]> git.proxmox.com Git - mirror_edk2.git/blame - MdeModulePkg/Universal/Network/UefiPxeBcDxe/PxeBcImpl.c
Removes a useless condition in PxeBcImpl.c.
[mirror_edk2.git] / MdeModulePkg / Universal / Network / UefiPxeBcDxe / PxeBcImpl.c
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dc361cc5 1/** @file\r
f737cfb9 2 Interface routines for PxeBc.\r
e2851998 3\r
416211e0 4Copyright (c) 2007 - 2013, Intel Corporation. All rights reserved.<BR>\r
e5eed7d3 5This program and the accompanying materials\r
dc361cc5 6are licensed and made available under the terms and conditions of the BSD License\r
7which accompanies this distribution. The full text of the license may be found at\r
8http://opensource.org/licenses/bsd-license.php\r
9\r
10THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
11WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
12\r
dc361cc5 13**/\r
14\r
15\r
16#include "PxeBcImpl.h"\r
17\r
434ce3fe 18UINT32 mPxeDhcpTimeout[4] = { 4, 8, 16, 32 };\r
f737cfb9 19\r
982a9eae 20/**\r
f737cfb9 21 Get and record the arp cache.\r
982a9eae 22\r
23 @param This Pointer to EFI_PXE_BC_PROTOCOL\r
24\r
25 @retval EFI_SUCCESS Arp cache updated successfully\r
f737cfb9 26 @retval others If error occurs when getting arp cache\r
982a9eae 27\r
28**/\r
982a9eae 29EFI_STATUS\r
30UpdateArpCache (\r
31 IN EFI_PXE_BASE_CODE_PROTOCOL * This\r
32 )\r
33{\r
34 PXEBC_PRIVATE_DATA *Private;\r
35 EFI_PXE_BASE_CODE_MODE *Mode;\r
36 EFI_STATUS Status;\r
37 UINT32 EntryLength;\r
38 UINT32 EntryCount;\r
39 EFI_ARP_FIND_DATA *Entries;\r
40 UINT32 Index;\r
41\r
42 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
43 Mode = Private->PxeBc.Mode;\r
44\r
f737cfb9 45 Status = Private->Arp->Find (\r
46 Private->Arp,\r
47 TRUE,\r
48 NULL,\r
49 &EntryLength,\r
50 &EntryCount,\r
51 &Entries,\r
52 TRUE\r
53 );\r
982a9eae 54 if (EFI_ERROR (Status)) {\r
55 return Status;\r
56 }\r
57\r
f737cfb9 58 Mode->ArpCacheEntries = MIN (\r
59 EntryCount,\r
60 EFI_PXE_BASE_CODE_MAX_ARP_ENTRIES\r
61 );\r
982a9eae 62 for (Index = 0; Index < Mode->ArpCacheEntries; Index ++) {\r
f737cfb9 63 CopyMem (\r
e2851998 64 &Mode->ArpCache[Index].IpAddr,\r
65 Entries + 1,\r
f737cfb9 66 Entries->SwAddressLength\r
67 );\r
68 CopyMem (\r
69 &Mode->ArpCache[Index].MacAddr,\r
70 (UINT8 *) (Entries + 1) + Entries->SwAddressLength,\r
71 Entries->HwAddressLength\r
72 );\r
982a9eae 73 //\r
74 // Slip to the next FindData.\r
75 //\r
f737cfb9 76 Entries = (EFI_ARP_FIND_DATA *) ((UINT8 *) Entries + EntryLength);\r
982a9eae 77 }\r
78\r
79 return EFI_SUCCESS;\r
80}\r
81\r
82/**\r
f737cfb9 83 Timeout routine to update arp cache.\r
982a9eae 84\r
85 @param Event Pointer to EFI_PXE_BC_PROTOCOL\r
86 @param Context Context of the timer event\r
87\r
88**/\r
982a9eae 89VOID\r
90EFIAPI\r
91ArpCacheUpdateTimeout (\r
92 IN EFI_EVENT Event,\r
93 IN VOID *Context\r
94 )\r
95{\r
96 UpdateArpCache ((EFI_PXE_BASE_CODE_PROTOCOL *) Context);\r
97}\r
98\r
99/**\r
f737cfb9 100 Do arp resolution from arp cache in PxeBcMode.\r
e2851998 101\r
f737cfb9 102 @param PxeBcMode The PXE BC mode to look into.\r
103 @param Ip4Addr The Ip4 address for resolution.\r
104 @param MacAddress The resoluted MAC address if the resolution is successful.\r
105 The value is undefined if resolution fails.\r
e2851998 106\r
f737cfb9 107 @retval TRUE The resolution is successful.\r
108 @retval FALSE Otherwise.\r
982a9eae 109\r
110**/\r
982a9eae 111BOOLEAN\r
112FindInArpCache (\r
f737cfb9 113 IN EFI_PXE_BASE_CODE_MODE *PxeBcMode,\r
114 IN EFI_IPv4_ADDRESS *Ip4Addr,\r
115 OUT EFI_MAC_ADDRESS *MacAddress\r
982a9eae 116 )\r
117{\r
118 UINT32 Index;\r
119\r
120 for (Index = 0; Index < PxeBcMode->ArpCacheEntries; Index ++) {\r
121 if (EFI_IP4_EQUAL (&PxeBcMode->ArpCache[Index].IpAddr.v4, Ip4Addr)) {\r
f737cfb9 122 CopyMem (\r
123 MacAddress,\r
124 &PxeBcMode->ArpCache[Index].MacAddr,\r
125 sizeof (EFI_MAC_ADDRESS)\r
126 );\r
982a9eae 127 return TRUE;\r
128 }\r
129 }\r
130\r
131 return FALSE;\r
132}\r
133\r
134/**\r
135 Notify function for the ICMP receive token, used to process\r
136 the received ICMP packets.\r
137\r
f737cfb9 138 @param Context The PXEBC private data.\r
982a9eae 139\r
982a9eae 140**/\r
982a9eae 141VOID\r
142EFIAPI\r
143IcmpErrorListenHandlerDpc (\r
144 IN VOID *Context\r
145 )\r
146{\r
147 EFI_STATUS Status;\r
148 EFI_IP4_RECEIVE_DATA *RxData;\r
149 EFI_IP4_PROTOCOL *Ip4;\r
150 PXEBC_PRIVATE_DATA *Private;\r
151 EFI_PXE_BASE_CODE_MODE *Mode;\r
152 UINTN Index;\r
153 UINT32 CopiedLen;\r
154 UINT8 *CopiedPointer;\r
155\r
156 Private = (PXEBC_PRIVATE_DATA *) Context;\r
157 Mode = &Private->Mode;\r
158 Status = Private->IcmpErrorRcvToken.Status;\r
159 RxData = Private->IcmpErrorRcvToken.Packet.RxData;\r
160 Ip4 = Private->Ip4;\r
161\r
f737cfb9 162 if (Status == EFI_ABORTED) {\r
982a9eae 163 //\r
164 // The reception is actively aborted by the consumer, directly return.\r
165 //\r
166 return;\r
167 }\r
168\r
f737cfb9 169 if (EFI_ERROR (Status) || (RxData == NULL)) {\r
982a9eae 170 //\r
171 // Only process the normal packets and the icmp error packets, if RxData is NULL\r
172 // with Status == EFI_SUCCESS or EFI_ICMP_ERROR, just resume the receive although\r
173 // this should be a bug of the low layer (IP).\r
174 //\r
175 goto Resume;\r
176 }\r
177\r
f737cfb9 178 if (EFI_IP4 (RxData->Header->SourceAddress) != 0 &&\r
f6b7393c 179 !NetIp4IsUnicast (EFI_NTOHL (RxData->Header->SourceAddress), 0)) {\r
982a9eae 180 //\r
181 // The source address is not zero and it's not a unicast IP address, discard it.\r
182 //\r
183 goto CleanUp;\r
184 }\r
185\r
186 if (!EFI_IP4_EQUAL (&RxData->Header->DestinationAddress, &Mode->StationIp.v4)) {\r
187 //\r
188 // The dest address is not equal to Station Ip address, discard it.\r
189 //\r
190 goto CleanUp;\r
191 }\r
192\r
193 //\r
194 // Constructor ICMP error packet\r
195 //\r
196 CopiedLen = 0;\r
197 CopiedPointer = (UINT8 *) &Mode->IcmpError;\r
198\r
199 for (Index = 0; Index < RxData->FragmentCount; Index ++) {\r
200 CopiedLen += RxData->FragmentTable[Index].FragmentLength;\r
201 if (CopiedLen <= sizeof (EFI_PXE_BASE_CODE_ICMP_ERROR)) {\r
f737cfb9 202 CopyMem (\r
203 CopiedPointer,\r
204 RxData->FragmentTable[Index].FragmentBuffer,\r
205 RxData->FragmentTable[Index].FragmentLength\r
206 );\r
982a9eae 207 } else {\r
f737cfb9 208 CopyMem (\r
209 CopiedPointer,\r
210 RxData->FragmentTable[Index].FragmentBuffer,\r
211 CopiedLen - sizeof (EFI_PXE_BASE_CODE_ICMP_ERROR)\r
212 );\r
982a9eae 213 }\r
214 CopiedPointer += CopiedLen;\r
215 }\r
216\r
217 goto Resume;\r
218\r
219CleanUp:\r
220 gBS->SignalEvent (RxData->RecycleSignal);\r
221\r
222Resume:\r
223 Ip4->Receive (Ip4, &(Private->IcmpErrorRcvToken));\r
224}\r
225\r
226/**\r
227 Request IcmpErrorListenHandlerDpc as a DPC at TPL_CALLBACK\r
228\r
229 @param Event The event signaled.\r
230 @param Context The context passed in by the event notifier.\r
231\r
982a9eae 232**/\r
982a9eae 233VOID\r
234EFIAPI\r
235IcmpErrorListenHandler (\r
236 IN EFI_EVENT Event,\r
237 IN VOID *Context\r
238 )\r
239{\r
240 //\r
241 // Request IpIoListenHandlerDpc as a DPC at TPL_CALLBACK\r
242 //\r
d8d26fb2 243 QueueDpc (TPL_CALLBACK, IcmpErrorListenHandlerDpc, Context);\r
982a9eae 244}\r
dc361cc5 245\r
e2851998 246/**\r
f737cfb9 247 Enables the use of the PXE Base Code Protocol functions.\r
248\r
249 This function enables the use of the PXE Base Code Protocol functions. If the\r
250 Started field of the EFI_PXE_BASE_CODE_MODE structure is already TRUE, then\r
251 EFI_ALREADY_STARTED will be returned. If UseIpv6 is TRUE, then IPv6 formatted\r
252 addresses will be used in this session. If UseIpv6 is FALSE, then IPv4 formatted\r
253 addresses will be used in this session. If UseIpv6 is TRUE, and the Ipv6Supported\r
254 field of the EFI_PXE_BASE_CODE_MODE structure is FALSE, then EFI_UNSUPPORTED will\r
255 be returned. If there is not enough memory or other resources to start the PXE\r
256 Base Code Protocol, then EFI_OUT_OF_RESOURCES will be returned. Otherwise, the\r
257 PXE Base Code Protocol will be started, and all of the fields of the EFI_PXE_BASE_CODE_MODE\r
258 structure will be initialized as follows:\r
259 StartedSet to TRUE.\r
260 Ipv6SupportedUnchanged.\r
261 Ipv6AvailableUnchanged.\r
262 UsingIpv6Set to UseIpv6.\r
263 BisSupportedUnchanged.\r
264 BisDetectedUnchanged.\r
265 AutoArpSet to TRUE.\r
266 SendGUIDSet to FALSE.\r
267 TTLSet to DEFAULT_TTL.\r
268 ToSSet to DEFAULT_ToS.\r
269 DhcpCompletedSet to FALSE.\r
270 ProxyOfferReceivedSet to FALSE.\r
271 StationIpSet to an address of all zeros.\r
272 SubnetMaskSet to a subnet mask of all zeros.\r
273 DhcpDiscoverZero-filled.\r
274 DhcpAckZero-filled.\r
275 ProxyOfferZero-filled.\r
276 PxeDiscoverValidSet to FALSE.\r
277 PxeDiscoverZero-filled.\r
278 PxeReplyValidSet to FALSE.\r
279 PxeReplyZero-filled.\r
280 PxeBisReplyValidSet to FALSE.\r
281 PxeBisReplyZero-filled.\r
282 IpFilterSet the Filters field to 0 and the IpCnt field to 0.\r
283 ArpCacheEntriesSet to 0.\r
284 ArpCacheZero-filled.\r
285 RouteTableEntriesSet to 0.\r
286 RouteTableZero-filled.\r
287 IcmpErrorReceivedSet to FALSE.\r
288 IcmpErrorZero-filled.\r
289 TftpErroReceivedSet to FALSE.\r
290 TftpErrorZero-filled.\r
291 MakeCallbacksSet to TRUE if the PXE Base Code Callback Protocol is available.\r
292 Set to FALSE if the PXE Base Code Callback Protocol is not available.\r
e2851998 293\r
f737cfb9 294 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
295 @param UseIpv6 Specifies the type of IP addresses that are to be used during the session\r
e2851998 296 that is being started. Set to TRUE for IPv6 addresses, and FALSE for\r
297 IPv4 addresses.\r
298\r
f737cfb9 299 @retval EFI_SUCCESS The PXE Base Code Protocol was started.\r
e2851998 300 @retval EFI_DEVICE_ERROR The network device encountered an error during this oper\r
f737cfb9 301 @retval EFI_UNSUPPORTED UseIpv6 is TRUE, but the Ipv6Supported field of the\r
e2851998 302 EFI_PXE_BASE_CODE_MODE structure is FALSE.\r
303 @retval EFI_ALREADY_STARTED The PXE Base Code Protocol is already in the started state.\r
f737cfb9 304 @retval EFI_INVALID_PARAMETER The This parameter is NULL or does not point to a valid\r
e2851998 305 EFI_PXE_BASE_CODE_PROTOCOL structure.\r
306 @retval EFI_OUT_OF_RESOURCES Could not allocate enough memory or other resources to start the\r
307 PXE Base Code Protocol.\r
308\r
dc361cc5 309**/\r
310EFI_STATUS\r
311EFIAPI\r
312EfiPxeBcStart (\r
313 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
314 IN BOOLEAN UseIpv6\r
315 )\r
316{\r
317 PXEBC_PRIVATE_DATA *Private;\r
318 EFI_PXE_BASE_CODE_MODE *Mode;\r
319 EFI_STATUS Status;\r
320\r
321 if (This == NULL) {\r
322 return EFI_INVALID_PARAMETER;\r
323 }\r
324\r
325 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
326 Mode = Private->PxeBc.Mode;\r
327\r
328 if (Mode->Started) {\r
329 return EFI_ALREADY_STARTED;\r
330 }\r
331\r
332 if (UseIpv6) {\r
333 //\r
334 // IPv6 is not supported now.\r
335 //\r
336 return EFI_UNSUPPORTED;\r
337 }\r
338\r
339 //\r
340 // Configure the udp4 instance to let it receive data\r
341 //\r
f737cfb9 342 Status = Private->Udp4Read->Configure (\r
e2851998 343 Private->Udp4Read,\r
f737cfb9 344 &Private->Udp4CfgData\r
345 );\r
dc361cc5 346 if (EFI_ERROR (Status)) {\r
347 return Status;\r
348 }\r
349\r
cfbc1a75 350\r
351 //\r
352 // Configure block size for TFTP as a default value to handle all link layers.\r
353 // \r
354 Private->BlockSize = (UINTN) (MIN (Private->Ip4MaxPacketSize, PXEBC_DEFAULT_PACKET_SIZE) - \r
355 PXEBC_DEFAULT_UDP_OVERHEAD_SIZE - PXEBC_DEFAULT_TFTP_OVERHEAD_SIZE);\r
356 //\r
357 // If PcdTftpBlockSize is set to non-zero, override the default value.\r
358 //\r
359 if (PcdGet64 (PcdTftpBlockSize) != 0) {\r
360 Private->BlockSize = (UINTN) PcdGet64 (PcdTftpBlockSize);\r
361 }\r
362 \r
dc361cc5 363 Private->AddressIsOk = FALSE;\r
364\r
365 ZeroMem (Mode, sizeof (EFI_PXE_BASE_CODE_MODE));\r
366\r
367 Mode->Started = TRUE;\r
368 Mode->TTL = DEFAULT_TTL;\r
369 Mode->ToS = DEFAULT_ToS;\r
370 Mode->AutoArp = TRUE;\r
371\r
982a9eae 372 //\r
373 // Create the event for Arp Cache checking.\r
374 //\r
375 Status = gBS->CreateEvent (\r
376 EVT_TIMER | EVT_NOTIFY_SIGNAL,\r
377 TPL_CALLBACK,\r
378 ArpCacheUpdateTimeout,\r
379 This,\r
380 &Private->GetArpCacheEvent\r
381 );\r
382 if (EFI_ERROR (Status)) {\r
383 goto ON_EXIT;\r
384 }\r
385\r
386 //\r
387 // Start the timeout timer event.\r
388 //\r
389 Status = gBS->SetTimer (\r
390 Private->GetArpCacheEvent,\r
391 TimerPeriodic,\r
392 TICKS_PER_SECOND\r
393 );\r
394\r
395 if (EFI_ERROR (Status)) {\r
396 goto ON_EXIT;\r
397 }\r
398\r
399 //\r
400 // Create ICMP error receiving event\r
401 //\r
402 Status = gBS->CreateEvent (\r
403 EVT_NOTIFY_SIGNAL,\r
404 TPL_NOTIFY,\r
405 IcmpErrorListenHandler,\r
406 Private,\r
407 &(Private->IcmpErrorRcvToken.Event)\r
408 );\r
409 if (EFI_ERROR (Status)) {\r
410 goto ON_EXIT;\r
411 }\r
412\r
413 Status = Private->Ip4->Configure (Private->Ip4, &Private->Ip4ConfigData);\r
414 if (EFI_ERROR (Status)) {\r
415 goto ON_EXIT;\r
416 }\r
417\r
418 //\r
419 // start to listen incoming packet\r
420 //\r
421 Status = Private->Ip4->Receive (Private->Ip4, &Private->IcmpErrorRcvToken);\r
422 if (!EFI_ERROR (Status)) {\r
423 return Status;\r
424 }\r
425\r
426ON_EXIT:\r
427 Private->Ip4->Configure (Private->Ip4, NULL);\r
428\r
429 if (Private->IcmpErrorRcvToken.Event != NULL) {\r
430 gBS->CloseEvent (Private->IcmpErrorRcvToken.Event);\r
431 }\r
432\r
433 if (Private->GetArpCacheEvent != NULL) {\r
434 gBS->SetTimer (Private->GetArpCacheEvent, TimerCancel, 0);\r
435 gBS->CloseEvent (Private->GetArpCacheEvent);\r
436 }\r
437\r
438 Mode->Started = FALSE;\r
439 Mode->TTL = 0;\r
440 Mode->ToS = 0;\r
441 Mode->AutoArp = FALSE;\r
442\r
443 return Status;\r
dc361cc5 444}\r
445\r
446\r
e2851998 447/**\r
f737cfb9 448 Disables the use of the PXE Base Code Protocol functions.\r
449\r
450 This function stops all activity on the network device. All the resources allocated\r
451 in Start() are released, the Started field of the EFI_PXE_BASE_CODE_MODE structure is\r
452 set to FALSE and EFI_SUCCESS is returned. If the Started field of the EFI_PXE_BASE_CODE_MODE\r
453 structure is already FALSE, then EFI_NOT_STARTED will be returned.\r
e2851998 454\r
f737cfb9 455 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
e2851998 456\r
f737cfb9 457 @retval EFI_SUCCESS The PXE Base Code Protocol was stopped.\r
e2851998 458 @retval EFI_NOT_STARTED The PXE Base Code Protocol is already in the stopped state.\r
f737cfb9 459 @retval EFI_INVALID_PARAMETER The This parameter is NULL or does not point to a valid\r
e2851998 460 EFI_PXE_BASE_CODE_PROTOCOL structure.\r
461 @retval EFI_DEVICE_ERROR The network device encountered an error during this operation.\r
462\r
dc361cc5 463**/\r
464EFI_STATUS\r
465EFIAPI\r
466EfiPxeBcStop (\r
467 IN EFI_PXE_BASE_CODE_PROTOCOL *This\r
468 )\r
469{\r
470 PXEBC_PRIVATE_DATA *Private;\r
471 EFI_PXE_BASE_CODE_MODE *Mode;\r
472\r
473 if (This == NULL) {\r
474 return EFI_INVALID_PARAMETER;\r
475 }\r
476\r
477 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
478 Mode = Private->PxeBc.Mode;\r
479\r
480 if (!Mode->Started) {\r
481 return EFI_NOT_STARTED;\r
482 }\r
483\r
982a9eae 484 Private->Ip4->Cancel (Private->Ip4, NULL);\r
485 //\r
486 // Dispatch the DPCs queued by the NotifyFunction of the canceled rx token's\r
487 // events.\r
488 //\r
d8d26fb2 489 DispatchDpc ();\r
982a9eae 490\r
491 Private->Ip4->Configure (Private->Ip4, NULL);\r
492\r
493 //\r
494 // Close the ICMP error receiving event.\r
495 //\r
496 gBS->CloseEvent (Private->IcmpErrorRcvToken.Event);\r
497\r
498 //\r
499 // Cancel the TimeoutEvent timer.\r
500 //\r
501 gBS->SetTimer (Private->GetArpCacheEvent, TimerCancel, 0);\r
502\r
503 //\r
504 // Close the TimeoutEvent event.\r
505 //\r
506 gBS->CloseEvent (Private->GetArpCacheEvent);\r
507\r
dc361cc5 508 Mode->Started = FALSE;\r
509\r
8792362f 510 Private->CurrentUdpSrcPort = 0;\r
511 Private->Udp4Write->Configure (Private->Udp4Write, NULL);\r
434ce3fe 512 Private->Udp4Read->Groups (Private->Udp4Read, FALSE, NULL);\r
8792362f 513 Private->Udp4Read->Configure (Private->Udp4Read, NULL);\r
dc361cc5 514\r
515 Private->Dhcp4->Stop (Private->Dhcp4);\r
516 Private->Dhcp4->Configure (Private->Dhcp4, NULL);\r
517\r
518 Private->FileSize = 0;\r
519\r
520 return EFI_SUCCESS;\r
521}\r
522\r
523\r
e2851998 524/**\r
f737cfb9 525 Attempts to complete a DHCPv4 D.O.R.A. (discover / offer / request / acknowledge) or DHCPv6\r
526 S.A.R.R (solicit / advertise / request / reply) sequence.\r
527\r
528 This function attempts to complete the DHCP sequence. If this sequence is completed,\r
529 then EFI_SUCCESS is returned, and the DhcpCompleted, ProxyOfferReceived, StationIp,\r
530 SubnetMask, DhcpDiscover, DhcpAck, and ProxyOffer fields of the EFI_PXE_BASE_CODE_MODE\r
531 structure are filled in.\r
532 If SortOffers is TRUE, then the cached DHCP offer packets will be sorted before\r
533 they are tried. If SortOffers is FALSE, then the cached DHCP offer packets will\r
534 be tried in the order in which they are received. Please see the Preboot Execution\r
535 Environment (PXE) Specification for additional details on the implementation of DHCP.\r
536 This function can take at least 31 seconds to timeout and return control to the\r
537 caller. If the DHCP sequence does not complete, then EFI_TIMEOUT will be returned.\r
538 If the Callback Protocol does not return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE,\r
539 then the DHCP sequence will be stopped and EFI_ABORTED will be returned.\r
e2851998 540\r
f737cfb9 541 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
542 @param SortOffers TRUE if the offers received should be sorted. Set to FALSE to try the\r
e2851998 543 offers in the order that they are received.\r
544\r
f737cfb9 545 @retval EFI_SUCCESS Valid DHCP has completed.\r
546 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
547 @retval EFI_INVALID_PARAMETER The This parameter is NULL or does not point to a valid\r
e2851998 548 EFI_PXE_BASE_CODE_PROTOCOL structure.\r
549 @retval EFI_DEVICE_ERROR The network device encountered an error during this operation.\r
f737cfb9 550 @retval EFI_OUT_OF_RESOURCES Could not allocate enough memory to complete the DHCP Protocol.\r
551 @retval EFI_ABORTED The callback function aborted the DHCP Protocol.\r
552 @retval EFI_TIMEOUT The DHCP Protocol timed out.\r
553 @retval EFI_ICMP_ERROR An ICMP error packet was received during the DHCP session.\r
554 @retval EFI_NO_RESPONSE Valid PXE offer was not received.\r
e2851998 555\r
dc361cc5 556**/\r
557EFI_STATUS\r
558EFIAPI\r
559EfiPxeBcDhcp (\r
560 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
561 IN BOOLEAN SortOffers\r
562 )\r
563{\r
8730386e 564 PXEBC_PRIVATE_DATA *Private;\r
565 EFI_PXE_BASE_CODE_MODE *Mode;\r
566 EFI_DHCP4_PROTOCOL *Dhcp4;\r
567 EFI_DHCP4_CONFIG_DATA Dhcp4CfgData;\r
568 EFI_DHCP4_MODE_DATA Dhcp4Mode;\r
569 EFI_DHCP4_PACKET_OPTION *OptList[PXEBC_DHCP4_MAX_OPTION_NUM];\r
570 UINT32 OptCount;\r
571 EFI_STATUS Status;\r
572 EFI_ARP_CONFIG_DATA ArpConfigData;\r
573 EFI_PXE_BASE_CODE_IP_FILTER IpFilter;\r
dc361cc5 574\r
575 if (This == NULL) {\r
576 return EFI_INVALID_PARAMETER;\r
577 }\r
578\r
579 Status = EFI_SUCCESS;\r
580 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
581 Mode = Private->PxeBc.Mode;\r
582 Dhcp4 = Private->Dhcp4;\r
583 Private->Function = EFI_PXE_BASE_CODE_FUNCTION_DHCP;\r
584 Private->SortOffers = SortOffers;\r
585\r
586 if (!Mode->Started) {\r
587 return EFI_NOT_STARTED;\r
588 }\r
982a9eae 589\r
590 Mode->IcmpErrorReceived = FALSE;\r
591\r
8730386e 592 //\r
593 // Stop Udp4Read instance\r
594 //\r
595 Private->Udp4Read->Configure (Private->Udp4Read, NULL);\r
596\r
dc361cc5 597 //\r
598 // Initialize the DHCP options and build the option list\r
599 //\r
600 OptCount = PxeBcBuildDhcpOptions (Private, OptList, TRUE);\r
601\r
602 //\r
603 // Set the DHCP4 config data.\r
434ce3fe 604 // The four discovery timeouts are 4, 8, 16, 32 seconds respectively.\r
dc361cc5 605 //\r
e48e37fc 606 ZeroMem (&Dhcp4CfgData, sizeof (EFI_DHCP4_CONFIG_DATA));\r
dc361cc5 607 Dhcp4CfgData.OptionCount = OptCount;\r
608 Dhcp4CfgData.OptionList = OptList;\r
609 Dhcp4CfgData.Dhcp4Callback = PxeBcDhcpCallBack;\r
610 Dhcp4CfgData.CallbackContext = Private;\r
434ce3fe 611 Dhcp4CfgData.DiscoverTryCount = 4;\r
612 Dhcp4CfgData.DiscoverTimeout = mPxeDhcpTimeout;\r
dc361cc5 613\r
434ce3fe 614 Status = Dhcp4->Configure (Dhcp4, &Dhcp4CfgData);\r
615 if (EFI_ERROR (Status)) {\r
616 goto ON_EXIT;\r
617 }\r
e2851998 618\r
434ce3fe 619 //\r
620 // Zero those arrays to record the varies numbers of DHCP OFFERS.\r
621 //\r
622 Private->GotProxyOffer = FALSE;\r
623 Private->NumOffers = 0;\r
624 Private->BootpIndex = 0;\r
625 ZeroMem (Private->ServerCount, sizeof (Private->ServerCount));\r
626 ZeroMem (Private->ProxyIndex, sizeof (Private->ProxyIndex));\r
dc361cc5 627\r
434ce3fe 628 Status = Dhcp4->Start (Dhcp4, NULL);\r
629 if (EFI_ERROR (Status)) {\r
630 if (Status == EFI_ICMP_ERROR) {\r
631 Mode->IcmpErrorReceived = TRUE;\r
dc361cc5 632 }\r
434ce3fe 633 goto ON_EXIT;\r
634 }\r
dc361cc5 635\r
434ce3fe 636 Status = Dhcp4->GetModeData (Dhcp4, &Dhcp4Mode);\r
637 if (EFI_ERROR (Status)) {\r
638 goto ON_EXIT;\r
639 }\r
dc361cc5 640\r
434ce3fe 641 ASSERT (Dhcp4Mode.State == Dhcp4Bound);\r
dc361cc5 642\r
434ce3fe 643 CopyMem (&Private->StationIp, &Dhcp4Mode.ClientAddress, sizeof (EFI_IPv4_ADDRESS));\r
644 CopyMem (&Private->SubnetMask, &Dhcp4Mode.SubnetMask, sizeof (EFI_IPv4_ADDRESS));\r
645 CopyMem (&Private->GatewayIp, &Dhcp4Mode.RouterAddress, sizeof (EFI_IPv4_ADDRESS));\r
319075ff 646\r
434ce3fe 647 CopyMem (&Mode->StationIp, &Private->StationIp, sizeof (EFI_IPv4_ADDRESS));\r
648 CopyMem (&Mode->SubnetMask, &Private->SubnetMask, sizeof (EFI_IPv4_ADDRESS));\r
dc361cc5 649\r
434ce3fe 650 //\r
651 // Check the selected offer to see whether BINL is required, if no or BINL is\r
652 // finished, set the various Mode members.\r
653 //\r
654 Status = PxeBcCheckSelectedOffer (Private);\r
dc361cc5 655\r
434ce3fe 656ON_EXIT:\r
dc361cc5 657 if (EFI_ERROR (Status)) {\r
658 Dhcp4->Stop (Dhcp4);\r
659 Dhcp4->Configure (Dhcp4, NULL);\r
660 } else {\r
661 //\r
662 // Remove the previously configured option list and callback function\r
663 //\r
e48e37fc 664 ZeroMem (&Dhcp4CfgData, sizeof (EFI_DHCP4_CONFIG_DATA));\r
dc361cc5 665 Dhcp4->Configure (Dhcp4, &Dhcp4CfgData);\r
666\r
667 Private->AddressIsOk = TRUE;\r
8d285ec0 668\r
669 if (!Mode->UsingIpv6) {\r
670 //\r
671 // If in IPv4 mode, configure the corresponding ARP with this new\r
672 // station IP address.\r
673 //\r
674 ZeroMem (&ArpConfigData, sizeof (EFI_ARP_CONFIG_DATA));\r
675\r
676 ArpConfigData.SwAddressType = 0x0800;\r
c9325700 677 ArpConfigData.SwAddressLength = (UINT8) sizeof (EFI_IPv4_ADDRESS);\r
8d285ec0 678 ArpConfigData.StationAddress = &Private->StationIp.v4;\r
679\r
680 Private->Arp->Configure (Private->Arp, NULL);\r
681 Private->Arp->Configure (Private->Arp, &ArpConfigData);\r
982a9eae 682\r
683 //\r
684 // Updated the route table. Fill the first entry.\r
685 //\r
686 Mode->RouteTableEntries = 1;\r
687 Mode->RouteTable[0].IpAddr.Addr[0] = Private->StationIp.Addr[0] & Private->SubnetMask.Addr[0];\r
688 Mode->RouteTable[0].SubnetMask.Addr[0] = Private->SubnetMask.Addr[0];\r
689 Mode->RouteTable[0].GwAddr.Addr[0] = 0;\r
690\r
691 //\r
692 // Create the default route entry if there is a default router.\r
693 //\r
694 if (Private->GatewayIp.Addr[0] != 0) {\r
695 Mode->RouteTableEntries = 2;\r
696 Mode->RouteTable[1].IpAddr.Addr[0] = 0;\r
697 Mode->RouteTable[1].SubnetMask.Addr[0] = 0;\r
698 Mode->RouteTable[1].GwAddr.Addr[0] = Private->GatewayIp.Addr[0];\r
699 }\r
8730386e 700\r
701 //\r
702 // Flush new station IP address into Udp4CfgData and Ip4ConfigData\r
703 //\r
704 CopyMem (&Private->Udp4CfgData.StationAddress, &Private->StationIp, sizeof (EFI_IPv4_ADDRESS));\r
705 CopyMem (&Private->Udp4CfgData.SubnetMask, &Private->SubnetMask, sizeof (EFI_IPv4_ADDRESS));\r
706 CopyMem (&Private->Ip4ConfigData.StationAddress, &Private->StationIp, sizeof (EFI_IPv4_ADDRESS));\r
707 CopyMem (&Private->Ip4ConfigData.SubnetMask, &Private->SubnetMask, sizeof (EFI_IPv4_ADDRESS));\r
708 \r
709 //\r
710 // Reconfigure the Ip4 instance to capture background ICMP packets with new station Ip address.\r
711 //\r
712 Private->Ip4->Cancel (Private->Ip4, &Private->IcmpErrorRcvToken);\r
713 Private->Ip4->Configure (Private->Ip4, NULL);\r
714 \r
715 Status = Private->Ip4->Configure (Private->Ip4, &Private->Ip4ConfigData);\r
716 if (EFI_ERROR (Status)) {\r
717 goto ON_EXIT;\r
718 }\r
719 \r
720 Status = Private->Ip4->Receive (Private->Ip4, &Private->IcmpErrorRcvToken);\r
721 if (EFI_ERROR (Status)) {\r
722 goto ON_EXIT;\r
723 } \r
8d285ec0 724 }\r
dc361cc5 725 }\r
726\r
357af285 727 Private->Udp4Read->Configure (Private->Udp4Read, &Private->Udp4CfgData);\r
c82291bc 728\r
8730386e 729 //\r
730 // Dhcp(), Discover(), and Mtftp() set the IP filter, and return with the IP \r
731 // receive filter list emptied and the filter set to EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP.\r
732 //\r
733 ZeroMem(&IpFilter, sizeof (EFI_PXE_BASE_CODE_IP_FILTER));\r
734 IpFilter.Filters = EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP;\r
735 This->SetIpFilter (This, &IpFilter);\r
736 \r
dc361cc5 737 return Status;\r
738}\r
739\r
740\r
e2851998 741/**\r
f737cfb9 742 Attempts to complete the PXE Boot Server and/or boot image discovery sequence.\r
743\r
744 This function attempts to complete the PXE Boot Server and/or boot image discovery\r
745 sequence. If this sequence is completed, then EFI_SUCCESS is returned, and the\r
746 PxeDiscoverValid, PxeDiscover, PxeReplyReceived, and PxeReply fields of the\r
747 EFI_PXE_BASE_CODE_MODE structure are filled in. If UseBis is TRUE, then the\r
748 PxeBisReplyReceived and PxeBisReply fields of the EFI_PXE_BASE_CODE_MODE structure\r
749 will also be filled in. If UseBis is FALSE, then PxeBisReplyValid will be set to FALSE.\r
750 In the structure referenced by parameter Info, the PXE Boot Server list, SrvList[],\r
751 has two uses: It is the Boot Server IP address list used for unicast discovery\r
752 (if the UseUCast field is TRUE), and it is the list used for Boot Server verification\r
753 (if the MustUseList field is TRUE). Also, if the MustUseList field in that structure\r
754 is TRUE and the AcceptAnyResponse field in the SrvList[] array is TRUE, any Boot\r
755 Server reply of that type will be accepted. If the AcceptAnyResponse field is\r
756 FALSE, only responses from Boot Servers with matching IP addresses will be accepted.\r
757 This function can take at least 10 seconds to timeout and return control to the\r
758 caller. If the Discovery sequence does not complete, then EFI_TIMEOUT will be\r
759 returned. Please see the Preboot Execution Environment (PXE) Specification for\r
760 additional details on the implementation of the Discovery sequence.\r
761 If the Callback Protocol does not return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE,\r
762 then the Discovery sequence is stopped and EFI_ABORTED will be returned.\r
e2851998 763\r
f737cfb9 764 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
765 @param Type The type of bootstrap to perform.\r
766 @param Layer Pointer to the boot server layer number to discover, which must be\r
e2851998 767 PXE_BOOT_LAYER_INITIAL when a new server type is being\r
768 discovered.\r
769 @param UseBis TRUE if Boot Integrity Services are to be used. FALSE otherwise.\r
f737cfb9 770 @param Info Pointer to a data structure that contains additional information on the\r
e2851998 771 type of discovery operation that is to be performed.\r
772\r
f737cfb9 773 @retval EFI_SUCCESS The Discovery sequence has been completed.\r
774 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 775 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
776 @retval EFI_DEVICE_ERROR The network device encountered an error during this operation.\r
f737cfb9 777 @retval EFI_OUT_OF_RESOURCES Could not allocate enough memory to complete Discovery.\r
778 @retval EFI_ABORTED The callback function aborted the Discovery sequence.\r
779 @retval EFI_TIMEOUT The Discovery sequence timed out.\r
780 @retval EFI_ICMP_ERROR An ICMP error packet was received during the PXE discovery\r
e2851998 781 session.\r
782\r
dc361cc5 783**/\r
784EFI_STATUS\r
785EFIAPI\r
786EfiPxeBcDiscover (\r
787 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
788 IN UINT16 Type,\r
789 IN UINT16 *Layer,\r
790 IN BOOLEAN UseBis,\r
791 IN EFI_PXE_BASE_CODE_DISCOVER_INFO *Info OPTIONAL\r
792 )\r
793{\r
794 PXEBC_PRIVATE_DATA *Private;\r
795 EFI_PXE_BASE_CODE_MODE *Mode;\r
796 EFI_PXE_BASE_CODE_DISCOVER_INFO DefaultInfo;\r
29a4f92d 797 EFI_PXE_BASE_CODE_DISCOVER_INFO *CreatedInfo;\r
dc361cc5 798 EFI_PXE_BASE_CODE_SRVLIST *SrvList;\r
799 EFI_PXE_BASE_CODE_SRVLIST DefaultSrvList;\r
800 PXEBC_CACHED_DHCP4_PACKET *Packet;\r
f737cfb9 801 PXEBC_VENDOR_OPTION *VendorOpt;\r
dc361cc5 802 UINT16 Index;\r
803 EFI_STATUS Status;\r
804 PXEBC_BOOT_SVR_ENTRY *BootSvrEntry;\r
8730386e 805 EFI_PXE_BASE_CODE_IP_FILTER IpFilter;\r
dc361cc5 806\r
807 if (This == NULL) {\r
808 return EFI_INVALID_PARAMETER;\r
809 }\r
810\r
811 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
812 Mode = Private->PxeBc.Mode;\r
813 BootSvrEntry = NULL;\r
814 SrvList = NULL;\r
29a4f92d 815 CreatedInfo = NULL;\r
dc361cc5 816 Status = EFI_DEVICE_ERROR;\r
817 Private->Function = EFI_PXE_BASE_CODE_FUNCTION_DISCOVER;\r
818\r
819 if (!Private->AddressIsOk) {\r
820 return EFI_INVALID_PARAMETER;\r
821 }\r
822\r
823 if (!Mode->Started) {\r
824 return EFI_NOT_STARTED;\r
825 }\r
826\r
8730386e 827 //\r
828 // Stop Udp4Read instance\r
829 //\r
830 Private->Udp4Read->Configure (Private->Udp4Read, NULL);\r
831\r
982a9eae 832 Mode->IcmpErrorReceived = FALSE;\r
833\r
dc361cc5 834 //\r
835 // If layer isn't EFI_PXE_BASE_CODE_BOOT_LAYER_INITIAL,\r
836 // use the previous setting;\r
837 // If info isn't offered,\r
838 // use the cached DhcpAck and ProxyOffer packets.\r
839 //\r
840 if (*Layer != EFI_PXE_BASE_CODE_BOOT_LAYER_INITIAL) {\r
841\r
842 if (!Mode->PxeDiscoverValid || !Mode->PxeReplyReceived || (!Mode->PxeBisReplyReceived && UseBis)) {\r
843\r
8730386e 844 Status = EFI_INVALID_PARAMETER;\r
845 goto ON_EXIT; \r
dc361cc5 846 }\r
847\r
848 DefaultInfo.IpCnt = 1;\r
849 DefaultInfo.UseUCast = TRUE;\r
850\r
851 DefaultSrvList.Type = Type;\r
852 DefaultSrvList.AcceptAnyResponse = FALSE;\r
853 DefaultSrvList.IpAddr.Addr[0] = Private->ServerIp.Addr[0];\r
854\r
855 SrvList = &DefaultSrvList;\r
856 Info = &DefaultInfo;\r
857 } else if (Info == NULL) {\r
858 //\r
859 // Create info by the cached packet before\r
860 //\r
861 Packet = (Mode->ProxyOfferReceived) ? &Private->ProxyOffer : &Private->Dhcp4Ack;\r
862 VendorOpt = &Packet->PxeVendorOption;\r
863\r
864 if (!Mode->DhcpAckReceived || !IS_VALID_DISCOVER_VENDOR_OPTION (VendorOpt->BitMap)) {\r
865 //\r
866 // Address is not acquired or no discovery options.\r
867 //\r
8730386e 868 Status = EFI_INVALID_PARAMETER;\r
869 goto ON_EXIT; \r
dc361cc5 870 }\r
871\r
872 DefaultInfo.UseMCast = (BOOLEAN)!IS_DISABLE_MCAST_DISCOVER (VendorOpt->DiscoverCtrl);\r
873 DefaultInfo.UseBCast = (BOOLEAN)!IS_DISABLE_BCAST_DISCOVER (VendorOpt->DiscoverCtrl);\r
874 DefaultInfo.MustUseList = (BOOLEAN) IS_ENABLE_USE_SERVER_LIST (VendorOpt->DiscoverCtrl);\r
875 DefaultInfo.UseUCast = DefaultInfo.MustUseList;\r
876\r
877 if (DefaultInfo.UseMCast) {\r
878 //\r
879 // Get the multicast discover ip address from vendor option.\r
880 //\r
f737cfb9 881 CopyMem (\r
e2851998 882 &DefaultInfo.ServerMCastIp.Addr,\r
883 &VendorOpt->DiscoverMcastIp,\r
f737cfb9 884 sizeof (EFI_IPv4_ADDRESS)\r
885 );\r
dc361cc5 886 }\r
887\r
888 DefaultInfo.IpCnt = 0;\r
29a4f92d 889 Info = &DefaultInfo;\r
890 SrvList = Info->SrvList;\r
dc361cc5 891\r
892 if (DefaultInfo.MustUseList) {\r
893 BootSvrEntry = VendorOpt->BootSvr;\r
894 Status = EFI_INVALID_PARAMETER;\r
895\r
896 while (((UINT8) (BootSvrEntry - VendorOpt->BootSvr)) < VendorOpt->BootSvrLen) {\r
897\r
898 if (BootSvrEntry->Type == HTONS (Type)) {\r
899 Status = EFI_SUCCESS;\r
900 break;\r
901 }\r
902\r
903 BootSvrEntry = GET_NEXT_BOOT_SVR_ENTRY (BootSvrEntry);\r
904 }\r
905\r
906 if (EFI_ERROR (Status)) {\r
8730386e 907 goto ON_EXIT;\r
dc361cc5 908 }\r
909\r
910 DefaultInfo.IpCnt = BootSvrEntry->IpCnt;\r
29a4f92d 911\r
912 if (DefaultInfo.IpCnt >= 1) {\r
913 CreatedInfo = AllocatePool (sizeof (DefaultInfo) + (DefaultInfo.IpCnt - 1) * sizeof (*SrvList));\r
914 if (CreatedInfo == NULL) {\r
8730386e 915 Status = EFI_OUT_OF_RESOURCES;\r
916 goto ON_EXIT;\r
917 \r
29a4f92d 918 } \r
919 \r
920 CopyMem (CreatedInfo, &DefaultInfo, sizeof (DefaultInfo));\r
921 Info = CreatedInfo;\r
922 SrvList = Info->SrvList;\r
923 }\r
924\r
925 for (Index = 0; Index < DefaultInfo.IpCnt; Index++) {\r
926 CopyMem (&SrvList[Index].IpAddr, &BootSvrEntry->IpAddr[Index], sizeof (EFI_IPv4_ADDRESS));\r
927 SrvList[Index].AcceptAnyResponse = FALSE;\r
928 SrvList[Index].Type = BootSvrEntry->Type;\r
929 }\r
dc361cc5 930 }\r
931\r
dc361cc5 932 } else {\r
933\r
934 SrvList = Info->SrvList;\r
935\r
936 if (!SrvList[0].AcceptAnyResponse) {\r
937\r
938 for (Index = 1; Index < Info->IpCnt; Index++) {\r
939 if (SrvList[Index].AcceptAnyResponse) {\r
940 break;\r
941 }\r
942 }\r
943\r
944 if (Index != Info->IpCnt) {\r
8730386e 945 Status = EFI_INVALID_PARAMETER;\r
946 goto ON_EXIT; \r
dc361cc5 947 }\r
948 }\r
949 }\r
950\r
951 if ((!Info->UseUCast && !Info->UseBCast && !Info->UseMCast) || (Info->MustUseList && Info->IpCnt == 0)) {\r
952\r
8730386e 953 Status = EFI_INVALID_PARAMETER;\r
954 goto ON_EXIT;\r
dc361cc5 955 }\r
956 //\r
957 // Execute discover by UniCast/BroadCast/MultiCast\r
958 //\r
959 if (Info->UseUCast) {\r
960\r
961 for (Index = 0; Index < Info->IpCnt; Index++) {\r
962\r
963 if (BootSvrEntry == NULL) {\r
964 Private->ServerIp.Addr[0] = SrvList[Index].IpAddr.Addr[0];\r
965 } else {\r
f737cfb9 966 CopyMem (\r
e2851998 967 &Private->ServerIp,\r
968 &BootSvrEntry->IpAddr[Index],\r
f737cfb9 969 sizeof (EFI_IPv4_ADDRESS)\r
970 );\r
dc361cc5 971 }\r
972\r
973 Status = PxeBcDiscvBootService (\r
974 Private,\r
975 Type,\r
976 Layer,\r
977 UseBis,\r
978 &SrvList[Index].IpAddr,\r
979 0,\r
980 NULL,\r
981 TRUE,\r
982 &Private->PxeReply.Packet.Ack\r
983 );\r
29a4f92d 984 if (!EFI_ERROR (Status)) {\r
985 break;\r
986 } \r
dc361cc5 987 }\r
988\r
989 } else if (Info->UseMCast) {\r
990\r
991 Status = PxeBcDiscvBootService (\r
992 Private,\r
993 Type,\r
994 Layer,\r
995 UseBis,\r
996 &Info->ServerMCastIp,\r
997 0,\r
998 NULL,\r
999 TRUE,\r
1000 &Private->PxeReply.Packet.Ack\r
1001 );\r
1002\r
1003 } else if (Info->UseBCast) {\r
1004\r
1005 Status = PxeBcDiscvBootService (\r
1006 Private,\r
1007 Type,\r
1008 Layer,\r
1009 UseBis,\r
1010 NULL,\r
1011 Info->IpCnt,\r
1012 SrvList,\r
1013 TRUE,\r
1014 &Private->PxeReply.Packet.Ack\r
1015 );\r
1016 }\r
1017\r
1018 if (EFI_ERROR (Status) || !Mode->PxeReplyReceived || (!Mode->PxeBisReplyReceived && UseBis)) {\r
982a9eae 1019 if (Status == EFI_ICMP_ERROR) {\r
1020 Mode->IcmpErrorReceived = TRUE;\r
1021 } else {\r
1022 Status = EFI_DEVICE_ERROR;\r
1023 }\r
357af285 1024 goto ON_EXIT;\r
dc361cc5 1025 } else {\r
1026 PxeBcParseCachedDhcpPacket (&Private->PxeReply);\r
1027 }\r
1028\r
1029 if (Mode->PxeBisReplyReceived) {\r
f737cfb9 1030 CopyMem (\r
e2851998 1031 &Private->ServerIp,\r
1032 &Mode->PxeReply.Dhcpv4.BootpSiAddr,\r
f737cfb9 1033 sizeof (EFI_IPv4_ADDRESS)\r
1034 );\r
dc361cc5 1035 }\r
1036\r
29a4f92d 1037 if (CreatedInfo != NULL) {\r
1038 FreePool (CreatedInfo);\r
1039 }\r
8730386e 1040\r
1041ON_EXIT:\r
1042\r
357af285 1043 Private->Udp4Read->Configure (Private->Udp4Read, &Private->Udp4CfgData);\r
c82291bc 1044 \r
8730386e 1045 //\r
1046 // Dhcp(), Discover(), and Mtftp() set the IP filter, and return with the IP \r
1047 // receive filter list emptied and the filter set to EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP.\r
1048 //\r
1049 ZeroMem(&IpFilter, sizeof (EFI_PXE_BASE_CODE_IP_FILTER));\r
1050 IpFilter.Filters = EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP;\r
1051 This->SetIpFilter (This, &IpFilter);\r
29a4f92d 1052 \r
dc361cc5 1053 return Status;\r
1054}\r
1055\r
1056\r
e2851998 1057/**\r
f737cfb9 1058 Used to perform TFTP and MTFTP services.\r
1059\r
1060 This function is used to perform TFTP and MTFTP services. This includes the\r
1061 TFTP operations to get the size of a file, read a directory, read a file, and\r
1062 write a file. It also includes the MTFTP operations to get the size of a file,\r
1063 read a directory, and read a file. The type of operation is specified by Operation.\r
1064 If the callback function that is invoked during the TFTP/MTFTP operation does\r
1065 not return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE, then EFI_ABORTED will\r
1066 be returned.\r
1067 For read operations, the return data will be placed in the buffer specified by\r
1068 BufferPtr. If BufferSize is too small to contain the entire downloaded file,\r
1069 then EFI_BUFFER_TOO_SMALL will be returned and BufferSize will be set to zero\r
1070 or the size of the requested file (the size of the requested file is only returned\r
1071 if the TFTP server supports TFTP options). If BufferSize is large enough for the\r
1072 read operation, then BufferSize will be set to the size of the downloaded file,\r
1073 and EFI_SUCCESS will be returned. Applications using the PxeBc.Mtftp() services\r
1074 should use the get-file-size operations to determine the size of the downloaded\r
1075 file prior to using the read-file operations-especially when downloading large\r
1076 (greater than 64 MB) files-instead of making two calls to the read-file operation.\r
1077 Following this recommendation will save time if the file is larger than expected\r
1078 and the TFTP server does not support TFTP option extensions. Without TFTP option\r
1079 extension support, the client has to download the entire file, counting and discarding\r
1080 the received packets, to determine the file size.\r
1081 For write operations, the data to be sent is in the buffer specified by BufferPtr.\r
1082 BufferSize specifies the number of bytes to send. If the write operation completes\r
1083 successfully, then EFI_SUCCESS will be returned.\r
1084 For TFTP "get file size" operations, the size of the requested file or directory\r
1085 is returned in BufferSize, and EFI_SUCCESS will be returned. If the TFTP server\r
1086 does not support options, the file will be downloaded into a bit bucket and the\r
1087 length of the downloaded file will be returned. For MTFTP "get file size" operations,\r
1088 if the MTFTP server does not support the "get file size" option, EFI_UNSUPPORTED\r
1089 will be returned.\r
1090 This function can take up to 10 seconds to timeout and return control to the caller.\r
1091 If the TFTP sequence does not complete, EFI_TIMEOUT will be returned.\r
1092 If the Callback Protocol does not return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE,\r
1093 then the TFTP sequence is stopped and EFI_ABORTED will be returned.\r
1094 The format of the data returned from a TFTP read directory operation is a null-terminated\r
1095 filename followed by a null-terminated information string, of the form\r
1096 "size year-month-day hour:minute:second" (i.e. %d %d-%d-%d %d:%d:%f - note that\r
1097 the seconds field can be a decimal number), where the date and time are UTC. For\r
1098 an MTFTP read directory command, there is additionally a null-terminated multicast\r
1099 IP address preceding the filename of the form %d.%d.%d.%d for IP v4. The final\r
1100 entry is itself null-terminated, so that the final information string is terminated\r
1101 with two null octets.\r
e2851998 1102\r
f737cfb9 1103 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
1104 @param Operation The type of operation to perform.\r
e2851998 1105 @param BufferPtr A pointer to the data buffer.\r
f737cfb9 1106 @param Overwrite Only used on write file operations. TRUE if a file on a remote server can\r
e2851998 1107 be overwritten.\r
f737cfb9 1108 @param BufferSize For get-file-size operations, *BufferSize returns the size of the\r
e2851998 1109 requested file.\r
f737cfb9 1110 @param BlockSize The requested block size to be used during a TFTP transfer.\r
1111 @param ServerIp The TFTP / MTFTP server IP address.\r
1112 @param Filename A Null-terminated ASCII string that specifies a directory name or a file\r
e2851998 1113 name.\r
f737cfb9 1114 @param Info Pointer to the MTFTP information.\r
e2851998 1115 @param DontUseBuffer Set to FALSE for normal TFTP and MTFTP read file operation.\r
1116\r
f737cfb9 1117 @retval EFI_SUCCESS The TFTP/MTFTP operation was completed.\r
1118 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 1119 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
1120 @retval EFI_DEVICE_ERROR The network device encountered an error during this operation.\r
1121 @retval EFI_BUFFER_TOO_SMALL The buffer is not large enough to complete the read operation.\r
f737cfb9 1122 @retval EFI_ABORTED The callback function aborted the TFTP/MTFTP operation.\r
1123 @retval EFI_TIMEOUT The TFTP/MTFTP operation timed out.\r
1124 @retval EFI_ICMP_ERROR An ICMP error packet was received during the MTFTP session.\r
1125 @retval EFI_TFTP_ERROR A TFTP error packet was received during the MTFTP session.\r
e2851998 1126\r
dc361cc5 1127**/\r
1128EFI_STATUS\r
1129EFIAPI\r
1130EfiPxeBcMtftp (\r
1131 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
1132 IN EFI_PXE_BASE_CODE_TFTP_OPCODE Operation,\r
1133 IN OUT VOID *BufferPtr,\r
1134 IN BOOLEAN Overwrite,\r
1135 IN OUT UINT64 *BufferSize,\r
1136 IN UINTN *BlockSize OPTIONAL,\r
1137 IN EFI_IP_ADDRESS *ServerIp,\r
1138 IN UINT8 *Filename,\r
1139 IN EFI_PXE_BASE_CODE_MTFTP_INFO *Info OPTIONAL,\r
1140 IN BOOLEAN DontUseBuffer\r
1141 )\r
1142{\r
8730386e 1143 PXEBC_PRIVATE_DATA *Private;\r
1144 EFI_MTFTP4_CONFIG_DATA Mtftp4Config;\r
1145 EFI_STATUS Status;\r
1146 EFI_PXE_BASE_CODE_MODE *Mode;\r
1147 EFI_MAC_ADDRESS TempMacAddr;\r
1148 EFI_PXE_BASE_CODE_IP_FILTER IpFilter;\r
dc361cc5 1149\r
f6b7393c 1150 if ((This == NULL) ||\r
1151 (Filename == NULL) ||\r
1152 (BufferSize == NULL) ||\r
1153 ((ServerIp == NULL) || !NetIp4IsUnicast (NTOHL (ServerIp->Addr[0]), 0)) ||\r
1154 ((BufferPtr == NULL) && DontUseBuffer) ||\r
dc361cc5 1155 ((BlockSize != NULL) && (*BlockSize < 512))) {\r
1156\r
1157 return EFI_INVALID_PARAMETER;\r
1158 }\r
1159\r
1160 Status = EFI_DEVICE_ERROR;\r
1161 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
982a9eae 1162 Mode = &Private->Mode;\r
1163\r
1164 if (!Mode->AutoArp) {\r
1165 //\r
1166 // If AutoArp is set false, check arp cache\r
1167 //\r
1168 UpdateArpCache (This);\r
1169 if (!FindInArpCache (Mode, &ServerIp->v4, &TempMacAddr)) {\r
1170 return EFI_DEVICE_ERROR;\r
1171 }\r
1172 }\r
1173\r
8730386e 1174 //\r
1175 // Stop Udp4Read instance\r
1176 //\r
1177 Private->Udp4Read->Configure (Private->Udp4Read, NULL);\r
1178\r
982a9eae 1179 Mode->TftpErrorReceived = FALSE;\r
1180 Mode->IcmpErrorReceived = FALSE;\r
dc361cc5 1181\r
1182 Mtftp4Config.UseDefaultSetting = FALSE;\r
1183 Mtftp4Config.TimeoutValue = PXEBC_MTFTP_TIMEOUT;\r
1184 Mtftp4Config.TryCount = PXEBC_MTFTP_RETRIES;\r
1185\r
f737cfb9 1186 CopyMem (\r
e2851998 1187 &Mtftp4Config.StationIp,\r
1188 &Private->StationIp,\r
f737cfb9 1189 sizeof (EFI_IPv4_ADDRESS)\r
1190 );\r
1191 CopyMem (\r
e2851998 1192 &Mtftp4Config.SubnetMask,\r
1193 &Private->SubnetMask,\r
f737cfb9 1194 sizeof (EFI_IPv4_ADDRESS)\r
1195 );\r
1196 CopyMem (\r
e2851998 1197 &Mtftp4Config.GatewayIp,\r
1198 &Private->GatewayIp,\r
f737cfb9 1199 sizeof (EFI_IPv4_ADDRESS)\r
1200 );\r
1201 CopyMem (\r
e2851998 1202 &Mtftp4Config.ServerIp,\r
1203 ServerIp,\r
f737cfb9 1204 sizeof (EFI_IPv4_ADDRESS)\r
1205 );\r
dc361cc5 1206\r
1207 switch (Operation) {\r
1208\r
1209 case EFI_PXE_BASE_CODE_TFTP_GET_FILE_SIZE:\r
1210\r
1211 Status = PxeBcTftpGetFileSize (\r
1212 Private,\r
1213 &Mtftp4Config,\r
1214 Filename,\r
1215 BlockSize,\r
1216 BufferSize\r
1217 );\r
1218\r
dc361cc5 1219 break;\r
1220\r
1221 case EFI_PXE_BASE_CODE_TFTP_READ_FILE:\r
1222\r
1223 Status = PxeBcTftpReadFile (\r
1224 Private,\r
1225 &Mtftp4Config,\r
1226 Filename,\r
1227 BlockSize,\r
1228 BufferPtr,\r
1229 BufferSize,\r
1230 DontUseBuffer\r
1231 );\r
1232\r
1233 break;\r
1234\r
1235 case EFI_PXE_BASE_CODE_TFTP_WRITE_FILE:\r
1236\r
1237 Status = PxeBcTftpWriteFile (\r
1238 Private,\r
1239 &Mtftp4Config,\r
1240 Filename,\r
1241 Overwrite,\r
1242 BlockSize,\r
1243 BufferPtr,\r
1244 BufferSize\r
1245 );\r
1246\r
1247 break;\r
1248\r
1249 case EFI_PXE_BASE_CODE_TFTP_READ_DIRECTORY:\r
1250\r
1251 Status = PxeBcTftpReadDirectory (\r
1252 Private,\r
1253 &Mtftp4Config,\r
1254 Filename,\r
1255 BlockSize,\r
1256 BufferPtr,\r
1257 BufferSize,\r
1258 DontUseBuffer\r
1259 );\r
1260\r
1261 break;\r
1262\r
1263 case EFI_PXE_BASE_CODE_MTFTP_GET_FILE_SIZE:\r
1264 case EFI_PXE_BASE_CODE_MTFTP_READ_FILE:\r
1265 case EFI_PXE_BASE_CODE_MTFTP_READ_DIRECTORY:\r
1266 Status = EFI_UNSUPPORTED;\r
1267 break;\r
1268\r
1269 default:\r
1270\r
1271 Status = EFI_INVALID_PARAMETER;\r
1272 break;\r
1273 }\r
1274\r
982a9eae 1275 if (Status == EFI_ICMP_ERROR) {\r
1276 Mode->IcmpErrorReceived = TRUE;\r
1277 }\r
1278\r
0bc17488 1279 if (EFI_ERROR (Status)) {\r
357af285 1280 goto ON_EXIT;\r
0bc17488 1281 }\r
1282\r
357af285 1283ON_EXIT:\r
1284 Private->Udp4Read->Configure (Private->Udp4Read, &Private->Udp4CfgData);\r
8730386e 1285 //\r
1286 // Dhcp(), Discover(), and Mtftp() set the IP filter, and return with the IP \r
1287 // receive filter list emptied and the filter set to EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP.\r
1288 //\r
1289 ZeroMem(&IpFilter, sizeof (EFI_PXE_BASE_CODE_IP_FILTER));\r
1290 IpFilter.Filters = EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP;\r
1291 This->SetIpFilter (This, &IpFilter);\r
1292\r
dc361cc5 1293 return Status;\r
1294}\r
1295\r
1296\r
e2851998 1297/**\r
f737cfb9 1298 Writes a UDP packet to the network interface.\r
1299\r
1300 This function writes a UDP packet specified by the (optional HeaderPtr and)\r
1301 BufferPtr parameters to the network interface. The UDP header is automatically\r
1302 built by this routine. It uses the parameters OpFlags, DestIp, DestPort, GatewayIp,\r
1303 SrcIp, and SrcPort to build this header. If the packet is successfully built and\r
1304 transmitted through the network interface, then EFI_SUCCESS will be returned.\r
1305 If a timeout occurs during the transmission of the packet, then EFI_TIMEOUT will\r
1306 be returned. If an ICMP error occurs during the transmission of the packet, then\r
1307 the IcmpErrorReceived field is set to TRUE, the IcmpError field is filled in and\r
1308 EFI_ICMP_ERROR will be returned. If the Callback Protocol does not return\r
1309 EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE, then EFI_ABORTED will be returned.\r
e2851998 1310\r
f737cfb9 1311 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
e2851998 1312 @param OpFlags The UDP operation flags.\r
f737cfb9 1313 @param DestIp The destination IP address.\r
e2851998 1314 @param DestPort The destination UDP port number.\r
1315 @param GatewayIp The gateway IP address.\r
f737cfb9 1316 @param SrcIp The source IP address.\r
1317 @param SrcPort The source UDP port number.\r
1318 @param HeaderSize An optional field which may be set to the length of a header at\r
e2851998 1319 HeaderPtr to be prefixed to the data at BufferPtr.\r
f737cfb9 1320 @param HeaderPtr If HeaderSize is not NULL, a pointer to a header to be prefixed to the\r
e2851998 1321 data at BufferPtr.\r
f737cfb9 1322 @param BufferSize A pointer to the size of the data at BufferPtr.\r
1323 @param BufferPtr A pointer to the data to be written.\r
e2851998 1324\r
f737cfb9 1325 @retval EFI_SUCCESS The UDP Write operation was completed.\r
1326 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 1327 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
1328 @retval EFI_BAD_BUFFER_SIZE The buffer is too long to be transmitted.\r
f737cfb9 1329 @retval EFI_ABORTED The callback function aborted the UDP Write operation.\r
1330 @retval EFI_TIMEOUT The UDP Write operation timed out.\r
e2851998 1331 @retval EFI_ICMP_ERROR An ICMP error packet was received during the UDP write session.\r
1332\r
dc361cc5 1333**/\r
1334EFI_STATUS\r
1335EFIAPI\r
1336EfiPxeBcUdpWrite (\r
1337 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
1338 IN UINT16 OpFlags,\r
1339 IN EFI_IP_ADDRESS *DestIp,\r
1340 IN EFI_PXE_BASE_CODE_UDP_PORT *DestPort,\r
1341 IN EFI_IP_ADDRESS *GatewayIp OPTIONAL,\r
1342 IN EFI_IP_ADDRESS *SrcIp OPTIONAL,\r
1343 IN OUT EFI_PXE_BASE_CODE_UDP_PORT *SrcPort OPTIONAL,\r
1344 IN UINTN *HeaderSize OPTIONAL,\r
1345 IN VOID *HeaderPtr OPTIONAL,\r
1346 IN UINTN *BufferSize,\r
1347 IN VOID *BufferPtr\r
1348 )\r
1349{\r
1350 PXEBC_PRIVATE_DATA *Private;\r
1351 EFI_UDP4_PROTOCOL *Udp4;\r
1352 EFI_UDP4_COMPLETION_TOKEN Token;\r
1353 EFI_UDP4_TRANSMIT_DATA *Udp4TxData;\r
1354 UINT32 FragCount;\r
1355 UINT32 DataLength;\r
1356 EFI_UDP4_SESSION_DATA Udp4Session;\r
1357 EFI_STATUS Status;\r
1358 BOOLEAN IsDone;\r
982a9eae 1359 EFI_PXE_BASE_CODE_MODE *Mode;\r
1360 EFI_MAC_ADDRESS TempMacAddr;\r
dc361cc5 1361\r
1362 IsDone = FALSE;\r
1363\r
1364 if ((This == NULL) || (DestIp == NULL) || (DestPort == NULL)) {\r
1365 return EFI_INVALID_PARAMETER;\r
1366 }\r
1367\r
f6b7393c 1368 if ((GatewayIp != NULL) && !NetIp4IsUnicast (NTOHL (GatewayIp->Addr[0]), 0)) {\r
dc361cc5 1369 //\r
1370 // Gateway is provided but it's not a unicast IP address.\r
1371 //\r
1372 return EFI_INVALID_PARAMETER;\r
1373 }\r
1374\r
1375 if ((HeaderSize != NULL) && ((*HeaderSize == 0) || (HeaderPtr == NULL))) {\r
1376 //\r
1377 // The HeaderSize ptr isn't NULL and: 1. the value is zero; or 2. the HeaderPtr\r
1378 // is NULL.\r
1379 //\r
1380 return EFI_INVALID_PARAMETER;\r
1381 }\r
1382\r
1383 if ((BufferSize == NULL) || ((*BufferSize != 0) && (BufferPtr == NULL))) {\r
1384 return EFI_INVALID_PARAMETER;\r
1385 }\r
1386\r
1387 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
8792362f 1388 Udp4 = Private->Udp4Write;\r
982a9eae 1389 Mode = &Private->Mode;\r
8792362f 1390 if (!Mode->Started) {\r
1391 return EFI_NOT_STARTED;\r
1392 }\r
dc361cc5 1393\r
1394 if (!Private->AddressIsOk && (SrcIp == NULL)) {\r
1395 return EFI_INVALID_PARAMETER;\r
1396 }\r
1397\r
982a9eae 1398 if (!Mode->AutoArp) {\r
1399 //\r
1400 // If AutoArp is set false, check arp cache\r
1401 //\r
1402 UpdateArpCache (This);\r
1403 if (!FindInArpCache (Mode, &DestIp->v4, &TempMacAddr)) {\r
1404 return EFI_DEVICE_ERROR;\r
1405 }\r
1406 }\r
1407\r
1408 Mode->IcmpErrorReceived = FALSE;\r
1409\r
8792362f 1410 if ((Private->CurrentUdpSrcPort == 0) ||\r
f737cfb9 1411 ((SrcPort != NULL) && (*SrcPort != Private->CurrentUdpSrcPort))) {\r
8792362f 1412 //\r
1413 // Port is changed, (re)configure the Udp4Write instance\r
1414 //\r
1415 if (SrcPort != NULL) {\r
1416 Private->CurrentUdpSrcPort = *SrcPort;\r
dc361cc5 1417 }\r
dc361cc5 1418 }\r
1419\r
2e4c2a04 1420 Status = PxeBcConfigureUdpWriteInstance (\r
1421 Udp4,\r
1422 &Private->StationIp.v4,\r
1423 &Private->SubnetMask.v4,\r
1424 &Private->GatewayIp.v4,\r
1425 &Private->CurrentUdpSrcPort\r
1426 );\r
1427 if (EFI_ERROR (Status)) {\r
1428 Private->CurrentUdpSrcPort = 0;\r
1429 return EFI_INVALID_PARAMETER;\r
1430 }\r
1431 \r
dc361cc5 1432 ZeroMem (&Token, sizeof (EFI_UDP4_COMPLETION_TOKEN));\r
1433 ZeroMem (&Udp4Session, sizeof (EFI_UDP4_SESSION_DATA));\r
1434\r
e48e37fc 1435 CopyMem (&Udp4Session.DestinationAddress, DestIp, sizeof (EFI_IPv4_ADDRESS));\r
dc361cc5 1436 Udp4Session.DestinationPort = *DestPort;\r
8792362f 1437 if (SrcIp != NULL) {\r
1438 CopyMem (&Udp4Session.SourceAddress, SrcIp, sizeof (EFI_IPv4_ADDRESS));\r
1439 }\r
1440 if (SrcPort != NULL) {\r
1441 Udp4Session.SourcePort = *SrcPort;\r
1442 }\r
dc361cc5 1443\r
1444 FragCount = (HeaderSize != NULL) ? 2 : 1;\r
05c0e3cb 1445 Udp4TxData = (EFI_UDP4_TRANSMIT_DATA *) AllocateZeroPool (sizeof (EFI_UDP4_TRANSMIT_DATA) + (FragCount - 1) * sizeof (EFI_UDP4_FRAGMENT_DATA));\r
dc361cc5 1446 if (Udp4TxData == NULL) {\r
1447 return EFI_OUT_OF_RESOURCES;\r
1448 }\r
1449\r
1450 Udp4TxData->FragmentCount = FragCount;\r
1451 Udp4TxData->FragmentTable[FragCount - 1].FragmentLength = (UINT32) *BufferSize;\r
1452 Udp4TxData->FragmentTable[FragCount - 1].FragmentBuffer = BufferPtr;\r
1453 DataLength = (UINT32) *BufferSize;\r
1454\r
1455 if (FragCount == 2) {\r
1456\r
1457 Udp4TxData->FragmentTable[0].FragmentLength = (UINT32) *HeaderSize;\r
1458 Udp4TxData->FragmentTable[0].FragmentBuffer = HeaderPtr;\r
1459 DataLength += (UINT32) *HeaderSize;\r
1460 }\r
1461\r
8792362f 1462 if (GatewayIp != NULL) {\r
1463 Udp4TxData->GatewayAddress = (EFI_IPv4_ADDRESS *) GatewayIp;\r
1464 }\r
dc361cc5 1465 Udp4TxData->UdpSessionData = &Udp4Session;\r
1466 Udp4TxData->DataLength = DataLength;\r
1467 Token.Packet.TxData = Udp4TxData;\r
1468\r
1469 Status = gBS->CreateEvent (\r
1470 EVT_NOTIFY_SIGNAL,\r
e48e37fc 1471 TPL_NOTIFY,\r
dc361cc5 1472 PxeBcCommonNotify,\r
1473 &IsDone,\r
1474 &Token.Event\r
1475 );\r
1476 if (EFI_ERROR (Status)) {\r
1477 goto ON_EXIT;\r
1478 }\r
1479\r
1480 Status = Udp4->Transmit (Udp4, &Token);\r
1481 if (EFI_ERROR (Status)) {\r
982a9eae 1482 if (Status == EFI_ICMP_ERROR) {\r
1483 Mode->IcmpErrorReceived = TRUE;\r
1484 }\r
dc361cc5 1485 goto ON_EXIT;\r
1486 }\r
1487\r
1488 while (!IsDone) {\r
1489\r
1490 Udp4->Poll (Udp4);\r
1491 }\r
1492\r
1493 Status = Token.Status;\r
1494\r
1495ON_EXIT:\r
1496\r
1497 if (Token.Event != NULL) {\r
1498 gBS->CloseEvent (Token.Event);\r
1499 }\r
1500\r
766c7483 1501 FreePool (Udp4TxData);\r
dc361cc5 1502\r
2e4c2a04 1503 //\r
1504 // Reset the instance.\r
1505 //\r
1506 Udp4->Configure (Udp4, NULL);\r
dc361cc5 1507 return Status;\r
1508}\r
1509\r
8d285ec0 1510/**\r
f737cfb9 1511 Decide whether the incoming UDP packet is acceptable per IP filter settings\r
1512 in provided PxeBcMode.\r
8d285ec0 1513\r
f737cfb9 1514 @param PxeBcMode Pointer to EFI_PXE_BASE_CODE_MODE.\r
1515 @param Session Received UDP session.\r
8d285ec0 1516\r
f737cfb9 1517 @retval TRUE The UDP package matches IP filters.\r
1518 @retval FALSE The UDP package doesn't matches IP filters.\r
8d285ec0 1519\r
1520**/\r
8d285ec0 1521BOOLEAN\r
1522CheckIpByFilter (\r
f737cfb9 1523 IN EFI_PXE_BASE_CODE_MODE *PxeBcMode,\r
1524 IN EFI_UDP4_SESSION_DATA *Session\r
8d285ec0 1525 )\r
1526{\r
1527 UINTN Index;\r
1528 EFI_IPv4_ADDRESS Ip4Address;\r
1529 EFI_IPv4_ADDRESS DestIp4Address;\r
1530\r
f737cfb9 1531 if ((PxeBcMode->IpFilter.Filters & EFI_PXE_BASE_CODE_IP_FILTER_PROMISCUOUS) != 0) {\r
8d285ec0 1532 return TRUE;\r
1533 }\r
1534\r
1535 CopyMem (&DestIp4Address, &Session->DestinationAddress, sizeof (DestIp4Address));\r
e2851998 1536 if (((PxeBcMode->IpFilter.Filters & EFI_PXE_BASE_CODE_IP_FILTER_PROMISCUOUS_MULTICAST) != 0) &&\r
982a9eae 1537 IP4_IS_MULTICAST (EFI_NTOHL (DestIp4Address))\r
8d285ec0 1538 ) {\r
1539 return TRUE;\r
1540 }\r
1541\r
e2851998 1542 if (((PxeBcMode->IpFilter.Filters & EFI_PXE_BASE_CODE_IP_FILTER_BROADCAST) != 0) &&\r
8d285ec0 1543 IP4_IS_LOCAL_BROADCAST (EFI_NTOHL (DestIp4Address))\r
1544 ) {\r
1545 return TRUE;\r
1546 }\r
1547\r
1548 CopyMem (&Ip4Address, &PxeBcMode->StationIp.v4, sizeof (Ip4Address));\r
e2851998 1549 if (((PxeBcMode->IpFilter.Filters & EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP) != 0) &&\r
982a9eae 1550 EFI_IP4_EQUAL (&Ip4Address, &DestIp4Address)\r
8d285ec0 1551 ) {\r
1552 return TRUE;\r
1553 }\r
1554\r
894d038a 1555 ASSERT (PxeBcMode->IpFilter.IpCnt < EFI_PXE_BASE_CODE_MAX_IPCNT);\r
1556\r
f737cfb9 1557 for (Index = 0; Index < PxeBcMode->IpFilter.IpCnt; Index++) {\r
1558 CopyMem (\r
e2851998 1559 &Ip4Address,\r
1560 &PxeBcMode->IpFilter.IpList[Index].v4,\r
f737cfb9 1561 sizeof (Ip4Address)\r
1562 );\r
8d285ec0 1563 if (EFI_IP4_EQUAL (&Ip4Address, &DestIp4Address)) {\r
1564 return TRUE;\r
1565 }\r
1566 }\r
1567\r
1568 return FALSE;\r
1569}\r
dc361cc5 1570\r
e2851998 1571/**\r
f737cfb9 1572 Reads a UDP packet from the network interface.\r
1573\r
1574 This function reads a UDP packet from a network interface. The data contents\r
1575 are returned in (the optional HeaderPtr and) BufferPtr, and the size of the\r
1576 buffer received is returned in BufferSize . If the input BufferSize is smaller\r
1577 than the UDP packet received (less optional HeaderSize), it will be set to the\r
1578 required size, and EFI_BUFFER_TOO_SMALL will be returned. In this case, the\r
1579 contents of BufferPtr are undefined, and the packet is lost. If a UDP packet is\r
1580 successfully received, then EFI_SUCCESS will be returned, and the information\r
1581 from the UDP header will be returned in DestIp, DestPort, SrcIp, and SrcPort if\r
e2851998 1582 they are not NULL. Depending on the values of OpFlags and the DestIp, DestPort,\r
1583 SrcIp, and SrcPort input values, different types of UDP packet receive filtering\r
f737cfb9 1584 will be performed. The following tables summarize these receive filter operations.\r
e2851998 1585\r
f737cfb9 1586 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
e2851998 1587 @param OpFlags The UDP operation flags.\r
f737cfb9 1588 @param DestIp The destination IP address.\r
1589 @param DestPort The destination UDP port number.\r
1590 @param SrcIp The source IP address.\r
1591 @param SrcPort The source UDP port number.\r
1592 @param HeaderSize An optional field which may be set to the length of a header at\r
e2851998 1593 HeaderPtr to be prefixed to the data at BufferPtr.\r
f737cfb9 1594 @param HeaderPtr If HeaderSize is not NULL, a pointer to a header to be prefixed to the\r
e2851998 1595 data at BufferPtr.\r
f737cfb9 1596 @param BufferSize A pointer to the size of the data at BufferPtr.\r
1597 @param BufferPtr A pointer to the data to be read.\r
e2851998 1598\r
f737cfb9 1599 @retval EFI_SUCCESS The UDP Read operation was completed.\r
1600 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 1601 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
f737cfb9 1602 @retval EFI_DEVICE_ERROR The network device encountered an error during this operation.\r
1603 @retval EFI_BUFFER_TOO_SMALL The packet is larger than Buffer can hold.\r
1604 @retval EFI_ABORTED The callback function aborted the UDP Read operation.\r
e2851998 1605 @retval EFI_TIMEOUT The UDP Read operation timed out.\r
1606\r
dc361cc5 1607**/\r
1608EFI_STATUS\r
1609EFIAPI\r
1610EfiPxeBcUdpRead (\r
f737cfb9 1611 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
1612 IN UINT16 OpFlags,\r
1613 IN OUT EFI_IP_ADDRESS *DestIp OPTIONAL,\r
1614 IN OUT EFI_PXE_BASE_CODE_UDP_PORT *DestPort OPTIONAL,\r
1615 IN OUT EFI_IP_ADDRESS *SrcIp OPTIONAL,\r
1616 IN OUT EFI_PXE_BASE_CODE_UDP_PORT *SrcPort OPTIONAL,\r
1617 IN UINTN *HeaderSize OPTIONAL,\r
1618 IN VOID *HeaderPtr OPTIONAL,\r
1619 IN OUT UINTN *BufferSize,\r
1620 IN VOID *BufferPtr\r
dc361cc5 1621 )\r
1622{\r
1623 PXEBC_PRIVATE_DATA *Private;\r
1624 EFI_PXE_BASE_CODE_MODE *Mode;\r
1625 EFI_UDP4_PROTOCOL *Udp4;\r
1626 EFI_UDP4_COMPLETION_TOKEN Token;\r
1627 EFI_UDP4_RECEIVE_DATA *RxData;\r
1628 EFI_UDP4_SESSION_DATA *Session;\r
1629 EFI_STATUS Status;\r
1630 BOOLEAN IsDone;\r
1631 BOOLEAN Matched;\r
c3cd46d4 1632 UINTN CopiedLen;\r
1633 UINTN HeaderLen;\r
1634 UINTN HeaderCopiedLen;\r
1635 UINTN BufferCopiedLen;\r
1636 UINT32 FragmentLength;\r
1637 UINTN FragmentIndex;\r
1638 UINT8 *FragmentBuffer;\r
dc361cc5 1639\r
1640 if (This == NULL || DestIp == NULL || DestPort == NULL) {\r
1641 return EFI_INVALID_PARAMETER;\r
1642 }\r
1643\r
f737cfb9 1644 if (((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_ANY_DEST_PORT) == 0 && (DestPort == NULL)) ||\r
1645 ((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_ANY_DEST_PORT) == 0 && (SrcIp == NULL)) ||\r
1646 ((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_ANY_SRC_PORT) == 0 && (SrcPort == NULL))) {\r
dc361cc5 1647 return EFI_INVALID_PARAMETER;\r
1648 }\r
1649\r
8792362f 1650 if (((HeaderSize != NULL) && (*HeaderSize == 0)) || ((HeaderSize != NULL) && (HeaderPtr == NULL))) {\r
dc361cc5 1651 return EFI_INVALID_PARAMETER;\r
1652 }\r
1653\r
29a4f92d 1654 if ((BufferSize == NULL) || (BufferPtr == NULL)) {\r
dc361cc5 1655 return EFI_INVALID_PARAMETER;\r
1656 }\r
1657\r
1658 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
1659 Mode = Private->PxeBc.Mode;\r
8792362f 1660 Udp4 = Private->Udp4Read;\r
dc361cc5 1661\r
1662 if (!Mode->Started) {\r
1663 return EFI_NOT_STARTED;\r
1664 }\r
1665\r
982a9eae 1666 Mode->IcmpErrorReceived = FALSE;\r
1667\r
dc361cc5 1668 Status = gBS->CreateEvent (\r
1669 EVT_NOTIFY_SIGNAL,\r
e48e37fc 1670 TPL_NOTIFY,\r
dc361cc5 1671 PxeBcCommonNotify,\r
1672 &IsDone,\r
1673 &Token.Event\r
1674 );\r
1675 if (EFI_ERROR (Status)) {\r
1676 return EFI_OUT_OF_RESOURCES;\r
1677 }\r
1678\r
8792362f 1679TRY_AGAIN:\r
1680\r
dc361cc5 1681 IsDone = FALSE;\r
1682 Status = Udp4->Receive (Udp4, &Token);\r
1683 if (EFI_ERROR (Status)) {\r
982a9eae 1684 if (Status == EFI_ICMP_ERROR) {\r
1685 Mode->IcmpErrorReceived = TRUE;\r
1686 }\r
dc361cc5 1687 goto ON_EXIT;\r
1688 }\r
1689\r
1690 Udp4->Poll (Udp4);\r
1691\r
1692 if (!IsDone) {\r
1693 Status = EFI_TIMEOUT;\r
1694 } else {\r
1695\r
1696 //\r
1697 // check whether this packet matches the filters\r
1698 //\r
1699 if (EFI_ERROR (Token.Status)){\r
1700 goto ON_EXIT;\r
1701 }\r
1702\r
1703 RxData = Token.Packet.RxData;\r
1704 Session = &RxData->UdpSession;\r
1705\r
319075ff 1706 Matched = TRUE;\r
dc361cc5 1707\r
f737cfb9 1708 if ((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_USE_FILTER) != 0) {\r
319075ff 1709 Matched = FALSE;\r
8d285ec0 1710 //\r
1711 // Check UDP package by IP filter settings\r
1712 //\r
1713 if (CheckIpByFilter (Mode, Session)) {\r
1714 Matched = TRUE;\r
dc361cc5 1715 }\r
8d285ec0 1716 }\r
1717\r
1718 if (Matched) {\r
8792362f 1719 Matched = FALSE;\r
1720\r
8d285ec0 1721 //\r
1722 // Match the destination ip of the received udp dgram\r
1723 //\r
f737cfb9 1724 if ((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_ANY_DEST_IP) != 0) {\r
8d285ec0 1725 Matched = TRUE;\r
1726\r
1727 if (DestIp != NULL) {\r
1728 CopyMem (DestIp, &Session->DestinationAddress, sizeof (EFI_IPv4_ADDRESS));\r
dc361cc5 1729 }\r
1730 } else {\r
8d285ec0 1731 if (DestIp != NULL) {\r
1732 if (EFI_IP4_EQUAL (DestIp, &Session->DestinationAddress)) {\r
1733 Matched = TRUE;\r
1734 }\r
1735 } else {\r
1736 if (EFI_IP4_EQUAL (&Private->StationIp, &Session->DestinationAddress)) {\r
1737 Matched = TRUE;\r
1738 }\r
dc361cc5 1739 }\r
1740 }\r
1741 }\r
1742\r
1743 if (Matched) {\r
1744 //\r
1745 // Match the destination port of the received udp dgram\r
1746 //\r
f737cfb9 1747 if ((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_ANY_DEST_PORT) != 0) {\r
dc361cc5 1748\r
1749 if (DestPort != NULL) {\r
1750 *DestPort = Session->DestinationPort;\r
1751 }\r
1752 } else {\r
1753\r
1754 if (*DestPort != Session->DestinationPort) {\r
1755 Matched = FALSE;\r
1756 }\r
1757 }\r
1758 }\r
1759\r
1760 if (Matched) {\r
1761 //\r
1762 // Match the source ip of the received udp dgram\r
1763 //\r
f737cfb9 1764 if ((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_ANY_SRC_IP) != 0) {\r
dc361cc5 1765\r
1766 if (SrcIp != NULL) {\r
e48e37fc 1767 CopyMem (SrcIp, &Session->SourceAddress, sizeof (EFI_IPv4_ADDRESS));\r
dc361cc5 1768 }\r
1769 } else {\r
1770\r
1771 if (!EFI_IP4_EQUAL (SrcIp, &Session->SourceAddress)) {\r
1772 Matched = FALSE;\r
1773 }\r
1774 }\r
1775 }\r
1776\r
1777 if (Matched) {\r
1778 //\r
1779 // Match the source port of the received udp dgram\r
1780 //\r
f737cfb9 1781 if ((OpFlags & EFI_PXE_BASE_CODE_UDP_OPFLAGS_ANY_SRC_PORT) != 0) {\r
dc361cc5 1782\r
1783 if (SrcPort != NULL) {\r
1784 *SrcPort = Session->SourcePort;\r
1785 }\r
1786 } else {\r
1787\r
1788 if (*SrcPort != Session->SourcePort) {\r
1789 Matched = FALSE;\r
1790 }\r
1791 }\r
1792 }\r
1793\r
1794 if (Matched) {\r
c3cd46d4 1795 ASSERT (RxData != NULL);\r
dc361cc5 1796\r
c3cd46d4 1797 HeaderLen = 0;\r
dc361cc5 1798 if (HeaderSize != NULL) {\r
c3cd46d4 1799 HeaderLen = MIN (*HeaderSize, RxData->DataLength);\r
dc361cc5 1800 }\r
1801\r
c3cd46d4 1802 if (RxData->DataLength - HeaderLen > *BufferSize) {\r
dc361cc5 1803 Status = EFI_BUFFER_TOO_SMALL;\r
1804 } else {\r
c3cd46d4 1805 *HeaderSize = HeaderLen;\r
1806 *BufferSize = RxData->DataLength - HeaderLen;\r
1807\r
1808 HeaderCopiedLen = 0;\r
1809 BufferCopiedLen = 0;\r
1810 for (FragmentIndex = 0; FragmentIndex < RxData->FragmentCount; FragmentIndex++) {\r
1811 FragmentLength = RxData->FragmentTable[FragmentIndex].FragmentLength;\r
1812 FragmentBuffer = RxData->FragmentTable[FragmentIndex].FragmentBuffer;\r
1813 if (HeaderCopiedLen + FragmentLength < HeaderLen) {\r
1814 //\r
1815 // Copy the header part of received data.\r
1816 //\r
1817 CopyMem ((UINT8 *) HeaderPtr + HeaderCopiedLen, FragmentBuffer, FragmentLength);\r
1818 HeaderCopiedLen += FragmentLength;\r
1819 } else if (HeaderCopiedLen < HeaderLen) {\r
1820 //\r
1821 // Copy the header part of received data.\r
1822 //\r
1823 CopiedLen = HeaderLen - HeaderCopiedLen;\r
1824 CopyMem ((UINT8 *) HeaderPtr + HeaderCopiedLen, FragmentBuffer, CopiedLen);\r
1825 HeaderCopiedLen += CopiedLen;\r
1826\r
1827 //\r
1828 // Copy the other part of received data.\r
1829 //\r
1830 CopyMem ((UINT8 *) BufferPtr + BufferCopiedLen, FragmentBuffer + CopiedLen, FragmentLength - CopiedLen);\r
1831 BufferCopiedLen += (FragmentLength - CopiedLen);\r
1832 } else {\r
1833 //\r
1834 // Copy the other part of received data.\r
1835 //\r
1836 CopyMem ((UINT8 *) BufferPtr + BufferCopiedLen, FragmentBuffer, FragmentLength);\r
1837 BufferCopiedLen += FragmentLength;\r
1838 }\r
1839 }\r
dc361cc5 1840 }\r
1841 } else {\r
1842\r
1843 Status = EFI_TIMEOUT;\r
1844 }\r
1845\r
1846 //\r
1847 // Recycle the RxData\r
1848 //\r
1849 gBS->SignalEvent (RxData->RecycleSignal);\r
8792362f 1850\r
1851 if (!Matched) {\r
1852 goto TRY_AGAIN;\r
1853 }\r
dc361cc5 1854 }\r
1855\r
1856ON_EXIT:\r
1857\r
1858 Udp4->Cancel (Udp4, &Token);\r
1859\r
1860 gBS->CloseEvent (Token.Event);\r
1861\r
1862 return Status;\r
1863}\r
1864\r
e2851998 1865/**\r
f737cfb9 1866 Updates the IP receive filters of a network device and enables software filtering.\r
e2851998 1867\r
f737cfb9 1868 The NewFilter field is used to modify the network device's current IP receive\r
1869 filter settings and to enable a software filter. This function updates the IpFilter\r
1870 field of the EFI_PXE_BASE_CODE_MODE structure with the contents of NewIpFilter.\r
1871 The software filter is used when the USE_FILTER in OpFlags is set to UdpRead().\r
1872 The current hardware filter remains in effect no matter what the settings of OpFlags\r
1873 are, so that the meaning of ANY_DEST_IP set in OpFlags to UdpRead() is from those\r
1874 packets whose reception is enabled in hardware-physical NIC address (unicast),\r
1875 broadcast address, logical address or addresses (multicast), or all (promiscuous).\r
1876 UdpRead() does not modify the IP filter settings.\r
1877 Dhcp(), Discover(), and Mtftp() set the IP filter, and return with the IP receive\r
1878 filter list emptied and the filter set to EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP.\r
1879 If an application or driver wishes to preserve the IP receive filter settings,\r
1880 it will have to preserve the IP receive filter settings before these calls, and\r
1881 use SetIpFilter() to restore them after the calls. If incompatible filtering is\r
1882 requested (for example, PROMISCUOUS with anything else) or if the device does not\r
1883 support a requested filter setting and it cannot be accommodated in software\r
1884 (for example, PROMISCUOUS not supported), EFI_INVALID_PARAMETER will be returned.\r
1885 The IPlist field is used to enable IPs other than the StationIP. They may be\r
1886 multicast or unicast. If IPcnt is set as well as EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP,\r
1887 then both the StationIP and the IPs from the IPlist will be used.\r
e2851998 1888\r
f737cfb9 1889 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
1890 @param NewFilter Pointer to the new set of IP receive filters.\r
e2851998 1891\r
f737cfb9 1892 @retval EFI_SUCCESS The IP receive filter settings were updated.\r
1893 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 1894 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
1895\r
dc361cc5 1896**/\r
1897EFI_STATUS\r
1898EFIAPI\r
1899EfiPxeBcSetIpFilter (\r
1900 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
1901 IN EFI_PXE_BASE_CODE_IP_FILTER *NewFilter\r
1902 )\r
1903{\r
8d285ec0 1904 EFI_STATUS Status;\r
1905 PXEBC_PRIVATE_DATA *Private;\r
1906 EFI_PXE_BASE_CODE_MODE *Mode;\r
1907 UINTN Index;\r
c82291bc 1908 EFI_UDP4_CONFIG_DATA *Udp4Cfg;\r
8d285ec0 1909 BOOLEAN PromiscuousNeed;\r
c82291bc 1910 BOOLEAN AcceptPromiscuous;\r
1911 BOOLEAN AcceptBroadcast;\r
1912 BOOLEAN MultiCastUpdate;\r
8d285ec0 1913\r
1914 if (This == NULL) {\r
894d038a 1915 DEBUG ((EFI_D_ERROR, "This == NULL.\n"));\r
8d285ec0 1916 return EFI_INVALID_PARAMETER;\r
1917 }\r
1918\r
1919 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
1920 Mode = Private->PxeBc.Mode;\r
1921\r
894d038a 1922 if (NewFilter == NULL) {\r
1923 DEBUG ((EFI_D_ERROR, "NewFilter == NULL.\n"));\r
8d285ec0 1924 return EFI_INVALID_PARAMETER;\r
1925 }\r
1926\r
894d038a 1927 if (NewFilter->IpCnt > EFI_PXE_BASE_CODE_MAX_IPCNT) {\r
1928 DEBUG ((EFI_D_ERROR, "NewFilter->IpCnt > %d.\n", EFI_PXE_BASE_CODE_MAX_IPCNT));\r
8d285ec0 1929 return EFI_INVALID_PARAMETER;\r
1930 }\r
1931\r
1932 if (!Mode->Started) {\r
1933 DEBUG ((EFI_D_ERROR, "BC was not started.\n"));\r
1934 return EFI_NOT_STARTED;\r
1935 }\r
1936\r
c82291bc 1937 if (Mode->UsingIpv6) {\r
1938 DEBUG ((EFI_D_ERROR, "This driver is PXE for IPv4 Only.\n"));\r
1939 return EFI_INVALID_PARAMETER;\r
1940 }\r
1941\r
8d285ec0 1942 PromiscuousNeed = FALSE;\r
894d038a 1943\r
8d285ec0 1944 for (Index = 0; Index < NewFilter->IpCnt; ++Index) {\r
1945 if (IP4_IS_LOCAL_BROADCAST (EFI_IP4 (NewFilter->IpList[Index].v4))) {\r
1946 //\r
1947 // The IP is a broadcast address.\r
1948 //\r
1949 DEBUG ((EFI_D_ERROR, "There is broadcast address in NewFilter.\n"));\r
1950 return EFI_INVALID_PARAMETER;\r
1951 }\r
f6b7393c 1952 if (NetIp4IsUnicast (EFI_IP4 (NewFilter->IpList[Index].v4), 0) &&\r
e2851998 1953 ((NewFilter->Filters & EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP) != 0)\r
8d285ec0 1954 ) {\r
1955 //\r
1956 // If EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP is set and IP4 address is in IpList,\r
1957 // promiscuous mode is needed.\r
1958 //\r
1959 PromiscuousNeed = TRUE;\r
1960 }\r
1961 }\r
1962\r
c82291bc 1963 AcceptPromiscuous = FALSE;\r
1964 AcceptBroadcast = FALSE;\r
1965 MultiCastUpdate = FALSE;\r
8d285ec0 1966\r
1967 if (PromiscuousNeed ||\r
e2851998 1968 ((NewFilter->Filters & EFI_PXE_BASE_CODE_IP_FILTER_PROMISCUOUS) != 0) ||\r
1969 ((NewFilter->Filters & EFI_PXE_BASE_CODE_IP_FILTER_PROMISCUOUS_MULTICAST) != 0)\r
8d285ec0 1970 ) {\r
1971 //\r
c82291bc 1972 // Configure the udp4 filter to receive all packages.\r
8d285ec0 1973 //\r
c82291bc 1974 AcceptPromiscuous = TRUE;\r
1975 } else if ((NewFilter->Filters & EFI_PXE_BASE_CODE_IP_FILTER_BROADCAST) != 0) {\r
8d285ec0 1976 //\r
c82291bc 1977 // Configure the udp4 filter to receive all broadcast packages.\r
8d285ec0 1978 //\r
c82291bc 1979 AcceptBroadcast = TRUE;\r
1980 }\r
8d285ec0 1981\r
c82291bc 1982 //\r
1983 // In multicast condition when Promiscuous FALSE and IpCnt no-zero.\r
1984 // Here check if there is any update of the multicast ip address. If yes,\r
1985 // we need leave the old multicast group (by Config UDP instance to NULL),\r
1986 // and join the new multicast group.\r
1987 //\r
1988 if (!AcceptPromiscuous) {\r
1989 if ((NewFilter->Filters & EFI_PXE_BASE_CODE_IP_FILTER_STATION_IP) != 0) {\r
1990 if (Mode->IpFilter.IpCnt != NewFilter->IpCnt) {\r
1991 MultiCastUpdate = TRUE;\r
1992 } else if (CompareMem (Mode->IpFilter.IpList, NewFilter->IpList, NewFilter->IpCnt * sizeof (EFI_IP_ADDRESS)) != 0 ) {\r
1993 MultiCastUpdate = TRUE;\r
1994 }\r
8d285ec0 1995 }\r
c82291bc 1996 }\r
1997 \r
1998 //\r
1999 // Check whether we need reconfigure the UDP instance.\r
2000 //\r
2001 Udp4Cfg = &Private->Udp4CfgData;\r
2002 if ((AcceptPromiscuous != Udp4Cfg->AcceptPromiscuous) ||\r
2003 (AcceptBroadcast != Udp4Cfg->AcceptBroadcast) || MultiCastUpdate) {\r
2004 //\r
2005 // Clear the UDP instance configuration, all joined groups will be left\r
2006 // during the operation.\r
2007 //\r
2008 Private->Udp4Read->Configure (Private->Udp4Read, NULL);\r
8d285ec0 2009\r
2010 //\r
2011 // Configure the UDP instance with the new configuration.\r
2012 //\r
c82291bc 2013 Udp4Cfg->AcceptPromiscuous = AcceptPromiscuous;\r
2014 Udp4Cfg->AcceptBroadcast = AcceptBroadcast;\r
2015 Status = Private->Udp4Read->Configure (Private->Udp4Read, Udp4Cfg);\r
8d285ec0 2016 if (EFI_ERROR (Status)) {\r
2017 return Status;\r
2018 }\r
2019\r
c82291bc 2020 //\r
2021 // In not Promiscuous mode, need to join the new multicast group.\r
2022 //\r
2023 if (!AcceptPromiscuous) {\r
8d285ec0 2024 for (Index = 0; Index < NewFilter->IpCnt; ++Index) {\r
2025 if (IP4_IS_MULTICAST (EFI_NTOHL (NewFilter->IpList[Index].v4))) {\r
2026 //\r
c82291bc 2027 // Join the mutilcast group.\r
8d285ec0 2028 //\r
8792362f 2029 Status = Private->Udp4Read->Groups (Private->Udp4Read, TRUE, &NewFilter->IpList[Index].v4);\r
8d285ec0 2030 if (EFI_ERROR (Status)) {\r
2031 return Status;\r
2032 }\r
2033 }\r
2034 }\r
2035 }\r
2036 }\r
2037\r
2038\r
2039 //\r
2040 // Save the new filter.\r
2041 //\r
2042 CopyMem (&Mode->IpFilter, NewFilter, sizeof (Mode->IpFilter));\r
2043\r
2044 return EFI_SUCCESS;\r
dc361cc5 2045}\r
2046\r
2047\r
e2851998 2048/**\r
f737cfb9 2049 Uses the ARP protocol to resolve a MAC address.\r
e2851998 2050\r
f737cfb9 2051 This function uses the ARP protocol to resolve a MAC address. The UsingIpv6 field\r
2052 of the EFI_PXE_BASE_CODE_MODE structure is used to determine if IPv4 or IPv6\r
2053 addresses are being used. The IP address specified by IpAddr is used to resolve\r
2054 a MAC address. If the ARP protocol succeeds in resolving the specified address,\r
2055 then the ArpCacheEntries and ArpCache fields of the EFI_PXE_BASE_CODE_MODE structure\r
2056 are updated, and EFI_SUCCESS is returned. If MacAddr is not NULL, the resolved\r
e2851998 2057 MAC address is placed there as well. If the PXE Base Code protocol is in the\r
2058 stopped state, then EFI_NOT_STARTED is returned. If the ARP protocol encounters\r
2059 a timeout condition while attempting to resolve an address, then EFI_TIMEOUT is\r
2060 returned. If the Callback Protocol does not return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE,\r
f737cfb9 2061 then EFI_ABORTED is returned.\r
e2851998 2062\r
f737cfb9 2063 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
2064 @param IpAddr Pointer to the IP address that is used to resolve a MAC address.\r
2065 @param MacAddr If not NULL, a pointer to the MAC address that was resolved with the\r
e2851998 2066 ARP protocol.\r
2067\r
f737cfb9 2068 @retval EFI_SUCCESS The IP or MAC address was resolved.\r
2069 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 2070 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
2071 @retval EFI_DEVICE_ERROR The network device encountered an error during this operation.\r
2072 @retval EFI_ICMP_ERROR Something error occur with the ICMP packet message.\r
2073\r
dc361cc5 2074**/\r
2075EFI_STATUS\r
2076EFIAPI\r
2077EfiPxeBcArp (\r
2078 IN EFI_PXE_BASE_CODE_PROTOCOL * This,\r
2079 IN EFI_IP_ADDRESS * IpAddr,\r
2080 IN EFI_MAC_ADDRESS * MacAddr OPTIONAL\r
2081 )\r
2082{\r
8d285ec0 2083 PXEBC_PRIVATE_DATA *Private;\r
2084 EFI_PXE_BASE_CODE_MODE *Mode;\r
2085 EFI_STATUS Status;\r
2086 EFI_MAC_ADDRESS TempMacAddr;\r
2087\r
2088 if (This == NULL || IpAddr == NULL) {\r
2089 return EFI_INVALID_PARAMETER;\r
2090 }\r
2091\r
2092 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
2093 Mode = Private->PxeBc.Mode;\r
2094\r
2095 if (!Mode->Started) {\r
2096 return EFI_NOT_STARTED;\r
2097 }\r
2098\r
2099 if (!Private->AddressIsOk || Mode->UsingIpv6) {\r
2100 //\r
2101 // We can't resolve the IP address if we don't have a local address now.\r
2102 // Don't have ARP for IPv6.\r
2103 //\r
2104 return EFI_INVALID_PARAMETER;\r
2105 }\r
2106\r
982a9eae 2107 Mode->IcmpErrorReceived = FALSE;\r
2108\r
2109 if (!Mode->AutoArp) {\r
2110 //\r
2111 // If AutoArp is set false, check arp cache\r
2112 //\r
2113 UpdateArpCache (This);\r
2114 if (!FindInArpCache (Mode, &IpAddr->v4, &TempMacAddr)) {\r
2115 return EFI_DEVICE_ERROR;\r
2116 }\r
2117 } else {\r
2118 Status = Private->Arp->Request (Private->Arp, &IpAddr->v4, NULL, &TempMacAddr);\r
2119 if (EFI_ERROR (Status)) {\r
2120 if (Status == EFI_ICMP_ERROR) {\r
2121 Mode->IcmpErrorReceived = TRUE;\r
2122 }\r
2123 return Status;\r
2124 }\r
8d285ec0 2125 }\r
2126\r
2127 if (MacAddr != NULL) {\r
2128 CopyMem (MacAddr, &TempMacAddr, sizeof (EFI_MAC_ADDRESS));\r
2129 }\r
2130\r
2131 return EFI_SUCCESS;\r
dc361cc5 2132}\r
2133\r
e2851998 2134/**\r
f737cfb9 2135 Updates the parameters that affect the operation of the PXE Base Code Protocol.\r
e2851998 2136\r
f737cfb9 2137 This function sets parameters that affect the operation of the PXE Base Code Protocol.\r
2138 The parameter specified by NewAutoArp is used to control the generation of ARP\r
2139 protocol packets. If NewAutoArp is TRUE, then ARP Protocol packets will be generated\r
2140 as required by the PXE Base Code Protocol. If NewAutoArp is FALSE, then no ARP\r
2141 Protocol packets will be generated. In this case, the only mappings that are\r
2142 available are those stored in the ArpCache of the EFI_PXE_BASE_CODE_MODE structure.\r
2143 If there are not enough mappings in the ArpCache to perform a PXE Base Code Protocol\r
2144 service, then the service will fail. This function updates the AutoArp field of\r
2145 the EFI_PXE_BASE_CODE_MODE structure to NewAutoArp.\r
2146 The SetParameters() call must be invoked after a Callback Protocol is installed\r
2147 to enable the use of callbacks.\r
e2851998 2148\r
f737cfb9 2149 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
2150 @param NewAutoArp If not NULL, a pointer to a value that specifies whether to replace the\r
e2851998 2151 current value of AutoARP.\r
f737cfb9 2152 @param NewSendGUID If not NULL, a pointer to a value that specifies whether to replace the\r
e2851998 2153 current value of SendGUID.\r
f737cfb9 2154 @param NewTTL If not NULL, a pointer to be used in place of the current value of TTL,\r
e2851998 2155 the "time to live" field of the IP header.\r
f737cfb9 2156 @param NewToS If not NULL, a pointer to be used in place of the current value of ToS,\r
e2851998 2157 the "type of service" field of the IP header.\r
f737cfb9 2158 @param NewMakeCallback If not NULL, a pointer to a value that specifies whether to replace the\r
e2851998 2159 current value of the MakeCallback field of the Mode structure.\r
2160\r
f737cfb9 2161 @retval EFI_SUCCESS The new parameters values were updated.\r
2162 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 2163 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
2164\r
dc361cc5 2165**/\r
2166EFI_STATUS\r
2167EFIAPI\r
2168EfiPxeBcSetParameters (\r
2169 IN EFI_PXE_BASE_CODE_PROTOCOL *This,\r
f737cfb9 2170 IN BOOLEAN *NewAutoArp OPTIONAL,\r
2171 IN BOOLEAN *NewSendGUID OPTIONAL,\r
2172 IN UINT8 *NewTTL OPTIONAL,\r
2173 IN UINT8 *NewToS OPTIONAL,\r
dc361cc5 2174 IN BOOLEAN *NewMakeCallback // OPTIONAL\r
2175 )\r
2176{\r
2177 PXEBC_PRIVATE_DATA *Private;\r
2178 EFI_PXE_BASE_CODE_MODE *Mode;\r
2179 EFI_STATUS Status;\r
2180\r
2181 Status = EFI_SUCCESS;\r
2182\r
2183 if (This == NULL) {\r
2184 Status = EFI_INVALID_PARAMETER;\r
2185 goto ON_EXIT;\r
2186 }\r
2187\r
2188 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
2189 Mode = Private->PxeBc.Mode;\r
2190\r
f737cfb9 2191 if (NewSendGUID != NULL && *NewSendGUID) {\r
dc361cc5 2192 //\r
2193 // FixMe, cann't locate SendGuid\r
2194 //\r
2195 }\r
2196\r
f737cfb9 2197 if (NewMakeCallback != NULL && *NewMakeCallback) {\r
dc361cc5 2198\r
2199 Status = gBS->HandleProtocol (\r
2200 Private->Controller,\r
2201 &gEfiPxeBaseCodeCallbackProtocolGuid,\r
2202 (VOID **) &Private->PxeBcCallback\r
2203 );\r
2204 if (EFI_ERROR (Status) || (Private->PxeBcCallback->Callback == NULL)) {\r
2205\r
2206 Status = EFI_INVALID_PARAMETER;\r
2207 goto ON_EXIT;\r
2208 }\r
2209 }\r
2210\r
2211 if (!Mode->Started) {\r
2212 Status = EFI_NOT_STARTED;\r
2213 goto ON_EXIT;\r
2214 }\r
2215\r
2216 if (NewMakeCallback != NULL) {\r
2217\r
2218 if (*NewMakeCallback) {\r
2219 //\r
2220 // Update the Callback protocol.\r
2221 //\r
2222 Status = gBS->HandleProtocol (\r
2223 Private->Controller,\r
2224 &gEfiPxeBaseCodeCallbackProtocolGuid,\r
2225 (VOID **) &Private->PxeBcCallback\r
2226 );\r
2227\r
2228 if (EFI_ERROR (Status) || (Private->PxeBcCallback->Callback == NULL)) {\r
2229 Status = EFI_INVALID_PARAMETER;\r
2230 goto ON_EXIT;\r
2231 }\r
2232 } else {\r
2233 Private->PxeBcCallback = NULL;\r
2234 }\r
2235\r
2236 Mode->MakeCallbacks = *NewMakeCallback;\r
2237 }\r
2238\r
2239 if (NewAutoArp != NULL) {\r
2240 Mode->AutoArp = *NewAutoArp;\r
2241 }\r
2242\r
2243 if (NewSendGUID != NULL) {\r
2244 Mode->SendGUID = *NewSendGUID;\r
2245 }\r
2246\r
2247 if (NewTTL != NULL) {\r
2248 Mode->TTL = *NewTTL;\r
2249 }\r
2250\r
2251 if (NewToS != NULL) {\r
2252 Mode->ToS = *NewToS;\r
2253 }\r
2254\r
2255ON_EXIT:\r
2256 return Status;\r
2257}\r
2258\r
e2851998 2259/**\r
f737cfb9 2260 Updates the station IP address and/or subnet mask values of a network device.\r
e2851998 2261\r
f737cfb9 2262 This function updates the station IP address and/or subnet mask values of a network\r
2263 device. The NewStationIp field is used to modify the network device's current IP address.\r
2264 If NewStationIP is NULL, then the current IP address will not be modified. Otherwise,\r
2265 this function updates the StationIp field of the EFI_PXE_BASE_CODE_MODE structure\r
2266 with NewStationIp. The NewSubnetMask field is used to modify the network device's current subnet\r
2267 mask. If NewSubnetMask is NULL, then the current subnet mask will not be modified.\r
2268 Otherwise, this function updates the SubnetMask field of the EFI_PXE_BASE_CODE_MODE\r
2269 structure with NewSubnetMask.\r
e2851998 2270\r
f737cfb9 2271 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
e2851998 2272 @param NewStationIp Pointer to the new IP address to be used by the network device.\r
2273 @param NewSubnetMask Pointer to the new subnet mask to be used by the network device.\r
2274\r
f737cfb9 2275 @retval EFI_SUCCESS The new station IP address and/or subnet mask were updated.\r
2276 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
e2851998 2277 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.\r
2278\r
dc361cc5 2279**/\r
2280EFI_STATUS\r
2281EFIAPI\r
2282EfiPxeBcSetStationIP (\r
2283 IN EFI_PXE_BASE_CODE_PROTOCOL * This,\r
f737cfb9 2284 IN EFI_IP_ADDRESS * NewStationIp OPTIONAL,\r
dc361cc5 2285 IN EFI_IP_ADDRESS * NewSubnetMask OPTIONAL\r
2286 )\r
2287{\r
2288 PXEBC_PRIVATE_DATA *Private;\r
2289 EFI_PXE_BASE_CODE_MODE *Mode;\r
8d285ec0 2290 EFI_ARP_CONFIG_DATA ArpConfigData;\r
dc361cc5 2291\r
2292 if (This == NULL) {\r
2293 return EFI_INVALID_PARAMETER;\r
2294 }\r
2295\r
f6b7393c 2296 if (NewStationIp != NULL && !NetIp4IsUnicast (NTOHL (NewStationIp->Addr[0]), 0)) {\r
dc361cc5 2297 return EFI_INVALID_PARAMETER;\r
2298 }\r
2299\r
2300 if (NewSubnetMask != NULL && !IP4_IS_VALID_NETMASK (NTOHL (NewSubnetMask->Addr[0]))) {\r
2301 return EFI_INVALID_PARAMETER;\r
2302 }\r
2303\r
2304 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
2305 Mode = Private->PxeBc.Mode;\r
2306\r
2307 if (!Mode->Started) {\r
2308 return EFI_NOT_STARTED;\r
2309 }\r
2310\r
2311 if (NewStationIp != NULL) {\r
555e76f8 2312 CopyMem (&Mode->StationIp, NewStationIp, sizeof (EFI_IP_ADDRESS));\r
2313 CopyMem (&Private->StationIp, NewStationIp, sizeof (EFI_IP_ADDRESS));\r
dc361cc5 2314 }\r
2315\r
2316 if (NewSubnetMask != NULL) {\r
555e76f8 2317 CopyMem (&Mode->SubnetMask, NewSubnetMask, sizeof (EFI_IP_ADDRESS));\r
2318 CopyMem (&Private->SubnetMask ,NewSubnetMask, sizeof (EFI_IP_ADDRESS));\r
dc361cc5 2319 }\r
2320\r
2321 Private->AddressIsOk = TRUE;\r
2322\r
8d285ec0 2323 if (!Mode->UsingIpv6) {\r
2324 //\r
2325 // If in IPv4 mode, configure the corresponding ARP with this new\r
2326 // station IP address.\r
2327 //\r
2328 ZeroMem (&ArpConfigData, sizeof (EFI_ARP_CONFIG_DATA));\r
2329\r
2330 ArpConfigData.SwAddressType = 0x0800;\r
c9325700 2331 ArpConfigData.SwAddressLength = (UINT8) sizeof (EFI_IPv4_ADDRESS);\r
8d285ec0 2332 ArpConfigData.StationAddress = &Private->StationIp.v4;\r
2333\r
2334 Private->Arp->Configure (Private->Arp, NULL);\r
2335 Private->Arp->Configure (Private->Arp, &ArpConfigData);\r
982a9eae 2336\r
2337 //\r
2338 // Update the route table.\r
2339 //\r
2340 Mode->RouteTableEntries = 1;\r
2341 Mode->RouteTable[0].IpAddr.Addr[0] = Private->StationIp.Addr[0] & Private->SubnetMask.Addr[0];\r
2342 Mode->RouteTable[0].SubnetMask.Addr[0] = Private->SubnetMask.Addr[0];\r
2343 Mode->RouteTable[0].GwAddr.Addr[0] = 0;\r
8d285ec0 2344 }\r
2345\r
dc361cc5 2346 return EFI_SUCCESS;\r
2347}\r
2348\r
e2851998 2349/**\r
f737cfb9 2350 Updates the contents of the cached DHCP and Discover packets.\r
e2851998 2351\r
f737cfb9 2352 The pointers to the new packets are used to update the contents of the cached\r
2353 packets in the EFI_PXE_BASE_CODE_MODE structure.\r
e2851998 2354\r
f737cfb9 2355 @param This Pointer to the EFI_PXE_BASE_CODE_PROTOCOL instance.\r
2356 @param NewDhcpDiscoverValid Pointer to a value that will replace the current\r
e2851998 2357 DhcpDiscoverValid field.\r
f737cfb9 2358 @param NewDhcpAckReceived Pointer to a value that will replace the current\r
e2851998 2359 DhcpAckReceived field.\r
f737cfb9 2360 @param NewProxyOfferReceived Pointer to a value that will replace the current\r
e2851998 2361 ProxyOfferReceived field.\r
2362 @param NewPxeDiscoverValid Pointer to a value that will replace the current\r
2363 ProxyOfferReceived field.\r
f737cfb9 2364 @param NewPxeReplyReceived Pointer to a value that will replace the current\r
e2851998 2365 PxeReplyReceived field.\r
f737cfb9 2366 @param NewPxeBisReplyReceived Pointer to a value that will replace the current\r
e2851998 2367 PxeBisReplyReceived field.\r
2368 @param NewDhcpDiscover Pointer to the new cached DHCP Discover packet contents.\r
f737cfb9 2369 @param NewDhcpAck Pointer to the new cached DHCP Ack packet contents.\r
2370 @param NewProxyOffer Pointer to the new cached Proxy Offer packet contents.\r
2371 @param NewPxeDiscover Pointer to the new cached PXE Discover packet contents.\r
2372 @param NewPxeReply Pointer to the new cached PXE Reply packet contents.\r
2373 @param NewPxeBisReply Pointer to the new cached PXE BIS Reply packet contents.\r
e2851998 2374\r
f737cfb9 2375 @retval EFI_SUCCESS The cached packet contents were updated.\r
2376 @retval EFI_NOT_STARTED The PXE Base Code Protocol is in the stopped state.\r
2377 @retval EFI_INVALID_PARAMETER This is NULL or not point to a valid EFI_PXE_BASE_CODE_PROTOCOL structure.\r
e2851998 2378\r
dc361cc5 2379**/\r
2380EFI_STATUS\r
2381EFIAPI\r
2382EfiPxeBcSetPackets (\r
2383 IN EFI_PXE_BASE_CODE_PROTOCOL * This,\r
f737cfb9 2384 IN BOOLEAN * NewDhcpDiscoverValid OPTIONAL,\r
2385 IN BOOLEAN * NewDhcpAckReceived OPTIONAL,\r
2386 IN BOOLEAN * NewProxyOfferReceived OPTIONAL,\r
2387 IN BOOLEAN * NewPxeDiscoverValid OPTIONAL,\r
2388 IN BOOLEAN * NewPxeReplyReceived OPTIONAL,\r
2389 IN BOOLEAN * NewPxeBisReplyReceived OPTIONAL,\r
2390 IN EFI_PXE_BASE_CODE_PACKET * NewDhcpDiscover OPTIONAL,\r
2391 IN EFI_PXE_BASE_CODE_PACKET * NewDhcpAck OPTIONAL,\r
2392 IN EFI_PXE_BASE_CODE_PACKET * NewProxyOffer OPTIONAL,\r
2393 IN EFI_PXE_BASE_CODE_PACKET * NewPxeDiscover OPTIONAL,\r
2394 IN EFI_PXE_BASE_CODE_PACKET * NewPxeReply OPTIONAL,\r
dc361cc5 2395 IN EFI_PXE_BASE_CODE_PACKET * NewPxeBisReply OPTIONAL\r
2396 )\r
2397{\r
2398 PXEBC_PRIVATE_DATA *Private;\r
2399 EFI_PXE_BASE_CODE_MODE *Mode;\r
2400\r
2401 if (This == NULL) {\r
2402 return EFI_INVALID_PARAMETER;\r
2403 }\r
2404\r
2405 Private = PXEBC_PRIVATE_DATA_FROM_PXEBC (This);\r
2406 Mode = Private->PxeBc.Mode;\r
2407\r
2408 if (!Mode->Started) {\r
2409 return EFI_NOT_STARTED;\r
2410 }\r
2411\r
dc361cc5 2412 if (NewDhcpDiscoverValid != NULL) {\r
2413 Mode->DhcpDiscoverValid = *NewDhcpDiscoverValid;\r
2414 }\r
2415\r
2416 if (NewDhcpAckReceived != NULL) {\r
2417 Mode->DhcpAckReceived = *NewDhcpAckReceived;\r
2418 }\r
2419\r
2420 if (NewProxyOfferReceived != NULL) {\r
2421 Mode->ProxyOfferReceived = *NewProxyOfferReceived;\r
2422 }\r
2423\r
2424 if (NewPxeDiscoverValid != NULL) {\r
2425 Mode->PxeDiscoverValid = *NewPxeDiscoverValid;\r
2426 }\r
2427\r
2428 if (NewPxeReplyReceived != NULL) {\r
2429 Mode->PxeReplyReceived = *NewPxeReplyReceived;\r
2430 }\r
2431\r
2432 if (NewPxeBisReplyReceived != NULL) {\r
2433 Mode->PxeBisReplyReceived = *NewPxeBisReplyReceived;\r
2434 }\r
2435\r
2436 if (NewDhcpDiscover != NULL) {\r
e48e37fc 2437 CopyMem (&Mode->DhcpDiscover, NewDhcpDiscover, sizeof (EFI_PXE_BASE_CODE_PACKET));\r
dc361cc5 2438 }\r
2439\r
2440 if (NewDhcpAck != NULL) {\r
e48e37fc 2441 CopyMem (&Mode->DhcpAck, NewDhcpAck, sizeof (EFI_PXE_BASE_CODE_PACKET));\r
dc361cc5 2442 }\r
2443\r
2444 if (NewProxyOffer != NULL) {\r
e48e37fc 2445 CopyMem (&Mode->ProxyOffer, NewProxyOffer, sizeof (EFI_PXE_BASE_CODE_PACKET));\r
dc361cc5 2446 }\r
2447\r
2448 if (NewPxeDiscover != NULL) {\r
e48e37fc 2449 CopyMem (&Mode->PxeDiscover, NewPxeDiscover, sizeof (EFI_PXE_BASE_CODE_PACKET));\r
dc361cc5 2450 }\r
2451\r
2452 if (NewPxeReply != NULL) {\r
e48e37fc 2453 CopyMem (&Mode->PxeReply, NewPxeReply, sizeof (EFI_PXE_BASE_CODE_PACKET));\r
dc361cc5 2454 }\r
2455\r
2456 if (NewPxeBisReply != NULL) {\r
e48e37fc 2457 CopyMem (&Mode->PxeBisReply, NewPxeBisReply, sizeof (EFI_PXE_BASE_CODE_PACKET));\r
dc361cc5 2458 }\r
2459\r
2460 return EFI_SUCCESS;\r
2461}\r
2462\r
2463EFI_PXE_BASE_CODE_PROTOCOL mPxeBcProtocolTemplate = {\r
2464 EFI_PXE_BASE_CODE_PROTOCOL_REVISION,\r
2465 EfiPxeBcStart,\r
2466 EfiPxeBcStop,\r
2467 EfiPxeBcDhcp,\r
2468 EfiPxeBcDiscover,\r
2469 EfiPxeBcMtftp,\r
2470 EfiPxeBcUdpWrite,\r
2471 EfiPxeBcUdpRead,\r
2472 EfiPxeBcSetIpFilter,\r
2473 EfiPxeBcArp,\r
2474 EfiPxeBcSetParameters,\r
2475 EfiPxeBcSetStationIP,\r
2476 EfiPxeBcSetPackets,\r
2477 NULL\r
2478};\r
2479\r
e2851998 2480/**\r
f737cfb9 2481 Callback function that is invoked when the PXE Base Code Protocol is about to transmit, has\r
e2851998 2482 received, or is waiting to receive a packet.\r
2483\r
f737cfb9 2484 This function is invoked when the PXE Base Code Protocol is about to transmit, has received,\r
2485 or is waiting to receive a packet. Parameters Function and Received specify the type of event.\r
2486 Parameters PacketLen and Packet specify the packet that generated the event. If these fields\r
2487 are zero and NULL respectively, then this is a status update callback. If the operation specified\r
2488 by Function is to continue, then CALLBACK_STATUS_CONTINUE should be returned. If the operation\r
2489 specified by Function should be aborted, then CALLBACK_STATUS_ABORT should be returned. Due to\r
2490 the polling nature of UEFI device drivers, a callback function should not execute for more than 5 ms.\r
2491 The SetParameters() function must be called after a Callback Protocol is installed to enable the\r
2492 use of callbacks.\r
e2851998 2493\r
f737cfb9 2494 @param This Pointer to the EFI_PXE_BASE_CODE_CALLBACK_PROTOCOL instance.\r
e2851998 2495 @param Function The PXE Base Code Protocol function that is waiting for an event.\r
f737cfb9 2496 @param Received TRUE if the callback is being invoked due to a receive event. FALSE if\r
e2851998 2497 the callback is being invoked due to a transmit event.\r
f737cfb9 2498 @param PacketLength The length, in bytes, of Packet. This field will have a value of zero if\r
e2851998 2499 this is a wait for receive event.\r
f737cfb9 2500 @param PacketPtr If Received is TRUE, a pointer to the packet that was just received;\r
e2851998 2501 otherwise a pointer to the packet that is about to be transmitted.\r
2502\r
2503 @retval EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE if Function specifies a continue operation\r
f737cfb9 2504 @retval EFI_PXE_BASE_CODE_CALLBACK_STATUS_ABORT if Function specifies an abort operation\r
e2851998 2505\r
dc361cc5 2506**/\r
2507EFI_PXE_BASE_CODE_CALLBACK_STATUS\r
2508EFIAPI\r
2509EfiPxeLoadFileCallback (\r
2510 IN EFI_PXE_BASE_CODE_CALLBACK_PROTOCOL * This,\r
2511 IN EFI_PXE_BASE_CODE_FUNCTION Function,\r
2512 IN BOOLEAN Received,\r
2513 IN UINT32 PacketLength,\r
2514 IN EFI_PXE_BASE_CODE_PACKET * PacketPtr OPTIONAL\r
2515 )\r
2516{\r
2517 EFI_INPUT_KEY Key;\r
2518 EFI_STATUS Status;\r
2519\r
2520 //\r
2521 // Catch Ctrl-C or ESC to abort.\r
2522 //\r
2523 Status = gST->ConIn->ReadKeyStroke (gST->ConIn, &Key);\r
2524\r
2525 if (!EFI_ERROR (Status)) {\r
2526\r
2527 if (Key.ScanCode == SCAN_ESC || Key.UnicodeChar == (0x1F & 'c')) {\r
2528\r
2529 return EFI_PXE_BASE_CODE_CALLBACK_STATUS_ABORT;\r
2530 }\r
2531 }\r
2532 //\r
2533 // No print if receive packet\r
2534 //\r
2535 if (Received) {\r
2536 return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE;\r
2537 }\r
2538 //\r
2539 // Print only for three functions\r
2540 //\r
2541 switch (Function) {\r
2542\r
2543 case EFI_PXE_BASE_CODE_FUNCTION_MTFTP:\r
2544 //\r
2545 // Print only for open MTFTP packets, not every MTFTP packets\r
2546 //\r
2547 if (PacketLength != 0 && PacketPtr != NULL) {\r
2548 if (PacketPtr->Raw[0x1C] != 0x00 || PacketPtr->Raw[0x1D] != 0x01) {\r
2549 return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE;\r
2550 }\r
2551 }\r
2552 break;\r
2553\r
2554 case EFI_PXE_BASE_CODE_FUNCTION_DHCP:\r
2555 case EFI_PXE_BASE_CODE_FUNCTION_DISCOVER:\r
2556 break;\r
2557\r
2558 default:\r
2559 return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE;\r
2560 }\r
2561\r
2562 if (PacketLength != 0 && PacketPtr != NULL) {\r
2563 //\r
2564 // Print '.' when transmit a packet\r
2565 //\r
2566 AsciiPrint (".");\r
2567\r
2568 }\r
2569\r
2570 return EFI_PXE_BASE_CODE_CALLBACK_STATUS_CONTINUE;\r
2571}\r
2572\r
2573EFI_PXE_BASE_CODE_CALLBACK_PROTOCOL mPxeBcCallBackTemplate = {\r
2574 EFI_PXE_BASE_CODE_CALLBACK_PROTOCOL_REVISION,\r
2575 EfiPxeLoadFileCallback\r
2576};\r
2577\r
2578\r
2579/**\r
f737cfb9 2580 Find the boot file.\r
dc361cc5 2581\r
e2851998 2582 @param Private Pointer to PxeBc private data.\r
2583 @param BufferSize Pointer to buffer size.\r
2584 @param Buffer Pointer to buffer.\r
dc361cc5 2585\r
f737cfb9 2586 @retval EFI_SUCCESS Discover the boot file successfully.\r
2587 @retval EFI_TIMEOUT The TFTP/MTFTP operation timed out.\r
2588 @retval EFI_ABORTED PXE bootstrap server, so local boot need abort.\r
2589 @retval EFI_BUFFER_TOO_SMALL The buffer is too small to load the boot file.\r
e2851998 2590\r
dc361cc5 2591**/\r
2592EFI_STATUS\r
2593DiscoverBootFile (\r
2594 IN PXEBC_PRIVATE_DATA *Private,\r
2595 IN OUT UINT64 *BufferSize,\r
2596 IN VOID *Buffer\r
2597 )\r
2598{\r
2599 EFI_PXE_BASE_CODE_PROTOCOL *PxeBc;\r
2600 EFI_PXE_BASE_CODE_MODE *Mode;\r
2601 EFI_STATUS Status;\r
2602 UINT16 Type;\r
2603 UINT16 Layer;\r
2604 BOOLEAN UseBis;\r
dc361cc5 2605 PXEBC_CACHED_DHCP4_PACKET *Packet;\r
2606 UINT16 Value;\r
2607\r
2608 PxeBc = &Private->PxeBc;\r
2609 Mode = PxeBc->Mode;\r
2610 Type = EFI_PXE_BASE_CODE_BOOT_TYPE_BOOTSTRAP;\r
2611 Layer = EFI_PXE_BASE_CODE_BOOT_LAYER_INITIAL;\r
2612\r
2613 //\r
2614 // do DHCP.\r
2615 //\r
2616 Status = PxeBc->Dhcp (PxeBc, TRUE);\r
2617 if (EFI_ERROR (Status)) {\r
2618 return Status;\r
2619 }\r
2620\r
2621 //\r
2622 // Select a boot server\r
2623 //\r
2624 Status = PxeBcSelectBootPrompt (Private);\r
2625\r
2626 if (Status == EFI_SUCCESS) {\r
2627 Status = PxeBcSelectBootMenu (Private, &Type, TRUE);\r
2628 } else if (Status == EFI_TIMEOUT) {\r
2629 Status = PxeBcSelectBootMenu (Private, &Type, FALSE);\r
2630 }\r
2631\r
2632 if (!EFI_ERROR (Status)) {\r
2633\r
2634 if (Type == EFI_PXE_BASE_CODE_BOOT_TYPE_BOOTSTRAP) {\r
2635 //\r
2636 // Local boot(PXE bootstrap server) need abort\r
2637 //\r
2638 return EFI_ABORTED;\r
2639 }\r
2640\r
2641 UseBis = (BOOLEAN) (Mode->BisSupported && Mode->BisDetected);\r
2642 Status = PxeBc->Discover (PxeBc, Type, &Layer, UseBis, NULL);\r
2643 if (EFI_ERROR (Status)) {\r
2644 return Status;\r
2645 }\r
2646 }\r
2647\r
2648 *BufferSize = 0;\r
dc361cc5 2649\r
2650 //\r
2651 // Get bootfile name and (m)tftp server ip addresss\r
2652 //\r
2653 if (Mode->PxeReplyReceived) {\r
2654 Packet = &Private->PxeReply;\r
2655 } else if (Mode->ProxyOfferReceived) {\r
2656 Packet = &Private->ProxyOffer;\r
2657 } else {\r
2658 Packet = &Private->Dhcp4Ack;\r
2659 }\r
2660\r
319075ff 2661 //\r
2ce5c88a 2662 // Use siaddr(next server) in DHCPOFFER packet header, if zero, use option 54(server identifier)\r
2663 // in DHCPOFFER packet.\r
2664 // (It does not comply with PXE Spec, Ver2.1)\r
319075ff 2665 //\r
2ce5c88a 2666 if (EFI_IP4_EQUAL (&Packet->Packet.Offer.Dhcp4.Header.ServerAddr, &mZeroIp4Addr)) {\r
e48e37fc 2667 CopyMem (\r
dc361cc5 2668 &Private->ServerIp,\r
2669 Packet->Dhcp4Option[PXEBC_DHCP4_TAG_INDEX_SERVER_ID]->Data,\r
2670 sizeof (EFI_IPv4_ADDRESS)\r
2671 );\r
319075ff 2672 } else {\r
2673 CopyMem (\r
e2851998 2674 &Private->ServerIp,\r
2675 &Packet->Packet.Offer.Dhcp4.Header.ServerAddr,\r
319075ff 2676 sizeof (EFI_IPv4_ADDRESS)\r
2677 );\r
2678 }\r
2679 if (Private->ServerIp.Addr[0] == 0) {\r
2680 return EFI_DEVICE_ERROR;\r
dc361cc5 2681 }\r
2682\r
2683 ASSERT (Packet->Dhcp4Option[PXEBC_DHCP4_TAG_INDEX_BOOTFILE] != NULL);\r
2684\r
2685 //\r
2686 // bootlfile name\r
2687 //\r
2688 Private->BootFileName = (CHAR8 *) (Packet->Dhcp4Option[PXEBC_DHCP4_TAG_INDEX_BOOTFILE]->Data);\r
2689\r
2690 if (Packet->Dhcp4Option[PXEBC_DHCP4_TAG_INDEX_BOOTFILE_LEN] != NULL) {\r
2691 //\r
2692 // Already have the bootfile length option, compute the file size\r
2693 //\r
e48e37fc 2694 CopyMem (&Value, Packet->Dhcp4Option[PXEBC_DHCP4_TAG_INDEX_BOOTFILE_LEN]->Data, sizeof (Value));\r
dc361cc5 2695 Value = NTOHS (Value);\r
2696 *BufferSize = 512 * Value;\r
2697 Status = EFI_BUFFER_TOO_SMALL;\r
2698 } else {\r
2699 //\r
2700 // Get the bootfile size from tftp\r
2701 //\r
2702 Status = PxeBc->Mtftp (\r
2703 PxeBc,\r
2704 EFI_PXE_BASE_CODE_TFTP_GET_FILE_SIZE,\r
2705 Buffer,\r
2706 FALSE,\r
2707 BufferSize,\r
fa6d3ee4 2708 &Private->BlockSize,\r
dc361cc5 2709 &Private->ServerIp,\r
2710 (UINT8 *) Private->BootFileName,\r
2711 NULL,\r
2712 FALSE\r
2713 );\r
2714 }\r
2715\r
2716 Private->FileSize = (UINTN) *BufferSize;\r
2717\r
2718 return Status;\r
2719}\r
2720\r
dc361cc5 2721/**\r
f737cfb9 2722 Causes the driver to load a specified file.\r
2723\r
2724 @param This Protocol instance pointer.\r
2725 @param FilePath The device specific path of the file to load.\r
e2851998 2726 @param BootPolicy If TRUE, indicates that the request originates from the\r
f737cfb9 2727 boot manager is attempting to load FilePath as a boot\r
2728 selection. If FALSE, then FilePath must match as exact file\r
2729 to be loaded.\r
2730 @param BufferSize On input the size of Buffer in bytes. On output with a return\r
e2851998 2731 code of EFI_SUCCESS, the amount of data transferred to\r
f737cfb9 2732 Buffer. On output with a return code of EFI_BUFFER_TOO_SMALL,\r
2733 the size of Buffer required to retrieve the requested file.\r
2734 @param Buffer The memory buffer to transfer the file to. IF Buffer is NULL,\r
e2851998 2735 then no the size of the requested file is returned in\r
f737cfb9 2736 BufferSize.\r
2737\r
2738 @retval EFI_SUCCESS The file was loaded.\r
2739 @retval EFI_UNSUPPORTED The device does not support the provided BootPolicy\r
e2851998 2740 @retval EFI_INVALID_PARAMETER FilePath is not a valid device path, or\r
f737cfb9 2741 BufferSize is NULL.\r
2742 @retval EFI_NO_MEDIA No medium was present to load the file.\r
2743 @retval EFI_DEVICE_ERROR The file was not loaded due to a device error.\r
2744 @retval EFI_NO_RESPONSE The remote system did not respond.\r
2745 @retval EFI_NOT_FOUND The file was not found.\r
2746 @retval EFI_ABORTED The file load process was manually cancelled.\r
dc361cc5 2747\r
2748**/\r
2749EFI_STATUS\r
2750EFIAPI\r
2751EfiPxeLoadFile (\r
2752 IN EFI_LOAD_FILE_PROTOCOL * This,\r
2753 IN EFI_DEVICE_PATH_PROTOCOL * FilePath,\r
2754 IN BOOLEAN BootPolicy,\r
2755 IN OUT UINTN *BufferSize,\r
2756 IN VOID *Buffer OPTIONAL\r
2757 )\r
2758{\r
2759 PXEBC_PRIVATE_DATA *Private;\r
2760 EFI_PXE_BASE_CODE_PROTOCOL *PxeBc;\r
2761 BOOLEAN NewMakeCallback;\r
dc361cc5 2762 EFI_STATUS Status;\r
2763 UINT64 TmpBufSize;\r
dd29f3ed 2764 BOOLEAN MediaPresent;\r
dc361cc5 2765\r
2766 Private = PXEBC_PRIVATE_DATA_FROM_LOADFILE (This);\r
2767 PxeBc = &Private->PxeBc;\r
2768 NewMakeCallback = FALSE;\r
dc361cc5 2769 Status = EFI_DEVICE_ERROR;\r
2770\r
2771 if (This == NULL || BufferSize == NULL) {\r
2772\r
2773 return EFI_INVALID_PARAMETER;\r
2774 }\r
2775\r
2776 //\r
2777 // Only support BootPolicy\r
2778 //\r
2779 if (!BootPolicy) {\r
2780 return EFI_UNSUPPORTED;\r
2781 }\r
2782\r
dd29f3ed 2783 //\r
2784 // Check media status before PXE start\r
2785 //\r
2786 MediaPresent = TRUE;\r
2787 NetLibDetectMedia (Private->Controller, &MediaPresent);\r
2788 if (!MediaPresent) {\r
2789 return EFI_NO_MEDIA;\r
2790 }\r
2791\r
dc361cc5 2792 Status = PxeBc->Start (PxeBc, FALSE);\r
2793 if (EFI_ERROR (Status) && (Status != EFI_ALREADY_STARTED)) {\r
2794 return Status;\r
2795 }\r
2796\r
2797 Status = gBS->HandleProtocol (\r
2798 Private->Controller,\r
2799 &gEfiPxeBaseCodeCallbackProtocolGuid,\r
2800 (VOID **) &Private->PxeBcCallback\r
2801 );\r
2802 if (Status == EFI_UNSUPPORTED) {\r
2803\r
2804 CopyMem (&Private->LoadFileCallback, &mPxeBcCallBackTemplate, sizeof (Private->LoadFileCallback));\r
2805\r
2806 Status = gBS->InstallProtocolInterface (\r
2807 &Private->Controller,\r
2808 &gEfiPxeBaseCodeCallbackProtocolGuid,\r
2809 EFI_NATIVE_INTERFACE,\r
2810 &Private->LoadFileCallback\r
2811 );\r
2812\r
2813 NewMakeCallback = (BOOLEAN) (Status == EFI_SUCCESS);\r
2814\r
2815 Status = PxeBc->SetParameters (PxeBc, NULL, NULL, NULL, NULL, &NewMakeCallback);\r
2816 if (EFI_ERROR (Status)) {\r
2817 PxeBc->Stop (PxeBc);\r
2818 return Status;\r
2819 }\r
2820 }\r
2821\r
2822 if (Private->FileSize == 0) {\r
2823 TmpBufSize = 0;\r
2824 Status = DiscoverBootFile (Private, &TmpBufSize, Buffer);\r
2825\r
2826 if (sizeof (UINTN) < sizeof (UINT64) && (TmpBufSize > 0xFFFFFFFF)) {\r
2827 Status = EFI_DEVICE_ERROR;\r
39941daf 2828 } else if (TmpBufSize > 0 && *BufferSize >= (UINTN) TmpBufSize && Buffer != NULL) {\r
319075ff 2829 *BufferSize = (UINTN) TmpBufSize;\r
2830 Status = PxeBc->Mtftp (\r
2831 PxeBc,\r
2832 EFI_PXE_BASE_CODE_TFTP_READ_FILE,\r
2833 Buffer,\r
2834 FALSE,\r
2835 &TmpBufSize,\r
fa6d3ee4 2836 &Private->BlockSize,\r
319075ff 2837 &Private->ServerIp,\r
2838 (UINT8 *) Private->BootFileName,\r
2839 NULL,\r
2840 FALSE\r
2841 );\r
39941daf 2842 } else if (TmpBufSize > 0) {\r
dc361cc5 2843 *BufferSize = (UINTN) TmpBufSize;\r
319075ff 2844 Status = EFI_BUFFER_TOO_SMALL;\r
dc361cc5 2845 }\r
319075ff 2846 } else if (Buffer == NULL || Private->FileSize > *BufferSize) {\r
dc361cc5 2847 *BufferSize = Private->FileSize;\r
2848 Status = EFI_BUFFER_TOO_SMALL;\r
2849 } else {\r
2850 //\r
2851 // Download the file.\r
2852 //\r
2853 TmpBufSize = (UINT64) (*BufferSize);\r
2854 Status = PxeBc->Mtftp (\r
2855 PxeBc,\r
2856 EFI_PXE_BASE_CODE_TFTP_READ_FILE,\r
2857 Buffer,\r
2858 FALSE,\r
2859 &TmpBufSize,\r
fa6d3ee4 2860 &Private->BlockSize,\r
dc361cc5 2861 &Private->ServerIp,\r
2862 (UINT8 *) Private->BootFileName,\r
2863 NULL,\r
2864 FALSE\r
2865 );\r
2866 }\r
2867 //\r
2868 // If we added a callback protocol, now is the time to remove it.\r
2869 //\r
2870 if (NewMakeCallback) {\r
2871\r
2872 NewMakeCallback = FALSE;\r
2873\r
2874 PxeBc->SetParameters (PxeBc, NULL, NULL, NULL, NULL, &NewMakeCallback);\r
2875\r
2876 gBS->UninstallProtocolInterface (\r
2877 Private->Controller,\r
2878 &gEfiPxeBaseCodeCallbackProtocolGuid,\r
2879 &Private->LoadFileCallback\r
2880 );\r
2881 }\r
619eff3f 2882\r
dc361cc5 2883 //\r
2884 // Check download status\r
2885 //\r
619eff3f 2886 if (Status == EFI_SUCCESS) {\r
6ee21b60 2887 //\r
2888 // The functionality of PXE Base Code protocol will not be stopped,\r
2889 // when downloading is successfully.\r
2890 //\r
8792362f 2891 return EFI_SUCCESS;\r
dc361cc5 2892\r
619eff3f 2893 } else if (Status == EFI_BUFFER_TOO_SMALL) {\r
dc361cc5 2894 if (Buffer != NULL) {\r
2895 AsciiPrint ("PXE-E05: Download buffer is smaller than requested file.\n");\r
2896 } else {\r
ee6e8714 2897 //\r
2898 // The functionality of PXE Base Code protocol will not be stopped.\r
2899 //\r
dc361cc5 2900 return Status;\r
2901 }\r
dc361cc5 2902\r
619eff3f 2903 } else if (Status == EFI_DEVICE_ERROR) {\r
dc361cc5 2904 AsciiPrint ("PXE-E07: Network device error.\n");\r
dc361cc5 2905\r
619eff3f 2906 } else if (Status == EFI_OUT_OF_RESOURCES) {\r
dc361cc5 2907 AsciiPrint ("PXE-E09: Could not allocate I/O buffers.\n");\r
dc361cc5 2908\r
619eff3f 2909 } else if (Status == EFI_NO_MEDIA) {\r
dc361cc5 2910 AsciiPrint ("PXE-E12: Could not detect network connection.\n");\r
dc361cc5 2911\r
619eff3f 2912 } else if (Status == EFI_NO_RESPONSE) {\r
dc361cc5 2913 AsciiPrint ("PXE-E16: No offer received.\n");\r
dc361cc5 2914\r
619eff3f 2915 } else if (Status == EFI_TIMEOUT) {\r
dc361cc5 2916 AsciiPrint ("PXE-E18: Server response timeout.\n");\r
dc361cc5 2917\r
619eff3f 2918 } else if (Status == EFI_ABORTED) {\r
dc361cc5 2919 AsciiPrint ("PXE-E21: Remote boot cancelled.\n");\r
dc361cc5 2920\r
619eff3f 2921 } else if (Status == EFI_ICMP_ERROR) {\r
dc361cc5 2922 AsciiPrint ("PXE-E22: Client received ICMP error from server.\n");\r
dc361cc5 2923\r
619eff3f 2924 } else if (Status == EFI_TFTP_ERROR) {\r
dc361cc5 2925 AsciiPrint ("PXE-E23: Client received TFTP error from server.\n");\r
dc361cc5 2926\r
619eff3f 2927 } else {\r
dc361cc5 2928 AsciiPrint ("PXE-E99: Unexpected network error.\n");\r
dc361cc5 2929 }\r
2930\r
2931 PxeBc->Stop (PxeBc);\r
2932\r
2933 return Status;\r
2934}\r
2935\r
434ce3fe 2936EFI_LOAD_FILE_PROTOCOL mLoadFileProtocolTemplate = { EfiPxeLoadFile };\r
2937\r