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4bc6ad39
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1/** @file\r
2 Implementation for EFI_SIMPLE_TEXT_INPUT_PROTOCOL protocol.\r
3\r
35f910f0 4(C) Copyright 2014 Hewlett-Packard Development Company, L.P.<BR>\r
d9b51b21 5Copyright (c) 2006 - 2015, Intel Corporation. All rights reserved.<BR>\r
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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 "Terminal.h"\r
17\r
18\r
19/**\r
20 Reads the next keystroke from the input device. The WaitForKey Event can\r
21 be used to test for existence of a keystroke via WaitForEvent () call.\r
22\r
23 @param TerminalDevice Terminal driver private structure\r
24 @param KeyData A pointer to a buffer that is filled in with the\r
25 keystroke state data for the key that was\r
26 pressed.\r
27\r
28 @retval EFI_SUCCESS The keystroke information was returned.\r
29 @retval EFI_NOT_READY There was no keystroke data available.\r
30 @retval EFI_INVALID_PARAMETER KeyData is NULL.\r
31\r
32**/\r
33EFI_STATUS\r
34ReadKeyStrokeWorker (\r
35 IN TERMINAL_DEV *TerminalDevice,\r
36 OUT EFI_KEY_DATA *KeyData\r
37 )\r
38{\r
39 if (KeyData == NULL) {\r
40 return EFI_INVALID_PARAMETER;\r
41 }\r
42\r
43 if (!EfiKeyFiFoRemoveOneKey (TerminalDevice, &KeyData->Key)) {\r
44 return EFI_NOT_READY;\r
45 }\r
46\r
47 KeyData->KeyState.KeyShiftState = 0;\r
48 KeyData->KeyState.KeyToggleState = 0;\r
49\r
50\r
51 return EFI_SUCCESS;\r
52\r
53}\r
54\r
55/**\r
56 Implements EFI_SIMPLE_TEXT_INPUT_PROTOCOL.Reset().\r
57 This driver only perform dependent serial device reset regardless of\r
58 the value of ExtendeVerification\r
59\r
60 @param This Indicates the calling context.\r
61 @param ExtendedVerification Skip by this driver.\r
62\r
63 @retval EFI_SUCCESS The reset operation succeeds.\r
64 @retval EFI_DEVICE_ERROR The dependent serial port reset fails.\r
65\r
66**/\r
67EFI_STATUS\r
68EFIAPI\r
69TerminalConInReset (\r
70 IN EFI_SIMPLE_TEXT_INPUT_PROTOCOL *This,\r
71 IN BOOLEAN ExtendedVerification\r
72 )\r
73{\r
74 EFI_STATUS Status;\r
75 TERMINAL_DEV *TerminalDevice;\r
76\r
77 TerminalDevice = TERMINAL_CON_IN_DEV_FROM_THIS (This);\r
78\r
79 //\r
80 // Report progress code here\r
81 //\r
82 REPORT_STATUS_CODE_WITH_DEVICE_PATH (\r
83 EFI_PROGRESS_CODE,\r
84 (EFI_PERIPHERAL_REMOTE_CONSOLE | EFI_P_PC_RESET),\r
85 TerminalDevice->DevicePath\r
86 );\r
87\r
88 Status = TerminalDevice->SerialIo->Reset (TerminalDevice->SerialIo);\r
89\r
90 //\r
91 // Make all the internal buffer empty for keys\r
92 //\r
93 TerminalDevice->RawFiFo->Head = TerminalDevice->RawFiFo->Tail;\r
94 TerminalDevice->UnicodeFiFo->Head = TerminalDevice->UnicodeFiFo->Tail;\r
95 TerminalDevice->EfiKeyFiFo->Head = TerminalDevice->EfiKeyFiFo->Tail;\r
96\r
97 if (EFI_ERROR (Status)) {\r
98 REPORT_STATUS_CODE_WITH_DEVICE_PATH (\r
99 EFI_ERROR_CODE | EFI_ERROR_MINOR,\r
100 (EFI_PERIPHERAL_REMOTE_CONSOLE | EFI_P_EC_CONTROLLER_ERROR),\r
101 TerminalDevice->DevicePath\r
102 );\r
103 }\r
104\r
105 return Status;\r
106}\r
107\r
108/**\r
109 Implements EFI_SIMPLE_TEXT_INPUT_PROTOCOL.ReadKeyStroke().\r
110\r
111 @param This Indicates the calling context.\r
112 @param Key A pointer to a buffer that is filled in with the\r
113 keystroke information for the key that was sent\r
114 from terminal.\r
115\r
116 @retval EFI_SUCCESS The keystroke information is returned successfully.\r
117 @retval EFI_NOT_READY There is no keystroke data available.\r
118 @retval EFI_DEVICE_ERROR The dependent serial device encounters error.\r
119\r
120**/\r
121EFI_STATUS\r
122EFIAPI\r
123TerminalConInReadKeyStroke (\r
124 IN EFI_SIMPLE_TEXT_INPUT_PROTOCOL *This,\r
125 OUT EFI_INPUT_KEY *Key\r
126 )\r
127{\r
128 TERMINAL_DEV *TerminalDevice;\r
129 EFI_STATUS Status;\r
130 EFI_KEY_DATA KeyData;\r
131\r
132 //\r
133 // get TERMINAL_DEV from "This" parameter.\r
134 //\r
135 TerminalDevice = TERMINAL_CON_IN_DEV_FROM_THIS (This);\r
136\r
137 Status = ReadKeyStrokeWorker (TerminalDevice, &KeyData);\r
138 if (EFI_ERROR (Status)) {\r
139 return Status;\r
140 }\r
141\r
142 CopyMem (Key, &KeyData.Key, sizeof (EFI_INPUT_KEY));\r
143\r
144 return EFI_SUCCESS;\r
145\r
146}\r
147\r
148/**\r
149 Check if the key already has been registered.\r
150\r
151 If both RegsiteredData and InputData is NULL, then ASSERT().\r
152\r
153 @param RegsiteredData A pointer to a buffer that is filled in with the\r
154 keystroke state data for the key that was\r
155 registered.\r
156 @param InputData A pointer to a buffer that is filled in with the\r
157 keystroke state data for the key that was\r
158 pressed.\r
159\r
160 @retval TRUE Key be pressed matches a registered key.\r
f07ccd05 161 @retval FALSE Match failed.\r
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162\r
163**/\r
164BOOLEAN\r
165IsKeyRegistered (\r
166 IN EFI_KEY_DATA *RegsiteredData,\r
167 IN EFI_KEY_DATA *InputData\r
168 )\r
169{\r
170 ASSERT (RegsiteredData != NULL && InputData != NULL);\r
171\r
172 if ((RegsiteredData->Key.ScanCode != InputData->Key.ScanCode) ||\r
173 (RegsiteredData->Key.UnicodeChar != InputData->Key.UnicodeChar)) {\r
174 return FALSE;\r
175 }\r
176\r
177 return TRUE;\r
178}\r
179\r
180\r
181\r
182/**\r
183 Event notification function for EFI_SIMPLE_TEXT_INPUT_EX_PROTOCOL.WaitForKeyEx event\r
184 Signal the event if there is key available\r
185\r
186 @param Event Indicates the event that invoke this function.\r
187 @param Context Indicates the calling context.\r
188\r
189**/\r
190VOID\r
191EFIAPI\r
192TerminalConInWaitForKeyEx (\r
193 IN EFI_EVENT Event,\r
194 IN VOID *Context\r
195 )\r
196{\r
197 TerminalConInWaitForKey (Event, Context);\r
198}\r
199\r
200//\r
201// Simple Text Input Ex protocol functions\r
202//\r
203\r
204/**\r
205 Reset the input device and optionally run diagnostics\r
206\r
207 @param This Protocol instance pointer.\r
208 @param ExtendedVerification Driver may perform diagnostics on reset.\r
209\r
210 @retval EFI_SUCCESS The device was reset.\r
211 @retval EFI_DEVICE_ERROR The device is not functioning properly and could\r
212 not be reset.\r
213\r
214**/\r
215EFI_STATUS\r
216EFIAPI\r
217TerminalConInResetEx (\r
218 IN EFI_SIMPLE_TEXT_INPUT_EX_PROTOCOL *This,\r
219 IN BOOLEAN ExtendedVerification\r
220 )\r
221{\r
222 EFI_STATUS Status;\r
223 TERMINAL_DEV *TerminalDevice;\r
224\r
225 TerminalDevice = TERMINAL_CON_IN_EX_DEV_FROM_THIS (This);\r
226\r
227 Status = TerminalDevice->SimpleInput.Reset (&TerminalDevice->SimpleInput, ExtendedVerification);\r
228 if (EFI_ERROR (Status)) {\r
229 return EFI_DEVICE_ERROR;\r
230 }\r
231\r
232 return EFI_SUCCESS;\r
233\r
234}\r
235\r
236\r
237/**\r
238 Reads the next keystroke from the input device. The WaitForKey Event can\r
239 be used to test for existence of a keystroke via WaitForEvent () call.\r
240\r
241 @param This Protocol instance pointer.\r
242 @param KeyData A pointer to a buffer that is filled in with the\r
243 keystroke state data for the key that was\r
244 pressed.\r
245\r
246 @retval EFI_SUCCESS The keystroke information was returned.\r
247 @retval EFI_NOT_READY There was no keystroke data available.\r
248 @retval EFI_DEVICE_ERROR The keystroke information was not returned due\r
249 to hardware errors.\r
250 @retval EFI_INVALID_PARAMETER KeyData is NULL.\r
251\r
252**/\r
253EFI_STATUS\r
254EFIAPI\r
255TerminalConInReadKeyStrokeEx (\r
256 IN EFI_SIMPLE_TEXT_INPUT_EX_PROTOCOL *This,\r
257 OUT EFI_KEY_DATA *KeyData\r
258 )\r
259{\r
260 TERMINAL_DEV *TerminalDevice;\r
261\r
262 if (KeyData == NULL) {\r
263 return EFI_INVALID_PARAMETER;\r
264 }\r
265\r
266 TerminalDevice = TERMINAL_CON_IN_EX_DEV_FROM_THIS (This);\r
267\r
268 return ReadKeyStrokeWorker (TerminalDevice, KeyData);\r
269\r
270}\r
271\r
272\r
273/**\r
274 Set certain state for the input device.\r
275\r
276 @param This Protocol instance pointer.\r
277 @param KeyToggleState A pointer to the EFI_KEY_TOGGLE_STATE to set the\r
278 state for the input device.\r
279\r
280 @retval EFI_SUCCESS The device state was set successfully.\r
281 @retval EFI_DEVICE_ERROR The device is not functioning correctly and\r
282 could not have the setting adjusted.\r
283 @retval EFI_UNSUPPORTED The device does not have the ability to set its\r
284 state.\r
285 @retval EFI_INVALID_PARAMETER KeyToggleState is NULL.\r
286\r
287**/\r
288EFI_STATUS\r
289EFIAPI\r
290TerminalConInSetState (\r
291 IN EFI_SIMPLE_TEXT_INPUT_EX_PROTOCOL *This,\r
292 IN EFI_KEY_TOGGLE_STATE *KeyToggleState\r
293 )\r
294{\r
295 if (KeyToggleState == NULL) {\r
296 return EFI_INVALID_PARAMETER;\r
297 }\r
298\r
b95a25d1
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299 if ((*KeyToggleState & EFI_TOGGLE_STATE_VALID) != EFI_TOGGLE_STATE_VALID) {\r
300 return EFI_UNSUPPORTED;\r
301 }\r
302\r
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303 return EFI_SUCCESS;\r
304}\r
305\r
306\r
307/**\r
308 Register a notification function for a particular keystroke for the input device.\r
309\r
310 @param This Protocol instance pointer.\r
311 @param KeyData A pointer to a buffer that is filled in with the\r
312 keystroke information data for the key that was\r
313 pressed.\r
314 @param KeyNotificationFunction Points to the function to be called when the key\r
315 sequence is typed specified by KeyData.\r
316 @param NotifyHandle Points to the unique handle assigned to the\r
317 registered notification.\r
318\r
319 @retval EFI_SUCCESS The notification function was registered\r
320 successfully.\r
321 @retval EFI_OUT_OF_RESOURCES Unable to allocate resources for necessary data\r
322 structures.\r
323 @retval EFI_INVALID_PARAMETER KeyData or NotifyHandle is NULL.\r
324\r
325**/\r
326EFI_STATUS\r
327EFIAPI\r
328TerminalConInRegisterKeyNotify (\r
329 IN EFI_SIMPLE_TEXT_INPUT_EX_PROTOCOL *This,\r
330 IN EFI_KEY_DATA *KeyData,\r
331 IN EFI_KEY_NOTIFY_FUNCTION KeyNotificationFunction,\r
402e4a9d 332 OUT VOID **NotifyHandle\r
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333 )\r
334{\r
335 TERMINAL_DEV *TerminalDevice;\r
336 TERMINAL_CONSOLE_IN_EX_NOTIFY *NewNotify;\r
337 LIST_ENTRY *Link;\r
338 LIST_ENTRY *NotifyList;\r
339 TERMINAL_CONSOLE_IN_EX_NOTIFY *CurrentNotify;\r
340\r
341 if (KeyData == NULL || NotifyHandle == NULL || KeyNotificationFunction == NULL) {\r
342 return EFI_INVALID_PARAMETER;\r
343 }\r
344\r
345 TerminalDevice = TERMINAL_CON_IN_EX_DEV_FROM_THIS (This);\r
346\r
347 //\r
348 // Return EFI_SUCCESS if the (KeyData, NotificationFunction) is already registered.\r
349 //\r
350 NotifyList = &TerminalDevice->NotifyList;\r
351 for (Link = GetFirstNode (NotifyList); !IsNull (NotifyList,Link); Link = GetNextNode (NotifyList,Link)) {\r
352 CurrentNotify = CR (\r
353 Link,\r
354 TERMINAL_CONSOLE_IN_EX_NOTIFY,\r
355 NotifyEntry,\r
356 TERMINAL_CONSOLE_IN_EX_NOTIFY_SIGNATURE\r
357 );\r
358 if (IsKeyRegistered (&CurrentNotify->KeyData, KeyData)) {\r
359 if (CurrentNotify->KeyNotificationFn == KeyNotificationFunction) {\r
402e4a9d 360 *NotifyHandle = CurrentNotify;\r
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361 return EFI_SUCCESS;\r
362 }\r
363 }\r
364 }\r
365\r
366 //\r
367 // Allocate resource to save the notification function\r
368 //\r
369 NewNotify = (TERMINAL_CONSOLE_IN_EX_NOTIFY *) AllocateZeroPool (sizeof (TERMINAL_CONSOLE_IN_EX_NOTIFY));\r
370 if (NewNotify == NULL) {\r
371 return EFI_OUT_OF_RESOURCES;\r
372 }\r
373\r
374 NewNotify->Signature = TERMINAL_CONSOLE_IN_EX_NOTIFY_SIGNATURE;\r
375 NewNotify->KeyNotificationFn = KeyNotificationFunction;\r
b8a605d0 376 CopyMem (&NewNotify->KeyData, KeyData, sizeof (EFI_KEY_DATA));\r
4bc6ad39
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377 InsertTailList (&TerminalDevice->NotifyList, &NewNotify->NotifyEntry);\r
378\r
402e4a9d 379 *NotifyHandle = NewNotify;\r
4bc6ad39
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380\r
381 return EFI_SUCCESS;\r
382}\r
383\r
384\r
385/**\r
386 Remove a registered notification function from a particular keystroke.\r
387\r
388 @param This Protocol instance pointer.\r
389 @param NotificationHandle The handle of the notification function being\r
390 unregistered.\r
391\r
392 @retval EFI_SUCCESS The notification function was unregistered\r
393 successfully.\r
394 @retval EFI_INVALID_PARAMETER The NotificationHandle is invalid.\r
395\r
396**/\r
397EFI_STATUS\r
398EFIAPI\r
399TerminalConInUnregisterKeyNotify (\r
400 IN EFI_SIMPLE_TEXT_INPUT_EX_PROTOCOL *This,\r
402e4a9d 401 IN VOID *NotificationHandle\r
4bc6ad39
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402 )\r
403{\r
404 TERMINAL_DEV *TerminalDevice;\r
405 LIST_ENTRY *Link;\r
406 TERMINAL_CONSOLE_IN_EX_NOTIFY *CurrentNotify;\r
407 LIST_ENTRY *NotifyList;\r
408\r
409 if (NotificationHandle == NULL) {\r
410 return EFI_INVALID_PARAMETER;\r
411 }\r
412\r
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413 TerminalDevice = TERMINAL_CON_IN_EX_DEV_FROM_THIS (This);\r
414\r
415 NotifyList = &TerminalDevice->NotifyList;\r
416 for (Link = GetFirstNode (NotifyList); !IsNull (NotifyList,Link); Link = GetNextNode (NotifyList,Link)) {\r
417 CurrentNotify = CR (\r
418 Link,\r
419 TERMINAL_CONSOLE_IN_EX_NOTIFY,\r
420 NotifyEntry,\r
421 TERMINAL_CONSOLE_IN_EX_NOTIFY_SIGNATURE\r
422 );\r
402e4a9d 423 if (CurrentNotify == NotificationHandle) {\r
4bc6ad39
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424 //\r
425 // Remove the notification function from NotifyList and free resources\r
426 //\r
427 RemoveEntryList (&CurrentNotify->NotifyEntry);\r
428\r
429 gBS->FreePool (CurrentNotify);\r
430 return EFI_SUCCESS;\r
431 }\r
432 }\r
433\r
434 //\r
435 // Can not find the matching entry in database.\r
436 //\r
437 return EFI_INVALID_PARAMETER;\r
438}\r
439\r
440/**\r
441 Translate raw data into Unicode (according to different encode), and\r
442 translate Unicode into key information. (according to different standard).\r
443\r
444 @param TerminalDevice Terminal driver private structure.\r
445\r
446**/\r
447VOID\r
448TranslateRawDataToEfiKey (\r
449 IN TERMINAL_DEV *TerminalDevice\r
450 )\r
451{\r
452 switch (TerminalDevice->TerminalType) {\r
453\r
454 case PCANSITYPE:\r
455 case VT100TYPE:\r
456 case VT100PLUSTYPE:\r
6e3227c8 457 case TTYTERMTYPE:\r
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458 AnsiRawDataToUnicode (TerminalDevice);\r
459 UnicodeToEfiKey (TerminalDevice);\r
460 break;\r
461\r
462 case VTUTF8TYPE:\r
463 //\r
464 // Process all the raw data in the RawFIFO,\r
465 // put the processed key into UnicodeFIFO.\r
466 //\r
467 VTUTF8RawDataToUnicode (TerminalDevice);\r
468\r
469 //\r
470 // Translate all the Unicode data in the UnicodeFIFO to Efi key,\r
471 // then put into EfiKeyFIFO.\r
472 //\r
473 UnicodeToEfiKey (TerminalDevice);\r
474\r
475 break;\r
476 }\r
477}\r
478\r
479/**\r
480 Event notification function for EFI_SIMPLE_TEXT_INPUT_PROTOCOL.WaitForKey event\r
481 Signal the event if there is key available\r
482\r
483 @param Event Indicates the event that invoke this function.\r
484 @param Context Indicates the calling context.\r
485\r
486**/\r
487VOID\r
488EFIAPI\r
489TerminalConInWaitForKey (\r
490 IN EFI_EVENT Event,\r
491 IN VOID *Context\r
492 )\r
493{\r
494 //\r
495 // Someone is waiting on the keystroke event, if there's\r
496 // a key pending, signal the event\r
497 //\r
498 if (!IsEfiKeyFiFoEmpty ((TERMINAL_DEV *) Context)) {\r
499\r
500 gBS->SignalEvent (Event);\r
501 }\r
502}\r
503\r
504/**\r
505 Timer handler to poll the key from serial.\r
506\r
507 @param Event Indicates the event that invoke this function.\r
508 @param Context Indicates the calling context.\r
509**/\r
510VOID\r
511EFIAPI\r
512TerminalConInTimerHandler (\r
513 IN EFI_EVENT Event,\r
514 IN VOID *Context\r
515 )\r
516{\r
517 EFI_STATUS Status;\r
518 TERMINAL_DEV *TerminalDevice;\r
59d88f42 519 UINT32 Control;\r
4bc6ad39
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520 UINT8 Input;\r
521 EFI_SERIAL_IO_MODE *Mode;\r
522 EFI_SERIAL_IO_PROTOCOL *SerialIo;\r
523 UINTN SerialInTimeOut;\r
524\r
525 TerminalDevice = (TERMINAL_DEV *) Context;\r
526\r
527 SerialIo = TerminalDevice->SerialIo;\r
528 if (SerialIo == NULL) {\r
529 return ;\r
530 }\r
531 //\r
532 // if current timeout value for serial device is not identical with\r
533 // the value saved in TERMINAL_DEV structure, then recalculate the\r
534 // timeout value again and set serial attribute according to this value.\r
535 //\r
536 Mode = SerialIo->Mode;\r
537 if (Mode->Timeout != TerminalDevice->SerialInTimeOut) {\r
538\r
539 SerialInTimeOut = 0;\r
540 if (Mode->BaudRate != 0) {\r
541 //\r
542 // According to BAUD rate to calculate the timeout value.\r
543 //\r
544 SerialInTimeOut = (1 + Mode->DataBits + Mode->StopBits) * 2 * 1000000 / (UINTN) Mode->BaudRate;\r
545 }\r
546\r
547 Status = SerialIo->SetAttributes (\r
548 SerialIo,\r
549 Mode->BaudRate,\r
31ae446b 550 0, // the device's default FIFO depth\r
4bc6ad39
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551 (UINT32) SerialInTimeOut,\r
552 (EFI_PARITY_TYPE) (Mode->Parity),\r
553 (UINT8) Mode->DataBits,\r
554 (EFI_STOP_BITS_TYPE) (Mode->StopBits)\r
555 );\r
556\r
557 if (EFI_ERROR (Status)) {\r
558 TerminalDevice->SerialInTimeOut = 0;\r
559 } else {\r
560 TerminalDevice->SerialInTimeOut = SerialInTimeOut;\r
561 }\r
562 }\r
4bc6ad39 563 //\r
59d88f42 564 // Check whether serial buffer is empty.\r
d9b51b21
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565 // Skip the key transfer loop only if the SerialIo protocol instance\r
566 // successfully reports EFI_SERIAL_INPUT_BUFFER_EMPTY.\r
4bc6ad39 567 //\r
59d88f42 568 Status = SerialIo->GetControl (SerialIo, &Control);\r
d9b51b21 569 if (EFI_ERROR (Status) || ((Control & EFI_SERIAL_INPUT_BUFFER_EMPTY) == 0)) {\r
59d88f42
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570 //\r
571 // Fetch all the keys in the serial buffer,\r
572 // and insert the byte stream into RawFIFO.\r
573 //\r
574 while (!IsRawFiFoFull (TerminalDevice)) {\r
575\r
576 Status = GetOneKeyFromSerial (TerminalDevice->SerialIo, &Input);\r
577\r
578 if (EFI_ERROR (Status)) {\r
579 if (Status == EFI_DEVICE_ERROR) {\r
580 REPORT_STATUS_CODE_WITH_DEVICE_PATH (\r
581 EFI_ERROR_CODE | EFI_ERROR_MINOR,\r
582 (EFI_PERIPHERAL_REMOTE_CONSOLE | EFI_P_EC_INPUT_ERROR),\r
583 TerminalDevice->DevicePath\r
584 );\r
585 }\r
586 break;\r
4bc6ad39 587 }\r
4bc6ad39 588\r
59d88f42
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589 RawFiFoInsertOneKey (TerminalDevice, Input);\r
590 }\r
4bc6ad39
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591 }\r
592\r
593 //\r
594 // Translate all the raw data in RawFIFO into EFI Key,\r
595 // according to different terminal type supported.\r
596 //\r
597 TranslateRawDataToEfiKey (TerminalDevice);\r
598}\r
599\r
600/**\r
601 Get one key out of serial buffer.\r
602\r
603 @param SerialIo Serial I/O protocol attached to the serial device.\r
604 @param Output The fetched key.\r
605\r
606 @retval EFI_NOT_READY If serial buffer is empty.\r
607 @retval EFI_DEVICE_ERROR If reading serial buffer encounter error.\r
608 @retval EFI_SUCCESS If reading serial buffer successfully, put\r
609 the fetched key to the parameter output.\r
610\r
611**/\r
612EFI_STATUS\r
613GetOneKeyFromSerial (\r
614 EFI_SERIAL_IO_PROTOCOL *SerialIo,\r
615 UINT8 *Output\r
616 )\r
617{\r
618 EFI_STATUS Status;\r
619 UINTN Size;\r
620\r
621 Size = 1;\r
622 *Output = 0;\r
623\r
624 //\r
625 // Read one key from serial I/O device.\r
626 //\r
627 Status = SerialIo->Read (SerialIo, &Size, Output);\r
628\r
629 if (EFI_ERROR (Status)) {\r
630\r
631 if (Status == EFI_TIMEOUT) {\r
632 return EFI_NOT_READY;\r
633 }\r
634\r
635 return EFI_DEVICE_ERROR;\r
636\r
637 }\r
638\r
639 if (*Output == 0) {\r
640 return EFI_NOT_READY;\r
641 }\r
642\r
643 return EFI_SUCCESS;\r
644}\r
645\r
646/**\r
647 Insert one byte raw data into the Raw Data FIFO.\r
648\r
649 @param TerminalDevice Terminal driver private structure.\r
650 @param Input The key will be input.\r
651\r
652 @retval TRUE If insert successfully.\r
f07ccd05 653 @retval FALSE If Raw Data buffer is full before key insertion,\r
4bc6ad39
RN
654 and the key is lost.\r
655\r
656**/\r
657BOOLEAN\r
658RawFiFoInsertOneKey (\r
659 TERMINAL_DEV *TerminalDevice,\r
660 UINT8 Input\r
661 )\r
662{\r
663 UINT8 Tail;\r
664\r
665 Tail = TerminalDevice->RawFiFo->Tail;\r
666\r
667 if (IsRawFiFoFull (TerminalDevice)) {\r
668 //\r
669 // Raw FIFO is full\r
670 //\r
671 return FALSE;\r
672 }\r
673\r
674 TerminalDevice->RawFiFo->Data[Tail] = Input;\r
675\r
676 TerminalDevice->RawFiFo->Tail = (UINT8) ((Tail + 1) % (RAW_FIFO_MAX_NUMBER + 1));\r
677\r
678 return TRUE;\r
679}\r
680\r
681/**\r
682 Remove one pre-fetched key out of the Raw Data FIFO.\r
683\r
684 @param TerminalDevice Terminal driver private structure.\r
685 @param Output The key will be removed.\r
686\r
687 @retval TRUE If insert successfully.\r
f07ccd05 688 @retval FALSE If Raw Data FIFO buffer is empty before remove operation.\r
4bc6ad39
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689\r
690**/\r
691BOOLEAN\r
692RawFiFoRemoveOneKey (\r
693 TERMINAL_DEV *TerminalDevice,\r
694 UINT8 *Output\r
695 )\r
696{\r
697 UINT8 Head;\r
698\r
699 Head = TerminalDevice->RawFiFo->Head;\r
700\r
701 if (IsRawFiFoEmpty (TerminalDevice)) {\r
702 //\r
703 // FIFO is empty\r
704 //\r
705 *Output = 0;\r
706 return FALSE;\r
707 }\r
708\r
709 *Output = TerminalDevice->RawFiFo->Data[Head];\r
710\r
711 TerminalDevice->RawFiFo->Head = (UINT8) ((Head + 1) % (RAW_FIFO_MAX_NUMBER + 1));\r
712\r
713 return TRUE;\r
714}\r
715\r
716/**\r
717 Clarify whether Raw Data FIFO buffer is empty.\r
718\r
719 @param TerminalDevice Terminal driver private structure\r
720\r
721 @retval TRUE If Raw Data FIFO buffer is empty.\r
f07ccd05 722 @retval FALSE If Raw Data FIFO buffer is not empty.\r
4bc6ad39
RN
723\r
724**/\r
725BOOLEAN\r
726IsRawFiFoEmpty (\r
727 TERMINAL_DEV *TerminalDevice\r
728 )\r
729{\r
730 if (TerminalDevice->RawFiFo->Head == TerminalDevice->RawFiFo->Tail) {\r
731 return TRUE;\r
732 } else {\r
733 return FALSE;\r
734 }\r
735}\r
736\r
737/**\r
738 Clarify whether Raw Data FIFO buffer is full.\r
739\r
740 @param TerminalDevice Terminal driver private structure\r
741\r
742 @retval TRUE If Raw Data FIFO buffer is full.\r
f07ccd05 743 @retval FALSE If Raw Data FIFO buffer is not full.\r
4bc6ad39
RN
744\r
745**/\r
746BOOLEAN\r
747IsRawFiFoFull (\r
748 TERMINAL_DEV *TerminalDevice\r
749 )\r
750{\r
751 UINT8 Tail;\r
752 UINT8 Head;\r
753\r
754 Tail = TerminalDevice->RawFiFo->Tail;\r
755 Head = TerminalDevice->RawFiFo->Head;\r
756\r
757 if (((Tail + 1) % (RAW_FIFO_MAX_NUMBER + 1)) == Head) {\r
758\r
759 return TRUE;\r
760 }\r
761\r
762 return FALSE;\r
763}\r
764\r
765/**\r
766 Insert one pre-fetched key into the FIFO buffer.\r
767\r
768 @param TerminalDevice Terminal driver private structure.\r
769 @param Key The key will be input.\r
770\r
771 @retval TRUE If insert successfully.\r
f07ccd05 772 @retval FALSE If FIFO buffer is full before key insertion,\r
4bc6ad39
RN
773 and the key is lost.\r
774\r
775**/\r
776BOOLEAN\r
777EfiKeyFiFoInsertOneKey (\r
778 TERMINAL_DEV *TerminalDevice,\r
779 EFI_INPUT_KEY *Key\r
780 )\r
781{\r
782 UINT8 Tail;\r
783 LIST_ENTRY *Link;\r
784 LIST_ENTRY *NotifyList;\r
785 TERMINAL_CONSOLE_IN_EX_NOTIFY *CurrentNotify;\r
786 EFI_KEY_DATA KeyData;\r
787\r
788 Tail = TerminalDevice->EfiKeyFiFo->Tail;\r
789\r
790 CopyMem (&KeyData.Key, Key, sizeof (EFI_INPUT_KEY));\r
791 KeyData.KeyState.KeyShiftState = 0;\r
792 KeyData.KeyState.KeyToggleState = 0;\r
793\r
794 //\r
795 // Invoke notification functions if exist\r
796 //\r
797 NotifyList = &TerminalDevice->NotifyList;\r
798 for (Link = GetFirstNode (NotifyList); !IsNull (NotifyList,Link); Link = GetNextNode (NotifyList,Link)) {\r
799 CurrentNotify = CR (\r
800 Link,\r
801 TERMINAL_CONSOLE_IN_EX_NOTIFY,\r
802 NotifyEntry,\r
803 TERMINAL_CONSOLE_IN_EX_NOTIFY_SIGNATURE\r
804 );\r
805 if (IsKeyRegistered (&CurrentNotify->KeyData, &KeyData)) {\r
806 CurrentNotify->KeyNotificationFn (&KeyData);\r
807 }\r
808 }\r
809 if (IsEfiKeyFiFoFull (TerminalDevice)) {\r
810 //\r
811 // Efi Key FIFO is full\r
812 //\r
813 return FALSE;\r
814 }\r
815\r
816 CopyMem (&TerminalDevice->EfiKeyFiFo->Data[Tail], Key, sizeof (EFI_INPUT_KEY));\r
817\r
818 TerminalDevice->EfiKeyFiFo->Tail = (UINT8) ((Tail + 1) % (FIFO_MAX_NUMBER + 1));\r
819\r
820 return TRUE;\r
821}\r
822\r
823/**\r
824 Remove one pre-fetched key out of the FIFO buffer.\r
825\r
826 @param TerminalDevice Terminal driver private structure.\r
827 @param Output The key will be removed.\r
828\r
829 @retval TRUE If insert successfully.\r
f07ccd05 830 @retval FALSE If FIFO buffer is empty before remove operation.\r
4bc6ad39
RN
831\r
832**/\r
833BOOLEAN\r
834EfiKeyFiFoRemoveOneKey (\r
835 TERMINAL_DEV *TerminalDevice,\r
836 EFI_INPUT_KEY *Output\r
837 )\r
838{\r
839 UINT8 Head;\r
840\r
841 Head = TerminalDevice->EfiKeyFiFo->Head;\r
842 ASSERT (Head < FIFO_MAX_NUMBER + 1);\r
843\r
844 if (IsEfiKeyFiFoEmpty (TerminalDevice)) {\r
845 //\r
846 // FIFO is empty\r
847 //\r
848 Output->ScanCode = SCAN_NULL;\r
849 Output->UnicodeChar = 0;\r
850 return FALSE;\r
851 }\r
852\r
35f910f0 853 CopyMem (Output, &TerminalDevice->EfiKeyFiFo->Data[Head], sizeof (EFI_INPUT_KEY));\r
4bc6ad39
RN
854\r
855 TerminalDevice->EfiKeyFiFo->Head = (UINT8) ((Head + 1) % (FIFO_MAX_NUMBER + 1));\r
856\r
857 return TRUE;\r
858}\r
859\r
860/**\r
861 Clarify whether FIFO buffer is empty.\r
862\r
863 @param TerminalDevice Terminal driver private structure\r
864\r
865 @retval TRUE If FIFO buffer is empty.\r
f07ccd05 866 @retval FALSE If FIFO buffer is not empty.\r
4bc6ad39
RN
867\r
868**/\r
869BOOLEAN\r
870IsEfiKeyFiFoEmpty (\r
871 TERMINAL_DEV *TerminalDevice\r
872 )\r
873{\r
874 if (TerminalDevice->EfiKeyFiFo->Head == TerminalDevice->EfiKeyFiFo->Tail) {\r
875 return TRUE;\r
876 } else {\r
877 return FALSE;\r
878 }\r
879}\r
880\r
881/**\r
882 Clarify whether FIFO buffer is full.\r
883\r
884 @param TerminalDevice Terminal driver private structure\r
885\r
886 @retval TRUE If FIFO buffer is full.\r
f07ccd05 887 @retval FALSE If FIFO buffer is not full.\r
4bc6ad39
RN
888\r
889**/\r
890BOOLEAN\r
891IsEfiKeyFiFoFull (\r
892 TERMINAL_DEV *TerminalDevice\r
893 )\r
894{\r
895 UINT8 Tail;\r
896 UINT8 Head;\r
897\r
898 Tail = TerminalDevice->EfiKeyFiFo->Tail;\r
899 Head = TerminalDevice->EfiKeyFiFo->Head;\r
900\r
901 if (((Tail + 1) % (FIFO_MAX_NUMBER + 1)) == Head) {\r
902\r
903 return TRUE;\r
904 }\r
905\r
906 return FALSE;\r
907}\r
908\r
909/**\r
910 Insert one pre-fetched key into the Unicode FIFO buffer.\r
911\r
912 @param TerminalDevice Terminal driver private structure.\r
913 @param Input The key will be input.\r
914\r
915 @retval TRUE If insert successfully.\r
f07ccd05 916 @retval FALSE If Unicode FIFO buffer is full before key insertion,\r
4bc6ad39
RN
917 and the key is lost.\r
918\r
919**/\r
920BOOLEAN\r
921UnicodeFiFoInsertOneKey (\r
922 TERMINAL_DEV *TerminalDevice,\r
923 UINT16 Input\r
924 )\r
925{\r
926 UINT8 Tail;\r
927\r
928 Tail = TerminalDevice->UnicodeFiFo->Tail;\r
929 ASSERT (Tail < FIFO_MAX_NUMBER + 1);\r
930\r
931\r
932 if (IsUnicodeFiFoFull (TerminalDevice)) {\r
933 //\r
934 // Unicode FIFO is full\r
935 //\r
936 return FALSE;\r
937 }\r
938\r
939 TerminalDevice->UnicodeFiFo->Data[Tail] = Input;\r
940\r
941 TerminalDevice->UnicodeFiFo->Tail = (UINT8) ((Tail + 1) % (FIFO_MAX_NUMBER + 1));\r
942\r
943 return TRUE;\r
944}\r
945\r
946/**\r
947 Remove one pre-fetched key out of the Unicode FIFO buffer.\r
b80eed7d
EL
948 The caller should guarantee that Unicode FIFO buffer is not empty \r
949 by IsUnicodeFiFoEmpty ().\r
4bc6ad39
RN
950\r
951 @param TerminalDevice Terminal driver private structure.\r
952 @param Output The key will be removed.\r
953\r
4bc6ad39 954**/\r
b80eed7d 955VOID\r
4bc6ad39
RN
956UnicodeFiFoRemoveOneKey (\r
957 TERMINAL_DEV *TerminalDevice,\r
958 UINT16 *Output\r
959 )\r
960{\r
961 UINT8 Head;\r
962\r
963 Head = TerminalDevice->UnicodeFiFo->Head;\r
964 ASSERT (Head < FIFO_MAX_NUMBER + 1);\r
965\r
4bc6ad39
RN
966 *Output = TerminalDevice->UnicodeFiFo->Data[Head];\r
967\r
968 TerminalDevice->UnicodeFiFo->Head = (UINT8) ((Head + 1) % (FIFO_MAX_NUMBER + 1));\r
4bc6ad39
RN
969}\r
970\r
971/**\r
972 Clarify whether Unicode FIFO buffer is empty.\r
973\r
974 @param TerminalDevice Terminal driver private structure\r
975\r
976 @retval TRUE If Unicode FIFO buffer is empty.\r
f07ccd05 977 @retval FALSE If Unicode FIFO buffer is not empty.\r
4bc6ad39
RN
978\r
979**/\r
980BOOLEAN\r
981IsUnicodeFiFoEmpty (\r
982 TERMINAL_DEV *TerminalDevice\r
983 )\r
984{\r
985 if (TerminalDevice->UnicodeFiFo->Head == TerminalDevice->UnicodeFiFo->Tail) {\r
986 return TRUE;\r
987 } else {\r
988 return FALSE;\r
989 }\r
990}\r
991\r
992/**\r
993 Clarify whether Unicode FIFO buffer is full.\r
994\r
995 @param TerminalDevice Terminal driver private structure\r
996\r
997 @retval TRUE If Unicode FIFO buffer is full.\r
f07ccd05 998 @retval FALSE If Unicode FIFO buffer is not full.\r
4bc6ad39
RN
999\r
1000**/\r
1001BOOLEAN\r
1002IsUnicodeFiFoFull (\r
1003 TERMINAL_DEV *TerminalDevice\r
1004 )\r
1005{\r
1006 UINT8 Tail;\r
1007 UINT8 Head;\r
1008\r
1009 Tail = TerminalDevice->UnicodeFiFo->Tail;\r
1010 Head = TerminalDevice->UnicodeFiFo->Head;\r
1011\r
1012 if (((Tail + 1) % (FIFO_MAX_NUMBER + 1)) == Head) {\r
1013\r
1014 return TRUE;\r
1015 }\r
1016\r
1017 return FALSE;\r
1018}\r
1019\r
1020/**\r
1021 Count Unicode FIFO buffer.\r
1022\r
1023 @param TerminalDevice Terminal driver private structure\r
1024\r
1025 @return The count in bytes of Unicode FIFO.\r
1026\r
1027**/\r
1028UINT8\r
1029UnicodeFiFoGetKeyCount (\r
1030 TERMINAL_DEV *TerminalDevice\r
1031 )\r
1032{\r
1033 UINT8 Tail;\r
1034 UINT8 Head;\r
1035\r
1036 Tail = TerminalDevice->UnicodeFiFo->Tail;\r
1037 Head = TerminalDevice->UnicodeFiFo->Head;\r
1038\r
1039 if (Tail >= Head) {\r
1040 return (UINT8) (Tail - Head);\r
1041 } else {\r
1042 return (UINT8) (Tail + FIFO_MAX_NUMBER + 1 - Head);\r
1043 }\r
1044}\r
1045\r
1046/**\r
1047 Update the Unicode characters from a terminal input device into EFI Keys FIFO.\r
1048\r
1049 @param TerminalDevice The terminal device to use to translate raw input into EFI Keys\r
1050\r
1051**/\r
1052VOID\r
1053UnicodeToEfiKeyFlushState (\r
1054 IN TERMINAL_DEV *TerminalDevice\r
1055 )\r
1056{\r
1057 EFI_INPUT_KEY Key;\r
1058 UINT32 InputState;\r
1059\r
1060 InputState = TerminalDevice->InputState;\r
1061\r
1062 if (IsEfiKeyFiFoFull (TerminalDevice)) {\r
1063 return;\r
1064 }\r
1065\r
1066 if ((InputState & INPUT_STATE_ESC) != 0) {\r
1067 Key.ScanCode = SCAN_ESC;\r
1068 Key.UnicodeChar = 0;\r
1069 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1070 }\r
1071\r
1072 if ((InputState & INPUT_STATE_CSI) != 0) {\r
1073 Key.ScanCode = SCAN_NULL;\r
1074 Key.UnicodeChar = CSI;\r
1075 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1076 }\r
1077\r
1078 if ((InputState & INPUT_STATE_LEFTOPENBRACKET) != 0) {\r
1079 Key.ScanCode = SCAN_NULL;\r
1080 Key.UnicodeChar = LEFTOPENBRACKET;\r
1081 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1082 }\r
1083\r
1084 if ((InputState & INPUT_STATE_O) != 0) {\r
1085 Key.ScanCode = SCAN_NULL;\r
1086 Key.UnicodeChar = 'O';\r
1087 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1088 }\r
1089\r
1090 if ((InputState & INPUT_STATE_2) != 0) {\r
1091 Key.ScanCode = SCAN_NULL;\r
1092 Key.UnicodeChar = '2';\r
1093 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1094 }\r
1095\r
1096 //\r
1097 // Cancel the timer.\r
1098 //\r
1099 gBS->SetTimer (\r
1100 TerminalDevice->TwoSecondTimeOut,\r
1101 TimerCancel,\r
1102 0\r
1103 );\r
1104\r
1105 TerminalDevice->InputState = INPUT_STATE_DEFAULT;\r
1106}\r
1107\r
1108\r
1109/**\r
1110 Converts a stream of Unicode characters from a terminal input device into EFI Keys that\r
1111 can be read through the Simple Input Protocol.\r
1112\r
1113 The table below shows the keyboard input mappings that this function supports.\r
1114 If the ESC sequence listed in one of the columns is presented, then it is translated\r
1115 into the corresponding EFI Scan Code. If a matching sequence is not found, then the raw\r
1116 key strokes are converted into EFI Keys.\r
1117\r
1118 2 seconds are allowed for an ESC sequence to be completed. If the ESC sequence is not\r
1119 completed in 2 seconds, then the raw key strokes of the partial ESC sequence are\r
1120 converted into EFI Keys.\r
1121 There is one special input sequence that will force the system to reset.\r
1122 This is ESC R ESC r ESC R.\r
1123\r
1124 Note: current implementation support terminal types include: PC ANSI, VT100+/VTUTF8, VT100. \r
1125 The table below is not same with UEFI Spec 2.3 Appendix B Table 201(not support ANSI X3.64 /\r
1126 DEC VT200-500 and extra support PC ANSI, VT100)since UEFI Table 201 is just an example.\r
1127 \r
1128 Symbols used in table below\r
1129 ===========================\r
1130 ESC = 0x1B\r
1131 CSI = 0x9B\r
1132 DEL = 0x7f\r
1133 ^ = CTRL\r
1134\r
1135 +=========+======+===========+==========+==========+\r
1136 | | EFI | UEFI 2.0 | | |\r
1137 | | Scan | | VT100+ | |\r
1138 | KEY | Code | PC ANSI | VTUTF8 | VT100 |\r
1139 +=========+======+===========+==========+==========+\r
1140 | NULL | 0x00 | | | |\r
1141 | UP | 0x01 | ESC [ A | ESC [ A | ESC [ A |\r
1142 | DOWN | 0x02 | ESC [ B | ESC [ B | ESC [ B |\r
1143 | RIGHT | 0x03 | ESC [ C | ESC [ C | ESC [ C |\r
1144 | LEFT | 0x04 | ESC [ D | ESC [ D | ESC [ D |\r
1145 | HOME | 0x05 | ESC [ H | ESC h | ESC [ H |\r
1146 | END | 0x06 | ESC [ F | ESC k | ESC [ K |\r
1147 | INSERT | 0x07 | ESC [ @ | ESC + | ESC [ @ |\r
1148 | | | ESC [ L | | ESC [ L |\r
1149 | DELETE | 0x08 | ESC [ X | ESC - | ESC [ P |\r
1150 | PG UP | 0x09 | ESC [ I | ESC ? | ESC [ V |\r
1151 | | | | | ESC [ ? |\r
1152 | PG DOWN | 0x0A | ESC [ G | ESC / | ESC [ U |\r
1153 | | | | | ESC [ / |\r
1154 | F1 | 0x0B | ESC [ M | ESC 1 | ESC O P |\r
1155 | F2 | 0x0C | ESC [ N | ESC 2 | ESC O Q |\r
1156 | F3 | 0x0D | ESC [ O | ESC 3 | ESC O w |\r
1157 | F4 | 0x0E | ESC [ P | ESC 4 | ESC O x |\r
1158 | F5 | 0x0F | ESC [ Q | ESC 5 | ESC O t |\r
1159 | F6 | 0x10 | ESC [ R | ESC 6 | ESC O u |\r
1160 | F7 | 0x11 | ESC [ S | ESC 7 | ESC O q |\r
1161 | F8 | 0x12 | ESC [ T | ESC 8 | ESC O r |\r
1162 | F9 | 0x13 | ESC [ U | ESC 9 | ESC O p |\r
1163 | F10 | 0x14 | ESC [ V | ESC 0 | ESC O M |\r
1164 | Escape | 0x17 | ESC | ESC | ESC |\r
1165 | F11 | 0x15 | | ESC ! | |\r
1166 | F12 | 0x16 | | ESC @ | |\r
1167 +=========+======+===========+==========+==========+\r
1168\r
1169 Special Mappings\r
1170 ================\r
1171 ESC R ESC r ESC R = Reset System\r
1172\r
1173 @param TerminalDevice The terminal device to use to translate raw input into EFI Keys\r
1174\r
1175**/\r
1176VOID\r
1177UnicodeToEfiKey (\r
1178 IN TERMINAL_DEV *TerminalDevice\r
1179 )\r
1180{\r
1181 EFI_STATUS Status;\r
1182 EFI_STATUS TimerStatus;\r
1183 UINT16 UnicodeChar;\r
1184 EFI_INPUT_KEY Key;\r
1185 BOOLEAN SetDefaultResetState;\r
1186\r
1187 TimerStatus = gBS->CheckEvent (TerminalDevice->TwoSecondTimeOut);\r
1188\r
1189 if (!EFI_ERROR (TimerStatus)) {\r
1190 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1191 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1192 }\r
1193\r
1194 while (!IsUnicodeFiFoEmpty (TerminalDevice) && !IsEfiKeyFiFoFull (TerminalDevice)) {\r
1195\r
1196 if (TerminalDevice->InputState != INPUT_STATE_DEFAULT) {\r
1197 //\r
1198 // Check to see if the 2 seconds timer has expired\r
1199 //\r
1200 TimerStatus = gBS->CheckEvent (TerminalDevice->TwoSecondTimeOut);\r
1201 if (!EFI_ERROR (TimerStatus)) {\r
1202 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1203 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1204 }\r
1205 }\r
1206\r
1207 //\r
1208 // Fetch one Unicode character from the Unicode FIFO\r
1209 //\r
1210 UnicodeFiFoRemoveOneKey (TerminalDevice, &UnicodeChar);\r
1211\r
1212 SetDefaultResetState = TRUE;\r
1213\r
1214 switch (TerminalDevice->InputState) {\r
1215 case INPUT_STATE_DEFAULT:\r
1216\r
1217 break;\r
1218\r
1219 case INPUT_STATE_ESC:\r
1220\r
1221 if (UnicodeChar == LEFTOPENBRACKET) {\r
1222 TerminalDevice->InputState |= INPUT_STATE_LEFTOPENBRACKET;\r
1223 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1224 continue;\r
1225 }\r
1226\r
014f93ac
RF
1227 if (UnicodeChar == 'O' && (TerminalDevice->TerminalType == VT100TYPE ||\r
1228 TerminalDevice->TerminalType == TTYTERMTYPE)) {\r
4bc6ad39
RN
1229 TerminalDevice->InputState |= INPUT_STATE_O;\r
1230 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1231 continue;\r
1232 }\r
1233\r
1234 Key.ScanCode = SCAN_NULL;\r
1235\r
1236 if (TerminalDevice->TerminalType == VT100PLUSTYPE ||\r
1237 TerminalDevice->TerminalType == VTUTF8TYPE) {\r
1238 switch (UnicodeChar) {\r
1239 case '1':\r
1240 Key.ScanCode = SCAN_F1;\r
1241 break;\r
1242 case '2':\r
1243 Key.ScanCode = SCAN_F2;\r
1244 break;\r
1245 case '3':\r
1246 Key.ScanCode = SCAN_F3;\r
1247 break;\r
1248 case '4':\r
1249 Key.ScanCode = SCAN_F4;\r
1250 break;\r
1251 case '5':\r
1252 Key.ScanCode = SCAN_F5;\r
1253 break;\r
1254 case '6':\r
1255 Key.ScanCode = SCAN_F6;\r
1256 break;\r
1257 case '7':\r
1258 Key.ScanCode = SCAN_F7;\r
1259 break;\r
1260 case '8':\r
1261 Key.ScanCode = SCAN_F8;\r
1262 break;\r
1263 case '9':\r
1264 Key.ScanCode = SCAN_F9;\r
1265 break;\r
1266 case '0':\r
1267 Key.ScanCode = SCAN_F10;\r
1268 break;\r
1269 case '!':\r
1270 Key.ScanCode = SCAN_F11;\r
1271 break;\r
1272 case '@':\r
1273 Key.ScanCode = SCAN_F12;\r
1274 break;\r
1275 case 'h':\r
1276 Key.ScanCode = SCAN_HOME;\r
1277 break;\r
1278 case 'k':\r
1279 Key.ScanCode = SCAN_END;\r
1280 break;\r
1281 case '+':\r
1282 Key.ScanCode = SCAN_INSERT;\r
1283 break;\r
1284 case '-':\r
1285 Key.ScanCode = SCAN_DELETE;\r
1286 break;\r
1287 case '/':\r
1288 Key.ScanCode = SCAN_PAGE_DOWN;\r
1289 break;\r
1290 case '?':\r
1291 Key.ScanCode = SCAN_PAGE_UP;\r
1292 break;\r
1293 default :\r
1294 break;\r
1295 }\r
1296 }\r
1297\r
1298 switch (UnicodeChar) {\r
1299 case 'R':\r
1300 if (TerminalDevice->ResetState == RESET_STATE_DEFAULT) {\r
1301 TerminalDevice->ResetState = RESET_STATE_ESC_R;\r
1302 SetDefaultResetState = FALSE;\r
1303 } else if (TerminalDevice->ResetState == RESET_STATE_ESC_R_ESC_R) {\r
1304 gRT->ResetSystem (EfiResetWarm, EFI_SUCCESS, 0, NULL);\r
1305 }\r
1306 Key.ScanCode = SCAN_NULL;\r
1307 break;\r
1308 case 'r':\r
1309 if (TerminalDevice->ResetState == RESET_STATE_ESC_R) {\r
1310 TerminalDevice->ResetState = RESET_STATE_ESC_R_ESC_R;\r
1311 SetDefaultResetState = FALSE;\r
1312 }\r
1313 Key.ScanCode = SCAN_NULL;\r
1314 break;\r
1315 default :\r
1316 break;\r
1317 }\r
1318\r
1319 if (SetDefaultResetState) {\r
1320 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1321 }\r
1322\r
1323 if (Key.ScanCode != SCAN_NULL) {\r
1324 Key.UnicodeChar = 0;\r
1325 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1326 TerminalDevice->InputState = INPUT_STATE_DEFAULT;\r
1327 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1328 continue;\r
1329 }\r
1330\r
1331 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1332\r
1333 break;\r
1334\r
1335 case INPUT_STATE_ESC | INPUT_STATE_O:\r
1336\r
1337 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1338\r
1339 Key.ScanCode = SCAN_NULL;\r
1340\r
1341 if (TerminalDevice->TerminalType == VT100TYPE) {\r
1342 switch (UnicodeChar) {\r
1343 case 'P':\r
1344 Key.ScanCode = SCAN_F1;\r
1345 break;\r
1346 case 'Q':\r
1347 Key.ScanCode = SCAN_F2;\r
1348 break;\r
1349 case 'w':\r
1350 Key.ScanCode = SCAN_F3;\r
1351 break;\r
1352 case 'x':\r
1353 Key.ScanCode = SCAN_F4;\r
1354 break;\r
1355 case 't':\r
1356 Key.ScanCode = SCAN_F5;\r
1357 break;\r
1358 case 'u':\r
1359 Key.ScanCode = SCAN_F6;\r
1360 break;\r
1361 case 'q':\r
1362 Key.ScanCode = SCAN_F7;\r
1363 break;\r
1364 case 'r':\r
1365 Key.ScanCode = SCAN_F8;\r
1366 break;\r
1367 case 'p':\r
1368 Key.ScanCode = SCAN_F9;\r
1369 break;\r
1370 case 'M':\r
1371 Key.ScanCode = SCAN_F10;\r
1372 break;\r
1373 default :\r
1374 break;\r
1375 }\r
014f93ac
RF
1376 } else if (TerminalDevice->TerminalType == TTYTERMTYPE) {\r
1377 /* Also accept VT100 escape codes for F1-F4 for TTY term */\r
1378 switch (UnicodeChar) {\r
1379 case 'P':\r
1380 Key.ScanCode = SCAN_F1;\r
1381 break;\r
1382 case 'Q':\r
1383 Key.ScanCode = SCAN_F2;\r
1384 break;\r
1385 case 'R':\r
1386 Key.ScanCode = SCAN_F3;\r
1387 break;\r
1388 case 'S':\r
1389 Key.ScanCode = SCAN_F4;\r
1390 break;\r
1391 }\r
4bc6ad39
RN
1392 }\r
1393\r
1394 if (Key.ScanCode != SCAN_NULL) {\r
1395 Key.UnicodeChar = 0;\r
1396 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1397 TerminalDevice->InputState = INPUT_STATE_DEFAULT;\r
1398 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1399 continue;\r
1400 }\r
1401\r
1402 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1403\r
1404 break;\r
1405\r
1406 case INPUT_STATE_ESC | INPUT_STATE_LEFTOPENBRACKET:\r
1407\r
1408 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1409\r
1410 Key.ScanCode = SCAN_NULL;\r
1411\r
1412 if (TerminalDevice->TerminalType == PCANSITYPE ||\r
1413 TerminalDevice->TerminalType == VT100TYPE ||\r
1414 TerminalDevice->TerminalType == VT100PLUSTYPE ||\r
6e3227c8
RF
1415 TerminalDevice->TerminalType == VTUTF8TYPE ||\r
1416 TerminalDevice->TerminalType == TTYTERMTYPE) {\r
4bc6ad39
RN
1417 switch (UnicodeChar) {\r
1418 case 'A':\r
1419 Key.ScanCode = SCAN_UP;\r
1420 break;\r
1421 case 'B':\r
1422 Key.ScanCode = SCAN_DOWN;\r
1423 break;\r
1424 case 'C':\r
1425 Key.ScanCode = SCAN_RIGHT;\r
1426 break;\r
1427 case 'D':\r
1428 Key.ScanCode = SCAN_LEFT;\r
1429 break;\r
1430 case 'H':\r
1431 if (TerminalDevice->TerminalType == PCANSITYPE ||\r
1432 TerminalDevice->TerminalType == VT100TYPE) {\r
1433 Key.ScanCode = SCAN_HOME;\r
1434 }\r
1435 break;\r
1436 case 'F':\r
1437 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1438 Key.ScanCode = SCAN_END;\r
1439 }\r
1440 break;\r
1441 case 'K':\r
1442 if (TerminalDevice->TerminalType == VT100TYPE) {\r
1443 Key.ScanCode = SCAN_END;\r
1444 }\r
1445 break;\r
1446 case 'L':\r
1447 case '@':\r
1448 if (TerminalDevice->TerminalType == PCANSITYPE ||\r
1449 TerminalDevice->TerminalType == VT100TYPE) {\r
1450 Key.ScanCode = SCAN_INSERT;\r
1451 }\r
1452 break;\r
1453 case 'X':\r
1454 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1455 Key.ScanCode = SCAN_DELETE;\r
1456 }\r
1457 break;\r
1458 case 'P':\r
1459 if (TerminalDevice->TerminalType == VT100TYPE) {\r
1460 Key.ScanCode = SCAN_DELETE;\r
1461 } else if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1462 Key.ScanCode = SCAN_F4;\r
1463 }\r
1464 break;\r
1465 case 'I':\r
1466 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1467 Key.ScanCode = SCAN_PAGE_UP;\r
1468 }\r
1469 break;\r
1470 case 'V':\r
1471 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1472 Key.ScanCode = SCAN_F10;\r
1473 }\r
bd07919c 1474 break;\r
4bc6ad39
RN
1475 case '?':\r
1476 if (TerminalDevice->TerminalType == VT100TYPE) {\r
1477 Key.ScanCode = SCAN_PAGE_UP;\r
1478 }\r
1479 break;\r
1480 case 'G':\r
1481 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1482 Key.ScanCode = SCAN_PAGE_DOWN;\r
1483 }\r
1484 break;\r
1485 case 'U':\r
1486 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1487 Key.ScanCode = SCAN_F9;\r
1488 }\r
bd07919c 1489 break;\r
4bc6ad39
RN
1490 case '/':\r
1491 if (TerminalDevice->TerminalType == VT100TYPE) {\r
1492 Key.ScanCode = SCAN_PAGE_DOWN;\r
1493 }\r
1494 break;\r
1495 case 'M':\r
1496 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1497 Key.ScanCode = SCAN_F1;\r
1498 }\r
1499 break;\r
1500 case 'N':\r
1501 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1502 Key.ScanCode = SCAN_F2;\r
1503 }\r
1504 break;\r
1505 case 'O':\r
1506 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1507 Key.ScanCode = SCAN_F3;\r
1508 }\r
1509 break;\r
1510 case 'Q':\r
1511 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1512 Key.ScanCode = SCAN_F5;\r
1513 }\r
1514 break;\r
1515 case 'R':\r
1516 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1517 Key.ScanCode = SCAN_F6;\r
1518 }\r
1519 break;\r
1520 case 'S':\r
1521 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1522 Key.ScanCode = SCAN_F7;\r
1523 }\r
1524 break;\r
1525 case 'T':\r
1526 if (TerminalDevice->TerminalType == PCANSITYPE) {\r
1527 Key.ScanCode = SCAN_F8;\r
1528 }\r
1529 break;\r
1530 default :\r
1531 break;\r
1532 }\r
1533 }\r
1534\r
014f93ac
RF
1535 /*\r
1536 * The VT220 escape codes that the TTY terminal accepts all have\r
1537 * numeric codes, and there are no ambiguous prefixes shared with\r
1538 * other terminal types.\r
1539 */\r
1540 if (TerminalDevice->TerminalType == TTYTERMTYPE &&\r
1541 Key.ScanCode == SCAN_NULL &&\r
1542 UnicodeChar >= '0' &&\r
1543 UnicodeChar <= '9') {\r
1544 TerminalDevice->TtyEscapeStr[0] = UnicodeChar;\r
1545 TerminalDevice->TtyEscapeIndex = 1;\r
1546 TerminalDevice->InputState |= INPUT_STATE_LEFTOPENBRACKET_2;\r
1547 continue;\r
1548 }\r
1549\r
4bc6ad39
RN
1550 if (Key.ScanCode != SCAN_NULL) {\r
1551 Key.UnicodeChar = 0;\r
1552 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1553 TerminalDevice->InputState = INPUT_STATE_DEFAULT;\r
1554 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1555 continue;\r
1556 }\r
1557\r
1558 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1559\r
1560 break;\r
1561\r
1562\r
014f93ac
RF
1563 case INPUT_STATE_ESC | INPUT_STATE_LEFTOPENBRACKET | INPUT_STATE_LEFTOPENBRACKET_2:\r
1564 /*\r
1565 * Here we handle the VT220 escape codes that we accept. This\r
1566 * state is only used by the TTY terminal type.\r
1567 */\r
1568 Key.ScanCode = SCAN_NULL;\r
1569 if (TerminalDevice->TerminalType == TTYTERMTYPE) {\r
1570\r
1571 if (UnicodeChar == '~' && TerminalDevice->TtyEscapeIndex <= 2) {\r
5421247d 1572 UINT16 EscCode;\r
014f93ac 1573 TerminalDevice->TtyEscapeStr[TerminalDevice->TtyEscapeIndex] = 0; /* Terminate string */\r
5421247d 1574 EscCode = (UINT16) StrDecimalToUintn(TerminalDevice->TtyEscapeStr);\r
014f93ac
RF
1575 switch (EscCode) {\r
1576 case 3:\r
1577 Key.ScanCode = SCAN_DELETE;\r
1578 break;\r
1579 case 11:\r
1580 case 12:\r
1581 case 13:\r
1582 case 14:\r
1583 case 15:\r
1584 Key.ScanCode = SCAN_F1 + EscCode - 11;\r
1585 break;\r
1586 case 17:\r
1587 case 18:\r
1588 case 19:\r
1589 case 20:\r
1590 case 21:\r
1591 Key.ScanCode = SCAN_F6 + EscCode - 17;\r
1592 break;\r
1593 case 23:\r
1594 case 24:\r
1595 Key.ScanCode = SCAN_F11 + EscCode - 23;\r
1596 break;\r
1597 default:\r
1598 break;\r
1599 }\r
1600 } else if (TerminalDevice->TtyEscapeIndex == 1){\r
1601 /* 2 character escape code */\r
1602 TerminalDevice->TtyEscapeStr[TerminalDevice->TtyEscapeIndex++] = UnicodeChar;\r
1603 continue;\r
1604 }\r
1605 else {\r
1606 DEBUG ((EFI_D_ERROR, "Unexpected state in escape2\n"));\r
1607 }\r
1608 }\r
1609 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1610\r
1611 if (Key.ScanCode != SCAN_NULL) {\r
1612 Key.UnicodeChar = 0;\r
1613 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1614 TerminalDevice->InputState = INPUT_STATE_DEFAULT;\r
1615 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1616 continue;\r
1617 }\r
1618\r
1619 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1620 break;\r
1621\r
4bc6ad39
RN
1622 default:\r
1623 //\r
1624 // Invalid state. This should never happen.\r
1625 //\r
1626 ASSERT (FALSE);\r
1627\r
1628 UnicodeToEfiKeyFlushState (TerminalDevice);\r
1629\r
1630 break;\r
1631 }\r
1632\r
1633 if (UnicodeChar == ESC) {\r
1634 TerminalDevice->InputState = INPUT_STATE_ESC;\r
1635 }\r
1636\r
1637 if (UnicodeChar == CSI) {\r
1638 TerminalDevice->InputState = INPUT_STATE_CSI;\r
1639 }\r
1640\r
1641 if (TerminalDevice->InputState != INPUT_STATE_DEFAULT) {\r
1642 Status = gBS->SetTimer(\r
1643 TerminalDevice->TwoSecondTimeOut,\r
1644 TimerRelative,\r
1645 (UINT64)20000000\r
1646 );\r
1647 ASSERT_EFI_ERROR (Status);\r
1648 continue;\r
1649 }\r
1650\r
1651 if (SetDefaultResetState) {\r
1652 TerminalDevice->ResetState = RESET_STATE_DEFAULT;\r
1653 }\r
1654\r
1655 if (UnicodeChar == DEL) {\r
34098df2
RF
1656 if (TerminalDevice->TerminalType == TTYTERMTYPE) {\r
1657 Key.ScanCode = SCAN_NULL;\r
1658 Key.UnicodeChar = CHAR_BACKSPACE;\r
1659 }\r
1660 else {\r
1661 Key.ScanCode = SCAN_DELETE;\r
1662 Key.UnicodeChar = 0;\r
1663 }\r
4bc6ad39
RN
1664 } else {\r
1665 Key.ScanCode = SCAN_NULL;\r
1666 Key.UnicodeChar = UnicodeChar;\r
1667 }\r
1668\r
1669 EfiKeyFiFoInsertOneKey (TerminalDevice, &Key);\r
1670 }\r
1671}\r