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a3bcde70
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1/** @file\r
2 Mtftp6 support functions implementation.\r
3\r
c960bdc2 4 Copyright (c) 2009 - 2015, 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 "Mtftp6Impl.h"\r
17\r
18\r
19/**\r
20 Allocate a MTFTP block range, then init it to the range of [Start, End].\r
21\r
22 @param[in] Start The start block number.\r
23 @param[in] End The last block number in the range.\r
24\r
25 @return Range The range of the allocated block buffer.\r
26\r
27**/\r
28MTFTP6_BLOCK_RANGE *\r
29Mtftp6AllocateRange (\r
30 IN UINT16 Start,\r
31 IN UINT16 End\r
32 )\r
33{\r
34 MTFTP6_BLOCK_RANGE *Range;\r
35\r
36 Range = AllocateZeroPool (sizeof (MTFTP6_BLOCK_RANGE));\r
37\r
38 if (Range == NULL) {\r
39 return NULL;\r
40 }\r
41\r
42 InitializeListHead (&Range->Link);\r
43 Range->Start = Start;\r
44 Range->End = End;\r
45 Range->Bound = End;\r
46\r
47 return Range;\r
48}\r
49\r
50\r
51/**\r
52 Initialize the block range for either RRQ or WRQ. RRQ and WRQ have\r
53 different requirements for Start and End. For example, during startup,\r
54 WRQ initializes its whole valid block range to [0, 0xffff]. This\r
55 is bacause the server will send an ACK0 to inform the user to start the\r
56 upload. When the client receives an ACK0, it will remove 0 from the range,\r
57 get the next block number, which is 1, then upload the BLOCK1. For RRQ\r
58 without option negotiation, the server will directly send the BLOCK1\r
59 in response to the client's RRQ. When received BLOCK1, the client will\r
60 remove it from the block range and send an ACK. It also works if there\r
61 is option negotiation.\r
62\r
63 @param[in] Head The block range head to initialize.\r
64 @param[in] Start The Start block number.\r
65 @param[in] End The last block number.\r
66\r
67 @retval EFI_OUT_OF_RESOURCES Failed to allocate memory for initial block range.\r
68 @retval EFI_SUCCESS The initial block range is created.\r
69\r
70**/\r
71EFI_STATUS\r
72Mtftp6InitBlockRange (\r
73 IN LIST_ENTRY *Head,\r
74 IN UINT16 Start,\r
75 IN UINT16 End\r
76 )\r
77{\r
78 MTFTP6_BLOCK_RANGE *Range;\r
79\r
80 Range = Mtftp6AllocateRange (Start, End);\r
81\r
82 if (Range == NULL) {\r
83 return EFI_OUT_OF_RESOURCES;\r
84 }\r
85\r
86 InsertTailList (Head, &Range->Link);\r
87 return EFI_SUCCESS;\r
88}\r
89\r
90\r
91/**\r
92 Get the first valid block number on the range list.\r
93\r
94 @param[in] Head The block range head.\r
95\r
96 @retval ==-1 If the block range is empty.\r
97 @retval >-1 The first valid block number.\r
98\r
99**/\r
100INTN\r
101Mtftp6GetNextBlockNum (\r
102 IN LIST_ENTRY *Head\r
103 )\r
104{\r
105 MTFTP6_BLOCK_RANGE *Range;\r
106\r
107 if (IsListEmpty (Head)) {\r
108 return -1;\r
109 }\r
110\r
111 Range = NET_LIST_HEAD (Head, MTFTP6_BLOCK_RANGE, Link);\r
112 return Range->Start;\r
113}\r
114\r
115\r
116/**\r
117 Set the last block number of the block range list. It\r
118 removes all the blocks after the Last. MTFTP initialize the\r
119 block range to the maximum possible range, such as [0, 0xffff]\r
120 for WRQ. When it gets the last block number, it calls\r
121 this function to set the last block number.\r
122\r
123 @param[in] Head The block range list.\r
124 @param[in] Last The last block number.\r
125\r
126**/\r
127VOID\r
128Mtftp6SetLastBlockNum (\r
129 IN LIST_ENTRY *Head,\r
130 IN UINT16 Last\r
131 )\r
132{\r
133 MTFTP6_BLOCK_RANGE *Range;\r
134\r
135 //\r
136 // Iterate from the tail to head to remove the block number\r
137 // after the last.\r
138 //\r
139 while (!IsListEmpty (Head)) {\r
140 Range = NET_LIST_TAIL (Head, MTFTP6_BLOCK_RANGE, Link);\r
141\r
142 if (Range->Start > Last) {\r
143 RemoveEntryList (&Range->Link);\r
144 FreePool (Range);\r
145 continue;\r
146 }\r
147\r
148 if (Range->End > Last) {\r
149 Range->End = Last;\r
150 }\r
151 return ;\r
152 }\r
153}\r
154\r
155\r
156/**\r
157 Remove the block number from the block range list.\r
158\r
159 @param[in] Head The block range list to remove from.\r
160 @param[in] Num The block number to remove.\r
161 @param[in] Completed Whether Num is the last block number\r
162 @param[out] TotalBlock The continuous block number in all\r
163\r
164 @retval EFI_NOT_FOUND The block number isn't in the block range list.\r
165 @retval EFI_SUCCESS The block number has been removed from the list.\r
166 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources.\r
167\r
168**/\r
169EFI_STATUS\r
170Mtftp6RemoveBlockNum (\r
171 IN LIST_ENTRY *Head,\r
172 IN UINT16 Num,\r
173 IN BOOLEAN Completed,\r
174 OUT UINT64 *TotalBlock\r
175 )\r
176{\r
177 MTFTP6_BLOCK_RANGE *Range;\r
178 MTFTP6_BLOCK_RANGE *NewRange;\r
179 LIST_ENTRY *Entry;\r
180\r
181 NET_LIST_FOR_EACH (Entry, Head) {\r
182\r
183 //\r
184 // Each block represents a hole [Start, End] in the file,\r
185 // skip to the first range with End >= Num\r
186 //\r
187 Range = NET_LIST_USER_STRUCT (Entry, MTFTP6_BLOCK_RANGE, Link);\r
188\r
189 if (Range->End < Num) {\r
190 continue;\r
191 }\r
192\r
193 //\r
194 // There are three different cases for Start\r
195 // 1. (Start > Num) && (End >= Num):\r
196 // because all the holes before this one has the condition of\r
197 // End < Num, so this block number has been removed.\r
198 //\r
199 // 2. (Start == Num) && (End >= Num):\r
200 // Need to increase the Start by one, and if End == Num, this\r
201 // hole has been removed completely, remove it.\r
202 //\r
203 // 3. (Start < Num) && (End >= Num):\r
204 // if End == Num, only need to decrease the End by one because\r
205 // we have (Start < Num) && (Num == End), so (Start <= End - 1).\r
206 // if (End > Num), the hold is splited into two holes, with\r
207 // [Start, Num - 1] and [Num + 1, End].\r
208 //\r
209 if (Range->Start > Num) {\r
210 return EFI_NOT_FOUND;\r
211\r
212 } else if (Range->Start == Num) {\r
213 Range->Start++;\r
214\r
215 //\r
216 // Note that: RFC 1350 does not mention block counter roll-over,\r
217 // but several TFTP hosts implement the roll-over be able to accept\r
218 // transfers of unlimited size. There is no consensus, however, whether\r
219 // the counter should wrap around to zero or to one. Many implementations\r
220 // wrap to zero, because this is the simplest to implement. Here we choose\r
221 // this solution.\r
222 //\r
223 *TotalBlock = Num;\r
224\r
225 if (Range->Round > 0) {\r
226 *TotalBlock += Range->Bound + MultU64x32 ((UINT64) (Range->Round -1), (UINT32)(Range->Bound + 1)) + 1;\r
227 }\r
228\r
229 if (Range->Start > Range->Bound) {\r
230 Range->Start = 0;\r
231 Range->Round ++;\r
232 }\r
233\r
234 if ((Range->Start > Range->End) || Completed) {\r
235 RemoveEntryList (&Range->Link);\r
236 FreePool (Range);\r
237 }\r
238\r
239 return EFI_SUCCESS;\r
240\r
241 } else {\r
242 if (Range->End == Num) {\r
243 Range->End--;\r
244 } else {\r
245 NewRange = Mtftp6AllocateRange ((UINT16) (Num + 1), (UINT16) Range->End);\r
246\r
247 if (NewRange == NULL) {\r
248 return EFI_OUT_OF_RESOURCES;\r
249 }\r
250\r
251 Range->End = Num - 1;\r
252 NetListInsertAfter (&Range->Link, &NewRange->Link);\r
253 }\r
254\r
255 return EFI_SUCCESS;\r
256 }\r
257 }\r
258\r
259 return EFI_NOT_FOUND;\r
260}\r
261\r
262\r
263/**\r
264 Configure the opened Udp6 instance until the corresponding Ip6 instance\r
265 has been configured.\r
266\r
267 @param[in] UdpIo The pointer to the Udp6 Io.\r
268 @param[in] UdpCfgData The pointer to the Udp6 configure data.\r
269\r
270 @retval EFI_SUCCESS Configure the Udp6 instance successfully.\r
271 @retval EFI_NO_MAPPING The corresponding Ip6 instance has not\r
272 been configured yet.\r
273\r
274**/\r
275EFI_STATUS\r
276Mtftp6GetMapping (\r
277 IN UDP_IO *UdpIo,\r
278 IN EFI_UDP6_CONFIG_DATA *UdpCfgData\r
279 )\r
280{\r
281 EFI_IP6_MODE_DATA Ip6Mode;\r
282 EFI_UDP6_PROTOCOL *Udp6;\r
283 EFI_STATUS Status;\r
284 EFI_EVENT Event;\r
285\r
286 Event = NULL;\r
287 Udp6 = UdpIo->Protocol.Udp6;\r
288\r
289 //\r
290 // Create a timer to check whether the Ip6 instance configured or not.\r
291 //\r
292 Status = gBS->CreateEvent (\r
293 EVT_TIMER,\r
294 TPL_CALLBACK,\r
295 NULL,\r
296 NULL,\r
297 &Event\r
298 );\r
299 if (EFI_ERROR (Status)) {\r
300 goto ON_EXIT;\r
301 }\r
302\r
303 Status = gBS->SetTimer (\r
304 Event,\r
305 TimerRelative,\r
306 MTFTP6_GET_MAPPING_TIMEOUT * MTFTP6_TICK_PER_SECOND\r
307 );\r
308 if (EFI_ERROR (Status)) {\r
309 goto ON_EXIT;\r
310 }\r
311\r
312 //\r
313 // Check the Ip6 mode data till timeout.\r
314 //\r
315 while (EFI_ERROR (gBS->CheckEvent (Event))) {\r
316\r
317 Udp6->Poll (Udp6);\r
318\r
319 Status = Udp6->GetModeData (Udp6, NULL, &Ip6Mode, NULL, NULL);\r
320\r
321 if (!EFI_ERROR (Status)) {\r
322\r
323 if (Ip6Mode.IsConfigured) {\r
324 //\r
325 // Continue to configure the Udp6 instance.\r
326 //\r
327 Status = Udp6->Configure (Udp6, UdpCfgData);\r
328 } else {\r
329 Status = EFI_NO_MAPPING;\r
330 }\r
331 }\r
332 }\r
333\r
334ON_EXIT:\r
335\r
336 if (Event != NULL) {\r
337 gBS->CloseEvent (Event);\r
338 }\r
339\r
340 return Status;\r
341}\r
342\r
343\r
344/**\r
345 The dummy configure routine for create a new Udp6 Io.\r
346\r
347 @param[in] UdpIo The pointer to the Udp6 Io.\r
348 @param[in] Context The pointer to the context.\r
349\r
350 @retval EFI_SUCCESS This value is always returned.\r
351\r
352**/\r
353EFI_STATUS\r
354EFIAPI\r
355Mtftp6ConfigDummyUdpIo (\r
356 IN UDP_IO *UdpIo,\r
357 IN VOID *Context\r
358 )\r
359{\r
360 return EFI_SUCCESS;\r
361}\r
362\r
363\r
364/**\r
365 The configure routine for Mtftp6 instance to transmit/receive.\r
366\r
367 @param[in] UdpIo The pointer to the Udp6 Io.\r
368 @param[in] ServerIp The pointer to the server address.\r
369 @param[in] ServerPort The pointer to the server port.\r
370 @param[in] LocalIp The pointer to the local address.\r
371 @param[in] LocalPort The pointer to the local port.\r
372\r
373 @retval EFI_SUCCESS Configured the Udp6 Io for Mtftp6 successfully.\r
374 @retval EFI_NO_MAPPING The corresponding Ip6 instance has not been\r
375 configured yet.\r
376\r
377**/\r
378EFI_STATUS\r
379Mtftp6ConfigUdpIo (\r
380 IN UDP_IO *UdpIo,\r
381 IN EFI_IPv6_ADDRESS *ServerIp,\r
382 IN UINT16 ServerPort,\r
383 IN EFI_IPv6_ADDRESS *LocalIp,\r
384 IN UINT16 LocalPort\r
385 )\r
386{\r
387 EFI_STATUS Status;\r
388 EFI_UDP6_PROTOCOL *Udp6;\r
389 EFI_UDP6_CONFIG_DATA *Udp6Cfg;\r
390\r
391 Udp6 = UdpIo->Protocol.Udp6;\r
392 Udp6Cfg = &(UdpIo->Config.Udp6);\r
393\r
394 ZeroMem (Udp6Cfg, sizeof (EFI_UDP6_CONFIG_DATA));\r
395\r
396 //\r
397 // Set the Udp6 Io configure data.\r
398 //\r
399 Udp6Cfg->AcceptPromiscuous = FALSE;\r
400 Udp6Cfg->AcceptAnyPort = FALSE;\r
401 Udp6Cfg->AllowDuplicatePort = FALSE;\r
402 Udp6Cfg->TrafficClass = 0;\r
403 Udp6Cfg->HopLimit = 128;\r
404 Udp6Cfg->ReceiveTimeout = 0;\r
405 Udp6Cfg->TransmitTimeout = 0;\r
406 Udp6Cfg->StationPort = LocalPort;\r
407 Udp6Cfg->RemotePort = ServerPort;\r
408\r
409 CopyMem (\r
410 &Udp6Cfg->StationAddress,\r
411 LocalIp,\r
412 sizeof (EFI_IPv6_ADDRESS)\r
413 );\r
414\r
415 CopyMem (\r
416 &Udp6Cfg->RemoteAddress,\r
417 ServerIp,\r
418 sizeof (EFI_IPv6_ADDRESS)\r
419 );\r
420\r
421 //\r
422 // Configure the Udp6 instance with current configure data.\r
423 //\r
424 Status = Udp6->Configure (Udp6, Udp6Cfg);\r
425\r
426 if (Status == EFI_NO_MAPPING) {\r
427\r
428 return Mtftp6GetMapping (UdpIo, Udp6Cfg);\r
429 }\r
430\r
431 return Status;\r
432}\r
433\r
434\r
435/**\r
436 Build and transmit the request packet for the Mtftp6 instance.\r
437\r
438 @param[in] Instance The pointer to the Mtftp6 instance.\r
439 @param[in] Operation The operation code of this packet.\r
440\r
441 @retval EFI_OUT_OF_RESOURCES Failed to allocate memory for the request.\r
442 @retval EFI_SUCCESS The request is built and sent.\r
443 @retval Others Failed to transmit the packet.\r
444\r
445**/\r
446EFI_STATUS\r
447Mtftp6SendRequest (\r
448 IN MTFTP6_INSTANCE *Instance,\r
449 IN UINT16 Operation\r
450 )\r
451{\r
452 EFI_MTFTP6_PACKET *Packet;\r
453 EFI_MTFTP6_OPTION *Options;\r
454 EFI_MTFTP6_TOKEN *Token;\r
7c6c4ac8 455 RETURN_STATUS Status;\r
a3bcde70
HT
456 NET_BUF *Nbuf;\r
457 UINT8 *Mode;\r
458 UINT8 *Cur;\r
a3bcde70 459 UINTN Index;\r
7c6c4ac8
ZL
460 UINT32 BufferLength;\r
461 UINTN FileNameLength;\r
462 UINTN ModeLength;\r
463 UINTN OptionStrLength;\r
464 UINTN ValueStrLength;\r
a3bcde70
HT
465\r
466 Token = Instance->Token;\r
467 Options = Token->OptionList;\r
468 Mode = Token->ModeStr;\r
469\r
470 if (Mode == NULL) {\r
471 Mode = (UINT8 *) "octet";\r
472 }\r
473\r
474 //\r
475 // The header format of RRQ/WRQ packet is:\r
476 //\r
477 // 2 bytes string 1 byte string 1 byte\r
478 // ------------------------------------------------\r
479 // | Opcode | Filename | 0 | Mode | 0 |\r
480 // ------------------------------------------------\r
481 //\r
482 // The common option format is:\r
483 //\r
484 // string 1 byte string 1 byte\r
485 // ---------------------------------------\r
486 // | OptionStr | 0 | ValueStr | 0 |\r
487 // ---------------------------------------\r
488 //\r
489\r
490 //\r
491 // Compute the size of new Mtftp6 packet.\r
492 //\r
7c6c4ac8
ZL
493 FileNameLength = AsciiStrLen ((CHAR8 *) Token->Filename);\r
494 ModeLength = AsciiStrLen ((CHAR8 *) Mode);\r
495 BufferLength = (UINT32) FileNameLength + (UINT32) ModeLength + 4;\r
a3bcde70
HT
496\r
497 for (Index = 0; Index < Token->OptionCount; Index++) {\r
7c6c4ac8
ZL
498 OptionStrLength = AsciiStrLen ((CHAR8 *) Options[Index].OptionStr);\r
499 ValueStrLength = AsciiStrLen ((CHAR8 *) Options[Index].ValueStr);\r
500 BufferLength += (UINT32) OptionStrLength + (UINT32) ValueStrLength + 2;\r
a3bcde70
HT
501 }\r
502\r
503 //\r
504 // Allocate a packet then copy the data.\r
505 //\r
7c6c4ac8 506 if ((Nbuf = NetbufAlloc (BufferLength)) == NULL) {\r
a3bcde70
HT
507 return EFI_OUT_OF_RESOURCES;\r
508 }\r
509\r
510 //\r
511 // Copy the opcode, filename and mode into packet.\r
512 //\r
7c6c4ac8 513 Packet = (EFI_MTFTP6_PACKET *) NetbufAllocSpace (Nbuf, BufferLength, FALSE);\r
a3bcde70
HT
514 ASSERT (Packet != NULL);\r
515\r
516 Packet->OpCode = HTONS (Operation);\r
7c6c4ac8
ZL
517 BufferLength -= sizeof (Packet->OpCode);\r
518 \r
a3bcde70 519 Cur = Packet->Rrq.Filename;\r
7c6c4ac8
ZL
520 Status = AsciiStrCpyS ((CHAR8 *) Cur, BufferLength, (CHAR8 *) Token->Filename);\r
521 ASSERT_EFI_ERROR (Status);\r
522 BufferLength -= (UINT32) (FileNameLength + 1);\r
523 Cur += FileNameLength + 1;\r
524 Status = AsciiStrCpyS ((CHAR8 *) Cur, BufferLength, (CHAR8 *) Mode);\r
525 ASSERT_EFI_ERROR (Status);\r
526 BufferLength -= (UINT32) (ModeLength + 1);\r
527 Cur += ModeLength + 1;\r
a3bcde70
HT
528\r
529 //\r
530 // Copy all the extension options into the packet.\r
531 //\r
532 for (Index = 0; Index < Token->OptionCount; ++Index) {\r
7c6c4ac8
ZL
533 OptionStrLength = AsciiStrLen ((CHAR8 *) Options[Index].OptionStr);\r
534 ValueStrLength = AsciiStrLen ((CHAR8 *) Options[Index].ValueStr);\r
535 \r
536 Status = AsciiStrCpyS ((CHAR8 *) Cur, BufferLength, (CHAR8 *) Options[Index].OptionStr);\r
537 ASSERT_EFI_ERROR (Status);\r
538 BufferLength -= (UINT32) (OptionStrLength + 1);\r
539 Cur += OptionStrLength + 1;\r
540 \r
541 Status = AsciiStrCpyS ((CHAR8 *) Cur, BufferLength, (CHAR8 *) Options[Index].ValueStr);\r
542 ASSERT_EFI_ERROR (Status);\r
543 BufferLength -= (UINT32) (ValueStrLength + 1);\r
544 Cur += ValueStrLength + 1;\r
545 \r
a3bcde70
HT
546 }\r
547\r
548 //\r
549 // Save the packet buf for retransmit\r
550 //\r
551 if (Instance->LastPacket != NULL) {\r
552 NetbufFree (Instance->LastPacket);\r
553 }\r
554\r
555 Instance->LastPacket = Nbuf;\r
556 Instance->CurRetry = 0;\r
557\r
558 return Mtftp6TransmitPacket (Instance, Nbuf);\r
559}\r
560\r
561\r
562/**\r
563 Build and send an error packet.\r
564\r
565 @param[in] Instance The pointer to the Mtftp6 instance.\r
566 @param[in] ErrCode The error code in the packet.\r
567 @param[in] ErrInfo The error message in the packet.\r
568\r
569 @retval EFI_OUT_OF_RESOURCES Failed to allocate memory for the error packet.\r
570 @retval EFI_SUCCESS The error packet is transmitted.\r
571 @retval Others Failed to transmit the packet.\r
572\r
573**/\r
574EFI_STATUS\r
575Mtftp6SendError (\r
576 IN MTFTP6_INSTANCE *Instance,\r
577 IN UINT16 ErrCode,\r
578 IN UINT8* ErrInfo\r
579 )\r
580{\r
581 NET_BUF *Nbuf;\r
582 EFI_MTFTP6_PACKET *TftpError;\r
583 UINT32 Len;\r
584\r
585 //\r
586 // Allocate a packet then copy the data.\r
587 //\r
588 Len = (UINT32) (AsciiStrLen ((CHAR8 *) ErrInfo) + sizeof (EFI_MTFTP6_ERROR_HEADER));\r
589 Nbuf = NetbufAlloc (Len);\r
590\r
591 if (Nbuf == NULL) {\r
592 return EFI_OUT_OF_RESOURCES;\r
593 }\r
594\r
595 TftpError = (EFI_MTFTP6_PACKET *) NetbufAllocSpace (Nbuf, Len, FALSE);\r
596\r
597 if (TftpError == NULL) {\r
598 NetbufFree (Nbuf);\r
599 return EFI_OUT_OF_RESOURCES;\r
600 }\r
601\r
602 TftpError->OpCode = HTONS (EFI_MTFTP6_OPCODE_ERROR);\r
603 TftpError->Error.ErrorCode = HTONS (ErrCode);\r
604\r
b89ef371 605 AsciiStrCpyS ((CHAR8 *) TftpError->Error.ErrorMessage, AsciiStrLen ((CHAR8 *) ErrInfo) + 1 , (CHAR8 *) ErrInfo);\r
a3bcde70
HT
606\r
607 //\r
608 // Save the packet buf for retransmit\r
609 //\r
610 if (Instance->LastPacket != NULL) {\r
611 NetbufFree (Instance->LastPacket);\r
612 }\r
613\r
614 Instance->LastPacket = Nbuf;\r
615 Instance->CurRetry = 0;\r
616\r
617 return Mtftp6TransmitPacket (Instance, Nbuf);\r
618}\r
619\r
620\r
621/**\r
622 The callback function called when the packet is transmitted.\r
623\r
624 @param[in] Packet The pointer to the packet.\r
625 @param[in] UdpEpt The pointer to the Udp6 access point.\r
626 @param[in] IoStatus The result of the transmission.\r
627 @param[in] Context The pointer to the context.\r
628\r
629**/\r
630VOID\r
631EFIAPI\r
632Mtftp6OnPacketSent (\r
633 IN NET_BUF *Packet,\r
634 IN UDP_END_POINT *UdpEpt,\r
635 IN EFI_STATUS IoStatus,\r
636 IN VOID *Context\r
637 )\r
638{\r
639 NetbufFree (Packet);\r
640 *(BOOLEAN *) Context = TRUE;\r
641}\r
642\r
643\r
644/**\r
645 Send the packet for the Mtftp6 instance.\r
646\r
647 @param[in] Instance The pointer to the Mtftp6 instance.\r
648 @param[in] Packet The pointer to the packet to be sent.\r
649\r
650 @retval EFI_SUCCESS The packet was sent out\r
651 @retval Others Failed to transmit the packet.\r
652\r
653**/\r
654EFI_STATUS\r
655Mtftp6TransmitPacket (\r
656 IN MTFTP6_INSTANCE *Instance,\r
657 IN NET_BUF *Packet\r
658 )\r
659{\r
660 EFI_UDP6_PROTOCOL *Udp6;\r
661 EFI_UDP6_CONFIG_DATA Udp6CfgData;\r
662 EFI_STATUS Status;\r
663 UINT16 *Temp;\r
664 UINT16 Value;\r
665 UINT16 OpCode;\r
666\r
667 ZeroMem (&Udp6CfgData, sizeof(EFI_UDP6_CONFIG_DATA));\r
668 Udp6 = Instance->UdpIo->Protocol.Udp6;\r
669\r
670 //\r
671 // Set the live time of the packet.\r
672 //\r
673 Instance->PacketToLive = Instance->IsMaster ? Instance->Timeout : (Instance->Timeout * 2);\r
674\r
675 Temp = (UINT16 *) NetbufGetByte (Packet, 0, NULL);\r
676 ASSERT (Temp != NULL);\r
677\r
678 Value = *Temp;\r
679 OpCode = NTOHS (Value);\r
680\r
681 if (OpCode == EFI_MTFTP6_OPCODE_RRQ || OpCode == EFI_MTFTP6_OPCODE_DIR || OpCode == EFI_MTFTP6_OPCODE_WRQ) {\r
682 //\r
683 // For the Rrq, Dir, Wrq requests of the operation, configure the Udp6Io as\r
684 // (serverip, 69, localip, localport) to send.\r
685 // Usually local address and local port are both default as zero.\r
686 //\r
687 Status = Udp6->Configure (Udp6, NULL);\r
688\r
689 if (EFI_ERROR (Status)) {\r
690 return Status;\r
691 }\r
692\r
693 Status = Mtftp6ConfigUdpIo (\r
694 Instance->UdpIo,\r
695 &Instance->ServerIp,\r
696 Instance->ServerCmdPort,\r
697 &Instance->Config->StationIp,\r
698 Instance->Config->LocalPort\r
699 );\r
700\r
701 if (EFI_ERROR (Status)) {\r
702 return Status;\r
703 }\r
704\r
705 //\r
706 // Get the current local address and port by get Udp6 mode data.\r
707 //\r
708 Status = Udp6->GetModeData (Udp6, &Udp6CfgData, NULL, NULL, NULL);\r
709 if (EFI_ERROR (Status)) {\r
710 return Status;\r
711 }\r
712\r
713 NET_GET_REF (Packet);\r
714\r
715 Instance->IsTransmitted = FALSE;\r
716\r
717 Status = UdpIoSendDatagram (\r
718 Instance->UdpIo,\r
719 Packet,\r
720 NULL,\r
721 NULL,\r
722 Mtftp6OnPacketSent,\r
723 &Instance->IsTransmitted\r
724 );\r
725\r
726 if (EFI_ERROR (Status)) {\r
727 NET_PUT_REF (Packet);\r
728 return Status;\r
729 }\r
730\r
731 //\r
732 // Poll till the packet sent out from the ip6 queue.\r
733 //\r
734 gBS->RestoreTPL (Instance->OldTpl);\r
735\r
736 while (!Instance->IsTransmitted) {\r
737 Udp6->Poll (Udp6);\r
738 }\r
739\r
740 Instance->OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
741\r
742 //\r
743 // For the subsequent exchange of such requests, reconfigure the Udp6Io as\r
744 // (serverip, 0, localip, localport) to receive.\r
745 // Currently local address and local port are specified by Udp6 mode data.\r
746 //\r
747 Status = Udp6->Configure (Udp6, NULL);\r
748\r
749 if (EFI_ERROR (Status)) {\r
750 return Status;\r
751 }\r
752\r
753 Status = Mtftp6ConfigUdpIo (\r
754 Instance->UdpIo,\r
755 &Instance->ServerIp,\r
756 Instance->ServerDataPort,\r
757 &Udp6CfgData.StationAddress,\r
758 Udp6CfgData.StationPort\r
759 );\r
760 } else {\r
761 //\r
762 // For the data exchange, configure the Udp6Io as (serverip, dataport,\r
763 // localip, localport) to send/receive.\r
764 // Currently local address and local port are specified by Udp6 mode data.\r
765 //\r
766 Status = Udp6->GetModeData (Udp6, &Udp6CfgData, NULL, NULL, NULL);\r
767 if (EFI_ERROR (Status)) {\r
768 return Status;\r
769 }\r
770\r
771 if (Udp6CfgData.RemotePort != Instance->ServerDataPort) {\r
772\r
773 Status = Udp6->Configure (Udp6, NULL);\r
774\r
775 if (EFI_ERROR (Status)) {\r
776 return Status;\r
777 }\r
778\r
779 Status = Mtftp6ConfigUdpIo (\r
780 Instance->UdpIo,\r
781 &Instance->ServerIp,\r
782 Instance->ServerDataPort,\r
783 &Udp6CfgData.StationAddress,\r
784 Udp6CfgData.StationPort\r
785 );\r
786\r
787 if (EFI_ERROR (Status)) {\r
788 return Status;\r
789 }\r
790 }\r
791\r
792 NET_GET_REF (Packet);\r
793\r
794 Instance->IsTransmitted = FALSE;\r
795\r
796 Status = UdpIoSendDatagram (\r
797 Instance->UdpIo,\r
798 Packet,\r
799 NULL,\r
800 NULL,\r
801 Mtftp6OnPacketSent,\r
802 &Instance->IsTransmitted\r
803 );\r
804\r
805 if (EFI_ERROR (Status)) {\r
806 NET_PUT_REF (Packet);\r
807 }\r
808\r
809 //\r
810 // Poll till the packet sent out from the ip6 queue.\r
811 //\r
812 gBS->RestoreTPL (Instance->OldTpl);\r
813\r
814 while (!Instance->IsTransmitted) {\r
815 Udp6->Poll (Udp6);\r
816 }\r
817\r
818 Instance->OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
819 }\r
820\r
821 return Status;\r
822}\r
823\r
824\r
825/**\r
826 Check packet for GetInfo callback routine.\r
827\r
828 GetInfo is implemented with EfiMtftp6ReadFile. It's used to inspect\r
829 the first packet from server, then abort the session.\r
830\r
831 @param[in] This The pointer to the Mtftp6 protocol.\r
832 @param[in] Token The pointer to the Mtftp6 token.\r
833 @param[in] PacketLen The length of the packet.\r
834 @param[in] Packet The pointer to the received packet.\r
835\r
836 @retval EFI_ABORTED Abort the Mtftp6 operation.\r
837\r
838**/\r
839EFI_STATUS\r
840EFIAPI\r
841Mtftp6CheckPacket (\r
842 IN EFI_MTFTP6_PROTOCOL *This,\r
843 IN EFI_MTFTP6_TOKEN *Token,\r
844 IN UINT16 PacketLen,\r
845 IN EFI_MTFTP6_PACKET *Packet\r
846 )\r
847{\r
848 MTFTP6_GETINFO_CONTEXT *Context;\r
849 UINT16 OpCode;\r
850\r
851 Context = (MTFTP6_GETINFO_CONTEXT *) Token->Context;\r
852 OpCode = NTOHS (Packet->OpCode);\r
853\r
854 //\r
855 // Set the GetInfo's return status according to the OpCode.\r
856 //\r
857 switch (OpCode) {\r
858 case EFI_MTFTP6_OPCODE_ERROR:\r
859 Context->Status = EFI_TFTP_ERROR;\r
860 break;\r
861\r
862 case EFI_MTFTP6_OPCODE_OACK:\r
863 Context->Status = EFI_SUCCESS;\r
864 break;\r
865\r
866 default:\r
867 Context->Status = EFI_PROTOCOL_ERROR;\r
868 }\r
869\r
870 //\r
871 // Allocate buffer then copy the packet over. Use gBS->AllocatePool\r
872 // in case NetAllocatePool will implements something tricky.\r
873 //\r
874 *(Context->Packet) = AllocateZeroPool (PacketLen);\r
875\r
876 if (*(Context->Packet) == NULL) {\r
877 Context->Status = EFI_OUT_OF_RESOURCES;\r
878 return EFI_ABORTED;\r
879 }\r
880\r
881 *(Context->PacketLen) = PacketLen;\r
882 CopyMem (*(Context->Packet), Packet, PacketLen);\r
883\r
884 return EFI_ABORTED;\r
885}\r
886\r
887\r
888/**\r
889 Clean up the current Mtftp6 operation.\r
890\r
891 @param[in] Instance The pointer to the Mtftp6 instance.\r
892 @param[in] Result The result to be returned to the user.\r
893\r
894**/\r
895VOID\r
896Mtftp6OperationClean (\r
897 IN MTFTP6_INSTANCE *Instance,\r
898 IN EFI_STATUS Result\r
899 )\r
900{\r
901 LIST_ENTRY *Entry;\r
902 LIST_ENTRY *Next;\r
903 MTFTP6_BLOCK_RANGE *Block;\r
904\r
905 //\r
906 // Clean up the current token and event.\r
907 //\r
908 if (Instance->Token != NULL) {\r
909 Instance->Token->Status = Result;\r
910 if (Instance->Token->Event != NULL) {\r
911 gBS->SignalEvent (Instance->Token->Event);\r
912 }\r
913 Instance->Token = NULL;\r
914 }\r
915\r
916 //\r
917 // Clean up the corresponding Udp6Io.\r
918 //\r
919 if (Instance->UdpIo != NULL) {\r
920 UdpIoCleanIo (Instance->UdpIo);\r
921 }\r
922\r
923 if (Instance->McastUdpIo != NULL) {\r
216f7970 924 gBS->CloseProtocol (\r
925 Instance->McastUdpIo->UdpHandle,\r
926 &gEfiUdp6ProtocolGuid,\r
927 Instance->McastUdpIo->Image,\r
928 Instance->Handle\r
929 );\r
a3bcde70
HT
930 UdpIoFreeIo (Instance->McastUdpIo);\r
931 Instance->McastUdpIo = NULL;\r
932 }\r
933\r
934 //\r
935 // Clean up the stored last packet.\r
936 //\r
937 if (Instance->LastPacket != NULL) {\r
938 NetbufFree (Instance->LastPacket);\r
939 Instance->LastPacket = NULL;\r
940 }\r
941\r
942 NET_LIST_FOR_EACH_SAFE (Entry, Next, &Instance->BlkList) {\r
943 Block = NET_LIST_USER_STRUCT (Entry, MTFTP6_BLOCK_RANGE, Link);\r
944 RemoveEntryList (Entry);\r
945 FreePool (Block);\r
946 }\r
947\r
948 //\r
949 // Reinitialize the corresponding fields of the Mtftp6 operation.\r
950 //\r
951 ZeroMem (&Instance->ExtInfo, sizeof (MTFTP6_EXT_OPTION_INFO));\r
952 ZeroMem (&Instance->ServerIp, sizeof (EFI_IPv6_ADDRESS));\r
953 ZeroMem (&Instance->McastIp, sizeof (EFI_IPv6_ADDRESS));\r
954\r
955 Instance->ServerCmdPort = 0;\r
956 Instance->ServerDataPort = 0;\r
957 Instance->McastPort = 0;\r
958 Instance->BlkSize = 0;\r
959 Instance->LastBlk = 0;\r
960 Instance->PacketToLive = 0;\r
961 Instance->MaxRetry = 0;\r
962 Instance->CurRetry = 0;\r
963 Instance->Timeout = 0;\r
964 Instance->IsMaster = TRUE;\r
965}\r
966\r
967\r
968/**\r
969 Start the Mtftp6 instance to perform the operation, such as read file,\r
970 write file, and read directory.\r
971\r
972 @param[in] This The MTFTP session.\r
973 @param[in] Token The token than encapsues the user's request.\r
974 @param[in] OpCode The operation to perform.\r
975\r
976 @retval EFI_INVALID_PARAMETER Some of the parameters are invalid.\r
977 @retval EFI_NOT_STARTED The MTFTP session hasn't been configured.\r
978 @retval EFI_ALREADY_STARTED There is pending operation for the session.\r
979 @retval EFI_SUCCESS The operation is successfully started.\r
980\r
981**/\r
982EFI_STATUS\r
983Mtftp6OperationStart (\r
984 IN EFI_MTFTP6_PROTOCOL *This,\r
985 IN EFI_MTFTP6_TOKEN *Token,\r
986 IN UINT16 OpCode\r
987 )\r
988{\r
989 MTFTP6_INSTANCE *Instance;\r
990 EFI_STATUS Status;\r
991\r
992 if (This == NULL ||\r
993 Token == NULL ||\r
994 Token->Filename == NULL ||\r
995 (Token->OptionCount != 0 && Token->OptionList == NULL) ||\r
996 (Token->OverrideData != NULL && !NetIp6IsValidUnicast (&Token->OverrideData->ServerIp))\r
997 ) {\r
998 return EFI_INVALID_PARAMETER;\r
999 }\r
1000\r
1001 //\r
1002 // At least define one method to collect the data for download.\r
1003 //\r
1004 if ((OpCode == EFI_MTFTP6_OPCODE_RRQ || OpCode == EFI_MTFTP6_OPCODE_DIR) &&\r
1005 Token->Buffer == NULL &&\r
1006 Token->CheckPacket == NULL\r
1007 ) {\r
1008 return EFI_INVALID_PARAMETER;\r
1009 }\r
1010\r
1011 //\r
1012 // At least define one method to provide the data for upload.\r
1013 //\r
1014 if (OpCode == EFI_MTFTP6_OPCODE_WRQ && Token->Buffer == NULL && Token->PacketNeeded == NULL) {\r
1015 return EFI_INVALID_PARAMETER;\r
1016 }\r
1017\r
1018 Instance = MTFTP6_INSTANCE_FROM_THIS (This);\r
1019\r
1020 if (Instance->Config == NULL) {\r
1021 return EFI_NOT_STARTED;\r
1022 }\r
1023\r
1024 if (Instance->Token != NULL) {\r
1025 return EFI_ACCESS_DENIED;\r
1026 }\r
1027\r
1028 Status = EFI_SUCCESS;\r
1029 Instance->OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1030\r
1031 //\r
1032 // Parse the extension options in the request packet.\r
1033 //\r
1034 if (Token->OptionCount != 0) {\r
1035\r
1036 Status = Mtftp6ParseExtensionOption (\r
1037 Token->OptionList,\r
1038 Token->OptionCount,\r
1039 TRUE,\r
1040 &Instance->ExtInfo\r
1041 );\r
1042\r
1043 if (EFI_ERROR (Status)) {\r
1044 goto ON_ERROR;\r
1045 }\r
1046 }\r
1047\r
1048 //\r
1049 // Initialize runtime data from config data or override data.\r
1050 //\r
1051 Instance->Token = Token;\r
1052 Instance->ServerCmdPort = Instance->Config->InitialServerPort;\r
1053 Instance->ServerDataPort = 0;\r
1054 Instance->MaxRetry = Instance->Config->TryCount;\r
1055 Instance->Timeout = Instance->Config->TimeoutValue;\r
1056 Instance->IsMaster = TRUE;\r
1057\r
1058 CopyMem (\r
1059 &Instance->ServerIp,\r
1060 &Instance->Config->ServerIp,\r
1061 sizeof (EFI_IPv6_ADDRESS)\r
1062 );\r
1063\r
1064 if (Token->OverrideData != NULL) {\r
1065 Instance->ServerCmdPort = Token->OverrideData->ServerPort;\r
1066 Instance->MaxRetry = Token->OverrideData->TryCount;\r
1067 Instance->Timeout = Token->OverrideData->TimeoutValue;\r
1068\r
1069 CopyMem (\r
1070 &Instance->ServerIp,\r
1071 &Token->OverrideData->ServerIp,\r
1072 sizeof (EFI_IPv6_ADDRESS)\r
1073 );\r
1074 }\r
1075\r
1076 //\r
1077 // Set default value for undefined parameters.\r
1078 //\r
1079 if (Instance->ServerCmdPort == 0) {\r
1080 Instance->ServerCmdPort = MTFTP6_DEFAULT_SERVER_CMD_PORT;\r
1081 }\r
1082 if (Instance->BlkSize == 0) {\r
1083 Instance->BlkSize = MTFTP6_DEFAULT_BLK_SIZE;\r
1084 }\r
1085 if (Instance->MaxRetry == 0) {\r
1086 Instance->MaxRetry = MTFTP6_DEFAULT_MAX_RETRY;\r
1087 }\r
1088 if (Instance->Timeout == 0) {\r
1089 Instance->Timeout = MTFTP6_DEFAULT_TIMEOUT;\r
1090 }\r
1091\r
1092 Token->Status = EFI_NOT_READY;\r
1093\r
1094 //\r
1095 // Switch the routines by the operation code.\r
1096 //\r
1097 switch (OpCode) {\r
1098 case EFI_MTFTP6_OPCODE_RRQ:\r
1099 Status = Mtftp6RrqStart (Instance, OpCode);\r
1100 break;\r
1101\r
1102 case EFI_MTFTP6_OPCODE_DIR:\r
1103 Status = Mtftp6RrqStart (Instance, OpCode);\r
1104 break;\r
1105\r
1106 case EFI_MTFTP6_OPCODE_WRQ:\r
1107 Status = Mtftp6WrqStart (Instance, OpCode);\r
1108 break;\r
1109\r
1110 default:\r
1111 Status = EFI_DEVICE_ERROR;\r
1112 goto ON_ERROR;\r
1113 }\r
1114\r
1115 if (EFI_ERROR (Status)) {\r
1116 goto ON_ERROR;\r
1117 }\r
1118\r
1119 //\r
1120 // Return immediately for asynchronous or poll the instance for synchronous.\r
1121 //\r
1122 gBS->RestoreTPL (Instance->OldTpl);\r
1123\r
1124 if (Token->Event == NULL) {\r
1125 while (Token->Status == EFI_NOT_READY) {\r
1126 This->Poll (This);\r
1127 }\r
1128 return Token->Status;\r
1129 }\r
1130\r
1131 return EFI_SUCCESS;\r
1132\r
1133ON_ERROR:\r
1134\r
1135 Mtftp6OperationClean (Instance, Status);\r
1136 gBS->RestoreTPL (Instance->OldTpl);\r
1137\r
1138 return Status;\r
1139}\r
1140\r
1141\r
1142/**\r
1143 The timer ticking routine for the Mtftp6 instance.\r
1144\r
1145 @param[in] Event The pointer to the ticking event.\r
1146 @param[in] Context The pointer to the context.\r
1147\r
1148**/\r
1149VOID\r
1150EFIAPI\r
1151Mtftp6OnTimerTick (\r
1152 IN EFI_EVENT Event,\r
1153 IN VOID *Context\r
1154 )\r
1155{\r
1156 MTFTP6_SERVICE *Service;\r
1157 MTFTP6_INSTANCE *Instance;\r
1158 LIST_ENTRY *Entry;\r
1159 LIST_ENTRY *Next;\r
1160 EFI_MTFTP6_TOKEN *Token;\r
1161 EFI_STATUS Status;\r
1162\r
1163 Service = (MTFTP6_SERVICE *) Context;\r
1164\r
1165 //\r
1166 // Iterate through all the children of the Mtftp service instance. Time\r
1167 // out the packet. If maximum retries reached, clean the session up.\r
1168 //\r
1169 NET_LIST_FOR_EACH_SAFE (Entry, Next, &Service->Children) {\r
1170\r
1171 Instance = NET_LIST_USER_STRUCT (Entry, MTFTP6_INSTANCE, Link);\r
1172\r
1173 if (Instance->Token == NULL) {\r
1174 continue;\r
1175 }\r
1176\r
1177 if (Instance->PacketToLive > 0) {\r
1178 Instance->PacketToLive--;\r
1179 continue;\r
1180 }\r
1181\r
1182 Instance->CurRetry++;\r
1183 Token = Instance->Token;\r
1184\r
1185 if (Token->TimeoutCallback != NULL) {\r
1186 //\r
1187 // Call the timeout callback routine if has.\r
1188 //\r
1189 Status = Token->TimeoutCallback (&Instance->Mtftp6, Token);\r
1190\r
1191 if (EFI_ERROR (Status)) {\r
1192 Mtftp6SendError (\r
1193 Instance,\r
1194 EFI_MTFTP6_ERRORCODE_REQUEST_DENIED,\r
1195 (UINT8 *) "User aborted the transfer in time out"\r
1196 );\r
1197 Mtftp6OperationClean (Instance, EFI_ABORTED);\r
1198 continue;\r
1199 }\r
1200 }\r
1201\r
1202 //\r
1203 // Retransmit the packet if haven't reach the maxmium retry count,\r
1204 // otherwise exit the transfer.\r
1205 //\r
1206 if (Instance->CurRetry < Instance->MaxRetry) {\r
1207 Mtftp6TransmitPacket (Instance, Instance->LastPacket);\r
1208 } else {\r
1209 Mtftp6OperationClean (Instance, EFI_TIMEOUT);\r
1210 continue;\r
1211 }\r
1212 }\r
1213}\r