]> git.proxmox.com Git - mirror_edk2.git/blame - NetworkPkg/TcpDxe/SockImpl.c
NetworkPkg/TcpDxe: Fix GCC build failure
[mirror_edk2.git] / NetworkPkg / TcpDxe / SockImpl.c
CommitLineData
a3bcde70
HT
1/** @file\r
2 Implementation of the Socket.\r
3\r
5ffe214a 4 Copyright (c) 2009 - 2016, Intel Corporation. All rights reserved.<BR>\r
a3bcde70
HT
5\r
6 This program and the accompanying materials\r
7 are licensed and made available under the terms and conditions of the BSD License\r
8 which accompanies this distribution. The full text of the license may be found at\r
9 http://opensource.org/licenses/bsd-license.php.\r
10\r
11 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
12 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
13\r
14**/\r
15\r
16#include "SockImpl.h"\r
17\r
18/**\r
19 Get the first buffer block in the specific socket buffer.\r
20\r
21 @param[in] Sockbuf Pointer to the socket buffer.\r
22\r
23 @return Pointer to the first buffer in the queue. NULL if the queue is empty.\r
24\r
25**/\r
26NET_BUF *\r
27SockBufFirst (\r
28 IN SOCK_BUFFER *Sockbuf\r
29 )\r
30{\r
31 LIST_ENTRY *NetbufList;\r
32\r
33 NetbufList = &(Sockbuf->DataQueue->BufList);\r
34\r
35 if (IsListEmpty (NetbufList)) {\r
36 return NULL;\r
37 }\r
38\r
39 return NET_LIST_HEAD (NetbufList, NET_BUF, List);\r
40}\r
41\r
42/**\r
43 Get the next buffer block in the specific socket buffer.\r
44\r
45 @param[in] Sockbuf Pointer to the socket buffer.\r
46 @param[in] SockEntry Pointer to the buffer block prior to the required one.\r
47\r
48 @return Pointer to the buffer block next to SockEntry. NULL if SockEntry is\r
49 the tail or head entry.\r
50\r
51**/\r
52NET_BUF *\r
53SockBufNext (\r
54 IN SOCK_BUFFER *Sockbuf,\r
55 IN NET_BUF *SockEntry\r
56 )\r
57{\r
58 LIST_ENTRY *NetbufList;\r
59\r
60 NetbufList = &(Sockbuf->DataQueue->BufList);\r
61\r
62 if ((SockEntry->List.ForwardLink == NetbufList) ||\r
63 (SockEntry->List.BackLink == &SockEntry->List) ||\r
64 (SockEntry->List.ForwardLink == &SockEntry->List)\r
65 ) {\r
66\r
67 return NULL;\r
68 }\r
69\r
70 return NET_LIST_USER_STRUCT (SockEntry->List.ForwardLink, NET_BUF, List);\r
71}\r
72\r
73/**\r
74 User provided callback function for NetbufFromExt.\r
75\r
76 @param[in] Event The Event this notify function registered to, ignored.\r
77\r
78**/\r
79VOID\r
80EFIAPI\r
81SockFreeFoo (\r
82 IN EFI_EVENT Event\r
83 )\r
84{\r
85 return;\r
86}\r
87\r
88/**\r
89 Get the length of the data that can be retrieved from the socket\r
90 receive buffer.\r
91\r
92 @param[in] SockBuffer Pointer to the socket receive buffer.\r
93 @param[out] IsUrg Pointer to a BOOLEAN variable.\r
94 If TRUE the data is OOB.\r
95 @param[in] BufLen The maximum length of the data buffer to\r
96 store the received data in the socket layer.\r
97\r
98 @return The length of the data can be retreived.\r
99\r
100**/\r
101UINT32\r
102SockTcpDataToRcv (\r
103 IN SOCK_BUFFER *SockBuffer,\r
104 OUT BOOLEAN *IsUrg,\r
105 IN UINT32 BufLen\r
106 )\r
107{\r
108 NET_BUF *RcvBufEntry;\r
109 UINT32 DataLen;\r
110 TCP_RSV_DATA *TcpRsvData;\r
111 BOOLEAN Urg;\r
112\r
113 ASSERT ((SockBuffer != NULL) && (IsUrg != NULL) && (BufLen > 0));\r
114\r
115 //\r
116 // Get the first socket receive buffer\r
117 //\r
118 RcvBufEntry = SockBufFirst (SockBuffer);\r
119 ASSERT (RcvBufEntry != NULL);\r
120\r
121 TcpRsvData = (TCP_RSV_DATA *) RcvBufEntry->ProtoData;\r
122\r
123 //\r
124 // Check whether the receive data is out of bound. If yes, calculate the maximum\r
125 // allowed length of the urgent data and output it.\r
126 //\r
127 *IsUrg = (BOOLEAN) ((TcpRsvData->UrgLen > 0) ? TRUE : FALSE);\r
128\r
129 if (*IsUrg && (TcpRsvData->UrgLen < RcvBufEntry->TotalSize)) {\r
130\r
131 DataLen = MIN (TcpRsvData->UrgLen, BufLen);\r
132\r
133 if (DataLen < TcpRsvData->UrgLen) {\r
134 TcpRsvData->UrgLen = TcpRsvData->UrgLen - DataLen;\r
135 } else {\r
136 TcpRsvData->UrgLen = 0;\r
137 }\r
138\r
139 return DataLen;\r
140\r
141 }\r
142\r
143 //\r
144 // Process the next socket receive buffer to get the maximum allowed length\r
145 // of the received data.\r
146 //\r
147 DataLen = RcvBufEntry->TotalSize;\r
148\r
149 RcvBufEntry = SockBufNext (SockBuffer, RcvBufEntry);\r
150\r
151 while ((BufLen > DataLen) && (RcvBufEntry != NULL)) {\r
152\r
153 TcpRsvData = (TCP_RSV_DATA *) RcvBufEntry->ProtoData;\r
154\r
155 Urg = (BOOLEAN) ((TcpRsvData->UrgLen > 0) ? TRUE : FALSE);\r
156\r
157 if (*IsUrg != Urg) {\r
158 break;\r
159 }\r
160\r
161 if (*IsUrg && TcpRsvData->UrgLen < RcvBufEntry->TotalSize) {\r
162\r
163 if (TcpRsvData->UrgLen + DataLen < BufLen) {\r
164 TcpRsvData->UrgLen = 0;\r
165 } else {\r
166 TcpRsvData->UrgLen = TcpRsvData->UrgLen - (BufLen - DataLen);\r
167 }\r
168\r
169 return MIN (TcpRsvData->UrgLen + DataLen, BufLen);\r
170\r
171 }\r
172\r
173 DataLen += RcvBufEntry->TotalSize;\r
174\r
175 RcvBufEntry = SockBufNext (SockBuffer, RcvBufEntry);\r
176 }\r
177\r
178 DataLen = MIN (BufLen, DataLen);\r
179 return DataLen;\r
180}\r
181\r
182/**\r
183 Copy data from socket buffer to an application provided receive buffer.\r
184\r
185 @param[in] Sock Pointer to the socket.\r
186 @param[in] TcpRxData Pointer to the application provided receive buffer.\r
187 @param[in] RcvdBytes The maximum length of the data can be copied.\r
188 @param[in] IsUrg If TRUE the data is Out of Bound, FALSE the data is normal.\r
189\r
190**/\r
191VOID\r
192SockSetTcpRxData (\r
193 IN SOCKET *Sock,\r
194 IN VOID *TcpRxData,\r
195 IN UINT32 RcvdBytes,\r
196 IN BOOLEAN IsUrg\r
197 )\r
198{\r
199 UINT32 Index;\r
200 UINT32 CopyBytes;\r
201 UINT32 OffSet;\r
202 EFI_TCP4_RECEIVE_DATA *RxData;\r
203 EFI_TCP4_FRAGMENT_DATA *Fragment;\r
204\r
205 RxData = (EFI_TCP4_RECEIVE_DATA *) TcpRxData;\r
206\r
207 OffSet = 0;\r
208\r
209 ASSERT (RxData->DataLength >= RcvdBytes);\r
210\r
211 RxData->DataLength = RcvdBytes;\r
212 RxData->UrgentFlag = IsUrg;\r
213\r
214 //\r
215 // Copy the CopyBytes data from socket receive buffer to RxData.\r
216 //\r
217 for (Index = 0; (Index < RxData->FragmentCount) && (RcvdBytes > 0); Index++) {\r
218\r
219 Fragment = &RxData->FragmentTable[Index];\r
220 CopyBytes = MIN ((UINT32) (Fragment->FragmentLength), RcvdBytes);\r
221\r
222 NetbufQueCopy (\r
223 Sock->RcvBuffer.DataQueue,\r
224 OffSet,\r
225 CopyBytes,\r
226 Fragment->FragmentBuffer\r
227 );\r
228\r
229 Fragment->FragmentLength = CopyBytes;\r
230 RcvdBytes -= CopyBytes;\r
231 OffSet += CopyBytes;\r
232 }\r
233}\r
234\r
235/**\r
236 Process the send token.\r
237\r
238 @param[in, out] Sock Pointer to the socket.\r
239\r
240**/\r
241VOID\r
242SockProcessSndToken (\r
243 IN OUT SOCKET *Sock\r
244 )\r
245{\r
246 UINT32 FreeSpace;\r
247 SOCK_TOKEN *SockToken;\r
248 UINT32 DataLen;\r
249 SOCK_IO_TOKEN *SndToken;\r
250 EFI_TCP4_TRANSMIT_DATA *TxData;\r
251 EFI_STATUS Status;\r
252\r
253 ASSERT ((Sock != NULL) && (SockStream == Sock->Type));\r
254\r
255 FreeSpace = SockGetFreeSpace (Sock, SOCK_SND_BUF);\r
256\r
257 //\r
258 // to determine if process a send token using\r
259 // socket layer flow control policy\r
260 //\r
261 while ((FreeSpace >= Sock->SndBuffer.LowWater) && !IsListEmpty (&Sock->SndTokenList)) {\r
262\r
263 SockToken = NET_LIST_HEAD (\r
264 &(Sock->SndTokenList),\r
265 SOCK_TOKEN,\r
266 TokenList\r
267 );\r
268\r
269 //\r
270 // process this token\r
271 //\r
272 RemoveEntryList (&(SockToken->TokenList));\r
273 InsertTailList (\r
274 &(Sock->ProcessingSndTokenList),\r
275 &(SockToken->TokenList)\r
276 );\r
277\r
278 //\r
279 // Proceess it in the light of SockType\r
280 //\r
281 SndToken = (SOCK_IO_TOKEN *) SockToken->Token;\r
282 TxData = SndToken->Packet.TxData;\r
283\r
284 DataLen = TxData->DataLength;\r
285 Status = SockProcessTcpSndData (Sock, TxData);\r
286\r
287 if (EFI_ERROR (Status)) {\r
288 goto OnError;\r
289 }\r
290\r
291 if (DataLen >= FreeSpace) {\r
292 FreeSpace = 0;\r
293\r
294 } else {\r
295 FreeSpace -= DataLen;\r
296\r
297 }\r
298 }\r
299\r
300 return;\r
301\r
302OnError:\r
303\r
304 RemoveEntryList (&SockToken->TokenList);\r
305 SIGNAL_TOKEN (SockToken->Token, Status);\r
306 FreePool (SockToken);\r
307}\r
308\r
309/**\r
310 Get received data from the socket layer to the receive token.\r
311\r
312 @param[in, out] Sock Pointer to the socket.\r
313 @param[in, out] RcvToken Pointer to the application provided receive token.\r
314\r
315 @return The length of data received in this token.\r
316\r
317**/\r
318UINT32\r
319SockProcessRcvToken (\r
320 IN OUT SOCKET *Sock,\r
321 IN OUT SOCK_IO_TOKEN *RcvToken\r
322 )\r
323{\r
324 UINT32 TokenRcvdBytes;\r
325 EFI_TCP4_RECEIVE_DATA *RxData;\r
326 BOOLEAN IsUrg;\r
327\r
328 ASSERT (Sock != NULL);\r
329\r
330 ASSERT (SockStream == Sock->Type);\r
331\r
332 RxData = RcvToken->Packet.RxData;\r
333\r
334 TokenRcvdBytes = SockTcpDataToRcv (\r
335 &Sock->RcvBuffer,\r
336 &IsUrg,\r
337 RxData->DataLength\r
338 );\r
339\r
340 //\r
341 // Copy data from RcvBuffer of socket to user\r
342 // provided RxData and set the fields in TCP RxData\r
343 //\r
344 SockSetTcpRxData (Sock, RxData, TokenRcvdBytes, IsUrg);\r
345\r
346 NetbufQueTrim (Sock->RcvBuffer.DataQueue, TokenRcvdBytes);\r
347 SIGNAL_TOKEN (&(RcvToken->Token), EFI_SUCCESS);\r
348\r
349 return TokenRcvdBytes;\r
350}\r
351\r
352/**\r
353 Process the TCP send data, buffer the tcp txdata, and append\r
354 the buffer to socket send buffer, then try to send it.\r
355\r
356 @param[in] Sock Pointer to the socket.\r
357 @param[in] TcpTxData Pointer to the application provided send buffer.\r
358\r
359 @retval EFI_SUCCESS The operation completed successfully.\r
360 @retval EFI_OUT_OF_RESOURCES Failed due to resource limits.\r
361\r
362**/\r
363EFI_STATUS\r
364SockProcessTcpSndData (\r
365 IN SOCKET *Sock,\r
366 IN VOID *TcpTxData\r
367 )\r
368{\r
369 NET_BUF *SndData;\r
370 EFI_STATUS Status;\r
371 EFI_TCP4_TRANSMIT_DATA *TxData;\r
372\r
373 TxData = (EFI_TCP4_TRANSMIT_DATA *) TcpTxData;\r
374\r
375 //\r
376 // transform this TxData into a NET_BUFFER\r
377 // and insert it into Sock->SndBuffer\r
378 //\r
379 SndData = NetbufFromExt (\r
380 (NET_FRAGMENT *) TxData->FragmentTable,\r
381 TxData->FragmentCount,\r
382 0,\r
383 0,\r
384 SockFreeFoo,\r
385 NULL\r
386 );\r
387\r
388 if (NULL == SndData) {\r
389 DEBUG (\r
390 (EFI_D_ERROR,\r
391 "SockKProcessSndData: Failed to call NetBufferFromExt\n")\r
392 );\r
393\r
394 return EFI_OUT_OF_RESOURCES;\r
395 }\r
396\r
397 NetbufQueAppend (Sock->SndBuffer.DataQueue, SndData);\r
398\r
399 //\r
400 // notify the low layer protocol to handle this send token\r
401 //\r
402 if (TxData->Urgent) {\r
403 Status = Sock->ProtoHandler (Sock, SOCK_SNDURG, NULL);\r
404\r
405 if (EFI_ERROR (Status)) {\r
406 return Status;\r
407 }\r
408 }\r
409\r
410 if (TxData->Push) {\r
411 Status = Sock->ProtoHandler (Sock, SOCK_SNDPUSH, NULL);\r
412\r
413 if (EFI_ERROR (Status)) {\r
414 return Status;\r
415 }\r
416 }\r
417\r
418 //\r
419 // low layer protocol should really handle the sending\r
420 // process when catching SOCK_SND request\r
421 //\r
422 Status = Sock->ProtoHandler (Sock, SOCK_SND, NULL);\r
423\r
424 if (EFI_ERROR (Status)) {\r
425 return Status;\r
426 }\r
427\r
428 return EFI_SUCCESS;\r
429}\r
430\r
431/**\r
432 Flush the tokens in the specific token list.\r
433\r
434 @param[in] Sock Pointer to the socket.\r
435 @param[in, out] PendingTokenList Pointer to the token list to be flushed.\r
436\r
437**/\r
438VOID\r
439SockFlushPendingToken (\r
440 IN SOCKET *Sock,\r
441 IN OUT LIST_ENTRY *PendingTokenList\r
442 )\r
443{\r
444 SOCK_TOKEN *SockToken;\r
445 SOCK_COMPLETION_TOKEN *Token;\r
446\r
447 ASSERT ((Sock != NULL) && (PendingTokenList != NULL));\r
448\r
449 while (!IsListEmpty (PendingTokenList)) {\r
450 SockToken = NET_LIST_HEAD (\r
451 PendingTokenList,\r
452 SOCK_TOKEN,\r
453 TokenList\r
454 );\r
455\r
456 Token = SockToken->Token;\r
457 SIGNAL_TOKEN (Token, Sock->SockError);\r
458\r
459 RemoveEntryList (&(SockToken->TokenList));\r
460 FreePool (SockToken);\r
461 }\r
462}\r
463\r
464/**\r
465 Wake up the connection token while the connection is successfully established,\r
466 then try to process any pending send token.\r
467\r
468 @param[in, out] Sock Pointer to the socket.\r
469\r
470**/\r
471VOID\r
472SockWakeConnToken (\r
473 IN OUT SOCKET *Sock\r
474 )\r
475{\r
476 ASSERT (Sock->ConnectionToken != NULL);\r
477\r
478 SIGNAL_TOKEN (Sock->ConnectionToken, EFI_SUCCESS);\r
479 Sock->ConnectionToken = NULL;\r
480\r
481 //\r
482 // check to see if some pending send token existed?\r
483 //\r
484 SockProcessSndToken (Sock);\r
485}\r
486\r
487/**\r
488 Wake up the listen token while the connection is established successfully.\r
489\r
490 @param[in, out] Sock Pointer to the socket.\r
491\r
492**/\r
493VOID\r
494SockWakeListenToken (\r
495 IN OUT SOCKET *Sock\r
496 )\r
497{\r
498 SOCKET *Parent;\r
499 SOCK_TOKEN *SockToken;\r
500 EFI_TCP4_LISTEN_TOKEN *ListenToken;\r
501\r
502 Parent = Sock->Parent;\r
503\r
504 ASSERT ((Parent != NULL) && SOCK_IS_LISTENING (Parent) && SOCK_IS_CONNECTED (Sock));\r
505\r
506 if (!IsListEmpty (&Parent->ListenTokenList)) {\r
507 SockToken = NET_LIST_HEAD (\r
508 &Parent->ListenTokenList,\r
509 SOCK_TOKEN,\r
510 TokenList\r
511 );\r
512\r
513 ListenToken = (EFI_TCP4_LISTEN_TOKEN *) SockToken->Token;\r
514 ListenToken->NewChildHandle = Sock->SockHandle;\r
515\r
516 SIGNAL_TOKEN (&(ListenToken->CompletionToken), EFI_SUCCESS);\r
517\r
518 RemoveEntryList (&SockToken->TokenList);\r
519 FreePool (SockToken);\r
520\r
521 RemoveEntryList (&Sock->ConnectionList);\r
522\r
523 Parent->ConnCnt--;\r
524 DEBUG (\r
525 (EFI_D_INFO,\r
526 "SockWakeListenToken: accept a socket, now conncnt is %d",\r
527 Parent->ConnCnt)\r
528 );\r
529\r
530 Sock->Parent = NULL;\r
531 }\r
532}\r
533\r
534/**\r
535 Wake up the receive token while some data is received.\r
536\r
537 @param[in, out] Sock Pointer to the socket.\r
538\r
539**/\r
540VOID\r
541SockWakeRcvToken (\r
542 IN OUT SOCKET *Sock\r
543 )\r
544{\r
545 UINT32 RcvdBytes;\r
546 UINT32 TokenRcvdBytes;\r
547 SOCK_TOKEN *SockToken;\r
548 SOCK_IO_TOKEN *RcvToken;\r
549\r
550 ASSERT (Sock->RcvBuffer.DataQueue != NULL);\r
551\r
552 RcvdBytes = (Sock->RcvBuffer.DataQueue)->BufSize;\r
553\r
554 ASSERT (RcvdBytes > 0);\r
555\r
556 while (RcvdBytes > 0 && !IsListEmpty (&Sock->RcvTokenList)) {\r
557\r
558 SockToken = NET_LIST_HEAD (\r
559 &Sock->RcvTokenList,\r
560 SOCK_TOKEN,\r
561 TokenList\r
562 );\r
563\r
564 RcvToken = (SOCK_IO_TOKEN *) SockToken->Token;\r
565 TokenRcvdBytes = SockProcessRcvToken (Sock, RcvToken);\r
566\r
567 if (0 == TokenRcvdBytes) {\r
568 return ;\r
569 }\r
570\r
571 RemoveEntryList (&(SockToken->TokenList));\r
572 FreePool (SockToken);\r
573 RcvdBytes -= TokenRcvdBytes;\r
574 }\r
575}\r
576\r
5ffe214a
JW
577/**\r
578 Cancel the tokens in the specific token list.\r
579\r
580 @param[in] Token Pointer to the Token. If NULL, all tokens \r
581 in SpecifiedTokenList will be canceled. \r
582 @param[in, out] SpecifiedTokenList Pointer to the token list to be checked.\r
583 \r
584 @retval EFI_SUCCESS Cancel the tokens in the specific token listsuccessfully.\r
585 @retval EFI_NOT_FOUND The Token is not found in SpecifiedTokenList.\r
586 \r
587**/\r
588EFI_STATUS\r
589SockCancelToken (\r
590 IN SOCK_COMPLETION_TOKEN *Token,\r
591 IN OUT LIST_ENTRY *SpecifiedTokenList\r
592 )\r
593{\r
594 EFI_STATUS Status;\r
595 LIST_ENTRY *Entry;\r
5ffe214a
JW
596 SOCK_TOKEN *SockToken;\r
597\r
598 Status = EFI_SUCCESS;\r
599 Entry = NULL;\r
5ffe214a
JW
600 SockToken = NULL;\r
601\r
602 if (IsListEmpty (SpecifiedTokenList) && Token != NULL) {\r
603 return EFI_NOT_FOUND;\r
604 }\r
605 \r
606 //\r
607 // Iterate through the SpecifiedTokenList.\r
608 //\r
609 Entry = SpecifiedTokenList->ForwardLink;\r
610 while (Entry != SpecifiedTokenList) {\r
611 SockToken = NET_LIST_USER_STRUCT (Entry, SOCK_TOKEN, TokenList);\r
612 \r
613 if (Token == NULL) {\r
614 SIGNAL_TOKEN (SockToken->Token, EFI_ABORTED);\r
615 RemoveEntryList (&SockToken->TokenList);\r
616 FreePool (SockToken);\r
617 \r
618 Entry = SpecifiedTokenList->ForwardLink;\r
619 Status = EFI_SUCCESS;\r
620 } else {\r
621 if (Token == (VOID *) SockToken->Token) {\r
622 SIGNAL_TOKEN (Token, EFI_ABORTED);\r
623 RemoveEntryList (&(SockToken->TokenList));\r
624 FreePool (SockToken);\r
625 \r
626 return EFI_SUCCESS;\r
627 }\r
628\r
629 Status = EFI_NOT_FOUND;\r
630 \r
631 Entry = Entry->ForwardLink;\r
632 } \r
633 }\r
634\r
635 ASSERT (IsListEmpty (SpecifiedTokenList) || Token != NULL);\r
636 \r
637 return Status;\r
638}\r
639\r
a3bcde70
HT
640/**\r
641 Create a socket with initial data SockInitData.\r
642\r
643 @param[in] SockInitData Pointer to the initial data of the socket.\r
644\r
645 @return Pointer to the newly created socket, return NULL when an exception occurs.\r
646\r
647**/\r
648SOCKET *\r
649SockCreate (\r
650 IN SOCK_INIT_DATA *SockInitData\r
651 )\r
652{\r
653 SOCKET *Sock;\r
654 SOCKET *Parent;\r
655 EFI_STATUS Status;\r
656 EFI_GUID *TcpProtocolGuid;\r
657 UINTN ProtocolLength;\r
658\r
659 ASSERT ((SockInitData != NULL) && (SockInitData->ProtoHandler != NULL));\r
660 ASSERT (SockInitData->Type == SockStream);\r
661 ASSERT ((SockInitData->ProtoData != NULL) && (SockInitData->DataSize <= PROTO_RESERVED_LEN));\r
662\r
663 if (SockInitData->IpVersion == IP_VERSION_4) {\r
664 TcpProtocolGuid = &gEfiTcp4ProtocolGuid;\r
665 ProtocolLength = sizeof (EFI_TCP4_PROTOCOL);\r
666 } else {\r
667 TcpProtocolGuid = &gEfiTcp6ProtocolGuid;\r
668 ProtocolLength = sizeof (EFI_TCP6_PROTOCOL);\r
669 }\r
670\r
671\r
672 Parent = SockInitData->Parent;\r
673\r
674 if ((Parent != NULL) && (Parent->ConnCnt == Parent->BackLog)) {\r
675 DEBUG (\r
676 (EFI_D_ERROR,\r
677 "SockCreate: Socket parent has reached its connection limit with %d ConnCnt and %d BackLog\n",\r
678 Parent->ConnCnt,\r
679 Parent->BackLog)\r
680 );\r
681\r
682 return NULL;\r
683 }\r
684\r
685 Sock = AllocateZeroPool (sizeof (SOCKET));\r
686 if (NULL == Sock) {\r
687\r
688 DEBUG ((EFI_D_ERROR, "SockCreate: No resource to create a new socket\n"));\r
689 return NULL;\r
690 }\r
691\r
692 InitializeListHead (&Sock->Link);\r
693 InitializeListHead (&Sock->ConnectionList);\r
694 InitializeListHead (&Sock->ListenTokenList);\r
695 InitializeListHead (&Sock->RcvTokenList);\r
696 InitializeListHead (&Sock->SndTokenList);\r
697 InitializeListHead (&Sock->ProcessingSndTokenList);\r
698\r
699 EfiInitializeLock (&(Sock->Lock), TPL_CALLBACK);\r
700\r
701 Sock->SndBuffer.DataQueue = NetbufQueAlloc ();\r
702 if (NULL == Sock->SndBuffer.DataQueue) {\r
703 DEBUG (\r
704 (EFI_D_ERROR,\r
705 "SockCreate: No resource to allocate SndBuffer for new socket\n")\r
706 );\r
707\r
708 goto OnError;\r
709 }\r
710\r
711 Sock->RcvBuffer.DataQueue = NetbufQueAlloc ();\r
712 if (NULL == Sock->RcvBuffer.DataQueue) {\r
713 DEBUG (\r
714 (EFI_D_ERROR,\r
715 "SockCreate: No resource to allocate RcvBuffer for new socket\n")\r
716 );\r
717\r
718 goto OnError;\r
719 }\r
720\r
721 Sock->Signature = SOCK_SIGNATURE;\r
722\r
723 Sock->Parent = Parent;\r
724 Sock->BackLog = SockInitData->BackLog;\r
725 Sock->ProtoHandler = SockInitData->ProtoHandler;\r
726 Sock->SndBuffer.HighWater = SockInitData->SndBufferSize;\r
727 Sock->RcvBuffer.HighWater = SockInitData->RcvBufferSize;\r
728 Sock->Type = SockInitData->Type;\r
729 Sock->DriverBinding = SockInitData->DriverBinding;\r
730 Sock->State = SockInitData->State;\r
731 Sock->CreateCallback = SockInitData->CreateCallback;\r
732 Sock->DestroyCallback = SockInitData->DestroyCallback;\r
733 Sock->Context = SockInitData->Context;\r
734\r
735 Sock->SockError = EFI_ABORTED;\r
736 Sock->SndBuffer.LowWater = SOCK_BUFF_LOW_WATER;\r
737 Sock->RcvBuffer.LowWater = SOCK_BUFF_LOW_WATER;\r
738\r
739 Sock->IpVersion = SockInitData->IpVersion;\r
740\r
741 //\r
742 // Install protocol on Sock->SockHandle\r
743 //\r
744 CopyMem (&Sock->NetProtocol, SockInitData->Protocol, ProtocolLength);\r
745\r
746 //\r
747 // copy the protodata into socket\r
748 //\r
749 CopyMem (Sock->ProtoReserved, SockInitData->ProtoData, SockInitData->DataSize);\r
750\r
751 Status = gBS->InstallMultipleProtocolInterfaces (\r
752 &Sock->SockHandle,\r
753 TcpProtocolGuid,\r
754 &Sock->NetProtocol,\r
755 NULL\r
756 );\r
757\r
758 if (EFI_ERROR (Status)) {\r
759 DEBUG (\r
760 (EFI_D_ERROR,\r
761 "SockCreate: Install TCP protocol in socket failed with %r\n",\r
762 Status)\r
763 );\r
764\r
765 goto OnError;\r
766 }\r
767\r
768 if (Parent != NULL) {\r
769 ASSERT (Parent->BackLog > 0);\r
770 ASSERT (SOCK_IS_LISTENING (Parent));\r
771\r
772 //\r
773 // need to add it into Parent->ConnectionList\r
774 // if the Parent->ConnCnt < Parent->BackLog\r
775 //\r
776 Parent->ConnCnt++;\r
777\r
778 DEBUG (\r
779 (EFI_D_INFO,\r
780 "SockCreate: Create a new socket and add to parent, now conncnt is %d\n",\r
781 Parent->ConnCnt)\r
782 );\r
783\r
784 InsertTailList (&Parent->ConnectionList, &Sock->ConnectionList);\r
785 }\r
786\r
787 if (Sock->CreateCallback != NULL) {\r
788 Status = Sock->CreateCallback (Sock, Sock->Context);\r
789 if (EFI_ERROR (Status)) {\r
790 goto OnError;\r
791 }\r
792 }\r
793\r
794 return Sock;\r
795\r
796OnError:\r
797\r
798 if (Sock->SockHandle != NULL) {\r
799 gBS->UninstallMultipleProtocolInterfaces (\r
800 Sock->SockHandle,\r
801 TcpProtocolGuid,\r
802 &Sock->NetProtocol,\r
803 NULL\r
804 );\r
805 }\r
806\r
807 if (NULL != Sock->SndBuffer.DataQueue) {\r
808 NetbufQueFree (Sock->SndBuffer.DataQueue);\r
809 }\r
810\r
811 if (NULL != Sock->RcvBuffer.DataQueue) {\r
812 NetbufQueFree (Sock->RcvBuffer.DataQueue);\r
813 }\r
814\r
815 FreePool (Sock);\r
816\r
817 return NULL;\r
818}\r
819\r
820/**\r
821 Destroy a socket.\r
822\r
823 @param[in, out] Sock Pointer to the socket.\r
824\r
825**/\r
826VOID\r
827SockDestroy (\r
828 IN OUT SOCKET *Sock\r
829 )\r
830{\r
831 VOID *SockProtocol;\r
832 EFI_GUID *TcpProtocolGuid;\r
833 EFI_STATUS Status;\r
834\r
835 ASSERT (SockStream == Sock->Type);\r
836\r
837 if (Sock->DestroyCallback != NULL) {\r
838 Sock->DestroyCallback (Sock, Sock->Context);\r
839 }\r
840\r
841 //\r
842 // Flush the completion token buffered\r
843 // by sock and rcv, snd buffer\r
844 //\r
845 if (!SOCK_IS_UNCONFIGURED (Sock)) {\r
846\r
847 SockConnFlush (Sock);\r
848 SockSetState (Sock, SO_CLOSED);\r
849 Sock->ConfigureState = SO_UNCONFIGURED;\r
850\r
851 }\r
852 //\r
75dce340 853 // Destroy the RcvBuffer Queue and SendBuffer Queue\r
a3bcde70
HT
854 //\r
855 NetbufQueFree (Sock->RcvBuffer.DataQueue);\r
856 NetbufQueFree (Sock->SndBuffer.DataQueue);\r
857\r
858 //\r
859 // Remove it from parent connection list if needed\r
860 //\r
861 if (Sock->Parent != NULL) {\r
862\r
863 RemoveEntryList (&(Sock->ConnectionList));\r
864 (Sock->Parent->ConnCnt)--;\r
865\r
866 DEBUG (\r
867 (EFI_D_WARN,\r
75dce340 868 "SockDestroy: Delete a unaccepted socket from parent now conncnt is %d\n",\r
a3bcde70
HT
869 Sock->Parent->ConnCnt)\r
870 );\r
871\r
872 Sock->Parent = NULL;\r
873 }\r
874\r
875 //\r
876 // Set the protocol guid and driver binding handle\r
877 // in the light of Sock->SockType\r
878 //\r
879 if (Sock->IpVersion == IP_VERSION_4) {\r
880 TcpProtocolGuid = &gEfiTcp4ProtocolGuid;\r
881 } else {\r
882 TcpProtocolGuid = &gEfiTcp6ProtocolGuid;\r
883 }\r
884\r
885 //\r
886 // Retrieve the protocol installed on this sock\r
887 //\r
888 Status = gBS->OpenProtocol (\r
889 Sock->SockHandle,\r
890 TcpProtocolGuid,\r
891 &SockProtocol,\r
892 Sock->DriverBinding,\r
893 Sock->SockHandle,\r
894 EFI_OPEN_PROTOCOL_GET_PROTOCOL\r
895 );\r
896\r
897 if (EFI_ERROR (Status)) {\r
898\r
899 DEBUG (\r
900 (EFI_D_ERROR,\r
901 "SockDestroy: Open protocol installed on socket failed with %r\n",\r
902 Status)\r
903 );\r
904\r
905 goto FreeSock;\r
906 }\r
907\r
908 //\r
909 // Uninstall the protocol installed on this sock\r
910 // in the light of Sock->SockType\r
911 //\r
912 gBS->UninstallMultipleProtocolInterfaces (\r
913 Sock->SockHandle,\r
914 TcpProtocolGuid,\r
915 SockProtocol,\r
916 NULL\r
917 );\r
918\r
919FreeSock:\r
920\r
921 FreePool (Sock);\r
922}\r
923\r
924/**\r
925 Flush the sndBuffer and rcvBuffer of socket.\r
926\r
927 @param[in, out] Sock Pointer to the socket.\r
928\r
929**/\r
930VOID\r
931SockConnFlush (\r
932 IN OUT SOCKET *Sock\r
933 )\r
934{\r
935 SOCKET *Child;\r
936\r
937 ASSERT (Sock != NULL);\r
938\r
939 //\r
940 // Clear the flag in this socket\r
941 //\r
942 Sock->Flag = 0;\r
943\r
944 //\r
945 // Flush the SndBuffer and RcvBuffer of Sock\r
946 //\r
947 NetbufQueFlush (Sock->SndBuffer.DataQueue);\r
948 NetbufQueFlush (Sock->RcvBuffer.DataQueue);\r
949\r
950 //\r
951 // Signal the pending token\r
952 //\r
953 if (Sock->ConnectionToken != NULL) {\r
954 SIGNAL_TOKEN (Sock->ConnectionToken, Sock->SockError);\r
955 Sock->ConnectionToken = NULL;\r
956 }\r
957\r
958 if (Sock->CloseToken != NULL) {\r
959 SIGNAL_TOKEN (Sock->CloseToken, Sock->SockError);\r
960 Sock->CloseToken = NULL;\r
961 }\r
962\r
963 SockFlushPendingToken (Sock, &(Sock->ListenTokenList));\r
964 SockFlushPendingToken (Sock, &(Sock->RcvTokenList));\r
965 SockFlushPendingToken (Sock, &(Sock->SndTokenList));\r
966 SockFlushPendingToken (Sock, &(Sock->ProcessingSndTokenList));\r
967\r
968 //\r
969 // Destroy the pending connection, if it is a listening socket\r
970 //\r
971 if (SOCK_IS_LISTENING (Sock)) {\r
972 while (!IsListEmpty (&Sock->ConnectionList)) {\r
973 Child = NET_LIST_HEAD (\r
974 &Sock->ConnectionList,\r
975 SOCKET,\r
976 ConnectionList\r
977 );\r
978\r
979 SockDestroyChild (Child);\r
980 }\r
981\r
982 Sock->ConnCnt = 0;\r
983 }\r
984\r
985}\r
986\r
987/**\r
988 Set the state of the socket.\r
989\r
990 @param[in, out] Sock Pointer to the socket.\r
991 @param[in] State The new socket state to be set.\r
992\r
993**/\r
994VOID\r
995SockSetState (\r
996 IN OUT SOCKET *Sock,\r
997 IN UINT8 State\r
998 )\r
999{\r
1000 Sock->State = State;\r
1001}\r
1002\r
1003/**\r
1004 Clone a new socket, including its associated protocol control block.\r
1005\r
1006 @param[in] Sock Pointer to the socket to be cloned.\r
1007\r
1008 @return Pointer to the newly cloned socket. If NULL, an error condition occurred.\r
1009\r
1010**/\r
1011SOCKET *\r
1012SockClone (\r
1013 IN SOCKET *Sock\r
1014 )\r
1015{\r
1016 SOCKET *ClonedSock;\r
1017 SOCK_INIT_DATA InitData;\r
1018\r
1019 InitData.BackLog = Sock->BackLog;\r
1020 InitData.Parent = Sock;\r
1021 InitData.State = Sock->State;\r
1022 InitData.ProtoHandler = Sock->ProtoHandler;\r
1023 InitData.Type = Sock->Type;\r
1024 InitData.RcvBufferSize = Sock->RcvBuffer.HighWater;\r
1025 InitData.SndBufferSize = Sock->SndBuffer.HighWater;\r
1026 InitData.DriverBinding = Sock->DriverBinding;\r
1027 InitData.IpVersion = Sock->IpVersion;\r
1028 InitData.Protocol = &(Sock->NetProtocol);\r
1029 InitData.CreateCallback = Sock->CreateCallback;\r
1030 InitData.DestroyCallback = Sock->DestroyCallback;\r
1031 InitData.Context = Sock->Context;\r
1032 InitData.ProtoData = Sock->ProtoReserved;\r
1033 InitData.DataSize = sizeof (Sock->ProtoReserved);\r
1034\r
1035 ClonedSock = SockCreate (&InitData);\r
1036\r
1037 if (NULL == ClonedSock) {\r
1038 DEBUG ((EFI_D_ERROR, "SockClone: no resource to create a cloned sock\n"));\r
1039 return NULL;\r
1040 }\r
1041\r
1042 SockSetState (ClonedSock, SO_CONNECTING);\r
1043 ClonedSock->ConfigureState = Sock->ConfigureState;\r
1044\r
1045 return ClonedSock;\r
1046}\r
1047\r
1048/**\r
1049 Called by the low layer protocol to indicate the socket a connection is\r
1050 established.\r
1051\r
1052 This function just changes the socket's state to SO_CONNECTED\r
1053 and signals the token used for connection establishment.\r
1054\r
1055 @param[in, out] Sock Pointer to the socket associated with the\r
1056 established connection.\r
1057\r
1058**/\r
1059VOID\r
1060SockConnEstablished (\r
1061 IN OUT SOCKET *Sock\r
1062 )\r
1063{\r
1064\r
1065 ASSERT (SO_CONNECTING == Sock->State);\r
1066\r
1067 SockSetState (Sock, SO_CONNECTED);\r
1068\r
1069 if (NULL == Sock->Parent) {\r
1070 SockWakeConnToken (Sock);\r
1071 } else {\r
1072 SockWakeListenToken (Sock);\r
1073 }\r
1074\r
1075}\r
1076\r
1077/**\r
1078 Called by the low layer protocol to indicate the connection is closed.\r
1079\r
1080 This function flushes the socket, sets the state to SO_CLOSED, and signals\r
1081 the close token.\r
1082\r
1083 @param[in, out] Sock Pointer to the socket associated with the closed\r
1084 connection.\r
1085\r
1086**/\r
1087VOID\r
1088SockConnClosed (\r
1089 IN OUT SOCKET *Sock\r
1090 )\r
1091{\r
1092 if (Sock->CloseToken != NULL) {\r
1093 SIGNAL_TOKEN (Sock->CloseToken, EFI_SUCCESS);\r
1094 Sock->CloseToken = NULL;\r
1095 }\r
1096\r
1097 SockConnFlush (Sock);\r
1098 SockSetState (Sock, SO_CLOSED);\r
1099\r
1100 if (Sock->Parent != NULL) {\r
1101 SockDestroyChild (Sock);\r
1102 }\r
1103\r
1104}\r
1105\r
1106/**\r
1107 Called by low layer protocol to indicate that some data was sent or processed.\r
1108\r
1109 This function trims the sent data in the socket send buffer, and signals the data\r
1110 token if proper.\r
1111\r
1112 @param[in, out] Sock Pointer to the socket.\r
1113 @param[in] Count The length of the data processed or sent, in bytes.\r
1114\r
1115**/\r
1116VOID\r
1117SockDataSent (\r
1118 IN OUT SOCKET *Sock,\r
1119 IN UINT32 Count\r
1120 )\r
1121{\r
1122 SOCK_TOKEN *SockToken;\r
1123 SOCK_COMPLETION_TOKEN *SndToken;\r
1124\r
1125 ASSERT (!IsListEmpty (&Sock->ProcessingSndTokenList));\r
1126 ASSERT (Count <= (Sock->SndBuffer.DataQueue)->BufSize);\r
1127\r
1128 NetbufQueTrim (Sock->SndBuffer.DataQueue, Count);\r
1129\r
1130 //\r
1131 // To check if we can signal some snd token in this socket\r
1132 //\r
1133 while (Count > 0) {\r
1134 SockToken = NET_LIST_HEAD (\r
1135 &(Sock->ProcessingSndTokenList),\r
1136 SOCK_TOKEN,\r
1137 TokenList\r
1138 );\r
1139\r
1140 SndToken = SockToken->Token;\r
1141\r
1142 if (SockToken->RemainDataLen <= Count) {\r
1143\r
1144 RemoveEntryList (&(SockToken->TokenList));\r
1145 SIGNAL_TOKEN (SndToken, EFI_SUCCESS);\r
1146 Count -= SockToken->RemainDataLen;\r
1147 FreePool (SockToken);\r
1148 } else {\r
1149\r
1150 SockToken->RemainDataLen -= Count;\r
1151 Count = 0;\r
1152 }\r
1153 }\r
1154\r
1155 //\r
1156 // to judge if we can process some send token in\r
1157 // Sock->SndTokenList, if so process those send token\r
1158 //\r
1159 SockProcessSndToken (Sock);\r
1160}\r
1161\r
1162/**\r
1163 Called by the low layer protocol to copy some data in the socket send\r
1164 buffer starting from the specific offset to a buffer provided by\r
1165 the caller.\r
1166\r
1167 @param[in] Sock Pointer to the socket.\r
1168 @param[in] Offset The start point of the data to be copied.\r
1169 @param[in] Len The length of the data to be copied.\r
1170 @param[out] Dest Pointer to the destination to copy the data.\r
1171\r
1172 @return The data size copied.\r
1173\r
1174**/\r
1175UINT32\r
1176SockGetDataToSend (\r
1177 IN SOCKET *Sock,\r
1178 IN UINT32 Offset,\r
1179 IN UINT32 Len,\r
1180 OUT UINT8 *Dest\r
1181 )\r
1182{\r
1183 ASSERT ((Sock != NULL) && SockStream == Sock->Type);\r
1184\r
1185 return NetbufQueCopy (\r
1186 Sock->SndBuffer.DataQueue,\r
1187 Offset,\r
1188 Len,\r
1189 Dest\r
1190 );\r
1191}\r
1192\r
1193/**\r
1194 Called by the low layer protocol to deliver received data to socket layer.\r
1195\r
1196 This function will append the data to the socket receive buffer, set the\r
1197 urgent data length, and then check if any receive token can be signaled.\r
1198\r
1199 @param[in, out] Sock Pointer to the socket.\r
1200 @param[in, out] NetBuffer Pointer to the buffer that contains the received data.\r
1201 @param[in] UrgLen The length of the urgent data in the received data.\r
1202\r
1203**/\r
1204VOID\r
1205SockDataRcvd (\r
1206 IN OUT SOCKET *Sock,\r
1207 IN OUT NET_BUF *NetBuffer,\r
1208 IN UINT32 UrgLen\r
1209 )\r
1210{\r
1211 ASSERT ((Sock != NULL) && (Sock->RcvBuffer.DataQueue != NULL) &&\r
1212 UrgLen <= NetBuffer->TotalSize);\r
1213\r
1214 NET_GET_REF (NetBuffer);\r
1215\r
1216 ((TCP_RSV_DATA *) (NetBuffer->ProtoData))->UrgLen = UrgLen;\r
1217\r
1218 NetbufQueAppend (Sock->RcvBuffer.DataQueue, NetBuffer);\r
1219\r
1220 SockWakeRcvToken (Sock);\r
1221}\r
1222\r
1223/**\r
1224 Get the length of the free space of the specific socket buffer.\r
1225\r
1226 @param[in] Sock Pointer to the socket.\r
1227 @param[in] Which Flag to indicate which socket buffer to check:\r
1228 either send buffer or receive buffer.\r
1229\r
1230 @return The length of the free space, in bytes.\r
1231\r
1232**/\r
1233UINT32\r
1234SockGetFreeSpace (\r
1235 IN SOCKET *Sock,\r
1236 IN UINT32 Which\r
1237 )\r
1238{\r
1239 UINT32 BufferCC;\r
1240 SOCK_BUFFER *SockBuffer;\r
1241\r
1242 ASSERT (Sock != NULL && ((SOCK_SND_BUF == Which) || (SOCK_RCV_BUF == Which)));\r
1243\r
1244 if (SOCK_SND_BUF == Which) {\r
1245 SockBuffer = &(Sock->SndBuffer);\r
1246 } else {\r
1247 SockBuffer = &(Sock->RcvBuffer);\r
1248 }\r
1249\r
1250 BufferCC = (SockBuffer->DataQueue)->BufSize;\r
1251\r
1252 if (BufferCC >= SockBuffer->HighWater) {\r
1253\r
1254 return 0;\r
1255 }\r
1256\r
1257 return SockBuffer->HighWater - BufferCC;\r
1258}\r
1259\r
1260/**\r
1261 Called by the low layer protocol to indicate that there will be no more data\r
1262 from the communication peer.\r
1263\r
1264 This function sets the socket's state to SO_NO_MORE_DATA and signals all queued\r
1265 IO tokens with the error status EFI_CONNECTION_FIN.\r
1266\r
1267 @param[in, out] Sock Pointer to the socket.\r
1268\r
1269**/\r
1270VOID\r
1271SockNoMoreData (\r
1272 IN OUT SOCKET *Sock\r
1273 )\r
1274{\r
1275 EFI_STATUS Err;\r
1276\r
1277 SOCK_NO_MORE_DATA (Sock);\r
1278\r
1279 if (!IsListEmpty (&Sock->RcvTokenList)) {\r
1280\r
1281 ASSERT (0 == GET_RCV_DATASIZE (Sock));\r
1282\r
1283 Err = Sock->SockError;\r
1284\r
1285 SOCK_ERROR (Sock, EFI_CONNECTION_FIN);\r
1286\r
1287 SockFlushPendingToken (Sock, &Sock->RcvTokenList);\r
1288\r
1289 SOCK_ERROR (Sock, Err);\r
1290\r
1291 }\r
1292}\r
1293\r