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MdeModulePkg: Remove two instances of 'DHCP_SERVICE *DhcpSb'
[mirror_edk2.git] / MdeModulePkg / Universal / Network / Dhcp4Dxe / Dhcp4Impl.c
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772db4bb 1/** @file\r
3e8c18da 2 This file implement the EFI_DHCP4_PROTOCOL interface.\r
e2851998 3\r
ce964733 4Copyright (c) 2006 - 2015, Intel Corporation. All rights reserved.<BR>\r
e5eed7d3 5This program and the accompanying materials\r
772db4bb 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
772db4bb 13**/\r
14\r
15\r
16#include "Dhcp4Impl.h"\r
17\r
f9204641 18/**\r
19 Returns the current operating mode and cached data packet for the EFI DHCPv4 Protocol driver.\r
e2851998 20\r
f9204641 21 The GetModeData() function returns the current operating mode and cached data\r
22 packet for the EFI DHCPv4 Protocol driver.\r
23\r
3e8c18da 24 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
25 @param[out] Dhcp4ModeData Pointer to storage for the EFI_DHCP4_MODE_DATA structure.\r
f9204641 26\r
27 @retval EFI_SUCCESS The mode data was returned.\r
28 @retval EFI_INVALID_PARAMETER This is NULL.\r
29\r
30**/\r
31EFI_STATUS\r
32EFIAPI\r
33EfiDhcp4GetModeData (\r
34 IN EFI_DHCP4_PROTOCOL *This,\r
35 OUT EFI_DHCP4_MODE_DATA *Dhcp4ModeData\r
36 );\r
37\r
38/**\r
39 Initializes, changes, or resets the operational settings for the EFI DHCPv4 Protocol driver.\r
40\r
41 The Configure() function is used to initialize, change, or reset the operational\r
42 settings of the EFI DHCPv4 Protocol driver for the communication device on which\r
43 the EFI DHCPv4 Service Binding Protocol is installed. This function can be\r
44 successfully called only if both of the following are true:\r
45 * This instance of the EFI DHCPv4 Protocol driver is in the Dhcp4Stopped, Dhcp4Init,\r
46 Dhcp4InitReboot, or Dhcp4Bound states.\r
47 * No other EFI DHCPv4 Protocol driver instance that is controlled by this EFI\r
48 DHCPv4 Service Binding Protocol driver instance has configured this EFI DHCPv4\r
49 Protocol driver.\r
50 When this driver is in the Dhcp4Stopped state, it can transfer into one of the\r
51 following two possible initial states:\r
52 * Dhcp4Init\r
53 * Dhcp4InitReboot\r
54 The driver can transfer into these states by calling Configure() with a non-NULL\r
55 Dhcp4CfgData. The driver will transfer into the appropriate state based on the\r
56 supplied client network address in the ClientAddress parameter and DHCP options\r
57 in the OptionList parameter as described in RFC 2131.\r
58 When Configure() is called successfully while Dhcp4CfgData is set to NULL, the\r
59 default configuring data will be reset in the EFI DHCPv4 Protocol driver and\r
60 the state of the EFI DHCPv4 Protocol driver will not be changed. If one instance\r
61 wants to make it possible for another instance to configure the EFI DHCPv4 Protocol\r
62 driver, it must call this function with Dhcp4CfgData set to NULL.\r
63\r
3e8c18da 64 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
65 @param[in] Dhcp4CfgData Pointer to the EFI_DHCP4_CONFIG_DATA.\r
f9204641 66\r
67 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the Dhcp4Init or\r
68 Dhcp4InitReboot state, if the original state of this driver\r
69 was Dhcp4Stopped and the value of Dhcp4CfgData was\r
70 not NULL. Otherwise, the state was left unchanged.\r
71 @retval EFI_ACCESS_DENIED This instance of the EFI DHCPv4 Protocol driver was not in the\r
72 Dhcp4Stopped, Dhcp4Init, Dhcp4InitReboot, or Dhcp4Bound state;\r
73 Or onother instance of this EFI DHCPv4 Protocol driver is already\r
74 in a valid configured state.\r
75 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
76 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
77 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
78\r
79**/\r
80EFI_STATUS\r
81EFIAPI\r
82EfiDhcp4Configure (\r
83 IN EFI_DHCP4_PROTOCOL *This,\r
84 IN EFI_DHCP4_CONFIG_DATA *Dhcp4CfgData OPTIONAL\r
e2851998 85 );\r
f9204641 86\r
87/**\r
88 Starts the DHCP configuration process.\r
89\r
90 The Start() function starts the DHCP configuration process. This function can\r
91 be called only when the EFI DHCPv4 Protocol driver is in the Dhcp4Init or\r
92 Dhcp4InitReboot state.\r
93 If the DHCP process completes successfully, the state of the EFI DHCPv4 Protocol\r
94 driver will be transferred through Dhcp4Selecting and Dhcp4Requesting to the\r
95 Dhcp4Bound state. The CompletionEvent will then be signaled if it is not NULL.\r
96 If the process aborts, either by the user or by some unexpected network error,\r
97 the state is restored to the Dhcp4Init state. The Start() function can be called\r
98 again to restart the process.\r
99 Refer to RFC 2131 for precise state transitions during this process. At the\r
100 time when each event occurs in this process, the callback function that was set\r
101 by EFI_DHCP4_PROTOCOL.Configure() will be called and the user can take this\r
102 opportunity to control the process.\r
e2851998 103\r
3e8c18da 104 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
105 @param[in] CompletionEvent If not NULL, indicates the event that will be signaled when the\r
106 EFI DHCPv4 Protocol driver is transferred into the\r
107 Dhcp4Bound state or when the DHCP process is aborted.\r
108 EFI_DHCP4_PROTOCOL.GetModeData() can be called to\r
109 check the completion status. If NULL,\r
110 EFI_DHCP4_PROTOCOL.Start() will wait until the driver\r
111 is transferred into the Dhcp4Bound state or the process fails.\r
f9204641 112\r
113 @retval EFI_SUCCESS The DHCP configuration process has started, or it has completed\r
114 when CompletionEvent is NULL.\r
115 @retval EFI_NOT_STARTED The EFI DHCPv4 Protocol driver is in the Dhcp4Stopped\r
116 state. EFI_DHCP4_PROTOCOL. Configure() needs to be called.\r
117 @retval EFI_INVALID_PARAMETER This is NULL.\r
118 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
119 @retval EFI_TIMEOUT The DHCP configuration process failed because no response was\r
120 received from the server within the specified timeout value.\r
121 @retval EFI_ABORTED The user aborted the DHCP process.\r
122 @retval EFI_ALREADY_STARTED Some other EFI DHCPv4 Protocol instance already started the\r
123 DHCP process.\r
124 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
125\r
126**/\r
127EFI_STATUS\r
128EFIAPI\r
129EfiDhcp4Start (\r
130 IN EFI_DHCP4_PROTOCOL *This,\r
131 IN EFI_EVENT CompletionEvent OPTIONAL\r
132 );\r
133\r
134/**\r
135 Extends the lease time by sending a request packet.\r
e2851998 136\r
f9204641 137 The RenewRebind() function is used to manually extend the lease time when the\r
138 EFI DHCPv4 Protocol driver is in the Dhcp4Bound state and the lease time has\r
139 not expired yet. This function will send a request packet to the previously\r
140 found server (or to any server when RebindRequest is TRUE) and transfer the\r
141 state into the Dhcp4Renewing state (or Dhcp4Rebinding when RebindingRequest is\r
142 TRUE). When a response is received, the state is returned to Dhcp4Bound.\r
143 If no response is received before the try count is exceeded (the RequestTryCount\r
144 field that is specified in EFI_DHCP4_CONFIG_DATA) but before the lease time that\r
145 was issued by the previous server expires, the driver will return to the Dhcp4Bound\r
146 state and the previous configuration is restored. The outgoing and incoming packets\r
147 can be captured by the EFI_DHCP4_CALLBACK function.\r
148\r
3e8c18da 149 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
150 @param[in] RebindRequest If TRUE, this function broadcasts the request packets and enters\r
151 the Dhcp4Rebinding state. Otherwise, it sends a unicast\r
152 request packet and enters the Dhcp4Renewing state.\r
153 @param[in] CompletionEvent If not NULL, this event is signaled when the renew/rebind phase\r
154 completes or some error occurs.\r
155 EFI_DHCP4_PROTOCOL.GetModeData() can be called to\r
156 check the completion status. If NULL,\r
157 EFI_DHCP4_PROTOCOL.RenewRebind() will busy-wait\r
158 until the DHCP process finishes.\r
f9204641 159\r
160 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the\r
161 Dhcp4Renewing state or is back to the Dhcp4Bound state.\r
162 @retval EFI_NOT_STARTED The EFI DHCPv4 Protocol driver is in the Dhcp4Stopped\r
163 state. EFI_DHCP4_PROTOCOL.Configure() needs to\r
164 be called.\r
165 @retval EFI_INVALID_PARAMETER This is NULL.\r
166 @retval EFI_TIMEOUT There was no response from the server when the try count was\r
167 exceeded.\r
168 @retval EFI_ACCESS_DENIED The driver is not in the Dhcp4Bound state.\r
169 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
170\r
171**/\r
172EFI_STATUS\r
173EFIAPI\r
174EfiDhcp4RenewRebind (\r
175 IN EFI_DHCP4_PROTOCOL *This,\r
176 IN BOOLEAN RebindRequest,\r
177 IN EFI_EVENT CompletionEvent OPTIONAL\r
178 );\r
179\r
180/**\r
181 Releases the current address configuration.\r
182\r
183 The Release() function releases the current configured IP address by doing either\r
184 of the following:\r
185 * Sending a DHCPRELEASE packet when the EFI DHCPv4 Protocol driver is in the\r
186 Dhcp4Bound state\r
187 * Setting the previously assigned IP address that was provided with the\r
188 EFI_DHCP4_PROTOCOL.Configure() function to 0.0.0.0 when the driver is in\r
189 Dhcp4InitReboot state\r
190 After a successful call to this function, the EFI DHCPv4 Protocol driver returns\r
191 to the Dhcp4Init state and any subsequent incoming packets will be discarded silently.\r
192\r
3e8c18da 193 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
f9204641 194\r
195 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the Dhcp4Init phase.\r
196 @retval EFI_INVALID_PARAMETER This is NULL.\r
197 @retval EFI_ACCESS_DENIED The EFI DHCPv4 Protocol driver is not Dhcp4InitReboot state.\r
198 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
199\r
200**/\r
201EFI_STATUS\r
202EFIAPI\r
203EfiDhcp4Release (\r
204 IN EFI_DHCP4_PROTOCOL *This\r
205 );\r
206\r
207/**\r
208 Stops the current address configuration.\r
e2851998 209\r
f9204641 210 The Stop() function is used to stop the DHCP configuration process. After this\r
211 function is called successfully, the EFI DHCPv4 Protocol driver is transferred\r
212 into the Dhcp4Stopped state. EFI_DHCP4_PROTOCOL.Configure() needs to be called\r
213 before DHCP configuration process can be started again. This function can be\r
214 called when the EFI DHCPv4 Protocol driver is in any state.\r
215\r
3e8c18da 216 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
f9204641 217\r
218 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the Dhcp4Stopped phase.\r
219 @retval EFI_INVALID_PARAMETER This is NULL.\r
220\r
221**/\r
222EFI_STATUS\r
223EFIAPI\r
224EfiDhcp4Stop (\r
225 IN EFI_DHCP4_PROTOCOL *This\r
226 );\r
227\r
228/**\r
229 Builds a DHCP packet, given the options to be appended or deleted or replaced.\r
230\r
231 The Build() function is used to assemble a new packet from the original packet\r
232 by replacing or deleting existing options or appending new options. This function\r
233 does not change any state of the EFI DHCPv4 Protocol driver and can be used at\r
234 any time.\r
235\r
3e8c18da 236 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
237 @param[in] SeedPacket Initial packet to be used as a base for building new packet.\r
238 @param[in] DeleteCount Number of opcodes in the DeleteList.\r
239 @param[in] DeleteList List of opcodes to be deleted from the seed packet.\r
240 Ignored if DeleteCount is zero.\r
241 @param[in] AppendCount Number of entries in the OptionList.\r
242 @param[in] AppendList Pointer to a DHCP option list to be appended to SeedPacket.\r
243 If SeedPacket also contains options in this list, they are\r
244 replaced by new options (except pad option). Ignored if\r
245 AppendCount is zero. Type EFI_DHCP4_PACKET_OPTION\r
246 @param[out] NewPacket Pointer to storage for the pointer to the new allocated packet.\r
247 Use the EFI Boot Service FreePool() on the resulting pointer\r
248 when done with the packet.\r
f9204641 249\r
250 @retval EFI_SUCCESS The new packet was built.\r
251 @retval EFI_OUT_OF_RESOURCES Storage for the new packet could not be allocated.\r
252 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
253\r
254**/\r
255EFI_STATUS\r
256EFIAPI\r
257EfiDhcp4Build (\r
258 IN EFI_DHCP4_PROTOCOL *This,\r
259 IN EFI_DHCP4_PACKET *SeedPacket,\r
260 IN UINT32 DeleteCount,\r
261 IN UINT8 *DeleteList OPTIONAL,\r
262 IN UINT32 AppendCount,\r
263 IN EFI_DHCP4_PACKET_OPTION *AppendList[] OPTIONAL,\r
264 OUT EFI_DHCP4_PACKET **NewPacket\r
265 );\r
e2851998 266\r
3e8c18da 267/**\r
f9204641 268 Transmits a DHCP formatted packet and optionally waits for responses.\r
e2851998 269\r
f9204641 270 The TransmitReceive() function is used to transmit a DHCP packet and optionally\r
271 wait for the response from servers. This function does not change the state of\r
272 the EFI DHCPv4 Protocol driver and thus can be used at any time.\r
273\r
3e8c18da 274 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
275 @param[in] Token Pointer to the EFI_DHCP4_TRANSMIT_RECEIVE_TOKEN structure.\r
f9204641 276\r
277 @retval EFI_SUCCESS The packet was successfully queued for transmission.\r
278 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
279 @retval EFI_NOT_READY The previous call to this function has not finished yet. Try to call\r
280 this function after collection process completes.\r
281 @retval EFI_NO_MAPPING The default station address is not available yet.\r
282 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
283 @retval Others Some other unexpected error occurred.\r
284\r
285**/\r
286EFI_STATUS\r
287EFIAPI\r
288EfiDhcp4TransmitReceive (\r
289 IN EFI_DHCP4_PROTOCOL *This,\r
290 IN EFI_DHCP4_TRANSMIT_RECEIVE_TOKEN *Token\r
291 );\r
292\r
293/**\r
294 Parses the packed DHCP option data.\r
e2851998 295\r
f9204641 296 The Parse() function is used to retrieve the option list from a DHCP packet.\r
51195fbe 297 If *OptionCount isn't zero, and there is enough space for all the DHCP options\r
f9204641 298 in the Packet, each element of PacketOptionList is set to point to somewhere in\r
299 the Packet->Dhcp4.Option where a new DHCP option begins. If RFC3396 is supported,\r
300 the caller should reassemble the parsed DHCP options to get the finial result.\r
51195fbe 301 If *OptionCount is zero or there isn't enough space for all of them, the number\r
f9204641 302 of DHCP options in the Packet is returned in OptionCount.\r
303\r
304 @param This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
305 @param Packet Pointer to packet to be parsed.\r
306 @param OptionCount On input, the number of entries in the PacketOptionList.\r
307 On output, the number of entries that were written into the\r
308 PacketOptionList.\r
309 @param PacketOptionList List of packet option entries to be filled in. End option or pad\r
310 options are not included.\r
311\r
312 @retval EFI_SUCCESS The packet was successfully parsed.\r
313 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
314 @retval EFI_BUFFER_TOO_SMALL One or more of the following conditions is TRUE:\r
315 1) *OptionCount is smaller than the number of options that\r
316 were found in the Packet.\r
317 2) PacketOptionList is NULL.\r
318\r
319**/\r
320EFI_STATUS\r
321EFIAPI\r
322EfiDhcp4Parse (\r
323 IN EFI_DHCP4_PROTOCOL *This,\r
324 IN EFI_DHCP4_PACKET *Packet,\r
325 IN OUT UINT32 *OptionCount,\r
326 OUT EFI_DHCP4_PACKET_OPTION *PacketOptionList[] OPTIONAL\r
327 );\r
328\r
329EFI_DHCP4_PROTOCOL mDhcp4ProtocolTemplate = {\r
330 EfiDhcp4GetModeData,\r
331 EfiDhcp4Configure,\r
332 EfiDhcp4Start,\r
333 EfiDhcp4RenewRebind,\r
334 EfiDhcp4Release,\r
335 EfiDhcp4Stop,\r
336 EfiDhcp4Build,\r
337 EfiDhcp4TransmitReceive,\r
338 EfiDhcp4Parse\r
339};\r
772db4bb 340\r
341/**\r
f9204641 342 Returns the current operating mode and cached data packet for the EFI DHCPv4 Protocol driver.\r
e2851998 343\r
f9204641 344 The GetModeData() function returns the current operating mode and cached data\r
345 packet for the EFI DHCPv4 Protocol driver.\r
772db4bb 346\r
3e8c18da 347 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
348 @param[out] Dhcp4ModeData Pointer to storage for the EFI_DHCP4_MODE_DATA structure.\r
772db4bb 349\r
f9204641 350 @retval EFI_SUCCESS The mode data was returned.\r
351 @retval EFI_INVALID_PARAMETER This is NULL.\r
772db4bb 352\r
353**/\r
772db4bb 354EFI_STATUS\r
355EFIAPI\r
356EfiDhcp4GetModeData (\r
357 IN EFI_DHCP4_PROTOCOL *This,\r
358 OUT EFI_DHCP4_MODE_DATA *Dhcp4ModeData\r
359 )\r
360{\r
361 DHCP_PROTOCOL *Instance;\r
362 DHCP_SERVICE *DhcpSb;\r
363 DHCP_PARAMETER *Para;\r
364 EFI_TPL OldTpl;\r
365 IP4_ADDR Ip;\r
366\r
367 //\r
368 // First validate the parameters.\r
369 //\r
370 if ((This == NULL) || (Dhcp4ModeData == NULL)) {\r
371 return EFI_INVALID_PARAMETER;\r
372 }\r
373\r
374 Instance = DHCP_INSTANCE_FROM_THIS (This);\r
982a9eae 375\r
e48e37fc 376 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 377 DhcpSb = Instance->Service;\r
378\r
379 //\r
380 // Caller can use GetModeData to retrieve current DHCP states\r
381 // no matter whether it is the active child or not.\r
382 //\r
f9204641 383 Dhcp4ModeData->State = (EFI_DHCP4_STATE) DhcpSb->DhcpState;\r
687a2e5f 384 CopyMem (&Dhcp4ModeData->ConfigData, &DhcpSb->ActiveConfig, sizeof (Dhcp4ModeData->ConfigData));\r
385 CopyMem (&Dhcp4ModeData->ClientMacAddress, &DhcpSb->Mac, sizeof (Dhcp4ModeData->ClientMacAddress));\r
772db4bb 386\r
387 Ip = HTONL (DhcpSb->ClientAddr);\r
e48e37fc 388 CopyMem (&Dhcp4ModeData->ClientAddress, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
772db4bb 389\r
390 Ip = HTONL (DhcpSb->Netmask);\r
e48e37fc 391 CopyMem (&Dhcp4ModeData->SubnetMask, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
772db4bb 392\r
393 Ip = HTONL (DhcpSb->ServerAddr);\r
e48e37fc 394 CopyMem (&Dhcp4ModeData->ServerAddress, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
772db4bb 395\r
396 Para = DhcpSb->Para;\r
397\r
398 if (Para != NULL) {\r
399 Ip = HTONL (Para->Router);\r
e48e37fc 400 CopyMem (&Dhcp4ModeData->RouterAddress, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
f9204641 401 Dhcp4ModeData->LeaseTime = Para->Lease;\r
772db4bb 402 } else {\r
e48e37fc 403 ZeroMem (&Dhcp4ModeData->RouterAddress, sizeof (EFI_IPv4_ADDRESS));\r
f9204641 404 Dhcp4ModeData->LeaseTime = 0xffffffff;\r
772db4bb 405 }\r
406\r
407 Dhcp4ModeData->ReplyPacket = DhcpSb->Selected;\r
408\r
e48e37fc 409 gBS->RestoreTPL (OldTpl);\r
772db4bb 410 return EFI_SUCCESS;\r
411}\r
412\r
413\r
414/**\r
415 Free the resource related to the configure parameters.\r
416 DHCP driver will make a copy of the user's configure\r
417 such as the time out value.\r
418\r
419 @param Config The DHCP configure data\r
420\r
772db4bb 421**/\r
422VOID\r
423DhcpCleanConfigure (\r
f9204641 424 IN OUT EFI_DHCP4_CONFIG_DATA *Config\r
772db4bb 425 )\r
426{\r
427 UINT32 Index;\r
428\r
429 if (Config->DiscoverTimeout != NULL) {\r
a4df47f1 430 FreePool (Config->DiscoverTimeout);\r
772db4bb 431 }\r
432\r
433 if (Config->RequestTimeout != NULL) {\r
a4df47f1 434 FreePool (Config->RequestTimeout);\r
772db4bb 435 }\r
436\r
437 if (Config->OptionList != NULL) {\r
438 for (Index = 0; Index < Config->OptionCount; Index++) {\r
439 if (Config->OptionList[Index] != NULL) {\r
a4df47f1 440 FreePool (Config->OptionList[Index]);\r
772db4bb 441 }\r
442 }\r
443\r
a4df47f1 444 FreePool (Config->OptionList);\r
772db4bb 445 }\r
446\r
e48e37fc 447 ZeroMem (Config, sizeof (EFI_DHCP4_CONFIG_DATA));\r
772db4bb 448}\r
449\r
450\r
451/**\r
452 Allocate memory for configure parameter such as timeout value for Dst,\r
453 then copy the configure parameter from Src to Dst.\r
454\r
3e8c18da 455 @param[out] Dst The destination DHCP configure data.\r
456 @param[in] Src The source DHCP configure data.\r
772db4bb 457\r
458 @retval EFI_OUT_OF_RESOURCES Failed to allocate memory.\r
459 @retval EFI_SUCCESS The configure is copied.\r
460\r
461**/\r
462EFI_STATUS\r
463DhcpCopyConfigure (\r
f9204641 464 OUT EFI_DHCP4_CONFIG_DATA *Dst,\r
465 IN EFI_DHCP4_CONFIG_DATA *Src\r
772db4bb 466 )\r
467{\r
468 EFI_DHCP4_PACKET_OPTION **DstOptions;\r
469 EFI_DHCP4_PACKET_OPTION **SrcOptions;\r
cd7bfc2c 470 UINTN Len;\r
772db4bb 471 UINT32 Index;\r
472\r
72030458 473 CopyMem (Dst, Src, sizeof (*Dst));\r
772db4bb 474 Dst->DiscoverTimeout = NULL;\r
475 Dst->RequestTimeout = NULL;\r
476 Dst->OptionList = NULL;\r
477\r
478 //\r
479 // Allocate a memory then copy DiscoverTimeout to it\r
480 //\r
481 if (Src->DiscoverTimeout != NULL) {\r
482 Len = Src->DiscoverTryCount * sizeof (UINT32);\r
e48e37fc 483 Dst->DiscoverTimeout = AllocatePool (Len);\r
772db4bb 484\r
485 if (Dst->DiscoverTimeout == NULL) {\r
486 return EFI_OUT_OF_RESOURCES;\r
487 }\r
488\r
489 for (Index = 0; Index < Src->DiscoverTryCount; Index++) {\r
36ee91ca 490 Dst->DiscoverTimeout[Index] = MAX (Src->DiscoverTimeout[Index], 1);\r
772db4bb 491 }\r
492 }\r
493\r
494 //\r
495 // Allocate a memory then copy RequestTimeout to it\r
496 //\r
497 if (Src->RequestTimeout != NULL) {\r
498 Len = Src->RequestTryCount * sizeof (UINT32);\r
e48e37fc 499 Dst->RequestTimeout = AllocatePool (Len);\r
772db4bb 500\r
501 if (Dst->RequestTimeout == NULL) {\r
502 goto ON_ERROR;\r
503 }\r
504\r
505 for (Index = 0; Index < Src->RequestTryCount; Index++) {\r
36ee91ca 506 Dst->RequestTimeout[Index] = MAX (Src->RequestTimeout[Index], 1);\r
772db4bb 507 }\r
508 }\r
509\r
510 //\r
511 // Allocate an array of dhcp option point, then allocate memory\r
512 // for each option and copy the source option to it\r
513 //\r
514 if (Src->OptionList != NULL) {\r
515 Len = Src->OptionCount * sizeof (EFI_DHCP4_PACKET_OPTION *);\r
e48e37fc 516 Dst->OptionList = AllocateZeroPool (Len);\r
772db4bb 517\r
518 if (Dst->OptionList == NULL) {\r
519 goto ON_ERROR;\r
520 }\r
521\r
522 DstOptions = Dst->OptionList;\r
523 SrcOptions = Src->OptionList;\r
524\r
525 for (Index = 0; Index < Src->OptionCount; Index++) {\r
36ee91ca 526 Len = sizeof (EFI_DHCP4_PACKET_OPTION) + MAX (SrcOptions[Index]->Length - 1, 0);\r
772db4bb 527\r
e48e37fc 528 DstOptions[Index] = AllocatePool (Len);\r
772db4bb 529\r
530 if (DstOptions[Index] == NULL) {\r
531 goto ON_ERROR;\r
532 }\r
533\r
e48e37fc 534 CopyMem (DstOptions[Index], SrcOptions[Index], Len);\r
772db4bb 535 }\r
536 }\r
537\r
538 return EFI_SUCCESS;\r
539\r
540ON_ERROR:\r
541 DhcpCleanConfigure (Dst);\r
542 return EFI_OUT_OF_RESOURCES;\r
543}\r
544\r
545\r
546/**\r
547 Give up the control of the DHCP service to let other child\r
548 resume. Don't change the service's DHCP state and the Client\r
549 address and option list configure as required by RFC2131.\r
550\r
551 @param DhcpSb The DHCP service instance.\r
552\r
772db4bb 553**/\r
554VOID\r
555DhcpYieldControl (\r
556 IN DHCP_SERVICE *DhcpSb\r
557 )\r
558{\r
559 EFI_DHCP4_CONFIG_DATA *Config;\r
772db4bb 560\r
772db4bb 561 Config = &DhcpSb->ActiveConfig;\r
562\r
563 DhcpSb->ServiceState = DHCP_UNCONFIGED;\r
564 DhcpSb->ActiveChild = NULL;\r
565\r
566 if (Config->DiscoverTimeout != NULL) {\r
a4df47f1 567 FreePool (Config->DiscoverTimeout);\r
772db4bb 568\r
569 Config->DiscoverTryCount = 0;\r
570 Config->DiscoverTimeout = NULL;\r
571 }\r
572\r
573 if (Config->RequestTimeout != NULL) {\r
a4df47f1 574 FreePool (Config->RequestTimeout);\r
772db4bb 575\r
576 Config->RequestTryCount = 0;\r
577 Config->RequestTimeout = NULL;\r
578 }\r
579\r
580 Config->Dhcp4Callback = NULL;\r
581 Config->CallbackContext = NULL;\r
582}\r
583\r
584\r
585/**\r
f9204641 586 Initializes, changes, or resets the operational settings for the EFI DHCPv4 Protocol driver.\r
587\r
588 The Configure() function is used to initialize, change, or reset the operational\r
589 settings of the EFI DHCPv4 Protocol driver for the communication device on which\r
590 the EFI DHCPv4 Service Binding Protocol is installed. This function can be\r
591 successfully called only if both of the following are true:\r
592 * This instance of the EFI DHCPv4 Protocol driver is in the Dhcp4Stopped, Dhcp4Init,\r
593 Dhcp4InitReboot, or Dhcp4Bound states.\r
594 * No other EFI DHCPv4 Protocol driver instance that is controlled by this EFI\r
595 DHCPv4 Service Binding Protocol driver instance has configured this EFI DHCPv4\r
596 Protocol driver.\r
597 When this driver is in the Dhcp4Stopped state, it can transfer into one of the\r
598 following two possible initial states:\r
599 * Dhcp4Init\r
600 * Dhcp4InitReboot\r
601 The driver can transfer into these states by calling Configure() with a non-NULL\r
602 Dhcp4CfgData. The driver will transfer into the appropriate state based on the\r
603 supplied client network address in the ClientAddress parameter and DHCP options\r
604 in the OptionList parameter as described in RFC 2131.\r
605 When Configure() is called successfully while Dhcp4CfgData is set to NULL, the\r
606 default configuring data will be reset in the EFI DHCPv4 Protocol driver and\r
607 the state of the EFI DHCPv4 Protocol driver will not be changed. If one instance\r
608 wants to make it possible for another instance to configure the EFI DHCPv4 Protocol\r
609 driver, it must call this function with Dhcp4CfgData set to NULL.\r
610\r
3e8c18da 611 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
612 @param[in] Dhcp4CfgData Pointer to the EFI_DHCP4_CONFIG_DATA.\r
f9204641 613\r
614 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the Dhcp4Init or\r
615 Dhcp4InitReboot state, if the original state of this driver\r
616 was Dhcp4Stopped and the value of Dhcp4CfgData was\r
617 not NULL. Otherwise, the state was left unchanged.\r
618 @retval EFI_ACCESS_DENIED This instance of the EFI DHCPv4 Protocol driver was not in the\r
619 Dhcp4Stopped, Dhcp4Init, Dhcp4InitReboot, or Dhcp4Bound state;\r
620 Or onother instance of this EFI DHCPv4 Protocol driver is already\r
621 in a valid configured state.\r
622 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
623 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
624 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
772db4bb 625\r
626**/\r
772db4bb 627EFI_STATUS\r
628EFIAPI\r
629EfiDhcp4Configure (\r
630 IN EFI_DHCP4_PROTOCOL *This,\r
631 IN EFI_DHCP4_CONFIG_DATA *Dhcp4CfgData OPTIONAL\r
632 )\r
633{\r
634 EFI_DHCP4_CONFIG_DATA *Config;\r
635 DHCP_PROTOCOL *Instance;\r
636 DHCP_SERVICE *DhcpSb;\r
637 EFI_STATUS Status;\r
638 EFI_TPL OldTpl;\r
639 UINT32 Index;\r
640 IP4_ADDR Ip;\r
641\r
642 //\r
643 // First validate the parameters\r
644 //\r
645 if (This == NULL) {\r
646 return EFI_INVALID_PARAMETER;\r
647 }\r
648\r
649 if (Dhcp4CfgData != NULL) {\r
e2851998 650 if ((Dhcp4CfgData->DiscoverTryCount != 0) && (Dhcp4CfgData->DiscoverTimeout == NULL)) {\r
772db4bb 651 return EFI_INVALID_PARAMETER;\r
652 }\r
653\r
e2851998 654 if ((Dhcp4CfgData->RequestTryCount != 0) && (Dhcp4CfgData->RequestTimeout == NULL)) {\r
772db4bb 655 return EFI_INVALID_PARAMETER;\r
656 }\r
657\r
e2851998 658 if ((Dhcp4CfgData->OptionCount != 0) && (Dhcp4CfgData->OptionList == NULL)) {\r
772db4bb 659 return EFI_INVALID_PARAMETER;\r
660 }\r
661\r
e48e37fc 662 CopyMem (&Ip, &Dhcp4CfgData->ClientAddress, sizeof (IP4_ADDR));\r
772db4bb 663\r
f6b7393c 664 if ((Ip != 0) && !NetIp4IsUnicast (NTOHL (Ip), 0)) {\r
772db4bb 665\r
666 return EFI_INVALID_PARAMETER;\r
667 }\r
668 }\r
669\r
670 Instance = DHCP_INSTANCE_FROM_THIS (This);\r
671\r
672 if (Instance->Signature != DHCP_PROTOCOL_SIGNATURE) {\r
673 return EFI_INVALID_PARAMETER;\r
674 }\r
675\r
e48e37fc 676 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 677\r
678 DhcpSb = Instance->Service;\r
679 Config = &DhcpSb->ActiveConfig;\r
680\r
681 Status = EFI_ACCESS_DENIED;\r
682\r
683 if ((DhcpSb->DhcpState != Dhcp4Stopped) &&\r
684 (DhcpSb->DhcpState != Dhcp4Init) &&\r
685 (DhcpSb->DhcpState != Dhcp4InitReboot) &&\r
686 (DhcpSb->DhcpState != Dhcp4Bound)) {\r
687\r
688 goto ON_EXIT;\r
689 }\r
690\r
691 if ((DhcpSb->ActiveChild != NULL) && (DhcpSb->ActiveChild != Instance)) {\r
692 goto ON_EXIT;\r
693 }\r
694\r
695 if (Dhcp4CfgData != NULL) {\r
696 Status = EFI_OUT_OF_RESOURCES;\r
697 DhcpCleanConfigure (Config);\r
698\r
699 if (EFI_ERROR (DhcpCopyConfigure (Config, Dhcp4CfgData))) {\r
700 goto ON_EXIT;\r
701 }\r
702\r
703 DhcpSb->UserOptionLen = 0;\r
704\r
705 for (Index = 0; Index < Dhcp4CfgData->OptionCount; Index++) {\r
706 DhcpSb->UserOptionLen += Dhcp4CfgData->OptionList[Index]->Length + 2;\r
707 }\r
708\r
709 DhcpSb->ActiveChild = Instance;\r
710\r
711 if (DhcpSb->DhcpState == Dhcp4Stopped) {\r
712 DhcpSb->ClientAddr = EFI_NTOHL (Dhcp4CfgData->ClientAddress);\r
713\r
714 if (DhcpSb->ClientAddr != 0) {\r
715 DhcpSb->DhcpState = Dhcp4InitReboot;\r
716 } else {\r
717 DhcpSb->DhcpState = Dhcp4Init;\r
718 }\r
719 }\r
720\r
721 DhcpSb->ServiceState = DHCP_CONFIGED;\r
722 Status = EFI_SUCCESS;\r
723\r
724 } else if (DhcpSb->ActiveChild == Instance) {\r
725 Status = EFI_SUCCESS;\r
726 DhcpYieldControl (DhcpSb);\r
727 }\r
728\r
729ON_EXIT:\r
e48e37fc 730 gBS->RestoreTPL (OldTpl);\r
772db4bb 731 return Status;\r
732}\r
733\r
734\r
735/**\r
f9204641 736 Starts the DHCP configuration process.\r
737\r
738 The Start() function starts the DHCP configuration process. This function can\r
739 be called only when the EFI DHCPv4 Protocol driver is in the Dhcp4Init or\r
740 Dhcp4InitReboot state.\r
741 If the DHCP process completes successfully, the state of the EFI DHCPv4 Protocol\r
742 driver will be transferred through Dhcp4Selecting and Dhcp4Requesting to the\r
743 Dhcp4Bound state. The CompletionEvent will then be signaled if it is not NULL.\r
744 If the process aborts, either by the user or by some unexpected network error,\r
745 the state is restored to the Dhcp4Init state. The Start() function can be called\r
746 again to restart the process.\r
747 Refer to RFC 2131 for precise state transitions during this process. At the\r
748 time when each event occurs in this process, the callback function that was set\r
749 by EFI_DHCP4_PROTOCOL.Configure() will be called and the user can take this\r
750 opportunity to control the process.\r
e2851998 751\r
3e8c18da 752 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
753 @param[in] CompletionEvent If not NULL, indicates the event that will be signaled when the\r
754 EFI DHCPv4 Protocol driver is transferred into the\r
755 Dhcp4Bound state or when the DHCP process is aborted.\r
756 EFI_DHCP4_PROTOCOL.GetModeData() can be called to\r
757 check the completion status. If NULL,\r
758 EFI_DHCP4_PROTOCOL.Start() will wait until the driver\r
759 is transferred into the Dhcp4Bound state or the process fails.\r
f9204641 760\r
761 @retval EFI_SUCCESS The DHCP configuration process has started, or it has completed\r
762 when CompletionEvent is NULL.\r
763 @retval EFI_NOT_STARTED The EFI DHCPv4 Protocol driver is in the Dhcp4Stopped\r
764 state. EFI_DHCP4_PROTOCOL. Configure() needs to be called.\r
765 @retval EFI_INVALID_PARAMETER This is NULL.\r
766 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
767 @retval EFI_TIMEOUT The DHCP configuration process failed because no response was\r
768 received from the server within the specified timeout value.\r
769 @retval EFI_ABORTED The user aborted the DHCP process.\r
770 @retval EFI_ALREADY_STARTED Some other EFI DHCPv4 Protocol instance already started the\r
771 DHCP process.\r
772 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
dd29f3ed 773 @retval EFI_NO_MEDIA There was a media error.\r
772db4bb 774\r
775**/\r
772db4bb 776EFI_STATUS\r
777EFIAPI\r
778EfiDhcp4Start (\r
779 IN EFI_DHCP4_PROTOCOL *This,\r
780 IN EFI_EVENT CompletionEvent OPTIONAL\r
781 )\r
782{\r
783 DHCP_PROTOCOL *Instance;\r
784 DHCP_SERVICE *DhcpSb;\r
785 EFI_STATUS Status;\r
786 EFI_TPL OldTpl;\r
787\r
788 //\r
789 // First validate the parameters\r
790 //\r
791 if (This == NULL) {\r
792 return EFI_INVALID_PARAMETER;\r
793 }\r
794\r
795 Instance = DHCP_INSTANCE_FROM_THIS (This);\r
796\r
797 if (Instance->Signature != DHCP_PROTOCOL_SIGNATURE) {\r
798 return EFI_INVALID_PARAMETER;\r
799 }\r
800\r
e48e37fc 801 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 802 DhcpSb = Instance->Service;\r
803\r
804 if (DhcpSb->DhcpState == Dhcp4Stopped) {\r
805 Status = EFI_NOT_STARTED;\r
806 goto ON_ERROR;\r
807 }\r
808\r
809 if ((DhcpSb->DhcpState != Dhcp4Init) && (DhcpSb->DhcpState != Dhcp4InitReboot)) {\r
810 Status = EFI_ALREADY_STARTED;\r
811 goto ON_ERROR;\r
812 }\r
813\r
814 DhcpSb->IoStatus = EFI_ALREADY_STARTED;\r
815\r
816 if (EFI_ERROR (Status = DhcpInitRequest (DhcpSb))) {\r
817 goto ON_ERROR;\r
818 }\r
819\r
772db4bb 820\r
821 Instance->CompletionEvent = CompletionEvent;\r
822\r
823 //\r
e48e37fc 824 // Restore the TPL now, don't call poll function at TPL_CALLBACK.\r
772db4bb 825 //\r
e48e37fc 826 gBS->RestoreTPL (OldTpl);\r
772db4bb 827\r
828 if (CompletionEvent == NULL) {\r
829 while (DhcpSb->IoStatus == EFI_ALREADY_STARTED) {\r
b45b45b2 830 DhcpSb->UdpIo->Protocol.Udp4->Poll (DhcpSb->UdpIo->Protocol.Udp4);\r
772db4bb 831 }\r
832\r
833 return DhcpSb->IoStatus;\r
834 }\r
835\r
836 return EFI_SUCCESS;\r
837\r
838ON_ERROR:\r
e48e37fc 839 gBS->RestoreTPL (OldTpl);\r
772db4bb 840 return Status;\r
841}\r
842\r
843\r
844/**\r
f9204641 845 Extends the lease time by sending a request packet.\r
e2851998 846\r
f9204641 847 The RenewRebind() function is used to manually extend the lease time when the\r
848 EFI DHCPv4 Protocol driver is in the Dhcp4Bound state and the lease time has\r
849 not expired yet. This function will send a request packet to the previously\r
850 found server (or to any server when RebindRequest is TRUE) and transfer the\r
851 state into the Dhcp4Renewing state (or Dhcp4Rebinding when RebindingRequest is\r
852 TRUE). When a response is received, the state is returned to Dhcp4Bound.\r
853 If no response is received before the try count is exceeded (the RequestTryCount\r
854 field that is specified in EFI_DHCP4_CONFIG_DATA) but before the lease time that\r
855 was issued by the previous server expires, the driver will return to the Dhcp4Bound\r
856 state and the previous configuration is restored. The outgoing and incoming packets\r
857 can be captured by the EFI_DHCP4_CALLBACK function.\r
858\r
3e8c18da 859 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
860 @param[in] RebindRequest If TRUE, this function broadcasts the request packets and enters\r
861 the Dhcp4Rebinding state. Otherwise, it sends a unicast\r
862 request packet and enters the Dhcp4Renewing state.\r
863 @param[in] CompletionEvent If not NULL, this event is signaled when the renew/rebind phase\r
864 completes or some error occurs.\r
865 EFI_DHCP4_PROTOCOL.GetModeData() can be called to\r
866 check the completion status. If NULL,\r
867 EFI_DHCP4_PROTOCOL.RenewRebind() will busy-wait\r
868 until the DHCP process finishes.\r
f9204641 869\r
870 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the\r
871 Dhcp4Renewing state or is back to the Dhcp4Bound state.\r
872 @retval EFI_NOT_STARTED The EFI DHCPv4 Protocol driver is in the Dhcp4Stopped\r
873 state. EFI_DHCP4_PROTOCOL.Configure() needs to\r
874 be called.\r
875 @retval EFI_INVALID_PARAMETER This is NULL.\r
876 @retval EFI_TIMEOUT There was no response from the server when the try count was\r
877 exceeded.\r
878 @retval EFI_ACCESS_DENIED The driver is not in the Dhcp4Bound state.\r
879 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
772db4bb 880\r
881**/\r
772db4bb 882EFI_STATUS\r
883EFIAPI\r
884EfiDhcp4RenewRebind (\r
885 IN EFI_DHCP4_PROTOCOL *This,\r
886 IN BOOLEAN RebindRequest,\r
887 IN EFI_EVENT CompletionEvent OPTIONAL\r
888 )\r
889{\r
890 DHCP_PROTOCOL *Instance;\r
891 DHCP_SERVICE *DhcpSb;\r
892 EFI_STATUS Status;\r
893 EFI_TPL OldTpl;\r
894\r
895 //\r
896 // First validate the parameters\r
897 //\r
898 if (This == NULL) {\r
899 return EFI_INVALID_PARAMETER;\r
900 }\r
901\r
902 Instance = DHCP_INSTANCE_FROM_THIS (This);\r
903\r
904 if (Instance->Signature != DHCP_PROTOCOL_SIGNATURE) {\r
905 return EFI_INVALID_PARAMETER;\r
906 }\r
907\r
e48e37fc 908 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 909 DhcpSb = Instance->Service;\r
910\r
911 if (DhcpSb->DhcpState == Dhcp4Stopped) {\r
912 Status = EFI_NOT_STARTED;\r
ae0a0b06 913 goto ON_EXIT;\r
772db4bb 914 }\r
915\r
916 if (DhcpSb->DhcpState != Dhcp4Bound) {\r
917 Status = EFI_ACCESS_DENIED;\r
ae0a0b06 918 goto ON_EXIT;\r
772db4bb 919 }\r
920\r
921 if (DHCP_IS_BOOTP (DhcpSb->Para)) {\r
ae0a0b06 922 Status = EFI_SUCCESS;\r
923 goto ON_EXIT;\r
772db4bb 924 }\r
925\r
926 //\r
927 // Transit the states then send a extra DHCP request\r
928 //\r
929 if (!RebindRequest) {\r
930 DhcpSetState (DhcpSb, Dhcp4Renewing, FALSE);\r
931 } else {\r
932 DhcpSetState (DhcpSb, Dhcp4Rebinding, FALSE);\r
933 }\r
934\r
842d83d6 935 //\r
936 // Clear initial time to make sure that elapsed-time\r
937 // is set to 0 for first REQUEST in renewal process.\r
938 //\r
939 Instance->ElaspedTime = 0;\r
940\r
772db4bb 941 Status = DhcpSendMessage (\r
942 DhcpSb,\r
943 DhcpSb->Selected,\r
944 DhcpSb->Para,\r
945 DHCP_MSG_REQUEST,\r
67a58d0f 946 (UINT8 *) "Extra renew/rebind by the application"\r
772db4bb 947 );\r
948\r
949 if (EFI_ERROR (Status)) {\r
950 DhcpSetState (DhcpSb, Dhcp4Bound, FALSE);\r
ae0a0b06 951 goto ON_EXIT;\r
772db4bb 952 }\r
953\r
954 DhcpSb->ExtraRefresh = TRUE;\r
955 DhcpSb->IoStatus = EFI_ALREADY_STARTED;\r
956 Instance->RenewRebindEvent = CompletionEvent;\r
957\r
e48e37fc 958 gBS->RestoreTPL (OldTpl);\r
772db4bb 959\r
960 if (CompletionEvent == NULL) {\r
961 while (DhcpSb->IoStatus == EFI_ALREADY_STARTED) {\r
b45b45b2 962 DhcpSb->UdpIo->Protocol.Udp4->Poll (DhcpSb->UdpIo->Protocol.Udp4);\r
963\r
772db4bb 964 }\r
965\r
966 return DhcpSb->IoStatus;\r
967 }\r
968\r
969 return EFI_SUCCESS;\r
970\r
ae0a0b06 971ON_EXIT:\r
e48e37fc 972 gBS->RestoreTPL (OldTpl);\r
772db4bb 973 return Status;\r
974}\r
975\r
976\r
977/**\r
f9204641 978 Releases the current address configuration.\r
979\r
980 The Release() function releases the current configured IP address by doing either\r
981 of the following:\r
982 * Sending a DHCPRELEASE packet when the EFI DHCPv4 Protocol driver is in the\r
983 Dhcp4Bound state\r
984 * Setting the previously assigned IP address that was provided with the\r
985 EFI_DHCP4_PROTOCOL.Configure() function to 0.0.0.0 when the driver is in\r
986 Dhcp4InitReboot state\r
987 After a successful call to this function, the EFI DHCPv4 Protocol driver returns\r
988 to the Dhcp4Init state and any subsequent incoming packets will be discarded silently.\r
772db4bb 989\r
3e8c18da 990 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
772db4bb 991\r
f9204641 992 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the Dhcp4Init phase.\r
993 @retval EFI_INVALID_PARAMETER This is NULL.\r
994 @retval EFI_ACCESS_DENIED The EFI DHCPv4 Protocol driver is not Dhcp4InitReboot state.\r
995 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
772db4bb 996\r
997**/\r
772db4bb 998EFI_STATUS\r
999EFIAPI\r
1000EfiDhcp4Release (\r
1001 IN EFI_DHCP4_PROTOCOL *This\r
1002 )\r
1003{\r
1004 DHCP_PROTOCOL *Instance;\r
1005 DHCP_SERVICE *DhcpSb;\r
1006 EFI_STATUS Status;\r
1007 EFI_TPL OldTpl;\r
1008\r
1009 //\r
1010 // First validate the parameters\r
1011 //\r
1012 if (This == NULL) {\r
1013 return EFI_INVALID_PARAMETER;\r
1014 }\r
1015\r
1016 Instance = DHCP_INSTANCE_FROM_THIS (This);\r
1017\r
1018 if (Instance->Signature != DHCP_PROTOCOL_SIGNATURE) {\r
1019 return EFI_INVALID_PARAMETER;\r
1020 }\r
1021\r
1022 Status = EFI_SUCCESS;\r
e48e37fc 1023 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 1024 DhcpSb = Instance->Service;\r
1025\r
1026 if ((DhcpSb->DhcpState != Dhcp4InitReboot) && (DhcpSb->DhcpState != Dhcp4Bound)) {\r
1027 Status = EFI_ACCESS_DENIED;\r
1028 goto ON_EXIT;\r
1029 }\r
1030\r
1031 if (!DHCP_IS_BOOTP (DhcpSb->Para) && (DhcpSb->DhcpState == Dhcp4Bound)) {\r
1032 Status = DhcpSendMessage (\r
1033 DhcpSb,\r
1034 DhcpSb->Selected,\r
1035 DhcpSb->Para,\r
1036 DHCP_MSG_RELEASE,\r
1037 NULL\r
1038 );\r
1039\r
1040 if (EFI_ERROR (Status)) {\r
1041 Status = EFI_DEVICE_ERROR;\r
1042 goto ON_EXIT;\r
1043 }\r
1044 }\r
1045\r
1046 DhcpCleanLease (DhcpSb);\r
1047\r
1048ON_EXIT:\r
e48e37fc 1049 gBS->RestoreTPL (OldTpl);\r
772db4bb 1050 return Status;\r
1051}\r
1052\r
1053\r
1054/**\r
f9204641 1055 Stops the current address configuration.\r
e2851998 1056\r
f9204641 1057 The Stop() function is used to stop the DHCP configuration process. After this\r
1058 function is called successfully, the EFI DHCPv4 Protocol driver is transferred\r
1059 into the Dhcp4Stopped state. EFI_DHCP4_PROTOCOL.Configure() needs to be called\r
1060 before DHCP configuration process can be started again. This function can be\r
1061 called when the EFI DHCPv4 Protocol driver is in any state.\r
772db4bb 1062\r
3e8c18da 1063 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
772db4bb 1064\r
f9204641 1065 @retval EFI_SUCCESS The EFI DHCPv4 Protocol driver is now in the Dhcp4Stopped phase.\r
1066 @retval EFI_INVALID_PARAMETER This is NULL.\r
772db4bb 1067\r
1068**/\r
772db4bb 1069EFI_STATUS\r
1070EFIAPI\r
1071EfiDhcp4Stop (\r
1072 IN EFI_DHCP4_PROTOCOL *This\r
1073 )\r
1074{\r
1075 DHCP_PROTOCOL *Instance;\r
1076 DHCP_SERVICE *DhcpSb;\r
1077 EFI_TPL OldTpl;\r
1078\r
1079 //\r
1080 // First validate the parameters\r
1081 //\r
1082 if (This == NULL) {\r
1083 return EFI_INVALID_PARAMETER;\r
1084 }\r
1085\r
1086 Instance = DHCP_INSTANCE_FROM_THIS (This);\r
1087\r
1088 if (Instance->Signature != DHCP_PROTOCOL_SIGNATURE) {\r
1089 return EFI_INVALID_PARAMETER;\r
1090 }\r
1091\r
e48e37fc 1092 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 1093 DhcpSb = Instance->Service;\r
1094\r
1095 DhcpCleanLease (DhcpSb);\r
1096\r
1097 DhcpSb->DhcpState = Dhcp4Stopped;\r
1098 DhcpSb->ServiceState = DHCP_UNCONFIGED;\r
1099\r
e48e37fc 1100 gBS->RestoreTPL (OldTpl);\r
772db4bb 1101 return EFI_SUCCESS;\r
1102}\r
1103\r
1104\r
1105/**\r
f9204641 1106 Builds a DHCP packet, given the options to be appended or deleted or replaced.\r
1107\r
1108 The Build() function is used to assemble a new packet from the original packet\r
1109 by replacing or deleting existing options or appending new options. This function\r
1110 does not change any state of the EFI DHCPv4 Protocol driver and can be used at\r
1111 any time.\r
1112\r
3e8c18da 1113 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
1114 @param[in] SeedPacket Initial packet to be used as a base for building new packet.\r
1115 @param[in] DeleteCount Number of opcodes in the DeleteList.\r
1116 @param[in] DeleteList List of opcodes to be deleted from the seed packet.\r
1117 Ignored if DeleteCount is zero.\r
1118 @param[in] AppendCount Number of entries in the OptionList.\r
1119 @param[in] AppendList Pointer to a DHCP option list to be appended to SeedPacket.\r
1120 If SeedPacket also contains options in this list, they are\r
1121 replaced by new options (except pad option). Ignored if\r
1122 AppendCount is zero. Type EFI_DHCP4_PACKET_OPTION\r
1123 @param[out] NewPacket Pointer to storage for the pointer to the new allocated packet.\r
1124 Use the EFI Boot Service FreePool() on the resulting pointer\r
1125 when done with the packet.\r
f9204641 1126\r
1127 @retval EFI_SUCCESS The new packet was built.\r
1128 @retval EFI_OUT_OF_RESOURCES Storage for the new packet could not be allocated.\r
1129 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
772db4bb 1130\r
1131**/\r
772db4bb 1132EFI_STATUS\r
1133EFIAPI\r
1134EfiDhcp4Build (\r
1135 IN EFI_DHCP4_PROTOCOL *This,\r
1136 IN EFI_DHCP4_PACKET *SeedPacket,\r
1137 IN UINT32 DeleteCount,\r
1138 IN UINT8 *DeleteList OPTIONAL,\r
1139 IN UINT32 AppendCount,\r
1140 IN EFI_DHCP4_PACKET_OPTION *AppendList[] OPTIONAL,\r
1141 OUT EFI_DHCP4_PACKET **NewPacket\r
1142 )\r
1143{\r
1144 //\r
1145 // First validate the parameters\r
1146 //\r
1147 if ((This == NULL) || (NewPacket == NULL)) {\r
1148 return EFI_INVALID_PARAMETER;\r
1149 }\r
1150\r
1151 if ((SeedPacket == NULL) || (SeedPacket->Dhcp4.Magik != DHCP_OPTION_MAGIC) ||\r
1152 EFI_ERROR (DhcpValidateOptions (SeedPacket, NULL))) {\r
1153\r
1154 return EFI_INVALID_PARAMETER;\r
1155 }\r
1156\r
1157 if (((DeleteCount == 0) && (AppendCount == 0)) ||\r
1158 ((DeleteCount != 0) && (DeleteList == NULL)) ||\r
1159 ((AppendCount != 0) && (AppendList == NULL))) {\r
1160\r
1161 return EFI_INVALID_PARAMETER;\r
1162 }\r
1163\r
1164 return DhcpBuild (\r
1165 SeedPacket,\r
1166 DeleteCount,\r
1167 DeleteList,\r
1168 AppendCount,\r
1169 AppendList,\r
1170 NewPacket\r
1171 );\r
1172}\r
1173\r
f9204641 1174/**\r
1175 Callback by UdpIoCreatePort() when creating UdpIo for this Dhcp4 instance.\r
e2851998 1176\r
3e8c18da 1177 @param[in] UdpIo The UdpIo being created.\r
1178 @param[in] Context Dhcp4 instance.\r
e2851998 1179\r
f9204641 1180 @retval EFI_SUCCESS UdpIo is configured successfully.\r
1181 @retval other Other error occurs.\r
1182**/\r
c4a62a12 1183EFI_STATUS\r
e798cd87 1184EFIAPI\r
c4a62a12 1185Dhcp4InstanceConfigUdpIo (\r
b45b45b2 1186 IN UDP_IO *UdpIo,\r
c4a62a12 1187 IN VOID *Context\r
1188 )\r
1189{\r
1190 DHCP_PROTOCOL *Instance;\r
c4a62a12 1191 EFI_DHCP4_TRANSMIT_RECEIVE_TOKEN *Token;\r
1192 EFI_UDP4_CONFIG_DATA UdpConfigData;\r
ce964733
WJ
1193 IP4_ADDR ClientAddr;\r
1194 IP4_ADDR Ip; \r
1195 INTN Class; \r
1196 IP4_ADDR SubnetMask;\r
c4a62a12 1197\r
1198 Instance = (DHCP_PROTOCOL *) Context;\r
c4a62a12 1199 Token = Instance->Token;\r
1200\r
e48e37fc 1201 ZeroMem (&UdpConfigData, sizeof (EFI_UDP4_CONFIG_DATA));\r
c4a62a12 1202\r
1203 UdpConfigData.AcceptBroadcast = TRUE;\r
1204 UdpConfigData.AllowDuplicatePort = TRUE;\r
1205 UdpConfigData.TimeToLive = 64;\r
1206 UdpConfigData.DoNotFragment = TRUE;\r
1207\r
ce964733
WJ
1208 ClientAddr = EFI_NTOHL (Token->Packet->Dhcp4.Header.ClientAddr);\r
1209 Ip = HTONL (ClientAddr);\r
e48e37fc 1210 CopyMem (&UdpConfigData.StationAddress, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
ce964733
WJ
1211 \r
1212 Class = NetGetIpClass (ClientAddr);\r
1213 ASSERT (Class < IP4_ADDR_CLASSE);\r
1214 SubnetMask = gIp4AllMasks[Class << 3];\r
1215 Ip = HTONL (SubnetMask);\r
e48e37fc 1216 CopyMem (&UdpConfigData.SubnetMask, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
c4a62a12 1217\r
1218 if ((Token->ListenPointCount == 0) || (Token->ListenPoints[0].ListenPort == 0)) {\r
1219 UdpConfigData.StationPort = DHCP_CLIENT_PORT;\r
1220 } else {\r
1221 UdpConfigData.StationPort = Token->ListenPoints[0].ListenPort;\r
1222 }\r
1223\r
b45b45b2 1224 return UdpIo->Protocol.Udp4->Configure (UdpIo->Protocol.Udp4, &UdpConfigData);\r
c4a62a12 1225}\r
1226\r
f9204641 1227/**\r
1228 Create UdpIo for this Dhcp4 instance.\r
e2851998 1229\r
f9204641 1230 @param Instance The Dhcp4 instance.\r
e2851998 1231\r
f9204641 1232 @retval EFI_SUCCESS UdpIo is created successfully.\r
1233 @retval EFI_OUT_OF_RESOURCES Fails to create UdpIo because of limited\r
1234 resources or configuration failure.\r
1235**/\r
c4a62a12 1236EFI_STATUS\r
1237Dhcp4InstanceCreateUdpIo (\r
f9204641 1238 IN OUT DHCP_PROTOCOL *Instance\r
c4a62a12 1239 )\r
1240{\r
1241 DHCP_SERVICE *DhcpSb;\r
216f7970 1242 EFI_STATUS Status;\r
1243 VOID *Udp4;\r
c4a62a12 1244\r
1245 ASSERT (Instance->Token != NULL);\r
1246\r
1247 DhcpSb = Instance->Service;\r
b45b45b2 1248 Instance->UdpIo = UdpIoCreateIo (\r
1249 DhcpSb->Controller,\r
1250 DhcpSb->Image,\r
1251 Dhcp4InstanceConfigUdpIo,\r
1252 UDP_IO_UDP4_VERSION,\r
1253 Instance\r
1254 );\r
c4a62a12 1255 if (Instance->UdpIo == NULL) {\r
1256 return EFI_OUT_OF_RESOURCES;\r
1257 } else {\r
216f7970 1258 Status = gBS->OpenProtocol (\r
1259 Instance->UdpIo->UdpHandle,\r
1260 &gEfiUdp4ProtocolGuid,\r
1261 (VOID **) &Udp4,\r
1262 Instance->Service->Image,\r
1263 Instance->Handle,\r
1264 EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER\r
1265 );\r
1266 if (EFI_ERROR (Status)) {\r
1267 UdpIoFreeIo (Instance->UdpIo);\r
1268 Instance->UdpIo = NULL;\r
1269 }\r
1270 return Status;\r
c4a62a12 1271 }\r
1272}\r
1273\r
f9204641 1274/**\r
1275 Callback of Dhcp packet. Does nothing.\r
e2851998 1276\r
f9204641 1277 @param Arg The context.\r
3e8c18da 1278\r
f9204641 1279**/\r
c4a62a12 1280VOID\r
e798cd87 1281EFIAPI\r
c4a62a12 1282DhcpDummyExtFree (\r
1283 IN VOID *Arg\r
1284 )\r
982a9eae 1285{\r
c4a62a12 1286}\r
1287\r
f9204641 1288/**\r
1289 Callback of UdpIoRecvDatagram() that handles a Dhcp4 packet.\r
e2851998 1290\r
f9204641 1291 Only BOOTP responses will be handled that correspond to the Xid of the request\r
1292 sent out. The packet will be queued to the response queue.\r
e2851998 1293\r
f9204641 1294 @param UdpPacket The Dhcp4 packet.\r
b45b45b2 1295 @param EndPoint Udp4 address pair.\r
f9204641 1296 @param IoStatus Status of the input.\r
1297 @param Context Extra info for the input.\r
e2851998 1298\r
f9204641 1299**/\r
c4a62a12 1300VOID\r
e798cd87 1301EFIAPI\r
c4a62a12 1302PxeDhcpInput (\r
1303 NET_BUF *UdpPacket,\r
b45b45b2 1304 UDP_END_POINT *EndPoint,\r
c4a62a12 1305 EFI_STATUS IoStatus,\r
1306 VOID *Context\r
1307 )\r
1308{\r
1309 DHCP_PROTOCOL *Instance;\r
c4a62a12 1310 EFI_DHCP4_HEADER *Head;\r
1311 NET_BUF *Wrap;\r
1312 EFI_DHCP4_PACKET *Packet;\r
1313 EFI_DHCP4_TRANSMIT_RECEIVE_TOKEN *Token;\r
1314 UINT32 Len;\r
1315 EFI_STATUS Status;\r
1316\r
1317 Wrap = NULL;\r
1318 Instance = (DHCP_PROTOCOL *) Context;\r
1319 Token = Instance->Token;\r
c4a62a12 1320\r
1321 //\r
f9204641 1322 // Don't restart receive if error occurs or DHCP is destroyed.\r
c4a62a12 1323 //\r
1324 if (EFI_ERROR (IoStatus)) {\r
1325 return ;\r
1326 }\r
1327\r
1328 ASSERT (UdpPacket != NULL);\r
982a9eae 1329\r
c4a62a12 1330 //\r
1331 // Validate the packet received\r
1332 //\r
1333 if (UdpPacket->TotalSize < sizeof (EFI_DHCP4_HEADER)) {\r
1334 goto RESTART;\r
1335 }\r
982a9eae 1336\r
c4a62a12 1337 //\r
1338 // Copy the DHCP message to a continuous memory block, make the buffer size\r
1339 // of the EFI_DHCP4_PACKET a multiple of 4-byte.\r
1340 //\r
1341 Len = NET_ROUNDUP (sizeof (EFI_DHCP4_PACKET) + UdpPacket->TotalSize - sizeof (EFI_DHCP4_HEADER), 4);\r
1342 Wrap = NetbufAlloc (Len);\r
c4a62a12 1343 if (Wrap == NULL) {\r
1344 goto RESTART;\r
1345 }\r
1346\r
1347 Packet = (EFI_DHCP4_PACKET *) NetbufAllocSpace (Wrap, Len, NET_BUF_TAIL);\r
894d038a 1348 ASSERT (Packet != NULL);\r
1349\r
c4a62a12 1350 Packet->Size = Len;\r
1351 Head = &Packet->Dhcp4.Header;\r
1352 Packet->Length = NetbufCopy (UdpPacket, 0, UdpPacket->TotalSize, (UINT8 *) Head);\r
1353\r
1354 if (Packet->Length != UdpPacket->TotalSize) {\r
1355 goto RESTART;\r
1356 }\r
982a9eae 1357\r
c4a62a12 1358 //\r
1359 // Is this packet the answer to our packet?\r
1360 //\r
1361 if ((Head->OpCode != BOOTP_REPLY) ||\r
1362 (Head->Xid != Token->Packet->Dhcp4.Header.Xid) ||\r
ce964733 1363 (CompareMem (&Token->Packet->Dhcp4.Header.ClientHwAddr[0], Head->ClientHwAddr, Head->HwAddrLen) != 0)) {\r
c4a62a12 1364 goto RESTART;\r
1365 }\r
982a9eae 1366\r
c4a62a12 1367 //\r
1368 // Validate the options and retrieve the interested options\r
1369 //\r
1370 if ((Packet->Length > sizeof (EFI_DHCP4_HEADER) + sizeof (UINT32)) &&\r
1371 (Packet->Dhcp4.Magik == DHCP_OPTION_MAGIC) &&\r
1372 EFI_ERROR (DhcpValidateOptions (Packet, NULL))) {\r
1373\r
1374 goto RESTART;\r
1375 }\r
1376\r
1377 //\r
1378 // Keep this packet in the ResponseQueue.\r
1379 //\r
1380 NET_GET_REF (Wrap);\r
1381 NetbufQueAppend (&Instance->ResponseQueue, Wrap);\r
1382\r
1383RESTART:\r
1384\r
1385 NetbufFree (UdpPacket);\r
1386\r
1387 if (Wrap != NULL) {\r
1388 NetbufFree (Wrap);\r
1389 }\r
1390\r
1391 Status = UdpIoRecvDatagram (Instance->UdpIo, PxeDhcpInput, Instance, 0);\r
1392 if (EFI_ERROR (Status)) {\r
1393 PxeDhcpDone (Instance);\r
1394 }\r
1395}\r
1396\r
f9204641 1397/**\r
1398 Complete a Dhcp4 transaction and signal the upper layer.\r
e2851998 1399\r
f9204641 1400 @param Instance Dhcp4 instance.\r
f9204641 1401\r
1402**/\r
c4a62a12 1403VOID\r
1404PxeDhcpDone (\r
1405 IN DHCP_PROTOCOL *Instance\r
1406 )\r
1407{\r
1408 EFI_DHCP4_TRANSMIT_RECEIVE_TOKEN *Token;\r
1409\r
1410 Token = Instance->Token;\r
1411\r
1412 Token->ResponseCount = Instance->ResponseQueue.BufNum;\r
1413 if (Token->ResponseCount != 0) {\r
e48e37fc 1414 Token->ResponseList = (EFI_DHCP4_PACKET *) AllocatePool (Instance->ResponseQueue.BufSize);\r
c4a62a12 1415 if (Token->ResponseList == NULL) {\r
1416 Token->Status = EFI_OUT_OF_RESOURCES;\r
1417 goto SIGNAL_USER;\r
1418 }\r
1419\r
1420 //\r
f9204641 1421 // Copy the received DHCP responses.\r
c4a62a12 1422 //\r
1423 NetbufQueCopy (&Instance->ResponseQueue, 0, Instance->ResponseQueue.BufSize, (UINT8 *) Token->ResponseList);\r
1424 Token->Status = EFI_SUCCESS;\r
1425 } else {\r
1426 Token->ResponseList = NULL;\r
1427 Token->Status = EFI_TIMEOUT;\r
1428 }\r
1429\r
1430SIGNAL_USER:\r
1431 //\r
f9204641 1432 // Clean up the resources dedicated for this transmit receive transaction.\r
c4a62a12 1433 //\r
1434 NetbufQueFlush (&Instance->ResponseQueue);\r
b45b45b2 1435 UdpIoCleanIo (Instance->UdpIo);\r
216f7970 1436 gBS->CloseProtocol (\r
1437 Instance->UdpIo->UdpHandle,\r
1438 &gEfiUdp4ProtocolGuid,\r
1439 Instance->Service->Image,\r
1440 Instance->Handle\r
1441 );\r
b45b45b2 1442 UdpIoFreeIo (Instance->UdpIo);\r
c4a62a12 1443 Instance->UdpIo = NULL;\r
1444 Instance->Token = NULL;\r
1445\r
1446 if (Token->CompletionEvent != NULL) {\r
1447 gBS->SignalEvent (Token->CompletionEvent);\r
982a9eae 1448 }\r
c4a62a12 1449}\r
1450\r
772db4bb 1451\r
1452/**\r
ba39e316 1453 Transmits a DHCP formatted packet and optionally waits for responses.\r
e2851998 1454\r
f9204641 1455 The TransmitReceive() function is used to transmit a DHCP packet and optionally\r
1456 wait for the response from servers. This function does not change the state of\r
1457 the EFI DHCPv4 Protocol driver and thus can be used at any time.\r
ba39e316 1458\r
3e8c18da 1459 @param[in] This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
1460 @param[in] Token Pointer to the EFI_DHCP4_TRANSMIT_RECEIVE_TOKEN structure.\r
ba39e316 1461\r
1462 @retval EFI_SUCCESS The packet was successfully queued for transmission.\r
1463 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
1464 @retval EFI_NOT_READY The previous call to this function has not finished yet. Try to call\r
1465 this function after collection process completes.\r
1466 @retval EFI_NO_MAPPING The default station address is not available yet.\r
1467 @retval EFI_OUT_OF_RESOURCES Required system resources could not be allocated.\r
1468 @retval Others Some other unexpected error occurred.\r
772db4bb 1469\r
1470**/\r
772db4bb 1471EFI_STATUS\r
1472EFIAPI\r
1473EfiDhcp4TransmitReceive (\r
1474 IN EFI_DHCP4_PROTOCOL *This,\r
1475 IN EFI_DHCP4_TRANSMIT_RECEIVE_TOKEN *Token\r
1476 )\r
1477{\r
c4a62a12 1478 DHCP_PROTOCOL *Instance;\r
1479 EFI_TPL OldTpl;\r
1480 EFI_STATUS Status;\r
1481 NET_FRAGMENT Frag;\r
1482 NET_BUF *Wrap;\r
b45b45b2 1483 UDP_END_POINT EndPoint;\r
c4a62a12 1484 IP4_ADDR Ip;\r
1485 DHCP_SERVICE *DhcpSb;\r
b45b45b2 1486 EFI_IP_ADDRESS Gateway;\r
ce964733
WJ
1487 IP4_ADDR ClientAddr;\r
1488 INTN Class;\r
c4a62a12 1489 IP4_ADDR SubnetMask;\r
1490\r
1491 if ((This == NULL) || (Token == NULL) || (Token->Packet == NULL)) {\r
1492 return EFI_INVALID_PARAMETER;\r
1493 }\r
1494\r
1495 Instance = DHCP_INSTANCE_FROM_THIS (This);\r
1496 DhcpSb = Instance->Service;\r
ce964733 1497 DhcpSb->ActiveChild = Instance;\r
c4a62a12 1498\r
1499 if (Instance->Token != NULL) {\r
1500 //\r
1501 // The previous call to TransmitReceive is not finished.\r
1502 //\r
1503 return EFI_NOT_READY;\r
1504 }\r
1505\r
f9204641 1506 if ((Token->Packet->Dhcp4.Magik != DHCP_OPTION_MAGIC) ||\r
1507 (NTOHL (Token->Packet->Dhcp4.Header.Xid) == Instance->Service->Xid) ||\r
1508 (Token->TimeoutValue == 0) ||\r
1509 ((Token->ListenPointCount != 0) && (Token->ListenPoints == NULL)) ||\r
1510 EFI_ERROR (DhcpValidateOptions (Token->Packet, NULL)) ||\r
1511 EFI_IP4_EQUAL (&Token->RemoteAddress, &mZeroIp4Addr)\r
1512 ) {\r
c4a62a12 1513 //\r
f9204641 1514 // The DHCP packet isn't well-formed, the Transaction ID is already used,\r
1515 // the timeout value is zero, the ListenPoint is invalid, or the\r
1516 // RemoteAddress is zero.\r
c4a62a12 1517 //\r
1518 return EFI_INVALID_PARAMETER;\r
1519 }\r
1520\r
ce964733
WJ
1521 ClientAddr = EFI_NTOHL (Token->Packet->Dhcp4.Header.ClientAddr);\r
1522 \r
1523 if (ClientAddr == 0) {\r
c4a62a12 1524 return EFI_NO_MAPPING;\r
1525 }\r
1526\r
e48e37fc 1527 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
c4a62a12 1528\r
1529 //\r
1530 // Save the token and the timeout value.\r
1531 //\r
1532 Instance->Token = Token;\r
1533 Instance->Timeout = Token->TimeoutValue;\r
1534\r
1535 //\r
1536 // Create a UDP IO for this transmit receive transaction.\r
1537 //\r
1538 Status = Dhcp4InstanceCreateUdpIo (Instance);\r
1539 if (EFI_ERROR (Status)) {\r
1540 goto ON_ERROR;\r
1541 }\r
1542\r
982a9eae 1543 //\r
1544 // Save the Client Address is sent out\r
1545 //\r
f9204641 1546 CopyMem (\r
1547 &DhcpSb->ClientAddressSendOut[0],\r
1548 &Token->Packet->Dhcp4.Header.ClientHwAddr[0],\r
1549 Token->Packet->Dhcp4.Header.HwAddrLen\r
1550 );\r
982a9eae 1551\r
772db4bb 1552 //\r
c4a62a12 1553 // Wrap the DHCP packet into a net buffer.\r
772db4bb 1554 //\r
c4a62a12 1555 Frag.Bulk = (UINT8 *) &Token->Packet->Dhcp4;\r
1556 Frag.Len = Token->Packet->Length;\r
1557 Wrap = NetbufFromExt (&Frag, 1, 0, 0, DhcpDummyExtFree, NULL);\r
1558 if (Wrap == NULL) {\r
1559 Status = EFI_OUT_OF_RESOURCES;\r
1560 goto ON_ERROR;\r
1561 }\r
1562\r
1563 //\r
b45b45b2 1564 // Set the local address and local port to ZERO.\r
c4a62a12 1565 //\r
b45b45b2 1566 ZeroMem (&EndPoint, sizeof (UDP_END_POINT));\r
c4a62a12 1567\r
1568 //\r
1569 // Set the destination address and destination port.\r
1570 //\r
e48e37fc 1571 CopyMem (&Ip, &Token->RemoteAddress, sizeof (EFI_IPv4_ADDRESS));\r
b45b45b2 1572 EndPoint.RemoteAddr.Addr[0] = NTOHL (Ip);\r
c4a62a12 1573\r
1574 if (Token->RemotePort == 0) {\r
1575 EndPoint.RemotePort = DHCP_SERVER_PORT;\r
1576 } else {\r
1577 EndPoint.RemotePort = Token->RemotePort;\r
1578 }\r
1579\r
1580 //\r
1581 // Get the gateway.\r
1582 //\r
ce964733
WJ
1583 Class = NetGetIpClass (ClientAddr);\r
1584 ASSERT (Class < IP4_ADDR_CLASSE);\r
1585 SubnetMask = gIp4AllMasks[Class << 3];\r
b45b45b2 1586 ZeroMem (&Gateway, sizeof (Gateway));\r
ce964733 1587 if (!IP4_NET_EQUAL (ClientAddr, EndPoint.RemoteAddr.Addr[0], SubnetMask)) {\r
b45b45b2 1588 CopyMem (&Gateway.v4, &Token->GatewayAddress, sizeof (EFI_IPv4_ADDRESS));\r
1589 Gateway.Addr[0] = NTOHL (Gateway.Addr[0]);\r
c4a62a12 1590 }\r
1591\r
1592 //\r
1593 // Transmit the DHCP packet.\r
1594 //\r
b45b45b2 1595 Status = UdpIoSendDatagram (Instance->UdpIo, Wrap, &EndPoint, &Gateway, DhcpOnPacketSent, NULL);\r
c4a62a12 1596 if (EFI_ERROR (Status)) {\r
1597 NetbufFree (Wrap);\r
1598 goto ON_ERROR;\r
1599 }\r
1600\r
1601 //\r
1602 // Start to receive the DHCP response.\r
1603 //\r
1604 Status = UdpIoRecvDatagram (Instance->UdpIo, PxeDhcpInput, Instance, 0);\r
1605 if (EFI_ERROR (Status)) {\r
1606 goto ON_ERROR;\r
1607 }\r
1608\r
1609ON_ERROR:\r
1610\r
1611 if (EFI_ERROR (Status) && (Instance->UdpIo != NULL)) {\r
b45b45b2 1612 UdpIoCleanIo (Instance->UdpIo);\r
216f7970 1613 gBS->CloseProtocol (\r
1614 Instance->UdpIo->UdpHandle,\r
1615 &gEfiUdp4ProtocolGuid,\r
1616 Instance->Service->Image,\r
1617 Instance->Handle\r
1618 );\r
b45b45b2 1619 UdpIoFreeIo (Instance->UdpIo);\r
c4a62a12 1620 Instance->UdpIo = NULL;\r
1621 Instance->Token = NULL;\r
1622 }\r
1623\r
e48e37fc 1624 gBS->RestoreTPL (OldTpl);\r
c4a62a12 1625\r
1626 if (!EFI_ERROR (Status) && (Token->CompletionEvent == NULL)) {\r
1627 //\r
1628 // Keep polling until timeout if no error happens and the CompletionEvent\r
1629 // is NULL.\r
1630 //\r
c5bcc2e2 1631 while (TRUE) {\r
1632 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
1633 //\r
1634 // Raise TPL to protect the UDPIO in instance, in case that DhcpOnTimerTick\r
1635 // free it when timeout.\r
1636 //\r
1637 if (Instance->Timeout > 0) {\r
b45b45b2 1638 Instance->UdpIo->Protocol.Udp4->Poll (Instance->UdpIo->Protocol.Udp4);\r
c5bcc2e2 1639 gBS->RestoreTPL (OldTpl);\r
1640 } else {\r
1641 gBS->RestoreTPL (OldTpl);\r
1642 break;\r
1643 }\r
c4a62a12 1644 }\r
1645 }\r
1646\r
1647 return Status;\r
772db4bb 1648}\r
1649\r
1650\r
1651/**\r
1652 Callback function for DhcpIterateOptions. This callback sets the\r
1653 EFI_DHCP4_PACKET_OPTION array in the DHCP_PARSE_CONTEXT to point\r
1654 the individual DHCP option in the packet.\r
1655\r
3e8c18da 1656 @param[in] Tag The DHCP option type\r
1657 @param[in] Len Length of the DHCP option data\r
1658 @param[in] Data The DHCP option data\r
1659 @param[in] Context The context, to pass several parameters in.\r
772db4bb 1660\r
1661 @retval EFI_SUCCESS It always returns EFI_SUCCESS\r
1662\r
1663**/\r
772db4bb 1664EFI_STATUS\r
1665Dhcp4ParseCheckOption (\r
1666 IN UINT8 Tag,\r
1667 IN UINT8 Len,\r
1668 IN UINT8 *Data,\r
1669 IN VOID *Context\r
1670 )\r
1671{\r
1672 DHCP_PARSE_CONTEXT *Parse;\r
1673\r
1674 Parse = (DHCP_PARSE_CONTEXT *) Context;\r
1675 Parse->Index++;\r
1676\r
36ee91ca 1677 if (Parse->Index <= Parse->OptionCount) {\r
772db4bb 1678 //\r
50d7ebad 1679 // Use BASE_CR to get the memory position of EFI_DHCP4_PACKET_OPTION for\r
772db4bb 1680 // the EFI_DHCP4_PACKET_OPTION->Data because DhcpIterateOptions only\r
1681 // pass in the point to option data.\r
1682 //\r
50d7ebad 1683 Parse->Option[Parse->Index - 1] = BASE_CR (Data, EFI_DHCP4_PACKET_OPTION, Data);\r
772db4bb 1684 }\r
1685\r
1686 return EFI_SUCCESS;\r
1687}\r
1688\r
1689\r
1690/**\r
f9204641 1691 Parses the packed DHCP option data.\r
e2851998 1692\r
f9204641 1693 The Parse() function is used to retrieve the option list from a DHCP packet.\r
51195fbe 1694 If *OptionCount isn't zero, and there is enough space for all the DHCP options\r
f9204641 1695 in the Packet, each element of PacketOptionList is set to point to somewhere in\r
1696 the Packet->Dhcp4.Option where a new DHCP option begins. If RFC3396 is supported,\r
1697 the caller should reassemble the parsed DHCP options to get the finial result.\r
51195fbe 1698 If *OptionCount is zero or there isn't enough space for all of them, the number\r
f9204641 1699 of DHCP options in the Packet is returned in OptionCount.\r
1700\r
1701 @param This Pointer to the EFI_DHCP4_PROTOCOL instance.\r
1702 @param Packet Pointer to packet to be parsed.\r
1703 @param OptionCount On input, the number of entries in the PacketOptionList.\r
1704 On output, the number of entries that were written into the\r
1705 PacketOptionList.\r
1706 @param PacketOptionList List of packet option entries to be filled in. End option or pad\r
1707 options are not included.\r
1708\r
1709 @retval EFI_SUCCESS The packet was successfully parsed.\r
1710 @retval EFI_INVALID_PARAMETER Some parameter is NULL.\r
1711 @retval EFI_BUFFER_TOO_SMALL One or more of the following conditions is TRUE:\r
1712 1) *OptionCount is smaller than the number of options that\r
1713 were found in the Packet.\r
1714 2) PacketOptionList is NULL.\r
772db4bb 1715\r
1716**/\r
772db4bb 1717EFI_STATUS\r
1718EFIAPI\r
1719EfiDhcp4Parse (\r
1720 IN EFI_DHCP4_PROTOCOL *This,\r
1721 IN EFI_DHCP4_PACKET *Packet,\r
1722 IN OUT UINT32 *OptionCount,\r
1723 OUT EFI_DHCP4_PACKET_OPTION *PacketOptionList[] OPTIONAL\r
1724 )\r
1725{\r
1726 DHCP_PARSE_CONTEXT Context;\r
1727 EFI_STATUS Status;\r
1728\r
1729 //\r
1730 // First validate the parameters\r
1731 //\r
1732 if ((This == NULL) || (Packet == NULL) || (OptionCount == NULL)) {\r
1733 return EFI_INVALID_PARAMETER;\r
1734 }\r
1735\r
1736 if ((Packet->Size < Packet->Length + 2 * sizeof (UINT32)) ||\r
1737 (Packet->Dhcp4.Magik != DHCP_OPTION_MAGIC) ||\r
1738 EFI_ERROR (DhcpValidateOptions (Packet, NULL))) {\r
1739\r
1740 return EFI_INVALID_PARAMETER;\r
1741 }\r
1742\r
1743 if ((*OptionCount != 0) && (PacketOptionList == NULL)) {\r
1744 return EFI_BUFFER_TOO_SMALL;\r
1745 }\r
1746\r
e48e37fc 1747 ZeroMem (PacketOptionList, *OptionCount * sizeof (EFI_DHCP4_PACKET_OPTION *));\r
772db4bb 1748\r
1749 Context.Option = PacketOptionList;\r
1750 Context.OptionCount = *OptionCount;\r
1751 Context.Index = 0;\r
1752\r
1753 Status = DhcpIterateOptions (Packet, Dhcp4ParseCheckOption, &Context);\r
1754\r
1755 if (EFI_ERROR (Status)) {\r
1756 return Status;\r
1757 }\r
1758\r
1759 *OptionCount = Context.Index;\r
1760\r
1761 if (Context.Index > Context.OptionCount) {\r
1762 return EFI_BUFFER_TOO_SMALL;\r
1763 }\r
1764\r
1765 return EFI_SUCCESS;\r
1766}\r
842d83d6 1767\r
1768/**\r
1769 Set the elapsed time based on the given instance and the pointer to the\r
1770 elapsed time option.\r
1771\r
1772 @param[in] Elapsed The pointer to the position to append.\r
1773 @param[in] Instance The pointer to the Dhcp4 instance.\r
1774**/\r
1775VOID\r
1776SetElapsedTime (\r
1777 IN UINT16 *Elapsed,\r
1778 IN DHCP_PROTOCOL *Instance\r
1779 )\r
1780{\r
1781 WriteUnaligned16 (Elapsed, HTONS(Instance->ElaspedTime));\r
1782}\r