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ad86a50a 1/** @file\r
2 This file implements ATA pass through transaction for ATA bus driver.\r
3\r
4 This file implements the low level execution of ATA pass through transaction.\r
5 It transforms the high level identity, read/write, reset command to ATA pass\r
6 through command and protocol. \r
7 \r
8 Copyright (c) 2009 Intel Corporation. <BR>\r
9 All rights reserved. This program and the accompanying materials\r
10 are licensed and made available under the terms and conditions of the BSD License\r
11 which accompanies this distribution. The full text of the license may be found at\r
12 http://opensource.org/licenses/bsd-license.php\r
13\r
14 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
15 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
16\r
17\r
18**/\r
19\r
20#include "AtaBus.h"\r
21\r
22//\r
23// Look up table (UdmaValid, IsWrite) for EFI_ATA_PASS_THRU_CMD_PROTOCOL\r
24//\r
25EFI_ATA_PASS_THRU_CMD_PROTOCOL mAtaPassThruCmdProtocols[][2] = {\r
26 {\r
27 EFI_ATA_PASS_THRU_PROTOCOL_PIO_DATA_IN,\r
28 EFI_ATA_PASS_THRU_PROTOCOL_PIO_DATA_OUT\r
29 },\r
30 {\r
31 EFI_ATA_PASS_THRU_PROTOCOL_UDMA_DATA_IN,\r
32 EFI_ATA_PASS_THRU_PROTOCOL_UDMA_DATA_OUT,\r
33 }\r
34};\r
35\r
36//\r
37// Look up table (UdmaValid, Lba48Bit, IsIsWrite) for ATA_CMD\r
38//\r
39UINT8 mAtaCommands[][2][2] = {\r
40 {\r
41 {\r
42 ATA_CMD_READ_SECTORS, // 28-bit LBA; PIO read\r
43 ATA_CMD_WRITE_SECTORS // 28-bit LBA; PIO write\r
44 },\r
45 {\r
46 ATA_CMD_READ_SECTORS_EXT, // 48-bit LBA; PIO read\r
47 ATA_CMD_WRITE_SECTORS_EXT // 48-bit LBA; PIO write\r
48 }\r
49 },\r
50 {\r
51 {\r
52 ATA_CMD_READ_DMA, // 28-bit LBA; DMA read\r
53 ATA_CMD_WRITE_DMA // 28-bit LBA; DMA write\r
54 },\r
55 {\r
56 ATA_CMD_READ_DMA_EXT, // 48-bit LBA; DMA read\r
57 ATA_CMD_WRITE_DMA_EXT // 48-bit LBA; DMA write\r
58 }\r
59 }\r
60};\r
61\r
62//\r
63// Look up table (Lba48Bit) for maximum transfer block number\r
64//\r
65UINTN mMaxTransferBlockNumber[] = {\r
66 MAX_28BIT_TRANSFER_BLOCK_NUM,\r
67 MAX_48BIT_TRANSFER_BLOCK_NUM\r
68};\r
69\r
70\r
71/**\r
72 Wrapper for EFI_ATA_PASS_THRU_PROTOCOL.PassThru().\r
73\r
74 This function wraps the PassThru() invocation for ATA pass through function\r
75 for an ATA device. It assembles the ATA pass through command packet for ATA\r
76 transaction.\r
77\r
78 @param AtaDevice The ATA child device involved for the operation.\r
79\r
80 @return The return status from EFI_ATA_PASS_THRU_PROTOCOL.PassThru().\r
81\r
82**/\r
83EFI_STATUS\r
84AtaDevicePassThru (\r
85 IN OUT ATA_DEVICE *AtaDevice\r
86 )\r
87{\r
88 EFI_STATUS Status;\r
89 EFI_ATA_PASS_THRU_PROTOCOL *AtaPassThru;\r
90 EFI_ATA_PASS_THRU_COMMAND_PACKET *Packet;\r
91\r
92 //\r
93 // Assemble packet\r
94 //\r
95 Packet = &AtaDevice->Packet;\r
96 Packet->Asb = AtaDevice->Asb;\r
97 Packet->Acb = &AtaDevice->Acb;\r
98 Packet->Timeout = ATA_TIMEOUT;\r
99\r
100 AtaPassThru = AtaDevice->AtaBusDriverData->AtaPassThru;\r
101\r
102 Status = AtaPassThru->PassThru (\r
103 AtaPassThru,\r
104 AtaDevice->Port,\r
105 AtaDevice->PortMultiplierPort,\r
106 Packet,\r
107 NULL\r
108 );\r
109 //\r
110 // Ensure ATA pass through caller and callee have the same\r
111 // interpretation of ATA pass through protocol. \r
112 //\r
113 ASSERT (Status != EFI_INVALID_PARAMETER);\r
114 ASSERT (Status != EFI_BAD_BUFFER_SIZE);\r
115\r
116 return Status;\r
117}\r
118\r
119\r
120/**\r
121 Wrapper for EFI_ATA_PASS_THRU_PROTOCOL.ResetDevice().\r
122\r
123 This function wraps the ResetDevice() invocation for ATA pass through function\r
124 for an ATA device. \r
125\r
126 @param AtaDevice The ATA child device involved for the operation.\r
127\r
128 @return The return status from EFI_ATA_PASS_THRU_PROTOCOL.PassThru().\r
129\r
130**/\r
131EFI_STATUS\r
132ResetAtaDevice (\r
133 IN ATA_DEVICE *AtaDevice\r
134 )\r
135{\r
136 EFI_ATA_PASS_THRU_PROTOCOL *AtaPassThru;\r
137 \r
138 AtaPassThru = AtaDevice->AtaBusDriverData->AtaPassThru;\r
139 \r
140 return AtaPassThru->ResetDevice (\r
141 AtaPassThru,\r
142 AtaDevice->Port,\r
143 AtaDevice->PortMultiplierPort\r
144 );\r
145}\r
146\r
147\r
148/**\r
149 Prints ATA model name to ATA device structure.\r
150\r
151 This function converts ATA device model name from ATA identify data \r
152 to a string in ATA device structure. It needs to change the character\r
153 order in the original model name string.\r
154\r
155 @param AtaDevice The ATA child device involved for the operation.\r
156\r
157**/\r
158VOID\r
159PrintAtaModelName (\r
160 IN OUT ATA_DEVICE *AtaDevice\r
161 )\r
162{\r
163 UINTN Index;\r
164 CHAR8 *Source;\r
165 CHAR16 *Destination;\r
166\r
167 Source = AtaDevice->IdentifyData->AtaData.ModelName;\r
168 Destination = AtaDevice->ModelName;\r
169\r
170 //\r
171 // Swap the byte order in the original module name.\r
172 //\r
173 for (Index = 0; Index < MAX_MODEL_NAME_LEN; Index += 2) {\r
174 Destination[Index] = Source[Index + 1];\r
175 Destination[Index + 1] = Source[Index];\r
176 }\r
177 AtaDevice->ModelName[MAX_MODEL_NAME_LEN] = L'\0';\r
178}\r
179\r
180\r
181/**\r
182 Gets ATA device Capacity according to ATA 6.\r
183\r
184 This function returns the capacity of the ATA device if it follows\r
185 ATA 6 to support 48 bit addressing.\r
186\r
187 @param AtaDevice The ATA child device involved for the operation.\r
188\r
189 @return The capacity of the ATA device or 0 if the device does not support\r
190 48-bit addressing defined in ATA 6.\r
191\r
192**/\r
193EFI_LBA\r
194GetAtapi6Capacity (\r
195 IN ATA_DEVICE *AtaDevice\r
196 )\r
197{\r
198 EFI_LBA Capacity;\r
199 EFI_LBA TmpLba;\r
200 UINTN Index;\r
201 ATAPI_IDENTIFY_DATA *IdentifyData;\r
202\r
203 IdentifyData = (ATAPI_IDENTIFY_DATA *) AtaDevice->IdentifyData;\r
204 if ((IdentifyData->cmd_set_support_83 & BIT10) == 0) {\r
205 //\r
206 // The device doesn't support 48 bit addressing\r
207 //\r
208 return 0;\r
209 }\r
210\r
211 //\r
212 // 48 bit address feature set is supported, get maximum capacity\r
213 //\r
214 Capacity = 0;\r
215 for (Index = 0; Index < 4; Index++) {\r
216 //\r
217 // Lower byte goes first: word[100] is the lowest word, word[103] is highest\r
218 //\r
219 TmpLba = IdentifyData->max_user_lba_for_48bit_addr[Index];\r
220 Capacity |= LShiftU64 (TmpLba, 16 * Index);\r
221 }\r
222\r
223 return Capacity;\r
224}\r
225\r
226\r
227/**\r
228 Identifies ATA device via the Identify data.\r
229\r
230 This function identifies the ATA device and initializes the Media information in \r
231 Block IO protocol interface.\r
232\r
233 @param AtaDevice The ATA child device involved for the operation.\r
234\r
235 @retval EFI_UNSUPPORTED The device is not a valid ATA device (hard disk).\r
236 @retval EFI_SUCCESS The device is successfully identified and Media information\r
237 is correctly initialized.\r
238\r
239**/\r
240EFI_STATUS\r
241IdentifyAtaDevice (\r
242 IN OUT ATA_DEVICE *AtaDevice\r
243 )\r
244{\r
245 EFI_ATA_IDENTIFY_DATA *IdentifyData;\r
246 EFI_BLOCK_IO_MEDIA *BlockMedia;\r
247 EFI_LBA Capacity;\r
248 UINT16 PhyLogicSectorSupport;\r
249 UINT16 UdmaMode;\r
250\r
251 IdentifyData = &AtaDevice->IdentifyData->AtaData;\r
252\r
253 if ((IdentifyData->config & BIT15) != 0) {\r
254 //\r
255 // This is not an hard disk\r
256 //\r
257 return EFI_UNSUPPORTED;\r
258 }\r
259\r
260 //\r
261 // Check whether the WORD 88 (supported UltraDMA by drive) is valid\r
262 //\r
263 if ((IdentifyData->field_validity & BIT2) != 0) {\r
264 UdmaMode = IdentifyData->ultra_dma_mode;\r
265 if ((UdmaMode & (BIT0 | BIT1 | BIT2 | BIT3 | BIT4 | BIT5 | BIT6)) != 0) {\r
266 //\r
267 // If BIT0~BIT6 is selected, then UDMA is supported\r
268 //\r
269 AtaDevice->UdmaValid = TRUE;\r
270 }\r
271 }\r
272\r
273 Capacity = GetAtapi6Capacity (AtaDevice);\r
274 if (Capacity > MAX_28BIT_ADDRESSING_CAPACITY) {\r
275 //\r
276 // Capacity exceeds 120GB. 48-bit addressing is really needed\r
277 //\r
278 AtaDevice->Lba48Bit = TRUE;\r
279 } else {\r
280 //\r
281 // This is a hard disk <= 120GB capacity, treat it as normal hard disk\r
282 //\r
283 Capacity = ((UINT32)IdentifyData->user_addressable_sectors_hi << 16) | IdentifyData->user_addressable_sectors_lo;\r
284 AtaDevice->Lba48Bit = FALSE;\r
285 }\r
286\r
287 //\r
288 // Block Media Information:\r
289 //\r
290 BlockMedia = &AtaDevice->BlockMedia;\r
291 BlockMedia->LastBlock = Capacity - 1;\r
292 //\r
293 // Check whether Long Physical Sector Feature is supported\r
294 //\r
295 PhyLogicSectorSupport = IdentifyData->phy_logic_sector_support;\r
296 if ((PhyLogicSectorSupport & (BIT14 | BIT15)) == BIT14) {\r
297 //\r
298 // Check whether one physical block contains multiple physical blocks\r
299 //\r
300 if ((PhyLogicSectorSupport & BIT13) != 0) {\r
301 BlockMedia->LogicalBlocksPerPhysicalBlock = (UINT32) (1 << (PhyLogicSectorSupport & 0x000f));\r
302 //\r
303 // Check lowest alignment of logical blocks within physical block\r
304 //\r
305 if ((IdentifyData->alignment_logic_in_phy_blocks & (BIT14 | BIT15)) == BIT14) {\r
306 BlockMedia->LowestAlignedLba = (EFI_LBA) (IdentifyData->alignment_logic_in_phy_blocks & 0x3fff);\r
307 }\r
308 }\r
309 //\r
310 // Check logical block size\r
311 //\r
312 if ((PhyLogicSectorSupport & BIT12) != 0) {\r
313 BlockMedia->BlockSize = (UINT32) (((IdentifyData->logic_sector_size_hi << 16) | IdentifyData->logic_sector_size_lo) * sizeof (UINT16));\r
314 }\r
315 AtaDevice->BlockIo.Revision = EFI_BLOCK_IO_PROTOCOL_REVISION2;\r
316 }\r
317 //\r
318 // Get ATA model name from identify data structure. \r
319 //\r
320 PrintAtaModelName (AtaDevice); \r
321\r
322 return EFI_SUCCESS;\r
323}\r
324\r
325\r
326/**\r
327 Discovers whether it is a valid ATA device.\r
328\r
329 This function issues ATA_CMD_IDENTIFY_DRIVE command to the ATA device to identify it.\r
330 If the command is executed successfully, it then identifies it and initializes\r
331 the Media information in Block IO protocol interface.\r
332\r
333 @param AtaDevice The ATA child device involved for the operation.\r
334\r
335 @retval EFI_SUCCESS The device is successfully identified and Media information\r
336 is correctly initialized.\r
337 @return others Some error occurs when discovering the ATA device. \r
338\r
339**/\r
340EFI_STATUS\r
341DiscoverAtaDevice (\r
342 IN OUT ATA_DEVICE *AtaDevice\r
343 )\r
344{\r
345 EFI_STATUS Status;\r
346 EFI_ATA_COMMAND_BLOCK *Acb;\r
347 EFI_ATA_PASS_THRU_COMMAND_PACKET *Packet;\r
348 UINTN Retry;\r
349\r
350 //\r
351 // Prepare for ATA command block.\r
352 //\r
353 Acb = ZeroMem (&AtaDevice->Acb, sizeof (*Acb));\r
354 Acb->AtaCommand = ATA_CMD_IDENTIFY_DRIVE;\r
355\r
356 //\r
357 // Prepare for ATA pass through packet.\r
358 //\r
359 Packet = ZeroMem (&AtaDevice->Packet, sizeof (*Packet));\r
360 Packet->InDataBuffer = AtaDevice->IdentifyData;\r
361 Packet->InTransferLength = sizeof (*AtaDevice->IdentifyData);\r
362 Packet->Protocol = EFI_ATA_PASS_THRU_PROTOCOL_PIO_DATA_IN;\r
363 Packet->Length = EFI_ATA_PASS_THRU_LENGTH_BYTES | EFI_ATA_PASS_THRU_LENGTH_SECTOR_COUNT;\r
364\r
365 Retry = MAX_RETRY_TIMES;\r
366 do {\r
367 Status = AtaDevicePassThru (AtaDevice);\r
368 if (!EFI_ERROR (Status)) {\r
369 //\r
370 // The command is issued successfully\r
371 //\r
372 Status = IdentifyAtaDevice (AtaDevice);\r
373 if (!EFI_ERROR (Status)) {\r
374 return Status;\r
375 }\r
376 }\r
377 } while (Retry-- > 0);\r
378\r
379 return Status;\r
380}\r
381\r
382/**\r
383 Transfer data from ATA device.\r
384\r
385 This function performs one ATA pass through transaction to transfer data from/to\r
386 ATA device. It chooses the appropriate ATA command and protocol to invoke PassThru\r
387 interface of ATA pass through.\r
388\r
389 @param AtaDevice The ATA child device involved for the operation.\r
390 @param Buffer The pointer to the current transaction buffer.\r
391 @param StartLba The starting logical block address to be accessed.\r
392 @param TransferLength The block number or sector count of the transfer.\r
393 @param IsWrite Indicates whether it is a write operation.\r
394\r
395 @retval EFI_SUCCESS The data transfer is complete successfully.\r
396 @return others Some error occurs when transferring data. \r
397\r
398**/\r
399EFI_STATUS\r
400TransferAtaDevice (\r
401 IN OUT ATA_DEVICE *AtaDevice,\r
402 IN OUT VOID *Buffer,\r
403 IN EFI_LBA StartLba,\r
404 IN UINT32 TransferLength,\r
405 IN BOOLEAN IsWrite\r
406 )\r
407{\r
408 EFI_ATA_COMMAND_BLOCK *Acb;\r
409 EFI_ATA_PASS_THRU_COMMAND_PACKET *Packet;\r
410\r
411 //\r
412 // Prepare for ATA command block.\r
413 //\r
414 Acb = ZeroMem (&AtaDevice->Acb, sizeof (*Acb));\r
415 Acb->AtaCommand = mAtaCommands[AtaDevice->UdmaValid][AtaDevice->Lba48Bit][IsWrite];\r
416 Acb->AtaSectorNumber = (UINT8) StartLba;\r
417 Acb->AtaCylinderLow = (UINT8) RShiftU64 (StartLba, 8);\r
418 Acb->AtaCylinderHigh = (UINT8) RShiftU64 (StartLba, 16);\r
419 Acb->AtaDeviceHead = (UINT8) (BIT7 | BIT6 | BIT5 | (AtaDevice->PortMultiplierPort << 4)); \r
420 if (AtaDevice->Lba48Bit) {\r
421 Acb->AtaSectorNumberExp = (UINT8) RShiftU64 (StartLba, 24);\r
422 } else {\r
423 Acb->AtaDeviceHead = (UINT8) (Acb->AtaDeviceHead | RShiftU64 (StartLba, 24));\r
424 }\r
425 Acb->AtaCylinderLowExp = (UINT8) RShiftU64 (StartLba, 32);\r
426 Acb->AtaCylinderHighExp = (UINT8) RShiftU64 (StartLba, 40);\r
427 Acb->AtaSectorCount = (UINT8) TransferLength;\r
428 Acb->AtaSectorCountExp = (UINT8) (TransferLength >> 8);\r
429\r
430 //\r
431 // Prepare for ATA pass through packet.\r
432 //\r
433 Packet = ZeroMem (&AtaDevice->Packet, sizeof (*Packet));\r
434 if (IsWrite) {\r
435 Packet->OutDataBuffer = Buffer;\r
436 Packet->OutTransferLength = TransferLength;\r
437 } else {\r
438 Packet->InDataBuffer = Buffer;\r
439 Packet->InTransferLength = TransferLength;\r
440 }\r
441 Packet->Protocol = mAtaPassThruCmdProtocols[AtaDevice->UdmaValid][IsWrite];\r
442 Packet->Length = EFI_ATA_PASS_THRU_LENGTH_SECTOR_COUNT;\r
443\r
444 return AtaDevicePassThru (AtaDevice); \r
445}\r
446\r
447/**\r
448 Read or write a number of blocks from ATA device.\r
449\r
450 This function performs ATA pass through transactions to read/write data from/to\r
451 ATA device. It may separate the read/write request into several ATA pass through\r
452 transactions.\r
453\r
454 @param AtaDevice The ATA child device involved for the operation.\r
455 @param Buffer The pointer to the current transaction buffer.\r
456 @param StartLba The starting logical block address to be accessed.\r
457 @param NumberOfBlocks The block number or sector count of the transfer.\r
458 @param IsWrite Indicates whether it is a write operation.\r
459\r
460 @retval EFI_SUCCESS The data transfer is complete successfully.\r
461 @return others Some error occurs when transferring data. \r
462\r
463**/\r
464EFI_STATUS \r
465AccessAtaDevice(\r
466 IN OUT ATA_DEVICE *AtaDevice,\r
467 IN OUT UINT8 *Buffer,\r
468 IN EFI_LBA StartLba,\r
469 IN UINTN NumberOfBlocks,\r
470 IN BOOLEAN IsWrite\r
471 )\r
472{\r
473 EFI_STATUS Status;\r
474 UINTN MaxTransferBlockNumber;\r
475 UINTN TransferBlockNumber;\r
476 UINTN BlockSize;\r
477 \r
478 MaxTransferBlockNumber = mMaxTransferBlockNumber[AtaDevice->Lba48Bit];\r
479 BlockSize = AtaDevice->BlockMedia.BlockSize;\r
480 do {\r
481 if (NumberOfBlocks > MaxTransferBlockNumber) {\r
482 TransferBlockNumber = MaxTransferBlockNumber;\r
483 NumberOfBlocks -= MaxTransferBlockNumber;\r
484 } else {\r
485 TransferBlockNumber = NumberOfBlocks;\r
486 NumberOfBlocks = 0;\r
487 }\r
488\r
489 Status = TransferAtaDevice (AtaDevice, Buffer, StartLba, (UINT32) TransferBlockNumber, IsWrite);\r
490 if (EFI_ERROR (Status)) {\r
491 return Status;\r
492 }\r
493 StartLba += TransferBlockNumber;\r
494 Buffer += TransferBlockNumber * BlockSize;\r
495 } while (NumberOfBlocks > 0);\r
496\r
497 return Status;\r
498}\r