gin.go 13 KB

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  1. package gin
  2. import (
  3. "bytes"
  4. "encoding/json"
  5. "encoding/xml"
  6. "errors"
  7. "fmt"
  8. "github.com/julienschmidt/httprouter"
  9. "html/template"
  10. "log"
  11. "math"
  12. "net/http"
  13. "path"
  14. )
  15. const (
  16. AbortIndex = math.MaxInt8 / 2
  17. )
  18. type (
  19. HandlerFunc func(*Context)
  20. H map[string]interface{}
  21. // Used internally to collect errors that occurred during an http request.
  22. ErrorMsg struct {
  23. Err string `json:"error"`
  24. Meta interface{} `json:"meta"`
  25. }
  26. ErrorMsgs []ErrorMsg
  27. Config struct {
  28. CacheSize int
  29. Preallocated int
  30. }
  31. // Context is the most important part of gin. It allows us to pass variables between middleware,
  32. // manage the flow, validate the JSON of a request and render a JSON response for example.
  33. Context struct {
  34. Req *http.Request
  35. Writer ResponseWriter
  36. Keys map[string]interface{}
  37. Errors ErrorMsgs
  38. Params httprouter.Params
  39. Engine *Engine
  40. handlers []HandlerFunc
  41. index int8
  42. }
  43. // Used internally to configure router, a RouterGroup is associated with a prefix
  44. // and an array of handlers (middlewares)
  45. RouterGroup struct {
  46. Handlers []HandlerFunc
  47. prefix string
  48. parent *RouterGroup
  49. engine *Engine
  50. }
  51. // Represents the web framework, it wraps the blazing fast httprouter multiplexer and a list of global middlewares.
  52. Engine struct {
  53. *RouterGroup
  54. HTMLTemplates *template.Template
  55. cache chan *Context
  56. handlers404 []HandlerFunc
  57. router *httprouter.Router
  58. }
  59. )
  60. func (a ErrorMsgs) String() string {
  61. var buffer bytes.Buffer
  62. for i, msg := range a {
  63. text := fmt.Sprintf("Error #%02d: %s \n Meta: %v\n\n", (i + 1), msg.Err, msg.Meta)
  64. buffer.WriteString(text)
  65. }
  66. return buffer.String()
  67. }
  68. func NewWithConfig(config Config) *Engine {
  69. if config.CacheSize < 2 {
  70. panic("CacheSize must be at least 2")
  71. }
  72. if config.Preallocated > config.CacheSize {
  73. panic("Preallocated must be less or equal to CacheSize")
  74. }
  75. engine := &Engine{}
  76. engine.RouterGroup = &RouterGroup{nil, "/", nil, engine}
  77. engine.router = httprouter.New()
  78. engine.router.NotFound = engine.handle404
  79. engine.cache = make(chan *Context, config.CacheSize)
  80. // Fill it with empty contexts
  81. for i := 0; i < config.Preallocated; i++ {
  82. engine.cache <- &Context{Engine: engine, Writer: &responseWriter{}}
  83. }
  84. return engine
  85. }
  86. // Returns a new blank Engine instance without any middleware attached.
  87. // The most basic configuration
  88. func New() *Engine {
  89. return NewWithConfig(Config{
  90. CacheSize: 1024,
  91. Preallocated: 512,
  92. })
  93. }
  94. // Returns a Engine instance with the Logger and Recovery already attached.
  95. func Default() *Engine {
  96. engine := New()
  97. engine.Use(Recovery(), Logger())
  98. return engine
  99. }
  100. func (engine *Engine) LoadHTMLTemplates(pattern string) {
  101. engine.HTMLTemplates = template.Must(template.ParseGlob(pattern))
  102. }
  103. // Adds handlers for NotFound. It return a 404 code by default.
  104. func (engine *Engine) NotFound404(handlers ...HandlerFunc) {
  105. engine.handlers404 = handlers
  106. }
  107. func (engine *Engine) CacheStress() float32 {
  108. return 1.0 - float32(len(engine.cache))/float32(cap(engine.cache))
  109. }
  110. func (engine *Engine) handle404(w http.ResponseWriter, req *http.Request) {
  111. handlers := engine.combineHandlers(engine.handlers404)
  112. c := engine.createContext(w, req, nil, handlers)
  113. if engine.handlers404 == nil {
  114. http.NotFound(c.Writer, c.Req)
  115. } else {
  116. c.Writer.WriteHeader(404)
  117. }
  118. c.Next()
  119. engine.reuseContext(c)
  120. }
  121. // ServeFiles serves files from the given file system root.
  122. // The path must end with "/*filepath", files are then served from the local
  123. // path /defined/root/dir/*filepath.
  124. // For example if root is "/etc" and *filepath is "passwd", the local file
  125. // "/etc/passwd" would be served.
  126. // Internally a http.FileServer is used, therefore http.NotFound is used instead
  127. // of the Router's NotFound handler.
  128. // To use the operating system's file system implementation,
  129. // use http.Dir:
  130. // router.ServeFiles("/src/*filepath", http.Dir("/var/www"))
  131. func (engine *Engine) ServeFiles(path string, root http.FileSystem) {
  132. engine.router.ServeFiles(path, root)
  133. }
  134. // ServeHTTP makes the router implement the http.Handler interface.
  135. func (engine *Engine) ServeHTTP(w http.ResponseWriter, req *http.Request) {
  136. engine.router.ServeHTTP(w, req)
  137. }
  138. func (engine *Engine) Run(addr string) {
  139. if err := http.ListenAndServe(addr, engine); err != nil {
  140. panic(err)
  141. }
  142. }
  143. /************************************/
  144. /********** ROUTES GROUPING *********/
  145. /************************************/
  146. func (engine *Engine) createContext(w http.ResponseWriter, req *http.Request, params httprouter.Params, handlers []HandlerFunc) *Context {
  147. select {
  148. case c := <-engine.cache:
  149. c.Writer.reset(w)
  150. c.Req = req
  151. c.Params = params
  152. c.handlers = handlers
  153. c.Keys = nil
  154. c.index = -1
  155. return c
  156. default:
  157. return &Context{
  158. Writer: &responseWriter{w, -1, false},
  159. Req: req,
  160. Params: params,
  161. handlers: handlers,
  162. index: -1,
  163. Engine: engine,
  164. }
  165. }
  166. }
  167. func (engine *Engine) reuseContext(c *Context) {
  168. select {
  169. case engine.cache <- c:
  170. default:
  171. }
  172. }
  173. // Adds middlewares to the group, see example code in github.
  174. func (group *RouterGroup) Use(middlewares ...HandlerFunc) {
  175. group.Handlers = append(group.Handlers, middlewares...)
  176. }
  177. // Creates a new router group. You should add all the routes that have common middlwares or the same path prefix.
  178. // For example, all the routes that use a common middlware for authorization could be grouped.
  179. func (group *RouterGroup) Group(component string, handlers ...HandlerFunc) *RouterGroup {
  180. prefix := path.Join(group.prefix, component)
  181. return &RouterGroup{
  182. Handlers: group.combineHandlers(handlers),
  183. parent: group,
  184. prefix: prefix,
  185. engine: group.engine,
  186. }
  187. }
  188. // Handle registers a new request handle and middlewares with the given path and method.
  189. // The last handler should be the real handler, the other ones should be middlewares that can and should be shared among different routes.
  190. // See the example code in github.
  191. //
  192. // For GET, POST, PUT, PATCH and DELETE requests the respective shortcut
  193. // functions can be used.
  194. //
  195. // This function is intended for bulk loading and to allow the usage of less
  196. // frequently used, non-standardized or custom methods (e.g. for internal
  197. // communication with a proxy).
  198. func (group *RouterGroup) Handle(method, p string, handlers []HandlerFunc) {
  199. p = path.Join(group.prefix, p)
  200. handlers = group.combineHandlers(handlers)
  201. group.engine.router.Handle(method, p, func(w http.ResponseWriter, req *http.Request, params httprouter.Params) {
  202. c := group.engine.createContext(w, req, params, handlers)
  203. c.Next()
  204. group.engine.reuseContext(c)
  205. })
  206. }
  207. // POST is a shortcut for router.Handle("POST", path, handle)
  208. func (group *RouterGroup) POST(path string, handlers ...HandlerFunc) {
  209. group.Handle("POST", path, handlers)
  210. }
  211. // GET is a shortcut for router.Handle("GET", path, handle)
  212. func (group *RouterGroup) GET(path string, handlers ...HandlerFunc) {
  213. group.Handle("GET", path, handlers)
  214. }
  215. // DELETE is a shortcut for router.Handle("DELETE", path, handle)
  216. func (group *RouterGroup) DELETE(path string, handlers ...HandlerFunc) {
  217. group.Handle("DELETE", path, handlers)
  218. }
  219. // PATCH is a shortcut for router.Handle("PATCH", path, handle)
  220. func (group *RouterGroup) PATCH(path string, handlers ...HandlerFunc) {
  221. group.Handle("PATCH", path, handlers)
  222. }
  223. // PUT is a shortcut for router.Handle("PUT", path, handle)
  224. func (group *RouterGroup) PUT(path string, handlers ...HandlerFunc) {
  225. group.Handle("PUT", path, handlers)
  226. }
  227. // OPTIONS is a shortcut for router.Handle("OPTIONS", path, handle)
  228. func (group *RouterGroup) OPTIONS(path string, handlers ...HandlerFunc) {
  229. group.Handle("OPTIONS", path, handlers)
  230. }
  231. // HEAD is a shortcut for router.Handle("HEAD", path, handle)
  232. func (group *RouterGroup) HEAD(path string, handlers ...HandlerFunc) {
  233. group.Handle("HEAD", path, handlers)
  234. }
  235. func (group *RouterGroup) combineHandlers(handlers []HandlerFunc) []HandlerFunc {
  236. s := len(group.Handlers) + len(handlers)
  237. h := make([]HandlerFunc, 0, s)
  238. h = append(h, group.Handlers...)
  239. h = append(h, handlers...)
  240. return h
  241. }
  242. /************************************/
  243. /****** FLOW AND ERROR MANAGEMENT****/
  244. /************************************/
  245. func (c *Context) Copy() *Context {
  246. var cp Context = *c
  247. cp.index = AbortIndex
  248. cp.handlers = nil
  249. return &cp
  250. }
  251. // Next should be used only in the middlewares.
  252. // It executes the pending handlers in the chain inside the calling handler.
  253. // See example in github.
  254. func (c *Context) Next() {
  255. c.index++
  256. s := int8(len(c.handlers))
  257. for ; c.index < s; c.index++ {
  258. c.handlers[c.index](c)
  259. }
  260. }
  261. // Forces the system to do not continue calling the pending handlers.
  262. // For example, the first handler checks if the request is authorized. If it's not, context.Abort(401) should be called.
  263. // The rest of pending handlers would never be called for that request.
  264. func (c *Context) Abort(code int) {
  265. c.Writer.WriteHeader(code)
  266. c.index = AbortIndex
  267. }
  268. // Fail is the same as Abort plus an error message.
  269. // Calling `context.Fail(500, err)` is equivalent to:
  270. // ```
  271. // context.Error("Operation aborted", err)
  272. // context.Abort(500)
  273. // ```
  274. func (c *Context) Fail(code int, err error) {
  275. c.Error(err, "Operation aborted")
  276. c.Abort(code)
  277. }
  278. // Attaches an error to the current context. The error is pushed to a list of errors.
  279. // It's a good idea to call Error for each error that occurred during the resolution of a request.
  280. // A middleware can be used to collect all the errors and push them to a database together, print a log, or append it in the HTTP response.
  281. func (c *Context) Error(err error, meta interface{}) {
  282. c.Errors = append(c.Errors, ErrorMsg{
  283. Err: err.Error(),
  284. Meta: meta,
  285. })
  286. }
  287. func (c *Context) LastError() error {
  288. s := len(c.Errors)
  289. if s > 0 {
  290. return errors.New(c.Errors[s-1].Err)
  291. } else {
  292. return nil
  293. }
  294. }
  295. /************************************/
  296. /******** METADATA MANAGEMENT********/
  297. /************************************/
  298. // Sets a new pair key/value just for the specified context.
  299. // It also lazy initializes the hashmap.
  300. func (c *Context) Set(key string, item interface{}) {
  301. if c.Keys == nil {
  302. c.Keys = make(map[string]interface{})
  303. }
  304. c.Keys[key] = item
  305. }
  306. // Returns the value for the given key.
  307. // It panics if the value doesn't exist.
  308. func (c *Context) Get(key string) interface{} {
  309. var ok bool
  310. var item interface{}
  311. if c.Keys != nil {
  312. item, ok = c.Keys[key]
  313. } else {
  314. item, ok = nil, false
  315. }
  316. if !ok || item == nil {
  317. log.Panicf("Key %s doesn't exist", key)
  318. }
  319. return item
  320. }
  321. /************************************/
  322. /******** ENCOGING MANAGEMENT********/
  323. /************************************/
  324. // Like ParseBody() but this method also writes a 400 error if the json is not valid.
  325. func (c *Context) EnsureBody(item interface{}) bool {
  326. if err := c.ParseBody(item); err != nil {
  327. c.Fail(400, err)
  328. return false
  329. }
  330. return true
  331. }
  332. // Parses the body content as a JSON input. It decodes the json payload into the struct specified as a pointer.
  333. func (c *Context) ParseBody(item interface{}) error {
  334. decoder := json.NewDecoder(c.Req.Body)
  335. if err := decoder.Decode(&item); err == nil {
  336. return Validate(c, item)
  337. } else {
  338. return err
  339. }
  340. }
  341. // Serializes the given struct as JSON into the response body in a fast and efficient way.
  342. // It also sets the Content-Type as "application/json".
  343. func (c *Context) JSON(code int, obj interface{}) {
  344. c.Writer.Header().Set("Content-Type", "application/json")
  345. if code >= 0 {
  346. c.Writer.WriteHeader(code)
  347. }
  348. encoder := json.NewEncoder(c.Writer)
  349. if err := encoder.Encode(obj); err != nil {
  350. c.Error(err, obj)
  351. http.Error(c.Writer, err.Error(), 500)
  352. }
  353. }
  354. // Serializes the given struct as XML into the response body in a fast and efficient way.
  355. // It also sets the Content-Type as "application/xml".
  356. func (c *Context) XML(code int, obj interface{}) {
  357. c.Writer.Header().Set("Content-Type", "application/xml")
  358. if code >= 0 {
  359. c.Writer.WriteHeader(code)
  360. }
  361. encoder := xml.NewEncoder(c.Writer)
  362. if err := encoder.Encode(obj); err != nil {
  363. c.Error(err, obj)
  364. http.Error(c.Writer, err.Error(), 500)
  365. }
  366. }
  367. // Renders the HTTP template specified by its file name.
  368. // It also updates the HTTP code and sets the Content-Type as "text/html".
  369. // See http://golang.org/doc/articles/wiki/
  370. func (c *Context) HTML(code int, name string, data interface{}) {
  371. c.Writer.Header().Set("Content-Type", "text/html")
  372. if code >= 0 {
  373. c.Writer.WriteHeader(code)
  374. }
  375. if err := c.Engine.HTMLTemplates.ExecuteTemplate(c.Writer, name, data); err != nil {
  376. c.Error(err, map[string]interface{}{
  377. "name": name,
  378. "data": data,
  379. })
  380. http.Error(c.Writer, err.Error(), 500)
  381. }
  382. }
  383. // Writes the given string into the response body and sets the Content-Type to "text/plain".
  384. func (c *Context) String(code int, msg string) {
  385. if code >= 0 {
  386. c.Writer.WriteHeader(code)
  387. }
  388. c.Writer.Header().Set("Content-Type", "text/plain")
  389. c.Writer.Write([]byte(msg))
  390. }
  391. // Writes some data into the body stream and updates the HTTP code.
  392. func (c *Context) Data(code int, data []byte) {
  393. c.Writer.WriteHeader(code)
  394. c.Writer.Write(data)
  395. }