url.rs 13 KB

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  1. // Copyright 2013-2014 Simon Sapin.
  2. //
  3. // Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
  4. // http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
  5. // <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
  6. // option. This file may not be copied, modified, or distributed
  7. // except according to those terms.
  8. #[crate_id = "url#0.1"];
  9. #[crate_type = "lib"];
  10. #[feature(macro_rules)];
  11. extern mod encoding;
  12. #[cfg(test)]
  13. extern mod extra;
  14. use std::str;
  15. use encoding::Encoding;
  16. use encoding::all::UTF_8;
  17. mod parser;
  18. pub mod form_urlencoded;
  19. pub mod punycode;
  20. #[cfg(test)]
  21. mod tests;
  22. #[deriving(Clone)]
  23. pub struct URL {
  24. scheme: ~str,
  25. scheme_data: SchemeData,
  26. query: Option<~str>, // See form_urlencoded::parse_str() to get name/value pairs.
  27. fragment: Option<~str>,
  28. }
  29. #[deriving(Clone)]
  30. pub enum SchemeData {
  31. RelativeSchemeData(SchemeRelativeURL),
  32. OtherSchemeData(~str), // data: URLs, mailto: URLs, etc.
  33. }
  34. #[deriving(Clone)]
  35. pub struct SchemeRelativeURL {
  36. userinfo: Option<UserInfo>,
  37. host: Host,
  38. port: ~str,
  39. path: ~[~str],
  40. }
  41. #[deriving(Clone)]
  42. pub struct UserInfo {
  43. username: ~str,
  44. password: Option<~str>,
  45. }
  46. #[deriving(Clone)]
  47. pub enum Host {
  48. Domain(~[~str]), // Can only be empty in the file scheme
  49. IPv6(IPv6Address)
  50. }
  51. pub struct IPv6Address {
  52. pieces: [u16, ..8]
  53. }
  54. impl Clone for IPv6Address {
  55. fn clone(&self) -> IPv6Address {
  56. IPv6Address { pieces: self.pieces }
  57. }
  58. }
  59. macro_rules! is_match(
  60. ($value:expr, $($pattern:pat)|+) => (
  61. match $value { $($pattern)|+ => true, _ => false }
  62. );
  63. )
  64. pub type ParseResult<T> = Result<T, &'static str>;
  65. impl URL {
  66. pub fn parse(input: &str, base_url: Option<&URL>) -> ParseResult<URL> {
  67. parser::parse_url(input, base_url)
  68. }
  69. pub fn serialize(&self) -> ~str {
  70. let mut result = self.serialize_no_fragment();
  71. match self.fragment {
  72. None => (),
  73. Some(ref fragment) => {
  74. result.push_str("#");
  75. result.push_str(fragment.as_slice());
  76. }
  77. }
  78. result
  79. }
  80. pub fn serialize_no_fragment(&self) -> ~str {
  81. let mut result = self.scheme.to_owned();
  82. result.push_str(":");
  83. match self.scheme_data {
  84. RelativeSchemeData(SchemeRelativeURL {
  85. ref userinfo, ref host, ref port, ref path
  86. }) => {
  87. result.push_str("//");
  88. match userinfo {
  89. &None => (),
  90. &Some(UserInfo { ref username, ref password })
  91. => if username.len() > 0 || password.is_some() {
  92. result.push_str(username.as_slice());
  93. match password {
  94. &None => (),
  95. &Some(ref password) => {
  96. result.push_str(":");
  97. result.push_str(password.as_slice());
  98. }
  99. }
  100. result.push_str("@");
  101. }
  102. }
  103. result.push_str(host.serialize());
  104. if port.len() > 0 {
  105. result.push_str(":");
  106. result.push_str(port.as_slice());
  107. }
  108. if path.len() > 0 {
  109. for path_part in path.iter() {
  110. result.push_str("/");
  111. result.push_str(path_part.as_slice());
  112. }
  113. } else {
  114. result.push_str("/");
  115. }
  116. },
  117. OtherSchemeData(ref data) => result.push_str(data.as_slice()),
  118. }
  119. match self.query {
  120. None => (),
  121. Some(ref query) => {
  122. result.push_str("?");
  123. result.push_str(query.as_slice());
  124. }
  125. }
  126. result
  127. }
  128. }
  129. impl Host {
  130. pub fn parse(input: &str) -> ParseResult<Host> {
  131. if input.len() == 0 {
  132. Err("Empty host")
  133. } else if input[0] == '[' as u8 {
  134. if input[input.len() - 1] == ']' as u8 {
  135. IPv6Address::parse(input.slice(1, input.len() - 1)).map(IPv6)
  136. } else {
  137. Err("Invalid IPv6 address")
  138. }
  139. } else {
  140. let mut percent_encoded = ~"";
  141. utf8_percent_encode(input, SimpleEncodeSet, &mut percent_encoded);
  142. let bytes = percent_decode(percent_encoded.as_bytes());
  143. let decoded = UTF_8.decode(bytes, encoding::DecodeReplace).unwrap();
  144. let mut labels = ~[];
  145. for label in decoded.split(&['.', '\u3002', '\uFF0E', '\uFF61']) {
  146. // TODO: Remove this check and use IDNA "domain to ASCII"
  147. // TODO: switch to .map(domain_label_to_ascii).collect() then.
  148. if label.is_ascii() {
  149. labels.push(label.to_owned())
  150. } else {
  151. return Err("Non-ASCII domains (IDNA) are not supported yet.")
  152. }
  153. }
  154. Ok(Domain(labels))
  155. }
  156. }
  157. pub fn serialize(&self) -> ~str {
  158. match *self {
  159. Domain(ref labels) => labels.connect("."),
  160. IPv6(ref address) => {
  161. let mut result = ~"[";
  162. result.push_str(address.serialize());
  163. result.push_str("]");
  164. result
  165. }
  166. }
  167. }
  168. }
  169. impl IPv6Address {
  170. pub fn parse(input: &str) -> ParseResult<IPv6Address> {
  171. let len = input.len();
  172. let mut is_ip_v4 = false;
  173. let mut pieces = [0, 0, 0, 0, 0, 0, 0, 0];
  174. let mut piece_pointer = 0u;
  175. let mut compress_pointer = None;
  176. let mut i = 0u;
  177. if input[0] == ':' as u8 {
  178. if input[1] != ':' as u8 {
  179. return Err("Invalid IPv6 address")
  180. }
  181. i = 2;
  182. piece_pointer = 1;
  183. compress_pointer = Some(1u);
  184. }
  185. while i < len {
  186. if piece_pointer == 8 {
  187. return Err("Invalid IPv6 address")
  188. }
  189. if input[i] == ':' as u8 {
  190. if compress_pointer.is_some() {
  191. return Err("Invalid IPv6 address")
  192. }
  193. i += 1;
  194. piece_pointer += 1;
  195. compress_pointer = Some(piece_pointer);
  196. continue
  197. }
  198. let start = i;
  199. let end = len.min(&(start + 4));
  200. let mut value = 0u16;
  201. while i < end {
  202. match from_hex(input[i]) {
  203. Some(digit) => {
  204. value = value * 0x10 + digit as u16;
  205. i += 1;
  206. },
  207. None => break
  208. }
  209. }
  210. if i < len {
  211. match input[i] as char {
  212. '.' => {
  213. if i == start {
  214. return Err("Invalid IPv6 address")
  215. }
  216. i = start;
  217. is_ip_v4 = true;
  218. },
  219. ':' => {
  220. i += 1;
  221. if i == len {
  222. return Err("Invalid IPv6 address")
  223. }
  224. },
  225. _ => return Err("Invalid IPv6 address")
  226. }
  227. }
  228. if is_ip_v4 {
  229. break
  230. }
  231. pieces[piece_pointer] = value;
  232. piece_pointer += 1;
  233. }
  234. if is_ip_v4 {
  235. if piece_pointer > 6 {
  236. return Err("Invalid IPv6 address")
  237. }
  238. let mut dots_seen = 0u;
  239. while i < len {
  240. let mut value = 0u16;
  241. while i < len {
  242. let digit = match input[i] {
  243. c @ 0x30 .. 0x39 => c - 0x30, // 0..9
  244. _ => break
  245. };
  246. value = value * 10 + digit as u16;
  247. if value > 255 {
  248. return Err("Invalid IPv6 address")
  249. }
  250. }
  251. if dots_seen < 3 && !(i < len && input[i] == '.' as u8) {
  252. return Err("Invalid IPv6 address")
  253. }
  254. pieces[piece_pointer] = pieces[piece_pointer] * 0x100 + value;
  255. if dots_seen == 0 || dots_seen == 2 {
  256. piece_pointer += 1;
  257. }
  258. i += 1;
  259. if dots_seen == 3 && i < len {
  260. return Err("Invalid IPv6 address")
  261. }
  262. dots_seen += 1;
  263. }
  264. }
  265. match compress_pointer {
  266. Some(compress_pointer) => {
  267. let mut swaps = piece_pointer - compress_pointer;
  268. piece_pointer = 7;
  269. while swaps > 0 {
  270. pieces[piece_pointer] = pieces[compress_pointer + swaps - 1];
  271. pieces[compress_pointer + swaps - 1] = 0;
  272. swaps -= 1;
  273. piece_pointer -= 1;
  274. }
  275. }
  276. _ => if piece_pointer != 8 {
  277. return Err("Invalid IPv6 address")
  278. }
  279. }
  280. Ok(IPv6Address { pieces: pieces })
  281. }
  282. pub fn serialize(&self) -> ~str {
  283. let mut output = ~"";
  284. let (compress_start, compress_end) = longest_zero_sequence(&self.pieces);
  285. let mut i = 0;
  286. while i < 8 {
  287. if i == compress_start {
  288. output.push_str(":");
  289. if i == 0 {
  290. output.push_str(":");
  291. }
  292. if compress_end < 8 {
  293. i = compress_end;
  294. } else {
  295. break;
  296. }
  297. }
  298. output.push_str(self.pieces[i].to_str_radix(16));
  299. if i < 7 {
  300. output.push_str(":");
  301. }
  302. i += 1;
  303. }
  304. output
  305. }
  306. }
  307. fn longest_zero_sequence(pieces: &[u16, ..8]) -> (int, int) {
  308. let mut longest = -1;
  309. let mut longest_length = -1;
  310. let mut start = -1;
  311. macro_rules! finish_sequence(
  312. ($end: expr) => {
  313. if start >= 0 {
  314. let length = $end - start;
  315. if length > longest_length {
  316. longest = start;
  317. longest_length = length;
  318. }
  319. }
  320. };
  321. );
  322. for i in range(0, 8) {
  323. if pieces[i] == 0 {
  324. if start < 0 {
  325. start = i;
  326. }
  327. } else {
  328. finish_sequence!(i);
  329. start = -1;
  330. }
  331. }
  332. finish_sequence!(8);
  333. (longest, longest + longest_length)
  334. }
  335. #[inline]
  336. fn from_hex(byte: u8) -> Option<u8> {
  337. match byte {
  338. 0x30 .. 0x39 => Some(byte - 0x30), // 0..9
  339. 0x41 .. 0x46 => Some(byte + 10 - 0x41), // A..F
  340. 0x61 .. 0x66 => Some(byte + 10 - 0x61), // a..f
  341. _ => None
  342. }
  343. }
  344. #[inline]
  345. fn to_hex_upper(value: u8) -> u8 {
  346. match value {
  347. 0 .. 9 => value + 0x30,
  348. 10 .. 15 => value - 10 + 0x41,
  349. _ => fail!()
  350. }
  351. }
  352. enum EncodeSet {
  353. SimpleEncodeSet,
  354. DefaultEncodeSet,
  355. UserInfoEncodeSet,
  356. PasswordEncodeSet,
  357. UsernameEncodeSet
  358. }
  359. #[inline]
  360. fn utf8_percent_encode(input: &str, encode_set: EncodeSet, output: &mut ~str) {
  361. use Default = self::DefaultEncodeSet;
  362. use UserInfo = self::UserInfoEncodeSet;
  363. use Password = self::PasswordEncodeSet;
  364. use Username = self::UsernameEncodeSet;
  365. for byte in input.bytes() {
  366. if byte < 0x20 || byte > 0x7E || match byte as char {
  367. ' ' | '"' | '#' | '<' | '>' | '?' | '`'
  368. => is_match!(encode_set, Default | UserInfo | Password | Username),
  369. '@'
  370. => is_match!(encode_set, UserInfo | Password | Username),
  371. '/' | '\\'
  372. => is_match!(encode_set, Password | Username),
  373. ':'
  374. => is_match!(encode_set, Username),
  375. _ => false,
  376. } {
  377. percent_encode_byte(byte, output)
  378. } else {
  379. unsafe { str::raw::push_byte(output, byte) }
  380. }
  381. }
  382. }
  383. #[inline]
  384. fn percent_encode_byte(byte: u8, output: &mut ~str) {
  385. unsafe {
  386. str::raw::push_bytes(output, [
  387. '%' as u8, to_hex_upper(byte >> 4), to_hex_upper(byte & 0x0F)
  388. ])
  389. }
  390. }
  391. #[inline]
  392. fn percent_decode(input: &[u8]) -> ~[u8] {
  393. let mut output = ~[];
  394. let mut i = 0u;
  395. while i < input.len() {
  396. let c = input[i];
  397. if c == ('%' as u8) && i + 2 < input.len() {
  398. match (from_hex(input[i + 1]), from_hex(input[i + 2])) {
  399. (Some(h), Some(l)) => {
  400. output.push(h * 0x10 + l);
  401. i += 3;
  402. continue
  403. },
  404. _ => (),
  405. }
  406. }
  407. output.push(c);
  408. i += 1;
  409. }
  410. output
  411. }