tests.rs 5.6 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. use std::char;
  9. use std::u32;
  10. use super::{Url, RelativeSchemeData, SchemeRelativeUrl, UserInfo, OtherSchemeData};
  11. #[test]
  12. fn test_url_parsing() {
  13. for test in parse_test_data(include_str!("urltestdata.txt")).move_iter() {
  14. let Test {
  15. input: input,
  16. base: base,
  17. scheme: expected_scheme,
  18. username: expected_username,
  19. password: expected_password,
  20. host: expected_host,
  21. port: expected_port,
  22. path: expected_path,
  23. query: expected_query,
  24. fragment: expected_fragment
  25. } = test;
  26. let base = match Url::parse(base, None) {
  27. Ok(base) => base,
  28. Err(message) => fail!("Error parsing base {:?}: {}", base, message)
  29. };
  30. let url = Url::parse(input, Some(&base));
  31. if expected_scheme.is_none() {
  32. assert!(url.is_err(), "Expected a parse error for URL {:?}", input);
  33. continue
  34. }
  35. let Url { scheme, scheme_data, query, fragment } = match url {
  36. Ok(url) => url,
  37. Err(message) => fail!("Error parsing URL {:?}: {}", input, message)
  38. };
  39. assert_eq!(Some(scheme), expected_scheme);
  40. match scheme_data {
  41. RelativeSchemeData(SchemeRelativeUrl { userinfo, host, port, path }) => {
  42. let (username, password) = match userinfo {
  43. None => (~"", None),
  44. Some(UserInfo { username, password }) => (username, password),
  45. };
  46. assert_eq!(username, expected_username);
  47. assert_eq!(password, expected_password);
  48. let host = host.serialize();
  49. assert_eq!(host, expected_host)
  50. assert_eq!(port, expected_port);
  51. assert_eq!(Some("/" + path.connect("/")),
  52. expected_path);
  53. },
  54. OtherSchemeData(scheme_data) => {
  55. assert_eq!(Some(scheme_data), expected_path);
  56. assert_eq!(~"", expected_username);
  57. assert_eq!(None, expected_password);
  58. assert_eq!(~"", expected_host);
  59. assert_eq!(~"", expected_port);
  60. },
  61. }
  62. assert_eq!(query.map(|p| "?" + p), expected_query);
  63. assert_eq!(fragment.map(|p| "#" + p), expected_fragment);
  64. }
  65. }
  66. struct Test {
  67. input: ~str,
  68. base: ~str,
  69. scheme: Option<~str>,
  70. username: ~str,
  71. password: Option<~str>,
  72. host: ~str,
  73. port: ~str,
  74. path: Option<~str>,
  75. query: Option<~str>,
  76. fragment: Option<~str>,
  77. }
  78. fn parse_test_data(input: &str) -> ~[Test] {
  79. let mut tests: ~[Test] = ~[];
  80. for line in input.lines() {
  81. if line == "" || line[0] == ('#' as u8) {
  82. continue
  83. }
  84. let mut pieces: ~[&str] = line.split(' ').collect();
  85. let input = unescape(pieces.shift().unwrap());
  86. let mut test = Test {
  87. input: input,
  88. base: if pieces.is_empty() || pieces[0] == "" {
  89. tests[tests.len() - 1].base.to_owned()
  90. } else {
  91. unescape(pieces.shift().unwrap())
  92. },
  93. scheme: None,
  94. username: ~"",
  95. password: None,
  96. host: ~"",
  97. port: ~"",
  98. path: None,
  99. query: None,
  100. fragment: None,
  101. };
  102. for piece in pieces.move_iter() {
  103. if piece == "" || piece[0] == ('#' as u8) {
  104. continue
  105. }
  106. let colon = piece.find(':').unwrap();
  107. let value = unescape(piece.slice_from(colon + 1));
  108. match piece.slice_to(colon) {
  109. "s" => test.scheme = Some(value),
  110. "u" => test.username = value,
  111. "pass" => test.password = Some(value),
  112. "h" => test.host = value,
  113. "port" => test.port = value,
  114. "p" => test.path = Some(value),
  115. "q" => test.query = Some(value),
  116. "f" => test.fragment = Some(value),
  117. _ => fail!("Invalid token")
  118. }
  119. }
  120. tests.push(test)
  121. }
  122. tests
  123. }
  124. fn unescape(input: &str) -> ~str {
  125. let mut output = ~"";
  126. let mut chars = input.chars();
  127. loop {
  128. match chars.next() {
  129. None => return output,
  130. Some(c) => output.push_char(
  131. if c == '\\' {
  132. match chars.next().unwrap() {
  133. '\\' => '\\',
  134. 'n' => '\n',
  135. 'r' => '\r',
  136. 's' => ' ',
  137. 't' => '\t',
  138. 'f' => '\x0C',
  139. 'u' => {
  140. let mut hex = ~"";
  141. hex.push_char(chars.next().unwrap());
  142. hex.push_char(chars.next().unwrap());
  143. hex.push_char(chars.next().unwrap());
  144. hex.push_char(chars.next().unwrap());
  145. u32::parse_bytes(hex.as_bytes(), 16)
  146. .and_then(char::from_u32).unwrap()
  147. }
  148. _ => fail!("Invalid test data input"),
  149. }
  150. } else {
  151. c
  152. }
  153. )
  154. }
  155. }
  156. }