tree.go 15 KB

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  1. // Copyright 2013 Julien Schmidt. All rights reserved.
  2. // Use of this source code is governed by a BSD-style license that can be found
  3. // in the LICENSE file.
  4. package gin
  5. import (
  6. "net/url"
  7. "strings"
  8. "unicode"
  9. )
  10. // Param is a single URL parameter, consisting of a key and a value.
  11. type Param struct {
  12. Key string
  13. Value string
  14. }
  15. // Params is a Param-slice, as returned by the router.
  16. // The slice is ordered, the first URL parameter is also the first slice value.
  17. // It is therefore safe to read values by the index.
  18. type Params []Param
  19. // Get returns the value of the first Param which key matches the given name.
  20. // If no matching Param is found, an empty string is returned.
  21. func (ps Params) Get(name string) (string, bool) {
  22. for _, entry := range ps {
  23. if entry.Key == name {
  24. return entry.Value, true
  25. }
  26. }
  27. return "", false
  28. }
  29. // ByName returns the value of the first Param which key matches the given name.
  30. // If no matching Param is found, an empty string is returned.
  31. func (ps Params) ByName(name string) (va string) {
  32. va, _ = ps.Get(name)
  33. return
  34. }
  35. type methodTree struct {
  36. method string
  37. root *node
  38. }
  39. type methodTrees []methodTree
  40. func (trees methodTrees) get(method string) *node {
  41. for _, tree := range trees {
  42. if tree.method == method {
  43. return tree.root
  44. }
  45. }
  46. return nil
  47. }
  48. func min(a, b int) int {
  49. if a <= b {
  50. return a
  51. }
  52. return b
  53. }
  54. func countParams(path string) uint8 {
  55. var n uint
  56. for i := 0; i < len(path); i++ {
  57. if path[i] != ':' && path[i] != '*' {
  58. continue
  59. }
  60. n++
  61. }
  62. if n >= 255 {
  63. return 255
  64. }
  65. return uint8(n)
  66. }
  67. type nodeType uint8
  68. const (
  69. static nodeType = iota // default
  70. root
  71. param
  72. catchAll
  73. )
  74. type node struct {
  75. path string
  76. wildChild bool
  77. nType nodeType
  78. maxParams uint8
  79. indices string
  80. children []*node
  81. handlers HandlersChain
  82. priority uint32
  83. }
  84. // increments priority of the given child and reorders if necessary
  85. func (n *node) incrementChildPrio(pos int) int {
  86. n.children[pos].priority++
  87. prio := n.children[pos].priority
  88. // adjust position (move to front)
  89. newPos := pos
  90. for newPos > 0 && n.children[newPos-1].priority < prio {
  91. // swap node positions
  92. tmpN := n.children[newPos-1]
  93. n.children[newPos-1] = n.children[newPos]
  94. n.children[newPos] = tmpN
  95. newPos--
  96. }
  97. // build new index char string
  98. if newPos != pos {
  99. n.indices = n.indices[:newPos] + // unchanged prefix, might be empty
  100. n.indices[pos:pos+1] + // the index char we move
  101. n.indices[newPos:pos] + n.indices[pos+1:] // rest without char at 'pos'
  102. }
  103. return newPos
  104. }
  105. // addRoute adds a node with the given handle to the path.
  106. // Not concurrency-safe!
  107. func (n *node) addRoute(path string, handlers HandlersChain) {
  108. fullPath := path
  109. n.priority++
  110. numParams := countParams(path)
  111. // non-empty tree
  112. if len(n.path) > 0 || len(n.children) > 0 {
  113. walk:
  114. for {
  115. // Update maxParams of the current node
  116. if numParams > n.maxParams {
  117. n.maxParams = numParams
  118. }
  119. // Find the longest common prefix.
  120. // This also implies that the common prefix contains no ':' or '*'
  121. // since the existing key can't contain those chars.
  122. i := 0
  123. max := min(len(path), len(n.path))
  124. for i < max && path[i] == n.path[i] {
  125. i++
  126. }
  127. // Split edge
  128. if i < len(n.path) {
  129. child := node{
  130. path: n.path[i:],
  131. wildChild: n.wildChild,
  132. indices: n.indices,
  133. children: n.children,
  134. handlers: n.handlers,
  135. priority: n.priority - 1,
  136. }
  137. // Update maxParams (max of all children)
  138. for i := range child.children {
  139. if child.children[i].maxParams > child.maxParams {
  140. child.maxParams = child.children[i].maxParams
  141. }
  142. }
  143. n.children = []*node{&child}
  144. // []byte for proper unicode char conversion, see #65
  145. n.indices = string([]byte{n.path[i]})
  146. n.path = path[:i]
  147. n.handlers = nil
  148. n.wildChild = false
  149. }
  150. // Make new node a child of this node
  151. if i < len(path) {
  152. path = path[i:]
  153. if n.wildChild {
  154. n = n.children[0]
  155. n.priority++
  156. // Update maxParams of the child node
  157. if numParams > n.maxParams {
  158. n.maxParams = numParams
  159. }
  160. numParams--
  161. // Check if the wildcard matches
  162. if len(path) >= len(n.path) && n.path == path[:len(n.path)] {
  163. // check for longer wildcard, e.g. :name and :names
  164. if len(n.path) >= len(path) || path[len(n.path)] == '/' {
  165. continue walk
  166. }
  167. }
  168. panic("path segment '" + path +
  169. "' conflicts with existing wildcard '" + n.path +
  170. "' in path '" + fullPath + "'")
  171. }
  172. c := path[0]
  173. // slash after param
  174. if n.nType == param && c == '/' && len(n.children) == 1 {
  175. n = n.children[0]
  176. n.priority++
  177. continue walk
  178. }
  179. // Check if a child with the next path byte exists
  180. for i := 0; i < len(n.indices); i++ {
  181. if c == n.indices[i] {
  182. i = n.incrementChildPrio(i)
  183. n = n.children[i]
  184. continue walk
  185. }
  186. }
  187. // Otherwise insert it
  188. if c != ':' && c != '*' {
  189. // []byte for proper unicode char conversion, see #65
  190. n.indices += string([]byte{c})
  191. child := &node{
  192. maxParams: numParams,
  193. }
  194. n.children = append(n.children, child)
  195. n.incrementChildPrio(len(n.indices) - 1)
  196. n = child
  197. }
  198. n.insertChild(numParams, path, fullPath, handlers)
  199. return
  200. } else if i == len(path) { // Make node a (in-path) leaf
  201. if n.handlers != nil {
  202. panic("handlers are already registered for path ''" + fullPath + "'")
  203. }
  204. n.handlers = handlers
  205. }
  206. return
  207. }
  208. } else { // Empty tree
  209. n.insertChild(numParams, path, fullPath, handlers)
  210. n.nType = root
  211. }
  212. }
  213. func (n *node) insertChild(numParams uint8, path string, fullPath string, handlers HandlersChain) {
  214. var offset int // already handled bytes of the path
  215. // find prefix until first wildcard (beginning with ':'' or '*'')
  216. for i, max := 0, len(path); numParams > 0; i++ {
  217. c := path[i]
  218. if c != ':' && c != '*' {
  219. continue
  220. }
  221. // find wildcard end (either '/' or path end)
  222. end := i + 1
  223. for end < max && path[end] != '/' {
  224. switch path[end] {
  225. // the wildcard name must not contain ':' and '*'
  226. case ':', '*':
  227. panic("only one wildcard per path segment is allowed, has: '" +
  228. path[i:] + "' in path '" + fullPath + "'")
  229. default:
  230. end++
  231. }
  232. }
  233. // check if this Node existing children which would be
  234. // unreachable if we insert the wildcard here
  235. if len(n.children) > 0 {
  236. panic("wildcard route '" + path[i:end] +
  237. "' conflicts with existing children in path '" + fullPath + "'")
  238. }
  239. // check if the wildcard has a name
  240. if end-i < 2 {
  241. panic("wildcards must be named with a non-empty name in path '" + fullPath + "'")
  242. }
  243. if c == ':' { // param
  244. // split path at the beginning of the wildcard
  245. if i > 0 {
  246. n.path = path[offset:i]
  247. offset = i
  248. }
  249. child := &node{
  250. nType: param,
  251. maxParams: numParams,
  252. }
  253. n.children = []*node{child}
  254. n.wildChild = true
  255. n = child
  256. n.priority++
  257. numParams--
  258. // if the path doesn't end with the wildcard, then there
  259. // will be another non-wildcard subpath starting with '/'
  260. if end < max {
  261. n.path = path[offset:end]
  262. offset = end
  263. child := &node{
  264. maxParams: numParams,
  265. priority: 1,
  266. }
  267. n.children = []*node{child}
  268. n = child
  269. }
  270. } else { // catchAll
  271. if end != max || numParams > 1 {
  272. panic("catch-all routes are only allowed at the end of the path in path '" + fullPath + "'")
  273. }
  274. if len(n.path) > 0 && n.path[len(n.path)-1] == '/' {
  275. panic("catch-all conflicts with existing handle for the path segment root in path '" + fullPath + "'")
  276. }
  277. // currently fixed width 1 for '/'
  278. i--
  279. if path[i] != '/' {
  280. panic("no / before catch-all in path '" + fullPath + "'")
  281. }
  282. n.path = path[offset:i]
  283. // first node: catchAll node with empty path
  284. child := &node{
  285. wildChild: true,
  286. nType: catchAll,
  287. maxParams: 1,
  288. }
  289. n.children = []*node{child}
  290. n.indices = string(path[i])
  291. n = child
  292. n.priority++
  293. // second node: node holding the variable
  294. child = &node{
  295. path: path[i:],
  296. nType: catchAll,
  297. maxParams: 1,
  298. handlers: handlers,
  299. priority: 1,
  300. }
  301. n.children = []*node{child}
  302. return
  303. }
  304. }
  305. // insert remaining path part and handle to the leaf
  306. n.path = path[offset:]
  307. n.handlers = handlers
  308. }
  309. // Returns the handle registered with the given path (key). The values of
  310. // wildcards are saved to a map.
  311. // If no handle can be found, a TSR (trailing slash redirect) recommendation is
  312. // made if a handle exists with an extra (without the) trailing slash for the
  313. // given path.
  314. func (n *node) getValue(path string, po Params, unescape bool) (handlers HandlersChain, p Params, tsr bool) {
  315. p = po
  316. walk: // Outer loop for walking the tree
  317. for {
  318. if len(path) > len(n.path) {
  319. if path[:len(n.path)] == n.path {
  320. path = path[len(n.path):]
  321. // If this node does not have a wildcard (param or catchAll)
  322. // child, we can just look up the next child node and continue
  323. // to walk down the tree
  324. if !n.wildChild {
  325. c := path[0]
  326. for i := 0; i < len(n.indices); i++ {
  327. if c == n.indices[i] {
  328. n = n.children[i]
  329. continue walk
  330. }
  331. }
  332. // Nothing found.
  333. // We can recommend to redirect to the same URL without a
  334. // trailing slash if a leaf exists for that path.
  335. tsr = (path == "/" && n.handlers != nil)
  336. return
  337. }
  338. // handle wildcard child
  339. n = n.children[0]
  340. switch n.nType {
  341. case param:
  342. // find param end (either '/' or path end)
  343. end := 0
  344. for end < len(path) && path[end] != '/' {
  345. end++
  346. }
  347. // save param value
  348. if cap(p) < int(n.maxParams) {
  349. p = make(Params, 0, n.maxParams)
  350. }
  351. i := len(p)
  352. p = p[:i+1] // expand slice within preallocated capacity
  353. p[i].Key = n.path[1:]
  354. val := path[:end]
  355. if unescape {
  356. var err error
  357. if p[i].Value, err = url.QueryUnescape(val); err != nil {
  358. p[i].Value = val // fallback, in case of error
  359. }
  360. } else {
  361. p[i].Value = val
  362. }
  363. // we need to go deeper!
  364. if end < len(path) {
  365. if len(n.children) > 0 {
  366. path = path[end:]
  367. n = n.children[0]
  368. continue walk
  369. }
  370. // ... but we can't
  371. tsr = (len(path) == end+1)
  372. return
  373. }
  374. if handlers = n.handlers; handlers != nil {
  375. return
  376. } else if len(n.children) == 1 {
  377. // No handle found. Check if a handle for this path + a
  378. // trailing slash exists for TSR recommendation
  379. n = n.children[0]
  380. tsr = (n.path == "/" && n.handlers != nil)
  381. }
  382. return
  383. case catchAll:
  384. // save param value
  385. if cap(p) < int(n.maxParams) {
  386. p = make(Params, 0, n.maxParams)
  387. }
  388. i := len(p)
  389. p = p[:i+1] // expand slice within preallocated capacity
  390. p[i].Key = n.path[2:]
  391. if unescape {
  392. var err error
  393. if p[i].Value, err = url.QueryUnescape(path); err != nil {
  394. p[i].Value = path // fallback, in case of error
  395. }
  396. } else {
  397. p[i].Value = path
  398. }
  399. handlers = n.handlers
  400. return
  401. default:
  402. panic("invalid node type")
  403. }
  404. }
  405. } else if path == n.path {
  406. // We should have reached the node containing the handle.
  407. // Check if this node has a handle registered.
  408. if handlers = n.handlers; handlers != nil {
  409. return
  410. }
  411. if path == "/" && n.wildChild && n.nType != root {
  412. tsr = true
  413. return
  414. }
  415. // No handle found. Check if a handle for this path + a
  416. // trailing slash exists for trailing slash recommendation
  417. for i := 0; i < len(n.indices); i++ {
  418. if n.indices[i] == '/' {
  419. n = n.children[i]
  420. tsr = (len(n.path) == 1 && n.handlers != nil) ||
  421. (n.nType == catchAll && n.children[0].handlers != nil)
  422. return
  423. }
  424. }
  425. return
  426. }
  427. // Nothing found. We can recommend to redirect to the same URL with an
  428. // extra trailing slash if a leaf exists for that path
  429. tsr = (path == "/") ||
  430. (len(n.path) == len(path)+1 && n.path[len(path)] == '/' &&
  431. path == n.path[:len(n.path)-1] && n.handlers != nil)
  432. return
  433. }
  434. }
  435. // Makes a case-insensitive lookup of the given path and tries to find a handler.
  436. // It can optionally also fix trailing slashes.
  437. // It returns the case-corrected path and a bool indicating whether the lookup
  438. // was successful.
  439. func (n *node) findCaseInsensitivePath(path string, fixTrailingSlash bool) (ciPath []byte, found bool) {
  440. ciPath = make([]byte, 0, len(path)+1) // preallocate enough memory
  441. // Outer loop for walking the tree
  442. for len(path) >= len(n.path) && strings.ToLower(path[:len(n.path)]) == strings.ToLower(n.path) {
  443. path = path[len(n.path):]
  444. ciPath = append(ciPath, n.path...)
  445. if len(path) > 0 {
  446. // If this node does not have a wildcard (param or catchAll) child,
  447. // we can just look up the next child node and continue to walk down
  448. // the tree
  449. if !n.wildChild {
  450. r := unicode.ToLower(rune(path[0]))
  451. for i, index := range n.indices {
  452. // must use recursive approach since both index and
  453. // ToLower(index) could exist. We must check both.
  454. if r == unicode.ToLower(index) {
  455. out, found := n.children[i].findCaseInsensitivePath(path, fixTrailingSlash)
  456. if found {
  457. return append(ciPath, out...), true
  458. }
  459. }
  460. }
  461. // Nothing found. We can recommend to redirect to the same URL
  462. // without a trailing slash if a leaf exists for that path
  463. found = (fixTrailingSlash && path == "/" && n.handlers != nil)
  464. return
  465. }
  466. n = n.children[0]
  467. switch n.nType {
  468. case param:
  469. // find param end (either '/' or path end)
  470. k := 0
  471. for k < len(path) && path[k] != '/' {
  472. k++
  473. }
  474. // add param value to case insensitive path
  475. ciPath = append(ciPath, path[:k]...)
  476. // we need to go deeper!
  477. if k < len(path) {
  478. if len(n.children) > 0 {
  479. path = path[k:]
  480. n = n.children[0]
  481. continue
  482. }
  483. // ... but we can't
  484. if fixTrailingSlash && len(path) == k+1 {
  485. return ciPath, true
  486. }
  487. return
  488. }
  489. if n.handlers != nil {
  490. return ciPath, true
  491. } else if fixTrailingSlash && len(n.children) == 1 {
  492. // No handle found. Check if a handle for this path + a
  493. // trailing slash exists
  494. n = n.children[0]
  495. if n.path == "/" && n.handlers != nil {
  496. return append(ciPath, '/'), true
  497. }
  498. }
  499. return
  500. case catchAll:
  501. return append(ciPath, path...), true
  502. default:
  503. panic("invalid node type")
  504. }
  505. } else {
  506. // We should have reached the node containing the handle.
  507. // Check if this node has a handle registered.
  508. if n.handlers != nil {
  509. return ciPath, true
  510. }
  511. // No handle found.
  512. // Try to fix the path by adding a trailing slash
  513. if fixTrailingSlash {
  514. for i := 0; i < len(n.indices); i++ {
  515. if n.indices[i] == '/' {
  516. n = n.children[i]
  517. if (len(n.path) == 1 && n.handlers != nil) ||
  518. (n.nType == catchAll && n.children[0].handlers != nil) {
  519. return append(ciPath, '/'), true
  520. }
  521. return
  522. }
  523. }
  524. }
  525. return
  526. }
  527. }
  528. // Nothing found.
  529. // Try to fix the path by adding / removing a trailing slash
  530. if fixTrailingSlash {
  531. if path == "/" {
  532. return ciPath, true
  533. }
  534. if len(path)+1 == len(n.path) && n.path[len(path)] == '/' &&
  535. strings.ToLower(path) == strings.ToLower(n.path[:len(path)]) &&
  536. n.handlers != nil {
  537. return append(ciPath, n.path...), true
  538. }
  539. }
  540. return
  541. }