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store Year/Month/Day to variable in SetWakeupTime() because PCAT RTC Alarm registers...
[mirror_edk2.git] / PcAtChipsetPkg / PcatRealTimeClockRuntimeDxe / PcRtc.c
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fb0b259e 1/** @file\r
2 RTC Architectural Protocol GUID as defined in DxeCis 0.96.\r
8cd4d17c 3\r
7018623c 4Copyright (c) 2006 - 2010, Intel Corporation. All rights reserved.<BR>\r
95d48e82 5This program and the accompanying materials\r
3cfb790c 6are licensed and made available under the terms and conditions of the BSD License\r
7which accompanies this distribution. The full text of the license may be found at\r
8http://opensource.org/licenses/bsd-license.php\r
9\r
10THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
11WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
8cd4d17c 12\r
fb0b259e 13**/\r
8cd4d17c 14\r
15#include "PcRtc.h"\r
16\r
8d85dc31 17/**\r
18 Compare the Hour, Minute and Second of the From time and the To time.\r
19 \r
20 Only compare H/M/S in EFI_TIME and ignore other fields here.\r
21\r
22 @param From the first time\r
23 @param To the second time\r
24\r
25 @return >0 The H/M/S of the From time is later than those of To time\r
26 @return ==0 The H/M/S of the From time is same as those of To time\r
27 @return <0 The H/M/S of the From time is earlier than those of To time\r
28**/\r
8cd4d17c 29INTN\r
30CompareHMS (\r
31 IN EFI_TIME *From,\r
32 IN EFI_TIME *To\r
33 );\r
34\r
8d85dc31 35/**\r
36 To check if second date is later than first date within 24 hours.\r
37\r
38 @param From the first date\r
39 @param To the second date\r
40\r
41 @retval TRUE From is previous to To within 24 hours.\r
42 @retval FALSE From is later, or it is previous to To more than 24 hours.\r
43**/\r
8cd4d17c 44BOOLEAN\r
45IsWithinOneDay (\r
46 IN EFI_TIME *From,\r
47 IN EFI_TIME *To\r
48 );\r
49\r
8d85dc31 50/**\r
51 Read RTC content through its registers.\r
52\r
53 @param Address Address offset of RTC. It is recommended to use macros such as\r
54 RTC_ADDRESS_SECONDS.\r
55\r
56 @return The data of UINT8 type read from RTC.\r
57**/\r
8cd4d17c 58UINT8\r
59RtcRead (\r
60 IN UINT8 Address\r
61 )\r
8cd4d17c 62{\r
63 IoWrite8 (PCAT_RTC_ADDRESS_REGISTER, (UINT8) (Address | (UINT8) (IoRead8 (PCAT_RTC_ADDRESS_REGISTER) & 0x80)));\r
64 return IoRead8 (PCAT_RTC_DATA_REGISTER);\r
65}\r
66\r
8d85dc31 67/**\r
68 Write RTC through its registers.\r
69\r
70 @param Address Address offset of RTC. It is recommended to use macros such as\r
71 RTC_ADDRESS_SECONDS.\r
72 @param Data The content you want to write into RTC.\r
73\r
74**/\r
8cd4d17c 75VOID\r
76RtcWrite (\r
77 IN UINT8 Address,\r
78 IN UINT8 Data\r
79 )\r
8cd4d17c 80{\r
81 IoWrite8 (PCAT_RTC_ADDRESS_REGISTER, (UINT8) (Address | (UINT8) (IoRead8 (PCAT_RTC_ADDRESS_REGISTER) & 0x80)));\r
82 IoWrite8 (PCAT_RTC_DATA_REGISTER, Data);\r
83}\r
84\r
8d85dc31 85/**\r
86 Initialize RTC.\r
87\r
88 @param Global For global use inside this module.\r
89\r
90 @retval EFI_DEVICE_ERROR Initialization failed due to device error.\r
91 @retval EFI_SUCCESS Initialization successful.\r
92\r
93**/\r
8cd4d17c 94EFI_STATUS\r
95PcRtcInit (\r
96 IN PC_RTC_MODULE_GLOBALS *Global\r
97 )\r
8cd4d17c 98{\r
99 EFI_STATUS Status;\r
100 RTC_REGISTER_A RegisterA;\r
101 RTC_REGISTER_B RegisterB;\r
102 RTC_REGISTER_D RegisterD;\r
103 UINT8 Century;\r
104 EFI_TIME Time;\r
ec35e997
LG
105 UINTN DataSize;\r
106 UINT32 TimerVar;\r
8cd4d17c 107\r
108 //\r
109 // Acquire RTC Lock to make access to RTC atomic\r
110 //\r
8cd4d17c 111 if (!EfiAtRuntime ()) {\r
8d85dc31 112 EfiAcquireLock (&Global->RtcLock);\r
8cd4d17c 113 }\r
114 //\r
115 // Initialize RTC Register\r
116 //\r
117 // Make sure Division Chain is properly configured,\r
118 // or RTC clock won't "tick" -- time won't increment\r
119 //\r
120 RegisterA.Data = RTC_INIT_REGISTER_A;\r
121 RtcWrite (RTC_ADDRESS_REGISTER_A, RegisterA.Data);\r
122\r
123 //\r
124 // Read Register B\r
125 //\r
126 RegisterB.Data = RtcRead (RTC_ADDRESS_REGISTER_B);\r
127\r
128 //\r
129 // Clear RTC flag register\r
130 //\r
131 RtcRead (RTC_ADDRESS_REGISTER_C);\r
132\r
133 //\r
134 // Clear RTC register D\r
135 //\r
136 RegisterD.Data = RTC_INIT_REGISTER_D;\r
137 RtcWrite (RTC_ADDRESS_REGISTER_D, RegisterD.Data);\r
138\r
139 //\r
140 // Wait for up to 0.1 seconds for the RTC to be updated\r
141 //\r
f8ea3026 142 Status = RtcWaitToUpdate (PcdGet32 (PcdRealTimeClockUpdateTimeout));\r
8cd4d17c 143 if (EFI_ERROR (Status)) {\r
8cd4d17c 144 if (!EfiAtRuntime ()) {\r
8d85dc31 145 EfiReleaseLock (&Global->RtcLock);\r
8cd4d17c 146 }\r
147 return EFI_DEVICE_ERROR;\r
148 }\r
149 //\r
150 // Get the Time/Date/Daylight Savings values.\r
151 //\r
152 Time.Second = RtcRead (RTC_ADDRESS_SECONDS);\r
153 Time.Minute = RtcRead (RTC_ADDRESS_MINUTES);\r
154 Time.Hour = RtcRead (RTC_ADDRESS_HOURS);\r
155 Time.Day = RtcRead (RTC_ADDRESS_DAY_OF_THE_MONTH);\r
156 Time.Month = RtcRead (RTC_ADDRESS_MONTH);\r
157 Time.Year = RtcRead (RTC_ADDRESS_YEAR);\r
158\r
9a1eee23 159 Century = RtcRead (RTC_ADDRESS_CENTURY);\r
9a1eee23 160 \r
8cd4d17c 161 //\r
162 // Set RTC configuration after get original time\r
ec35e997 163 // The value of bit AIE should be reserved.\r
8cd4d17c 164 //\r
f7033880 165 RtcWrite (RTC_ADDRESS_REGISTER_B, (UINT8)(RTC_INIT_REGISTER_B | (RegisterB.Data & BIT5)));\r
8cd4d17c 166\r
167 //\r
168 // Release RTC Lock.\r
169 //\r
8cd4d17c 170 if (!EfiAtRuntime ()) {\r
8d85dc31 171 EfiReleaseLock (&Global->RtcLock);\r
8cd4d17c 172 }\r
254ba247 173 \r
6bfa178c 174 //\r
175 // Get the data of Daylight saving and time zone, if they have been\r
176 // stored in NV variable during previous boot.\r
177 //\r
178 DataSize = sizeof (UINT32);\r
179 Status = EfiGetVariable (\r
180 L"RTC",\r
181 &gEfiCallerIdGuid,\r
182 NULL,\r
183 &DataSize,\r
184 (VOID *) &TimerVar\r
185 );\r
186 if (!EFI_ERROR (Status)) {\r
187 Time.TimeZone = (INT16) TimerVar;\r
188 Time.Daylight = (UINT8) (TimerVar >> 16);\r
189 } else {\r
190 Time.TimeZone = EFI_UNSPECIFIED_TIMEZONE;\r
191 Time.Daylight = 0; \r
192 }\r
193\r
8cd4d17c 194 //\r
195 // Validate time fields\r
196 //\r
254ba247 197 Status = ConvertRtcTimeToEfiTime (&Time, Century, RegisterB);\r
198 if (!EFI_ERROR (Status)) {\r
199 Status = RtcTimeFieldsValid (&Time);\r
200 }\r
8cd4d17c 201 if (EFI_ERROR (Status)) {\r
202 Time.Second = RTC_INIT_SECOND;\r
203 Time.Minute = RTC_INIT_MINUTE;\r
204 Time.Hour = RTC_INIT_HOUR;\r
205 Time.Day = RTC_INIT_DAY;\r
206 Time.Month = RTC_INIT_MONTH;\r
207 Time.Year = RTC_INIT_YEAR;\r
2ba53a4f 208 Time.Nanosecond = 0;\r
8cd4d17c 209 }\r
ec35e997 210\r
ec35e997 211 //\r
8cd4d17c 212 // Reset time value according to new RTC configuration\r
213 //\r
2ba53a4f 214 Status = PcRtcSetTime (&Time, Global);\r
215 if(!EFI_ERROR (Status)) {\r
216 return EFI_SUCCESS;\r
217 } else {\r
218 return EFI_DEVICE_ERROR;\r
219 }\r
8cd4d17c 220}\r
221\r
8d85dc31 222/**\r
223 Returns the current time and date information, and the time-keeping capabilities\r
224 of the hardware platform.\r
8cd4d17c 225\r
8d85dc31 226 @param Time A pointer to storage to receive a snapshot of the current time.\r
227 @param Capabilities An optional pointer to a buffer to receive the real time clock\r
228 device's capabilities.\r
229 @param Global For global use inside this module.\r
8cd4d17c 230\r
8d85dc31 231 @retval EFI_SUCCESS The operation completed successfully.\r
232 @retval EFI_INVALID_PARAMETER Time is NULL.\r
233 @retval EFI_DEVICE_ERROR The time could not be retrieved due to hardware error.\r
8cd4d17c 234\r
8d85dc31 235**/\r
236EFI_STATUS\r
7018623c 237EFIAPI\r
8d85dc31 238PcRtcGetTime (\r
239 OUT EFI_TIME *Time,\r
240 OUT EFI_TIME_CAPABILITIES *Capabilities, OPTIONAL\r
241 IN PC_RTC_MODULE_GLOBALS *Global\r
242 )\r
8cd4d17c 243{\r
244 EFI_STATUS Status;\r
245 RTC_REGISTER_B RegisterB;\r
246 UINT8 Century;\r
247\r
248 //\r
249 // Check parameters for null pointer\r
250 //\r
251 if (Time == NULL) {\r
252 return EFI_INVALID_PARAMETER;\r
253\r
254 }\r
255 //\r
256 // Acquire RTC Lock to make access to RTC atomic\r
257 //\r
8cd4d17c 258 if (!EfiAtRuntime ()) {\r
8d85dc31 259 EfiAcquireLock (&Global->RtcLock);\r
8cd4d17c 260 }\r
261 //\r
262 // Wait for up to 0.1 seconds for the RTC to be updated\r
263 //\r
f8ea3026 264 Status = RtcWaitToUpdate (PcdGet32 (PcdRealTimeClockUpdateTimeout));\r
8cd4d17c 265 if (EFI_ERROR (Status)) {\r
8cd4d17c 266 if (!EfiAtRuntime ()) {\r
8d85dc31 267 EfiReleaseLock (&Global->RtcLock);\r
8cd4d17c 268 }\r
269 return Status;\r
270 }\r
271 //\r
272 // Read Register B\r
273 //\r
274 RegisterB.Data = RtcRead (RTC_ADDRESS_REGISTER_B);\r
275\r
276 //\r
277 // Get the Time/Date/Daylight Savings values.\r
278 //\r
279 Time->Second = RtcRead (RTC_ADDRESS_SECONDS);\r
280 Time->Minute = RtcRead (RTC_ADDRESS_MINUTES);\r
281 Time->Hour = RtcRead (RTC_ADDRESS_HOURS);\r
282 Time->Day = RtcRead (RTC_ADDRESS_DAY_OF_THE_MONTH);\r
283 Time->Month = RtcRead (RTC_ADDRESS_MONTH);\r
284 Time->Year = RtcRead (RTC_ADDRESS_YEAR);\r
285\r
9a1eee23 286 Century = RtcRead (RTC_ADDRESS_CENTURY);\r
9a1eee23 287 \r
8cd4d17c 288 //\r
289 // Release RTC Lock.\r
290 //\r
8cd4d17c 291 if (!EfiAtRuntime ()) {\r
8d85dc31 292 EfiReleaseLock (&Global->RtcLock);\r
8cd4d17c 293 }\r
6bfa178c 294\r
8cd4d17c 295 //\r
2d4117c0 296 // Get the variable that contains the TimeZone and Daylight fields\r
8cd4d17c 297 //\r
298 Time->TimeZone = Global->SavedTimeZone;\r
299 Time->Daylight = Global->Daylight;\r
300\r
301 //\r
302 // Make sure all field values are in correct range\r
303 //\r
254ba247 304 Status = ConvertRtcTimeToEfiTime (Time, Century, RegisterB);\r
305 if (!EFI_ERROR (Status)) {\r
306 Status = RtcTimeFieldsValid (Time);\r
307 }\r
8cd4d17c 308 if (EFI_ERROR (Status)) {\r
309 return EFI_DEVICE_ERROR;\r
310 }\r
6bfa178c 311\r
8cd4d17c 312 //\r
313 // Fill in Capabilities if it was passed in\r
314 //\r
8d85dc31 315 if (Capabilities != NULL) {\r
8cd4d17c 316 Capabilities->Resolution = 1;\r
317 //\r
318 // 1 hertz\r
319 //\r
320 Capabilities->Accuracy = 50000000;\r
321 //\r
322 // 50 ppm\r
323 //\r
324 Capabilities->SetsToZero = FALSE;\r
325 }\r
326\r
327 return EFI_SUCCESS;\r
328}\r
329\r
8d85dc31 330/**\r
331 Sets the current local time and date information.\r
332\r
333 @param Time A pointer to the current time.\r
334 @param Global For global use inside this module.\r
335\r
336 @retval EFI_SUCCESS The operation completed successfully.\r
337 @retval EFI_INVALID_PARAMETER A time field is out of range.\r
338 @retval EFI_DEVICE_ERROR The time could not be set due due to hardware error.\r
339\r
340**/\r
8cd4d17c 341EFI_STATUS\r
7018623c 342EFIAPI\r
8cd4d17c 343PcRtcSetTime (\r
344 IN EFI_TIME *Time,\r
345 IN PC_RTC_MODULE_GLOBALS *Global\r
346 )\r
8cd4d17c 347{\r
348 EFI_STATUS Status;\r
349 EFI_TIME RtcTime;\r
350 RTC_REGISTER_B RegisterB;\r
351 UINT8 Century;\r
ec35e997 352 UINT32 TimerVar;\r
8cd4d17c 353\r
354 if (Time == NULL) {\r
355 return EFI_INVALID_PARAMETER;\r
356 }\r
357 //\r
358 // Make sure that the time fields are valid\r
359 //\r
360 Status = RtcTimeFieldsValid (Time);\r
361 if (EFI_ERROR (Status)) {\r
362 return Status;\r
363 }\r
364\r
365 CopyMem (&RtcTime, Time, sizeof (EFI_TIME));\r
366\r
367 //\r
368 // Acquire RTC Lock to make access to RTC atomic\r
369 //\r
8cd4d17c 370 if (!EfiAtRuntime ()) {\r
8d85dc31 371 EfiAcquireLock (&Global->RtcLock);\r
8cd4d17c 372 }\r
373 //\r
374 // Wait for up to 0.1 seconds for the RTC to be updated\r
375 //\r
f8ea3026 376 Status = RtcWaitToUpdate (PcdGet32 (PcdRealTimeClockUpdateTimeout));\r
8cd4d17c 377 if (EFI_ERROR (Status)) {\r
8cd4d17c 378 if (!EfiAtRuntime ()) {\r
ca08e40b 379 EfiReleaseLock (&Global->RtcLock);\r
8cd4d17c 380 }\r
381 return Status;\r
382 }\r
383 //\r
384 // Read Register B, and inhibit updates of the RTC\r
385 //\r
386 RegisterB.Data = RtcRead (RTC_ADDRESS_REGISTER_B);\r
24115e44 387 RegisterB.Bits.Set = 1;\r
8cd4d17c 388 RtcWrite (RTC_ADDRESS_REGISTER_B, RegisterB.Data);\r
389\r
390 ConvertEfiTimeToRtcTime (&RtcTime, RegisterB, &Century);\r
391\r
392 RtcWrite (RTC_ADDRESS_SECONDS, RtcTime.Second);\r
393 RtcWrite (RTC_ADDRESS_MINUTES, RtcTime.Minute);\r
394 RtcWrite (RTC_ADDRESS_HOURS, RtcTime.Hour);\r
395 RtcWrite (RTC_ADDRESS_DAY_OF_THE_MONTH, RtcTime.Day);\r
396 RtcWrite (RTC_ADDRESS_MONTH, RtcTime.Month);\r
397 RtcWrite (RTC_ADDRESS_YEAR, (UINT8) RtcTime.Year);\r
8cd4d17c 398 RtcWrite (RTC_ADDRESS_CENTURY, Century);\r
399\r
400 //\r
401 // Allow updates of the RTC registers\r
402 //\r
24115e44 403 RegisterB.Bits.Set = 0;\r
8cd4d17c 404 RtcWrite (RTC_ADDRESS_REGISTER_B, RegisterB.Data);\r
405\r
406 //\r
407 // Release RTC Lock.\r
408 //\r
8cd4d17c 409 if (!EfiAtRuntime ()) {\r
8d85dc31 410 EfiReleaseLock (&Global->RtcLock);\r
8cd4d17c 411 }\r
412 //\r
2d4117c0 413 // Set the variable that contains the TimeZone and Daylight fields\r
8cd4d17c 414 //\r
415 Global->SavedTimeZone = Time->TimeZone;\r
416 Global->Daylight = Time->Daylight;\r
ec35e997
LG
417\r
418 TimerVar = Time->Daylight;\r
419 TimerVar = (UINT32) ((TimerVar << 16) | Time->TimeZone);\r
420 Status = EfiSetVariable (\r
e0312446 421 L"RTC",\r
422 &gEfiCallerIdGuid,\r
ec35e997
LG
423 EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_NON_VOLATILE,\r
424 sizeof (TimerVar),\r
425 &TimerVar\r
426 );\r
427 ASSERT_EFI_ERROR (Status);\r
428\r
429 return EFI_SUCCESS;\r
8cd4d17c 430}\r
431\r
8d85dc31 432/**\r
433 Returns the current wakeup alarm clock setting.\r
434\r
435 @param Enabled Indicates if the alarm is currently enabled or disabled.\r
2d4117c0 436 @param Pending Indicates if the alarm signal is pending and requires acknowledgment.\r
8d85dc31 437 @param Time The current alarm setting.\r
438 @param Global For global use inside this module.\r
439\r
440 @retval EFI_SUCCESS The alarm settings were returned.\r
441 @retval EFI_INVALID_PARAMETER Enabled is NULL.\r
442 @retval EFI_INVALID_PARAMETER Pending is NULL.\r
443 @retval EFI_INVALID_PARAMETER Time is NULL.\r
444 @retval EFI_DEVICE_ERROR The wakeup time could not be retrieved due to a hardware error.\r
445 @retval EFI_UNSUPPORTED A wakeup timer is not supported on this platform.\r
446\r
447**/\r
8cd4d17c 448EFI_STATUS\r
449PcRtcGetWakeupTime (\r
450 OUT BOOLEAN *Enabled,\r
451 OUT BOOLEAN *Pending,\r
452 OUT EFI_TIME *Time,\r
8d85dc31 453 IN PC_RTC_MODULE_GLOBALS *Global\r
8cd4d17c 454 )\r
8cd4d17c 455{\r
456 EFI_STATUS Status;\r
457 RTC_REGISTER_B RegisterB;\r
458 RTC_REGISTER_C RegisterC;\r
459 UINT8 Century;\r
7018623c 460 EFI_TIME RtcTime;\r
461 UINTN DataSize;\r
8cd4d17c 462\r
463 //\r
2d4117c0 464 // Check parameters for null pointers\r
8cd4d17c 465 //\r
466 if ((Enabled == NULL) || (Pending == NULL) || (Time == NULL)) {\r
467 return EFI_INVALID_PARAMETER;\r
468\r
469 }\r
470 //\r
471 // Acquire RTC Lock to make access to RTC atomic\r
472 //\r
8cd4d17c 473 if (!EfiAtRuntime ()) {\r
8d85dc31 474 EfiAcquireLock (&Global->RtcLock);\r
8cd4d17c 475 }\r
476 //\r
477 // Wait for up to 0.1 seconds for the RTC to be updated\r
478 //\r
f8ea3026 479 Status = RtcWaitToUpdate (PcdGet32 (PcdRealTimeClockUpdateTimeout));\r
8cd4d17c 480 if (EFI_ERROR (Status)) {\r
8cd4d17c 481 if (!EfiAtRuntime ()) {\r
482 EfiReleaseLock (&Global->RtcLock);\r
483 }\r
484 return EFI_DEVICE_ERROR;\r
485 }\r
486 //\r
487 // Read Register B and Register C\r
488 //\r
489 RegisterB.Data = RtcRead (RTC_ADDRESS_REGISTER_B);\r
490 RegisterC.Data = RtcRead (RTC_ADDRESS_REGISTER_C);\r
491\r
492 //\r
493 // Get the Time/Date/Daylight Savings values.\r
494 //\r
24115e44 495 *Enabled = RegisterB.Bits.Aie;\r
7018623c 496 *Pending = RegisterC.Bits.Af;\r
497\r
498 Time->Second = RtcRead (RTC_ADDRESS_SECONDS_ALARM);\r
499 Time->Minute = RtcRead (RTC_ADDRESS_MINUTES_ALARM);\r
500 Time->Hour = RtcRead (RTC_ADDRESS_HOURS_ALARM);\r
501 Time->Day = RtcRead (RTC_ADDRESS_DAY_OF_THE_MONTH);\r
502 Time->Month = RtcRead (RTC_ADDRESS_MONTH);\r
503 Time->Year = RtcRead (RTC_ADDRESS_YEAR);\r
504 Time->TimeZone = Global->SavedTimeZone;\r
505 Time->Daylight = Global->Daylight;\r
8cd4d17c 506\r
9a1eee23 507 Century = RtcRead (RTC_ADDRESS_CENTURY);\r
7018623c 508\r
8cd4d17c 509 //\r
7018623c 510 // Get the alarm info from variable\r
8cd4d17c 511 //\r
7018623c 512 Status = EfiGetVariable (\r
513 L"RTCALARM",\r
514 &gEfiCallerIdGuid,\r
515 NULL,\r
516 &DataSize,\r
517 &RtcTime\r
518 );\r
519 if (!EFI_ERROR (Status)) {\r
520 //\r
521 // The alarm variable exists. In this case, we read variable to get info.\r
522 //\r
523 Time->Day = RtcTime.Day;\r
524 Time->Month = RtcTime.Month;\r
525 Time->Year = RtcTime.Year;\r
8cd4d17c 526 }\r
6bfa178c 527\r
528 //\r
7018623c 529 // Release RTC Lock.\r
6bfa178c 530 //\r
7018623c 531 if (!EfiAtRuntime ()) {\r
532 EfiReleaseLock (&Global->RtcLock);\r
533 }\r
6bfa178c 534\r
8cd4d17c 535 //\r
536 // Make sure all field values are in correct range\r
537 //\r
254ba247 538 Status = ConvertRtcTimeToEfiTime (Time, Century, RegisterB);\r
539 if (!EFI_ERROR (Status)) {\r
540 Status = RtcTimeFieldsValid (Time);\r
541 }\r
8cd4d17c 542 if (EFI_ERROR (Status)) {\r
543 return EFI_DEVICE_ERROR;\r
544 }\r
545\r
8cd4d17c 546 return EFI_SUCCESS;\r
547}\r
548\r
8d85dc31 549/**\r
550 Sets the system wakeup alarm clock time.\r
551\r
552 @param Enabled Enable or disable the wakeup alarm.\r
553 @param Time If Enable is TRUE, the time to set the wakeup alarm for.\r
554 If Enable is FALSE, then this parameter is optional, and may be NULL.\r
555 @param Global For global use inside this module.\r
556\r
557 @retval EFI_SUCCESS If Enable is TRUE, then the wakeup alarm was enabled.\r
558 If Enable is FALSE, then the wakeup alarm was disabled.\r
559 @retval EFI_INVALID_PARAMETER A time field is out of range.\r
560 @retval EFI_DEVICE_ERROR The wakeup time could not be set due to a hardware error.\r
561 @retval EFI_UNSUPPORTED A wakeup timer is not supported on this platform.\r
562\r
563**/\r
8cd4d17c 564EFI_STATUS\r
7018623c 565EFIAPI\r
8cd4d17c 566PcRtcSetWakeupTime (\r
567 IN BOOLEAN Enable,\r
8d85dc31 568 IN EFI_TIME *Time, OPTIONAL\r
8cd4d17c 569 IN PC_RTC_MODULE_GLOBALS *Global\r
570 )\r
8cd4d17c 571{\r
572 EFI_STATUS Status;\r
573 EFI_TIME RtcTime;\r
574 RTC_REGISTER_B RegisterB;\r
575 UINT8 Century;\r
576 EFI_TIME_CAPABILITIES Capabilities;\r
577\r
7018623c 578 ZeroMem (RtcTime);\r
579\r
8cd4d17c 580 if (Enable) {\r
581\r
582 if (Time == NULL) {\r
583 return EFI_INVALID_PARAMETER;\r
584 }\r
585 //\r
586 // Make sure that the time fields are valid\r
587 //\r
588 Status = RtcTimeFieldsValid (Time);\r
589 if (EFI_ERROR (Status)) {\r
590 return EFI_INVALID_PARAMETER;\r
591 }\r
592 //\r
593 // Just support set alarm time within 24 hours\r
594 //\r
595 PcRtcGetTime (&RtcTime, &Capabilities, Global);\r
79864f54 596 Status = RtcTimeFieldsValid (&RtcTime);\r
597 if (EFI_ERROR (Status)) {\r
598 return EFI_DEVICE_ERROR;\r
599 }\r
8cd4d17c 600 if (!IsWithinOneDay (&RtcTime, Time)) {\r
601 return EFI_UNSUPPORTED;\r
602 }\r
603 //\r
604 // Make a local copy of the time and date\r
605 //\r
606 CopyMem (&RtcTime, Time, sizeof (EFI_TIME));\r
607\r
608 }\r
609 //\r
610 // Acquire RTC Lock to make access to RTC atomic\r
611 //\r
8cd4d17c 612 if (!EfiAtRuntime ()) {\r
8d85dc31 613 EfiAcquireLock (&Global->RtcLock);\r
8cd4d17c 614 }\r
615 //\r
616 // Wait for up to 0.1 seconds for the RTC to be updated\r
617 //\r
f8ea3026 618 Status = RtcWaitToUpdate (PcdGet32 (PcdRealTimeClockUpdateTimeout));\r
8cd4d17c 619 if (EFI_ERROR (Status)) {\r
8cd4d17c 620 if (!EfiAtRuntime ()) {\r
621 EfiReleaseLock (&Global->RtcLock);\r
622 }\r
623 return EFI_DEVICE_ERROR;\r
624 }\r
625 //\r
626 // Read Register B, and inhibit updates of the RTC\r
627 //\r
628 RegisterB.Data = RtcRead (RTC_ADDRESS_REGISTER_B);\r
629\r
24115e44 630 RegisterB.Bits.Set = 1;\r
8cd4d17c 631 RtcWrite (RTC_ADDRESS_REGISTER_B, RegisterB.Data);\r
632\r
633 if (Enable) {\r
634 ConvertEfiTimeToRtcTime (&RtcTime, RegisterB, &Century);\r
635\r
636 //\r
637 // Set RTC alarm time\r
638 //\r
639 RtcWrite (RTC_ADDRESS_SECONDS_ALARM, RtcTime.Second);\r
640 RtcWrite (RTC_ADDRESS_MINUTES_ALARM, RtcTime.Minute);\r
641 RtcWrite (RTC_ADDRESS_HOURS_ALARM, RtcTime.Hour);\r
642\r
24115e44 643 RegisterB.Bits.Aie = 1;\r
8cd4d17c 644\r
645 } else {\r
24115e44 646 RegisterB.Bits.Aie = 0;\r
7018623c 647 //\r
648 // if the alarm is disable, record the current setting.\r
649 //\r
650 RtcTime.Second = RtcRead (RTC_ADDRESS_SECONDS_ALARM);\r
651 RtcTime.Minute = RtcRead (RTC_ADDRESS_MINUTES_ALARM);\r
652 RtcTime.Hour = RtcRead (RTC_ADDRESS_HOURS_ALARM);\r
653 RtcTime.Day = RtcRead (RTC_ADDRESS_DAY_OF_THE_MONTH);\r
654 RtcTime.Month = RtcRead (RTC_ADDRESS_MONTH);\r
655 RtcTime.Year = RtcRead (RTC_ADDRESS_YEAR);\r
656 RtcTime.TimeZone = Global->SavedTimeZone;\r
657 RtcTime.Daylight = Global->Daylight;\r
8cd4d17c 658 }\r
659 //\r
660 // Allow updates of the RTC registers\r
661 //\r
24115e44 662 RegisterB.Bits.Set = 0;\r
8cd4d17c 663 RtcWrite (RTC_ADDRESS_REGISTER_B, RegisterB.Data);\r
664\r
7018623c 665 //\r
666 // Set the Y/M/D info to variable as it has no corresponding hw registers.\r
667 //\r
668 Status = EfiSetVariable (\r
669 L"RTCALARM",\r
670 &gEfiCallerIdGuid,\r
671 EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_NON_VOLATILE,\r
672 sizeof (RtcTime),\r
673 &RtcTime\r
674 );\r
675 if (EFI_ERROR (Status)) {\r
676 return EFI_DEVICE_ERROR;\r
677 }\r
678\r
8cd4d17c 679 //\r
680 // Release RTC Lock.\r
681 //\r
8cd4d17c 682 if (!EfiAtRuntime ()) {\r
8d85dc31 683 EfiReleaseLock (&Global->RtcLock);\r
8cd4d17c 684 }\r
685 return EFI_SUCCESS;\r
686}\r
687\r
8cd4d17c 688\r
254ba247 689/**\r
690 Checks an 8-bit BCD value, and converts to an 8-bit value if valid.\r
691\r
692 This function checks the 8-bit BCD value specified by Value.\r
693 If valid, the function converts it to an 8-bit value and returns it.\r
694 Otherwise, return 0xff.\r
695\r
8d85dc31 696 @param Value The 8-bit BCD value to check and convert\r
254ba247 697\r
8d85dc31 698 @return The 8-bit value converted. Or 0xff if Value is invalid.\r
254ba247 699\r
700**/\r
701UINT8\r
702CheckAndConvertBcd8ToDecimal8 (\r
703 IN UINT8 Value\r
8cd4d17c 704 )\r
254ba247 705{\r
706 if ((Value < 0xa0) && ((Value & 0xf) < 0xa)) {\r
707 return BcdToDecimal8 (Value);\r
708 }\r
8cd4d17c 709\r
254ba247 710 return 0xff;\r
711}\r
8cd4d17c 712\r
254ba247 713/**\r
714 Converts time read from RTC to EFI_TIME format defined by UEFI spec.\r
8cd4d17c 715\r
254ba247 716 This function converts raw time data read from RTC to the EFI_TIME format\r
717 defined by UEFI spec.\r
718 If data mode of RTC is BCD, then converts it to decimal,\r
719 If RTC is in 12-hour format, then converts it to 24-hour format.\r
8cd4d17c 720\r
254ba247 721 @param Time On input, the time data read from RTC to convert\r
722 On output, the time converted to UEFI format\r
723 @param Century Value of century read from RTC.\r
724 @param RegisterB Value of Register B of RTC, indicating data mode\r
725 and hour format.\r
8cd4d17c 726\r
8d85dc31 727 @retval EFI_INVALID_PARAMETER Parameters passed in are invalid.\r
728 @retval EFI_SUCCESS Convert RTC time to EFI time successfully.\r
729\r
254ba247 730**/\r
731EFI_STATUS\r
732ConvertRtcTimeToEfiTime (\r
733 IN OUT EFI_TIME *Time,\r
734 IN UINT8 Century,\r
735 IN RTC_REGISTER_B RegisterB\r
736 )\r
8cd4d17c 737{\r
8d85dc31 738 BOOLEAN IsPM;\r
8cd4d17c 739\r
21176834 740 if ((Time->Hour & 0x80) != 0) {\r
8d85dc31 741 IsPM = TRUE;\r
8cd4d17c 742 } else {\r
8d85dc31 743 IsPM = FALSE;\r
8cd4d17c 744 }\r
745\r
746 Time->Hour = (UINT8) (Time->Hour & 0x7f);\r
747\r
24115e44 748 if (RegisterB.Bits.Dm == 0) {\r
254ba247 749 Time->Year = CheckAndConvertBcd8ToDecimal8 ((UINT8) Time->Year);\r
750 Time->Month = CheckAndConvertBcd8ToDecimal8 (Time->Month);\r
751 Time->Day = CheckAndConvertBcd8ToDecimal8 (Time->Day);\r
752 Time->Hour = CheckAndConvertBcd8ToDecimal8 (Time->Hour);\r
753 Time->Minute = CheckAndConvertBcd8ToDecimal8 (Time->Minute);\r
754 Time->Second = CheckAndConvertBcd8ToDecimal8 (Time->Second);\r
254ba247 755 }\r
42c65073 756 Century = CheckAndConvertBcd8ToDecimal8 (Century);\r
254ba247 757\r
758 if (Time->Year == 0xff || Time->Month == 0xff || Time->Day == 0xff ||\r
759 Time->Hour == 0xff || Time->Minute == 0xff || Time->Second == 0xff ||\r
760 Century == 0xff) {\r
761 return EFI_INVALID_PARAMETER;\r
8cd4d17c 762 }\r
254ba247 763\r
764 Time->Year = (UINT16) (Century * 100 + Time->Year);\r
765\r
8cd4d17c 766 //\r
767 // If time is in 12 hour format, convert it to 24 hour format\r
768 //\r
24115e44 769 if (RegisterB.Bits.Mil == 0) {\r
8d85dc31 770 if (IsPM && Time->Hour < 12) {\r
8cd4d17c 771 Time->Hour = (UINT8) (Time->Hour + 12);\r
772 }\r
773\r
8d85dc31 774 if (!IsPM && Time->Hour == 12) {\r
8cd4d17c 775 Time->Hour = 0;\r
776 }\r
777 }\r
778\r
779 Time->Nanosecond = 0;\r
254ba247 780\r
781 return EFI_SUCCESS;\r
8cd4d17c 782}\r
783\r
8d85dc31 784/**\r
785 Wait for a period for the RTC to be ready.\r
786\r
787 @param Timeout Tell how long it should take to wait.\r
788\r
789 @retval EFI_DEVICE_ERROR RTC device error.\r
790 @retval EFI_SUCCESS RTC is updated and ready. \r
791**/\r
8cd4d17c 792EFI_STATUS\r
793RtcWaitToUpdate (\r
794 UINTN Timeout\r
795 )\r
8cd4d17c 796{\r
797 RTC_REGISTER_A RegisterA;\r
798 RTC_REGISTER_D RegisterD;\r
799\r
800 //\r
801 // See if the RTC is functioning correctly\r
802 //\r
803 RegisterD.Data = RtcRead (RTC_ADDRESS_REGISTER_D);\r
804\r
24115e44 805 if (RegisterD.Bits.Vrt == 0) {\r
8cd4d17c 806 return EFI_DEVICE_ERROR;\r
807 }\r
808 //\r
809 // Wait for up to 0.1 seconds for the RTC to be ready.\r
810 //\r
811 Timeout = (Timeout / 10) + 1;\r
812 RegisterA.Data = RtcRead (RTC_ADDRESS_REGISTER_A);\r
24115e44 813 while (RegisterA.Bits.Uip == 1 && Timeout > 0) {\r
8cd4d17c 814 MicroSecondDelay (10);\r
815 RegisterA.Data = RtcRead (RTC_ADDRESS_REGISTER_A);\r
816 Timeout--;\r
817 }\r
818\r
819 RegisterD.Data = RtcRead (RTC_ADDRESS_REGISTER_D);\r
24115e44 820 if (Timeout == 0 || RegisterD.Bits.Vrt == 0) {\r
8cd4d17c 821 return EFI_DEVICE_ERROR;\r
822 }\r
823\r
824 return EFI_SUCCESS;\r
825}\r
826\r
8d85dc31 827/**\r
828 See if all fields of a variable of EFI_TIME type is correct.\r
829\r
830 @param Time The time to be checked.\r
831\r
832 @retval EFI_INVALID_PARAMETER Some fields of Time are not correct.\r
833 @retval EFI_SUCCESS Time is a valid EFI_TIME variable.\r
834\r
835**/\r
8cd4d17c 836EFI_STATUS\r
837RtcTimeFieldsValid (\r
838 IN EFI_TIME *Time\r
839 )\r
8cd4d17c 840{\r
841 if (Time->Year < 1998 ||\r
842 Time->Year > 2099 ||\r
843 Time->Month < 1 ||\r
844 Time->Month > 12 ||\r
6bfa178c 845 (!DayValid (Time)) ||\r
8cd4d17c 846 Time->Hour > 23 ||\r
847 Time->Minute > 59 ||\r
848 Time->Second > 59 ||\r
849 Time->Nanosecond > 999999999 ||\r
850 (!(Time->TimeZone == EFI_UNSPECIFIED_TIMEZONE || (Time->TimeZone >= -1440 && Time->TimeZone <= 1440))) ||\r
6bfa178c 851 ((Time->Daylight & (~(EFI_TIME_ADJUST_DAYLIGHT | EFI_TIME_IN_DAYLIGHT))) != 0)) {\r
852 return EFI_INVALID_PARAMETER;\r
8cd4d17c 853 }\r
854\r
855 return EFI_SUCCESS;\r
856}\r
857\r
8d85dc31 858/**\r
859 See if field Day of an EFI_TIME is correct.\r
860\r
861 @param Time Its Day field is to be checked.\r
862\r
863 @retval TRUE Day field of Time is correct.\r
864 @retval FALSE Day field of Time is NOT correct.\r
865**/\r
8cd4d17c 866BOOLEAN\r
867DayValid (\r
868 IN EFI_TIME *Time\r
869 )\r
8cd4d17c 870{\r
558bfebb 871 INTN DayOfMonth[12];\r
872\r
873 DayOfMonth[0] = 31;\r
874 DayOfMonth[1] = 29;\r
875 DayOfMonth[2] = 31;\r
876 DayOfMonth[3] = 30;\r
877 DayOfMonth[4] = 31;\r
878 DayOfMonth[5] = 30;\r
879 DayOfMonth[6] = 31;\r
880 DayOfMonth[7] = 31;\r
881 DayOfMonth[8] = 30;\r
882 DayOfMonth[9] = 31;\r
883 DayOfMonth[10] = 30;\r
884 DayOfMonth[11] = 31;\r
8cd4d17c 885\r
96a5ac5b 886 //\r
887 // The validity of Time->Month field should be checked before\r
888 //\r
889 ASSERT (Time->Month >=1);\r
890 ASSERT (Time->Month <=12);\r
8cd4d17c 891 if (Time->Day < 1 ||\r
892 Time->Day > DayOfMonth[Time->Month - 1] ||\r
893 (Time->Month == 2 && (!IsLeapYear (Time) && Time->Day > 28))\r
894 ) {\r
895 return FALSE;\r
896 }\r
897\r
898 return TRUE;\r
899}\r
900\r
8d85dc31 901/**\r
2d4117c0 902 Check if it is a leap year.\r
8d85dc31 903\r
904 @param Time The time to be checked.\r
905\r
2d4117c0 906 @retval TRUE It is a leap year.\r
907 @retval FALSE It is NOT a leap year.\r
8d85dc31 908**/\r
8cd4d17c 909BOOLEAN\r
910IsLeapYear (\r
911 IN EFI_TIME *Time\r
912 )\r
8cd4d17c 913{\r
914 if (Time->Year % 4 == 0) {\r
915 if (Time->Year % 100 == 0) {\r
916 if (Time->Year % 400 == 0) {\r
917 return TRUE;\r
918 } else {\r
919 return FALSE;\r
920 }\r
921 } else {\r
922 return TRUE;\r
923 }\r
924 } else {\r
925 return FALSE;\r
926 }\r
927}\r
928\r
8d85dc31 929/**\r
930 Converts time from EFI_TIME format defined by UEFI spec to RTC's.\r
8cd4d17c 931\r
8d85dc31 932 This function converts time from EFI_TIME format defined by UEFI spec to RTC's.\r
933 If data mode of RTC is BCD, then converts EFI_TIME to it.\r
934 If RTC is in 12-hour format, then converts EFI_TIME to it.\r
8cd4d17c 935\r
8d85dc31 936 @param Time On input, the time data read from UEFI to convert\r
937 On output, the time converted to RTC format\r
938 @param RegisterB Value of Register B of RTC, indicating data mode\r
939 @param Century It is set according to EFI_TIME Time.\r
8cd4d17c 940\r
8d85dc31 941**/\r
942VOID\r
943ConvertEfiTimeToRtcTime (\r
944 IN OUT EFI_TIME *Time,\r
945 IN RTC_REGISTER_B RegisterB,\r
946 OUT UINT8 *Century\r
947 )\r
8cd4d17c 948{\r
8d85dc31 949 BOOLEAN IsPM;\r
8cd4d17c 950\r
8d85dc31 951 IsPM = TRUE;\r
8cd4d17c 952 //\r
8d85dc31 953 // Adjust hour field if RTC is in 12 hour mode\r
8cd4d17c 954 //\r
24115e44 955 if (RegisterB.Bits.Mil == 0) {\r
8cd4d17c 956 if (Time->Hour < 12) {\r
8d85dc31 957 IsPM = FALSE;\r
8cd4d17c 958 }\r
959\r
960 if (Time->Hour >= 13) {\r
961 Time->Hour = (UINT8) (Time->Hour - 12);\r
962 } else if (Time->Hour == 0) {\r
963 Time->Hour = 12;\r
964 }\r
965 }\r
966 //\r
967 // Set the Time/Date/Daylight Savings values.\r
968 //\r
969 *Century = DecimalToBcd8 ((UINT8) (Time->Year / 100));\r
970\r
971 Time->Year = (UINT16) (Time->Year % 100);\r
972\r
24115e44 973 if (RegisterB.Bits.Dm == 0) {\r
8cd4d17c 974 Time->Year = DecimalToBcd8 ((UINT8) Time->Year);\r
975 Time->Month = DecimalToBcd8 (Time->Month);\r
976 Time->Day = DecimalToBcd8 (Time->Day);\r
977 Time->Hour = DecimalToBcd8 (Time->Hour);\r
978 Time->Minute = DecimalToBcd8 (Time->Minute);\r
979 Time->Second = DecimalToBcd8 (Time->Second);\r
980 }\r
981 //\r
982 // If we are in 12 hour mode and PM is set, then set bit 7 of the Hour field.\r
983 //\r
24115e44 984 if (RegisterB.Bits.Mil == 0 && IsPM) {\r
8cd4d17c 985 Time->Hour = (UINT8) (Time->Hour | 0x80);\r
986 }\r
987}\r
988\r
8d85dc31 989/**\r
990 Compare the Hour, Minute and Second of the From time and the To time.\r
991 \r
992 Only compare H/M/S in EFI_TIME and ignore other fields here.\r
993\r
994 @param From the first time\r
995 @param To the second time\r
996\r
997 @return >0 The H/M/S of the From time is later than those of To time\r
998 @return ==0 The H/M/S of the From time is same as those of To time\r
999 @return <0 The H/M/S of the From time is earlier than those of To time\r
1000**/\r
8cd4d17c 1001INTN\r
1002CompareHMS (\r
1003 IN EFI_TIME *From,\r
1004 IN EFI_TIME *To\r
1005 )\r
8cd4d17c 1006{\r
1007 if ((From->Hour > To->Hour) ||\r
1008 ((From->Hour == To->Hour) && (From->Minute > To->Minute)) ||\r
1009 ((From->Hour == To->Hour) && (From->Minute == To->Minute) && (From->Second > To->Second))) {\r
1010 return 1;\r
1011 } else if ((From->Hour == To->Hour) && (From->Minute == To->Minute) && (From->Second == To->Second)) {\r
1012 return 0;\r
1013 } else {\r
1014 return -1;\r
1015 }\r
1016}\r
1017\r
8d85dc31 1018/**\r
1019 To check if second date is later than first date within 24 hours.\r
1020\r
1021 @param From the first date\r
1022 @param To the second date\r
1023\r
1024 @retval TRUE From is previous to To within 24 hours.\r
1025 @retval FALSE From is later, or it is previous to To more than 24 hours.\r
1026**/\r
8cd4d17c 1027BOOLEAN\r
1028IsWithinOneDay (\r
1029 IN EFI_TIME *From,\r
1030 IN EFI_TIME *To\r
1031 )\r
8cd4d17c 1032{\r
558bfebb 1033 UINT8 DayOfMonth[12];\r
1f4cf7b1 1034 BOOLEAN Adjacent;\r
1035\r
558bfebb 1036 DayOfMonth[0] = 31;\r
1037 DayOfMonth[1] = 29;\r
1038 DayOfMonth[2] = 31;\r
1039 DayOfMonth[3] = 30;\r
1040 DayOfMonth[4] = 31;\r
1041 DayOfMonth[5] = 30;\r
1042 DayOfMonth[6] = 31;\r
1043 DayOfMonth[7] = 31;\r
1044 DayOfMonth[8] = 30;\r
1045 DayOfMonth[9] = 31;\r
1046 DayOfMonth[10] = 30;\r
1047 DayOfMonth[11] = 31;\r
1048\r
1f4cf7b1 1049 Adjacent = FALSE;\r
8cd4d17c 1050\r
96a5ac5b 1051 //\r
4cfc3293 1052 // The validity of From->Month field should be checked before\r
96a5ac5b 1053 //\r
1054 ASSERT (From->Month >=1);\r
1055 ASSERT (From->Month <=12);\r
1056 \r
8cd4d17c 1057 if (From->Year == To->Year) {\r
1058 if (From->Month == To->Month) {\r
1059 if ((From->Day + 1) == To->Day) {\r
1060 if ((CompareHMS(From, To) >= 0)) {\r
1061 Adjacent = TRUE;\r
1062 }\r
1063 } else if (From->Day == To->Day) {\r
1064 if ((CompareHMS(From, To) <= 0)) {\r
1065 Adjacent = TRUE;\r
1066 }\r
1067 }\r
1068 } else if (((From->Month + 1) == To->Month) && (To->Day == 1)) {\r
1069 if ((From->Month == 2) && !IsLeapYear(From)) {\r
1070 if (From->Day == 28) {\r
1071 if ((CompareHMS(From, To) >= 0)) {\r
1072 Adjacent = TRUE;\r
1073 }\r
1074 }\r
1075 } else if (From->Day == DayOfMonth[From->Month - 1]) {\r
1076 if ((CompareHMS(From, To) >= 0)) {\r
1077 Adjacent = TRUE;\r
1078 }\r
1079 }\r
1080 }\r
1081 } else if (((From->Year + 1) == To->Year) &&\r
1082 (From->Month == 12) &&\r
1083 (From->Day == 31) &&\r
1084 (To->Month == 1) &&\r
1085 (To->Day == 1)) {\r
1086 if ((CompareHMS(From, To) >= 0)) {\r
1087 Adjacent = TRUE;\r
1088 }\r
1089 }\r
1090\r
1091 return Adjacent;\r
1092}\r
1093\r