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1/** @file\r
2 Implementation of the command set of USB Mass Storage Specification\r
3 for Bootability, Revision 1.0.\r
4\r
5Copyright (c) 2007 - 2018, Intel Corporation. All rights reserved.<BR>\r
6This program and the accompanying materials\r
7are licensed and made available under the terms and conditions of the BSD License\r
8which accompanies this distribution. The full text of the license may be found at\r
9http://opensource.org/licenses/bsd-license.php\r
10\r
11THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
12WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
13\r
14**/\r
15\r
16#include "UsbMass.h"\r
17\r
18/**\r
19 Execute REQUEST SENSE Command to retrieve sense data from device.\r
20\r
21 @param UsbMass The device whose sense data is requested.\r
22\r
23 @retval EFI_SUCCESS The command is executed successfully.\r
24 @retval EFI_DEVICE_ERROR Failed to request sense.\r
25 @retval EFI_NO_RESPONSE The device media doesn't response this request.\r
26 @retval EFI_INVALID_PARAMETER The command has some invalid parameters.\r
27 @retval EFI_WRITE_PROTECTED The device is write protected.\r
28 @retval EFI_MEDIA_CHANGED The device media has been changed.\r
29\r
30**/\r
31EFI_STATUS\r
32UsbBootRequestSense (\r
33 IN USB_MASS_DEVICE *UsbMass\r
34 )\r
35{\r
36 USB_BOOT_REQUEST_SENSE_CMD SenseCmd;\r
37 USB_BOOT_REQUEST_SENSE_DATA SenseData;\r
38 EFI_BLOCK_IO_MEDIA *Media;\r
39 USB_MASS_TRANSPORT *Transport;\r
40 EFI_STATUS Status;\r
41 UINT32 CmdResult;\r
42\r
43 Transport = UsbMass->Transport;\r
44\r
45 //\r
46 // Request the sense data from the device\r
47 //\r
48 ZeroMem (&SenseCmd, sizeof (USB_BOOT_REQUEST_SENSE_CMD));\r
49 ZeroMem (&SenseData, sizeof (USB_BOOT_REQUEST_SENSE_DATA));\r
50\r
51 SenseCmd.OpCode = USB_BOOT_REQUEST_SENSE_OPCODE;\r
52 SenseCmd.Lun = (UINT8) (USB_BOOT_LUN (UsbMass->Lun));\r
53 SenseCmd.AllocLen = (UINT8) sizeof (USB_BOOT_REQUEST_SENSE_DATA);\r
54\r
55 Status = Transport->ExecCommand (\r
56 UsbMass->Context,\r
57 &SenseCmd,\r
58 sizeof (USB_BOOT_REQUEST_SENSE_CMD),\r
59 EfiUsbDataIn,\r
60 &SenseData,\r
61 sizeof (USB_BOOT_REQUEST_SENSE_DATA),\r
62 UsbMass->Lun,\r
63 USB_BOOT_GENERAL_CMD_TIMEOUT,\r
64 &CmdResult\r
65 );\r
66 if (EFI_ERROR (Status) || CmdResult != USB_MASS_CMD_SUCCESS) {\r
67 DEBUG ((EFI_D_ERROR, "UsbBootRequestSense: (%r) CmdResult=0x%x\n", Status, CmdResult));\r
68 if (!EFI_ERROR (Status)) {\r
69 Status = EFI_DEVICE_ERROR;\r
70 }\r
71 return Status;\r
72 }\r
73\r
74 //\r
75 // If sense data is retrieved successfully, interpret the sense data\r
76 // and update the media status if necessary.\r
77 //\r
78 Media = &UsbMass->BlockIoMedia;\r
79\r
80 switch (USB_BOOT_SENSE_KEY (SenseData.SenseKey)) {\r
81\r
82 case USB_BOOT_SENSE_NO_SENSE:\r
83 if (SenseData.Asc == USB_BOOT_ASC_NO_ADDITIONAL_SENSE_INFORMATION) {\r
84 //\r
85 // It is not an error if a device does not have additional sense information\r
86 //\r
87 Status = EFI_SUCCESS;\r
88 } else {\r
89 Status = EFI_NO_RESPONSE;\r
90 }\r
91 break;\r
92\r
93 case USB_BOOT_SENSE_RECOVERED:\r
94 //\r
95 // Suppose hardware can handle this case, and recover later by itself\r
96 //\r
97 Status = EFI_NOT_READY;\r
98 break;\r
99\r
100 case USB_BOOT_SENSE_NOT_READY:\r
101 Status = EFI_DEVICE_ERROR;\r
102 if (SenseData.Asc == USB_BOOT_ASC_NO_MEDIA) {\r
103 Media->MediaPresent = FALSE;\r
104 Status = EFI_NO_MEDIA;\r
105 } else if (SenseData.Asc == USB_BOOT_ASC_NOT_READY) {\r
106 Status = EFI_NOT_READY;\r
107 }\r
108 break;\r
109\r
110 case USB_BOOT_SENSE_ILLEGAL_REQUEST:\r
111 Status = EFI_INVALID_PARAMETER;\r
112 break;\r
113\r
114 case USB_BOOT_SENSE_UNIT_ATTENTION:\r
115 Status = EFI_DEVICE_ERROR;\r
116 if (SenseData.Asc == USB_BOOT_ASC_MEDIA_CHANGE) {\r
117 //\r
118 // If MediaChange, reset ReadOnly and new MediaId\r
119 //\r
120 Status = EFI_MEDIA_CHANGED;\r
121 Media->ReadOnly = FALSE;\r
122 Media->MediaId++;\r
123 } else if (SenseData.Asc == USB_BOOT_ASC_NOT_READY) {\r
124 Status = EFI_NOT_READY;\r
125 } else if (SenseData.Asc == USB_BOOT_ASC_NO_MEDIA) {\r
126 Status = EFI_NOT_READY;\r
127 }\r
128 break;\r
129\r
130 case USB_BOOT_SENSE_DATA_PROTECT:\r
131 Status = EFI_WRITE_PROTECTED;\r
132 Media->ReadOnly = TRUE;\r
133 break;\r
134\r
135 default:\r
136 Status = EFI_DEVICE_ERROR;\r
137 break;\r
138 }\r
139\r
140 DEBUG ((EFI_D_INFO, "UsbBootRequestSense: (%r) with error code (%x) sense key %x/%x/%x\n",\r
141 Status,\r
142 SenseData.ErrorCode,\r
143 USB_BOOT_SENSE_KEY (SenseData.SenseKey),\r
144 SenseData.Asc,\r
145 SenseData.Ascq\r
146 ));\r
147\r
148 return Status;\r
149}\r
150\r
151\r
152/**\r
153 Execute the USB mass storage bootability commands.\r
154\r
155 This function executes the USB mass storage bootability commands.\r
156 If execution failed, retrieve the error by REQUEST_SENSE, then\r
157 update the device's status, such as ReadyOnly.\r
158\r
159 @param UsbMass The device to issue commands to\r
160 @param Cmd The command to execute\r
161 @param CmdLen The length of the command\r
162 @param DataDir The direction of data transfer\r
163 @param Data The buffer to hold the data\r
164 @param DataLen The length of expected data\r
165 @param Timeout The timeout used to transfer\r
166\r
167 @retval EFI_SUCCESS Command is executed successfully\r
168 @retval Others Command execution failed.\r
169\r
170**/\r
171EFI_STATUS\r
172UsbBootExecCmd (\r
173 IN USB_MASS_DEVICE *UsbMass,\r
174 IN VOID *Cmd,\r
175 IN UINT8 CmdLen,\r
176 IN EFI_USB_DATA_DIRECTION DataDir,\r
177 IN VOID *Data,\r
178 IN UINT32 DataLen,\r
179 IN UINT32 Timeout\r
180 )\r
181{\r
182 USB_MASS_TRANSPORT *Transport;\r
183 EFI_STATUS Status;\r
184 UINT32 CmdResult;\r
185\r
186 Transport = UsbMass->Transport;\r
187 Status = Transport->ExecCommand (\r
188 UsbMass->Context,\r
189 Cmd,\r
190 CmdLen,\r
191 DataDir,\r
192 Data,\r
193 DataLen,\r
194 UsbMass->Lun,\r
195 Timeout,\r
196 &CmdResult\r
197 );\r
198\r
199 if (Status == EFI_TIMEOUT) {\r
200 DEBUG ((EFI_D_ERROR, "UsbBootExecCmd: %r to Exec 0x%x Cmd\n", Status, *(UINT8 *)Cmd));\r
201 return EFI_TIMEOUT;\r
202 }\r
203\r
204 //\r
205 // If ExecCommand() returns no error and CmdResult is success,\r
206 // then the commnad transfer is successful.\r
207 //\r
208 if ((CmdResult == USB_MASS_CMD_SUCCESS) && !EFI_ERROR (Status)) {\r
209 return EFI_SUCCESS;\r
210 }\r
211\r
212 //\r
213 // If command execution failed, then retrieve error info via sense request.\r
214 //\r
215 DEBUG ((EFI_D_ERROR, "UsbBootExecCmd: %r to Exec 0x%x Cmd (Result = %x)\n", Status, *(UINT8 *)Cmd, CmdResult));\r
216 return UsbBootRequestSense (UsbMass);\r
217}\r
218\r
219\r
220/**\r
221 Execute the USB mass storage bootability commands with retrial.\r
222\r
223 This function executes USB mass storage bootability commands.\r
224 If the device isn't ready, wait for it. If the device is ready\r
225 and error occurs, retry the command again until it exceeds the\r
226 limit of retrial times.\r
227 \r
228 @param UsbMass The device to issue commands to\r
229 @param Cmd The command to execute\r
230 @param CmdLen The length of the command\r
231 @param DataDir The direction of data transfer\r
232 @param Data The buffer to hold the data\r
233 @param DataLen The length of expected data\r
234 @param Timeout The timeout used to transfer\r
235\r
236 @retval EFI_SUCCESS The command is executed successfully.\r
237 @retval EFI_MEDIA_CHANGED The device media has been changed.\r
238 @retval Others Command execution failed after retrial.\r
239\r
240**/\r
241EFI_STATUS\r
242UsbBootExecCmdWithRetry (\r
243 IN USB_MASS_DEVICE *UsbMass,\r
244 IN VOID *Cmd,\r
245 IN UINT8 CmdLen,\r
246 IN EFI_USB_DATA_DIRECTION DataDir,\r
247 IN VOID *Data,\r
248 IN UINT32 DataLen,\r
249 IN UINT32 Timeout\r
250 )\r
251{\r
252 EFI_STATUS Status;\r
253 UINTN Retry;\r
254 EFI_EVENT TimeoutEvt;\r
255\r
256 Retry = 0;\r
257 Status = EFI_SUCCESS;\r
258 Status = gBS->CreateEvent (\r
259 EVT_TIMER,\r
260 TPL_CALLBACK,\r
261 NULL,\r
262 NULL,\r
263 &TimeoutEvt\r
264 );\r
265 if (EFI_ERROR (Status)) {\r
266 return Status;\r
267 }\r
268\r
269 Status = gBS->SetTimer (TimeoutEvt, TimerRelative, EFI_TIMER_PERIOD_SECONDS(60));\r
270 if (EFI_ERROR (Status)) {\r
271 goto EXIT;\r
272 }\r
273\r
274 //\r
275 // Execute the cmd and retry if it fails.\r
276 //\r
277 while (EFI_ERROR (gBS->CheckEvent (TimeoutEvt))) {\r
278 Status = UsbBootExecCmd (\r
279 UsbMass,\r
280 Cmd,\r
281 CmdLen,\r
282 DataDir,\r
283 Data,\r
284 DataLen,\r
285 Timeout\r
286 );\r
287 if (Status == EFI_SUCCESS || Status == EFI_MEDIA_CHANGED || Status == EFI_NO_MEDIA) {\r
288 break;\r
289 }\r
290 //\r
291 // If the sense data shows the drive is not ready, we need execute the cmd again.\r
292 // We limit the upper boundary to 60 seconds.\r
293 //\r
294 if (Status == EFI_NOT_READY) {\r
295 continue;\r
296 }\r
297 //\r
298 // If the status is other error, then just retry 5 times.\r
299 //\r
300 if (Retry++ >= USB_BOOT_COMMAND_RETRY) {\r
301 break;\r
302 }\r
303 }\r
304\r
305EXIT:\r
306 if (TimeoutEvt != NULL) {\r
307 gBS->CloseEvent (TimeoutEvt);\r
308 }\r
309\r
310 return Status;\r
311}\r
312\r
313\r
314/**\r
315 Execute TEST UNIT READY command to check if the device is ready.\r
316\r
317 @param UsbMass The device to test\r
318\r
319 @retval EFI_SUCCESS The device is ready.\r
320 @retval Others Device not ready.\r
321\r
322**/\r
323EFI_STATUS\r
324UsbBootIsUnitReady (\r
325 IN USB_MASS_DEVICE *UsbMass\r
326 )\r
327{\r
328 USB_BOOT_TEST_UNIT_READY_CMD TestCmd;\r
329\r
330 ZeroMem (&TestCmd, sizeof (USB_BOOT_TEST_UNIT_READY_CMD));\r
331\r
332 TestCmd.OpCode = USB_BOOT_TEST_UNIT_READY_OPCODE;\r
333 TestCmd.Lun = (UINT8) (USB_BOOT_LUN (UsbMass->Lun));\r
334\r
335 return UsbBootExecCmdWithRetry (\r
336 UsbMass,\r
337 &TestCmd,\r
338 (UINT8) sizeof (USB_BOOT_TEST_UNIT_READY_CMD),\r
339 EfiUsbNoData,\r
340 NULL,\r
341 0,\r
342 USB_BOOT_GENERAL_CMD_TIMEOUT\r
343 );\r
344}\r
345\r
346\r
347/**\r
348 Execute INQUIRY Command to request information regarding parameters of\r
349 the device be sent to the host computer.\r
350\r
351 @param UsbMass The device to inquire.\r
352\r
353 @retval EFI_SUCCESS INQUIRY Command is executed successfully.\r
354 @retval Others INQUIRY Command is not executed successfully.\r
355\r
356**/\r
357EFI_STATUS\r
358UsbBootInquiry (\r
359 IN USB_MASS_DEVICE *UsbMass\r
360 )\r
361{\r
362 USB_BOOT_INQUIRY_CMD InquiryCmd;\r
363 EFI_BLOCK_IO_MEDIA *Media;\r
364 EFI_STATUS Status;\r
365\r
366 Media = &(UsbMass->BlockIoMedia);\r
367\r
368 ZeroMem (&InquiryCmd, sizeof (USB_BOOT_INQUIRY_CMD));\r
369 ZeroMem (&UsbMass->InquiryData, sizeof (USB_BOOT_INQUIRY_DATA));\r
370\r
371 InquiryCmd.OpCode = USB_BOOT_INQUIRY_OPCODE;\r
372 InquiryCmd.Lun = (UINT8) (USB_BOOT_LUN (UsbMass->Lun));\r
373 InquiryCmd.AllocLen = (UINT8) sizeof (USB_BOOT_INQUIRY_DATA);\r
374\r
375 Status = UsbBootExecCmdWithRetry (\r
376 UsbMass,\r
377 &InquiryCmd,\r
378 (UINT8) sizeof (USB_BOOT_INQUIRY_CMD),\r
379 EfiUsbDataIn,\r
380 &UsbMass->InquiryData,\r
381 sizeof (USB_BOOT_INQUIRY_DATA),\r
382 USB_BOOT_GENERAL_CMD_TIMEOUT\r
383 );\r
384 if (EFI_ERROR (Status)) {\r
385 return Status;\r
386 }\r
387\r
388 //\r
389 // Get information from PDT (Peripheral Device Type) field and Removable Medium Bit\r
390 // from the inquiry data.\r
391 //\r
392 UsbMass->Pdt = (UINT8) (USB_BOOT_PDT (UsbMass->InquiryData.Pdt));\r
393 Media->RemovableMedia = (BOOLEAN) (USB_BOOT_REMOVABLE (UsbMass->InquiryData.Removable));\r
394 //\r
395 // Set block size to the default value of 512 Bytes, in case no media is present at first time.\r
396 //\r
397 Media->BlockSize = 0x0200;\r
398\r
399 return Status;\r
400}\r
401\r
402/**\r
403 Execute READ CAPACITY 16 bytes command to request information regarding\r
404 the capacity of the installed medium of the device.\r
405\r
406 This function executes READ CAPACITY 16 bytes command to get the capacity\r
407 of the USB mass storage media, including the presence, block size,\r
408 and last block number.\r
409\r
410 @param UsbMass The device to retireve disk gemotric.\r
411\r
412 @retval EFI_SUCCESS The disk geometry is successfully retrieved.\r
413 @retval EFI_NOT_READY The returned block size is zero.\r
414 @retval Other READ CAPACITY 16 bytes command execution failed.\r
415 \r
416**/\r
417EFI_STATUS\r
418UsbBootReadCapacity16 (\r
419 IN USB_MASS_DEVICE *UsbMass\r
420 )\r
421{\r
422 UINT8 CapacityCmd[16];\r
423 EFI_SCSI_DISK_CAPACITY_DATA16 CapacityData;\r
424 EFI_BLOCK_IO_MEDIA *Media;\r
425 EFI_STATUS Status;\r
426 UINT32 BlockSize;\r
427\r
428 Media = &UsbMass->BlockIoMedia;\r
429\r
430 Media->MediaPresent = FALSE;\r
431 Media->LastBlock = 0;\r
432 Media->BlockSize = 0;\r
433\r
434 ZeroMem (CapacityCmd, sizeof (CapacityCmd));\r
435 ZeroMem (&CapacityData, sizeof (CapacityData));\r
436\r
437 CapacityCmd[0] = EFI_SCSI_OP_READ_CAPACITY16;\r
438 CapacityCmd[1] = 0x10;\r
439 //\r
440 // Partial medium indicator, set the bytes 2 ~ 9 of the Cdb as ZERO.\r
441 //\r
442 ZeroMem ((CapacityCmd + 2), 8);\r
443\r
444 CapacityCmd[13] = sizeof (CapacityData);\r
445 \r
446 Status = UsbBootExecCmdWithRetry (\r
447 UsbMass,\r
448 CapacityCmd,\r
449 (UINT8) sizeof (CapacityCmd),\r
450 EfiUsbDataIn,\r
451 &CapacityData,\r
452 sizeof (CapacityData),\r
453 USB_BOOT_GENERAL_CMD_TIMEOUT\r
454 );\r
455 if (EFI_ERROR (Status)) {\r
456 return Status;\r
457 }\r
458\r
459 //\r
460 // Get the information on media presence, block size, and last block number\r
461 // from READ CAPACITY data.\r
462 //\r
463 Media->MediaPresent = TRUE;\r
464 Media->LastBlock = SwapBytes64 (ReadUnaligned64 ((CONST UINT64 *) &(CapacityData.LastLba7)));\r
465\r
466 BlockSize = SwapBytes32 (ReadUnaligned32 ((CONST UINT32 *) &(CapacityData.BlockSize3)));\r
467 \r
468 Media->LowestAlignedLba = (CapacityData.LowestAlignLogic2 << 8) |\r
469 CapacityData.LowestAlignLogic1;\r
470 Media->LogicalBlocksPerPhysicalBlock = (1 << CapacityData.LogicPerPhysical);\r
471 if (BlockSize == 0) {\r
472 //\r
473 // Get sense data \r
474 //\r
475 return UsbBootRequestSense (UsbMass);\r
476 } else {\r
477 Media->BlockSize = BlockSize;\r
478 }\r
479\r
480 return Status;\r
481}\r
482\r
483\r
484/**\r
485 Execute READ CAPACITY command to request information regarding\r
486 the capacity of the installed medium of the device.\r
487\r
488 This function executes READ CAPACITY command to get the capacity\r
489 of the USB mass storage media, including the presence, block size,\r
490 and last block number.\r
491\r
492 @param UsbMass The device to retireve disk gemotric.\r
493\r
494 @retval EFI_SUCCESS The disk geometry is successfully retrieved.\r
495 @retval EFI_NOT_READY The returned block size is zero.\r
496 @retval Other READ CAPACITY command execution failed.\r
497 \r
498**/\r
499EFI_STATUS\r
500UsbBootReadCapacity (\r
501 IN USB_MASS_DEVICE *UsbMass\r
502 )\r
503{\r
504 USB_BOOT_READ_CAPACITY_CMD CapacityCmd;\r
505 USB_BOOT_READ_CAPACITY_DATA CapacityData;\r
506 EFI_BLOCK_IO_MEDIA *Media;\r
507 EFI_STATUS Status;\r
508 UINT32 BlockSize;\r
509\r
510 Media = &UsbMass->BlockIoMedia;\r
511\r
512 ZeroMem (&CapacityCmd, sizeof (USB_BOOT_READ_CAPACITY_CMD));\r
513 ZeroMem (&CapacityData, sizeof (USB_BOOT_READ_CAPACITY_DATA));\r
514\r
515 CapacityCmd.OpCode = USB_BOOT_READ_CAPACITY_OPCODE;\r
516 CapacityCmd.Lun = (UINT8) (USB_BOOT_LUN (UsbMass->Lun));\r
517\r
518 Status = UsbBootExecCmdWithRetry (\r
519 UsbMass,\r
520 &CapacityCmd,\r
521 (UINT8) sizeof (USB_BOOT_READ_CAPACITY_CMD),\r
522 EfiUsbDataIn,\r
523 &CapacityData,\r
524 sizeof (USB_BOOT_READ_CAPACITY_DATA),\r
525 USB_BOOT_GENERAL_CMD_TIMEOUT\r
526 );\r
527 if (EFI_ERROR (Status)) {\r
528 return Status;\r
529 }\r
530\r
531 //\r
532 // Get the information on media presence, block size, and last block number\r
533 // from READ CAPACITY data.\r
534 //\r
535 Media->MediaPresent = TRUE;\r
536 Media->LastBlock = SwapBytes32 (ReadUnaligned32 ((CONST UINT32 *) CapacityData.LastLba));\r
537\r
538 BlockSize = SwapBytes32 (ReadUnaligned32 ((CONST UINT32 *) CapacityData.BlockLen));\r
539 if (BlockSize == 0) {\r
540 //\r
541 // Get sense data \r
542 //\r
543 return UsbBootRequestSense (UsbMass);\r
544 } else {\r
545 Media->BlockSize = BlockSize;\r
546 }\r
547\r
548 if (Media->LastBlock == 0xFFFFFFFF) {\r
549 Status = UsbBootReadCapacity16 (UsbMass);\r
550 if (!EFI_ERROR (Status)) {\r
551 UsbMass->Cdb16Byte = TRUE;\r
552 }\r
553 }\r
554\r
555 return Status;\r
556}\r
557\r
558/**\r
559 Retrieves SCSI mode sense information via MODE SENSE(6) command.\r
560\r
561 @param UsbMass The device whose sense data is requested.\r
562\r
563 @retval EFI_SUCCESS SCSI mode sense information retrieved successfully.\r
564 @retval Other Command execution failed.\r
565\r
566**/\r
567EFI_STATUS\r
568UsbScsiModeSense (\r
569 IN USB_MASS_DEVICE *UsbMass\r
570 )\r
571{\r
572 EFI_STATUS Status;\r
573 USB_SCSI_MODE_SENSE6_CMD ModeSenseCmd;\r
574 USB_SCSI_MODE_SENSE6_PARA_HEADER ModeParaHeader;\r
575 EFI_BLOCK_IO_MEDIA *Media;\r
576\r
577 Media = &UsbMass->BlockIoMedia;\r
578\r
579 ZeroMem (&ModeSenseCmd, sizeof (USB_SCSI_MODE_SENSE6_CMD));\r
580 ZeroMem (&ModeParaHeader, sizeof (USB_SCSI_MODE_SENSE6_PARA_HEADER));\r
581\r
582 //\r
583 // MODE SENSE(6) command is defined in Section 8.2.10 of SCSI-2 Spec\r
584 //\r
585 ModeSenseCmd.OpCode = USB_SCSI_MODE_SENSE6_OPCODE;\r
586 ModeSenseCmd.Lun = (UINT8) USB_BOOT_LUN (UsbMass->Lun);\r
587 ModeSenseCmd.PageCode = 0x3F;\r
588 ModeSenseCmd.AllocateLen = (UINT8) sizeof (USB_SCSI_MODE_SENSE6_PARA_HEADER);\r
589\r
590 Status = UsbBootExecCmdWithRetry (\r
591 UsbMass,\r
592 &ModeSenseCmd,\r
593 (UINT8) sizeof (USB_SCSI_MODE_SENSE6_CMD),\r
594 EfiUsbDataIn,\r
595 &ModeParaHeader,\r
596 sizeof (USB_SCSI_MODE_SENSE6_PARA_HEADER),\r
597 USB_BOOT_GENERAL_CMD_TIMEOUT\r
598 );\r
599\r
600 //\r
601 // Format of device-specific parameter byte of the mode parameter header is defined in\r
602 // Section 8.2.10 of SCSI-2 Spec.\r
603 // BIT7 of this byte is indicates whether the medium is write protected.\r
604 //\r
605 if (!EFI_ERROR (Status)) {\r
606 Media->ReadOnly = (BOOLEAN) ((ModeParaHeader.DevicePara & BIT7) != 0);\r
607 }\r
608\r
609 return Status;\r
610}\r
611\r
612\r
613/**\r
614 Get the parameters for the USB mass storage media.\r
615\r
616 This function get the parameters for the USB mass storage media,\r
617 It is used both to initialize the media during the Start() phase\r
618 of Driver Binding Protocol and to re-initialize it when the media is\r
619 changed. Althought the RemoveableMedia is unlikely to change,\r
620 it is also included here.\r
621\r
622 @param UsbMass The device to retrieve disk gemotric.\r
623\r
624 @retval EFI_SUCCESS The disk gemotric is successfully retrieved.\r
625 @retval Other Failed to get the parameters.\r
626\r
627**/\r
628EFI_STATUS\r
629UsbBootGetParams (\r
630 IN USB_MASS_DEVICE *UsbMass\r
631 )\r
632{\r
633 EFI_BLOCK_IO_MEDIA *Media;\r
634 EFI_STATUS Status;\r
635\r
636 Media = &(UsbMass->BlockIoMedia);\r
637\r
638 Status = UsbBootInquiry (UsbMass);\r
639 if (EFI_ERROR (Status)) {\r
640 DEBUG ((EFI_D_ERROR, "UsbBootGetParams: UsbBootInquiry (%r)\n", Status));\r
641 return Status;\r
642 }\r
643\r
644 //\r
645 // According to USB Mass Storage Specification for Bootability, only following\r
646 // 4 Peripheral Device Types are in spec.\r
647 //\r
648 if ((UsbMass->Pdt != USB_PDT_DIRECT_ACCESS) &&\r
649 (UsbMass->Pdt != USB_PDT_CDROM) &&\r
650 (UsbMass->Pdt != USB_PDT_OPTICAL) &&\r
651 (UsbMass->Pdt != USB_PDT_SIMPLE_DIRECT)) {\r
652 DEBUG ((EFI_D_ERROR, "UsbBootGetParams: Found an unsupported peripheral type[%d]\n", UsbMass->Pdt));\r
653 return EFI_UNSUPPORTED;\r
654 }\r
655\r
656 //\r
657 // Don't use the Removable bit in inquiry data to test whether the media\r
658 // is removable because many flash disks wrongly set this bit.\r
659 //\r
660 if ((UsbMass->Pdt == USB_PDT_CDROM) || (UsbMass->Pdt == USB_PDT_OPTICAL)) {\r
661 //\r
662 // CD-Rom device and Non-CD optical device\r
663 //\r
664 UsbMass->OpticalStorage = TRUE;\r
665 //\r
666 // Default value 2048 Bytes, in case no media present at first time\r
667 //\r
668 Media->BlockSize = 0x0800;\r
669 }\r
670\r
671 Status = UsbBootDetectMedia (UsbMass);\r
672\r
673 return Status;\r
674}\r
675\r
676\r
677/**\r
678 Detect whether the removable media is present and whether it has changed.\r
679\r
680 @param UsbMass The device to check.\r
681\r
682 @retval EFI_SUCCESS The media status is successfully checked.\r
683 @retval Other Failed to detect media.\r
684\r
685**/\r
686EFI_STATUS\r
687UsbBootDetectMedia (\r
688 IN USB_MASS_DEVICE *UsbMass\r
689 )\r
690{\r
691 EFI_BLOCK_IO_MEDIA OldMedia;\r
692 EFI_BLOCK_IO_MEDIA *Media;\r
693 UINT8 CmdSet;\r
694 EFI_TPL OldTpl;\r
695 EFI_STATUS Status;\r
696\r
697 Media = &UsbMass->BlockIoMedia;\r
698\r
699 CopyMem (&OldMedia, &(UsbMass->BlockIoMedia), sizeof (EFI_BLOCK_IO_MEDIA));\r
700\r
701 CmdSet = ((EFI_USB_INTERFACE_DESCRIPTOR *) (UsbMass->Context))->InterfaceSubClass;\r
702\r
703 Status = UsbBootIsUnitReady (UsbMass);\r
704 if (EFI_ERROR (Status) && (Status != EFI_MEDIA_CHANGED)) {\r
705 goto ON_ERROR;\r
706 }\r
707\r
708 if ((UsbMass->Pdt != USB_PDT_CDROM) && (CmdSet == USB_MASS_STORE_SCSI)) {\r
709 //\r
710 // MODE SENSE is required for the device with PDT of 0x00/0x07/0x0E,\r
711 // according to Section 4 of USB Mass Storage Specification for Bootability.\r
712 // MODE SENSE(10) is useless here, while MODE SENSE(6) defined in SCSI\r
713 // could get the information of Write Protected.\r
714 // Since not all device support this command, skip if fail.\r
715 //\r
716 UsbScsiModeSense (UsbMass);\r
717 }\r
718\r
719 Status = UsbBootReadCapacity (UsbMass);\r
720 if (EFI_ERROR (Status)) {\r
721 DEBUG ((EFI_D_ERROR, "UsbBootDetectMedia: UsbBootReadCapacity (%r)\n", Status));\r
722 goto ON_ERROR;\r
723 }\r
724\r
725 return EFI_SUCCESS;\r
726\r
727ON_ERROR:\r
728 //\r
729 // Detect whether it is necessary to reinstall the Block I/O Protocol.\r
730 //\r
731 // MediaId may change in RequestSense for MediaChanged\r
732 // MediaPresent may change in RequestSense for NoMedia\r
733 // MediaReadOnly may change in RequestSense for WriteProtected or MediaChanged\r
734 // MediaPresent/BlockSize/LastBlock may change in ReadCapacity\r
735 //\r
736 if ((Media->MediaId != OldMedia.MediaId) ||\r
737 (Media->MediaPresent != OldMedia.MediaPresent) ||\r
738 (Media->ReadOnly != OldMedia.ReadOnly) ||\r
739 (Media->BlockSize != OldMedia.BlockSize) ||\r
740 (Media->LastBlock != OldMedia.LastBlock)) {\r
741\r
742 //\r
743 // This function is called by Block I/O Protocol APIs, which run at TPL_NOTIFY.\r
744 // Here we temporarily restore TPL to TPL_CALLBACK to invoke ReinstallProtocolInterface().\r
745 //\r
746 OldTpl = EfiGetCurrentTpl ();\r
747 gBS->RestoreTPL (TPL_CALLBACK);\r
748\r
749 gBS->ReinstallProtocolInterface (\r
750 UsbMass->Controller,\r
751 &gEfiBlockIoProtocolGuid,\r
752 &UsbMass->BlockIo,\r
753 &UsbMass->BlockIo\r
754 );\r
755\r
756 ASSERT (EfiGetCurrentTpl () == TPL_CALLBACK);\r
757 gBS->RaiseTPL (OldTpl);\r
758\r
759 //\r
760 // Update MediaId after reinstalling Block I/O Protocol.\r
761 //\r
762 if (Media->MediaPresent != OldMedia.MediaPresent) {\r
763 if (Media->MediaPresent) {\r
764 Media->MediaId = 1;\r
765 } else {\r
766 Media->MediaId = 0;\r
767 }\r
768 }\r
769\r
770 if ((Media->ReadOnly != OldMedia.ReadOnly) ||\r
771 (Media->BlockSize != OldMedia.BlockSize) ||\r
772 (Media->LastBlock != OldMedia.LastBlock)) {\r
773 Media->MediaId++;\r
774 }\r
775 }\r
776\r
777 return Status;\r
778}\r
779\r
780\r
781/**\r
782 Read some blocks from the device.\r
783\r
784 @param UsbMass The USB mass storage device to read from\r
785 @param Lba The start block number\r
786 @param TotalBlock Total block number to read\r
787 @param Buffer The buffer to read to\r
788\r
789 @retval EFI_SUCCESS Data are read into the buffer\r
790 @retval Others Failed to read all the data\r
791\r
792**/\r
793EFI_STATUS\r
794UsbBootReadBlocks (\r
795 IN USB_MASS_DEVICE *UsbMass,\r
796 IN UINT32 Lba,\r
797 IN UINTN TotalBlock,\r
798 OUT UINT8 *Buffer\r
799 )\r
800{\r
801 USB_BOOT_READ10_CMD ReadCmd;\r
802 EFI_STATUS Status;\r
803 UINT16 Count;\r
804 UINT32 BlockSize;\r
805 UINT32 ByteSize;\r
806 UINT32 Timeout;\r
807\r
808 BlockSize = UsbMass->BlockIoMedia.BlockSize;\r
809 Status = EFI_SUCCESS;\r
810\r
811 while (TotalBlock > 0) {\r
812 //\r
813 // Split the total blocks into smaller pieces to ease the pressure\r
814 // on the device. We must split the total block because the READ10\r
815 // command only has 16 bit transfer length (in the unit of block).\r
816 //\r
817 Count = (UINT16)((TotalBlock < USB_BOOT_IO_BLOCKS) ? TotalBlock : USB_BOOT_IO_BLOCKS);\r
818 ByteSize = (UINT32)Count * BlockSize;\r
819\r
820 //\r
821 // USB command's upper limit timeout is 5s. [USB2.0-9.2.6.1]\r
822 //\r
823 Timeout = (UINT32) USB_BOOT_GENERAL_CMD_TIMEOUT;\r
824\r
825 //\r
826 // Fill in the command then execute\r
827 //\r
828 ZeroMem (&ReadCmd, sizeof (USB_BOOT_READ10_CMD));\r
829\r
830 ReadCmd.OpCode = USB_BOOT_READ10_OPCODE;\r
831 ReadCmd.Lun = (UINT8) (USB_BOOT_LUN (UsbMass->Lun));\r
832 WriteUnaligned32 ((UINT32 *) ReadCmd.Lba, SwapBytes32 (Lba));\r
833 WriteUnaligned16 ((UINT16 *) ReadCmd.TransferLen, SwapBytes16 (Count));\r
834\r
835 Status = UsbBootExecCmdWithRetry (\r
836 UsbMass,\r
837 &ReadCmd,\r
838 (UINT8) sizeof (USB_BOOT_READ10_CMD),\r
839 EfiUsbDataIn,\r
840 Buffer,\r
841 ByteSize,\r
842 Timeout\r
843 );\r
844 if (EFI_ERROR (Status)) {\r
845 return Status;\r
846 }\r
847 DEBUG ((EFI_D_BLKIO, "UsbBootReadBlocks: LBA (0x%x), Blk (0x%x)\n", Lba, Count));\r
848 Lba += Count;\r
849 Buffer += Count * BlockSize;\r
850 TotalBlock -= Count;\r
851 }\r
852\r
853 return Status;\r
854}\r
855\r
856\r
857/**\r
858 Write some blocks to the device.\r
859\r
860 @param UsbMass The USB mass storage device to write to\r
861 @param Lba The start block number\r
862 @param TotalBlock Total block number to write\r
863 @param Buffer Pointer to the source buffer for the data.\r
864\r
865 @retval EFI_SUCCESS Data are written into the buffer\r
866 @retval Others Failed to write all the data\r
867\r
868**/\r
869EFI_STATUS\r
870UsbBootWriteBlocks (\r
871 IN USB_MASS_DEVICE *UsbMass,\r
872 IN UINT32 Lba,\r
873 IN UINTN TotalBlock,\r
874 IN UINT8 *Buffer\r
875 )\r
876{\r
877 USB_BOOT_WRITE10_CMD WriteCmd;\r
878 EFI_STATUS Status;\r
879 UINT16 Count;\r
880 UINT32 BlockSize;\r
881 UINT32 ByteSize;\r
882 UINT32 Timeout;\r
883\r
884 BlockSize = UsbMass->BlockIoMedia.BlockSize;\r
885 Status = EFI_SUCCESS;\r
886\r
887 while (TotalBlock > 0) {\r
888 //\r
889 // Split the total blocks into smaller pieces to ease the pressure\r
890 // on the device. We must split the total block because the WRITE10\r
891 // command only has 16 bit transfer length (in the unit of block).\r
892 //\r
893 Count = (UINT16)((TotalBlock < USB_BOOT_IO_BLOCKS) ? TotalBlock : USB_BOOT_IO_BLOCKS);\r
894 ByteSize = (UINT32)Count * BlockSize;\r
895\r
896 //\r
897 // USB command's upper limit timeout is 5s. [USB2.0-9.2.6.1]\r
898 //\r
899 Timeout = (UINT32) USB_BOOT_GENERAL_CMD_TIMEOUT;\r
900\r
901 //\r
902 // Fill in the write10 command block\r
903 //\r
904 ZeroMem (&WriteCmd, sizeof (USB_BOOT_WRITE10_CMD));\r
905\r
906 WriteCmd.OpCode = USB_BOOT_WRITE10_OPCODE;\r
907 WriteCmd.Lun = (UINT8) (USB_BOOT_LUN (UsbMass->Lun));\r
908 WriteUnaligned32 ((UINT32 *) WriteCmd.Lba, SwapBytes32 (Lba));\r
909 WriteUnaligned16 ((UINT16 *) WriteCmd.TransferLen, SwapBytes16 (Count));\r
910\r
911 Status = UsbBootExecCmdWithRetry (\r
912 UsbMass,\r
913 &WriteCmd,\r
914 (UINT8) sizeof (USB_BOOT_WRITE10_CMD),\r
915 EfiUsbDataOut,\r
916 Buffer,\r
917 ByteSize,\r
918 Timeout\r
919 );\r
920 if (EFI_ERROR (Status)) {\r
921 return Status;\r
922 }\r
923 DEBUG ((EFI_D_BLKIO, "UsbBootWriteBlocks: LBA (0x%x), Blk (0x%x)\n", Lba, Count));\r
924\r
925 Lba += Count;\r
926 Buffer += Count * BlockSize;\r
927 TotalBlock -= Count;\r
928 }\r
929\r
930 return Status;\r
931}\r
932\r
933/**\r
934 Read some blocks from the device by SCSI 16 byte cmd.\r
935\r
936 @param UsbMass The USB mass storage device to read from\r
937 @param Lba The start block number\r
938 @param TotalBlock Total block number to read\r
939 @param Buffer The buffer to read to\r
940\r
941 @retval EFI_SUCCESS Data are read into the buffer\r
942 @retval Others Failed to read all the data\r
943\r
944**/\r
945EFI_STATUS\r
946UsbBootReadBlocks16 (\r
947 IN USB_MASS_DEVICE *UsbMass,\r
948 IN UINT64 Lba,\r
949 IN UINTN TotalBlock,\r
950 OUT UINT8 *Buffer\r
951 )\r
952{\r
953 UINT8 ReadCmd[16];\r
954 EFI_STATUS Status;\r
955 UINT16 Count;\r
956 UINT32 BlockSize;\r
957 UINT32 ByteSize;\r
958 UINT32 Timeout;\r
959\r
960 BlockSize = UsbMass->BlockIoMedia.BlockSize;\r
961 Status = EFI_SUCCESS;\r
962\r
963 while (TotalBlock > 0) {\r
964 //\r
965 // Split the total blocks into smaller pieces.\r
966 //\r
967 Count = (UINT16)((TotalBlock < USB_BOOT_IO_BLOCKS) ? TotalBlock : USB_BOOT_IO_BLOCKS);\r
968 ByteSize = (UINT32)Count * BlockSize;\r
969\r
970 //\r
971 // USB command's upper limit timeout is 5s. [USB2.0-9.2.6.1]\r
972 //\r
973 Timeout = (UINT32) USB_BOOT_GENERAL_CMD_TIMEOUT;\r
974\r
975 //\r
976 // Fill in the command then execute\r
977 //\r
978 ZeroMem (ReadCmd, sizeof (ReadCmd));\r
979\r
980 ReadCmd[0] = EFI_SCSI_OP_READ16;\r
981 ReadCmd[1] = (UINT8) ((USB_BOOT_LUN (UsbMass->Lun) & 0xE0));\r
982 WriteUnaligned64 ((UINT64 *) &ReadCmd[2], SwapBytes64 (Lba));\r
983 WriteUnaligned32 ((UINT32 *) &ReadCmd[10], SwapBytes32 (Count));\r
984\r
985 Status = UsbBootExecCmdWithRetry (\r
986 UsbMass,\r
987 ReadCmd,\r
988 (UINT8) sizeof (ReadCmd),\r
989 EfiUsbDataIn,\r
990 Buffer,\r
991 ByteSize,\r
992 Timeout\r
993 );\r
994 if (EFI_ERROR (Status)) {\r
995 return Status;\r
996 }\r
997 DEBUG ((EFI_D_BLKIO, "UsbBootReadBlocks16: LBA (0x%lx), Blk (0x%x)\n", Lba, Count));\r
998 Lba += Count;\r
999 Buffer += Count * BlockSize;\r
1000 TotalBlock -= Count;\r
1001 }\r
1002\r
1003 return Status;\r
1004}\r
1005\r
1006\r
1007/**\r
1008 Write some blocks to the device by SCSI 16 byte cmd.\r
1009\r
1010 @param UsbMass The USB mass storage device to write to\r
1011 @param Lba The start block number\r
1012 @param TotalBlock Total block number to write\r
1013 @param Buffer Pointer to the source buffer for the data.\r
1014\r
1015 @retval EFI_SUCCESS Data are written into the buffer\r
1016 @retval Others Failed to write all the data\r
1017\r
1018**/\r
1019EFI_STATUS\r
1020UsbBootWriteBlocks16 (\r
1021 IN USB_MASS_DEVICE *UsbMass,\r
1022 IN UINT64 Lba,\r
1023 IN UINTN TotalBlock,\r
1024 IN UINT8 *Buffer\r
1025 )\r
1026{\r
1027 UINT8 WriteCmd[16];\r
1028 EFI_STATUS Status;\r
1029 UINT16 Count;\r
1030 UINT32 BlockSize;\r
1031 UINT32 ByteSize;\r
1032 UINT32 Timeout;\r
1033\r
1034 BlockSize = UsbMass->BlockIoMedia.BlockSize;\r
1035 Status = EFI_SUCCESS;\r
1036\r
1037 while (TotalBlock > 0) {\r
1038 //\r
1039 // Split the total blocks into smaller pieces.\r
1040 //\r
1041 Count = (UINT16)((TotalBlock < USB_BOOT_IO_BLOCKS) ? TotalBlock : USB_BOOT_IO_BLOCKS);\r
1042 ByteSize = (UINT32)Count * BlockSize;\r
1043\r
1044 //\r
1045 // USB command's upper limit timeout is 5s. [USB2.0-9.2.6.1]\r
1046 //\r
1047 Timeout = (UINT32) USB_BOOT_GENERAL_CMD_TIMEOUT;\r
1048\r
1049 //\r
1050 // Fill in the write16 command block\r
1051 //\r
1052 ZeroMem (WriteCmd, sizeof (WriteCmd));\r
1053\r
1054 WriteCmd[0] = EFI_SCSI_OP_WRITE16;\r
1055 WriteCmd[1] = (UINT8) ((USB_BOOT_LUN (UsbMass->Lun) & 0xE0));\r
1056 WriteUnaligned64 ((UINT64 *) &WriteCmd[2], SwapBytes64 (Lba));\r
1057 WriteUnaligned32 ((UINT32 *) &WriteCmd[10], SwapBytes32 (Count));\r
1058\r
1059 Status = UsbBootExecCmdWithRetry (\r
1060 UsbMass,\r
1061 WriteCmd,\r
1062 (UINT8) sizeof (WriteCmd),\r
1063 EfiUsbDataOut,\r
1064 Buffer,\r
1065 ByteSize,\r
1066 Timeout\r
1067 );\r
1068 if (EFI_ERROR (Status)) {\r
1069 return Status;\r
1070 }\r
1071 DEBUG ((EFI_D_BLKIO, "UsbBootWriteBlocks: LBA (0x%lx), Blk (0x%x)\n", Lba, Count));\r
1072 Lba += Count;\r
1073 Buffer += Count * BlockSize;\r
1074 TotalBlock -= Count;\r
1075 }\r
1076\r
1077 return Status;\r
1078}\r
1079\r
1080/**\r
1081 Use the USB clear feature control transfer to clear the endpoint stall condition.\r
1082\r
1083 @param UsbIo The USB I/O Protocol instance\r
1084 @param EndpointAddr The endpoint to clear stall for\r
1085\r
1086 @retval EFI_SUCCESS The endpoint stall condition is cleared.\r
1087 @retval Others Failed to clear the endpoint stall condition.\r
1088\r
1089**/\r
1090EFI_STATUS\r
1091UsbClearEndpointStall (\r
1092 IN EFI_USB_IO_PROTOCOL *UsbIo,\r
1093 IN UINT8 EndpointAddr\r
1094 )\r
1095{\r
1096 EFI_USB_DEVICE_REQUEST Request;\r
1097 EFI_STATUS Status;\r
1098 UINT32 CmdResult;\r
1099 UINT32 Timeout;\r
1100\r
1101 Request.RequestType = 0x02;\r
1102 Request.Request = USB_REQ_CLEAR_FEATURE;\r
1103 Request.Value = USB_FEATURE_ENDPOINT_HALT;\r
1104 Request.Index = EndpointAddr;\r
1105 Request.Length = 0;\r
1106 Timeout = USB_BOOT_GENERAL_CMD_TIMEOUT / USB_MASS_1_MILLISECOND;\r
1107\r
1108 Status = UsbIo->UsbControlTransfer (\r
1109 UsbIo,\r
1110 &Request,\r
1111 EfiUsbNoData,\r
1112 Timeout,\r
1113 NULL,\r
1114 0,\r
1115 &CmdResult\r
1116 );\r
1117\r
1118 return Status;\r
1119}\r