forked from kataras/iris
-
Notifications
You must be signed in to change notification settings - Fork 0
/
iris.go
1127 lines (1014 loc) · 40.5 KB
/
iris.go
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633
634
635
636
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
688
689
690
691
692
693
694
695
696
697
698
699
700
701
702
703
704
705
706
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
727
728
729
730
731
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
805
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
824
825
826
827
828
829
830
831
832
833
834
835
836
837
838
839
840
841
842
843
844
845
846
847
848
849
850
851
852
853
854
855
856
857
858
859
860
861
862
863
864
865
866
867
868
869
870
871
872
873
874
875
876
877
878
879
880
881
882
883
884
885
886
887
888
889
890
891
892
893
894
895
896
897
898
899
900
901
902
903
904
905
906
907
908
909
910
911
912
913
914
915
916
917
918
919
920
921
922
923
924
925
926
927
928
929
930
931
932
933
934
935
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
957
958
959
960
961
962
963
964
965
966
967
968
969
970
971
972
973
974
975
976
977
978
979
980
981
982
983
984
985
986
987
988
989
990
991
992
993
994
995
996
997
998
999
1000
package iris
import (
// std packages
"bytes"
stdContext "context"
"errors"
"fmt"
"io"
"log"
"net"
"net/http"
"os"
"path/filepath"
"strings"
"sync"
"time"
// context for the handlers
"github.com/kataras/iris/v12/context"
// core packages, required to build the application
"github.com/kataras/iris/v12/core/errgroup"
"github.com/kataras/iris/v12/core/host"
"github.com/kataras/iris/v12/core/netutil"
"github.com/kataras/iris/v12/core/router"
// handlerconv conversions
"github.com/kataras/iris/v12/core/handlerconv"
// cache conversions
"github.com/kataras/iris/v12/cache"
// view
"github.com/kataras/iris/v12/view"
// i18n
"github.com/kataras/iris/v12/i18n"
// handlers used in `Default` function
requestLogger "github.com/kataras/iris/v12/middleware/logger"
"github.com/kataras/iris/v12/middleware/recover"
"github.com/kataras/golog"
"gopkg.in/yaml.v3"
)
// Version is the current version number of the Iris Web Framework.
const Version = "12.1.8"
// HTTP status codes as registered with IANA.
// See: http://www.iana.org/assignments/http-status-codes/http-status-codes.xhtml.
// Raw Copy from the future(tip) net/http std package in order to recude the import path of "net/http" for the users.
const (
StatusContinue = 100 // RFC 7231, 6.2.1
StatusSwitchingProtocols = 101 // RFC 7231, 6.2.2
StatusProcessing = 102 // RFC 2518, 10.1
StatusEarlyHints = 103 // RFC 8297
StatusOK = 200 // RFC 7231, 6.3.1
StatusCreated = 201 // RFC 7231, 6.3.2
StatusAccepted = 202 // RFC 7231, 6.3.3
StatusNonAuthoritativeInfo = 203 // RFC 7231, 6.3.4
StatusNoContent = 204 // RFC 7231, 6.3.5
StatusResetContent = 205 // RFC 7231, 6.3.6
StatusPartialContent = 206 // RFC 7233, 4.1
StatusMultiStatus = 207 // RFC 4918, 11.1
StatusAlreadyReported = 208 // RFC 5842, 7.1
StatusIMUsed = 226 // RFC 3229, 10.4.1
StatusMultipleChoices = 300 // RFC 7231, 6.4.1
StatusMovedPermanently = 301 // RFC 7231, 6.4.2
StatusFound = 302 // RFC 7231, 6.4.3
StatusSeeOther = 303 // RFC 7231, 6.4.4
StatusNotModified = 304 // RFC 7232, 4.1
StatusUseProxy = 305 // RFC 7231, 6.4.5
StatusTemporaryRedirect = 307 // RFC 7231, 6.4.7
StatusPermanentRedirect = 308 // RFC 7538, 3
StatusBadRequest = 400 // RFC 7231, 6.5.1
StatusUnauthorized = 401 // RFC 7235, 3.1
StatusPaymentRequired = 402 // RFC 7231, 6.5.2
StatusForbidden = 403 // RFC 7231, 6.5.3
StatusNotFound = 404 // RFC 7231, 6.5.4
StatusMethodNotAllowed = 405 // RFC 7231, 6.5.5
StatusNotAcceptable = 406 // RFC 7231, 6.5.6
StatusProxyAuthRequired = 407 // RFC 7235, 3.2
StatusRequestTimeout = 408 // RFC 7231, 6.5.7
StatusConflict = 409 // RFC 7231, 6.5.8
StatusGone = 410 // RFC 7231, 6.5.9
StatusLengthRequired = 411 // RFC 7231, 6.5.10
StatusPreconditionFailed = 412 // RFC 7232, 4.2
StatusRequestEntityTooLarge = 413 // RFC 7231, 6.5.11
StatusRequestURITooLong = 414 // RFC 7231, 6.5.12
StatusUnsupportedMediaType = 415 // RFC 7231, 6.5.13
StatusRequestedRangeNotSatisfiable = 416 // RFC 7233, 4.4
StatusExpectationFailed = 417 // RFC 7231, 6.5.14
StatusTeapot = 418 // RFC 7168, 2.3.3
StatusMisdirectedRequest = 421 // RFC 7540, 9.1.2
StatusUnprocessableEntity = 422 // RFC 4918, 11.2
StatusLocked = 423 // RFC 4918, 11.3
StatusFailedDependency = 424 // RFC 4918, 11.4
StatusTooEarly = 425 // RFC 8470, 5.2.
StatusUpgradeRequired = 426 // RFC 7231, 6.5.15
StatusPreconditionRequired = 428 // RFC 6585, 3
StatusTooManyRequests = 429 // RFC 6585, 4
StatusRequestHeaderFieldsTooLarge = 431 // RFC 6585, 5
StatusUnavailableForLegalReasons = 451 // RFC 7725, 3
StatusInternalServerError = 500 // RFC 7231, 6.6.1
StatusNotImplemented = 501 // RFC 7231, 6.6.2
StatusBadGateway = 502 // RFC 7231, 6.6.3
StatusServiceUnavailable = 503 // RFC 7231, 6.6.4
StatusGatewayTimeout = 504 // RFC 7231, 6.6.5
StatusHTTPVersionNotSupported = 505 // RFC 7231, 6.6.6
StatusVariantAlsoNegotiates = 506 // RFC 2295, 8.1
StatusInsufficientStorage = 507 // RFC 4918, 11.5
StatusLoopDetected = 508 // RFC 5842, 7.2
StatusNotExtended = 510 // RFC 2774, 7
StatusNetworkAuthenticationRequired = 511 // RFC 6585, 6
)
// HTTP Methods copied from `net/http`.
const (
MethodGet = "GET"
MethodPost = "POST"
MethodPut = "PUT"
MethodDelete = "DELETE"
MethodConnect = "CONNECT"
MethodHead = "HEAD"
MethodPatch = "PATCH"
MethodOptions = "OPTIONS"
MethodTrace = "TRACE"
)
// MethodNone is an iris-specific "virtual" method
// to store the "offline" routes.
const MethodNone = "NONE"
// Application is responsible to manage the state of the application.
// It contains and handles all the necessary parts to create a fast web server.
type Application struct {
// routing embedded | exposing APIBuilder's and Router's public API.
*router.APIBuilder
*router.Router
ContextPool *context.Pool
// config contains the configuration fields
// all fields defaults to something that is working, developers don't have to set it.
config *Configuration
// the golog logger instance, defaults to "Info" level messages (all except "Debug")
logger *golog.Logger
// I18n contains localization and internationalization support.
// Use the `Load` or `LoadAssets` to locale language files.
//
// See `Context#Tr` method for request-based translations.
I18n *i18n.I18n
// view engine
view view.View
// used for build
builded bool
defaultMode bool
mu sync.Mutex
// Hosts contains a list of all servers (Host Supervisors) that this app is running on.
//
// Hosts may be empty only if application ran(`app.Run`) with `iris.Raw` option runner,
// otherwise it contains a single host (`app.Hosts[0]`).
//
// Additional Host Supervisors can be added to that list by calling the `app.NewHost` manually.
//
// Hosts field is available after `Run` or `NewHost`.
Hosts []*host.Supervisor
hostConfigurators []host.Configurator
}
// New creates and returns a fresh empty iris *Application instance.
func New() *Application {
config := DefaultConfiguration()
app := &Application{
config: &config,
logger: golog.Default,
I18n: i18n.New(),
APIBuilder: router.NewAPIBuilder(),
Router: router.NewRouter(),
}
app.ContextPool = context.New(func() context.Context {
return context.NewContext(app)
})
return app
}
// Default returns a new Application instance which on build state registers
// html view engine on "./views" and load locales from "./locales/*/*".
// The return instance recovers on panics and logs the incoming http requests too.
func Default() *Application {
app := New()
app.Use(recover.New())
app.Use(requestLogger.New())
app.defaultMode = true
return app
}
// WWW creates and returns a "www." subdomain.
// The difference from `app.Subdomain("www")` or `app.Party("www.")` is that the `app.WWW()` method
// wraps the router so all http(s)://mydomain.com will be redirect to http(s)://www.mydomain.com.
// Other subdomains can be registered using the app: `sub := app.Subdomain("mysubdomain")`,
// child subdomains can be registered using the www := app.WWW(); www.Subdomain("wwwchildSubdomain").
func (app *Application) WWW() router.Party {
return app.SubdomainRedirect(app, app.Subdomain("www"))
}
// SubdomainRedirect registers a router wrapper which
// redirects(StatusMovedPermanently) a (sub)domain to another subdomain or to the root domain as fast as possible,
// before the router's try to execute route's handler(s).
//
// It receives two arguments, they are the from and to/target locations,
// 'from' can be a wildcard subdomain as well (app.WildcardSubdomain())
// 'to' is not allowed to be a wildcard for obvious reasons,
// 'from' can be the root domain(app) when the 'to' is not the root domain and visa-versa.
//
// Usage:
// www := app.Subdomain("www") <- same as app.Party("www.")
// app.SubdomainRedirect(app, www)
// This will redirect all http(s)://mydomain.com/%anypath% to http(s)://www.mydomain.com/%anypath%.
//
// One or more subdomain redirects can be used to the same app instance.
//
// If you need more information about this implementation then you have to navigate through
// the `core/router#NewSubdomainRedirectWrapper` function instead.
//
// Example: https://github.com/kataras/iris/tree/master/_examples/subdomains/redirect
func (app *Application) SubdomainRedirect(from, to router.Party) router.Party {
sd := router.NewSubdomainRedirectWrapper(app.ConfigurationReadOnly().GetVHost, from.GetRelPath(), to.GetRelPath())
app.WrapRouter(sd)
return to
}
// Configure can called when modifications to the framework instance needed.
// It accepts the framework instance
// and returns an error which if it's not nil it's printed to the logger.
// See configuration.go for more.
//
// Returns itself in order to be used like `app:= New().Configure(...)`
func (app *Application) Configure(configurators ...Configurator) *Application {
for _, cfg := range configurators {
if cfg != nil {
cfg(app)
}
}
return app
}
// ConfigurationReadOnly returns an object which doesn't allow field writing.
func (app *Application) ConfigurationReadOnly() context.ConfigurationReadOnly {
return app.config
}
// Logger returns the golog logger instance(pointer) that is being used inside the "app".
//
// Available levels:
// - "disable"
// - "fatal"
// - "error"
// - "warn"
// - "info"
// - "debug"
// Usage: app.Logger().SetLevel("error")
// Defaults to "info" level.
//
// Callers can use the application's logger which is
// the same `golog.Default` logger,
// to print custom logs too.
// Usage:
// app.Logger().Error/Errorf("...")
// app.Logger().Warn/Warnf("...")
// app.Logger().Info/Infof("...")
// app.Logger().Debug/Debugf("...")
//
// Setting one or more outputs: app.Logger().SetOutput(io.Writer...)
// Adding one or more outputs : app.Logger().AddOutput(io.Writer...)
//
// Adding custom levels requires import of the `github.com/kataras/golog` package:
// First we create our level to a golog.Level
// in order to be used in the Log functions.
// var SuccessLevel golog.Level = 6
// Register our level, just three fields.
// golog.Levels[SuccessLevel] = &golog.LevelMetadata{
// Name: "success",
// RawText: "[SUCC]",
// // ColorfulText (Green Color[SUCC])
// ColorfulText: "\x1b[32m[SUCC]\x1b[0m",
// }
// Usage:
// app.Logger().SetLevel("success")
// app.Logger().Logf(SuccessLevel, "a custom leveled log message")
func (app *Application) Logger() *golog.Logger {
return app.logger
}
// I18nReadOnly returns the i18n's read-only features.
// See `I18n` method for more.
func (app *Application) I18nReadOnly() context.I18nReadOnly {
return app.I18n
}
var (
// HTML view engine.
// Shortcut of the kataras/iris/view.HTML.
HTML = view.HTML
// Django view engine.
// Shortcut of the kataras/iris/view.Django.
Django = view.Django
// Handlebars view engine.
// Shortcut of the kataras/iris/view.Handlebars.
Handlebars = view.Handlebars
// Pug view engine.
// Shortcut of the kataras/iris/view.Pug.
Pug = view.Pug
// Amber view engine.
// Shortcut of the kataras/iris/view.Amber.
Amber = view.Amber
// Jet view engine.
// Shortcut of the kataras/iris/view.Jet.
Jet = view.Jet
)
// NoLayout to disable layout for a particular template file
// A shortcut for the `view#NoLayout`.
const NoLayout = view.NoLayout
// RegisterView should be used to register view engines mapping to a root directory
// and the template file(s) extension.
func (app *Application) RegisterView(viewEngine view.Engine) {
app.view.Register(viewEngine)
}
// View executes and writes the result of a template file to the writer.
//
// First parameter is the writer to write the parsed template.
// Second parameter is the relative, to templates directory, template filename, including extension.
// Third parameter is the layout, can be empty string.
// Forth parameter is the bindable data to the template, can be nil.
//
// Use context.View to render templates to the client instead.
// Returns an error on failure, otherwise nil.
func (app *Application) View(writer io.Writer, filename string, layout string, bindingData interface{}) error {
if app.view.Len() == 0 {
err := errors.New("view engine is missing, use `RegisterView`")
app.Logger().Error(err)
return err
}
err := app.view.ExecuteWriter(writer, filename, layout, bindingData)
if err != nil {
app.Logger().Error(err)
}
return err
}
var (
// LimitRequestBodySize is a middleware which sets a request body size limit
// for all next handlers in the chain.
//
// A shortcut for the `context#LimitRequestBodySize`.
LimitRequestBodySize = context.LimitRequestBodySize
// NewConditionalHandler returns a single Handler which can be registered
// as a middleware.
// Filter is just a type of Handler which returns a boolean.
// Handlers here should act like middleware, they should contain `ctx.Next` to proceed
// to the next handler of the chain. Those "handlers" are registered to the per-request context.
//
//
// It checks the "filter" and if passed then
// it, correctly, executes the "handlers".
//
// If passed, this function makes sure that the Context's information
// about its per-request handler chain based on the new "handlers" is always updated.
//
// If not passed, then simply the Next handler(if any) is executed and "handlers" are ignored.
// Example can be found at: _examples/routing/conditional-chain.
//
// A shortcut for the `context#NewConditionalHandler`.
NewConditionalHandler = context.NewConditionalHandler
// FileServer returns a Handler which serves files from a specific system, phyisical, directory
// or an embedded one.
// The first parameter is the directory, relative to the executable program.
// The second optional parameter is any optional settings that the caller can use.
//
// See `Party#HandleDir` too.
// Examples can be found at: https://github.com/kataras/iris/tree/master/_examples/file-server
// A shortcut for the `router.FileServer`.
FileServer = router.FileServer
// StripPrefix returns a handler that serves HTTP requests
// by removing the given prefix from the request URL's Path
// and invoking the handler h. StripPrefix handles a
// request for a path that doesn't begin with prefix by
// replying with an HTTP 404 not found error.
//
// Usage:
// fileserver := iris.FileServer("./static_files", DirOptions {...})
// h := iris.StripPrefix("/static", fileserver)
// app.Get("/static/{file:path}", h)
// app.Head("/static/{file:path}", h)
StripPrefix = router.StripPrefix
// Gzip is a middleware which enables writing
// using gzip compression, if client supports.
//
// A shortcut for the `context#Gzip`.
Gzip = context.Gzip
// FromStd converts native http.Handler, http.HandlerFunc & func(w, r, next) to context.Handler.
//
// Supported form types:
// .FromStd(h http.Handler)
// .FromStd(func(w http.ResponseWriter, r *http.Request))
// .FromStd(func(w http.ResponseWriter, r *http.Request, next http.HandlerFunc))
//
// A shortcut for the `handlerconv#FromStd`.
FromStd = handlerconv.FromStd
// Cache is a middleware providing server-side cache functionalities
// to the next handlers, can be used as: `app.Get("/", iris.Cache, aboutHandler)`.
// It should be used after Static methods.
// See `iris#Cache304` for an alternative, faster way.
//
// Examples can be found at: https://github.com/kataras/iris/tree/master/_examples/#caching
Cache = cache.Handler
// NoCache is a middleware which overrides the Cache-Control, Pragma and Expires headers
// in order to disable the cache during the browser's back and forward feature.
//
// A good use of this middleware is on HTML routes; to refresh the page even on "back" and "forward" browser's arrow buttons.
//
// See `iris#StaticCache` for the opposite behavior.
//
// A shortcut of the `cache#NoCache`
NoCache = cache.NoCache
// StaticCache middleware for caching static files by sending the "Cache-Control" and "Expires" headers to the client.
// It accepts a single input parameter, the "cacheDur", a time.Duration that it's used to calculate the expiration.
//
// If "cacheDur" <=0 then it returns the `NoCache` middleware instaed to disable the caching between browser's "back" and "forward" actions.
//
// Usage: `app.Use(iris.StaticCache(24 * time.Hour))` or `app.Use(iris.StaticCache(-1))`.
// A middleware, which is a simple Handler can be called inside another handler as well, example:
// cacheMiddleware := iris.StaticCache(...)
// func(ctx iris.Context){
// cacheMiddleware(ctx)
// [...]
// }
//
// A shortcut of the `cache#StaticCache`
StaticCache = cache.StaticCache
// Cache304 sends a `StatusNotModified` (304) whenever
// the "If-Modified-Since" request header (time) is before the
// time.Now() + expiresEvery (always compared to their UTC values).
// Use this, which is a shortcut of the, `chache#Cache304` instead of the "github.com/kataras/iris/v12/cache" or iris.Cache
// for better performance.
// Clients that are compatible with the http RCF (all browsers are and tools like postman)
// will handle the caching.
// The only disadvantage of using that instead of server-side caching
// is that this method will send a 304 status code instead of 200,
// So, if you use it side by side with other micro services
// you have to check for that status code as well for a valid response.
//
// Developers are free to extend this method's behavior
// by watching system directories changes manually and use of the `ctx.WriteWithExpiration`
// with a "modtime" based on the file modified date,
// similar to the `HandleDir`(which sends status OK(200) and browser disk caching instead of 304).
//
// A shortcut of the `cache#Cache304`.
Cache304 = cache.Cache304
// CookiePath is a `CookieOption`.
// Use it to change the cookie's Path field.
//
// A shortcut for the `context#CookiePath`.
CookiePath = context.CookiePath
// CookieCleanPath is a `CookieOption`.
// Use it to clear the cookie's Path field, exactly the same as `CookiePath("")`.
//
// A shortcut for the `context#CookieCleanPath`.
CookieCleanPath = context.CookieCleanPath
// CookieExpires is a `CookieOption`.
// Use it to change the cookie's Expires and MaxAge fields by passing the lifetime of the cookie.
//
// A shortcut for the `context#CookieExpires`.
CookieExpires = context.CookieExpires
// CookieHTTPOnly is a `CookieOption`.
// Use it to set the cookie's HttpOnly field to false or true.
// HttpOnly field defaults to true for `RemoveCookie` and `SetCookieKV`.
//
// A shortcut for the `context#CookieHTTPOnly`.
CookieHTTPOnly = context.CookieHTTPOnly
// CookieEncode is a `CookieOption`.
// Provides encoding functionality when adding a cookie.
// Accepts a `context#CookieEncoder` and sets the cookie's value to the encoded value.
// Users of that is the `context#SetCookie` and `context#SetCookieKV`.
//
// Example: https://github.com/kataras/iris/tree/master/_examples/cookies/securecookie
//
// A shortcut for the `context#CookieEncode`.
CookieEncode = context.CookieEncode
// CookieDecode is a `CookieOption`.
// Provides decoding functionality when retrieving a cookie.
// Accepts a `context#CookieDecoder` and sets the cookie's value to the decoded value before return by the `GetCookie`.
// User of that is the `context#GetCookie`.
//
// Example: https://github.com/kataras/iris/tree/master/_examples/cookies/securecookie
//
// A shortcut for the `context#CookieDecode`.
CookieDecode = context.CookieDecode
// IsErrPath can be used at `context#ReadForm`.
// It reports whether the incoming error is type of `formbinder.ErrPath`,
// which can be ignored when server allows unknown post values to be sent by the client.
//
// A shortcut for the `context#IsErrPath`.
IsErrPath = context.IsErrPath
// NewProblem returns a new Problem.
// Head over to the `Problem` type godoc for more.
//
// A shortcut for the `context#NewProblem`.
NewProblem = context.NewProblem
// XMLMap wraps a map[string]interface{} to compatible xml marshaler,
// in order to be able to render maps as XML on the `Context.XML` method.
//
// Example: `Context.XML(XMLMap("Root", map[string]interface{}{...})`.
//
// A shortcut for the `context#XMLMap`.
XMLMap = context.XMLMap
)
// Constants for input argument at `router.RouteRegisterRule`.
// See `Party#SetRegisterRule`.
const (
// RouteOverride an existing route with the new one, the default rule.
RouteOverride = router.RouteOverride
// RouteSkip registering a new route twice.
RouteSkip = router.RouteSkip
// RouteError log when a route already exists, shown after the `Build` state,
// server never starts.
RouteError = router.RouteError
)
// Contains the enum values of the `Context.GetReferrer()` method,
// shortcuts of the context subpackage.
const (
ReferrerInvalid = context.ReferrerInvalid
ReferrerIndirect = context.ReferrerIndirect
ReferrerDirect = context.ReferrerDirect
ReferrerEmail = context.ReferrerEmail
ReferrerSearch = context.ReferrerSearch
ReferrerSocial = context.ReferrerSocial
ReferrerNotGoogleSearch = context.ReferrerNotGoogleSearch
ReferrerGoogleOrganicSearch = context.ReferrerGoogleOrganicSearch
ReferrerGoogleAdwords = context.ReferrerGoogleAdwords
)
// ConfigureHost accepts one or more `host#Configuration`, these configurators functions
// can access the host created by `app.Run`,
// they're being executed when application is ready to being served to the public.
//
// It's an alternative way to interact with a host that is automatically created by
// `app.Run`.
//
// These "configurators" can work side-by-side with the `iris#Addr, iris#Server, iris#TLS, iris#AutoTLS, iris#Listener`
// final arguments("hostConfigs") too.
//
// Note that these application's host "configurators" will be shared with the rest of
// the hosts that this app will may create (using `app.NewHost`), meaning that
// `app.NewHost` will execute these "configurators" everytime that is being called as well.
//
// These "configurators" should be registered before the `app.Run` or `host.Serve/Listen` functions.
func (app *Application) ConfigureHost(configurators ...host.Configurator) *Application {
app.mu.Lock()
app.hostConfigurators = append(app.hostConfigurators, configurators...)
app.mu.Unlock()
return app
}
// NewHost accepts a standard *http.Server object,
// completes the necessary missing parts of that "srv"
// and returns a new, ready-to-use, host (supervisor).
func (app *Application) NewHost(srv *http.Server) *host.Supervisor {
app.mu.Lock()
defer app.mu.Unlock()
// set the server's handler to the framework's router
if srv.Handler == nil {
srv.Handler = app.Router
}
// check if different ErrorLog provided, if not bind it with the framework's logger
if srv.ErrorLog == nil {
srv.ErrorLog = log.New(app.logger.Printer.Output, "[HTTP Server] ", 0)
}
if addr := srv.Addr; addr == "" {
addr = ":8080"
if len(app.Hosts) > 0 {
if v := app.Hosts[0].Server.Addr; v != "" {
addr = v
}
}
srv.Addr = addr
}
app.logger.Debugf("Host: addr is %s", srv.Addr)
// create the new host supervisor
// bind the constructed server and return it
su := host.New(srv)
if app.config.vhost == "" { // vhost now is useful for router subdomain on wildcard subdomains,
// in order to correct decide what to do on:
// mydomain.com -> invalid
// localhost -> invalid
// sub.mydomain.com -> valid
// sub.localhost -> valid
// we need the host (without port if 80 or 443) in order to validate these, so:
app.config.vhost = netutil.ResolveVHost(srv.Addr)
}
app.logger.Debugf("Host: virtual host is %s", app.config.vhost)
// the below schedules some tasks that will run among the server
if !app.config.DisableStartupLog {
// show the available info to exit from app.
su.RegisterOnServe(host.WriteStartupLogOnServe(app.logger.Printer.Output)) // app.logger.Writer -> Info
app.logger.Debugf("Host: register startup notifier")
}
if !app.config.DisableInterruptHandler {
// when CTRL+C/CMD+C pressed.
shutdownTimeout := 5 * time.Second
host.RegisterOnInterrupt(host.ShutdownOnInterrupt(su, shutdownTimeout))
app.logger.Debugf("Host: register server shutdown on interrupt(CTRL+C/CMD+C)")
}
su.IgnoredErrors = append(su.IgnoredErrors, app.config.IgnoreServerErrors...)
if len(su.IgnoredErrors) > 0 {
app.logger.Debugf("Host: server will ignore the following errors: %s", su.IgnoredErrors)
}
su.Configure(app.hostConfigurators...)
app.Hosts = append(app.Hosts, su)
return su
}
// RegisterOnInterrupt registers a global function to call when CTRL+C/CMD+C pressed or a unix kill command received.
//
// A shortcut for the `host#RegisterOnInterrupt`.
var RegisterOnInterrupt = host.RegisterOnInterrupt
// Shutdown gracefully terminates all the application's server hosts and any tunnels.
// Returns an error on the first failure, otherwise nil.
func (app *Application) Shutdown(ctx stdContext.Context) error {
for i, su := range app.Hosts {
app.logger.Debugf("Host[%d]: Shutdown now", i)
if err := su.Shutdown(ctx); err != nil {
app.logger.Debugf("Host[%d]: Error while trying to shutdown", i)
return err
}
}
for _, t := range app.config.Tunneling.Tunnels {
if t.Name == "" {
continue
}
if err := app.config.Tunneling.stopTunnel(t); err != nil {
return err
}
}
return nil
}
// Build sets up, once, the framework.
// It builds the default router with its default macros
// and the template functions that are very-closed to iris.
//
// If error occurred while building the Application, the returns type of error will be an *errgroup.Group
// which let the callers to inspect the errors and cause, usage:
//
// import "github.com/kataras/iris/v12/core/errgroup"
//
// errgroup.Walk(app.Build(), func(typ interface{}, err error) {
// app.Logger().Errorf("%s: %s", typ, err)
// })
func (app *Application) Build() error {
rp := errgroup.New("Application Builder")
if !app.builded {
app.builded = true
rp.Err(app.APIBuilder.GetReporter())
if app.defaultMode { // the app.I18n and app.View will be not available until Build.
if !app.I18n.Loaded() {
for _, s := range []string{"./locales/*/*", "./locales/*", "./translations"} {
if _, err := os.Stat(s); os.IsNotExist(err) {
continue
}
if err := app.I18n.Load(s); err != nil {
continue
}
app.I18n.SetDefault("en-US")
break
}
}
if app.view.Len() == 0 {
for _, s := range []string{"./views", "./templates", "./web/views"} {
if _, err := os.Stat(s); os.IsNotExist(err) {
continue
}
app.RegisterView(HTML(s, ".html"))
break
}
}
}
if app.I18n.Loaded() {
// {{ tr "lang" "key" arg1 arg2 }}
app.view.AddFunc("tr", app.I18n.Tr)
app.WrapRouter(app.I18n.Wrapper())
}
if !app.Router.Downgraded() {
// router
if err := app.tryInjectLiveReload(); err != nil {
rp.Errf("LiveReload: init: failed: %v", err)
}
// create the request handler, the default routing handler
routerHandler := router.NewDefaultHandler()
err := app.Router.BuildRouter(app.ContextPool, routerHandler, app.APIBuilder, false)
if err != nil {
rp.Err(err)
}
// re-build of the router from outside can be done with
// app.RefreshRouter()
}
if app.view.Len() > 0 {
app.logger.Debugf("Application: %d registered view engine(s)", app.view.Len())
// view engine
// here is where we declare the closed-relative framework functions.
// Each engine has their defaults, i.e yield,render,render_r,partial, params...
rv := router.NewRoutePathReverser(app.APIBuilder)
app.view.AddFunc("urlpath", rv.Path)
// app.view.AddFunc("url", rv.URL)
if err := app.view.Load(); err != nil {
rp.Group("View Builder").Err(err)
}
}
}
return errgroup.Check(rp)
}
// Runner is just an interface which accepts the framework instance
// and returns an error.
//
// It can be used to register a custom runner with `Run` in order
// to set the framework's server listen action.
//
// Currently `Runner` is being used to declare the builtin server listeners.
//
// See `Run` for more.
type Runner func(*Application) error
// Listener can be used as an argument for the `Run` method.
// It can start a server with a custom net.Listener via server's `Serve`.
//
// Second argument is optional, it accepts one or more
// `func(*host.Configurator)` that are being executed
// on that specific host that this function will create to start the server.
// Via host configurators you can configure the back-end host supervisor,
// i.e to add events for shutdown, serve or error.
// An example of this use case can be found at:
// https://github.com/kataras/iris/blob/master/_examples/http-listening/notify-on-shutdown/main.go
// Look at the `ConfigureHost` too.
//
// See `Run` for more.
func Listener(l net.Listener, hostConfigs ...host.Configurator) Runner {
return func(app *Application) error {
app.config.vhost = netutil.ResolveVHost(l.Addr().String())
return app.NewHost(&http.Server{Addr: l.Addr().String()}).
Configure(hostConfigs...).
Serve(l)
}
}
// Server can be used as an argument for the `Run` method.
// It can start a server with a *http.Server.
//
// Second argument is optional, it accepts one or more
// `func(*host.Configurator)` that are being executed
// on that specific host that this function will create to start the server.
// Via host configurators you can configure the back-end host supervisor,
// i.e to add events for shutdown, serve or error.
// An example of this use case can be found at:
// https://github.com/kataras/iris/blob/master/_examples/http-listening/notify-on-shutdown/main.go
// Look at the `ConfigureHost` too.
//
// See `Run` for more.
func Server(srv *http.Server, hostConfigs ...host.Configurator) Runner {
return func(app *Application) error {
return app.NewHost(srv).
Configure(hostConfigs...).
ListenAndServe()
}
}
// Addr can be used as an argument for the `Run` method.
// It accepts a host address which is used to build a server
// and a listener which listens on that host and port.
//
// Addr should have the form of [host]:port, i.e localhost:8080 or :8080.
//
// Second argument is optional, it accepts one or more
// `func(*host.Configurator)` that are being executed
// on that specific host that this function will create to start the server.
// Via host configurators you can configure the back-end host supervisor,
// i.e to add events for shutdown, serve or error.
// An example of this use case can be found at:
// https://github.com/kataras/iris/blob/master/_examples/http-listening/notify-on-shutdown/main.go
// Look at the `ConfigureHost` too.
//
// See `Run` for more.
func Addr(addr string, hostConfigs ...host.Configurator) Runner {
return func(app *Application) error {
return app.NewHost(&http.Server{Addr: addr}).
Configure(hostConfigs...).
ListenAndServe()
}
}
// TLS can be used as an argument for the `Run` method.
// It will start the Application's secure server.
//
// Use it like you used to use the http.ListenAndServeTLS function.
//
// Addr should have the form of [host]:port, i.e localhost:443 or :443.
// CertFile & KeyFile should be filenames with their extensions.
//
// Second argument is optional, it accepts one or more
// `func(*host.Configurator)` that are being executed
// on that specific host that this function will create to start the server.
// Via host configurators you can configure the back-end host supervisor,
// i.e to add events for shutdown, serve or error.
// An example of this use case can be found at:
// https://github.com/kataras/iris/blob/master/_examples/http-listening/notify-on-shutdown/main.go
// Look at the `ConfigureHost` too.
//
// See `Run` for more.
func TLS(addr string, certFile, keyFile string, hostConfigs ...host.Configurator) Runner {
return func(app *Application) error {
return app.NewHost(&http.Server{Addr: addr}).
Configure(hostConfigs...).
ListenAndServeTLS(certFile, keyFile)
}
}
// AutoTLS can be used as an argument for the `Run` method.
// It will start the Application's secure server using
// certifications created on the fly by the "autocert" golang/x package,
// so localhost may not be working, use it at "production" machine.
//
// Addr should have the form of [host]:port, i.e mydomain.com:443.
//
// The whitelisted domains are separated by whitespace in "domain" argument,
// i.e "iris-go.com", can be different than "addr".
// If empty, all hosts are currently allowed. This is not recommended,
// as it opens a potential attack where clients connect to a server
// by IP address and pretend to be asking for an incorrect host name.
// Manager will attempt to obtain a certificate for that host, incorrectly,
// eventually reaching the CA's rate limit for certificate requests
// and making it impossible to obtain actual certificates.
//
// For an "e-mail" use a non-public one, letsencrypt needs that for your own security.
//
// Note: `AutoTLS` will start a new server for you
// which will redirect all http versions to their https, including subdomains as well.
//
// Last argument is optional, it accepts one or more
// `func(*host.Configurator)` that are being executed
// on that specific host that this function will create to start the server.
// Via host configurators you can configure the back-end host supervisor,
// i.e to add events for shutdown, serve or error.
// An example of this use case can be found at:
// https://github.com/kataras/iris/blob/master/_examples/http-listening/notify-on-shutdown/main.go
// Look at the `ConfigureHost` too.
//
// Usage:
// app.Run(iris.AutoTLS("iris-go.com:443", "iris-go.com www.iris-go.com", "[email protected]"))
//
// See `Run` and `core/host/Supervisor#ListenAndServeAutoTLS` for more.
func AutoTLS(
addr string,
domain string, email string,
hostConfigs ...host.Configurator) Runner {
return func(app *Application) error {
return app.NewHost(&http.Server{Addr: addr}).
Configure(hostConfigs...).
ListenAndServeAutoTLS(domain, email, "letscache")
}
}
// Raw can be used as an argument for the `Run` method.
// It accepts any (listen) function that returns an error,
// this function should be block and return an error
// only when the server exited or a fatal error caused.
//
// With this option you're not limited to the servers
// that iris can run by-default.
//
// See `Run` for more.
func Raw(f func() error) Runner {
return func(app *Application) error {
app.logger.Debugf("HTTP Server will start from unknown, external function")
return f()
}
}
// ErrServerClosed is returned by the Server's Serve, ServeTLS, ListenAndServe,
// and ListenAndServeTLS methods after a call to Shutdown or Close.
//
// A shortcut for the `http#ErrServerClosed`.
var ErrServerClosed = http.ErrServerClosed
// Listen builds the application and starts the server
// on the TCP network address "host:port" which
// handles requests on incoming connections.
//
// Listen always returns a non-nil error.
// Ignore specific errors by using an `iris.WithoutServerError(iris.ErrServerClosed)`
// as a second input argument.
//
// Listen is a shortcut of `app.Run(iris.Addr(hostPort, withOrWithout...))`.
// See `Run` for details.
func (app *Application) Listen(hostPort string, withOrWithout ...Configurator) error {
return app.Run(Addr(hostPort), withOrWithout...)
}
// Run builds the framework and starts the desired `Runner` with or without configuration edits.
//
// Run should be called only once per Application instance, it blocks like http.Server.
//
// If more than one server needed to run on the same iris instance
// then create a new host and run it manually by `go NewHost(*http.Server).Serve/ListenAndServe` etc...
// or use an already created host:
// h := NewHost(*http.Server)
// Run(Raw(h.ListenAndServe), WithCharset("UTF-8"), WithRemoteAddrHeader("CF-Connecting-IP"))
//
// The Application can go online with any type of server or iris's host with the help of
// the following runners:
// `Listener`, `Server`, `Addr`, `TLS`, `AutoTLS` and `Raw`.
func (app *Application) Run(serve Runner, withOrWithout ...Configurator) error {
// first Build because it doesn't need anything from configuration,
// this gives the user the chance to modify the router inside a configurator as well.
if err := app.Build(); err != nil {
app.logger.Error(err)
return err
}
app.Configure(withOrWithout...)
app.tryStartTunneling()
app.logger.Debugf("Application: running using %d host(s)", len(app.Hosts)+1)
// this will block until an error(unless supervisor's DeferFlow called from a Task).
err := serve(app)
if err != nil {
app.Logger().Error(err)
}
return err
}
// tryInjectLiveReload tries to check if this application
// runs under https://github.com/kataras/iris-cli and if so
// then it checks if the livereload is enabled and then injects
// the watch listener (js script) on every HTML response.
// It has a slight performance cost but
// this (iris-cli with watch and livereload enabled)
// is meant to be used only in development mode.
// It does a full reload at the moment and if the port changed
// at runtime it will fire 404 instead of redirecting to the correct port (that's a TODO).
//
// tryInjectLiveReload runs right before Build -> BuildRouter.