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1f6729ff 1/** @file\r
2 The implementation of EFI IPv4 Configuration II Protocol.\r
3\r
7648748e 4 Copyright (c) 2015 - 2016, Intel Corporation. All rights reserved.<BR>\r
4f0f2316 5 (C) Copyright 2015-2016 Hewlett Packard Enterprise Development LP<BR>\r
1f6729ff 6\r
7 This program and the accompanying materials\r
8 are licensed and made available under the terms and conditions of the BSD License\r
9 which accompanies this distribution. The full text of the license may be found at\r
10 http://opensource.org/licenses/bsd-license.php.\r
11\r
12 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
13 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
14\r
15**/\r
16\r
17#include "Ip4Impl.h"\r
18\r
19LIST_ENTRY mIp4Config2InstanceList = {&mIp4Config2InstanceList, &mIp4Config2InstanceList};\r
20\r
21/**\r
22 The event process routine when the DHCPv4 service binding protocol is installed\r
23 in the system.\r
24\r
25 @param[in] Event Not used.\r
26 @param[in] Context Pointer to the IP4 config2 instance data.\r
27\r
28**/\r
29VOID\r
30EFIAPI\r
31Ip4Config2OnDhcp4SbInstalled (\r
32 IN EFI_EVENT Event,\r
33 IN VOID *Context\r
34 );\r
35\r
36/**\r
37 Destroy the Dhcp4 child in IP4_CONFIG2_INSTANCE and release the resources.\r
38\r
39 @param[in, out] Instance The buffer of IP4 config2 instance to be freed.\r
40\r
41 @retval EFI_SUCCESS The child was successfully destroyed.\r
42 @retval Others Failed to destroy the child.\r
43\r
44**/\r
45EFI_STATUS\r
46Ip4Config2DestroyDhcp4 (\r
47 IN OUT IP4_CONFIG2_INSTANCE *Instance\r
48 )\r
49{\r
50 IP4_SERVICE *IpSb;\r
51 EFI_STATUS Status;\r
52 EFI_DHCP4_PROTOCOL *Dhcp4;\r
53\r
54 Dhcp4 = Instance->Dhcp4;\r
55 ASSERT (Dhcp4 != NULL);\r
56\r
57 Dhcp4->Stop (Dhcp4);\r
58 Dhcp4->Configure (Dhcp4, NULL);\r
59 Instance->Dhcp4 = NULL;\r
60\r
61 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
62\r
63 //\r
64 // Close DHCPv4 protocol and destroy the child.\r
65 //\r
66 Status = gBS->CloseProtocol (\r
67 Instance->Dhcp4Handle,\r
68 &gEfiDhcp4ProtocolGuid,\r
69 IpSb->Image,\r
70 IpSb->Controller\r
71 );\r
72 if (EFI_ERROR (Status)) {\r
73 return Status;\r
74 }\r
75\r
76 Status = NetLibDestroyServiceChild (\r
77 IpSb->Controller,\r
78 IpSb->Image,\r
79 &gEfiDhcp4ServiceBindingProtocolGuid,\r
80 Instance->Dhcp4Handle\r
81 );\r
82\r
83 Instance->Dhcp4Handle = NULL;\r
84\r
85 return Status; \r
86}\r
87\r
1f6729ff 88/**\r
89 Update the current policy to NewPolicy. During the transition\r
90 period, the default router list\r
91 and address list in all interfaces will be released.\r
92\r
93 @param[in] IpSb The IP4 service binding instance.\r
94 @param[in] NewPolicy The new policy to be updated to.\r
95\r
96**/\r
97VOID\r
98Ip4Config2OnPolicyChanged (\r
99 IN IP4_SERVICE *IpSb,\r
100 IN EFI_IP4_CONFIG2_POLICY NewPolicy\r
101 )\r
102{\r
103 IP4_INTERFACE *IpIf;\r
104 IP4_ROUTE_TABLE *RouteTable;\r
105\r
106 //\r
107 // Currently there are only two policies: static and dhcp. Regardless of\r
108 // what transition is going on, i.e., static -> dhcp and dhcp ->\r
109 // static, we have to free default router table and all addresses.\r
110 //\r
111\r
112 if (IpSb->DefaultInterface != NULL) {\r
113 if (IpSb->DefaultRouteTable != NULL) {\r
114 Ip4FreeRouteTable (IpSb->DefaultRouteTable);\r
115 IpSb->DefaultRouteTable = NULL; \r
116 }\r
117\r
118 Ip4CancelReceive (IpSb->DefaultInterface);\r
119\r
120 Ip4FreeInterface (IpSb->DefaultInterface, NULL);\r
121 IpSb->DefaultInterface = NULL;\r
122 }\r
123\r
124 Ip4CleanAssembleTable (&IpSb->Assemble);\r
125\r
126 //\r
127 // Create new default interface and route table.\r
128 // \r
129 IpIf = Ip4CreateInterface (IpSb->Mnp, IpSb->Controller, IpSb->Image);\r
130 if (IpIf == NULL) {\r
131 return ;\r
132 }\r
133\r
134 RouteTable = Ip4CreateRouteTable ();\r
135 if (RouteTable == NULL) {\r
136 Ip4FreeInterface (IpIf, NULL);\r
137 return ;\r
138 }\r
139 \r
140 IpSb->DefaultInterface = IpIf;\r
141 InsertHeadList (&IpSb->Interfaces, &IpIf->Link);\r
142 IpSb->DefaultRouteTable = RouteTable;\r
143 Ip4ReceiveFrame (IpIf, NULL, Ip4AccpetFrame, IpSb);\r
144\r
5cb90e14 145 if (IpSb->State == IP4_SERVICE_CONFIGED || IpSb->State == IP4_SERVICE_STARTED) {\r
1f6729ff 146 IpSb->State = IP4_SERVICE_UNSTARTED;\r
147 }\r
148\r
149 //\r
150 // Start the dhcp configuration.\r
151 //\r
152 if (NewPolicy == Ip4Config2PolicyDhcp) {\r
153 Ip4StartAutoConfig (&IpSb->Ip4Config2Instance);\r
154 }\r
155\r
156}\r
157\r
158/**\r
159 Signal the registered event. It is the callback routine for NetMapIterate.\r
160\r
161 @param[in] Map Points to the list of registered event.\r
162 @param[in] Item The registered event.\r
163 @param[in] Arg Not used.\r
164\r
165 @retval EFI_SUCCESS The event was signaled successfully.\r
166**/\r
167EFI_STATUS\r
168EFIAPI\r
169Ip4Config2SignalEvent (\r
170 IN NET_MAP *Map,\r
171 IN NET_MAP_ITEM *Item,\r
172 IN VOID *Arg\r
173 )\r
174{\r
175 gBS->SignalEvent ((EFI_EVENT) Item->Key);\r
176\r
177 return EFI_SUCCESS;\r
178}\r
179\r
180/**\r
181 Read the configuration data from variable storage according to the VarName and\r
182 gEfiIp4Config2ProtocolGuid. It checks the integrity of variable data. If the\r
183 data is corrupted, it clears the variable data to ZERO. Othewise, it outputs the\r
184 configuration data to IP4_CONFIG2_INSTANCE.\r
185\r
186 @param[in] VarName The pointer to the variable name\r
187 @param[in, out] Instance The pointer to the IP4 config2 instance data.\r
188\r
189 @retval EFI_NOT_FOUND The variable can not be found or already corrupted.\r
190 @retval EFI_OUT_OF_RESOURCES Fail to allocate resource to complete the operation.\r
191 @retval EFI_SUCCESS The configuration data was retrieved successfully.\r
192\r
193**/\r
194EFI_STATUS\r
195Ip4Config2ReadConfigData (\r
196 IN CHAR16 *VarName,\r
197 IN OUT IP4_CONFIG2_INSTANCE *Instance\r
198 )\r
199{\r
200 EFI_STATUS Status;\r
201 UINTN VarSize;\r
202 IP4_CONFIG2_VARIABLE *Variable;\r
203 IP4_CONFIG2_DATA_ITEM *DataItem;\r
204 UINTN Index;\r
205 IP4_CONFIG2_DATA_RECORD DataRecord;\r
206 CHAR8 *Data;\r
207\r
208 //\r
209 // Try to read the configuration variable.\r
210 //\r
211 VarSize = 0;\r
212 Status = gRT->GetVariable (\r
213 VarName,\r
214 &gEfiIp4Config2ProtocolGuid,\r
215 NULL,\r
216 &VarSize,\r
217 NULL\r
218 );\r
219\r
220 if (Status == EFI_BUFFER_TOO_SMALL) {\r
221 //\r
222 // Allocate buffer and read the config variable.\r
223 //\r
224 Variable = AllocatePool (VarSize);\r
225 if (Variable == NULL) {\r
226 return EFI_OUT_OF_RESOURCES;\r
227 }\r
228\r
229 Status = gRT->GetVariable (\r
230 VarName,\r
231 &gEfiIp4Config2ProtocolGuid,\r
232 NULL,\r
233 &VarSize,\r
234 Variable\r
235 );\r
236 if (EFI_ERROR (Status) || (UINT16) (~NetblockChecksum ((UINT8 *) Variable, (UINT32) VarSize)) != 0) {\r
237 //\r
238 // GetVariable still error or the variable is corrupted.\r
239 // Fall back to the default value.\r
240 //\r
241 FreePool (Variable);\r
242\r
243 //\r
244 // Remove the problematic variable and return EFI_NOT_FOUND, a new\r
245 // variable will be set again.\r
246 //\r
247 gRT->SetVariable (\r
248 VarName,\r
249 &gEfiIp4Config2ProtocolGuid,\r
250 IP4_CONFIG2_VARIABLE_ATTRIBUTE,\r
251 0,\r
252 NULL\r
253 );\r
254\r
255 return EFI_NOT_FOUND;\r
256 }\r
257\r
258 \r
259 for (Index = 0; Index < Variable->DataRecordCount; Index++) {\r
260\r
261 CopyMem (&DataRecord, &Variable->DataRecord[Index], sizeof (DataRecord));\r
262\r
263 DataItem = &Instance->DataItem[DataRecord.DataType];\r
264 if (DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED) &&\r
265 (DataItem->DataSize != DataRecord.DataSize)\r
266 ) {\r
267 //\r
268 // Perhaps a corrupted data record...\r
269 //\r
270 continue;\r
271 }\r
272\r
273 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED)) {\r
274 //\r
275 // This data item has variable length data.\r
276 //\r
277 DataItem->Data.Ptr = AllocatePool (DataRecord.DataSize);\r
278 if (DataItem->Data.Ptr == NULL) {\r
279 //\r
280 // no memory resource\r
281 //\r
282 continue;\r
283 }\r
284 }\r
285\r
286 Data = (CHAR8 *) Variable + DataRecord.Offset;\r
287 CopyMem (DataItem->Data.Ptr, Data, DataRecord.DataSize);\r
288\r
289 DataItem->DataSize = DataRecord.DataSize;\r
290 DataItem->Status = EFI_SUCCESS;\r
291 }\r
292\r
293 FreePool (Variable);\r
294 return EFI_SUCCESS;\r
295 }\r
296\r
297 return Status;\r
298}\r
299\r
300/**\r
301 Write the configuration data from IP4_CONFIG2_INSTANCE to variable storage.\r
302\r
303 @param[in] VarName The pointer to the variable name.\r
304 @param[in] Instance The pointer to the IP4 config2 instance data.\r
305\r
306 @retval EFI_OUT_OF_RESOURCES Fail to allocate resource to complete the operation.\r
307 @retval EFI_SUCCESS The configuration data is written successfully.\r
308\r
309**/\r
310EFI_STATUS\r
311Ip4Config2WriteConfigData (\r
312 IN CHAR16 *VarName,\r
313 IN IP4_CONFIG2_INSTANCE *Instance\r
314 )\r
315{\r
316 UINTN Index;\r
317 UINTN VarSize;\r
318 IP4_CONFIG2_DATA_ITEM *DataItem;\r
319 IP4_CONFIG2_VARIABLE *Variable;\r
320 IP4_CONFIG2_DATA_RECORD *DataRecord;\r
321 CHAR8 *Heap;\r
322 EFI_STATUS Status;\r
323\r
324 VarSize = sizeof (IP4_CONFIG2_VARIABLE) - sizeof (IP4_CONFIG2_DATA_RECORD);\r
325\r
326 for (Index = 0; Index < Ip4Config2DataTypeMaximum; Index++) {\r
327\r
328 DataItem = &Instance->DataItem[Index];\r
329 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_VOLATILE) && !EFI_ERROR (DataItem->Status)) {\r
330\r
331 VarSize += sizeof (IP4_CONFIG2_DATA_RECORD) + DataItem->DataSize;\r
332 }\r
333 }\r
334\r
335 Variable = AllocatePool (VarSize);\r
336 if (Variable == NULL) {\r
337 return EFI_OUT_OF_RESOURCES;\r
338 }\r
339\r
340 Heap = (CHAR8 *) Variable + VarSize;\r
341 Variable->DataRecordCount = 0;\r
342\r
343 for (Index = 0; Index < Ip4Config2DataTypeMaximum; Index++) {\r
344\r
345 DataItem = &Instance->DataItem[Index];\r
346 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_VOLATILE) && !EFI_ERROR (DataItem->Status)) {\r
347\r
348 Heap -= DataItem->DataSize;\r
349 CopyMem (Heap, DataItem->Data.Ptr, DataItem->DataSize);\r
350\r
351 DataRecord = &Variable->DataRecord[Variable->DataRecordCount];\r
352 DataRecord->DataType = (EFI_IP4_CONFIG2_DATA_TYPE) Index;\r
353 DataRecord->DataSize = (UINT32) DataItem->DataSize;\r
354 DataRecord->Offset = (UINT16) (Heap - (CHAR8 *) Variable);\r
355\r
356 Variable->DataRecordCount++;\r
357 }\r
358 }\r
359\r
360 Variable->Checksum = 0;\r
361 Variable->Checksum = (UINT16) ~NetblockChecksum ((UINT8 *) Variable, (UINT32) VarSize);\r
362\r
363 Status = gRT->SetVariable (\r
364 VarName,\r
365 &gEfiIp4Config2ProtocolGuid,\r
366 IP4_CONFIG2_VARIABLE_ATTRIBUTE,\r
367 VarSize,\r
368 Variable\r
369 );\r
370\r
371 FreePool (Variable);\r
372\r
373 return Status;\r
374}\r
375\r
376\r
377/**\r
378 Build a EFI_IP4_ROUTE_TABLE to be returned to the caller of GetModeData. \r
379 The EFI_IP4_ROUTE_TABLE is clumsy to use in the internal operation of the \r
380 IP4 driver.\r
381\r
382 @param[in] IpSb The IP4 service binding instance.\r
383 @param[out] Table The built IP4 route table.\r
384\r
385 @retval EFI_SUCCESS The route table is successfully build\r
386 @retval EFI_NOT_FOUND Failed to allocate the memory for the rotue table.\r
387\r
388**/\r
389EFI_STATUS\r
390Ip4Config2BuildDefaultRouteTable (\r
391 IN IP4_SERVICE *IpSb,\r
392 OUT EFI_IP4_ROUTE_TABLE *Table\r
393 )\r
394{\r
395 LIST_ENTRY *Entry; \r
396 IP4_ROUTE_ENTRY *RtEntry;\r
397 UINT32 Count;\r
398 INT32 Index;\r
399\r
400 if (IpSb->DefaultRouteTable == NULL) {\r
401 return EFI_NOT_FOUND;\r
402 }\r
403\r
404 Count = IpSb->DefaultRouteTable->TotalNum;\r
405\r
406 if (Count == 0) {\r
407 return EFI_NOT_FOUND;\r
408 }\r
409\r
410 //\r
411 // Copy the route entry to EFI route table. Keep the order of\r
412 // route entry copied from most specific to default route. That\r
413 // is, interlevel the route entry from the instance's route area\r
414 // and those from the default route table's route area.\r
415 //\r
416 Count = 0;\r
417\r
364f4efa 418 for (Index = IP4_MASK_MAX; Index >= 0; Index--) {\r
1f6729ff 419\r
420 NET_LIST_FOR_EACH (Entry, &(IpSb->DefaultRouteTable->RouteArea[Index])) {\r
421 RtEntry = NET_LIST_USER_STRUCT (Entry, IP4_ROUTE_ENTRY, Link);\r
422\r
423 EFI_IP4 (Table[Count].SubnetAddress) = HTONL (RtEntry->Dest & RtEntry->Netmask);\r
424 EFI_IP4 (Table[Count].SubnetMask) = HTONL (RtEntry->Netmask);\r
425 EFI_IP4 (Table[Count].GatewayAddress) = HTONL (RtEntry->NextHop);\r
426\r
427 Count++;\r
428 }\r
429\r
430 }\r
431\r
432 return EFI_SUCCESS;\r
433}\r
434\r
435/**\r
436 The event process routine when the DHCPv4 service binding protocol is installed\r
437 in the system.\r
438\r
439 @param[in] Event Not used.\r
440 @param[in] Context The pointer to the IP4 config2 instance data.\r
441\r
442**/\r
443VOID\r
444EFIAPI\r
445Ip4Config2OnDhcp4SbInstalled (\r
446 IN EFI_EVENT Event,\r
447 IN VOID *Context\r
448 )\r
449{\r
450 IP4_CONFIG2_INSTANCE *Instance;\r
451\r
452 Instance = (IP4_CONFIG2_INSTANCE *) Context;\r
453\r
454 if ((Instance->Dhcp4Handle != NULL) || (Instance->Policy != Ip4Config2PolicyDhcp)) {\r
455 //\r
456 // The DHCP4 child is already created or the policy is no longer DHCP.\r
457 //\r
458 return ;\r
459 }\r
460\r
461 Ip4StartAutoConfig (Instance);\r
462}\r
463\r
464/**\r
465 Set the station address and subnetmask for the default interface.\r
466\r
e371cc14 467 @param[in] IpSb The pointer to the IP4 service binding instance.\r
1f6729ff 468 @param[in] StationAddress Ip address to be set.\r
469 @param[in] SubnetMask Subnet to be set.\r
470\r
471 @retval EFI_SUCCESS Set default address successful. \r
472 @retval Others Some errors occur in setting. \r
473\r
474**/\r
475EFI_STATUS\r
476Ip4Config2SetDefaultAddr (\r
e371cc14 477 IN IP4_SERVICE *IpSb,\r
1f6729ff 478 IN IP4_ADDR StationAddress,\r
479 IN IP4_ADDR SubnetMask\r
480 )\r
481{\r
482 EFI_STATUS Status;\r
1f6729ff 483 IP4_INTERFACE *IpIf;\r
484 IP4_PROTOCOL *Ip4Instance;\r
485 EFI_ARP_PROTOCOL *Arp;\r
486 LIST_ENTRY *Entry;\r
487 IP4_ADDR Subnet;\r
488 IP4_ROUTE_TABLE *RouteTable;\r
489\r
1f6729ff 490 IpIf = IpSb->DefaultInterface;\r
491 ASSERT (IpIf != NULL);\r
492\r
493 if ((IpIf->Ip == StationAddress) && (IpIf->SubnetMask == SubnetMask)) {\r
2c320007 494 IpSb->State = IP4_SERVICE_CONFIGED;\r
1f6729ff 495 return EFI_SUCCESS;\r
496 }\r
497\r
e371cc14
JW
498 if (IpSb->Reconfig) {\r
499 //\r
500 // The default address is changed, free the previous interface first.\r
501 //\r
502 if (IpSb->DefaultRouteTable != NULL) {\r
503 Ip4FreeRouteTable (IpSb->DefaultRouteTable);\r
504 IpSb->DefaultRouteTable = NULL; \r
505 }\r
1f6729ff 506\r
e371cc14
JW
507 Ip4CancelReceive (IpSb->DefaultInterface);\r
508 Ip4FreeInterface (IpSb->DefaultInterface, NULL);\r
509 IpSb->DefaultInterface = NULL;\r
510 //\r
511 // Create new default interface and route table.\r
512 // \r
513 IpIf = Ip4CreateInterface (IpSb->Mnp, IpSb->Controller, IpSb->Image);\r
514 if (IpIf == NULL) {\r
515 return EFI_OUT_OF_RESOURCES;\r
516 }\r
1f6729ff 517\r
e371cc14
JW
518 RouteTable = Ip4CreateRouteTable ();\r
519 if (RouteTable == NULL) {\r
520 Ip4FreeInterface (IpIf, NULL);\r
521 return EFI_OUT_OF_RESOURCES;\r
522 }\r
523 \r
524 IpSb->DefaultInterface = IpIf;\r
525 InsertHeadList (&IpSb->Interfaces, &IpIf->Link);\r
526 IpSb->DefaultRouteTable = RouteTable;\r
527 Ip4ReceiveFrame (IpIf, NULL, Ip4AccpetFrame, IpSb);\r
1f6729ff 528 }\r
1f6729ff 529\r
530 if (IpSb->State == IP4_SERVICE_CONFIGED) {\r
531 IpSb->State = IP4_SERVICE_UNSTARTED;\r
532 }\r
533\r
534 Status = Ip4SetAddress (IpIf, StationAddress, SubnetMask);\r
535 if (EFI_ERROR (Status)) {\r
536 return Status;\r
537 }\r
538\r
539 if (IpIf->Arp != NULL) {\r
540 // \r
541 // A non-NULL IpIf->Arp here means a new ARP child is created when setting default address, \r
542 // but some IP children may have referenced the default interface before it is configured,\r
543 // these IP instances also consume this ARP protocol so they need to open it BY_CHILD_CONTROLLER.\r
544 //\r
545 Arp = NULL;\r
546 NET_LIST_FOR_EACH (Entry, &IpIf->IpInstances) {\r
547 Ip4Instance = NET_LIST_USER_STRUCT_S (Entry, IP4_PROTOCOL, AddrLink, IP4_PROTOCOL_SIGNATURE);\r
548 Status = gBS->OpenProtocol (\r
549 IpIf->ArpHandle,\r
550 &gEfiArpProtocolGuid,\r
551 (VOID **) &Arp,\r
552 gIp4DriverBinding.DriverBindingHandle,\r
553 Ip4Instance->Handle,\r
554 EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER\r
555 );\r
556 if (EFI_ERROR (Status)) {\r
557 return Status;\r
558 }\r
559 }\r
560 }\r
561\r
562 Ip4AddRoute (\r
563 IpSb->DefaultRouteTable,\r
564 StationAddress,\r
565 SubnetMask,\r
566 IP4_ALLZERO_ADDRESS\r
567 );\r
568\r
569 //\r
570 // Add a route for the connected network.\r
571 //\r
572 Subnet = StationAddress & SubnetMask;\r
573\r
574 Ip4AddRoute (\r
575 IpSb->DefaultRouteTable,\r
576 Subnet,\r
577 SubnetMask,\r
578 IP4_ALLZERO_ADDRESS\r
579 );\r
580\r
581 IpSb->State = IP4_SERVICE_CONFIGED;\r
e371cc14
JW
582 IpSb->Reconfig = FALSE;\r
583 \r
1f6729ff 584 return EFI_SUCCESS;\r
585}\r
586\r
587/**\r
588 Set the station address, subnetmask and gateway address for the default interface.\r
589\r
590 @param[in] Instance The pointer to the IP4 config2 instance data. \r
591 @param[in] StationAddress Ip address to be set.\r
592 @param[in] SubnetMask Subnet to be set.\r
593 @param[in] GatewayAddress Gateway to be set.\r
594\r
595 @retval EFI_SUCCESS Set default If successful. \r
596 @retval Others Errors occur as indicated. \r
597\r
598**/\r
599EFI_STATUS\r
600Ip4Config2SetDefaultIf (\r
601 IN IP4_CONFIG2_INSTANCE *Instance,\r
602 IN IP4_ADDR StationAddress,\r
603 IN IP4_ADDR SubnetMask,\r
604 IN IP4_ADDR GatewayAddress\r
605 )\r
606{\r
607 EFI_STATUS Status;\r
608 IP4_SERVICE *IpSb;\r
609\r
e371cc14
JW
610 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
611\r
612 Status = Ip4Config2SetDefaultAddr (IpSb, StationAddress, SubnetMask);\r
1f6729ff 613 if (EFI_ERROR (Status)) {\r
614 return Status;\r
615 }\r
616\r
617 //\r
618 // Create a route if there is a default router.\r
619 //\r
1f6729ff 620 if (GatewayAddress != IP4_ALLZERO_ADDRESS) {\r
621 Ip4AddRoute (\r
622 IpSb->DefaultRouteTable,\r
623 IP4_ALLZERO_ADDRESS,\r
624 IP4_ALLZERO_ADDRESS,\r
625 GatewayAddress\r
626 ); \r
627 }\r
628\r
629 return EFI_SUCCESS;\r
630}\r
631\r
632\r
633/**\r
634 Release all the DHCP related resources.\r
635\r
636 @param Instance The IP4 config2 instance.\r
637\r
638 @return None\r
639\r
640**/\r
641VOID\r
642Ip4Config2CleanDhcp4 (\r
643 IN IP4_CONFIG2_INSTANCE *Instance\r
644 )\r
645{\r
646 IP4_SERVICE *IpSb;\r
647\r
648 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
649\r
650 if (Instance->Dhcp4 != NULL) {\r
651 Instance->Dhcp4->Stop (Instance->Dhcp4);\r
652\r
653 gBS->CloseProtocol (\r
654 Instance->Dhcp4Handle,\r
655 &gEfiDhcp4ProtocolGuid,\r
656 IpSb->Image,\r
657 IpSb->Controller\r
658 );\r
659\r
660 Instance->Dhcp4 = NULL;\r
661 }\r
662\r
663 if (Instance->Dhcp4Handle != NULL) {\r
664 NetLibDestroyServiceChild (\r
665 IpSb->Controller,\r
666 IpSb->Image,\r
667 &gEfiDhcp4ServiceBindingProtocolGuid,\r
668 Instance->Dhcp4Handle\r
669 );\r
670\r
671 Instance->Dhcp4Handle = NULL;\r
672 }\r
673\r
674 if (Instance->Dhcp4Event != NULL) {\r
675 gBS->CloseEvent (Instance->Dhcp4Event);\r
676 Instance->Dhcp4Event = NULL;\r
677 }\r
678}\r
679\r
9feefde0
SEHM
680/**\r
681 This worker function sets the DNS server list for the EFI IPv4 network\r
682 stack running on the communication device that this EFI_IP4_CONFIG2_PROTOCOL\r
683 manages. The DNS server addresses must be unicast IPv4 addresses. \r
684\r
685 @param[in] Instance The pointer to the IP4 config2 instance data.\r
686 @param[in] DataSize The size of the buffer pointed to by Data in bytes.\r
687 @param[in] Data The data buffer to set, points to an array of\r
688 EFI_IPv4_ADDRESS instances.\r
689\r
690 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
691 @retval EFI_INVALID_PARAMETER One or more fields in Data is invalid.\r
692 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources to complete the operation.\r
693 @retval EFI_ABORTED The DNS server addresses to be set equal the current\r
694 configuration.\r
695 @retval EFI_SUCCESS The specified configuration data for the EFI IPv4\r
696 network stack was set.\r
697\r
698**/\r
699EFI_STATUS\r
700Ip4Config2SetDnsServerWorker (\r
701 IN IP4_CONFIG2_INSTANCE *Instance,\r
702 IN UINTN DataSize,\r
703 IN VOID *Data\r
704 )\r
705{\r
706 UINTN OldIndex;\r
707 UINTN NewIndex;\r
708 UINTN Index1;\r
709 EFI_IPv4_ADDRESS *OldDns;\r
710 EFI_IPv4_ADDRESS *NewDns;\r
711 UINTN OldDnsCount;\r
712 UINTN NewDnsCount;\r
713 IP4_CONFIG2_DATA_ITEM *Item;\r
714 BOOLEAN OneAdded;\r
715 VOID *Tmp;\r
716 IP4_ADDR DnsAddress;\r
717\r
718 if ((DataSize % sizeof (EFI_IPv4_ADDRESS) != 0) || (DataSize == 0)) {\r
719 return EFI_BAD_BUFFER_SIZE;\r
720 }\r
721\r
722 Item = &Instance->DataItem[Ip4Config2DataTypeDnsServer];\r
723 NewDns = (EFI_IPv4_ADDRESS *) Data;\r
724 OldDns = Item->Data.DnsServers;\r
725 NewDnsCount = DataSize / sizeof (EFI_IPv4_ADDRESS); \r
726 OldDnsCount = Item->DataSize / sizeof (EFI_IPv4_ADDRESS);\r
727 OneAdded = FALSE;\r
728\r
729 if (NewDnsCount != OldDnsCount) {\r
730 Tmp = AllocatePool (DataSize);\r
731 if (Tmp == NULL) {\r
732 return EFI_OUT_OF_RESOURCES;\r
733 }\r
734 } else {\r
735 Tmp = NULL;\r
736 }\r
737\r
738 for (NewIndex = 0; NewIndex < NewDnsCount; NewIndex++) {\r
739 CopyMem (&DnsAddress, NewDns + NewIndex, sizeof (IP4_ADDR));\r
01b5ac88 740 if (IP4_IS_UNSPECIFIED (NTOHL (DnsAddress)) || IP4_IS_LOCAL_BROADCAST (NTOHL (DnsAddress))) {\r
9feefde0
SEHM
741 //\r
742 // The dns server address must be unicast.\r
743 //\r
744 FreePool (Tmp);\r
745 return EFI_INVALID_PARAMETER;\r
746 }\r
747\r
748 for (Index1 = NewIndex + 1; Index1 < NewDnsCount; Index1++) {\r
749 if (EFI_IP4_EQUAL (NewDns + NewIndex, NewDns + Index1)) {\r
750 FreePool (Tmp);\r
751 return EFI_INVALID_PARAMETER;\r
752 }\r
753 }\r
754\r
755 if (OneAdded) {\r
756 //\r
757 // If any address in the new setting is not in the old settings, skip the\r
758 // comparision below.\r
759 //\r
760 continue;\r
761 }\r
762\r
763 for (OldIndex = 0; OldIndex < OldDnsCount; OldIndex++) {\r
764 if (EFI_IP4_EQUAL (NewDns + NewIndex, OldDns + OldIndex)) {\r
765 //\r
766 // If found break out.\r
767 //\r
768 break;\r
769 }\r
770 }\r
771\r
772 if (OldIndex == OldDnsCount) {\r
773 OneAdded = TRUE;\r
774 }\r
775 }\r
776\r
777 if (!OneAdded && (DataSize == Item->DataSize)) {\r
778 //\r
779 // No new item is added and the size is the same.\r
780 //\r
781 Item->Status = EFI_SUCCESS;\r
782 return EFI_ABORTED;\r
783 } else {\r
784 if (Tmp != NULL) {\r
785 if (Item->Data.Ptr != NULL) {\r
786 FreePool (Item->Data.Ptr);\r
787 } \r
788 Item->Data.Ptr = Tmp;\r
789 }\r
790\r
791 CopyMem (Item->Data.Ptr, Data, DataSize);\r
792 Item->DataSize = DataSize;\r
793 Item->Status = EFI_SUCCESS;\r
794 return EFI_SUCCESS;\r
795 }\r
796}\r
797\r
798\r
1f6729ff 799\r
800/**\r
801 Callback function when DHCP process finished. It will save the\r
802 retrieved IP configure parameter from DHCP to the NVRam.\r
803\r
804 @param Event The callback event\r
805 @param Context Opaque context to the callback\r
806\r
807 @return None\r
808\r
809**/\r
810VOID\r
811EFIAPI\r
812Ip4Config2OnDhcp4Complete (\r
813 IN EFI_EVENT Event,\r
814 IN VOID *Context\r
815 )\r
816{\r
817 IP4_CONFIG2_INSTANCE *Instance;\r
818 EFI_DHCP4_MODE_DATA Dhcp4Mode;\r
819 EFI_STATUS Status;\r
820 IP4_ADDR StationAddress;\r
821 IP4_ADDR SubnetMask;\r
822 IP4_ADDR GatewayAddress;\r
9feefde0
SEHM
823 UINT32 Index;\r
824 UINT32 OptionCount;\r
825 EFI_DHCP4_PACKET_OPTION **OptionList;\r
1f6729ff 826\r
827 Instance = (IP4_CONFIG2_INSTANCE *) Context;\r
828 ASSERT (Instance->Dhcp4 != NULL);\r
829\r
830 //\r
831 // Get the DHCP retrieved parameters\r
832 //\r
833 Status = Instance->Dhcp4->GetModeData (Instance->Dhcp4, &Dhcp4Mode);\r
834\r
835 if (EFI_ERROR (Status)) {\r
836 goto Exit;\r
837 }\r
838\r
839 if (Dhcp4Mode.State == Dhcp4Bound) {\r
840 StationAddress = EFI_NTOHL (Dhcp4Mode.ClientAddress);\r
841 SubnetMask = EFI_NTOHL (Dhcp4Mode.SubnetMask);\r
842 GatewayAddress = EFI_NTOHL (Dhcp4Mode.RouterAddress);\r
843\r
844 Status = Ip4Config2SetDefaultIf (Instance, StationAddress, SubnetMask, GatewayAddress);\r
845 if (EFI_ERROR (Status)) {\r
846 goto Exit;\r
847 }\r
848 \r
9feefde0
SEHM
849 //\r
850 // Parse the ACK to get required DNS server information.\r
851 //\r
852 OptionCount = 0;\r
853 OptionList = NULL;\r
854\r
855 Status = Instance->Dhcp4->Parse (Instance->Dhcp4, Dhcp4Mode.ReplyPacket, &OptionCount, OptionList);\r
856 if (Status != EFI_BUFFER_TOO_SMALL) {\r
857 goto Exit;\r
858 }\r
859\r
860 OptionList = AllocateZeroPool (OptionCount * sizeof (EFI_DHCP4_PACKET_OPTION *));\r
861 if (OptionList == NULL) {\r
862 goto Exit;\r
863 }\r
864\r
865 Status = Instance->Dhcp4->Parse (Instance->Dhcp4, Dhcp4Mode.ReplyPacket, &OptionCount, OptionList);\r
866 if (EFI_ERROR (Status)) {\r
867 FreePool (OptionList);\r
868 goto Exit;\r
869 }\r
870\r
871 for (Index = 0; Index < OptionCount; Index++) {\r
872 //\r
873 // Look for DNS Server opcode (6).\r
874 //\r
ac6c3d90 875 if (OptionList[Index]->OpCode == DHCP4_TAG_DNS_SERVER) {\r
9feefde0
SEHM
876 if (((OptionList[Index]->Length & 0x3) != 0) || (OptionList[Index]->Length == 0)) {\r
877 break;\r
878 }\r
879\r
880 Ip4Config2SetDnsServerWorker (Instance, OptionList[Index]->Length, &OptionList[Index]->Data[0]);\r
881 break;\r
882 }\r
883 }\r
884\r
885 FreePool (OptionList);\r
886\r
1f6729ff 887 Instance->DhcpSuccess = TRUE;\r
888 }\r
889\r
890Exit:\r
891 Ip4Config2CleanDhcp4 (Instance);\r
892 DispatchDpc ();\r
893}\r
894\r
895\r
896/**\r
897 Start the DHCP configuration for this IP service instance.\r
898 It will locates the EFI_IP4_CONFIG2_PROTOCOL, then start the\r
899 DHCP configuration.\r
900\r
901 @param[in] Instance The IP4 config2 instance to configure\r
902\r
0a18956d 903 @retval EFI_SUCCESS The auto configuration is successfully started\r
1f6729ff 904 @retval Others Failed to start auto configuration.\r
905\r
906**/\r
907EFI_STATUS\r
908Ip4StartAutoConfig (\r
909 IN IP4_CONFIG2_INSTANCE *Instance\r
910 )\r
911{\r
912 IP4_SERVICE *IpSb;\r
913 EFI_DHCP4_PROTOCOL *Dhcp4;\r
914 EFI_DHCP4_MODE_DATA Dhcp4Mode;\r
915 EFI_DHCP4_PACKET_OPTION *OptionList[1];\r
916 IP4_CONFIG2_DHCP4_OPTION ParaList;\r
917 EFI_STATUS Status;\r
918 \r
919\r
920 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
921\r
922 if (IpSb->State > IP4_SERVICE_UNSTARTED) {\r
923 return EFI_SUCCESS;\r
924 }\r
925\r
926 //\r
927 // A host must not invoke DHCP configuration if it is already\r
928 // participating in the DHCP configuraiton process.\r
929 //\r
930 if (Instance->Dhcp4Handle != NULL) {\r
931 return EFI_SUCCESS;\r
932 }\r
933\r
934 Status = NetLibCreateServiceChild (\r
935 IpSb->Controller,\r
936 IpSb->Image,\r
937 &gEfiDhcp4ServiceBindingProtocolGuid,\r
938 &Instance->Dhcp4Handle\r
939 );\r
940\r
941 if (Status == EFI_UNSUPPORTED) {\r
942 //\r
943 // No DHCPv4 Service Binding protocol, register a notify.\r
944 //\r
945 if (Instance->Dhcp4SbNotifyEvent == NULL) {\r
946 Instance->Dhcp4SbNotifyEvent = EfiCreateProtocolNotifyEvent (\r
947 &gEfiDhcp4ServiceBindingProtocolGuid,\r
948 TPL_CALLBACK,\r
949 Ip4Config2OnDhcp4SbInstalled,\r
950 (VOID *) Instance,\r
951 &Instance->Registration\r
952 );\r
953 }\r
954 }\r
955\r
956 if (EFI_ERROR (Status)) {\r
957 return Status;\r
958 }\r
959\r
960 if (Instance->Dhcp4SbNotifyEvent != NULL) {\r
961 gBS->CloseEvent (Instance->Dhcp4SbNotifyEvent);\r
962 }\r
963\r
964 Status = gBS->OpenProtocol (\r
965 Instance->Dhcp4Handle,\r
966 &gEfiDhcp4ProtocolGuid,\r
967 (VOID **) &Instance->Dhcp4,\r
968 IpSb->Image,\r
969 IpSb->Controller,\r
970 EFI_OPEN_PROTOCOL_BY_DRIVER\r
971 );\r
972 ASSERT_EFI_ERROR (Status);\r
973\r
974\r
975 //\r
976 // Check the current DHCP status, if the DHCP process has\r
977 // already finished, return now.\r
978 //\r
979 Dhcp4 = Instance->Dhcp4;\r
980 Status = Dhcp4->GetModeData (Dhcp4, &Dhcp4Mode);\r
981\r
982 if (Dhcp4Mode.State == Dhcp4Bound) {\r
983 Ip4Config2OnDhcp4Complete (NULL, Instance);\r
984 return EFI_SUCCESS;\r
985\r
986 }\r
987\r
988 //\r
989 // Try to start the DHCP process. Use most of the current\r
990 // DHCP configuration to avoid problems if some DHCP client\r
991 // yields the control of this DHCP service to us.\r
992 //\r
ac6c3d90 993 ParaList.Head.OpCode = DHCP4_TAG_PARA_LIST;\r
9feefde0 994 ParaList.Head.Length = 3;\r
ac6c3d90
ZL
995 ParaList.Head.Data[0] = DHCP4_TAG_NETMASK;\r
996 ParaList.Route = DHCP4_TAG_ROUTER;\r
997 ParaList.Dns = DHCP4_TAG_DNS_SERVER;\r
1f6729ff 998 OptionList[0] = &ParaList.Head;\r
999 Dhcp4Mode.ConfigData.OptionCount = 1;\r
1000 Dhcp4Mode.ConfigData.OptionList = OptionList;\r
1001\r
1002 Status = Dhcp4->Configure (Dhcp4, &Dhcp4Mode.ConfigData);\r
1003\r
1004 if (EFI_ERROR (Status)) {\r
1005 return Status;\r
1006 }\r
1007 \r
1008 //\r
1009 // Start the DHCP process\r
1010 //\r
1011 Status = gBS->CreateEvent (\r
1012 EVT_NOTIFY_SIGNAL,\r
1013 TPL_CALLBACK,\r
1014 Ip4Config2OnDhcp4Complete,\r
1015 Instance,\r
1016 &Instance->Dhcp4Event\r
1017 );\r
1018\r
1019 if (EFI_ERROR (Status)) {\r
1020 return Status;\r
1021 }\r
1022\r
1023 Status = Dhcp4->Start (Dhcp4, Instance->Dhcp4Event);\r
1024\r
1025 if (EFI_ERROR (Status)) {\r
1026 return Status;\r
1027 }\r
1028 \r
1029 IpSb->State = IP4_SERVICE_STARTED;\r
1030 DispatchDpc ();\r
1031 return EFI_SUCCESS;\r
1032\r
1033}\r
1034\r
1035\r
1036\r
1037/**\r
1038 The work function is to get the interface information of the communication \r
1039 device this IP4_CONFIG2_INSTANCE manages.\r
1040\r
1041 @param[in] Instance Pointer to the IP4 config2 instance data.\r
1042 @param[in, out] DataSize On input, in bytes, the size of Data. On output, in\r
1043 bytes, the size of buffer required to store the specified\r
1044 configuration data.\r
1045 @param[in] Data The data buffer in which the configuration data is returned.\r
1046 Ignored if DataSize is ZERO.\r
1047\r
1048 @retval EFI_BUFFER_TOO_SMALL The size of Data is too small for the specified\r
1049 configuration data, and the required size is\r
1050 returned in DataSize.\r
1051 @retval EFI_SUCCESS The specified configuration data was obtained.\r
1052\r
1053**/\r
1054EFI_STATUS\r
1055Ip4Config2GetIfInfo (\r
1056 IN IP4_CONFIG2_INSTANCE *Instance,\r
1057 IN OUT UINTN *DataSize,\r
1058 IN VOID *Data OPTIONAL\r
1059 )\r
1060{\r
1f6729ff 1061 IP4_SERVICE *IpSb;\r
1062 UINTN Length;\r
1063 IP4_CONFIG2_DATA_ITEM *Item;\r
1064 EFI_IP4_CONFIG2_INTERFACE_INFO *IfInfo;\r
1065 IP4_ADDR Address;\r
1066\r
1067 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
1068 Length = sizeof (EFI_IP4_CONFIG2_INTERFACE_INFO);\r
1069\r
1070 if (IpSb->DefaultRouteTable != NULL) {\r
1071 Length += IpSb->DefaultRouteTable->TotalNum * sizeof (EFI_IP4_ROUTE_TABLE);\r
1072 }\r
1073 \r
1074 if (*DataSize < Length) {\r
1075 *DataSize = Length;\r
1076 return EFI_BUFFER_TOO_SMALL;\r
1077 }\r
1078\r
1079 //\r
1080 // Copy the fixed size part of the interface info.\r
1081 //\r
1082 Item = &Instance->DataItem[Ip4Config2DataTypeInterfaceInfo];\r
1083 IfInfo = (EFI_IP4_CONFIG2_INTERFACE_INFO *) Data;\r
1084 CopyMem (IfInfo, Item->Data.Ptr, sizeof (EFI_IP4_CONFIG2_INTERFACE_INFO));\r
1085\r
1086 //\r
1087 // Update the address info.\r
1088 //\r
1089 if (IpSb->DefaultInterface != NULL) {\r
1090 Address = HTONL (IpSb->DefaultInterface->Ip);\r
1091 CopyMem (&IfInfo->StationAddress, &Address, sizeof (EFI_IPv4_ADDRESS));\r
1092 Address = HTONL (IpSb->DefaultInterface->SubnetMask);\r
1093 CopyMem (&IfInfo->SubnetMask, &Address, sizeof (EFI_IPv4_ADDRESS));\r
1094 }\r
1095\r
1096 if (IpSb->DefaultRouteTable != NULL) {\r
1097 IfInfo->RouteTableSize = IpSb->DefaultRouteTable->TotalNum;\r
1098 IfInfo->RouteTable = (EFI_IP4_ROUTE_TABLE *) ((UINT8 *) Data + sizeof (EFI_IP4_CONFIG2_INTERFACE_INFO));\r
1099\r
1100 Ip4Config2BuildDefaultRouteTable (IpSb, IfInfo->RouteTable); \r
1101 }\r
1102 \r
1103 return EFI_SUCCESS;\r
1104}\r
1105\r
1106/**\r
1107 The work function is to set the general configuration policy for the EFI IPv4 network \r
1108 stack that is running on the communication device managed by this IP4_CONFIG2_INSTANCE.\r
1109 The policy will affect other configuration settings.\r
1110\r
1111 @param[in] Instance Pointer to the IP4 config2 instance data.\r
1112 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
1113 @param[in] Data The data buffer to set.\r
1114\r
1115 @retval EFI_INVALID_PARAMETER The to be set policy is invalid.\r
1116 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
1117 @retval EFI_ABORTED The new policy equals the current policy.\r
1118 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
1119 network stack was set.\r
1120\r
1121**/\r
1122EFI_STATUS\r
1123Ip4Config2SetPolicy (\r
1124 IN IP4_CONFIG2_INSTANCE *Instance,\r
1125 IN UINTN DataSize,\r
1126 IN VOID *Data\r
1127 )\r
1128{\r
1129 EFI_IP4_CONFIG2_POLICY NewPolicy;\r
1130 IP4_CONFIG2_DATA_ITEM *DataItem;\r
1131 IP4_SERVICE *IpSb;\r
1132\r
1133 if (DataSize != sizeof (EFI_IP4_CONFIG2_POLICY)) {\r
1134 return EFI_BAD_BUFFER_SIZE;\r
1135 }\r
1136\r
1137 NewPolicy = *((EFI_IP4_CONFIG2_POLICY *) Data);\r
1138\r
1139 if (NewPolicy >= Ip4Config2PolicyMax) {\r
1140 return EFI_INVALID_PARAMETER;\r
1141 }\r
1142\r
1143 if (NewPolicy == Instance->Policy) {\r
7648748e
JW
1144 if (NewPolicy != Ip4Config2PolicyDhcp || Instance->DhcpSuccess) {\r
1145 return EFI_ABORTED;\r
1146 }\r
1f6729ff 1147 } else {\r
24b41b75
JW
1148 //\r
1149 // The policy is changed. Clean the ManualAddress, Gateway and DnsServers, \r
1150 // shrink the variable data size, and fire up all the related events.\r
1151 //\r
1152 DataItem = &Instance->DataItem[Ip4Config2DataTypeManualAddress];\r
1153 if (DataItem->Data.Ptr != NULL) {\r
1154 FreePool (DataItem->Data.Ptr);\r
1155 }\r
1156 DataItem->Data.Ptr = NULL;\r
1157 DataItem->DataSize = 0;\r
1158 DataItem->Status = EFI_NOT_FOUND;\r
1159 NetMapIterate (&DataItem->EventMap, Ip4Config2SignalEvent, NULL);\r
1160\r
1161 DataItem = &Instance->DataItem[Ip4Config2DataTypeGateway];\r
1162 if (DataItem->Data.Ptr != NULL) {\r
1163 FreePool (DataItem->Data.Ptr);\r
1164 }\r
1165 DataItem->Data.Ptr = NULL;\r
1166 DataItem->DataSize = 0;\r
1167 DataItem->Status = EFI_NOT_FOUND;\r
1168 NetMapIterate (&DataItem->EventMap, Ip4Config2SignalEvent, NULL);\r
1169\r
1170 DataItem = &Instance->DataItem[Ip4Config2DataTypeDnsServer];\r
1171 if (DataItem->Data.Ptr != NULL) {\r
1172 FreePool (DataItem->Data.Ptr);\r
1173 }\r
1174 DataItem->Data.Ptr = NULL;\r
1175 DataItem->DataSize = 0;\r
1176 DataItem->Status = EFI_NOT_FOUND;\r
1177 NetMapIterate (&DataItem->EventMap, Ip4Config2SignalEvent, NULL);\r
1178 \r
1f6729ff 1179 if (NewPolicy == Ip4Config2PolicyDhcp) {\r
eab40164 1180 SET_DATA_ATTRIB (DataItem->Attribute, DATA_ATTRIB_VOLATILE);\r
1f6729ff 1181 } else {\r
1182 //\r
1183 // The policy is changed from dhcp to static. Stop the DHCPv4 process\r
1184 // and destroy the DHCPv4 child.\r
1185 //\r
1186 if (Instance->Dhcp4Handle != NULL) {\r
1187 Ip4Config2DestroyDhcp4 (Instance);\r
1188 }\r
1189 \r
1190 //\r
1191 // Close the event.\r
1192 //\r
1193 if (Instance->Dhcp4Event != NULL) {\r
1194 gBS->CloseEvent (Instance->Dhcp4Event);\r
4f0f2316 1195 Instance->Dhcp4Event = NULL;\r
1f6729ff 1196 }\r
1197 }\r
1198 }\r
1199\r
1200 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
1201 Ip4Config2OnPolicyChanged (IpSb, NewPolicy);\r
1202\r
1203 Instance->Policy = NewPolicy;\r
1204\r
1205 return EFI_SUCCESS;\r
1206}\r
1207\r
1208/**\r
1209 The work function is to set the station addresses manually for the EFI IPv4 \r
1210 network stack. It is only configurable when the policy is Ip4Config2PolicyStatic.\r
1211\r
1212 @param[in] Instance Pointer to the IP4 config2 instance data.\r
1213 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
1214 @param[in] Data The data buffer to set.\r
1215\r
1216 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
1217 @retval EFI_WRITE_PROTECTED The specified configuration data cannot be set\r
1218 under the current policy.\r
1219 @retval EFI_INVALID_PARAMETER One or more fields in Data is invalid.\r
1220 @retval EFI_OUT_OF_RESOURCES Fail to allocate resource to complete the operation.\r
1221 @retval EFI_NOT_READY An asynchrous process is invoked to set the specified\r
1222 configuration data, and the process is not finished.\r
1223 @retval EFI_ABORTED The manual addresses to be set equal current\r
1224 configuration.\r
1225 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
1226 network stack was set.\r
1227\r
1228**/\r
1229EFI_STATUS\r
1230Ip4Config2SetMaunualAddress (\r
1231 IN IP4_CONFIG2_INSTANCE *Instance,\r
1232 IN UINTN DataSize,\r
1233 IN VOID *Data\r
1234 )\r
1235{\r
1236 EFI_IP4_CONFIG2_MANUAL_ADDRESS NewAddress;\r
1237 IP4_CONFIG2_DATA_ITEM *DataItem;\r
1238 EFI_STATUS Status;\r
1239 IP4_ADDR StationAddress;\r
1240 IP4_ADDR SubnetMask;\r
1241 VOID *Ptr;\r
e371cc14
JW
1242 IP4_SERVICE *IpSb;\r
1243\r
1244 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
1f6729ff 1245\r
1246 ASSERT (Instance->DataItem[Ip4Config2DataTypeManualAddress].Status != EFI_NOT_READY);\r
1247\r
1248 if (((DataSize % sizeof (EFI_IP4_CONFIG2_MANUAL_ADDRESS)) != 0) || (DataSize == 0)) {\r
1249 return EFI_BAD_BUFFER_SIZE;\r
1250 }\r
1251\r
1252 if (Instance->Policy != Ip4Config2PolicyStatic) {\r
1253 return EFI_WRITE_PROTECTED;\r
1254 }\r
1255\r
1256 NewAddress = *((EFI_IP4_CONFIG2_MANUAL_ADDRESS *) Data);\r
1257\r
1258 //\r
1259 // Store the new data, and init the DataItem status to EFI_NOT_READY because\r
1260 // we may have an asynchronous configuration process.\r
1261 //\r
1262 Ptr = AllocateCopyPool (DataSize, Data);\r
1263 if (Ptr == NULL) {\r
1264 return EFI_OUT_OF_RESOURCES;\r
1265 }\r
1266\r
1267 DataItem = &Instance->DataItem[Ip4Config2DataTypeManualAddress];\r
1268 if (DataItem->Data.Ptr != NULL) {\r
1269 FreePool (DataItem->Data.Ptr);\r
1270 }\r
1271 \r
1272 DataItem->Data.Ptr = Ptr;\r
1273 DataItem->DataSize = DataSize;\r
1274 DataItem->Status = EFI_NOT_READY;\r
1275\r
1276 StationAddress = EFI_NTOHL (NewAddress.Address);\r
1277 SubnetMask = EFI_NTOHL (NewAddress.SubnetMask);\r
1278\r
e371cc14
JW
1279 IpSb->Reconfig = TRUE;\r
1280 Status = Ip4Config2SetDefaultAddr (IpSb, StationAddress, SubnetMask);\r
1f6729ff 1281 if (EFI_ERROR (Status)) {\r
1282 goto ON_EXIT;\r
1283 } \r
1284\r
1285 DataItem->Status = EFI_SUCCESS; \r
1286\r
1287ON_EXIT:\r
1288 if (EFI_ERROR (DataItem->Status)) {\r
1289 if (Ptr != NULL) {\r
1290 FreePool (Ptr);\r
1291 }\r
1292 DataItem->Data.Ptr = NULL; \r
1293 }\r
1294\r
1295 return EFI_SUCCESS;\r
1296}\r
1297\r
1298/**\r
1299 The work function is to set the gateway addresses manually for the EFI IPv4 \r
1300 network stack that is running on the communication device that this EFI IPv4 \r
1301 Configuration Protocol manages. It is not configurable when the policy is\r
1302 Ip4Config2PolicyDhcp. The gateway addresses must be unicast IPv4 addresses.\r
1303\r
1304 @param[in] Instance The pointer to the IP4 config2 instance data.\r
1305 @param[in] DataSize The size of the buffer pointed to by Data in bytes.\r
1306 @param[in] Data The data buffer to set. This points to an array of\r
1307 EFI_IPv6_ADDRESS instances.\r
1308\r
1309 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
1310 @retval EFI_WRITE_PROTECTED The specified configuration data cannot be set\r
1311 under the current policy.\r
1312 @retval EFI_INVALID_PARAMETER One or more fields in Data is invalid.\r
1313 @retval EFI_OUT_OF_RESOURCES Failed to allocate resource to complete the operation.\r
1314 @retval EFI_ABORTED The manual gateway addresses to be set equal the\r
1315 current configuration.\r
1316 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
1317 network stack was set.\r
1318\r
1319**/\r
1320EFI_STATUS\r
1321Ip4Config2SetGateway (\r
1322 IN IP4_CONFIG2_INSTANCE *Instance,\r
1323 IN UINTN DataSize,\r
1324 IN VOID *Data\r
1325 )\r
1326{\r
1327 IP4_SERVICE *IpSb;\r
1328 IP4_CONFIG2_DATA_ITEM *DataItem;\r
1329 IP4_ADDR Gateway;\r
1330\r
1331 UINTN Index1;\r
1332 UINTN Index2;\r
1333 EFI_IPv4_ADDRESS *OldGateway;\r
1334 EFI_IPv4_ADDRESS *NewGateway;\r
1335 UINTN OldGatewayCount;\r
1336 UINTN NewGatewayCount;\r
1337 BOOLEAN OneRemoved;\r
1338 BOOLEAN OneAdded;\r
1339 VOID *Tmp;\r
1340\r
1341 if ((DataSize % sizeof (EFI_IPv4_ADDRESS) != 0) || (DataSize == 0)) {\r
1342 return EFI_BAD_BUFFER_SIZE;\r
1343 }\r
1344\r
1345 if (Instance->Policy != Ip4Config2PolicyStatic) {\r
1346 return EFI_WRITE_PROTECTED;\r
1347 }\r
1348\r
01b5ac88 1349 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
1f6729ff 1350\r
1351 NewGateway = (EFI_IPv4_ADDRESS *) Data;\r
1352 NewGatewayCount = DataSize / sizeof (EFI_IPv4_ADDRESS);\r
1353 for (Index1 = 0; Index1 < NewGatewayCount; Index1++) {\r
1354 CopyMem (&Gateway, NewGateway + Index1, sizeof (IP4_ADDR));\r
1f6729ff 1355\r
01b5ac88
FS
1356 if ((IpSb->DefaultInterface->SubnetMask != 0) && \r
1357 !NetIp4IsUnicast (NTOHL (Gateway), IpSb->DefaultInterface->SubnetMask)) {\r
1f6729ff 1358 return EFI_INVALID_PARAMETER;\r
1359 }\r
1360\r
1361 for (Index2 = Index1 + 1; Index2 < NewGatewayCount; Index2++) {\r
1362 if (EFI_IP4_EQUAL (NewGateway + Index1, NewGateway + Index2)) {\r
1363 return EFI_INVALID_PARAMETER;\r
1364 }\r
1365 }\r
1366 }\r
1367 \r
1f6729ff 1368 DataItem = &Instance->DataItem[Ip4Config2DataTypeGateway];\r
1369 OldGateway = DataItem->Data.Gateway;\r
1370 OldGatewayCount = DataItem->DataSize / sizeof (EFI_IPv4_ADDRESS);\r
1371 OneRemoved = FALSE;\r
1372 OneAdded = FALSE;\r
1373\r
1374 if (NewGatewayCount != OldGatewayCount) {\r
1375 Tmp = AllocatePool (DataSize);\r
1376 if (Tmp == NULL) {\r
1377 return EFI_OUT_OF_RESOURCES;\r
1378 }\r
1379 } else {\r
1380 Tmp = NULL;\r
1381 }\r
1382\r
1383 for (Index1 = 0; Index1 < OldGatewayCount; Index1++) {\r
1384 //\r
1385 // Remove this route entry.\r
1386 //\r
1387 CopyMem (&Gateway, OldGateway + Index1, sizeof (IP4_ADDR));\r
1388 Ip4DelRoute (\r
1389 IpSb->DefaultRouteTable,\r
1390 IP4_ALLZERO_ADDRESS,\r
1391 IP4_ALLZERO_ADDRESS,\r
1392 NTOHL (Gateway)\r
1393 );\r
1394 OneRemoved = TRUE;\r
1395\r
1396 }\r
1397\r
1398 for (Index1 = 0; Index1 < NewGatewayCount; Index1++) {\r
1399 CopyMem (&Gateway, NewGateway + Index1, sizeof (IP4_ADDR));\r
1400 Ip4AddRoute (\r
1401 IpSb->DefaultRouteTable,\r
1402 IP4_ALLZERO_ADDRESS,\r
1403 IP4_ALLZERO_ADDRESS,\r
1404 NTOHL (Gateway)\r
1405 ); \r
1406\r
1407 OneAdded = TRUE;\r
1408 }\r
1409\r
1410\r
1411 if (!OneRemoved && !OneAdded) {\r
1412 DataItem->Status = EFI_SUCCESS;\r
1413 return EFI_ABORTED;\r
1414 } else {\r
1415\r
1416 if (Tmp != NULL) {\r
1417 if (DataItem->Data.Ptr != NULL) {\r
1418 FreePool (DataItem->Data.Ptr);\r
1419 }\r
1420 DataItem->Data.Ptr = Tmp;\r
1421 }\r
1422\r
1423 CopyMem (DataItem->Data.Ptr, Data, DataSize);\r
1424 DataItem->DataSize = DataSize;\r
1425 DataItem->Status = EFI_SUCCESS;\r
1426 return EFI_SUCCESS;\r
1427 }\r
1428\r
1429}\r
1430\r
1431/**\r
1432 The work function is to set the DNS server list for the EFI IPv4 network \r
1433 stack running on the communication device that this EFI_IP4_CONFIG2_PROTOCOL \r
1434 manages. It is not configurable when the policy is Ip4Config2PolicyDhcp. \r
1435 The DNS server addresses must be unicast IPv4 addresses.\r
1436\r
1437 @param[in] Instance The pointer to the IP4 config2 instance data.\r
1438 @param[in] DataSize The size of the buffer pointed to by Data in bytes.\r
1439 @param[in] Data The data buffer to set, points to an array of\r
1440 EFI_IPv4_ADDRESS instances.\r
1441\r
1442 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type.\r
1443 @retval EFI_WRITE_PROTECTED The specified configuration data cannot be set\r
1444 under the current policy.\r
1445 @retval EFI_INVALID_PARAMETER One or more fields in Data is invalid.\r
1446 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources to complete the operation.\r
1447 @retval EFI_ABORTED The DNS server addresses to be set equal the current\r
1448 configuration.\r
1449 @retval EFI_SUCCESS The specified configuration data for the EFI IPv4\r
1450 network stack was set.\r
1451\r
1452**/\r
1453EFI_STATUS\r
1454Ip4Config2SetDnsServer (\r
1455 IN IP4_CONFIG2_INSTANCE *Instance,\r
1456 IN UINTN DataSize,\r
1457 IN VOID *Data\r
1458 )\r
1459{\r
eab40164
JW
1460 IP4_CONFIG2_DATA_ITEM *Item;\r
1461\r
1462 Item = NULL;\r
1463\r
1f6729ff 1464 if (Instance->Policy != Ip4Config2PolicyStatic) {\r
1465 return EFI_WRITE_PROTECTED;\r
1466 }\r
1467\r
eab40164
JW
1468 Item = &Instance->DataItem[Ip4Config2DataTypeDnsServer];\r
1469\r
1470 if (DATA_ATTRIB_SET (Item->Attribute, DATA_ATTRIB_VOLATILE)) {\r
1471 REMOVE_DATA_ATTRIB (Item->Attribute, DATA_ATTRIB_VOLATILE);\r
1472 }\r
1473\r
9feefde0 1474 return Ip4Config2SetDnsServerWorker (Instance, DataSize, Data);\r
1f6729ff 1475}\r
1476\r
1477/**\r
1478 Generate the operational state of the interface this IP4 config2 instance manages\r
1479 and output in EFI_IP4_CONFIG2_INTERFACE_INFO.\r
1480\r
1481 @param[in] IpSb The pointer to the IP4 service binding instance.\r
1482 @param[out] IfInfo The pointer to the IP4 config2 interface information structure.\r
1483\r
1484**/\r
1485VOID\r
1486Ip4Config2InitIfInfo (\r
1487 IN IP4_SERVICE *IpSb,\r
1488 OUT EFI_IP4_CONFIG2_INTERFACE_INFO *IfInfo\r
1489 )\r
1490{\r
1491 IfInfo->Name[0] = L'e';\r
1492 IfInfo->Name[1] = L't';\r
1493 IfInfo->Name[2] = L'h';\r
1494 IfInfo->Name[3] = (CHAR16) (L'0' + IpSb->Ip4Config2Instance.IfIndex);\r
1495 IfInfo->Name[4] = 0;\r
1496\r
1497 IfInfo->IfType = IpSb->SnpMode.IfType;\r
1498 IfInfo->HwAddressSize = IpSb->SnpMode.HwAddressSize;\r
1499 CopyMem (&IfInfo->HwAddress, &IpSb->SnpMode.CurrentAddress, IfInfo->HwAddressSize);\r
1500}\r
1501\r
1502/**\r
1503 The event handle routine when DHCPv4 process is finished or is updated.\r
1504\r
1505 @param[in] Event Not used.\r
1506 @param[in] Context The pointer to the IP4 configuration instance data.\r
1507\r
1508**/\r
1509VOID\r
1510EFIAPI\r
1511Ip4Config2OnDhcp4Event (\r
1512 IN EFI_EVENT Event,\r
1513 IN VOID *Context\r
1514 )\r
1515{\r
1516 return ;\r
1517}\r
1518\r
1519\r
1520/**\r
1521 Set the configuration for the EFI IPv4 network stack running on the communication\r
1522 device this EFI_IP4_CONFIG2_PROTOCOL instance manages.\r
1523\r
1524 This function is used to set the configuration data of type DataType for the EFI\r
1525 IPv4 network stack that is running on the communication device that this EFI IPv4\r
1526 Configuration Protocol instance manages.\r
1527\r
1528 DataSize is used to calculate the count of structure instances in the Data for\r
1529 a DataType in which multiple structure instances are allowed.\r
1530\r
1531 This function is always non-blocking. When setting some type of configuration data,\r
1532 an asynchronous process is invoked to check the correctness of the data, such as\r
1533 performing Duplicate Address Detection on the manually set local IPv4 addresses.\r
1534 EFI_NOT_READY is returned immediately to indicate that such an asynchronous process\r
1535 is invoked, and the process is not finished yet. The caller wanting to get the result\r
1536 of the asynchronous process is required to call RegisterDataNotify() to register an\r
1537 event on the specified configuration data. Once the event is signaled, the caller\r
1538 can call GetData() to obtain the configuration data and know the result.\r
1539 For other types of configuration data that do not require an asynchronous configuration\r
1540 process, the result of the operation is immediately returned.\r
1541\r
1542 @param[in] This The pointer to the EFI_IP4_CONFIG2_PROTOCOL instance.\r
1543 @param[in] DataType The type of data to set.\r
1544 @param[in] DataSize Size of the buffer pointed to by Data in bytes.\r
1545 @param[in] Data The data buffer to set. The type of the data buffer is\r
1546 associated with the DataType.\r
1547\r
1548 @retval EFI_SUCCESS The specified configuration data for the EFI IPv6\r
1549 network stack was set successfully.\r
1550 @retval EFI_INVALID_PARAMETER One or more of the following are TRUE:\r
1551 - This is NULL.\r
1552 - Data is NULL.\r
1553 - One or more fields in Data do not match the requirement of the\r
1554 data type indicated by DataType.\r
1555 @retval EFI_WRITE_PROTECTED The specified configuration data is read-only or the specified\r
1556 configuration data cannot be set under the current policy.\r
1557 @retval EFI_ACCESS_DENIED Another set operation on the specified configuration\r
1558 data is already in process.\r
1559 @retval EFI_NOT_READY An asynchronous process was invoked to set the specified\r
1560 configuration data, and the process is not finished yet.\r
1561 @retval EFI_BAD_BUFFER_SIZE The DataSize does not match the size of the type\r
1562 indicated by DataType.\r
1563 @retval EFI_UNSUPPORTED This DataType is not supported.\r
1564 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
1565 @retval EFI_DEVICE_ERROR An unexpected system error or network error occurred.\r
1566\r
1567**/\r
1568EFI_STATUS\r
1569EFIAPI\r
1570EfiIp4Config2SetData (\r
1571 IN EFI_IP4_CONFIG2_PROTOCOL *This,\r
1572 IN EFI_IP4_CONFIG2_DATA_TYPE DataType,\r
1573 IN UINTN DataSize,\r
1574 IN VOID *Data\r
1575 )\r
1576{\r
1577 EFI_TPL OldTpl;\r
1578 EFI_STATUS Status;\r
1579 IP4_CONFIG2_INSTANCE *Instance;\r
1580 IP4_SERVICE *IpSb;\r
1581\r
1582 if ((This == NULL) || (Data == NULL)) {\r
1583 return EFI_INVALID_PARAMETER;\r
1584 }\r
1585\r
1586 if (DataType >= Ip4Config2DataTypeMaximum) {\r
1587 return EFI_UNSUPPORTED;\r
1588 }\r
1589\r
1590 Instance = IP4_CONFIG2_INSTANCE_FROM_PROTOCOL (This);\r
1591 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
1592 NET_CHECK_SIGNATURE (IpSb, IP4_SERVICE_SIGNATURE);\r
1593\r
1594\r
1595 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1596\r
1597 Status = Instance->DataItem[DataType].Status;\r
1598 if (Status != EFI_NOT_READY) {\r
1599\r
1600 if (Instance->DataItem[DataType].SetData == NULL) {\r
1601 //\r
1602 // This type of data is readonly.\r
1603 //\r
1604 Status = EFI_WRITE_PROTECTED;\r
1605 } else {\r
1606\r
1607 Status = Instance->DataItem[DataType].SetData (Instance, DataSize, Data);\r
1608 if (!EFI_ERROR (Status)) {\r
1609 //\r
1610 // Fire up the events registered with this type of data.\r
1611 //\r
1612 NetMapIterate (&Instance->DataItem[DataType].EventMap, Ip4Config2SignalEvent, NULL);\r
1613 Ip4Config2WriteConfigData (IpSb->MacString, Instance);\r
1614 } else if (Status == EFI_ABORTED) {\r
1615 //\r
1616 // The SetData is aborted because the data to set is the same with\r
1617 // the one maintained.\r
1618 //\r
1619 Status = EFI_SUCCESS;\r
1620 NetMapIterate (&Instance->DataItem[DataType].EventMap, Ip4Config2SignalEvent, NULL);\r
1621 }\r
1622 }\r
1623 } else {\r
1624 //\r
1625 // Another asynchornous process is on the way.\r
1626 //\r
1627 Status = EFI_ACCESS_DENIED;\r
1628 }\r
1629\r
1630 gBS->RestoreTPL (OldTpl);\r
1631\r
1632 return Status;\r
1633}\r
1634\r
1635/**\r
1636 Get the configuration data for the EFI IPv4 network stack running on the communication\r
1637 device that this EFI_IP4_CONFIG2_PROTOCOL instance manages.\r
1638\r
1639 This function returns the configuration data of type DataType for the EFI IPv4 network\r
1640 stack running on the communication device that this EFI IPv4 Configuration Protocol instance\r
1641 manages.\r
1642\r
1643 The caller is responsible for allocating the buffer used to return the specified\r
1644 configuration data. The required size will be returned to the caller if the size of\r
1645 the buffer is too small.\r
1646\r
1647 EFI_NOT_READY is returned if the specified configuration data is not ready due to an\r
1648 asynchronous configuration process already in progress. The caller can call RegisterDataNotify()\r
1649 to register an event on the specified configuration data. Once the asynchronous configuration\r
1650 process is finished, the event will be signaled, and a subsequent GetData() call will return\r
1651 the specified configuration data.\r
1652\r
1653 @param[in] This Pointer to the EFI_IP4_CONFIG2_PROTOCOL instance.\r
1654 @param[in] DataType The type of data to get.\r
1655 @param[in, out] DataSize On input, in bytes, the size of Data. On output, in bytes, the\r
1656 size of buffer required to store the specified configuration data.\r
1657 @param[in] Data The data buffer in which the configuration data is returned. The\r
1658 type of the data buffer is associated with the DataType.\r
1659 This is an optional parameter that may be NULL.\r
1660\r
1661 @retval EFI_SUCCESS The specified configuration data was obtained successfully.\r
1662 @retval EFI_INVALID_PARAMETER One or more of the followings are TRUE:\r
1663 - This is NULL.\r
1664 - DataSize is NULL.\r
1665 - Data is NULL if *DataSize is not zero.\r
1666 @retval EFI_BUFFER_TOO_SMALL The size of Data is too small for the specified configuration data,\r
1667 and the required size is returned in DataSize.\r
1668 @retval EFI_NOT_READY The specified configuration data is not ready due to an\r
1669 asynchronous configuration process already in progress.\r
1670 @retval EFI_NOT_FOUND The specified configuration data is not found.\r
1671\r
1672**/\r
1673EFI_STATUS\r
1674EFIAPI\r
1675EfiIp4Config2GetData (\r
1676 IN EFI_IP4_CONFIG2_PROTOCOL *This,\r
1677 IN EFI_IP4_CONFIG2_DATA_TYPE DataType,\r
1678 IN OUT UINTN *DataSize,\r
1679 IN VOID *Data OPTIONAL\r
1680 )\r
1681{\r
1682 EFI_TPL OldTpl;\r
1683 EFI_STATUS Status;\r
1684 IP4_CONFIG2_INSTANCE *Instance;\r
1685 IP4_CONFIG2_DATA_ITEM *DataItem;\r
1686\r
1687 if ((This == NULL) || (DataSize == NULL) || ((*DataSize != 0) && (Data == NULL))) {\r
1688 return EFI_INVALID_PARAMETER;\r
1689 }\r
1690\r
1691 if (DataType >= Ip4Config2DataTypeMaximum) {\r
1692 return EFI_NOT_FOUND;\r
1693 }\r
1694\r
1695 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1696\r
1697 Instance = IP4_CONFIG2_INSTANCE_FROM_PROTOCOL (This);\r
1698 DataItem = &Instance->DataItem[DataType];\r
1699\r
1700 Status = Instance->DataItem[DataType].Status;\r
1701 if (!EFI_ERROR (Status)) {\r
1702\r
1703 if (DataItem->GetData != NULL) {\r
1704\r
1705 Status = DataItem->GetData (Instance, DataSize, Data);\r
1706 } else if (*DataSize < Instance->DataItem[DataType].DataSize) {\r
1707 //\r
1708 // Update the buffer length.\r
1709 //\r
1710 *DataSize = Instance->DataItem[DataType].DataSize;\r
1711 Status = EFI_BUFFER_TOO_SMALL;\r
1712 } else {\r
1713\r
1714 *DataSize = Instance->DataItem[DataType].DataSize;\r
1715 CopyMem (Data, Instance->DataItem[DataType].Data.Ptr, *DataSize);\r
1716 }\r
1717 }\r
1718\r
1719 gBS->RestoreTPL (OldTpl);\r
1720\r
1721 return Status;\r
1722}\r
1723\r
1724/**\r
1725 Register an event that is signaled whenever a configuration process on the specified\r
1726 configuration data is done.\r
1727\r
1728 This function registers an event that is to be signaled whenever a configuration\r
1729 process on the specified configuration data is performed. An event can be registered\r
1730 for a different DataType simultaneously. The caller is responsible for determining\r
1731 which type of configuration data causes the signaling of the event in such an event.\r
1732\r
1733 @param[in] This Pointer to the EFI_IP4_CONFIG2_PROTOCOL instance.\r
1734 @param[in] DataType The type of data to unregister the event for.\r
1735 @param[in] Event The event to register.\r
1736\r
1737 @retval EFI_SUCCESS The notification event for the specified configuration data is\r
1738 registered.\r
1739 @retval EFI_INVALID_PARAMETER This is NULL or Event is NULL.\r
1740 @retval EFI_UNSUPPORTED The configuration data type specified by DataType is not\r
1741 supported.\r
1742 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
1743 @retval EFI_ACCESS_DENIED The Event is already registered for the DataType.\r
1744\r
1745**/\r
1746EFI_STATUS\r
1747EFIAPI\r
1748EfiIp4Config2RegisterDataNotify (\r
1749 IN EFI_IP4_CONFIG2_PROTOCOL *This,\r
1750 IN EFI_IP4_CONFIG2_DATA_TYPE DataType,\r
1751 IN EFI_EVENT Event\r
1752 )\r
1753{\r
1754 EFI_TPL OldTpl;\r
1755 EFI_STATUS Status;\r
1756 IP4_CONFIG2_INSTANCE *Instance;\r
1757 NET_MAP *EventMap;\r
1758 NET_MAP_ITEM *Item;\r
1759\r
1760 if ((This == NULL) || (Event == NULL)) {\r
1761 return EFI_INVALID_PARAMETER;\r
1762 }\r
1763\r
1764 if (DataType >= Ip4Config2DataTypeMaximum) {\r
1765 return EFI_UNSUPPORTED;\r
1766 }\r
1767\r
1768 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1769\r
1770 Instance = IP4_CONFIG2_INSTANCE_FROM_PROTOCOL (This);\r
1771 EventMap = &Instance->DataItem[DataType].EventMap;\r
1772\r
1773 //\r
1774 // Check whether this event is already registered for this DataType.\r
1775 //\r
1776 Item = NetMapFindKey (EventMap, Event);\r
1777 if (Item == NULL) {\r
1778\r
1779 Status = NetMapInsertTail (EventMap, Event, NULL);\r
1780\r
1781 if (EFI_ERROR (Status)) {\r
1782\r
1783 Status = EFI_OUT_OF_RESOURCES;\r
1784 }\r
1785\r
1786 } else {\r
1787\r
1788 Status = EFI_ACCESS_DENIED;\r
1789 }\r
1790\r
1791 gBS->RestoreTPL (OldTpl);\r
1792\r
1793 return Status;\r
1794}\r
1795\r
1796/**\r
1797 Remove a previously registered event for the specified configuration data.\r
1798\r
1799 @param This The pointer to the EFI_IP4_CONFIG2_PROTOCOL instance.\r
1800 @param DataType The type of data to remove from the previously\r
1801 registered event.\r
1802 @param Event The event to be unregistered.\r
1803\r
1804 @retval EFI_SUCCESS The event registered for the specified\r
1805 configuration data was removed.\r
1806 @retval EFI_INVALID_PARAMETER This is NULL or Event is NULL.\r
1807 @retval EFI_NOT_FOUND The Event has not been registered for the\r
1808 specified DataType.\r
1809\r
1810**/\r
1811EFI_STATUS\r
1812EFIAPI\r
1813EfiIp4Config2UnregisterDataNotify (\r
1814 IN EFI_IP4_CONFIG2_PROTOCOL *This,\r
1815 IN EFI_IP4_CONFIG2_DATA_TYPE DataType,\r
1816 IN EFI_EVENT Event\r
1817 )\r
1818{\r
1819 EFI_TPL OldTpl;\r
1820 EFI_STATUS Status;\r
1821 IP4_CONFIG2_INSTANCE *Instance;\r
1822 NET_MAP_ITEM *Item;\r
1823\r
1824 if ((This == NULL) || (Event == NULL)) {\r
1825 return EFI_INVALID_PARAMETER;\r
1826 }\r
1827\r
1828 if (DataType >= Ip4Config2DataTypeMaximum) {\r
1829 return EFI_NOT_FOUND;\r
1830 }\r
1831\r
1832 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1833\r
1834 Instance = IP4_CONFIG2_INSTANCE_FROM_PROTOCOL (This);\r
1835\r
1836 Item = NetMapFindKey (&Instance->DataItem[DataType].EventMap, Event);\r
1837 if (Item != NULL) {\r
1838\r
1839 NetMapRemoveItem (&Instance->DataItem[DataType].EventMap, Item, NULL);\r
1840 Status = EFI_SUCCESS;\r
1841 } else {\r
1842\r
1843 Status = EFI_NOT_FOUND;\r
1844 }\r
1845\r
1846 gBS->RestoreTPL (OldTpl);\r
1847\r
1848 return Status;\r
1849}\r
1850\r
1851/**\r
1852 Initialize an IP4_CONFIG2_INSTANCE.\r
1853\r
1854 @param[out] Instance The buffer of IP4_CONFIG2_INSTANCE to be initialized.\r
1855\r
1856 @retval EFI_OUT_OF_RESOURCES Failed to allocate resources to complete the operation.\r
1857 @retval EFI_SUCCESS The IP4_CONFIG2_INSTANCE initialized successfully.\r
1858\r
1859**/\r
1860EFI_STATUS\r
1861Ip4Config2InitInstance (\r
1862 OUT IP4_CONFIG2_INSTANCE *Instance\r
1863 )\r
1864{\r
1865 IP4_SERVICE *IpSb;\r
1866 IP4_CONFIG2_INSTANCE *TmpInstance;\r
1867 LIST_ENTRY *Entry;\r
1868 EFI_STATUS Status;\r
1869 UINTN Index;\r
1870 UINT16 IfIndex;\r
1871 IP4_CONFIG2_DATA_ITEM *DataItem;\r
1872\r
1873\r
1874 IpSb = IP4_SERVICE_FROM_IP4_CONFIG2_INSTANCE (Instance);\r
1875\r
1876 Instance->Signature = IP4_CONFIG2_INSTANCE_SIGNATURE;\r
1877\r
1878\r
1879 //\r
1880 // Determine the index of this interface.\r
1881 //\r
1882 IfIndex = 0;\r
1883 NET_LIST_FOR_EACH (Entry, &mIp4Config2InstanceList) {\r
1884 TmpInstance = NET_LIST_USER_STRUCT_S (Entry, IP4_CONFIG2_INSTANCE, Link, IP4_CONFIG2_INSTANCE_SIGNATURE);\r
1885\r
1886 if (TmpInstance->IfIndex > IfIndex) {\r
1887 //\r
1888 // There is a sequence hole because some interface is down.\r
1889 //\r
1890 break;\r
1891 }\r
1892\r
1893 IfIndex++;\r
1894 }\r
1895\r
1896 Instance->IfIndex = IfIndex;\r
1897 NetListInsertBefore (Entry, &Instance->Link);\r
1898\r
1899 for (Index = 0; Index < Ip4Config2DataTypeMaximum; Index++) {\r
1900 //\r
1901 // Initialize the event map for each data item.\r
1902 //\r
1903 NetMapInit (&Instance->DataItem[Index].EventMap);\r
1904 }\r
1905\r
1906 \r
1907 //\r
1908 // Initialize each data type: associate storage and set data size for the\r
1909 // fixed size data types, hook the SetData function, set the data attribute.\r
1910 //\r
1911 DataItem = &Instance->DataItem[Ip4Config2DataTypeInterfaceInfo];\r
1912 DataItem->GetData = Ip4Config2GetIfInfo;\r
1913 DataItem->Data.Ptr = &Instance->InterfaceInfo;\r
1914 DataItem->DataSize = sizeof (Instance->InterfaceInfo);\r
1915 SET_DATA_ATTRIB (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED | DATA_ATTRIB_VOLATILE);\r
1916 Ip4Config2InitIfInfo (IpSb, &Instance->InterfaceInfo);\r
1917\r
1918 DataItem = &Instance->DataItem[Ip4Config2DataTypePolicy];\r
1919 DataItem->SetData = Ip4Config2SetPolicy;\r
1920 DataItem->Data.Ptr = &Instance->Policy;\r
1921 DataItem->DataSize = sizeof (Instance->Policy);\r
7648748e 1922 Instance->Policy = Ip4Config2PolicyStatic;\r
1f6729ff 1923 SET_DATA_ATTRIB (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED);\r
1924\r
1925 DataItem = &Instance->DataItem[Ip4Config2DataTypeManualAddress];\r
1926 DataItem->SetData = Ip4Config2SetMaunualAddress;\r
1927 DataItem->Status = EFI_NOT_FOUND;\r
1928\r
1929 DataItem = &Instance->DataItem[Ip4Config2DataTypeGateway];\r
1930 DataItem->SetData = Ip4Config2SetGateway;\r
1931 DataItem->Status = EFI_NOT_FOUND;\r
1932\r
1933 DataItem = &Instance->DataItem[Ip4Config2DataTypeDnsServer];\r
1934 DataItem->SetData = Ip4Config2SetDnsServer;\r
1935 DataItem->Status = EFI_NOT_FOUND;\r
1936\r
1937 //\r
1938 // Create the event used for DHCP.\r
1939 //\r
1940 Status = gBS->CreateEvent (\r
1941 EVT_NOTIFY_SIGNAL,\r
1942 TPL_CALLBACK,\r
1943 Ip4Config2OnDhcp4Event,\r
1944 Instance,\r
1945 &Instance->Dhcp4Event\r
1946 );\r
1947 ASSERT_EFI_ERROR (Status);\r
1948\r
1949 Instance->Configured = TRUE;\r
1950\r
1951 //\r
1952 // Try to read the config data from NV variable.\r
7648748e
JW
1953 // If not found, write initialized config data into NV variable \r
1954 // as a default config data.\r
1f6729ff 1955 //\r
1956 Status = Ip4Config2ReadConfigData (IpSb->MacString, Instance);\r
1957 if (Status == EFI_NOT_FOUND) {\r
1958 Status = Ip4Config2WriteConfigData (IpSb->MacString, Instance);\r
1959 }\r
1960\r
1961 if (EFI_ERROR (Status)) {\r
1962 return Status;\r
1963 }\r
7648748e 1964 \r
1f6729ff 1965 Instance->Ip4Config2.SetData = EfiIp4Config2SetData;\r
1966 Instance->Ip4Config2.GetData = EfiIp4Config2GetData;\r
1967 Instance->Ip4Config2.RegisterDataNotify = EfiIp4Config2RegisterDataNotify;\r
1968 Instance->Ip4Config2.UnregisterDataNotify = EfiIp4Config2UnregisterDataNotify;\r
1969\r
1970 //\r
1971 // Publish the IP4 configuration form\r
1972 //\r
1973 return Ip4Config2FormInit (Instance);\r
1974}\r
1975\r
1976\r
1977/**\r
1978 Release an IP4_CONFIG2_INSTANCE.\r
1979\r
1980 @param[in, out] Instance The buffer of IP4_CONFIG2_INSTANCE to be freed.\r
1981\r
1982**/\r
1983VOID\r
1984Ip4Config2CleanInstance (\r
1985 IN OUT IP4_CONFIG2_INSTANCE *Instance\r
1986 )\r
1987{\r
1988 UINTN Index;\r
1989 IP4_CONFIG2_DATA_ITEM *DataItem;\r
1990\r
1991 if (Instance->DeclineAddress != NULL) {\r
1992 FreePool (Instance->DeclineAddress);\r
1993 }\r
1994\r
1995 if (!Instance->Configured) {\r
1996 return ;\r
1997 }\r
1998\r
1999 if (Instance->Dhcp4Handle != NULL) {\r
2000\r
2001 Ip4Config2DestroyDhcp4 (Instance);\r
2002 }\r
2003\r
2004 //\r
2005 // Close the event.\r
2006 //\r
2007 if (Instance->Dhcp4Event != NULL) {\r
2008 gBS->CloseEvent (Instance->Dhcp4Event);\r
4f0f2316 2009 Instance->Dhcp4Event = NULL;\r
1f6729ff 2010 }\r
2011\r
2012 for (Index = 0; Index < Ip4Config2DataTypeMaximum; Index++) {\r
2013\r
2014 DataItem = &Instance->DataItem[Index];\r
2015\r
2016 if (!DATA_ATTRIB_SET (DataItem->Attribute, DATA_ATTRIB_SIZE_FIXED)) {\r
2017 if (DataItem->Data.Ptr != NULL) {\r
2018 FreePool (DataItem->Data.Ptr);\r
2019 }\r
2020 DataItem->Data.Ptr = NULL;\r
2021 DataItem->DataSize = 0;\r
2022 }\r
2023\r
2024 NetMapClean (&Instance->DataItem[Index].EventMap);\r
2025 }\r
2026\r
2027 Ip4Config2FormUnload (Instance);\r
2028\r
2029 RemoveEntryList (&Instance->Link);\r
2030}\r
2031\r
7648748e
JW
2032/**\r
2033 The event handle for IP4 auto reconfiguration. The original default\r
2034 interface and route table will be removed as the default.\r
2035\r
2036 @param[in] Context The IP4 service binding instance.\r
2037\r
2038**/\r
2039VOID\r
2040EFIAPI\r
2041Ip4AutoReconfigCallBackDpc (\r
2042 IN VOID *Context\r
2043 )\r
2044{\r
2045 IP4_SERVICE *IpSb;\r
2046\r
2047 IpSb = (IP4_SERVICE *) Context;\r
2048 NET_CHECK_SIGNATURE (IpSb, IP4_SERVICE_SIGNATURE);\r
2049\r
2050 if (IpSb->State > IP4_SERVICE_UNSTARTED) {\r
2051 IpSb->State = IP4_SERVICE_UNSTARTED;\r
2052 }\r
2053 \r
2054 IpSb->Reconfig = TRUE;\r
2055\r
2056 Ip4StartAutoConfig (&IpSb->Ip4Config2Instance);\r
2057\r
2058 return ;\r
2059}\r
2060\r
2061\r
2062/**\r
2063 Request Ip4AutoReconfigCallBackDpc as a DPC at TPL_CALLBACK.\r
2064\r
2065 @param Event The event that is signalled.\r
2066 @param Context The IP4 service binding instance.\r
2067\r
2068**/\r
2069VOID\r
2070EFIAPI\r
2071Ip4AutoReconfigCallBack (\r
2072 IN EFI_EVENT Event,\r
2073 IN VOID *Context\r
2074 )\r
2075{\r
2076 //\r
2077 // Request Ip4AutoReconfigCallBackDpc as a DPC at TPL_CALLBACK\r
2078 //\r
2079 QueueDpc (TPL_CALLBACK, Ip4AutoReconfigCallBackDpc, Context);\r
2080}\r
2081\r