire cookie-av string, and the attribute-value string is empty.
  95. attribute_name = cookie_av;
  96. }
  97. // 5. Remove any leading or trailing WSP characters from the attribute-name string and the attribute-value string.
  98. attribute_name = attribute_name.trim_whitespace();
  99. attribute_value = attribute_value.trim_whitespace();
  100. // 6. Process the attribute-name and attribute-value according to the requirements in the following subsections.
  101. // (Notice that attributes with unrecognized attribute-names are ignored.)
  102. process_attribute(parsed_cookie, attribute_name, attribute_value);
  103. // 7. Return to Step 1 of this algorithm.
  104. parse_attributes(parsed_cookie, unparsed_attributes);
  105. }
  106. void process_attribute(ParsedCookie& parsed_cookie, StringView attribute_name, StringView attribute_value)
  107. {
  108. if (attribute_name.equals_ignoring_case("Expires")) {
  109. on_expires_attribute(parsed_cookie, attribute_value);
  110. } else if (attribute_name.equals_ignoring_case("Max-Age")) {
  111. on_max_age_attribute(parsed_cookie, attribute_value);
  112. } else if (attribute_name.equals_ignoring_case("Domain")) {
  113. on_domain_attribute(parsed_cookie, attribute_value);
  114. } else if (attribute_name.equals_ignoring_case("Path")) {
  115. on_path_attribute(parsed_cookie, attribute_value);
  116. } else if (attribute_name.equals_ignoring_case("Secure")) {
  117. on_secure_attribute(parsed_cookie);
  118. } else if (attribute_name.equals_ignoring_case("HttpOnly")) {
  119. on_http_only_attribute(parsed_cookie);
  120. }
  121. }
  122. void on_expires_attribute(ParsedCookie& parsed_cookie, StringView attribute_value)
  123. {
  124. // https://tools.ietf.org/html/rfc6265#section-5.2.1
  125. if (auto expiry_time = parse_date_time(attribute_value); expiry_time.has_value())
  126. parsed_cookie.expiry_time_from_expires_attribute = move(*expiry_time);
  127. }
  128. void on_max_age_attribute(ParsedCookie& parsed_cookie, StringView attribute_value)
  129. {
  130. // https://tools.ietf.org/html/rfc6265#section-5.2.2
  131. // If the first character of the attribute-value is not a DIGIT or a "-" character, ignore the cookie-av.
  132. if (attribute_value.is_empty() || (!isdigit(attribute_value[0]) && (attribute_value[0] != '-')))
  133. return;
  134. // Let delta-seconds be the attribute-value converted to an integer.
  135. if (auto delta_seconds = attribute_value.to_int(); delta_seconds.has_value()) {
  136. if (*delta_seconds <= 0) {
  137. // If delta-seconds is less than or equal to zero (0), let expiry-time be the earliest representable date and time.
  138. parsed_cookie.expiry_time_from_max_age_attribute = Core::DateTime::from_timestamp(0);
  139. } else {
  140. // Otherwise, let the expiry-time be the current date and time plus delta-seconds seconds.
  141. time_t now = Core::DateTime::now().timestamp();
  142. parsed_cookie.expiry_time_from_max_age_attribute = Core::DateTime::from_timestamp(now + *delta_seconds);
  143. }
  144. }
  145. }
  146. void on_domain_attribute(ParsedCookie& parsed_cookie, StringView attribute_value)
  147. {
  148. // https://tools.ietf.org/html/rfc6265#section-5.2.3
  149. // If the attribute-value is empty, the behavior is undefined. However, the user agent SHOULD ignore the cookie-av entirely.
  150. if (attribute_value.is_empty())
  151. return;
  152. StringView cookie_domain;
  153. // If the first character of the attribute-value string is %x2E ("."):
  154. if (attribute_value[0] == '.') {
  155. // Let cookie-domain be the attribute-value without the leading %x2E (".") character.
  156. cookie_domain = attribute_value.substring_view(1);
  157. } else {
  158. // Let cookie-domain be the entire attribute-value.
  159. cookie_domain = attribute_value;
  160. }
  161. // Convert the cookie-domain to lower case.
  162. parsed_cookie.domain = String(cookie_domain).to_lowercase();
  163. }
  164. void on_path_attribute(ParsedCookie& parsed_cookie, StringView attribute_value)
  165. {
  166. // https://tools.ietf.org/html/rfc6265#section-5.2.4
  167. // If the attribute-value is empty or if the first character of the attribute-value is not %x2F ("/"):
  168. if (attribute_value.is_empty() || attribute_value[0] != '/')
  169. // Let cookie-path be the default-path.
  170. return;
  171. // Let cookie-path be the attribute-value
  172. parsed_cookie.path = attribute_value;
  173. }
  174. void on_secure_attribute(ParsedCookie& parsed_cookie)
  175. {
  176. // https://tools.ietf.org/html/rfc6265#section-5.2.5
  177. parsed_cookie.secure_attribute_present = true;
  178. }
  179. void on_http_only_attribute(ParsedCookie& parsed_cookie)
  180. {
  181. // https://tools.ietf.org/html/rfc6265#section-5.2.6
  182. parsed_cookie.http_only_attribute_present = true;
  183. }
  184. Optional<Core::DateTime> parse_date_time(StringView date_string)
  185. {
  186. // https://tools.ietf.org/html/rfc6265#section-5.1.1
  187. unsigned hour = 0;
  188. unsigned minute = 0;
  189. unsigned second = 0;
  190. unsigned day_of_month = 0;
  191. unsigned month = 0;
  192. unsigned year = 0;
  193. auto to_uint = [](StringView token, unsigned& result) {
  194. if (!all_of(token, isdigit))
  195. return false;
  196. if (auto converted = token.to_uint(); converted.has_value()) {
  197. result = *converted;
  198. return true;
  199. }
  200. return false;
  201. };
  202. auto parse_time = [&](StringView token) {
  203. Vector<StringView> parts = token.split_view(':');
  204. if (parts.size() != 3)
  205. return false;
  206. for (const auto& part : parts) {
  207. if (part.is_empty() || part.length() > 2)
  208. return false;
  209. }
  210. return to_uint(parts[0], hour) && to_uint(parts[1], minute) && to_uint(parts[2], second);
  211. };
  212. auto parse_day_of_month = [&](StringView token) {
  213. if (token.is_empty() || token.length() > 2)
  214. return false;
  215. return to_uint(token, day_of_month);
  216. };
  217. auto parse_month = [&](StringView token) {
  218. for (unsigned i = 0; i < 12; ++i) {
  219. if (token.equals_ignoring_case(short_month_names[i])) {
  220. month = i + 1;
  221. return true;
  222. }
  223. }
  224. return false;
  225. };
  226. auto parse_year = [&](StringView token) {
  227. if (token.length() != 2 && token.length() != 4)
  228. return false;
  229. return to_uint(token, year);
  230. };
  231. Function<bool(char)> is_delimiter = [](char ch) {
  232. return ch == 0x09 || (ch >= 0x20 && ch <= 0x2f) || (ch >= 0x3b && ch <= 0x40) || (ch >= 0x5b && ch <= 0x60) || (ch >= 0x7b && ch <= 0x7e);
  233. };
  234. // 1. Using the grammar below, divide the cookie-date into date-tokens.
  235. Vector<StringView> date_tokens = date_string.split_view_if(is_delimiter);
  236. // 2. Process each date-token sequentially in the order the date-tokens appear in the cookie-date.
  237. bool found_time = false;
  238. bool found_day_of_month = false;
  239. bool found_month = false;
  240. bool found_year = false;
  241. for (auto const& date_token : date_tokens) {
  242. if (!found_time && parse_time(date_token)) {
  243. found_time = true;
  244. } else if (!found_day_of_month && parse_day_of_month(date_token)) {
  245. found_day_of_month = true;
  246. } else if (!found_month && parse_month(date_token)) {
  247. found_month = true;
  248. } else if (!found_year && parse_year(date_token)) {
  249. found_year = true;
  250. }
  251. }
  252. // 3. If the year-value is greater than or equal to 70 and less than or equal to 99, increment the year-value by 1900.
  253. if (year >= 70 && year <= 99)
  254. year += 1900;
  255. // 4. If the year-value is greater than or equal to 0 and less than or equal to 69, increment the year-value by 2000.
  256. if (year <= 69)
  257. year += 2000;
  258. // 5. Abort these steps and fail to parse the cookie-date if:
  259. if (!found_time || !found_day_of_month || !found_month || !found_year)
  260. return {};
  261. if (day_of_month < 1 || day_of_month > 31)
  262. return {};
  263. if (year < 1601)
  264. return {};
  265. if (hour > 23)
  266. return {};
  267. if (minute > 59)
  268. return {};
  269. if (second > 59)
  270. return {};
  271. // FIXME: Fail on dates that do not exist.
  272. return Core::DateTime::create(year, month, day_of_month, hour, minute, second);
  273. }
  274. }
  275. bool IPC::encode(Encoder& encoder, Web::Cookie::ParsedCookie const& cookie)
  276. {
  277. encoder << cookie.name;
  278. encoder << cookie.value;
  279. encoder << cookie.expiry_time_from_expires_attribute;
  280. encoder << cookie.expiry_time_from_max_age_attribute;
  281. encoder << cookie.domain;
  282. encoder << cookie.path;
  283. encoder << cookie.secure_attribute_present;
  284. encoder << cookie.http_only_attribute_present;
  285. return true;
  286. }
  287. ErrorOr<void> IPC::decode(Decoder& decoder, Web::Cookie::ParsedCookie& cookie)
  288. {
  289. TRY(decoder.decode(cookie.name));
  290. TRY(decoder.decode(cookie.value));
  291. TRY(decoder.decode(cookie.expiry_time_from_expires_attribute));
  292. TRY(decoder.decode(cookie.expiry_time_from_max_age_attribute));
  293. TRY(decoder.decode(cookie.domain));
  294. TRY(decoder.decode(cookie.path));
  295. TRY(decoder.decode(cookie.secure_attribute_present));
  296. TRY(decoder.decode(cookie.http_only_attribute_present));
  297. return {};
  298. }