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772db4bb 1/** @file\r
2\r
018432f0 3Copyright (c) 2005 - 2018, Intel Corporation. All rights reserved.<BR>\r
e5eed7d3 4This program and the accompanying materials\r
772db4bb 5are licensed and made available under the terms and conditions of the BSD License\r
6which accompanies this distribution. The full text of the license may be found at\r
7http://opensource.org/licenses/bsd-license.php\r
8\r
9THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
10WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
11\r
772db4bb 12**/\r
13\r
14#include "Ip4Impl.h"\r
15\r
705f53a9 16EFI_IPSEC2_PROTOCOL *mIpSec = NULL;\r
a1503a32 17\r
5405e9a6 18/**\r
19 Gets the current operational settings for this instance of the EFI IPv4 Protocol driver.\r
e2851998 20\r
5405e9a6 21 The GetModeData() function returns the current operational mode data for this\r
22 driver instance. The data fields in EFI_IP4_MODE_DATA are read only. This\r
23 function is used optionally to retrieve the operational mode data of underlying\r
24 networks or drivers.\r
25\r
3e8c18da 26 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
27 @param[out] Ip4ModeData Pointer to the EFI IPv4 Protocol mode data structure.\r
28 @param[out] MnpConfigData Pointer to the managed network configuration data structure.\r
29 @param[out] SnpModeData Pointer to the simple network mode data structure.\r
5405e9a6 30\r
31 @retval EFI_SUCCESS The operation completed successfully.\r
32 @retval EFI_INVALID_PARAMETER This is NULL.\r
33 @retval EFI_OUT_OF_RESOURCES The required mode data could not be allocated.\r
772db4bb 34\r
5405e9a6 35**/\r
36EFI_STATUS\r
37EFIAPI\r
38EfiIp4GetModeData (\r
39 IN CONST EFI_IP4_PROTOCOL *This,\r
24af132f 40 OUT EFI_IP4_MODE_DATA *Ip4ModeData OPTIONAL,\r
41 OUT EFI_MANAGED_NETWORK_CONFIG_DATA *MnpConfigData OPTIONAL,\r
5405e9a6 42 OUT EFI_SIMPLE_NETWORK_MODE *SnpModeData OPTIONAL\r
43 );\r
e2851998 44\r
772db4bb 45/**\r
5405e9a6 46 Assigns an IPv4 address and subnet mask to this EFI IPv4 Protocol driver instance.\r
e2851998 47\r
5405e9a6 48 The Configure() function is used to set, change, or reset the operational\r
49 parameters and filter settings for this EFI IPv4 Protocol instance. Until these\r
50 parameters have been set, no network traffic can be sent or received by this\r
51 instance. Once the parameters have been reset (by calling this function with\r
52 IpConfigData set to NULL), no more traffic can be sent or received until these\r
53 parameters have been set again. Each EFI IPv4 Protocol instance can be started\r
54 and stopped independently of each other by enabling or disabling their receive\r
55 filter settings with the Configure() function.\r
e2851998 56\r
5405e9a6 57 When IpConfigData.UseDefaultAddress is set to FALSE, the new station address will\r
58 be appended as an alias address into the addresses list in the EFI IPv4 Protocol\r
59 driver. While set to TRUE, Configure() will trigger the EFI_IP4_CONFIG_PROTOCOL\r
60 to retrieve the default IPv4 address if it is not available yet. Clients could\r
61 frequently call GetModeData() to check the status to ensure that the default IPv4\r
62 address is ready.\r
e2851998 63\r
5405e9a6 64 If operational parameters are reset or changed, any pending transmit and receive\r
65 requests will be cancelled. Their completion token status will be set to EFI_ABORTED\r
66 and their events will be signaled.\r
67\r
3e8c18da 68 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
69 @param[in] IpConfigData Pointer to the EFI IPv4 Protocol configuration data structure.\r
5405e9a6 70\r
71 @retval EFI_SUCCESS The driver instance was successfully opened.\r
72 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
73 RARP, etc.) is not finished yet.\r
74 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:\r
75 @retval EFI_UNSUPPORTED One or more of the following conditions is TRUE:\r
76 A configuration protocol (DHCP, BOOTP, RARP, etc.) could\r
77 not be located when clients choose to use the default IPv4\r
78 address. This EFI IPv4 Protocol implementation does not\r
79 support this requested filter or timeout setting.\r
80 @retval EFI_OUT_OF_RESOURCES The EFI IPv4 Protocol driver instance data could not be allocated.\r
81 @retval EFI_ALREADY_STARTED The interface is already open and must be stopped before the\r
82 IPv4 address or subnet mask can be changed. The interface must\r
83 also be stopped when switching to/from raw packet mode.\r
84 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred. The EFI IPv4\r
85 Protocol driver instance is not opened.\r
772db4bb 86\r
5405e9a6 87**/\r
88EFI_STATUS\r
89EFIAPI\r
90EfiIp4Configure (\r
91 IN EFI_IP4_PROTOCOL *This,\r
92 IN EFI_IP4_CONFIG_DATA *IpConfigData OPTIONAL\r
93 );\r
e2851998 94\r
5405e9a6 95/**\r
96 Joins and leaves multicast groups.\r
e2851998 97\r
5405e9a6 98 The Groups() function is used to join and leave multicast group sessions. Joining\r
99 a group will enable reception of matching multicast packets. Leaving a group will\r
100 disable the multicast packet reception.\r
e2851998 101\r
5405e9a6 102 If JoinFlag is FALSE and GroupAddress is NULL, all joined groups will be left.\r
103\r
3e8c18da 104 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
105 @param[in] JoinFlag Set to TRUE to join the multicast group session and FALSE to leave.\r
106 @param[in] GroupAddress Pointer to the IPv4 multicast address.\r
5405e9a6 107\r
108 @retval EFI_SUCCESS The operation completed successfully.\r
109 @retval EFI_INVALID_PARAMETER One or more of the following is TRUE:\r
110 - This is NULL.\r
111 - JoinFlag is TRUE and GroupAddress is NULL.\r
112 - GroupAddress is not NULL and *GroupAddress is\r
113 not a multicast IPv4 address.\r
114 @retval EFI_NOT_STARTED This instance has not been started.\r
115 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
116 RARP, etc.) is not finished yet.\r
117 @retval EFI_OUT_OF_RESOURCES System resources could not be allocated.\r
118 @retval EFI_UNSUPPORTED This EFI IPv4 Protocol implementation does not support multicast groups.\r
119 @retval EFI_ALREADY_STARTED The group address is already in the group table (when\r
120 JoinFlag is TRUE).\r
121 @retval EFI_NOT_FOUND The group address is not in the group table (when JoinFlag is FALSE).\r
122 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
772db4bb 123\r
5405e9a6 124**/\r
125EFI_STATUS\r
126EFIAPI\r
127EfiIp4Groups (\r
128 IN EFI_IP4_PROTOCOL *This,\r
129 IN BOOLEAN JoinFlag,\r
130 IN EFI_IPv4_ADDRESS *GroupAddress OPTIONAL\r
131 );\r
e2851998 132\r
5405e9a6 133/**\r
134 Adds and deletes routing table entries.\r
135\r
136 The Routes() function adds a route to or deletes a route from the routing table.\r
e2851998 137\r
5405e9a6 138 Routes are determined by comparing the SubnetAddress with the destination IPv4\r
139 address arithmetically AND-ed with the SubnetMask. The gateway address must be\r
140 on the same subnet as the configured station address.\r
e2851998 141\r
5405e9a6 142 The default route is added with SubnetAddress and SubnetMask both set to 0.0.0.0.\r
143 The default route matches all destination IPv4 addresses that do not match any\r
144 other routes.\r
e2851998 145\r
5405e9a6 146 A GatewayAddress that is zero is a nonroute. Packets are sent to the destination\r
147 IP address if it can be found in the ARP cache or on the local subnet. One automatic\r
148 nonroute entry will be inserted into the routing table for outgoing packets that\r
149 are addressed to a local subnet (gateway address of 0.0.0.0).\r
e2851998 150\r
5405e9a6 151 Each EFI IPv4 Protocol instance has its own independent routing table. Those EFI\r
152 IPv4 Protocol instances that use the default IPv4 address will also have copies\r
153 of the routing table that was provided by the EFI_IP4_CONFIG_PROTOCOL, and these\r
154 copies will be updated whenever the EIF IPv4 Protocol driver reconfigures its\r
155 instances. As a result, client modification to the routing table will be lost.\r
156\r
3e8c18da 157 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
158 @param[in] DeleteRoute Set to TRUE to delete this route from the routing table. Set to\r
159 FALSE to add this route to the routing table. SubnetAddress\r
160 and SubnetMask are used as the key to each route entry.\r
161 @param[in] SubnetAddress The address of the subnet that needs to be routed.\r
162 @param[in] SubnetMask The subnet mask of SubnetAddress.\r
163 @param[in] GatewayAddress The unicast gateway IPv4 address for this route.\r
5405e9a6 164\r
165 @retval EFI_SUCCESS The operation completed successfully.\r
166 @retval EFI_NOT_STARTED The driver instance has not been started.\r
167 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
168 RARP, etc.) is not finished yet.\r
169 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:\r
170 - This is NULL.\r
171 - SubnetAddress is NULL.\r
172 - SubnetMask is NULL.\r
173 - GatewayAddress is NULL.\r
174 - *SubnetAddress is not a valid subnet address.\r
175 - *SubnetMask is not a valid subnet mask.\r
176 - *GatewayAddress is not a valid unicast IPv4 address.\r
177 @retval EFI_OUT_OF_RESOURCES Could not add the entry to the routing table.\r
178 @retval EFI_NOT_FOUND This route is not in the routing table (when DeleteRoute is TRUE).\r
179 @retval EFI_ACCESS_DENIED The route is already defined in the routing table (when\r
180 DeleteRoute is FALSE).\r
e2851998 181\r
5405e9a6 182**/\r
183EFI_STATUS\r
184EFIAPI\r
185EfiIp4Routes (\r
186 IN EFI_IP4_PROTOCOL *This,\r
187 IN BOOLEAN DeleteRoute,\r
188 IN EFI_IPv4_ADDRESS *SubnetAddress,\r
189 IN EFI_IPv4_ADDRESS *SubnetMask,\r
190 IN EFI_IPv4_ADDRESS *GatewayAddress\r
191 );\r
e2851998 192\r
5405e9a6 193/**\r
194 Places outgoing data packets into the transmit queue.\r
195\r
196 The Transmit() function places a sending request in the transmit queue of this\r
197 EFI IPv4 Protocol instance. Whenever the packet in the token is sent out or some\r
198 errors occur, the event in the token will be signaled and the status is updated.\r
199\r
3e8c18da 200 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
201 @param[in] Token Pointer to the transmit token.\r
5405e9a6 202\r
203 @retval EFI_SUCCESS The data has been queued for transmission.\r
204 @retval EFI_NOT_STARTED This instance has not been started.\r
205 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
206 RARP, etc.) is not finished yet.\r
207 @retval EFI_INVALID_PARAMETER One or more pameters are invalid.\r
208 @retval EFI_ACCESS_DENIED The transmit completion token with the same Token.Event\r
209 was already in the transmit queue.\r
210 @retval EFI_NOT_READY The completion token could not be queued because the transmit\r
e2851998 211 queue is full.\r
5405e9a6 212 @retval EFI_NOT_FOUND Not route is found to destination address.\r
213 @retval EFI_OUT_OF_RESOURCES Could not queue the transmit data.\r
214 @retval EFI_BUFFER_TOO_SMALL Token.Packet.TxData.TotalDataLength is too\r
215 short to transmit.\r
216 @retval EFI_BAD_BUFFER_SIZE The length of the IPv4 header + option length + total data length is\r
217 greater than MTU (or greater than the maximum packet size if\r
218 Token.Packet.TxData.OverrideData.\r
219 DoNotFragment is TRUE.)\r
220\r
221**/\r
222EFI_STATUS\r
223EFIAPI\r
224EfiIp4Transmit (\r
225 IN EFI_IP4_PROTOCOL *This,\r
226 IN EFI_IP4_COMPLETION_TOKEN *Token\r
227 );\r
e2851998 228\r
5405e9a6 229/**\r
230 Places a receiving request into the receiving queue.\r
e2851998 231\r
5405e9a6 232 The Receive() function places a completion token into the receive packet queue.\r
233 This function is always asynchronous.\r
e2851998 234\r
5405e9a6 235 The Token.Event field in the completion token must be filled in by the caller\r
236 and cannot be NULL. When the receive operation completes, the EFI IPv4 Protocol\r
237 driver updates the Token.Status and Token.Packet.RxData fields and the Token.Event\r
238 is signaled.\r
239\r
3e8c18da 240 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
241 @param[in] Token Pointer to a token that is associated with the receive data descriptor.\r
5405e9a6 242\r
243 @retval EFI_SUCCESS The receive completion token was cached.\r
244 @retval EFI_NOT_STARTED This EFI IPv4 Protocol instance has not been started.\r
245 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP, RARP, etc.)\r
246 is not finished yet.\r
247 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:\r
248 - This is NULL.\r
249 - Token is NULL.\r
250 - Token.Event is NULL.\r
251 @retval EFI_OUT_OF_RESOURCES The receive completion token could not be queued due to a lack of system\r
252 resources (usually memory).\r
253 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
254 The EFI IPv4 Protocol instance has been reset to startup defaults.\r
255 EFI_ACCESS_DENIED The receive completion token with the same Token.Event was already\r
256 in the receive queue.\r
257 @retval EFI_NOT_READY The receive request could not be queued because the receive queue is full.\r
258 @retval EFI_ICMP_ERROR An ICMP error packet was received.\r
259\r
260**/\r
261EFI_STATUS\r
262EFIAPI\r
263EfiIp4Receive (\r
264 IN EFI_IP4_PROTOCOL *This,\r
265 IN EFI_IP4_COMPLETION_TOKEN *Token\r
266 );\r
e2851998 267\r
5405e9a6 268/**\r
269 Abort an asynchronous transmit or receive request.\r
e2851998 270\r
5405e9a6 271 The Cancel() function is used to abort a pending transmit or receive request.\r
272 If the token is in the transmit or receive request queues, after calling this\r
273 function, Token->Status will be set to EFI_ABORTED and then Token->Event will\r
274 be signaled. If the token is not in one of the queues, which usually means the\r
275 asynchronous operation has completed, this function will not signal the token\r
276 and EFI_NOT_FOUND is returned.\r
277\r
3e8c18da 278 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
279 @param[in] Token Pointer to a token that has been issued by\r
280 EFI_IP4_PROTOCOL.Transmit() or\r
281 EFI_IP4_PROTOCOL.Receive(). If NULL, all pending\r
282 tokens are aborted. Type EFI_IP4_COMPLETION_TOKEN is\r
283 defined in EFI_IP4_PROTOCOL.Transmit().\r
5405e9a6 284\r
285 @retval EFI_SUCCESS The asynchronous I/O request was aborted and\r
286 Token.->Event was signaled. When Token is NULL, all\r
287 pending requests were aborted and their events were signaled.\r
288 @retval EFI_INVALID_PARAMETER This is NULL.\r
289 @retval EFI_NOT_STARTED This instance has not been started.\r
290 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
291 RARP, etc.) is not finished yet.\r
292 @retval EFI_NOT_FOUND When Token is not NULL, the asynchronous I/O request was\r
293 not found in the transmit or receive queue. It has either completed\r
294 or was not issued by Transmit() and Receive().\r
295\r
296**/\r
297EFI_STATUS\r
298EFIAPI\r
299EfiIp4Cancel (\r
300 IN EFI_IP4_PROTOCOL *This,\r
301 IN EFI_IP4_COMPLETION_TOKEN *Token OPTIONAL\r
302 );\r
e2851998 303\r
5405e9a6 304/**\r
305 Polls for incoming data packets and processes outgoing data packets.\r
e2851998 306\r
5405e9a6 307 The Poll() function polls for incoming data packets and processes outgoing data\r
308 packets. Network drivers and applications can call the EFI_IP4_PROTOCOL.Poll()\r
309 function to increase the rate that data packets are moved between the communications\r
310 device and the transmit and receive queues.\r
e2851998 311\r
5405e9a6 312 In some systems the periodic timer event may not poll the underlying communications\r
313 device fast enough to transmit and/or receive all data packets without missing\r
314 incoming packets or dropping outgoing packets. Drivers and applications that are\r
315 experiencing packet loss should try calling the EFI_IP4_PROTOCOL.Poll() function\r
316 more often.\r
317\r
3e8c18da 318 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
5405e9a6 319\r
320 @retval EFI_SUCCESS Incoming or outgoing data was processed.\r
321 @retval EFI_NOT_STARTED This EFI IPv4 Protocol instance has not been started.\r
322 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
323 RARP, etc.) is not finished yet.\r
324 @retval EFI_INVALID_PARAMETER This is NULL.\r
325 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
326 @retval EFI_NOT_READY No incoming or outgoing data is processed.\r
327 @retval EFI_TIMEOUT Data was dropped out of the transmit and/or receive queue.\r
328 Consider increasing the polling rate.\r
329\r
330**/\r
331EFI_STATUS\r
332EFIAPI\r
333EfiIp4Poll (\r
334 IN EFI_IP4_PROTOCOL *This\r
335 );\r
336\r
337EFI_IP4_PROTOCOL\r
338mEfiIp4ProtocolTemplete = {\r
339 EfiIp4GetModeData,\r
340 EfiIp4Configure,\r
341 EfiIp4Groups,\r
342 EfiIp4Routes,\r
343 EfiIp4Transmit,\r
344 EfiIp4Receive,\r
345 EfiIp4Cancel,\r
346 EfiIp4Poll\r
347};\r
348\r
349/**\r
350 Gets the current operational settings for this instance of the EFI IPv4 Protocol driver.\r
e2851998 351\r
5405e9a6 352 The GetModeData() function returns the current operational mode data for this\r
353 driver instance. The data fields in EFI_IP4_MODE_DATA are read only. This\r
354 function is used optionally to retrieve the operational mode data of underlying\r
355 networks or drivers.\r
356\r
3e8c18da 357 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
358 @param[out] Ip4ModeData Pointer to the EFI IPv4 Protocol mode data structure.\r
359 @param[out] MnpConfigData Pointer to the managed network configuration data structure.\r
360 @param[out] SnpModeData Pointer to the simple network mode data structure.\r
5405e9a6 361\r
362 @retval EFI_SUCCESS The operation completed successfully.\r
363 @retval EFI_INVALID_PARAMETER This is NULL.\r
364 @retval EFI_OUT_OF_RESOURCES The required mode data could not be allocated.\r
772db4bb 365\r
366**/\r
772db4bb 367EFI_STATUS\r
368EFIAPI\r
369EfiIp4GetModeData (\r
370 IN CONST EFI_IP4_PROTOCOL *This,\r
24af132f 371 OUT EFI_IP4_MODE_DATA *Ip4ModeData OPTIONAL,\r
372 OUT EFI_MANAGED_NETWORK_CONFIG_DATA *MnpConfigData OPTIONAL,\r
772db4bb 373 OUT EFI_SIMPLE_NETWORK_MODE *SnpModeData OPTIONAL\r
374 )\r
375{\r
376 IP4_PROTOCOL *IpInstance;\r
377 IP4_SERVICE *IpSb;\r
378 EFI_IP4_CONFIG_DATA *Config;\r
379 EFI_STATUS Status;\r
380 EFI_TPL OldTpl;\r
381 IP4_ADDR Ip;\r
382\r
383 if (This == NULL) {\r
384 return EFI_INVALID_PARAMETER;\r
385 }\r
386\r
e48e37fc 387 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 388 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
389 IpSb = IpInstance->Service;\r
390\r
391 if (Ip4ModeData != NULL) {\r
392 //\r
393 // IsStarted is "whether the EfiIp4Configure has been called".\r
394 // IsConfigured is "whether the station address has been configured"\r
395 //\r
396 Ip4ModeData->IsStarted = (BOOLEAN)(IpInstance->State == IP4_STATE_CONFIGED);\r
687a2e5f 397 CopyMem (&Ip4ModeData->ConfigData, &IpInstance->ConfigData, sizeof (Ip4ModeData->ConfigData));\r
772db4bb 398 Ip4ModeData->IsConfigured = FALSE;\r
399\r
400 Ip4ModeData->GroupCount = IpInstance->GroupCount;\r
401 Ip4ModeData->GroupTable = (EFI_IPv4_ADDRESS *) IpInstance->Groups;\r
402\r
403 Ip4ModeData->IcmpTypeCount = 23;\r
404 Ip4ModeData->IcmpTypeList = mIp4SupportedIcmp;\r
405\r
406 Ip4ModeData->RouteTable = NULL;\r
407 Ip4ModeData->RouteCount = 0;\r
408\r
a1503a32 409 Ip4ModeData->MaxPacketSize = IpSb->MaxPacketSize;\r
410\r
772db4bb 411 //\r
412 // return the current station address for this IP child. So,\r
413 // the user can get the default address through this. Some\r
414 // application wants to know it station address even it is\r
415 // using the default one, such as a ftp server.\r
416 //\r
417 if (Ip4ModeData->IsStarted) {\r
418 Config = &Ip4ModeData->ConfigData;\r
419\r
420 Ip = HTONL (IpInstance->Interface->Ip);\r
e48e37fc 421 CopyMem (&Config->StationAddress, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
772db4bb 422\r
423 Ip = HTONL (IpInstance->Interface->SubnetMask);\r
e48e37fc 424 CopyMem (&Config->SubnetMask, &Ip, sizeof (EFI_IPv4_ADDRESS));\r
772db4bb 425\r
426 Ip4ModeData->IsConfigured = IpInstance->Interface->Configured;\r
427\r
428 //\r
429 // Build a EFI route table for user from the internal route table.\r
430 //\r
431 Status = Ip4BuildEfiRouteTable (IpInstance);\r
432\r
433 if (EFI_ERROR (Status)) {\r
e48e37fc 434 gBS->RestoreTPL (OldTpl);\r
772db4bb 435 return Status;\r
436 }\r
437\r
438 Ip4ModeData->RouteTable = IpInstance->EfiRouteTable;\r
439 Ip4ModeData->RouteCount = IpInstance->EfiRouteCount;\r
440 }\r
441 }\r
442\r
dd29f3ed 443 //\r
444 // Get fresh mode data from MNP, since underlying media status may change\r
445 //\r
446 Status = IpSb->Mnp->GetModeData (IpSb->Mnp, MnpConfigData, SnpModeData);\r
772db4bb 447\r
e48e37fc 448 gBS->RestoreTPL (OldTpl);\r
dd29f3ed 449 return Status;\r
772db4bb 450}\r
451\r
452\r
453/**\r
454 Config the MNP parameter used by IP. The IP driver use one MNP\r
455 child to transmit/receive frames. By default, it configures MNP\r
456 to receive unicast/multicast/broadcast. And it will enable/disable\r
457 the promiscous receive according to whether there is IP child\r
5405e9a6 458 enable that or not. If Force is FALSE, it will iterate through\r
772db4bb 459 all the IP children to check whether the promiscuous receive\r
460 setting has been changed. If it hasn't been changed, it won't\r
5405e9a6 461 reconfigure the MNP. If Force is TRUE, the MNP is configured no\r
772db4bb 462 matter whether that is changed or not.\r
463\r
3e8c18da 464 @param[in] IpSb The IP4 service instance that is to be changed.\r
465 @param[in] Force Force the configuration or not.\r
772db4bb 466\r
467 @retval EFI_SUCCESS The MNP is successfully configured/reconfigured.\r
468 @retval Others Configuration failed.\r
469\r
470**/\r
471EFI_STATUS\r
472Ip4ServiceConfigMnp (\r
473 IN IP4_SERVICE *IpSb,\r
474 IN BOOLEAN Force\r
475 )\r
476{\r
e48e37fc 477 LIST_ENTRY *Entry;\r
478 LIST_ENTRY *ProtoEntry;\r
772db4bb 479 IP4_INTERFACE *IpIf;\r
480 IP4_PROTOCOL *IpInstance;\r
481 BOOLEAN Reconfig;\r
482 BOOLEAN PromiscReceive;\r
483 EFI_STATUS Status;\r
484\r
485 Reconfig = FALSE;\r
486 PromiscReceive = FALSE;\r
487\r
488 if (!Force) {\r
489 //\r
490 // Iterate through the IP children to check whether promiscuous\r
491 // receive setting has been changed. Update the interface's receive\r
492 // filter also.\r
493 //\r
494 NET_LIST_FOR_EACH (Entry, &IpSb->Interfaces) {\r
495\r
496 IpIf = NET_LIST_USER_STRUCT (Entry, IP4_INTERFACE, Link);\r
497 IpIf->PromiscRecv = FALSE;\r
498\r
499 NET_LIST_FOR_EACH (ProtoEntry, &IpIf->IpInstances) {\r
500 IpInstance = NET_LIST_USER_STRUCT (ProtoEntry, IP4_PROTOCOL, AddrLink);\r
501\r
502 if (IpInstance->ConfigData.AcceptPromiscuous) {\r
503 IpIf->PromiscRecv = TRUE;\r
504 PromiscReceive = TRUE;\r
505 }\r
506 }\r
507 }\r
508\r
509 //\r
510 // If promiscuous receive isn't changed, it isn't necessary to reconfigure.\r
511 //\r
512 if (PromiscReceive == IpSb->MnpConfigData.EnablePromiscuousReceive) {\r
513 return EFI_SUCCESS;\r
514 }\r
515\r
516 Reconfig = TRUE;\r
517 IpSb->MnpConfigData.EnablePromiscuousReceive = PromiscReceive;\r
518 }\r
519\r
520 Status = IpSb->Mnp->Configure (IpSb->Mnp, &IpSb->MnpConfigData);\r
521\r
522 //\r
523 // recover the original configuration if failed to set the configure.\r
524 //\r
525 if (EFI_ERROR (Status) && Reconfig) {\r
687a2e5f 526 IpSb->MnpConfigData.EnablePromiscuousReceive = (BOOLEAN) !PromiscReceive;\r
772db4bb 527 }\r
528\r
529 return Status;\r
530}\r
531\r
532\r
772db4bb 533/**\r
534 Intiialize the IP4_PROTOCOL structure to the unconfigured states.\r
535\r
536 @param IpSb The IP4 service instance.\r
537 @param IpInstance The IP4 child instance.\r
538\r
772db4bb 539**/\r
540VOID\r
541Ip4InitProtocol (\r
5405e9a6 542 IN IP4_SERVICE *IpSb,\r
543 IN OUT IP4_PROTOCOL *IpInstance\r
772db4bb 544 )\r
545{\r
546 ASSERT ((IpSb != NULL) && (IpInstance != NULL));\r
547\r
e48e37fc 548 ZeroMem (IpInstance, sizeof (IP4_PROTOCOL));\r
772db4bb 549\r
550 IpInstance->Signature = IP4_PROTOCOL_SIGNATURE;\r
687a2e5f 551 CopyMem (&IpInstance->Ip4Proto, &mEfiIp4ProtocolTemplete, sizeof (IpInstance->Ip4Proto));\r
772db4bb 552 IpInstance->State = IP4_STATE_UNCONFIGED;\r
4bb89650 553 IpInstance->InDestroy = FALSE;\r
772db4bb 554 IpInstance->Service = IpSb;\r
555\r
e48e37fc 556 InitializeListHead (&IpInstance->Link);\r
772db4bb 557 NetMapInit (&IpInstance->RxTokens);\r
558 NetMapInit (&IpInstance->TxTokens);\r
e48e37fc 559 InitializeListHead (&IpInstance->Received);\r
560 InitializeListHead (&IpInstance->Delivered);\r
561 InitializeListHead (&IpInstance->AddrLink);\r
772db4bb 562\r
e48e37fc 563 EfiInitializeLock (&IpInstance->RecycleLock, TPL_NOTIFY);\r
772db4bb 564}\r
565\r
566\r
567/**\r
568 Configure the IP4 child. If the child is already configured,\r
569 change the configuration parameter. Otherwise configure it\r
570 for the first time. The caller should validate the configuration\r
571 before deliver them to it. It also don't do configure NULL.\r
572\r
3e8c18da 573 @param[in, out] IpInstance The IP4 child to configure.\r
574 @param[in] Config The configure data.\r
772db4bb 575\r
576 @retval EFI_SUCCESS The IP4 child is successfully configured.\r
577 @retval EFI_DEVICE_ERROR Failed to free the pending transive or to\r
578 configure underlying MNP or other errors.\r
579 @retval EFI_NO_MAPPING The IP4 child is configured to use default\r
580 address, but the default address hasn't been\r
581 configured. The IP4 child doesn't need to be\r
582 reconfigured when default address is configured.\r
5405e9a6 583 @retval EFI_OUT_OF_RESOURCES No more memory space is available.\r
584 @retval other Other error occurs.\r
772db4bb 585\r
586**/\r
587EFI_STATUS\r
588Ip4ConfigProtocol (\r
5405e9a6 589 IN OUT IP4_PROTOCOL *IpInstance,\r
590 IN EFI_IP4_CONFIG_DATA *Config\r
772db4bb 591 )\r
592{\r
593 IP4_SERVICE *IpSb;\r
594 IP4_INTERFACE *IpIf;\r
595 EFI_STATUS Status;\r
596 IP4_ADDR Ip;\r
597 IP4_ADDR Netmask;\r
216f7970 598 EFI_ARP_PROTOCOL *Arp;\r
ad1484c3
JW
599 EFI_IP4_CONFIG2_PROTOCOL *Ip4Config2;\r
600 EFI_IP4_CONFIG2_POLICY Policy;\r
772db4bb 601\r
602 IpSb = IpInstance->Service;\r
603\r
ad1484c3
JW
604 Ip4Config2 = NULL;\r
605\r
772db4bb 606 //\r
607 // User is changing packet filters. It must be stopped\r
608 // before the station address can be changed.\r
609 //\r
610 if (IpInstance->State == IP4_STATE_CONFIGED) {\r
611 //\r
612 // Cancel all the pending transmit/receive from upper layer\r
613 //\r
614 Status = Ip4Cancel (IpInstance, NULL);\r
615\r
616 if (EFI_ERROR (Status)) {\r
617 return EFI_DEVICE_ERROR;\r
618 }\r
619\r
687a2e5f 620 CopyMem (&IpInstance->ConfigData, Config, sizeof (IpInstance->ConfigData));\r
772db4bb 621 return EFI_SUCCESS;\r
622 }\r
623\r
624 //\r
625 // Configure a fresh IP4 protocol instance. Create a route table.\r
626 // Each IP child has its own route table, which may point to the\r
627 // default table if it is using default address.\r
628 //\r
629 Status = EFI_OUT_OF_RESOURCES;\r
630 IpInstance->RouteTable = Ip4CreateRouteTable ();\r
631\r
632 if (IpInstance->RouteTable == NULL) {\r
633 return Status;\r
634 }\r
635\r
636 //\r
637 // Set up the interface.\r
638 //\r
e48e37fc 639 CopyMem (&Ip, &Config->StationAddress, sizeof (IP4_ADDR));\r
640 CopyMem (&Netmask, &Config->SubnetMask, sizeof (IP4_ADDR));\r
772db4bb 641\r
642 Ip = NTOHL (Ip);\r
643 Netmask = NTOHL (Netmask);\r
644\r
645 if (!Config->UseDefaultAddress) {\r
646 //\r
647 // Find whether there is already an interface with the same\r
648 // station address. All the instances with the same station\r
649 // address shares one interface.\r
650 //\r
651 IpIf = Ip4FindStationAddress (IpSb, Ip, Netmask);\r
652\r
653 if (IpIf != NULL) {\r
654 NET_GET_REF (IpIf);\r
655\r
656 } else {\r
657 IpIf = Ip4CreateInterface (IpSb->Mnp, IpSb->Controller, IpSb->Image);\r
658\r
659 if (IpIf == NULL) {\r
660 goto ON_ERROR;\r
661 }\r
662\r
663 Status = Ip4SetAddress (IpIf, Ip, Netmask);\r
664\r
665 if (EFI_ERROR (Status)) {\r
666 Status = EFI_DEVICE_ERROR;\r
667 Ip4FreeInterface (IpIf, IpInstance);\r
668 goto ON_ERROR;\r
669 }\r
670\r
e48e37fc 671 InsertTailList (&IpSb->Interfaces, &IpIf->Link);\r
772db4bb 672 }\r
673\r
674 //\r
675 // Add a route to this connected network in the route table\r
676 //\r
677 Ip4AddRoute (IpInstance->RouteTable, Ip, Netmask, IP4_ALLZERO_ADDRESS);\r
678\r
679 } else {\r
680 //\r
7648748e 681 // Use the default address. Check the state.\r
772db4bb 682 //\r
683 if (IpSb->State == IP4_SERVICE_UNSTARTED) {\r
ad1484c3 684 //\r
d1102dba 685 // Trigger the EFI_IP4_CONFIG2_PROTOCOL to retrieve the\r
ad1484c3
JW
686 // default IPv4 address if it is not available yet.\r
687 //\r
688 Policy = IpSb->Ip4Config2Instance.Policy;\r
689 if (Policy != Ip4Config2PolicyDhcp) {\r
690 Ip4Config2 = &IpSb->Ip4Config2Instance.Ip4Config2;\r
691 Policy = Ip4Config2PolicyDhcp;\r
692 Status= Ip4Config2->SetData (\r
693 Ip4Config2,\r
694 Ip4Config2DataTypePolicy,\r
695 sizeof (EFI_IP4_CONFIG2_POLICY),\r
696 &Policy\r
697 );\r
698 if (EFI_ERROR (Status)) {\r
699 goto ON_ERROR;\r
700 }\r
923473ed 701 }\r
772db4bb 702 }\r
703\r
704 IpIf = IpSb->DefaultInterface;\r
705 NET_GET_REF (IpSb->DefaultInterface);\r
706\r
707 //\r
708 // If default address is used, so is the default route table.\r
709 // Any route set by the instance has the precedence over the\r
710 // routes in the default route table. Link the default table\r
711 // after the instance's table. Routing will search the local\r
712 // table first.\r
713 //\r
714 NET_GET_REF (IpSb->DefaultRouteTable);\r
715 IpInstance->RouteTable->Next = IpSb->DefaultRouteTable;\r
716 }\r
717\r
718 IpInstance->Interface = IpIf;\r
216f7970 719 if (IpIf->Arp != NULL) {\r
720 Arp = NULL;\r
721 Status = gBS->OpenProtocol (\r
722 IpIf->ArpHandle,\r
723 &gEfiArpProtocolGuid,\r
724 (VOID **) &Arp,\r
725 gIp4DriverBinding.DriverBindingHandle,\r
726 IpInstance->Handle,\r
727 EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER\r
728 );\r
729 if (EFI_ERROR (Status)) {\r
7155d0a6 730 Ip4FreeInterface (IpIf, IpInstance);\r
7648748e 731 goto ON_ERROR;\r
216f7970 732 }\r
733 }\r
e48e37fc 734 InsertTailList (&IpIf->IpInstances, &IpInstance->AddrLink);\r
772db4bb 735\r
687a2e5f 736 CopyMem (&IpInstance->ConfigData, Config, sizeof (IpInstance->ConfigData));\r
772db4bb 737 IpInstance->State = IP4_STATE_CONFIGED;\r
738\r
739 //\r
740 // Although EFI_NO_MAPPING is an error code, the IP child has been\r
741 // successfully configured and doesn't need reconfiguration when\r
742 // default address is acquired.\r
743 //\r
744 if (Config->UseDefaultAddress && IP4_NO_MAPPING (IpInstance)) {\r
745 return EFI_NO_MAPPING;\r
746 }\r
747\r
748 return EFI_SUCCESS;\r
749\r
750ON_ERROR:\r
751 Ip4FreeRouteTable (IpInstance->RouteTable);\r
752 IpInstance->RouteTable = NULL;\r
753 return Status;\r
754}\r
755\r
756\r
757/**\r
758 Clean up the IP4 child, release all the resources used by it.\r
759\r
3e8c18da 760 @param[in] IpInstance The IP4 child to clean up.\r
772db4bb 761\r
1f6729ff 762 @retval EFI_SUCCESS The IP4 child is cleaned up.\r
763 @retval EFI_DEVICE_ERROR Some resources failed to be released.\r
772db4bb 764\r
765**/\r
766EFI_STATUS\r
767Ip4CleanProtocol (\r
768 IN IP4_PROTOCOL *IpInstance\r
769 )\r
770{\r
771 if (EFI_ERROR (Ip4Cancel (IpInstance, NULL))) {\r
772 return EFI_DEVICE_ERROR;\r
773 }\r
774\r
775 if (EFI_ERROR (Ip4Groups (IpInstance, FALSE, NULL))) {\r
776 return EFI_DEVICE_ERROR;\r
777 }\r
778\r
779 //\r
780 // Some packets haven't been recycled. It is because either the\r
781 // user forgets to recycle the packets, or because the callback\r
782 // hasn't been called. Just leave it alone.\r
783 //\r
e48e37fc 784 if (!IsListEmpty (&IpInstance->Delivered)) {\r
772db4bb 785 ;\r
786 }\r
787\r
788 if (IpInstance->Interface != NULL) {\r
e48e37fc 789 RemoveEntryList (&IpInstance->AddrLink);\r
216f7970 790 if (IpInstance->Interface->Arp != NULL) {\r
791 gBS->CloseProtocol (\r
792 IpInstance->Interface->ArpHandle,\r
793 &gEfiArpProtocolGuid,\r
794 gIp4DriverBinding.DriverBindingHandle,\r
795 IpInstance->Handle\r
796 );\r
797 }\r
772db4bb 798 Ip4FreeInterface (IpInstance->Interface, IpInstance);\r
799 IpInstance->Interface = NULL;\r
800 }\r
801\r
802 if (IpInstance->RouteTable != NULL) {\r
803 if (IpInstance->RouteTable->Next != NULL) {\r
804 Ip4FreeRouteTable (IpInstance->RouteTable->Next);\r
805 }\r
806\r
807 Ip4FreeRouteTable (IpInstance->RouteTable);\r
808 IpInstance->RouteTable = NULL;\r
809 }\r
810\r
811 if (IpInstance->EfiRouteTable != NULL) {\r
766c7483 812 FreePool (IpInstance->EfiRouteTable);\r
772db4bb 813 IpInstance->EfiRouteTable = NULL;\r
814 IpInstance->EfiRouteCount = 0;\r
815 }\r
816\r
817 if (IpInstance->Groups != NULL) {\r
766c7483 818 FreePool (IpInstance->Groups);\r
772db4bb 819 IpInstance->Groups = NULL;\r
820 IpInstance->GroupCount = 0;\r
821 }\r
822\r
823 NetMapClean (&IpInstance->TxTokens);\r
824\r
825 NetMapClean (&IpInstance->RxTokens);\r
826\r
827 return EFI_SUCCESS;\r
828}\r
829\r
830\r
772db4bb 831/**\r
5405e9a6 832 Assigns an IPv4 address and subnet mask to this EFI IPv4 Protocol driver instance.\r
e2851998 833\r
5405e9a6 834 The Configure() function is used to set, change, or reset the operational\r
835 parameters and filter settings for this EFI IPv4 Protocol instance. Until these\r
836 parameters have been set, no network traffic can be sent or received by this\r
837 instance. Once the parameters have been reset (by calling this function with\r
838 IpConfigData set to NULL), no more traffic can be sent or received until these\r
839 parameters have been set again. Each EFI IPv4 Protocol instance can be started\r
840 and stopped independently of each other by enabling or disabling their receive\r
841 filter settings with the Configure() function.\r
e2851998 842\r
5405e9a6 843 When IpConfigData.UseDefaultAddress is set to FALSE, the new station address will\r
844 be appended as an alias address into the addresses list in the EFI IPv4 Protocol\r
845 driver. While set to TRUE, Configure() will trigger the EFI_IP4_CONFIG_PROTOCOL\r
846 to retrieve the default IPv4 address if it is not available yet. Clients could\r
847 frequently call GetModeData() to check the status to ensure that the default IPv4\r
848 address is ready.\r
e2851998 849\r
5405e9a6 850 If operational parameters are reset or changed, any pending transmit and receive\r
851 requests will be cancelled. Their completion token status will be set to EFI_ABORTED\r
852 and their events will be signaled.\r
853\r
3e8c18da 854 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
855 @param[in] IpConfigData Pointer to the EFI IPv4 Protocol configuration data structure.\r
5405e9a6 856\r
857 @retval EFI_SUCCESS The driver instance was successfully opened.\r
858 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
859 RARP, etc.) is not finished yet.\r
860 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:\r
861 @retval EFI_UNSUPPORTED One or more of the following conditions is TRUE:\r
862 A configuration protocol (DHCP, BOOTP, RARP, etc.) could\r
863 not be located when clients choose to use the default IPv4\r
864 address. This EFI IPv4 Protocol implementation does not\r
865 support this requested filter or timeout setting.\r
866 @retval EFI_OUT_OF_RESOURCES The EFI IPv4 Protocol driver instance data could not be allocated.\r
867 @retval EFI_ALREADY_STARTED The interface is already open and must be stopped before the\r
868 IPv4 address or subnet mask can be changed. The interface must\r
869 also be stopped when switching to/from raw packet mode.\r
870 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred. The EFI IPv4\r
871 Protocol driver instance is not opened.\r
772db4bb 872\r
873**/\r
772db4bb 874EFI_STATUS\r
875EFIAPI\r
876EfiIp4Configure (\r
877 IN EFI_IP4_PROTOCOL *This,\r
878 IN EFI_IP4_CONFIG_DATA *IpConfigData OPTIONAL\r
879 )\r
880{\r
881 IP4_PROTOCOL *IpInstance;\r
882 EFI_IP4_CONFIG_DATA *Current;\r
883 EFI_TPL OldTpl;\r
884 EFI_STATUS Status;\r
885 BOOLEAN AddrOk;\r
886 IP4_ADDR IpAddress;\r
887 IP4_ADDR SubnetMask;\r
888\r
889 //\r
890 // First, validate the parameters\r
891 //\r
892 if (This == NULL) {\r
893 return EFI_INVALID_PARAMETER;\r
894 }\r
895\r
896 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
e48e37fc 897 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 898\r
899 //\r
900 // Validate the configuration first.\r
901 //\r
902 if (IpConfigData != NULL) {\r
772db4bb 903\r
e48e37fc 904 CopyMem (&IpAddress, &IpConfigData->StationAddress, sizeof (IP4_ADDR));\r
905 CopyMem (&SubnetMask, &IpConfigData->SubnetMask, sizeof (IP4_ADDR));\r
772db4bb 906\r
907 IpAddress = NTOHL (IpAddress);\r
908 SubnetMask = NTOHL (SubnetMask);\r
909\r
910 //\r
911 // Check whether the station address is a valid unicast address\r
912 //\r
913 if (!IpConfigData->UseDefaultAddress) {\r
914 AddrOk = Ip4StationAddressValid (IpAddress, SubnetMask);\r
915\r
916 if (!AddrOk) {\r
917 Status = EFI_INVALID_PARAMETER;\r
918 goto ON_EXIT;\r
919 }\r
920 }\r
921\r
922 //\r
923 // User can only update packet filters when already configured.\r
924 // If it wants to change the station address, it must configure(NULL)\r
925 // the instance first.\r
926 //\r
927 if (IpInstance->State == IP4_STATE_CONFIGED) {\r
928 Current = &IpInstance->ConfigData;\r
929\r
930 if (Current->UseDefaultAddress != IpConfigData->UseDefaultAddress) {\r
931 Status = EFI_ALREADY_STARTED;\r
932 goto ON_EXIT;\r
933 }\r
934\r
935 if (!Current->UseDefaultAddress &&\r
84b5c78e 936 (!EFI_IP4_EQUAL (&Current->StationAddress, &IpConfigData->StationAddress) ||\r
937 !EFI_IP4_EQUAL (&Current->SubnetMask, &IpConfigData->SubnetMask))) {\r
772db4bb 938 Status = EFI_ALREADY_STARTED;\r
939 goto ON_EXIT;\r
940 }\r
941\r
942 if (Current->UseDefaultAddress && IP4_NO_MAPPING (IpInstance)) {\r
ae0a0b06 943 Status = EFI_NO_MAPPING;\r
944 goto ON_EXIT;\r
772db4bb 945 }\r
946 }\r
947 }\r
948\r
949 //\r
950 // Configure the instance or clean it up.\r
951 //\r
952 if (IpConfigData != NULL) {\r
953 Status = Ip4ConfigProtocol (IpInstance, IpConfigData);\r
954 } else {\r
955 Status = Ip4CleanProtocol (IpInstance);\r
956\r
957 //\r
4bb89650 958 // Consider the following valid sequence: Mnp is unloaded-->Ip Stopped-->Udp Stopped,\r
772db4bb 959 // Configure (ThisIp, NULL). If the state is changed to UNCONFIGED,\r
960 // the unload fails miserably.\r
961 //\r
962 if (IpInstance->State == IP4_STATE_CONFIGED) {\r
963 IpInstance->State = IP4_STATE_UNCONFIGED;\r
964 }\r
965 }\r
966\r
967 //\r
968 // Update the MNP's configure data. Ip4ServiceConfigMnp will check\r
969 // whether it is necessary to reconfigure the MNP.\r
970 //\r
971 Ip4ServiceConfigMnp (IpInstance->Service, FALSE);\r
972\r
772db4bb 973ON_EXIT:\r
e48e37fc 974 gBS->RestoreTPL (OldTpl);\r
772db4bb 975 return Status;\r
976\r
977}\r
978\r
979\r
980/**\r
981 Change the IP4 child's multicast setting. The caller\r
982 should make sure that the parameters is valid.\r
983\r
3e8c18da 984 @param[in] IpInstance The IP4 child to change the setting.\r
1f6729ff 985 @param[in] JoinFlag TRUE to join the group, otherwise leave it.\r
986 @param[in] GroupAddress The target group address.\r
772db4bb 987\r
1f6729ff 988 @retval EFI_ALREADY_STARTED Want to join the group, but already a member of it.\r
772db4bb 989 @retval EFI_OUT_OF_RESOURCES Failed to allocate some resources.\r
1f6729ff 990 @retval EFI_DEVICE_ERROR Failed to set the group configuraton.\r
772db4bb 991 @retval EFI_SUCCESS Successfully updated the group setting.\r
992 @retval EFI_NOT_FOUND Try to leave the group which it isn't a member.\r
993\r
994**/\r
995EFI_STATUS\r
996Ip4Groups (\r
997 IN IP4_PROTOCOL *IpInstance,\r
998 IN BOOLEAN JoinFlag,\r
999 IN EFI_IPv4_ADDRESS *GroupAddress OPTIONAL\r
1000 )\r
1001{\r
1002 IP4_ADDR *Members;\r
1003 IP4_ADDR Group;\r
1004 UINT32 Index;\r
1005\r
1006 //\r
1007 // Add it to the instance's Groups, and join the group by IGMP.\r
1008 // IpInstance->Groups is in network byte order. IGMP operates in\r
1009 // host byte order\r
1010 //\r
1011 if (JoinFlag) {\r
e2851998 1012 //\r
894d038a 1013 // When JoinFlag is TRUE, GroupAddress shouldn't be NULL.\r
1014 //\r
1015 ASSERT (GroupAddress != NULL);\r
e48e37fc 1016 CopyMem (&Group, GroupAddress, sizeof (IP4_ADDR));\r
772db4bb 1017\r
1018 for (Index = 0; Index < IpInstance->GroupCount; Index++) {\r
1019 if (IpInstance->Groups[Index] == Group) {\r
1020 return EFI_ALREADY_STARTED;\r
1021 }\r
1022 }\r
1023\r
1024 Members = Ip4CombineGroups (IpInstance->Groups, IpInstance->GroupCount, Group);\r
1025\r
1026 if (Members == NULL) {\r
1027 return EFI_OUT_OF_RESOURCES;\r
1028 }\r
1029\r
1030 if (EFI_ERROR (Ip4JoinGroup (IpInstance, NTOHL (Group)))) {\r
766c7483 1031 FreePool (Members);\r
772db4bb 1032 return EFI_DEVICE_ERROR;\r
1033 }\r
1034\r
1035 if (IpInstance->Groups != NULL) {\r
766c7483 1036 FreePool (IpInstance->Groups);\r
772db4bb 1037 }\r
1038\r
1039 IpInstance->Groups = Members;\r
1040 IpInstance->GroupCount++;\r
1041\r
1042 return EFI_SUCCESS;\r
1043 }\r
1044\r
1045 //\r
1046 // Leave the group. Leave all the groups if GroupAddress is NULL.\r
1047 // Must iterate from the end to the beginning because the GroupCount\r
1048 // is decreamented each time an address is removed..\r
1049 //\r
1050 for (Index = IpInstance->GroupCount; Index > 0 ; Index--) {\r
d1102dba 1051 Group = 0;\r
1e0db7b1 1052 if(IpInstance->Groups != NULL) {\r
d1102dba
LG
1053 Group = IpInstance->Groups[Index - 1];\r
1054 }\r
1055\r
84b5c78e 1056 if ((GroupAddress == NULL) || EFI_IP4_EQUAL (&Group, GroupAddress)) {\r
772db4bb 1057 if (EFI_ERROR (Ip4LeaveGroup (IpInstance, NTOHL (Group)))) {\r
1058 return EFI_DEVICE_ERROR;\r
1059 }\r
1060\r
1061 Ip4RemoveGroupAddr (IpInstance->Groups, IpInstance->GroupCount, Group);\r
1062 IpInstance->GroupCount--;\r
1063\r
1064 if (IpInstance->GroupCount == 0) {\r
1065 ASSERT (Index == 1);\r
1066\r
766c7483 1067 FreePool (IpInstance->Groups);\r
772db4bb 1068 IpInstance->Groups = NULL;\r
1069 }\r
1070\r
1071 if (GroupAddress != NULL) {\r
1072 return EFI_SUCCESS;\r
1073 }\r
1074 }\r
1075 }\r
1076\r
1077 return ((GroupAddress != NULL) ? EFI_NOT_FOUND : EFI_SUCCESS);\r
1078}\r
1079\r
1080\r
1081/**\r
5405e9a6 1082 Joins and leaves multicast groups.\r
e2851998 1083\r
5405e9a6 1084 The Groups() function is used to join and leave multicast group sessions. Joining\r
1085 a group will enable reception of matching multicast packets. Leaving a group will\r
1086 disable the multicast packet reception.\r
e2851998 1087\r
5405e9a6 1088 If JoinFlag is FALSE and GroupAddress is NULL, all joined groups will be left.\r
1089\r
3e8c18da 1090 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
1091 @param[in] JoinFlag Set to TRUE to join the multicast group session and FALSE to leave.\r
1092 @param[in] GroupAddress Pointer to the IPv4 multicast address.\r
5405e9a6 1093\r
1094 @retval EFI_SUCCESS The operation completed successfully.\r
1095 @retval EFI_INVALID_PARAMETER One or more of the following is TRUE:\r
1096 - This is NULL.\r
1097 - JoinFlag is TRUE and GroupAddress is NULL.\r
1098 - GroupAddress is not NULL and *GroupAddress is\r
1099 not a multicast IPv4 address.\r
1100 @retval EFI_NOT_STARTED This instance has not been started.\r
1101 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
1102 RARP, etc.) is not finished yet.\r
1103 @retval EFI_OUT_OF_RESOURCES System resources could not be allocated.\r
1104 @retval EFI_UNSUPPORTED This EFI IPv4 Protocol implementation does not support multicast groups.\r
1105 @retval EFI_ALREADY_STARTED The group address is already in the group table (when\r
1106 JoinFlag is TRUE).\r
1107 @retval EFI_NOT_FOUND The group address is not in the group table (when JoinFlag is FALSE).\r
1108 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
772db4bb 1109\r
1110**/\r
772db4bb 1111EFI_STATUS\r
1112EFIAPI\r
1113EfiIp4Groups (\r
1114 IN EFI_IP4_PROTOCOL *This,\r
1115 IN BOOLEAN JoinFlag,\r
1116 IN EFI_IPv4_ADDRESS *GroupAddress OPTIONAL\r
1117 )\r
1118{\r
1119 IP4_PROTOCOL *IpInstance;\r
1120 EFI_STATUS Status;\r
1121 EFI_TPL OldTpl;\r
1122 IP4_ADDR McastIp;\r
1123\r
1124 if ((This == NULL) || (JoinFlag && (GroupAddress == NULL))) {\r
1125 return EFI_INVALID_PARAMETER;\r
1126 }\r
1127\r
1128 if (GroupAddress != NULL) {\r
e48e37fc 1129 CopyMem (&McastIp, GroupAddress, sizeof (IP4_ADDR));\r
772db4bb 1130\r
1131 if (!IP4_IS_MULTICAST (NTOHL (McastIp))) {\r
1132 return EFI_INVALID_PARAMETER;\r
1133 }\r
1134 }\r
1135\r
1136 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
e48e37fc 1137 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 1138\r
1139 if (IpInstance->State != IP4_STATE_CONFIGED) {\r
1140 Status = EFI_NOT_STARTED;\r
1141 goto ON_EXIT;\r
1142 }\r
1143\r
1144 if (IpInstance->ConfigData.UseDefaultAddress && IP4_NO_MAPPING (IpInstance)) {\r
1145 Status = EFI_NO_MAPPING;\r
1146 goto ON_EXIT;\r
1147 }\r
1148\r
1149 Status = Ip4Groups (IpInstance, JoinFlag, GroupAddress);\r
1150\r
1151ON_EXIT:\r
e48e37fc 1152 gBS->RestoreTPL (OldTpl);\r
772db4bb 1153 return Status;\r
1154}\r
1155\r
1156\r
1157/**\r
5405e9a6 1158 Adds and deletes routing table entries.\r
1159\r
1160 The Routes() function adds a route to or deletes a route from the routing table.\r
e2851998 1161\r
5405e9a6 1162 Routes are determined by comparing the SubnetAddress with the destination IPv4\r
1163 address arithmetically AND-ed with the SubnetMask. The gateway address must be\r
1164 on the same subnet as the configured station address.\r
e2851998 1165\r
5405e9a6 1166 The default route is added with SubnetAddress and SubnetMask both set to 0.0.0.0.\r
1167 The default route matches all destination IPv4 addresses that do not match any\r
1168 other routes.\r
e2851998 1169\r
5405e9a6 1170 A GatewayAddress that is zero is a nonroute. Packets are sent to the destination\r
1171 IP address if it can be found in the ARP cache or on the local subnet. One automatic\r
1172 nonroute entry will be inserted into the routing table for outgoing packets that\r
1173 are addressed to a local subnet (gateway address of 0.0.0.0).\r
e2851998 1174\r
5405e9a6 1175 Each EFI IPv4 Protocol instance has its own independent routing table. Those EFI\r
1176 IPv4 Protocol instances that use the default IPv4 address will also have copies\r
1177 of the routing table that was provided by the EFI_IP4_CONFIG_PROTOCOL, and these\r
1178 copies will be updated whenever the EIF IPv4 Protocol driver reconfigures its\r
1179 instances. As a result, client modification to the routing table will be lost.\r
1180\r
3e8c18da 1181 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
1182 @param[in] DeleteRoute Set to TRUE to delete this route from the routing table. Set to\r
1183 FALSE to add this route to the routing table. SubnetAddress\r
1184 and SubnetMask are used as the key to each route entry.\r
1185 @param[in] SubnetAddress The address of the subnet that needs to be routed.\r
1186 @param[in] SubnetMask The subnet mask of SubnetAddress.\r
1187 @param[in] GatewayAddress The unicast gateway IPv4 address for this route.\r
5405e9a6 1188\r
1189 @retval EFI_SUCCESS The operation completed successfully.\r
1190 @retval EFI_NOT_STARTED The driver instance has not been started.\r
1191 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
1192 RARP, etc.) is not finished yet.\r
1193 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:\r
1194 - This is NULL.\r
1195 - SubnetAddress is NULL.\r
1196 - SubnetMask is NULL.\r
1197 - GatewayAddress is NULL.\r
1198 - *SubnetAddress is not a valid subnet address.\r
1199 - *SubnetMask is not a valid subnet mask.\r
1200 - *GatewayAddress is not a valid unicast IPv4 address.\r
1201 @retval EFI_OUT_OF_RESOURCES Could not add the entry to the routing table.\r
1202 @retval EFI_NOT_FOUND This route is not in the routing table (when DeleteRoute is TRUE).\r
1203 @retval EFI_ACCESS_DENIED The route is already defined in the routing table (when\r
1204 DeleteRoute is FALSE).\r
e2851998 1205\r
772db4bb 1206**/\r
772db4bb 1207EFI_STATUS\r
1208EFIAPI\r
1209EfiIp4Routes (\r
1210 IN EFI_IP4_PROTOCOL *This,\r
1211 IN BOOLEAN DeleteRoute,\r
1212 IN EFI_IPv4_ADDRESS *SubnetAddress,\r
1213 IN EFI_IPv4_ADDRESS *SubnetMask,\r
1214 IN EFI_IPv4_ADDRESS *GatewayAddress\r
1215 )\r
1216{\r
1217 IP4_PROTOCOL *IpInstance;\r
1218 IP4_INTERFACE *IpIf;\r
1219 IP4_ADDR Dest;\r
1220 IP4_ADDR Netmask;\r
1221 IP4_ADDR Nexthop;\r
1222 EFI_STATUS Status;\r
1223 EFI_TPL OldTpl;\r
1224\r
1225 //\r
1226 // First, validate the parameters\r
1227 //\r
1228 if ((This == NULL) || (SubnetAddress == NULL) ||\r
1229 (SubnetMask == NULL) || (GatewayAddress == NULL)) {\r
1230 return EFI_INVALID_PARAMETER;\r
1231 }\r
1232\r
1233 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
e48e37fc 1234 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 1235\r
1236 if (IpInstance->State != IP4_STATE_CONFIGED) {\r
1237 Status = EFI_NOT_STARTED;\r
1238 goto ON_EXIT;\r
1239 }\r
1240\r
1241 if (IpInstance->ConfigData.UseDefaultAddress && IP4_NO_MAPPING (IpInstance)) {\r
1242 Status = EFI_NO_MAPPING;\r
1243 goto ON_EXIT;\r
1244 }\r
1245\r
e48e37fc 1246 CopyMem (&Dest, SubnetAddress, sizeof (IP4_ADDR));\r
1247 CopyMem (&Netmask, SubnetMask, sizeof (IP4_ADDR));\r
1248 CopyMem (&Nexthop, GatewayAddress, sizeof (IP4_ADDR));\r
772db4bb 1249\r
1250 Dest = NTOHL (Dest);\r
1251 Netmask = NTOHL (Netmask);\r
1252 Nexthop = NTOHL (Nexthop);\r
1253\r
1254 IpIf = IpInstance->Interface;\r
1255\r
1256 if (!IP4_IS_VALID_NETMASK (Netmask)) {\r
1257 Status = EFI_INVALID_PARAMETER;\r
1258 goto ON_EXIT;\r
1259 }\r
1260\r
1261 //\r
1262 // the gateway address must be a unicast on the connected network if not zero.\r
1263 //\r
1264 if ((Nexthop != IP4_ALLZERO_ADDRESS) &&\r
1265 (!IP4_NET_EQUAL (Nexthop, IpIf->Ip, IpIf->SubnetMask) ||\r
1266 IP4_IS_BROADCAST (Ip4GetNetCast (Nexthop, IpIf)))) {\r
1267\r
1268 Status = EFI_INVALID_PARAMETER;\r
1269 goto ON_EXIT;\r
1270 }\r
1271\r
1272 if (DeleteRoute) {\r
1273 Status = Ip4DelRoute (IpInstance->RouteTable, Dest, Netmask, Nexthop);\r
1274 } else {\r
1275 Status = Ip4AddRoute (IpInstance->RouteTable, Dest, Netmask, Nexthop);\r
1276 }\r
1277\r
1278ON_EXIT:\r
e48e37fc 1279 gBS->RestoreTPL (OldTpl);\r
772db4bb 1280 return Status;\r
1281}\r
1282\r
1283\r
1284/**\r
1285 Check whether the user's token or event has already\r
5405e9a6 1286 been enqueued on IP4's list.\r
772db4bb 1287\r
3e8c18da 1288 @param[in] Map The container of either user's transmit or receive\r
1289 token.\r
1f6729ff 1290 @param[in] Item Current item to check against.\r
3e8c18da 1291 @param[in] Context The Token to check againist.\r
772db4bb 1292\r
1f6729ff 1293 @retval EFI_ACCESS_DENIED The token or event has already been enqueued in IP.\r
772db4bb 1294 @retval EFI_SUCCESS The current item isn't the same token/event as the\r
1295 context.\r
1296\r
1297**/\r
772db4bb 1298EFI_STATUS\r
e798cd87 1299EFIAPI\r
772db4bb 1300Ip4TokenExist (\r
1301 IN NET_MAP *Map,\r
1302 IN NET_MAP_ITEM *Item,\r
1303 IN VOID *Context\r
1304 )\r
1305{\r
1306 EFI_IP4_COMPLETION_TOKEN *Token;\r
1307 EFI_IP4_COMPLETION_TOKEN *TokenInItem;\r
1308\r
1309 Token = (EFI_IP4_COMPLETION_TOKEN *) Context;\r
1310 TokenInItem = (EFI_IP4_COMPLETION_TOKEN *) Item->Key;\r
1311\r
1312 if ((Token == TokenInItem) || (Token->Event == TokenInItem->Event)) {\r
1313 return EFI_ACCESS_DENIED;\r
1314 }\r
1315\r
1316 return EFI_SUCCESS;\r
1317}\r
1318\r
772db4bb 1319/**\r
1320 Validate the user's token against current station address.\r
1321\r
216f7970 1322 @param[in] Token User's token to validate.\r
1323 @param[in] IpIf The IP4 child's interface.\r
1324 @param[in] RawData Set to TRUE to send unformatted packets.\r
772db4bb 1325\r
216f7970 1326 @retval EFI_INVALID_PARAMETER Some parameters are invalid.\r
772db4bb 1327 @retval EFI_BAD_BUFFER_SIZE The user's option/data is too long.\r
216f7970 1328 @retval EFI_SUCCESS The token is valid.\r
772db4bb 1329\r
1330**/\r
772db4bb 1331EFI_STATUS\r
1332Ip4TxTokenValid (\r
1333 IN EFI_IP4_COMPLETION_TOKEN *Token,\r
216f7970 1334 IN IP4_INTERFACE *IpIf,\r
1335 IN BOOLEAN RawData\r
772db4bb 1336 )\r
1337{\r
1338 EFI_IP4_TRANSMIT_DATA *TxData;\r
1339 EFI_IP4_OVERRIDE_DATA *Override;\r
1340 IP4_ADDR Src;\r
1341 IP4_ADDR Gateway;\r
1342 UINT32 Offset;\r
1343 UINT32 Index;\r
1344 UINT32 HeadLen;\r
1345\r
1346 if ((Token == NULL) || (Token->Event == NULL) || (Token->Packet.TxData == NULL)) {\r
1347 return EFI_INVALID_PARAMETER;\r
1348 }\r
1349\r
1350 TxData = Token->Packet.TxData;\r
1351\r
1352 //\r
216f7970 1353 // Check the fragment table: no empty fragment, and length isn't bogus.\r
772db4bb 1354 //\r
1355 if ((TxData->TotalDataLength == 0) || (TxData->FragmentCount == 0)) {\r
1356 return EFI_INVALID_PARAMETER;\r
1357 }\r
1358\r
1359 Offset = TxData->TotalDataLength;\r
1360\r
216f7970 1361 if (Offset > IP4_MAX_PACKET_SIZE) {\r
1362 return EFI_BAD_BUFFER_SIZE;\r
1363 }\r
1364\r
772db4bb 1365 for (Index = 0; Index < TxData->FragmentCount; Index++) {\r
1366 if ((TxData->FragmentTable[Index].FragmentBuffer == NULL) ||\r
1367 (TxData->FragmentTable[Index].FragmentLength == 0)) {\r
1368\r
1369 return EFI_INVALID_PARAMETER;\r
1370 }\r
1371\r
1372 Offset -= TxData->FragmentTable[Index].FragmentLength;\r
1373 }\r
1374\r
1375 if (Offset != 0) {\r
1376 return EFI_INVALID_PARAMETER;\r
1377 }\r
1378\r
216f7970 1379 //\r
1380 // NOTE that OptionsLength/OptionsBuffer/OverrideData are ignored if RawData\r
1381 // is TRUE.\r
1382 //\r
1383 if (RawData) {\r
1384 return EFI_SUCCESS;\r
1385 }\r
1386\r
1387 //\r
1388 // Check the IP options: no more than 40 bytes and format is OK\r
1389 //\r
1390 if (TxData->OptionsLength != 0) {\r
1391 if ((TxData->OptionsLength > 40) || (TxData->OptionsBuffer == NULL)) {\r
1392 return EFI_INVALID_PARAMETER;\r
1393 }\r
1394\r
1395 if (!Ip4OptionIsValid (TxData->OptionsBuffer, TxData->OptionsLength, FALSE)) {\r
1396 return EFI_INVALID_PARAMETER;\r
1397 }\r
1398 }\r
1399\r
772db4bb 1400 //\r
1401 // Check the source and gateway: they must be a valid unicast.\r
1402 // Gateway must also be on the connected network.\r
1403 //\r
e2851998 1404 if (TxData->OverrideData != NULL) {\r
772db4bb 1405 Override = TxData->OverrideData;\r
1406\r
e48e37fc 1407 CopyMem (&Src, &Override->SourceAddress, sizeof (IP4_ADDR));\r
1408 CopyMem (&Gateway, &Override->GatewayAddress, sizeof (IP4_ADDR));\r
772db4bb 1409\r
1410 Src = NTOHL (Src);\r
1411 Gateway = NTOHL (Gateway);\r
1412\r
1413 if ((NetGetIpClass (Src) > IP4_ADDR_CLASSC) ||\r
1414 (Src == IP4_ALLONE_ADDRESS) ||\r
1415 IP4_IS_BROADCAST (Ip4GetNetCast (Src, IpIf))) {\r
1416\r
1417 return EFI_INVALID_PARAMETER;\r
1418 }\r
1419\r
1420 //\r
1421 // If gateway isn't zero, it must be a unicast address, and\r
1422 // on the connected network.\r
1423 //\r
1424 if ((Gateway != IP4_ALLZERO_ADDRESS) &&\r
1425 ((NetGetIpClass (Gateway) > IP4_ADDR_CLASSC) ||\r
1426 !IP4_NET_EQUAL (Gateway, IpIf->Ip, IpIf->SubnetMask) ||\r
1427 IP4_IS_BROADCAST (Ip4GetNetCast (Gateway, IpIf)))) {\r
1428\r
1429 return EFI_INVALID_PARAMETER;\r
1430 }\r
1431 }\r
1432\r
1433 //\r
1434 // Check the packet length: Head length and packet length all has a limit\r
1435 //\r
1436 HeadLen = sizeof (IP4_HEAD) + ((TxData->OptionsLength + 3) &~0x03);\r
1437\r
1438 if ((HeadLen > IP4_MAX_HEADLEN) ||\r
1439 (TxData->TotalDataLength + HeadLen > IP4_MAX_PACKET_SIZE)) {\r
1440\r
1441 return EFI_BAD_BUFFER_SIZE;\r
1442 }\r
1443\r
1444 return EFI_SUCCESS;\r
1445}\r
1446\r
1447\r
1448/**\r
1449 The callback function for the net buffer which wraps the user's\r
1450 transmit token. Although it seems this function is pretty simple,\r
1451 there are some subtle things.\r
1452 When user requests the IP to transmit a packet by passing it a\r
1453 token, the token is wrapped in an IP4_TXTOKEN_WRAP and the data\r
1454 is wrapped in an net buffer. the net buffer's Free function is\r
1455 set to Ip4FreeTxToken. The Token and token wrap are added to the\r
1456 IP child's TxToken map. Then the buffer is passed to Ip4Output for\r
1457 transmission. If something error happened before that, the buffer\r
1458 is freed, which in turn will free the token wrap. The wrap may\r
1459 have been added to the TxToken map or not, and the user's event\r
1460 shouldn't be fired because we are still in the EfiIp4Transmit. If\r
1461 the buffer has been sent by Ip4Output, it should be removed from\r
1462 the TxToken map and user's event signaled. The token wrap and buffer\r
1463 are bound together. Check the comments in Ip4Output for information\r
1464 about IP fragmentation.\r
1465\r
1f6729ff 1466 @param[in] Context The token's wrap.\r
772db4bb 1467\r
1468**/\r
772db4bb 1469VOID\r
e798cd87 1470EFIAPI\r
772db4bb 1471Ip4FreeTxToken (\r
1472 IN VOID *Context\r
1473 )\r
1474{\r
1475 IP4_TXTOKEN_WRAP *Wrap;\r
1476 NET_MAP_ITEM *Item;\r
1477\r
1478 Wrap = (IP4_TXTOKEN_WRAP *) Context;\r
1479\r
a1503a32 1480 //\r
1481 // Signal IpSecRecycleEvent to inform IPsec free the memory\r
1482 //\r
1483 if (Wrap->IpSecRecycleSignal != NULL) {\r
1484 gBS->SignalEvent (Wrap->IpSecRecycleSignal);\r
1485 }\r
1486\r
772db4bb 1487 //\r
1488 // Find the token in the instance's map. EfiIp4Transmit put the\r
1489 // token to the map. If that failed, NetMapFindKey will return NULL.\r
1490 //\r
1491 Item = NetMapFindKey (&Wrap->IpInstance->TxTokens, Wrap->Token);\r
1492\r
1493 if (Item != NULL) {\r
1494 NetMapRemoveItem (&Wrap->IpInstance->TxTokens, Item, NULL);\r
1495 }\r
1496\r
1497 if (Wrap->Sent) {\r
1498 gBS->SignalEvent (Wrap->Token->Event);\r
36ee91ca 1499\r
1500 //\r
1501 // Dispatch the DPC queued by the NotifyFunction of Token->Event.\r
1502 //\r
d8d26fb2 1503 DispatchDpc ();\r
772db4bb 1504 }\r
1505\r
766c7483 1506 FreePool (Wrap);\r
772db4bb 1507}\r
1508\r
1509\r
1510/**\r
1511 The callback function to Ip4Output to update the transmit status.\r
1512\r
1513 @param Ip4Instance The Ip4Instance that request the transmit.\r
1f6729ff 1514 @param Packet The user's transmit request.\r
1515 @param IoStatus The result of the transmission.\r
1516 @param Flag Not used during transmission.\r
772db4bb 1517 @param Context The token's wrap.\r
1518\r
772db4bb 1519**/\r
772db4bb 1520VOID\r
1521Ip4OnPacketSent (\r
1522 IP4_PROTOCOL *Ip4Instance,\r
1523 NET_BUF *Packet,\r
1524 EFI_STATUS IoStatus,\r
1525 UINT32 Flag,\r
1526 VOID *Context\r
1527 )\r
1528{\r
1529 IP4_TXTOKEN_WRAP *Wrap;\r
1530\r
1531 //\r
1532 // This is the transmission request from upper layer,\r
1533 // not the IP4 driver itself.\r
1534 //\r
1535 ASSERT (Ip4Instance != NULL);\r
1536\r
1537 //\r
1538 // The first fragment of the packet has been sent. Update\r
1539 // the token's status. That is, if fragmented, the transmit's\r
1540 // status is the first fragment's status. The Wrap will be\r
1541 // release when all the fragments are release. Check the comments\r
1542 // in Ip4FreeTxToken and Ip4Output for information.\r
1543 //\r
1544 Wrap = (IP4_TXTOKEN_WRAP *) Context;\r
1545 Wrap->Token->Status = IoStatus;\r
1546\r
1547 NetbufFree (Wrap->Packet);\r
1548}\r
1549\r
1550\r
1551/**\r
5405e9a6 1552 Places outgoing data packets into the transmit queue.\r
1553\r
1554 The Transmit() function places a sending request in the transmit queue of this\r
1555 EFI IPv4 Protocol instance. Whenever the packet in the token is sent out or some\r
1556 errors occur, the event in the token will be signaled and the status is updated.\r
1557\r
3e8c18da 1558 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
1559 @param[in] Token Pointer to the transmit token.\r
5405e9a6 1560\r
1561 @retval EFI_SUCCESS The data has been queued for transmission.\r
1562 @retval EFI_NOT_STARTED This instance has not been started.\r
1563 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
1564 RARP, etc.) is not finished yet.\r
1565 @retval EFI_INVALID_PARAMETER One or more pameters are invalid.\r
1566 @retval EFI_ACCESS_DENIED The transmit completion token with the same Token.Event\r
1567 was already in the transmit queue.\r
1568 @retval EFI_NOT_READY The completion token could not be queued because the transmit\r
e2851998 1569 queue is full.\r
5405e9a6 1570 @retval EFI_NOT_FOUND Not route is found to destination address.\r
1571 @retval EFI_OUT_OF_RESOURCES Could not queue the transmit data.\r
1572 @retval EFI_BUFFER_TOO_SMALL Token.Packet.TxData.TotalDataLength is too\r
1573 short to transmit.\r
1574 @retval EFI_BAD_BUFFER_SIZE The length of the IPv4 header + option length + total data length is\r
1575 greater than MTU (or greater than the maximum packet size if\r
1576 Token.Packet.TxData.OverrideData.\r
1f6729ff 1577 DoNotFragment is TRUE).\r
772db4bb 1578\r
1579**/\r
772db4bb 1580EFI_STATUS\r
1581EFIAPI\r
1582EfiIp4Transmit (\r
1583 IN EFI_IP4_PROTOCOL *This,\r
1584 IN EFI_IP4_COMPLETION_TOKEN *Token\r
1585 )\r
1586{\r
1587 IP4_SERVICE *IpSb;\r
1588 IP4_PROTOCOL *IpInstance;\r
1589 IP4_INTERFACE *IpIf;\r
1590 IP4_TXTOKEN_WRAP *Wrap;\r
1591 EFI_IP4_TRANSMIT_DATA *TxData;\r
1592 EFI_IP4_CONFIG_DATA *Config;\r
1593 EFI_IP4_OVERRIDE_DATA *Override;\r
1594 IP4_HEAD Head;\r
1595 IP4_ADDR GateWay;\r
1596 EFI_STATUS Status;\r
1597 EFI_TPL OldTpl;\r
1598 BOOLEAN DontFragment;\r
1599 UINT32 HeadLen;\r
216f7970 1600 UINT8 RawHdrLen;\r
1601 UINT32 OptionsLength;\r
1602 UINT8 *OptionsBuffer;\r
1603 VOID *FirstFragment;\r
772db4bb 1604\r
1605 if (This == NULL) {\r
1606 return EFI_INVALID_PARAMETER;\r
1607 }\r
1608\r
1609 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
1610\r
1611 if (IpInstance->State != IP4_STATE_CONFIGED) {\r
1612 return EFI_NOT_STARTED;\r
1613 }\r
1614\r
e48e37fc 1615 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 1616\r
1617 IpSb = IpInstance->Service;\r
1618 IpIf = IpInstance->Interface;\r
1619 Config = &IpInstance->ConfigData;\r
1620\r
1621 if (Config->UseDefaultAddress && IP4_NO_MAPPING (IpInstance)) {\r
1622 Status = EFI_NO_MAPPING;\r
1623 goto ON_EXIT;\r
1624 }\r
1625\r
1626 //\r
1627 // make sure that token is properly formated\r
1628 //\r
216f7970 1629 Status = Ip4TxTokenValid (Token, IpIf, Config->RawData);\r
772db4bb 1630\r
1631 if (EFI_ERROR (Status)) {\r
1632 goto ON_EXIT;\r
1633 }\r
1634\r
1635 //\r
1636 // Check whether the token or signal already existed.\r
1637 //\r
1638 if (EFI_ERROR (NetMapIterate (&IpInstance->TxTokens, Ip4TokenExist, Token))) {\r
1639 Status = EFI_ACCESS_DENIED;\r
1640 goto ON_EXIT;\r
1641 }\r
1642\r
1643 //\r
1644 // Build the IP header, need to fill in the Tos, TotalLen, Id,\r
1645 // fragment, Ttl, protocol, Src, and Dst.\r
1646 //\r
1647 TxData = Token->Packet.TxData;\r
1648\r
216f7970 1649 FirstFragment = NULL;\r
772db4bb 1650\r
216f7970 1651 if (Config->RawData) {\r
1652 //\r
1653 // When RawData is TRUE, first buffer in FragmentTable points to a raw\r
1654 // IPv4 fragment including IPv4 header and options.\r
1655 //\r
1656 FirstFragment = TxData->FragmentTable[0].FragmentBuffer;\r
1657 CopyMem (&RawHdrLen, FirstFragment, sizeof (UINT8));\r
772db4bb 1658\r
216f7970 1659 RawHdrLen = (UINT8) (RawHdrLen & 0x0f);\r
1660 if (RawHdrLen < 5) {\r
098e9f49
FS
1661 Status = EFI_INVALID_PARAMETER;\r
1662 goto ON_EXIT;\r
216f7970 1663 }\r
1664\r
1665 RawHdrLen = (UINT8) (RawHdrLen << 2);\r
d1102dba 1666\r
216f7970 1667 CopyMem (&Head, FirstFragment, IP4_MIN_HEADLEN);\r
1668\r
1669 Ip4NtohHead (&Head);\r
1670 HeadLen = 0;\r
1671 DontFragment = IP4_DO_NOT_FRAGMENT (Head.Fragment);\r
772db4bb 1672\r
216f7970 1673 if (!DontFragment) {\r
098e9f49
FS
1674 Status = EFI_INVALID_PARAMETER;\r
1675 goto ON_EXIT;\r
216f7970 1676 }\r
1677\r
1678 GateWay = IP4_ALLZERO_ADDRESS;\r
1679\r
1680 //\r
1681 // Get IPv4 options from first fragment.\r
1682 //\r
1683 if (RawHdrLen == IP4_MIN_HEADLEN) {\r
1684 OptionsLength = 0;\r
1685 OptionsBuffer = NULL;\r
1686 } else {\r
1687 OptionsLength = RawHdrLen - IP4_MIN_HEADLEN;\r
1688 OptionsBuffer = (UINT8 *) FirstFragment + IP4_MIN_HEADLEN;\r
1689 }\r
1690\r
1691 //\r
1692 // Trim off IPv4 header and options from first fragment.\r
1693 //\r
1694 TxData->FragmentTable[0].FragmentBuffer = (UINT8 *) FirstFragment + RawHdrLen;\r
1695 TxData->FragmentTable[0].FragmentLength = TxData->FragmentTable[0].FragmentLength - RawHdrLen;\r
772db4bb 1696 } else {\r
216f7970 1697 CopyMem (&Head.Dst, &TxData->DestinationAddress, sizeof (IP4_ADDR));\r
1698 Head.Dst = NTOHL (Head.Dst);\r
772db4bb 1699\r
216f7970 1700 if (TxData->OverrideData != NULL) {\r
1701 Override = TxData->OverrideData;\r
1702 Head.Protocol = Override->Protocol;\r
1703 Head.Tos = Override->TypeOfService;\r
1704 Head.Ttl = Override->TimeToLive;\r
1705 DontFragment = Override->DoNotFragment;\r
1706\r
1707 CopyMem (&Head.Src, &Override->SourceAddress, sizeof (IP4_ADDR));\r
1708 CopyMem (&GateWay, &Override->GatewayAddress, sizeof (IP4_ADDR));\r
1709\r
1710 Head.Src = NTOHL (Head.Src);\r
1711 GateWay = NTOHL (GateWay);\r
1712 } else {\r
1713 Head.Src = IpIf->Ip;\r
1714 GateWay = IP4_ALLZERO_ADDRESS;\r
1715 Head.Protocol = Config->DefaultProtocol;\r
1716 Head.Tos = Config->TypeOfService;\r
1717 Head.Ttl = Config->TimeToLive;\r
1718 DontFragment = Config->DoNotFragment;\r
1719 }\r
1720\r
1721 Head.Fragment = IP4_HEAD_FRAGMENT_FIELD (DontFragment, FALSE, 0);\r
1722 HeadLen = (TxData->OptionsLength + 3) & (~0x03);\r
1723\r
1724 OptionsLength = TxData->OptionsLength;\r
1725 OptionsBuffer = (UINT8 *) (TxData->OptionsBuffer);\r
1726 }\r
772db4bb 1727\r
1728 //\r
1729 // If don't fragment and fragment needed, return error\r
1730 //\r
a1503a32 1731 if (DontFragment && (TxData->TotalDataLength + HeadLen > IpSb->MaxPacketSize)) {\r
772db4bb 1732 Status = EFI_BAD_BUFFER_SIZE;\r
1733 goto ON_EXIT;\r
1734 }\r
1735\r
1736 //\r
1737 // OK, it survives all the validation check. Wrap the token in\r
1738 // a IP4_TXTOKEN_WRAP and the data in a netbuf\r
1739 //\r
1740 Status = EFI_OUT_OF_RESOURCES;\r
f6b7393c 1741 Wrap = AllocateZeroPool (sizeof (IP4_TXTOKEN_WRAP));\r
772db4bb 1742 if (Wrap == NULL) {\r
1743 goto ON_EXIT;\r
1744 }\r
1745\r
1746 Wrap->IpInstance = IpInstance;\r
1747 Wrap->Token = Token;\r
1748 Wrap->Sent = FALSE;\r
1749 Wrap->Life = IP4_US_TO_SEC (Config->TransmitTimeout);\r
1750 Wrap->Packet = NetbufFromExt (\r
1751 (NET_FRAGMENT *) TxData->FragmentTable,\r
1752 TxData->FragmentCount,\r
1753 IP4_MAX_HEADLEN,\r
1754 0,\r
1755 Ip4FreeTxToken,\r
1756 Wrap\r
1757 );\r
1758\r
1759 if (Wrap->Packet == NULL) {\r
766c7483 1760 FreePool (Wrap);\r
772db4bb 1761 goto ON_EXIT;\r
1762 }\r
1763\r
1764 Token->Status = EFI_NOT_READY;\r
1765\r
1766 if (EFI_ERROR (NetMapInsertTail (&IpInstance->TxTokens, Token, Wrap))) {\r
1767 //\r
1768 // NetbufFree will call Ip4FreeTxToken, which in turn will\r
1769 // free the IP4_TXTOKEN_WRAP. Now, the token wrap hasn't been\r
1770 // enqueued.\r
1771 //\r
216f7970 1772 if (Config->RawData) {\r
1773 //\r
1774 // Restore pointer of first fragment in RawData mode.\r
1775 //\r
1776 TxData->FragmentTable[0].FragmentBuffer = (UINT8 *) FirstFragment;\r
1777 }\r
1778\r
772db4bb 1779 NetbufFree (Wrap->Packet);\r
1780 goto ON_EXIT;\r
1781 }\r
1782\r
36ee91ca 1783 //\r
1784 // Mark the packet sent before output it. Mark it not sent again if the\r
1785 // returned status is not EFI_SUCCESS;\r
1786 //\r
1787 Wrap->Sent = TRUE;\r
1788\r
772db4bb 1789 Status = Ip4Output (\r
1790 IpSb,\r
1791 IpInstance,\r
1792 Wrap->Packet,\r
1793 &Head,\r
216f7970 1794 OptionsBuffer,\r
1795 OptionsLength,\r
772db4bb 1796 GateWay,\r
1797 Ip4OnPacketSent,\r
1798 Wrap\r
1799 );\r
1800\r
1801 if (EFI_ERROR (Status)) {\r
36ee91ca 1802 Wrap->Sent = FALSE;\r
216f7970 1803\r
1804 if (Config->RawData) {\r
1805 //\r
1806 // Restore pointer of first fragment in RawData mode.\r
1807 //\r
1808 TxData->FragmentTable[0].FragmentBuffer = (UINT8 *) FirstFragment;\r
1809 }\r
1810\r
772db4bb 1811 NetbufFree (Wrap->Packet);\r
772db4bb 1812 }\r
1813\r
216f7970 1814 if (Config->RawData) {\r
1815 //\r
1816 // Restore pointer of first fragment in RawData mode.\r
1817 //\r
1818 TxData->FragmentTable[0].FragmentBuffer = (UINT8 *) FirstFragment;\r
1819 }\r
1820\r
772db4bb 1821ON_EXIT:\r
e48e37fc 1822 gBS->RestoreTPL (OldTpl);\r
772db4bb 1823 return Status;\r
1824}\r
1825\r
1826\r
1827/**\r
5405e9a6 1828 Places a receiving request into the receiving queue.\r
e2851998 1829\r
5405e9a6 1830 The Receive() function places a completion token into the receive packet queue.\r
1831 This function is always asynchronous.\r
e2851998 1832\r
5405e9a6 1833 The Token.Event field in the completion token must be filled in by the caller\r
1834 and cannot be NULL. When the receive operation completes, the EFI IPv4 Protocol\r
1835 driver updates the Token.Status and Token.Packet.RxData fields and the Token.Event\r
1836 is signaled.\r
1837\r
3e8c18da 1838 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
1839 @param[in] Token Pointer to a token that is associated with the receive data descriptor.\r
5405e9a6 1840\r
1841 @retval EFI_SUCCESS The receive completion token was cached.\r
1842 @retval EFI_NOT_STARTED This EFI IPv4 Protocol instance has not been started.\r
1843 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP, RARP, etc.)\r
1844 is not finished yet.\r
1845 @retval EFI_INVALID_PARAMETER One or more of the following conditions is TRUE:\r
1846 - This is NULL.\r
1847 - Token is NULL.\r
1848 - Token.Event is NULL.\r
1849 @retval EFI_OUT_OF_RESOURCES The receive completion token could not be queued due to a lack of system\r
1850 resources (usually memory).\r
1851 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
1852 The EFI IPv4 Protocol instance has been reset to startup defaults.\r
1853 EFI_ACCESS_DENIED The receive completion token with the same Token.Event was already\r
1854 in the receive queue.\r
1855 @retval EFI_NOT_READY The receive request could not be queued because the receive queue is full.\r
1856 @retval EFI_ICMP_ERROR An ICMP error packet was received.\r
772db4bb 1857\r
1858**/\r
772db4bb 1859EFI_STATUS\r
1860EFIAPI\r
1861EfiIp4Receive (\r
1862 IN EFI_IP4_PROTOCOL *This,\r
1863 IN EFI_IP4_COMPLETION_TOKEN *Token\r
1864 )\r
1865{\r
1866 IP4_PROTOCOL *IpInstance;\r
772db4bb 1867 EFI_STATUS Status;\r
1868 EFI_TPL OldTpl;\r
1869\r
1870 //\r
1871 // First validate the parameters\r
1872 //\r
1873 if ((This == NULL) || (Token == NULL) || (Token->Event == NULL)) {\r
1874 return EFI_INVALID_PARAMETER;\r
1875 }\r
1876\r
1877 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
1878\r
e48e37fc 1879 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 1880\r
1881 if (IpInstance->State != IP4_STATE_CONFIGED) {\r
1882 Status = EFI_NOT_STARTED;\r
1883 goto ON_EXIT;\r
1884 }\r
1885\r
772db4bb 1886 //\r
1887 // Check whether the toke is already on the receive queue.\r
1888 //\r
1889 Status = NetMapIterate (&IpInstance->RxTokens, Ip4TokenExist, Token);\r
1890\r
1891 if (EFI_ERROR (Status)) {\r
1892 Status = EFI_ACCESS_DENIED;\r
1893 goto ON_EXIT;\r
1894 }\r
1895\r
1896 //\r
1897 // Queue the token then check whether there is pending received packet.\r
1898 //\r
1899 Status = NetMapInsertTail (&IpInstance->RxTokens, Token, NULL);\r
1900\r
1901 if (EFI_ERROR (Status)) {\r
1902 goto ON_EXIT;\r
1903 }\r
1904\r
1905 Status = Ip4InstanceDeliverPacket (IpInstance);\r
1906\r
36ee91ca 1907 //\r
1908 // Dispatch the DPC queued by the NotifyFunction of this instane's receive\r
1909 // event.\r
1910 //\r
d8d26fb2 1911 DispatchDpc ();\r
36ee91ca 1912\r
772db4bb 1913ON_EXIT:\r
e48e37fc 1914 gBS->RestoreTPL (OldTpl);\r
772db4bb 1915 return Status;\r
1916}\r
1917\r
1918\r
1919/**\r
1920 Cancel the transmitted but not recycled packet. If a matching\r
1921 token is found, it will call Ip4CancelPacket to cancel the\r
1922 packet. Ip4CancelPacket will cancel all the fragments of the\r
1923 packet. When all the fragments are freed, the IP4_TXTOKEN_WRAP\r
1924 will be deleted from the Map, and user's event signalled.\r
1925 Because Ip4CancelPacket and other functions are all called in\r
1926 line, so, after Ip4CancelPacket returns, the Item has been freed.\r
1927\r
1f6729ff 1928 @param[in] Map The IP4 child's transmit queue.\r
1929 @param[in] Item The current transmitted packet to test.\r
1930 @param[in] Context The user's token to cancel.\r
772db4bb 1931\r
1932 @retval EFI_SUCCESS Continue to check the next Item.\r
1933 @retval EFI_ABORTED The user's Token (Token != NULL) is cancelled.\r
1934\r
1935**/\r
772db4bb 1936EFI_STATUS\r
e798cd87 1937EFIAPI\r
772db4bb 1938Ip4CancelTxTokens (\r
1939 IN NET_MAP *Map,\r
1940 IN NET_MAP_ITEM *Item,\r
1941 IN VOID *Context\r
1942 )\r
1943{\r
1944 EFI_IP4_COMPLETION_TOKEN *Token;\r
1945 IP4_TXTOKEN_WRAP *Wrap;\r
1946\r
1947 Token = (EFI_IP4_COMPLETION_TOKEN *) Context;\r
1948\r
1949 //\r
1950 // Return EFI_SUCCESS to check the next item in the map if\r
1951 // this one doesn't match.\r
1952 //\r
1953 if ((Token != NULL) && (Token != Item->Key)) {\r
1954 return EFI_SUCCESS;\r
1955 }\r
1956\r
1957 Wrap = (IP4_TXTOKEN_WRAP *) Item->Value;\r
1958 ASSERT (Wrap != NULL);\r
1959\r
1960 //\r
1961 // Don't access the Item, Wrap and Token's members after this point.\r
1962 // Item and wrap has been freed. And we no longer own the Token.\r
1963 //\r
1964 Ip4CancelPacket (Wrap->IpInstance->Interface, Wrap->Packet, EFI_ABORTED);\r
1965\r
1966 //\r
1967 // If only one item is to be cancel, return EFI_ABORTED to stop\r
1968 // iterating the map any more.\r
1969 //\r
1970 if (Token != NULL) {\r
1971 return EFI_ABORTED;\r
1972 }\r
1973\r
1974 return EFI_SUCCESS;\r
1975}\r
1976\r
1977\r
1978/**\r
1979 Cancel the receive request. This is quiet simple, because\r
1980 it is only enqueued in our local receive map.\r
1981\r
1f6729ff 1982 @param[in] Map The IP4 child's receive queue.\r
1983 @param[in] Item Current receive request to cancel.\r
1984 @param[in] Context The user's token to cancel.\r
772db4bb 1985\r
1986 @retval EFI_SUCCESS Continue to check the next receive request on the\r
1987 queue.\r
1988 @retval EFI_ABORTED The user's token (token != NULL) has been\r
1989 cancelled.\r
1990\r
1991**/\r
772db4bb 1992EFI_STATUS\r
e798cd87 1993EFIAPI\r
772db4bb 1994Ip4CancelRxTokens (\r
1995 IN NET_MAP *Map,\r
1996 IN NET_MAP_ITEM *Item,\r
1997 IN VOID *Context\r
1998 )\r
1999{\r
2000 EFI_IP4_COMPLETION_TOKEN *Token;\r
2001 EFI_IP4_COMPLETION_TOKEN *This;\r
2002\r
2003 Token = (EFI_IP4_COMPLETION_TOKEN *) Context;\r
2004 This = Item->Key;\r
2005\r
2006 if ((Token != NULL) && (Token != This)) {\r
2007 return EFI_SUCCESS;\r
2008 }\r
2009\r
2010 NetMapRemoveItem (Map, Item, NULL);\r
2011\r
2012 This->Status = EFI_ABORTED;\r
2013 This->Packet.RxData = NULL;\r
2014 gBS->SignalEvent (This->Event);\r
2015\r
2016 if (Token != NULL) {\r
2017 return EFI_ABORTED;\r
2018 }\r
2019\r
2020 return EFI_SUCCESS;\r
2021}\r
2022\r
2023\r
2024/**\r
2025 Cancel the user's receive/transmit request.\r
2026\r
1f6729ff 2027 @param[in] IpInstance The IP4 child.\r
3e8c18da 2028 @param[in] Token The token to cancel. If NULL, all token will be\r
772db4bb 2029 cancelled.\r
2030\r
1f6729ff 2031 @retval EFI_SUCCESS The token is cancelled.\r
772db4bb 2032 @retval EFI_NOT_FOUND The token isn't found on either the\r
1f6729ff 2033 transmit/receive queue.\r
772db4bb 2034 @retval EFI_DEVICE_ERROR Not all token is cancelled when Token is NULL.\r
2035\r
2036**/\r
2037EFI_STATUS\r
2038Ip4Cancel (\r
2039 IN IP4_PROTOCOL *IpInstance,\r
2040 IN EFI_IP4_COMPLETION_TOKEN *Token OPTIONAL\r
2041 )\r
2042{\r
2043 EFI_STATUS Status;\r
2044\r
2045 //\r
2046 // First check the transmitted packet. Ip4CancelTxTokens returns\r
2047 // EFI_ABORTED to mean that the token has been cancelled when\r
2048 // token != NULL. So, return EFI_SUCCESS for this condition.\r
2049 //\r
2050 Status = NetMapIterate (&IpInstance->TxTokens, Ip4CancelTxTokens, Token);\r
2051\r
2052 if (EFI_ERROR (Status)) {\r
2053 if ((Token != NULL) && (Status == EFI_ABORTED)) {\r
2054 return EFI_SUCCESS;\r
2055 }\r
2056\r
2057 return Status;\r
2058 }\r
2059\r
2060 //\r
2061 // Check the receive queue. Ip4CancelRxTokens also returns EFI_ABORT\r
2062 // for Token!=NULL and it is cancelled.\r
2063 //\r
2064 Status = NetMapIterate (&IpInstance->RxTokens, Ip4CancelRxTokens, Token);\r
36ee91ca 2065 //\r
2066 // Dispatch the DPCs queued by the NotifyFunction of the canceled rx token's\r
2067 // events.\r
2068 //\r
d8d26fb2 2069 DispatchDpc ();\r
772db4bb 2070 if (EFI_ERROR (Status)) {\r
2071 if ((Token != NULL) && (Status == EFI_ABORTED)) {\r
2072 return EFI_SUCCESS;\r
2073 }\r
2074\r
2075 return Status;\r
2076 }\r
2077\r
2078 //\r
2079 // OK, if the Token is found when Token != NULL, the NetMapIterate\r
2080 // will return EFI_ABORTED, which has been interrupted as EFI_SUCCESS.\r
2081 //\r
2082 if (Token != NULL) {\r
2083 return EFI_NOT_FOUND;\r
2084 }\r
2085\r
2086 //\r
2087 // If Token == NULL, cancel all the tokens. return error if no\r
2088 // all of them are cancelled.\r
2089 //\r
2090 if (!NetMapIsEmpty (&IpInstance->TxTokens) ||\r
2091 !NetMapIsEmpty (&IpInstance->RxTokens)) {\r
2092\r
2093 return EFI_DEVICE_ERROR;\r
2094 }\r
2095\r
2096 return EFI_SUCCESS;\r
2097}\r
2098\r
2099\r
2100/**\r
5405e9a6 2101 Abort an asynchronous transmit or receive request.\r
e2851998 2102\r
5405e9a6 2103 The Cancel() function is used to abort a pending transmit or receive request.\r
2104 If the token is in the transmit or receive request queues, after calling this\r
2105 function, Token->Status will be set to EFI_ABORTED and then Token->Event will\r
2106 be signaled. If the token is not in one of the queues, which usually means the\r
2107 asynchronous operation has completed, this function will not signal the token\r
2108 and EFI_NOT_FOUND is returned.\r
2109\r
3e8c18da 2110 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
2111 @param[in] Token Pointer to a token that has been issued by\r
2112 EFI_IP4_PROTOCOL.Transmit() or\r
2113 EFI_IP4_PROTOCOL.Receive(). If NULL, all pending\r
2114 tokens are aborted. Type EFI_IP4_COMPLETION_TOKEN is\r
2115 defined in EFI_IP4_PROTOCOL.Transmit().\r
5405e9a6 2116\r
2117 @retval EFI_SUCCESS The asynchronous I/O request was aborted and\r
2118 Token.->Event was signaled. When Token is NULL, all\r
2119 pending requests were aborted and their events were signaled.\r
2120 @retval EFI_INVALID_PARAMETER This is NULL.\r
2121 @retval EFI_NOT_STARTED This instance has not been started.\r
2122 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
2123 RARP, etc.) is not finished yet.\r
2124 @retval EFI_NOT_FOUND When Token is not NULL, the asynchronous I/O request was\r
2125 not found in the transmit or receive queue. It has either completed\r
2126 or was not issued by Transmit() and Receive().\r
772db4bb 2127\r
2128**/\r
772db4bb 2129EFI_STATUS\r
2130EFIAPI\r
2131EfiIp4Cancel (\r
2132 IN EFI_IP4_PROTOCOL *This,\r
2133 IN EFI_IP4_COMPLETION_TOKEN *Token OPTIONAL\r
2134 )\r
2135{\r
2136 IP4_PROTOCOL *IpInstance;\r
2137 EFI_STATUS Status;\r
2138 EFI_TPL OldTpl;\r
2139\r
2140 if (This == NULL) {\r
2141 return EFI_INVALID_PARAMETER;\r
2142 }\r
2143\r
2144 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
2145\r
e48e37fc 2146 OldTpl = gBS->RaiseTPL (TPL_CALLBACK);\r
772db4bb 2147\r
2148 if (IpInstance->State != IP4_STATE_CONFIGED) {\r
2149 Status = EFI_NOT_STARTED;\r
2150 goto ON_EXIT;\r
2151 }\r
2152\r
2153 if (IpInstance->ConfigData.UseDefaultAddress && IP4_NO_MAPPING (IpInstance)) {\r
2154 Status = EFI_NO_MAPPING;\r
2155 goto ON_EXIT;\r
2156 }\r
2157\r
2158 Status = Ip4Cancel (IpInstance, Token);\r
2159\r
2160ON_EXIT:\r
e48e37fc 2161 gBS->RestoreTPL (OldTpl);\r
772db4bb 2162 return Status;\r
2163}\r
2164\r
2165\r
2166/**\r
5405e9a6 2167 Polls for incoming data packets and processes outgoing data packets.\r
e2851998 2168\r
5405e9a6 2169 The Poll() function polls for incoming data packets and processes outgoing data\r
2170 packets. Network drivers and applications can call the EFI_IP4_PROTOCOL.Poll()\r
2171 function to increase the rate that data packets are moved between the communications\r
2172 device and the transmit and receive queues.\r
e2851998 2173\r
5405e9a6 2174 In some systems the periodic timer event may not poll the underlying communications\r
2175 device fast enough to transmit and/or receive all data packets without missing\r
2176 incoming packets or dropping outgoing packets. Drivers and applications that are\r
2177 experiencing packet loss should try calling the EFI_IP4_PROTOCOL.Poll() function\r
2178 more often.\r
2179\r
3e8c18da 2180 @param[in] This Pointer to the EFI_IP4_PROTOCOL instance.\r
5405e9a6 2181\r
2182 @retval EFI_SUCCESS Incoming or outgoing data was processed.\r
2183 @retval EFI_NOT_STARTED This EFI IPv4 Protocol instance has not been started.\r
2184 @retval EFI_NO_MAPPING When using the default address, configuration (DHCP, BOOTP,\r
2185 RARP, etc.) is not finished yet.\r
2186 @retval EFI_INVALID_PARAMETER This is NULL.\r
2187 @retval EFI_DEVICE_ERROR An unexpected system or network error occurred.\r
2188 @retval EFI_NOT_READY No incoming or outgoing data is processed.\r
2189 @retval EFI_TIMEOUT Data was dropped out of the transmit and/or receive queue.\r
2190 Consider increasing the polling rate.\r
772db4bb 2191\r
2192**/\r
772db4bb 2193EFI_STATUS\r
2194EFIAPI\r
2195EfiIp4Poll (\r
2196 IN EFI_IP4_PROTOCOL *This\r
2197 )\r
2198{\r
2199 IP4_PROTOCOL *IpInstance;\r
2200 EFI_MANAGED_NETWORK_PROTOCOL *Mnp;\r
2201\r
2202 if (This == NULL) {\r
2203 return EFI_INVALID_PARAMETER;\r
2204 }\r
2205\r
2206 IpInstance = IP4_INSTANCE_FROM_PROTOCOL (This);\r
2207\r
2208 if (IpInstance->State == IP4_STATE_UNCONFIGED) {\r
2209 return EFI_NOT_STARTED;\r
2210 }\r
2211\r
2212 Mnp = IpInstance->Service->Mnp;\r
2213\r
2214 //\r
2215 // Don't lock the Poll function to enable the deliver of\r
2216 // the packet polled up.\r
2217 //\r
2218 return Mnp->Poll (Mnp);\r
2219}\r
2220\r
772db4bb 2221/**\r
2222 Decrease the life of the transmitted packets. If it is\r
2223 decreased to zero, cancel the packet. This function is\r
96e1079f 2224 called by Ip4PacketTimerTicking which time out both the\r
772db4bb 2225 received-but-not-delivered and transmitted-but-not-recycle\r
2226 packets.\r
2227\r
3e8c18da 2228 @param[in] Map The IP4 child's transmit map.\r
1f6729ff 2229 @param[in] Item Current transmitted packet.\r
3e8c18da 2230 @param[in] Context Not used.\r
772db4bb 2231\r
1f6729ff 2232 @retval EFI_SUCCESS Always returns EFI_SUCCESS.\r
772db4bb 2233\r
2234**/\r
2235EFI_STATUS\r
e798cd87 2236EFIAPI\r
772db4bb 2237Ip4SentPacketTicking (\r
2238 IN NET_MAP *Map,\r
2239 IN NET_MAP_ITEM *Item,\r
2240 IN VOID *Context\r
2241 )\r
2242{\r
2243 IP4_TXTOKEN_WRAP *Wrap;\r
2244\r
2245 Wrap = (IP4_TXTOKEN_WRAP *) Item->Value;\r
2246 ASSERT (Wrap != NULL);\r
2247\r
2248 if ((Wrap->Life > 0) && (--Wrap->Life == 0)) {\r
2249 Ip4CancelPacket (Wrap->IpInstance->Interface, Wrap->Packet, EFI_ABORTED);\r
2250 }\r
2251\r
2252 return EFI_SUCCESS;\r
2253}\r
2254\r
772db4bb 2255/**\r
d1102dba
LG
2256 This heart beat timer of IP4 service instance times out all of its IP4 children's\r
2257 received-but-not-delivered and transmitted-but-not-recycle packets, and provides\r
018432f0 2258 time input for its IGMP protocol.\r
772db4bb 2259\r
3e8c18da 2260 @param[in] Event The IP4 service instance's heart beat timer.\r
2261 @param[in] Context The IP4 service instance.\r
772db4bb 2262\r
2263**/\r
2264VOID\r
2265EFIAPI\r
2266Ip4TimerTicking (\r
2267 IN EFI_EVENT Event,\r
2268 IN VOID *Context\r
2269 )\r
2270{\r
2271 IP4_SERVICE *IpSb;\r
018432f0
WF
2272\r
2273 IpSb = (IP4_SERVICE *) Context;\r
2274 NET_CHECK_SIGNATURE (IpSb, IP4_SERVICE_SIGNATURE);\r
d1102dba 2275\r
018432f0
WF
2276 Ip4PacketTimerTicking (IpSb);\r
2277 Ip4IgmpTicking (IpSb);\r
2278}\r
2279\r
2280/**\r
d1102dba
LG
2281 This dedicated timer is used to poll underlying network media status. In case\r
2282 of cable swap or wireless network switch, a new round auto configuration will\r
2283 be initiated. The timer will signal the IP4 to run DHCP configuration again.\r
2284 IP4 driver will free old IP address related resource, such as route table and\r
2285 Interface, then initiate a DHCP process to acquire new IP, eventually create\r
018432f0
WF
2286 route table for new IP address.\r
2287\r
2288 @param[in] Event The IP4 service instance's heart beat timer.\r
2289 @param[in] Context The IP4 service instance.\r
2290\r
2291**/\r
2292VOID\r
2293EFIAPI\r
2294Ip4TimerReconfigChecking (\r
2295 IN EFI_EVENT Event,\r
2296 IN VOID *Context\r
2297 )\r
2298{\r
2299 IP4_SERVICE *IpSb;\r
2c320007
JW
2300 BOOLEAN OldMediaPresent;\r
2301 EFI_STATUS Status;\r
2302 EFI_SIMPLE_NETWORK_MODE SnpModeData;\r
772db4bb 2303\r
2304 IpSb = (IP4_SERVICE *) Context;\r
2305 NET_CHECK_SIGNATURE (IpSb, IP4_SERVICE_SIGNATURE);\r
d1102dba 2306\r
2c320007 2307 OldMediaPresent = IpSb->MediaPresent;\r
772db4bb 2308\r
2c320007 2309 //\r
d1102dba
LG
2310 // Get fresh mode data from MNP, since underlying media status may change.\r
2311 // Here, it needs to mention that the MediaPresent can also be checked even if\r
2c320007
JW
2312 // EFI_NOT_STARTED returned while this MNP child driver instance isn't configured.\r
2313 //\r
2314 Status = IpSb->Mnp->GetModeData (IpSb->Mnp, NULL, &SnpModeData);\r
2315 if (EFI_ERROR (Status) && (Status != EFI_NOT_STARTED)) {\r
2316 return;\r
2317 }\r
2318\r
2319 IpSb->MediaPresent = SnpModeData.MediaPresent;\r
2320 //\r
2321 // Media transimit Unpresent to Present means new link movement is detected.\r
2322 //\r
7648748e 2323 if (!OldMediaPresent && IpSb->MediaPresent && (IpSb->Ip4Config2Instance.Policy == Ip4Config2PolicyDhcp)) {\r
2c320007
JW
2324 //\r
2325 // Signal the IP4 to run the dhcp configuration again. IP4 driver will free\r
d1102dba
LG
2326 // old IP address related resource, such as route table and Interface, then\r
2327 // initiate a DHCP round to acquire new IP, eventually\r
2c320007
JW
2328 // create route table for new IP address.\r
2329 //\r
2330 if (IpSb->ReconfigEvent != NULL) {\r
2331 Status = gBS->SignalEvent (IpSb->ReconfigEvent);\r
2332 DispatchDpc ();\r
2333 }\r
2334 }\r
772db4bb 2335}\r