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1 /** @file
2 Implementation of EFI_HTTP_PROTOCOL protocol interfaces.
3
4 Copyright (c) 2015 - 2018, Intel Corporation. All rights reserved.<BR>
5 (C) Copyright 2015-2016 Hewlett Packard Enterprise Development LP<BR>
6
7 SPDX-License-Identifier: BSD-2-Clause-Patent
8
9 **/
10
11 #include "HttpDriver.h"
12
13 EFI_HTTP_PROTOCOL mEfiHttpTemplate = {
14 EfiHttpGetModeData,
15 EfiHttpConfigure,
16 EfiHttpRequest,
17 EfiHttpCancel,
18 EfiHttpResponse,
19 EfiHttpPoll
20 };
21
22 /**
23 Returns the operational parameters for the current HTTP child instance.
24
25 The GetModeData() function is used to read the current mode data (operational
26 parameters) for this HTTP protocol instance.
27
28 @param[in] This Pointer to EFI_HTTP_PROTOCOL instance.
29 @param[out] HttpConfigData Point to buffer for operational parameters of this
30 HTTP instance. It is the responsibility of the caller
31 to allocate the memory for HttpConfigData and
32 HttpConfigData->AccessPoint.IPv6Node/IPv4Node. In fact,
33 it is recommended to allocate sufficient memory to record
34 IPv6Node since it is big enough for all possibilities.
35
36 @retval EFI_SUCCESS Operation succeeded.
37 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:
38 This is NULL.
39 HttpConfigData is NULL.
40 HttpConfigData->AccessPoint.IPv4Node or
41 HttpConfigData->AccessPoint.IPv6Node is NULL.
42 @retval EFI_NOT_STARTED This EFI HTTP Protocol instance has not been started.
43
44 **/
45 EFI_STATUS
46 EFIAPI
47 EfiHttpGetModeData (
48 IN EFI_HTTP_PROTOCOL *This,
49 OUT EFI_HTTP_CONFIG_DATA *HttpConfigData
50 )
51 {
52 HTTP_PROTOCOL *HttpInstance;
53
54 //
55 // Check input parameters.
56 //
57 if ((This == NULL) || (HttpConfigData == NULL)) {
58 return EFI_INVALID_PARAMETER;
59 }
60
61 HttpInstance = HTTP_INSTANCE_FROM_PROTOCOL (This);
62
63 if ((HttpConfigData->AccessPoint.IPv6Node == NULL) ||
64 (HttpConfigData->AccessPoint.IPv4Node == NULL)) {
65 return EFI_INVALID_PARAMETER;
66 }
67
68 if (HttpInstance->State < HTTP_STATE_HTTP_CONFIGED) {
69 return EFI_NOT_STARTED;
70 }
71
72 HttpConfigData->HttpVersion = HttpInstance->HttpVersion;
73 HttpConfigData->TimeOutMillisec = HttpInstance->TimeOutMillisec;
74 HttpConfigData->LocalAddressIsIPv6 = HttpInstance->LocalAddressIsIPv6;
75
76 if (HttpInstance->LocalAddressIsIPv6) {
77 CopyMem (
78 HttpConfigData->AccessPoint.IPv6Node,
79 &HttpInstance->Ipv6Node,
80 sizeof (HttpInstance->Ipv6Node)
81 );
82 } else {
83 CopyMem (
84 HttpConfigData->AccessPoint.IPv4Node,
85 &HttpInstance->IPv4Node,
86 sizeof (HttpInstance->IPv4Node)
87 );
88 }
89
90 return EFI_SUCCESS;
91 }
92
93 /**
94 Initialize or brutally reset the operational parameters for this EFI HTTP instance.
95
96 The Configure() function does the following:
97 When HttpConfigData is not NULL Initialize this EFI HTTP instance by configuring
98 timeout, local address, port, etc.
99 When HttpConfigData is NULL, reset this EFI HTTP instance by closing all active
100 connections with remote hosts, canceling all asynchronous tokens, and flush request
101 and response buffers without informing the appropriate hosts.
102
103 No other EFI HTTP function can be executed by this instance until the Configure()
104 function is executed and returns successfully.
105
106 @param[in] This Pointer to EFI_HTTP_PROTOCOL instance.
107 @param[in] HttpConfigData Pointer to the configure data to configure the instance.
108
109 @retval EFI_SUCCESS Operation succeeded.
110 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:
111 This is NULL.
112 HttpConfigData->LocalAddressIsIPv6 is FALSE and
113 HttpConfigData->AccessPoint.IPv4Node is NULL.
114 HttpConfigData->LocalAddressIsIPv6 is TRUE and
115 HttpConfigData->AccessPoint.IPv6Node is NULL.
116 @retval EFI_ALREADY_STARTED Reinitialize this HTTP instance without calling
117 Configure() with NULL to reset it.
118 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.
119 @retval EFI_OUT_OF_RESOURCES Could not allocate enough system resources when
120 executing Configure().
121 @retval EFI_UNSUPPORTED One or more options in HttpConfigData are not supported
122 in the implementation.
123 **/
124 EFI_STATUS
125 EFIAPI
126 EfiHttpConfigure (
127 IN EFI_HTTP_PROTOCOL *This,
128 IN EFI_HTTP_CONFIG_DATA *HttpConfigData OPTIONAL
129 )
130 {
131 HTTP_PROTOCOL *HttpInstance;
132 EFI_STATUS Status;
133
134 //
135 // Check input parameters.
136 //
137 if (This == NULL ||
138 (HttpConfigData != NULL &&
139 ((HttpConfigData->LocalAddressIsIPv6 && HttpConfigData->AccessPoint.IPv6Node == NULL) ||
140 (!HttpConfigData->LocalAddressIsIPv6 && HttpConfigData->AccessPoint.IPv4Node == NULL)))) {
141 return EFI_INVALID_PARAMETER;
142 }
143
144 HttpInstance = HTTP_INSTANCE_FROM_PROTOCOL (This);
145 ASSERT (HttpInstance->Service != NULL);
146
147 if (HttpConfigData != NULL) {
148
149 if (HttpConfigData->HttpVersion >= HttpVersionUnsupported) {
150 return EFI_UNSUPPORTED;
151 }
152
153 //
154 // Now configure this HTTP instance.
155 //
156 if (HttpInstance->State != HTTP_STATE_UNCONFIGED) {
157 return EFI_ALREADY_STARTED;
158 }
159
160 HttpInstance->HttpVersion = HttpConfigData->HttpVersion;
161 HttpInstance->TimeOutMillisec = HttpConfigData->TimeOutMillisec;
162 HttpInstance->LocalAddressIsIPv6 = HttpConfigData->LocalAddressIsIPv6;
163
164 if (HttpConfigData->LocalAddressIsIPv6) {
165 CopyMem (
166 &HttpInstance->Ipv6Node,
167 HttpConfigData->AccessPoint.IPv6Node,
168 sizeof (HttpInstance->Ipv6Node)
169 );
170 } else {
171 CopyMem (
172 &HttpInstance->IPv4Node,
173 HttpConfigData->AccessPoint.IPv4Node,
174 sizeof (HttpInstance->IPv4Node)
175 );
176 }
177
178 //
179 // Creat Tcp child
180 //
181 Status = HttpInitProtocol (HttpInstance, HttpInstance->LocalAddressIsIPv6);
182 if (EFI_ERROR (Status)) {
183 return Status;
184 }
185
186 HttpInstance->State = HTTP_STATE_HTTP_CONFIGED;
187 return EFI_SUCCESS;
188
189 } else {
190 //
191 // Reset all the resources related to HttpInsance.
192 //
193 HttpCleanProtocol (HttpInstance);
194 HttpInstance->State = HTTP_STATE_UNCONFIGED;
195 return EFI_SUCCESS;
196 }
197 }
198
199
200 /**
201 The Request() function queues an HTTP request to this HTTP instance.
202
203 Similar to Transmit() function in the EFI TCP driver. When the HTTP request is sent
204 successfully, or if there is an error, Status in token will be updated and Event will
205 be signaled.
206
207 @param[in] This Pointer to EFI_HTTP_PROTOCOL instance.
208 @param[in] Token Pointer to storage containing HTTP request token.
209
210 @retval EFI_SUCCESS Outgoing data was processed.
211 @retval EFI_NOT_STARTED This EFI HTTP Protocol instance has not been started.
212 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.
213 @retval EFI_TIMEOUT Data was dropped out of the transmit or receive queue.
214 @retval EFI_OUT_OF_RESOURCES Could not allocate enough system resources.
215 @retval EFI_UNSUPPORTED The HTTP method is not supported in current
216 implementation.
217 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:
218 This is NULL.
219 Token is NULL.
220 Token->Message is NULL.
221 Token->Message->Body is not NULL,
222 Token->Message->BodyLength is non-zero, and
223 Token->Message->Data is NULL, but a previous call to
224 Request()has not been completed successfully.
225 **/
226 EFI_STATUS
227 EFIAPI
228 EfiHttpRequest (
229 IN EFI_HTTP_PROTOCOL *This,
230 IN EFI_HTTP_TOKEN *Token
231 )
232 {
233 EFI_HTTP_MESSAGE *HttpMsg;
234 EFI_HTTP_REQUEST_DATA *Request;
235 VOID *UrlParser;
236 EFI_STATUS Status;
237 CHAR8 *HostName;
238 UINTN HostNameSize;
239 UINT16 RemotePort;
240 HTTP_PROTOCOL *HttpInstance;
241 BOOLEAN Configure;
242 BOOLEAN ReConfigure;
243 BOOLEAN TlsConfigure;
244 CHAR8 *RequestMsg;
245 CHAR8 *Url;
246 UINTN UrlLen;
247 CHAR16 *HostNameStr;
248 HTTP_TOKEN_WRAP *Wrap;
249 CHAR8 *FileUrl;
250 UINTN RequestMsgSize;
251 EFI_HANDLE ImageHandle;
252
253 //
254 // Initializations
255 //
256 Url = NULL;
257 UrlParser = NULL;
258 RemotePort = 0;
259 HostName = NULL;
260 RequestMsg = NULL;
261 HostNameStr = NULL;
262 Wrap = NULL;
263 FileUrl = NULL;
264 TlsConfigure = FALSE;
265
266 if ((This == NULL) || (Token == NULL)) {
267 return EFI_INVALID_PARAMETER;
268 }
269
270 HttpMsg = Token->Message;
271 if (HttpMsg == NULL) {
272 return EFI_INVALID_PARAMETER;
273 }
274
275 Request = HttpMsg->Data.Request;
276
277 //
278 // Only support GET, HEAD, DELETE, PATCH, PUT and POST method in current implementation.
279 //
280 if ((Request != NULL) && (Request->Method != HttpMethodGet) &&
281 (Request->Method != HttpMethodHead) && (Request->Method != HttpMethodDelete) &&
282 (Request->Method != HttpMethodPut) && (Request->Method != HttpMethodPost) &&
283 (Request->Method != HttpMethodPatch)) {
284 return EFI_UNSUPPORTED;
285 }
286
287 HttpInstance = HTTP_INSTANCE_FROM_PROTOCOL (This);
288
289 //
290 // Capture the method into HttpInstance.
291 //
292 if (Request != NULL) {
293 HttpInstance->Method = Request->Method;
294 }
295
296 if (HttpInstance->State < HTTP_STATE_HTTP_CONFIGED) {
297 return EFI_NOT_STARTED;
298 }
299
300 if (Request == NULL) {
301 //
302 // Request would be NULL only for PUT/POST/PATCH operation (in the current implementation)
303 //
304 if ((HttpInstance->Method != HttpMethodPut) &&
305 (HttpInstance->Method != HttpMethodPost) &&
306 (HttpInstance->Method != HttpMethodPatch)) {
307 return EFI_INVALID_PARAMETER;
308 }
309
310 //
311 // For PUT/POST/PATCH, we need to have the TCP already configured. Bail out if it is not!
312 //
313 if (HttpInstance->State < HTTP_STATE_TCP_CONFIGED) {
314 return EFI_INVALID_PARAMETER;
315 }
316
317 //
318 // We need to have the Message Body for sending the HTTP message across in these cases.
319 //
320 if (HttpMsg->Body == NULL || HttpMsg->BodyLength == 0) {
321 return EFI_INVALID_PARAMETER;
322 }
323
324 //
325 // Use existing TCP instance to transmit the packet.
326 //
327 Configure = FALSE;
328 ReConfigure = FALSE;
329 } else {
330 //
331 // Check whether the token already existed.
332 //
333 if (EFI_ERROR (NetMapIterate (&HttpInstance->TxTokens, HttpTokenExist, Token))) {
334 return EFI_ACCESS_DENIED;
335 }
336
337 //
338 // Parse the URI of the remote host.
339 //
340 Url = HttpInstance->Url;
341 UrlLen = StrLen (Request->Url) + 1;
342 if (UrlLen > HTTP_URL_BUFFER_LEN) {
343 Url = AllocateZeroPool (UrlLen);
344 if (Url == NULL) {
345 return EFI_OUT_OF_RESOURCES;
346 }
347 FreePool (HttpInstance->Url);
348 HttpInstance->Url = Url;
349 }
350
351
352 UnicodeStrToAsciiStrS (Request->Url, Url, UrlLen);
353
354 //
355 // From the information in Url, the HTTP instance will
356 // be able to determine whether to use http or https.
357 //
358 HttpInstance->UseHttps = IsHttpsUrl (Url);
359
360 //
361 // HTTP is disabled, return directly if the URI is not HTTPS.
362 //
363 if (!PcdGetBool (PcdAllowHttpConnections) && !(HttpInstance->UseHttps)) {
364
365 DEBUG ((EFI_D_ERROR, "EfiHttpRequest: HTTP is disabled.\n"));
366
367 return EFI_ACCESS_DENIED;
368 }
369
370 //
371 // Check whether we need to create Tls child and open the TLS protocol.
372 //
373 if (HttpInstance->UseHttps && HttpInstance->TlsChildHandle == NULL) {
374 //
375 // Use TlsSb to create Tls child and open the TLS protocol.
376 //
377 if (HttpInstance->LocalAddressIsIPv6) {
378 ImageHandle = HttpInstance->Service->Ip6DriverBindingHandle;
379 } else {
380 ImageHandle = HttpInstance->Service->Ip4DriverBindingHandle;
381 }
382
383 HttpInstance->TlsChildHandle = TlsCreateChild (
384 ImageHandle,
385 &(HttpInstance->TlsSb),
386 &(HttpInstance->Tls),
387 &(HttpInstance->TlsConfiguration)
388 );
389 if (HttpInstance->TlsChildHandle == NULL) {
390 return EFI_DEVICE_ERROR;
391 }
392
393 TlsConfigure = TRUE;
394 }
395
396 UrlParser = NULL;
397 Status = HttpParseUrl (Url, (UINT32) AsciiStrLen (Url), FALSE, &UrlParser);
398 if (EFI_ERROR (Status)) {
399 goto Error1;
400 }
401
402 Status = HttpUrlGetHostName (Url, UrlParser, &HostName);
403 if (EFI_ERROR (Status)) {
404 goto Error1;
405 }
406
407 if (HttpInstance->LocalAddressIsIPv6) {
408 HostNameSize = AsciiStrSize (HostName);
409
410 if (HostNameSize > 2 && HostName[0] == '[' && HostName[HostNameSize - 2] == ']') {
411 //
412 // HostName format is expressed as IPv6, so, remove '[' and ']'.
413 //
414 HostNameSize -= 2;
415 CopyMem (HostName, HostName + 1, HostNameSize - 1);
416 HostName[HostNameSize - 1] = '\0';
417 }
418 }
419
420 Status = HttpUrlGetPort (Url, UrlParser, &RemotePort);
421 if (EFI_ERROR (Status)) {
422 if (HttpInstance->UseHttps) {
423 RemotePort = HTTPS_DEFAULT_PORT;
424 } else {
425 RemotePort = HTTP_DEFAULT_PORT;
426 }
427 }
428 //
429 // If Configure is TRUE, it indicates the first time to call Request();
430 // If ReConfigure is TRUE, it indicates the request URL is not same
431 // with the previous call to Request();
432 //
433 Configure = TRUE;
434 ReConfigure = TRUE;
435
436 if (HttpInstance->RemoteHost == NULL) {
437 //
438 // Request() is called the first time.
439 //
440 ReConfigure = FALSE;
441 } else {
442 if ((HttpInstance->RemotePort == RemotePort) &&
443 (AsciiStrCmp (HttpInstance->RemoteHost, HostName) == 0) &&
444 (!HttpInstance->UseHttps || (HttpInstance->UseHttps &&
445 !TlsConfigure &&
446 HttpInstance->TlsSessionState == EfiTlsSessionDataTransferring))) {
447 //
448 // Host Name and port number of the request URL are the same with previous call to Request().
449 // If Https protocol used, the corresponding SessionState is EfiTlsSessionDataTransferring.
450 // Check whether previous TCP packet sent out.
451 //
452
453 if (EFI_ERROR (NetMapIterate (&HttpInstance->TxTokens, HttpTcpNotReady, NULL))) {
454 //
455 // Wrap the HTTP token in HTTP_TOKEN_WRAP
456 //
457 Wrap = AllocateZeroPool (sizeof (HTTP_TOKEN_WRAP));
458 if (Wrap == NULL) {
459 Status = EFI_OUT_OF_RESOURCES;
460 goto Error1;
461 }
462
463 Wrap->HttpToken = Token;
464 Wrap->HttpInstance = HttpInstance;
465
466 Status = HttpCreateTcpTxEvent (Wrap);
467 if (EFI_ERROR (Status)) {
468 goto Error1;
469 }
470
471 Status = NetMapInsertTail (&HttpInstance->TxTokens, Token, Wrap);
472 if (EFI_ERROR (Status)) {
473 goto Error1;
474 }
475
476 Wrap->TcpWrap.Method = Request->Method;
477
478 FreePool (HostName);
479
480 HttpUrlFreeParser (UrlParser);
481
482 //
483 // Queue the HTTP token and return.
484 //
485 return EFI_SUCCESS;
486 } else {
487 //
488 // Use existing TCP instance to transmit the packet.
489 //
490 Configure = FALSE;
491 ReConfigure = FALSE;
492 }
493 } else {
494 //
495 // Need close existing TCP instance and create a new TCP instance for data transmit.
496 //
497 if (HttpInstance->RemoteHost != NULL) {
498 FreePool (HttpInstance->RemoteHost);
499 HttpInstance->RemoteHost = NULL;
500 HttpInstance->RemotePort = 0;
501 }
502 }
503 }
504 }
505
506 if (Configure) {
507 //
508 // Parse Url for IPv4 or IPv6 address, if failed, perform DNS resolution.
509 //
510 if (!HttpInstance->LocalAddressIsIPv6) {
511 Status = NetLibAsciiStrToIp4 (HostName, &HttpInstance->RemoteAddr);
512 } else {
513 Status = HttpUrlGetIp6 (Url, UrlParser, &HttpInstance->RemoteIpv6Addr);
514 }
515
516 if (EFI_ERROR (Status)) {
517 HostNameSize = AsciiStrSize (HostName);
518 HostNameStr = AllocateZeroPool (HostNameSize * sizeof (CHAR16));
519 if (HostNameStr == NULL) {
520 Status = EFI_OUT_OF_RESOURCES;
521 goto Error1;
522 }
523
524 AsciiStrToUnicodeStrS (HostName, HostNameStr, HostNameSize);
525 if (!HttpInstance->LocalAddressIsIPv6) {
526 Status = HttpDns4 (HttpInstance, HostNameStr, &HttpInstance->RemoteAddr);
527 } else {
528 Status = HttpDns6 (HttpInstance, HostNameStr, &HttpInstance->RemoteIpv6Addr);
529 }
530
531 FreePool (HostNameStr);
532 if (EFI_ERROR (Status)) {
533 DEBUG ((EFI_D_ERROR, "Error: Could not retrieve the host address from DNS server.\n"));
534 goto Error1;
535 }
536 }
537
538 //
539 // Save the RemotePort and RemoteHost.
540 //
541 ASSERT (HttpInstance->RemoteHost == NULL);
542 HttpInstance->RemotePort = RemotePort;
543 HttpInstance->RemoteHost = HostName;
544 HostName = NULL;
545 }
546
547 if (ReConfigure) {
548 //
549 // The request URL is different from previous calls to Request(), close existing TCP instance.
550 //
551 if (!HttpInstance->LocalAddressIsIPv6) {
552 ASSERT (HttpInstance->Tcp4 != NULL);
553 } else {
554 ASSERT (HttpInstance->Tcp6 != NULL);
555 }
556
557 if (HttpInstance->UseHttps && !TlsConfigure) {
558 Status = TlsCloseSession (HttpInstance);
559 if (EFI_ERROR (Status)) {
560 goto Error1;
561 }
562
563 TlsCloseTxRxEvent (HttpInstance);
564 }
565
566 HttpCloseConnection (HttpInstance);
567 EfiHttpCancel (This, NULL);
568 }
569
570 //
571 // Wrap the HTTP token in HTTP_TOKEN_WRAP
572 //
573 Wrap = AllocateZeroPool (sizeof (HTTP_TOKEN_WRAP));
574 if (Wrap == NULL) {
575 Status = EFI_OUT_OF_RESOURCES;
576 goto Error1;
577 }
578
579 Wrap->HttpToken = Token;
580 Wrap->HttpInstance = HttpInstance;
581 if (Request != NULL) {
582 Wrap->TcpWrap.Method = Request->Method;
583 }
584
585 Status = HttpInitSession (
586 HttpInstance,
587 Wrap,
588 Configure || ReConfigure,
589 TlsConfigure
590 );
591 if (EFI_ERROR (Status)) {
592 goto Error2;
593 }
594
595 if (!Configure && !ReConfigure && !TlsConfigure) {
596 //
597 // For the new HTTP token, create TX TCP token events.
598 //
599 Status = HttpCreateTcpTxEvent (Wrap);
600 if (EFI_ERROR (Status)) {
601 goto Error1;
602 }
603 }
604
605 //
606 // Create request message.
607 //
608 FileUrl = Url;
609 if (Url != NULL && *FileUrl != '/') {
610 //
611 // Convert the absolute-URI to the absolute-path
612 //
613 while (*FileUrl != ':') {
614 FileUrl++;
615 }
616 if ((*(FileUrl+1) == '/') && (*(FileUrl+2) == '/')) {
617 FileUrl += 3;
618 while (*FileUrl != '/') {
619 FileUrl++;
620 }
621 } else {
622 Status = EFI_INVALID_PARAMETER;
623 goto Error3;
624 }
625 }
626
627 Status = HttpGenRequestMessage (HttpMsg, FileUrl, &RequestMsg, &RequestMsgSize);
628
629 if (EFI_ERROR (Status) || NULL == RequestMsg) {
630 goto Error3;
631 }
632
633 //
634 // Every request we insert a TxToken and a response call would remove the TxToken.
635 // In cases of PUT/POST/PATCH, after an initial request-response pair, we would do a
636 // continuous request without a response call. So, in such cases, where Request
637 // structure is NULL, we would not insert a TxToken.
638 //
639 if (Request != NULL) {
640 Status = NetMapInsertTail (&HttpInstance->TxTokens, Token, Wrap);
641 if (EFI_ERROR (Status)) {
642 goto Error4;
643 }
644 }
645
646 //
647 // Transmit the request message.
648 //
649 Status = HttpTransmitTcp (
650 HttpInstance,
651 Wrap,
652 (UINT8*) RequestMsg,
653 RequestMsgSize
654 );
655 if (EFI_ERROR (Status)) {
656 goto Error5;
657 }
658
659 DispatchDpc ();
660
661 if (HostName != NULL) {
662 FreePool (HostName);
663 }
664
665 if (UrlParser != NULL) {
666 HttpUrlFreeParser (UrlParser);
667 }
668
669 return EFI_SUCCESS;
670
671 Error5:
672 //
673 // We would have inserted a TxToken only if Request structure is not NULL.
674 // Hence check before we do a remove in this error case.
675 //
676 if (Request != NULL) {
677 NetMapRemoveTail (&HttpInstance->TxTokens, NULL);
678 }
679
680 Error4:
681 if (RequestMsg != NULL) {
682 FreePool (RequestMsg);
683 }
684
685 Error3:
686 if (HttpInstance->UseHttps) {
687 TlsCloseSession (HttpInstance);
688 TlsCloseTxRxEvent (HttpInstance);
689 }
690
691 Error2:
692 HttpCloseConnection (HttpInstance);
693
694 HttpCloseTcpConnCloseEvent (HttpInstance);
695 if (NULL != Wrap->TcpWrap.Tx4Token.CompletionToken.Event) {
696 gBS->CloseEvent (Wrap->TcpWrap.Tx4Token.CompletionToken.Event);
697 Wrap->TcpWrap.Tx4Token.CompletionToken.Event = NULL;
698 }
699 if (NULL != Wrap->TcpWrap.Tx6Token.CompletionToken.Event) {
700 gBS->CloseEvent (Wrap->TcpWrap.Tx6Token.CompletionToken.Event);
701 Wrap->TcpWrap.Tx6Token.CompletionToken.Event = NULL;
702 }
703
704 Error1:
705 if (HostName != NULL) {
706 FreePool (HostName);
707 }
708 if (Wrap != NULL) {
709 FreePool (Wrap);
710 }
711 if (UrlParser != NULL) {
712 HttpUrlFreeParser (UrlParser);
713 }
714
715 return Status;
716
717 }
718
719 /**
720 Cancel a user's Token.
721
722 @param[in] Map The HTTP instance's token queue.
723 @param[in] Item Object container for one HTTP token and token's wrap.
724 @param[in] Context The user's token to cancel.
725
726 @retval EFI_SUCCESS Continue to check the next Item.
727 @retval EFI_ABORTED The user's Token (Token != NULL) is cancelled.
728
729 **/
730 EFI_STATUS
731 EFIAPI
732 HttpCancelTokens (
733 IN NET_MAP *Map,
734 IN NET_MAP_ITEM *Item,
735 IN VOID *Context
736 )
737 {
738 EFI_HTTP_TOKEN *Token;
739 HTTP_TOKEN_WRAP *Wrap;
740 HTTP_PROTOCOL *HttpInstance;
741
742 Token = (EFI_HTTP_TOKEN *) Context;
743
744 //
745 // Return EFI_SUCCESS to check the next item in the map if
746 // this one doesn't match.
747 //
748 if ((Token != NULL) && (Token != Item->Key)) {
749 return EFI_SUCCESS;
750 }
751
752 Wrap = (HTTP_TOKEN_WRAP *) Item->Value;
753 ASSERT (Wrap != NULL);
754 HttpInstance = Wrap->HttpInstance;
755
756 if (!HttpInstance->LocalAddressIsIPv6) {
757 if (Wrap->TcpWrap.Rx4Token.CompletionToken.Event != NULL) {
758 //
759 // Cancle the Token before close its Event.
760 //
761 HttpInstance->Tcp4->Cancel (HttpInstance->Tcp4, &Wrap->TcpWrap.Rx4Token.CompletionToken);
762
763 //
764 // Dispatch the DPC queued by the NotifyFunction of the canceled token's events.
765 //
766 DispatchDpc ();
767 }
768 } else {
769 if (Wrap->TcpWrap.Rx6Token.CompletionToken.Event != NULL) {
770 //
771 // Cancle the Token before close its Event.
772 //
773 HttpInstance->Tcp6->Cancel (HttpInstance->Tcp6, &Wrap->TcpWrap.Rx6Token.CompletionToken);
774
775 //
776 // Dispatch the DPC queued by the NotifyFunction of the canceled token's events.
777 //
778 DispatchDpc ();
779 }
780 }
781
782 //
783 // If only one item is to be cancel, return EFI_ABORTED to stop
784 // iterating the map any more.
785 //
786 if (Token != NULL) {
787 return EFI_ABORTED;
788 }
789
790 return EFI_SUCCESS;
791 }
792
793 /**
794 Cancel the user's receive/transmit request. It is the worker function of
795 EfiHttpCancel API. If a matching token is found, it will call HttpCancelTokens to cancel the
796 token.
797
798 @param[in] HttpInstance Pointer to HTTP_PROTOCOL structure.
799 @param[in] Token The token to cancel. If NULL, all token will be
800 cancelled.
801
802 @retval EFI_SUCCESS The token is cancelled.
803 @retval EFI_NOT_FOUND The asynchronous request or response token is not found.
804 @retval Others Other error as indicated.
805
806 **/
807 EFI_STATUS
808 HttpCancel (
809 IN HTTP_PROTOCOL *HttpInstance,
810 IN EFI_HTTP_TOKEN *Token
811 )
812 {
813 EFI_STATUS Status;
814
815 //
816 // First check the tokens queued by EfiHttpRequest().
817 //
818 Status = NetMapIterate (&HttpInstance->TxTokens, HttpCancelTokens, Token);
819 if (EFI_ERROR (Status)) {
820 if (Token != NULL) {
821 if (Status == EFI_ABORTED) {
822 return EFI_SUCCESS;
823 }
824 } else {
825 return Status;
826 }
827 }
828
829 if (!HttpInstance->UseHttps) {
830 //
831 // Then check the tokens queued by EfiHttpResponse(), except for Https.
832 //
833 Status = NetMapIterate (&HttpInstance->RxTokens, HttpCancelTokens, Token);
834 if (EFI_ERROR (Status)) {
835 if (Token != NULL) {
836 if (Status == EFI_ABORTED) {
837 return EFI_SUCCESS;
838 } else {
839 return EFI_NOT_FOUND;
840 }
841 } else {
842 return Status;
843 }
844 }
845 } else {
846 if (!HttpInstance->LocalAddressIsIPv6) {
847 HttpInstance->Tcp4->Cancel (HttpInstance->Tcp4, &HttpInstance->Tcp4TlsRxToken.CompletionToken);
848 } else {
849 HttpInstance->Tcp6->Cancel (HttpInstance->Tcp6, &HttpInstance->Tcp6TlsRxToken.CompletionToken);
850 }
851 }
852
853 return EFI_SUCCESS;
854 }
855
856
857 /**
858 Abort an asynchronous HTTP request or response token.
859
860 The Cancel() function aborts a pending HTTP request or response transaction. If
861 Token is not NULL and the token is in transmit or receive queues when it is being
862 cancelled, its Token->Status will be set to EFI_ABORTED and then Token->Event will
863 be signaled. If the token is not in one of the queues, which usually means that the
864 asynchronous operation has completed, EFI_NOT_FOUND is returned. If Token is NULL,
865 all asynchronous tokens issued by Request() or Response() will be aborted.
866
867 @param[in] This Pointer to EFI_HTTP_PROTOCOL instance.
868 @param[in] Token Point to storage containing HTTP request or response
869 token.
870
871 @retval EFI_SUCCESS Request and Response queues are successfully flushed.
872 @retval EFI_INVALID_PARAMETER This is NULL.
873 @retval EFI_NOT_STARTED This instance hasn't been configured.
874 @retval EFI_NOT_FOUND The asynchronous request or response token is not
875 found.
876 @retval EFI_UNSUPPORTED The implementation does not support this function.
877
878 **/
879 EFI_STATUS
880 EFIAPI
881 EfiHttpCancel (
882 IN EFI_HTTP_PROTOCOL *This,
883 IN EFI_HTTP_TOKEN *Token
884 )
885 {
886 HTTP_PROTOCOL *HttpInstance;
887
888 if (This == NULL) {
889 return EFI_INVALID_PARAMETER;
890 }
891
892 HttpInstance = HTTP_INSTANCE_FROM_PROTOCOL (This);
893
894 if (HttpInstance->State != HTTP_STATE_TCP_CONNECTED) {
895 return EFI_NOT_STARTED;
896 }
897
898 return HttpCancel (HttpInstance, Token);
899
900 }
901
902 /**
903 A callback function to intercept events during message parser.
904
905 This function will be invoked during HttpParseMessageBody() with various events type. An error
906 return status of the callback function will cause the HttpParseMessageBody() aborted.
907
908 @param[in] EventType Event type of this callback call.
909 @param[in] Data A pointer to data buffer.
910 @param[in] Length Length in bytes of the Data.
911 @param[in] Context Callback context set by HttpInitMsgParser().
912
913 @retval EFI_SUCCESS Continue to parser the message body.
914
915 **/
916 EFI_STATUS
917 EFIAPI
918 HttpBodyParserCallback (
919 IN HTTP_BODY_PARSE_EVENT EventType,
920 IN CHAR8 *Data,
921 IN UINTN Length,
922 IN VOID *Context
923 )
924 {
925 HTTP_CALLBACK_DATA *CallbackData;
926 HTTP_TOKEN_WRAP *Wrap;
927 UINTN BodyLength;
928 CHAR8 *Body;
929
930 if (EventType != BodyParseEventOnComplete) {
931 return EFI_SUCCESS;
932 }
933
934 if (Data == NULL || Length != 0 || Context == NULL) {
935 return EFI_SUCCESS;
936 }
937
938 CallbackData = (HTTP_CALLBACK_DATA *) Context;
939
940 Wrap = (HTTP_TOKEN_WRAP *) (CallbackData->Wrap);
941 Body = CallbackData->ParseData;
942 BodyLength = CallbackData->ParseDataLength;
943
944 if (Data < Body + BodyLength) {
945 Wrap->HttpInstance->NextMsg = Data;
946 } else {
947 Wrap->HttpInstance->NextMsg = NULL;
948 }
949
950 return EFI_SUCCESS;
951 }
952
953 /**
954 The work function of EfiHttpResponse().
955
956 @param[in] Wrap Pointer to HTTP token's wrap data.
957
958 @retval EFI_SUCCESS Allocation succeeded.
959 @retval EFI_OUT_OF_RESOURCES Failed to complete the opration due to lack of resources.
960 @retval EFI_NOT_READY Can't find a corresponding Tx4Token/Tx6Token or
961 the EFI_HTTP_UTILITIES_PROTOCOL is not available.
962
963 **/
964 EFI_STATUS
965 HttpResponseWorker (
966 IN HTTP_TOKEN_WRAP *Wrap
967 )
968 {
969 EFI_STATUS Status;
970 EFI_HTTP_MESSAGE *HttpMsg;
971 CHAR8 *EndofHeader;
972 CHAR8 *HttpHeaders;
973 UINTN SizeofHeaders;
974 UINTN BufferSize;
975 UINTN StatusCode;
976 CHAR8 *Tmp;
977 CHAR8 *HeaderTmp;
978 CHAR8 *StatusCodeStr;
979 UINTN BodyLen;
980 HTTP_PROTOCOL *HttpInstance;
981 EFI_HTTP_TOKEN *Token;
982 NET_MAP_ITEM *Item;
983 HTTP_TOKEN_WRAP *ValueInItem;
984 UINTN HdrLen;
985 NET_FRAGMENT Fragment;
986
987 if (Wrap == NULL || Wrap->HttpInstance == NULL) {
988 return EFI_INVALID_PARAMETER;
989 }
990
991 HttpInstance = Wrap->HttpInstance;
992 Token = Wrap->HttpToken;
993 HttpMsg = Token->Message;
994
995 HttpInstance->EndofHeader = NULL;
996 HttpInstance->HttpHeaders = NULL;
997 HttpMsg->Headers = NULL;
998 HttpHeaders = NULL;
999 SizeofHeaders = 0;
1000 BufferSize = 0;
1001 EndofHeader = NULL;
1002 ValueInItem = NULL;
1003 Fragment.Len = 0;
1004 Fragment.Bulk = NULL;
1005
1006 if (HttpMsg->Data.Response != NULL) {
1007 //
1008 // Check whether we have cached header from previous call.
1009 //
1010 if ((HttpInstance->CacheBody != NULL) && (HttpInstance->NextMsg != NULL)) {
1011 //
1012 // The data is stored at [NextMsg, CacheBody + CacheLen].
1013 //
1014 HdrLen = HttpInstance->CacheBody + HttpInstance->CacheLen - HttpInstance->NextMsg;
1015 HttpHeaders = AllocateZeroPool (HdrLen);
1016 if (HttpHeaders == NULL) {
1017 Status = EFI_OUT_OF_RESOURCES;
1018 goto Error;
1019 }
1020
1021 CopyMem (HttpHeaders, HttpInstance->NextMsg, HdrLen);
1022 FreePool (HttpInstance->CacheBody);
1023 HttpInstance->CacheBody = NULL;
1024 HttpInstance->NextMsg = NULL;
1025 HttpInstance->CacheOffset = 0;
1026 SizeofHeaders = HdrLen;
1027 BufferSize = HttpInstance->CacheLen;
1028
1029 //
1030 // Check whether we cached the whole HTTP headers.
1031 //
1032 EndofHeader = AsciiStrStr (HttpHeaders, HTTP_END_OF_HDR_STR);
1033 }
1034
1035 HttpInstance->EndofHeader = &EndofHeader;
1036 HttpInstance->HttpHeaders = &HttpHeaders;
1037
1038
1039 if (HttpInstance->TimeoutEvent == NULL) {
1040 //
1041 // Create TimeoutEvent for response
1042 //
1043 Status = gBS->CreateEvent (
1044 EVT_TIMER,
1045 TPL_CALLBACK,
1046 NULL,
1047 NULL,
1048 &HttpInstance->TimeoutEvent
1049 );
1050 if (EFI_ERROR (Status)) {
1051 goto Error;
1052 }
1053 }
1054
1055 //
1056 // Start the timer, and wait Timeout seconds to receive the header packet.
1057 //
1058 Status = gBS->SetTimer (HttpInstance->TimeoutEvent, TimerRelative, HTTP_RESPONSE_TIMEOUT * TICKS_PER_SECOND);
1059 if (EFI_ERROR (Status)) {
1060 goto Error;
1061 }
1062
1063 Status = HttpTcpReceiveHeader (HttpInstance, &SizeofHeaders, &BufferSize, HttpInstance->TimeoutEvent);
1064
1065 gBS->SetTimer (HttpInstance->TimeoutEvent, TimerCancel, 0);
1066
1067 if (EFI_ERROR (Status)) {
1068 goto Error;
1069 }
1070
1071 ASSERT (HttpHeaders != NULL);
1072
1073 //
1074 // Cache the part of body.
1075 //
1076 BodyLen = BufferSize - (EndofHeader - HttpHeaders);
1077 if (BodyLen > 0) {
1078 if (HttpInstance->CacheBody != NULL) {
1079 FreePool (HttpInstance->CacheBody);
1080 }
1081
1082 HttpInstance->CacheBody = AllocateZeroPool (BodyLen);
1083 if (HttpInstance->CacheBody == NULL) {
1084 Status = EFI_OUT_OF_RESOURCES;
1085 goto Error;
1086 }
1087
1088 CopyMem (HttpInstance->CacheBody, EndofHeader, BodyLen);
1089 HttpInstance->CacheLen = BodyLen;
1090 }
1091
1092 //
1093 // Search for Status Code.
1094 //
1095 StatusCodeStr = HttpHeaders + AsciiStrLen (HTTP_VERSION_STR) + 1;
1096 if (StatusCodeStr == NULL) {
1097 Status = EFI_NOT_READY;
1098 goto Error;
1099 }
1100
1101 StatusCode = AsciiStrDecimalToUintn (StatusCodeStr);
1102
1103 //
1104 // Remove the first line of HTTP message, e.g. "HTTP/1.1 200 OK\r\n".
1105 //
1106 Tmp = AsciiStrStr (HttpHeaders, HTTP_CRLF_STR);
1107 if (Tmp == NULL) {
1108 Status = EFI_NOT_READY;
1109 goto Error;
1110 }
1111
1112 //
1113 // We could have response with just a HTTP message and no headers. For Example,
1114 // "100 Continue". In such cases, we would not want to unnecessarily call a Parse
1115 // method. A "\r\n" following Tmp string again would indicate an end. Compare and
1116 // set SizeofHeaders to 0.
1117 //
1118 Tmp = Tmp + AsciiStrLen (HTTP_CRLF_STR);
1119 if (CompareMem (Tmp, HTTP_CRLF_STR, AsciiStrLen (HTTP_CRLF_STR)) == 0) {
1120 SizeofHeaders = 0;
1121 } else {
1122 SizeofHeaders = SizeofHeaders - (Tmp - HttpHeaders);
1123 }
1124
1125 HttpMsg->Data.Response->StatusCode = HttpMappingToStatusCode (StatusCode);
1126 HttpInstance->StatusCode = StatusCode;
1127
1128 Status = EFI_NOT_READY;
1129 ValueInItem = NULL;
1130
1131 //
1132 // In cases of PUT/POST/PATCH, after an initial request-response pair, we would do a
1133 // continuous request without a response call. So, we would not do an insert of
1134 // TxToken. After we have sent the complete file, we will call a response to get
1135 // a final response from server. In such a case, we would not have any TxTokens.
1136 // Hence, check that case before doing a NetMapRemoveHead.
1137 //
1138 if (!NetMapIsEmpty (&HttpInstance->TxTokens)) {
1139 NetMapRemoveHead (&HttpInstance->TxTokens, (VOID**) &ValueInItem);
1140 if (ValueInItem == NULL) {
1141 goto Error;
1142 }
1143
1144 //
1145 // The first Tx Token not transmitted yet, insert back and return error.
1146 //
1147 if (!ValueInItem->TcpWrap.IsTxDone) {
1148 goto Error2;
1149 }
1150 }
1151
1152 if (SizeofHeaders != 0) {
1153 HeaderTmp = AllocateZeroPool (SizeofHeaders);
1154 if (HeaderTmp == NULL) {
1155 Status = EFI_OUT_OF_RESOURCES;
1156 goto Error2;
1157 }
1158
1159 CopyMem (HeaderTmp, Tmp, SizeofHeaders);
1160 FreePool (HttpHeaders);
1161 HttpHeaders = HeaderTmp;
1162
1163 //
1164 // Check whether the EFI_HTTP_UTILITIES_PROTOCOL is available.
1165 //
1166 if (mHttpUtilities == NULL) {
1167 Status = EFI_NOT_READY;
1168 goto Error2;
1169 }
1170
1171 //
1172 // Parse the HTTP header into array of key/value pairs.
1173 //
1174 Status = mHttpUtilities->Parse (
1175 mHttpUtilities,
1176 HttpHeaders,
1177 SizeofHeaders,
1178 &HttpMsg->Headers,
1179 &HttpMsg->HeaderCount
1180 );
1181 if (EFI_ERROR (Status)) {
1182 goto Error2;
1183 }
1184
1185 FreePool (HttpHeaders);
1186 HttpHeaders = NULL;
1187
1188
1189 //
1190 // Init message-body parser by header information.
1191 //
1192 Status = HttpInitMsgParser (
1193 HttpInstance->Method,
1194 HttpMsg->Data.Response->StatusCode,
1195 HttpMsg->HeaderCount,
1196 HttpMsg->Headers,
1197 HttpBodyParserCallback,
1198 (VOID *) (&HttpInstance->CallbackData),
1199 &HttpInstance->MsgParser
1200 );
1201 if (EFI_ERROR (Status)) {
1202 goto Error2;
1203 }
1204
1205 //
1206 // Check whether we received a complete HTTP message.
1207 //
1208 if (HttpInstance->CacheBody != NULL) {
1209 //
1210 // Record the CallbackData data.
1211 //
1212 HttpInstance->CallbackData.Wrap = (VOID *) Wrap;
1213 HttpInstance->CallbackData.ParseData = (VOID *) HttpInstance->CacheBody;
1214 HttpInstance->CallbackData.ParseDataLength = HttpInstance->CacheLen;
1215
1216 //
1217 // Parse message with CallbackData data.
1218 //
1219 Status = HttpParseMessageBody (HttpInstance->MsgParser, HttpInstance->CacheLen, HttpInstance->CacheBody);
1220 if (EFI_ERROR (Status)) {
1221 goto Error2;
1222 }
1223 }
1224
1225 if (HttpIsMessageComplete (HttpInstance->MsgParser)) {
1226 //
1227 // Free the MsgParse since we already have a full HTTP message.
1228 //
1229 HttpFreeMsgParser (HttpInstance->MsgParser);
1230 HttpInstance->MsgParser = NULL;
1231 }
1232 }
1233
1234 if ((HttpMsg->Body == NULL) || (HttpMsg->BodyLength == 0)) {
1235 Status = EFI_SUCCESS;
1236 goto Exit;
1237 }
1238 }
1239
1240 //
1241 // Receive the response body.
1242 //
1243 BodyLen = 0;
1244
1245 //
1246 // First check whether we cached some data.
1247 //
1248 if (HttpInstance->CacheBody != NULL) {
1249 //
1250 // Calculate the length of the cached data.
1251 //
1252 if (HttpInstance->NextMsg != NULL) {
1253 //
1254 // We have a cached HTTP message which includes a part of HTTP header of next message.
1255 //
1256 BodyLen = HttpInstance->NextMsg - (HttpInstance->CacheBody + HttpInstance->CacheOffset);
1257 } else {
1258 BodyLen = HttpInstance->CacheLen - HttpInstance->CacheOffset;
1259 }
1260
1261 if (BodyLen > 0) {
1262 //
1263 // We have some cached data. Just copy the data and return.
1264 //
1265 if (HttpMsg->BodyLength < BodyLen) {
1266 CopyMem (HttpMsg->Body, HttpInstance->CacheBody + HttpInstance->CacheOffset, HttpMsg->BodyLength);
1267 HttpInstance->CacheOffset = HttpInstance->CacheOffset + HttpMsg->BodyLength;
1268 } else {
1269 //
1270 // Copy all cached data out.
1271 //
1272 CopyMem (HttpMsg->Body, HttpInstance->CacheBody + HttpInstance->CacheOffset, BodyLen);
1273 HttpInstance->CacheOffset = BodyLen + HttpInstance->CacheOffset;
1274 HttpMsg->BodyLength = BodyLen;
1275
1276 if (HttpInstance->NextMsg == NULL) {
1277 //
1278 // There is no HTTP header of next message. Just free the cache buffer.
1279 //
1280 FreePool (HttpInstance->CacheBody);
1281 HttpInstance->CacheBody = NULL;
1282 HttpInstance->NextMsg = NULL;
1283 HttpInstance->CacheOffset = 0;
1284 }
1285 }
1286 //
1287 // Return since we aready received required data.
1288 //
1289 Status = EFI_SUCCESS;
1290 goto Exit;
1291 }
1292
1293 if (BodyLen == 0 && HttpInstance->MsgParser == NULL) {
1294 //
1295 // We received a complete HTTP message, and we don't have more data to return to caller.
1296 //
1297 HttpMsg->BodyLength = 0;
1298 Status = EFI_SUCCESS;
1299 goto Exit;
1300 }
1301 }
1302
1303 ASSERT (HttpInstance->MsgParser != NULL);
1304
1305 //
1306 // We still need receive more data when there is no cache data and MsgParser is not NULL;
1307 //
1308 if (!HttpInstance->UseHttps) {
1309 Status = HttpTcpReceiveBody (Wrap, HttpMsg);
1310
1311 if (EFI_ERROR (Status)) {
1312 goto Error2;
1313 }
1314
1315 } else {
1316 if (HttpInstance->TimeoutEvent == NULL) {
1317 //
1318 // Create TimeoutEvent for response
1319 //
1320 Status = gBS->CreateEvent (
1321 EVT_TIMER,
1322 TPL_CALLBACK,
1323 NULL,
1324 NULL,
1325 &HttpInstance->TimeoutEvent
1326 );
1327 if (EFI_ERROR (Status)) {
1328 goto Error2;
1329 }
1330 }
1331
1332 //
1333 // Start the timer, and wait Timeout seconds to receive the body packet.
1334 //
1335 Status = gBS->SetTimer (HttpInstance->TimeoutEvent, TimerRelative, HTTP_RESPONSE_TIMEOUT * TICKS_PER_SECOND);
1336 if (EFI_ERROR (Status)) {
1337 goto Error2;
1338 }
1339
1340 Status = HttpsReceive (HttpInstance, &Fragment, HttpInstance->TimeoutEvent);
1341
1342 gBS->SetTimer (HttpInstance->TimeoutEvent, TimerCancel, 0);
1343
1344 if (EFI_ERROR (Status)) {
1345 goto Error2;
1346 }
1347
1348 //
1349 // Process the received the body packet.
1350 //
1351 HttpMsg->BodyLength = MIN (Fragment.Len, (UINT32) HttpMsg->BodyLength);
1352
1353 CopyMem (HttpMsg->Body, Fragment.Bulk, HttpMsg->BodyLength);
1354
1355 //
1356 // Record the CallbackData data.
1357 //
1358 HttpInstance->CallbackData.Wrap = (VOID *) Wrap;
1359 HttpInstance->CallbackData.ParseData = HttpMsg->Body;
1360 HttpInstance->CallbackData.ParseDataLength = HttpMsg->BodyLength;
1361
1362 //
1363 // Parse Body with CallbackData data.
1364 //
1365 Status = HttpParseMessageBody (
1366 HttpInstance->MsgParser,
1367 HttpMsg->BodyLength,
1368 HttpMsg->Body
1369 );
1370 if (EFI_ERROR (Status)) {
1371 goto Error2;
1372 }
1373
1374 if (HttpIsMessageComplete (HttpInstance->MsgParser)) {
1375 //
1376 // Free the MsgParse since we already have a full HTTP message.
1377 //
1378 HttpFreeMsgParser (HttpInstance->MsgParser);
1379 HttpInstance->MsgParser = NULL;
1380 }
1381
1382 //
1383 // Check whether there is the next message header in the HttpMsg->Body.
1384 //
1385 if (HttpInstance->NextMsg != NULL) {
1386 HttpMsg->BodyLength = HttpInstance->NextMsg - (CHAR8 *) HttpMsg->Body;
1387 }
1388
1389 HttpInstance->CacheLen = Fragment.Len - HttpMsg->BodyLength;
1390 if (HttpInstance->CacheLen != 0) {
1391 if (HttpInstance->CacheBody != NULL) {
1392 FreePool (HttpInstance->CacheBody);
1393 }
1394
1395 HttpInstance->CacheBody = AllocateZeroPool (HttpInstance->CacheLen);
1396 if (HttpInstance->CacheBody == NULL) {
1397 Status = EFI_OUT_OF_RESOURCES;
1398 goto Error2;
1399 }
1400
1401 CopyMem (HttpInstance->CacheBody, Fragment.Bulk + HttpMsg->BodyLength, HttpInstance->CacheLen);
1402 HttpInstance->CacheOffset = 0;
1403 if (HttpInstance->NextMsg != NULL) {
1404 HttpInstance->NextMsg = HttpInstance->CacheBody;
1405 }
1406 }
1407
1408 if (Fragment.Bulk != NULL) {
1409 FreePool (Fragment.Bulk);
1410 Fragment.Bulk = NULL;
1411 }
1412
1413 goto Exit;
1414 }
1415
1416 return Status;
1417
1418 Exit:
1419 Item = NetMapFindKey (&Wrap->HttpInstance->RxTokens, Wrap->HttpToken);
1420 if (Item != NULL) {
1421 NetMapRemoveItem (&Wrap->HttpInstance->RxTokens, Item, NULL);
1422 }
1423
1424 if (HttpInstance->StatusCode >= HTTP_ERROR_OR_NOT_SUPPORT_STATUS_CODE) {
1425 Token->Status = EFI_HTTP_ERROR;
1426 } else {
1427 Token->Status = Status;
1428 }
1429
1430 gBS->SignalEvent (Token->Event);
1431 HttpCloseTcpRxEvent (Wrap);
1432 FreePool (Wrap);
1433 return Status;
1434
1435 Error2:
1436 if (ValueInItem != NULL) {
1437 NetMapInsertHead (&HttpInstance->TxTokens, ValueInItem->HttpToken, ValueInItem);
1438 }
1439
1440 Error:
1441 Item = NetMapFindKey (&Wrap->HttpInstance->RxTokens, Wrap->HttpToken);
1442 if (Item != NULL) {
1443 NetMapRemoveItem (&Wrap->HttpInstance->RxTokens, Item, NULL);
1444 }
1445
1446 if (!HttpInstance->UseHttps) {
1447 HttpTcpTokenCleanup (Wrap);
1448 } else {
1449 FreePool (Wrap);
1450 }
1451
1452 if (HttpHeaders != NULL) {
1453 FreePool (HttpHeaders);
1454 HttpHeaders = NULL;
1455 }
1456
1457 if (Fragment.Bulk != NULL) {
1458 FreePool (Fragment.Bulk);
1459 Fragment.Bulk = NULL;
1460 }
1461
1462 if (HttpMsg->Headers != NULL) {
1463 FreePool (HttpMsg->Headers);
1464 HttpMsg->Headers = NULL;
1465 }
1466
1467 if (HttpInstance->CacheBody != NULL) {
1468 FreePool (HttpInstance->CacheBody);
1469 HttpInstance->CacheBody = NULL;
1470 }
1471
1472 if (HttpInstance->StatusCode >= HTTP_ERROR_OR_NOT_SUPPORT_STATUS_CODE) {
1473 Token->Status = EFI_HTTP_ERROR;
1474 } else {
1475 Token->Status = Status;
1476 }
1477
1478 gBS->SignalEvent (Token->Event);
1479
1480 return Status;
1481
1482 }
1483
1484
1485 /**
1486 The Response() function queues an HTTP response to this HTTP instance, similar to
1487 Receive() function in the EFI TCP driver. When the HTTP response is received successfully,
1488 or if there is an error, Status in token will be updated and Event will be signaled.
1489
1490 The HTTP driver will queue a receive token to the underlying TCP instance. When data
1491 is received in the underlying TCP instance, the data will be parsed and Token will
1492 be populated with the response data. If the data received from the remote host
1493 contains an incomplete or invalid HTTP header, the HTTP driver will continue waiting
1494 (asynchronously) for more data to be sent from the remote host before signaling
1495 Event in Token.
1496
1497 It is the responsibility of the caller to allocate a buffer for Body and specify the
1498 size in BodyLength. If the remote host provides a response that contains a content
1499 body, up to BodyLength bytes will be copied from the receive buffer into Body and
1500 BodyLength will be updated with the amount of bytes received and copied to Body. This
1501 allows the client to download a large file in chunks instead of into one contiguous
1502 block of memory. Similar to HTTP request, if Body is not NULL and BodyLength is
1503 non-zero and all other fields are NULL or 0, the HTTP driver will queue a receive
1504 token to underlying TCP instance. If data arrives in the receive buffer, up to
1505 BodyLength bytes of data will be copied to Body. The HTTP driver will then update
1506 BodyLength with the amount of bytes received and copied to Body.
1507
1508 If the HTTP driver does not have an open underlying TCP connection with the host
1509 specified in the response URL, Request() will return EFI_ACCESS_DENIED. This is
1510 consistent with RFC 2616 recommendation that HTTP clients should attempt to maintain
1511 an open TCP connection between client and host.
1512
1513 @param[in] This Pointer to EFI_HTTP_PROTOCOL instance.
1514 @param[in] Token Pointer to storage containing HTTP response token.
1515
1516 @retval EFI_SUCCESS Allocation succeeded.
1517 @retval EFI_NOT_STARTED This EFI HTTP Protocol instance has not been
1518 initialized.
1519 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:
1520 This is NULL.
1521 Token is NULL.
1522 Token->Message->Headers is NULL.
1523 Token->Message is NULL.
1524 Token->Message->Body is not NULL,
1525 Token->Message->BodyLength is non-zero, and
1526 Token->Message->Data is NULL, but a previous call to
1527 Response() has not been completed successfully.
1528 @retval EFI_OUT_OF_RESOURCES Could not allocate enough system resources.
1529 @retval EFI_ACCESS_DENIED An open TCP connection is not present with the host
1530 specified by response URL.
1531 **/
1532 EFI_STATUS
1533 EFIAPI
1534 EfiHttpResponse (
1535 IN EFI_HTTP_PROTOCOL *This,
1536 IN EFI_HTTP_TOKEN *Token
1537 )
1538 {
1539 EFI_STATUS Status;
1540 EFI_HTTP_MESSAGE *HttpMsg;
1541 HTTP_PROTOCOL *HttpInstance;
1542 HTTP_TOKEN_WRAP *Wrap;
1543
1544 if ((This == NULL) || (Token == NULL)) {
1545 return EFI_INVALID_PARAMETER;
1546 }
1547
1548 HttpMsg = Token->Message;
1549 if (HttpMsg == NULL) {
1550 return EFI_INVALID_PARAMETER;
1551 }
1552
1553 HttpInstance = HTTP_INSTANCE_FROM_PROTOCOL (This);
1554
1555 if (HttpInstance->State != HTTP_STATE_TCP_CONNECTED) {
1556 return EFI_NOT_STARTED;
1557 }
1558
1559 //
1560 // Check whether the token already existed.
1561 //
1562 if (EFI_ERROR (NetMapIterate (&HttpInstance->RxTokens, HttpTokenExist, Token))) {
1563 return EFI_ACCESS_DENIED;
1564 }
1565
1566 Wrap = AllocateZeroPool (sizeof (HTTP_TOKEN_WRAP));
1567 if (Wrap == NULL) {
1568 return EFI_OUT_OF_RESOURCES;
1569 }
1570
1571 Wrap->HttpInstance = HttpInstance;
1572 Wrap->HttpToken = Token;
1573
1574 //
1575 // Notes: For Https, receive token wrapped in HTTP_TOKEN_WRAP is not used to
1576 // receive the https response. A special TlsRxToken is used for receiving TLS
1577 // related messages. It should be a blocking response.
1578 //
1579 if (!HttpInstance->UseHttps) {
1580 Status = HttpCreateTcpRxEvent (Wrap);
1581 if (EFI_ERROR (Status)) {
1582 goto Error;
1583 }
1584 }
1585
1586 Status = NetMapInsertTail (&HttpInstance->RxTokens, Token, Wrap);
1587 if (EFI_ERROR (Status)) {
1588 goto Error;
1589 }
1590
1591 //
1592 // If already have pending RxTokens, return directly.
1593 //
1594 if (NetMapGetCount (&HttpInstance->RxTokens) > 1) {
1595 return EFI_SUCCESS;
1596 }
1597
1598 return HttpResponseWorker (Wrap);
1599
1600 Error:
1601 if (Wrap != NULL) {
1602 if (Wrap->TcpWrap.Rx4Token.CompletionToken.Event != NULL) {
1603 gBS->CloseEvent (Wrap->TcpWrap.Rx4Token.CompletionToken.Event);
1604 }
1605
1606 if (Wrap->TcpWrap.Rx6Token.CompletionToken.Event != NULL) {
1607 gBS->CloseEvent (Wrap->TcpWrap.Rx6Token.CompletionToken.Event);
1608 }
1609 FreePool (Wrap);
1610 }
1611
1612 return Status;
1613 }
1614
1615 /**
1616 The Poll() function can be used by network drivers and applications to increase the
1617 rate that data packets are moved between the communication devices and the transmit
1618 and receive queues.
1619
1620 In some systems, the periodic timer event in the managed network driver may not poll
1621 the underlying communications device fast enough to transmit and/or receive all data
1622 packets without missing incoming packets or dropping outgoing packets. Drivers and
1623 applications that are experiencing packet loss should try calling the Poll() function
1624 more often.
1625
1626 @param[in] This Pointer to EFI_HTTP_PROTOCOL instance.
1627
1628 @retval EFI_SUCCESS Incoming or outgoing data was processed.
1629 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.
1630 @retval EFI_INVALID_PARAMETER This is NULL.
1631 @retval EFI_NOT_READY No incoming or outgoing data is processed.
1632 @retval EFI_NOT_STARTED This EFI HTTP Protocol instance has not been started.
1633
1634 **/
1635 EFI_STATUS
1636 EFIAPI
1637 EfiHttpPoll (
1638 IN EFI_HTTP_PROTOCOL *This
1639 )
1640 {
1641 EFI_STATUS Status;
1642 HTTP_PROTOCOL *HttpInstance;
1643
1644 if (This == NULL) {
1645 return EFI_INVALID_PARAMETER;
1646 }
1647
1648 HttpInstance = HTTP_INSTANCE_FROM_PROTOCOL (This);
1649
1650 if (HttpInstance->State != HTTP_STATE_TCP_CONNECTED) {
1651 return EFI_NOT_STARTED;
1652 }
1653
1654 if (HttpInstance->LocalAddressIsIPv6) {
1655 if (HttpInstance->Tcp6 == NULL) {
1656 return EFI_NOT_STARTED;
1657 }
1658 Status = HttpInstance->Tcp6->Poll (HttpInstance->Tcp6);
1659 } else {
1660 if (HttpInstance->Tcp4 == NULL) {
1661 return EFI_NOT_STARTED;
1662 }
1663 Status = HttpInstance->Tcp4->Poll (HttpInstance->Tcp4);
1664 }
1665
1666 DispatchDpc ();
1667
1668 return Status;
1669 }