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1 /** @file
2
3 The definition of CFormPkg's member function
4
5 Copyright (c) 2004 - 2011, Intel Corporation. All rights reserved.<BR>
6 This program and the accompanying materials
7 are licensed and made available under the terms and conditions of the BSD License
8 which accompanies this distribution. The full text of the license may be found at
9 http://opensource.org/licenses/bsd-license.php
10
11 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
12 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
13
14 **/
15
16 #ifndef _EFIIFRCLASS_H_
17 #define _EFIIFRCLASS_H_
18
19 #include "string.h"
20 #include "EfiVfr.h"
21 #include "VfrError.h"
22 #include "VfrUtilityLib.h"
23
24 #define NO_QST_REFED "no question refered"
25
26 struct PACKAGE_DATA {
27 CHAR8 *Buffer;
28 UINT32 Size;
29 };
30
31 /*
32 * The functions below are used for flags setting
33 */
34 static inline BOOLEAN _FLAGS_ZERO (
35 IN UINT8 &Flags
36 )
37 {
38 return Flags == 0;
39 }
40
41 static inline VOID _FLAG_CLEAR (
42 IN UINT8 &Flags,
43 IN UINT8 Mask
44 )
45 {
46 Flags &= (~Mask);
47 }
48
49 static inline UINT8 _FLAG_TEST_AND_CLEAR (
50 IN UINT8 &Flags,
51 IN UINT8 Mask
52 )
53 {
54 UINT8 Ret = Flags & Mask;
55 Flags &= (~Mask);
56 return Ret;
57 }
58
59 static inline UINT8 _IS_EQUAL (
60 IN UINT8 &Flags,
61 IN UINT8 Value
62 )
63 {
64 return Flags == Value;
65 }
66
67 /*
68 * The definition of CIfrBin
69 */
70 typedef enum {
71 PENDING,
72 ASSIGNED
73 } ASSIGN_FLAG;
74
75 struct SPendingAssign {
76 CHAR8 *mKey; // key ! unique
77 VOID *mAddr;
78 UINT32 mLen;
79 ASSIGN_FLAG mFlag;
80 UINT32 mLineNo;
81 CHAR8 *mMsg;
82 struct SPendingAssign *mNext;
83
84 SPendingAssign (IN CHAR8 *, IN VOID *, IN UINT32, IN UINT32, IN CONST CHAR8 *);
85 ~SPendingAssign ();
86
87 VOID SetAddrAndLen (IN VOID *, IN UINT32);
88 VOID AssignValue (IN VOID *, IN UINT32);
89 CHAR8 * GetKey (VOID);
90 };
91
92 struct SBufferNode {
93 CHAR8 *mBufferStart;
94 CHAR8 *mBufferEnd;
95 CHAR8 *mBufferFree;
96 struct SBufferNode *mNext;
97 };
98
99 typedef struct {
100 BOOLEAN CompatibleMode;
101 EFI_GUID *OverrideClassGuid;
102 } INPUT_INFO_TO_SYNTAX;
103
104 class CFormPkg {
105 private:
106 UINT32 mBufferSize;
107 SBufferNode *mBufferNodeQueueHead;
108 SBufferNode *mBufferNodeQueueTail;
109 SBufferNode *mCurrBufferNode;
110
111 SBufferNode *mReadBufferNode;
112 UINT32 mReadBufferOffset;
113
114 UINT32 mPkgLength;
115
116 VOID _WRITE_PKG_LINE (IN FILE *, IN UINT32 , IN CONST CHAR8 *, IN CHAR8 *, IN UINT32);
117 VOID _WRITE_PKG_END (IN FILE *, IN UINT32 , IN CONST CHAR8 *, IN CHAR8 *, IN UINT32);
118
119 private:
120 SPendingAssign *PendingAssignList;
121
122 public:
123 CFormPkg (IN UINT32 BufferSize);
124 ~CFormPkg ();
125
126 CHAR8 * IfrBinBufferGet (IN UINT32);
127 inline UINT32 GetPkgLength (VOID);
128
129 VOID Open ();
130 UINT32 Read (IN CHAR8 *, IN UINT32);
131 VOID Close ();
132
133 EFI_VFR_RETURN_CODE BuildPkgHdr (OUT EFI_HII_PACKAGE_HEADER **);
134 EFI_VFR_RETURN_CODE BuildPkg (IN FILE *, IN PACKAGE_DATA *PkgData = NULL);
135 EFI_VFR_RETURN_CODE BuildPkg (OUT PACKAGE_DATA &);
136 EFI_VFR_RETURN_CODE GenCFile (IN CHAR8 *, IN FILE *, IN PACKAGE_DATA *PkgData = NULL);
137
138 public:
139 EFI_VFR_RETURN_CODE AssignPending (IN CHAR8 *, IN VOID *, IN UINT32, IN UINT32, IN CONST CHAR8 *Msg = NULL);
140 VOID DoPendingAssign (IN CHAR8 *, IN VOID *, IN UINT32);
141 bool HavePendingUnassigned (VOID);
142 VOID PendingAssignPrintAll (VOID);
143 EFI_VFR_RETURN_CODE DeclarePendingQuestion (
144 IN CVfrVarDataTypeDB &lCVfrVarDataTypeDB,
145 IN CVfrDataStorage &lCVfrDataStorage,
146 IN CVfrQuestionDB &lCVfrQuestionDB,
147 IN EFI_GUID *LocalFormSetGuid,
148 IN UINT32 LineNo
149 );
150 };
151
152 extern CFormPkg gCFormPkg;
153 extern CVfrStringDB gCVfrStringDB;
154
155 struct SIfrRecord {
156 UINT32 mLineNo;
157 CHAR8 *mIfrBinBuf;
158 UINT8 mBinBufLen;
159 UINT32 mOffset;
160 SIfrRecord *mNext;
161
162 SIfrRecord (VOID);
163 ~SIfrRecord (VOID);
164 };
165
166 #define EFI_IFR_RECORDINFO_IDX_INVALUD 0xFFFFFF
167 #define EFI_IFR_RECORDINFO_IDX_START 0x0
168
169 class CIfrRecordInfoDB {
170 private:
171 bool mSwitch;
172 UINT32 mRecordCount;
173 SIfrRecord *mIfrRecordListHead;
174 SIfrRecord *mIfrRecordListTail;
175
176 SIfrRecord * GetRecordInfoFromIdx (IN UINT32);
177 BOOLEAN CheckQuestionOpCode (IN UINT8);
178 BOOLEAN CheckIdOpCode (IN UINT8);
179 EFI_QUESTION_ID GetOpcodeQuestionId (IN EFI_IFR_OP_HEADER *);
180 public:
181 CIfrRecordInfoDB (VOID);
182 ~CIfrRecordInfoDB (VOID);
183
184 inline VOID TurnOn (VOID) {
185 mSwitch = TRUE;
186 }
187
188 inline VOID TurnOff (VOID) {
189 mSwitch = FALSE;
190 }
191
192 UINT32 IfrRecordRegister (IN UINT32, IN CHAR8 *, IN UINT8, IN UINT32);
193 VOID IfrRecordInfoUpdate (IN UINT32, IN UINT32, IN CHAR8*, IN UINT8, IN UINT32);
194 VOID IfrRecordOutput (IN FILE *, IN UINT32 LineNo);
195 VOID IfrRecordOutput (OUT PACKAGE_DATA &);
196 EFI_VFR_RETURN_CODE IfrRecordAdjust (VOID);
197 };
198
199 extern CIfrRecordInfoDB gCIfrRecordInfoDB;
200
201 /*
202 * The definition of CIfrObj
203 */
204 extern BOOLEAN gCreateOp;
205
206 class CIfrObj {
207 private:
208 BOOLEAN mDelayEmit;
209
210 CHAR8 *mObjBinBuf;
211 UINT8 mObjBinLen;
212 UINT32 mLineNo;
213 UINT32 mRecordIdx;
214 UINT32 mPkgOffset;
215
216 public:
217 CIfrObj (IN UINT8 OpCode, OUT CHAR8 **IfrObj = NULL, IN UINT8 ObjBinLen = 0, IN BOOLEAN DelayEmit = FALSE);
218 virtual ~CIfrObj(VOID);
219
220 VOID _EMIT_PENDING_OBJ (VOID);
221
222 inline VOID SetLineNo (IN UINT32 LineNo) {
223 mLineNo = LineNo;
224 }
225
226 inline CHAR8 * GetObjBinAddr (VOID) {
227 return mObjBinBuf;
228 }
229
230 inline UINT8 GetObjBinLen (VOID) {
231 return mObjBinLen;
232 }
233
234 inline bool ExpendObjBin (IN UINT8 Size) {
235 if ((mDelayEmit == TRUE) && ((mObjBinLen + Size) > mObjBinLen)) {
236 mObjBinLen = mObjBinLen + Size;
237 return TRUE;
238 } else {
239 return FALSE;
240 }
241 }
242
243 inline bool ShrinkObjBin (IN UINT8 Size) {
244 if ((mDelayEmit == TRUE) && (mObjBinLen > Size)) {
245 mObjBinLen -= Size;
246 return TRUE;
247 } else {
248 return FALSE;
249 }
250 }
251 };
252
253 /*
254 * The definition of CIfrOpHeader
255 */
256 class CIfrOpHeader {
257 private:
258 EFI_IFR_OP_HEADER *mHeader;
259
260 public:
261 CIfrOpHeader (IN UINT8 OpCode, IN VOID *StartAddr, IN UINT8 Length = 0);
262 CIfrOpHeader (IN CIfrOpHeader &);
263
264 VOID IncLength (UINT8 Size) {
265 if ((mHeader->Length + Size) > mHeader->Length) {
266 mHeader->Length = mHeader->Length + Size;
267 }
268 }
269
270 VOID DecLength (UINT8 Size) {
271 if (mHeader->Length >= Size) {
272 mHeader->Length -= Size;
273 }
274 }
275
276 UINT8 GetLength () {
277 return mHeader->Length;
278 }
279
280 UINT8 GetScope () {
281 return mHeader->Scope;
282 }
283
284 VOID SetScope (IN UINT8 Scope) {
285 mHeader->Scope = Scope;
286 }
287
288 VOID UpdateHeader (IN EFI_IFR_OP_HEADER *Header) {
289 mHeader = Header;
290 }
291 };
292
293 extern UINT8 gScopeCount;
294
295 /*
296 * The definition of CIfrStatementHeader
297 */
298 class CIfrStatementHeader {
299 private:
300 EFI_IFR_STATEMENT_HEADER *mHeader;
301
302 public:
303 CIfrStatementHeader (
304 IN EFI_IFR_STATEMENT_HEADER *StartAddr
305 ) : mHeader ((EFI_IFR_STATEMENT_HEADER *)StartAddr) {
306 mHeader = StartAddr;
307 mHeader->Help = EFI_STRING_ID_INVALID;
308 mHeader->Prompt = EFI_STRING_ID_INVALID;
309 }
310
311 EFI_IFR_STATEMENT_HEADER *GetStatementHeader () {
312 return mHeader;
313 }
314
315 VOID SetPrompt (IN EFI_STRING_ID Prompt) {
316 mHeader->Prompt = Prompt;
317 }
318
319 VOID SetHelp (IN EFI_STRING_ID Help) {
320 mHeader->Help = Help;
321 }
322 };
323
324 /*
325 * The definition of CIfrQuestionHeader
326 */
327 #define EFI_IFR_QUESTION_FLAG_DEFAULT 0
328
329 class CIfrQuestionHeader : public CIfrStatementHeader {
330 private:
331 EFI_IFR_QUESTION_HEADER *mHeader;
332
333 EFI_IFR_STATEMENT_HEADER * QH2SH (EFI_IFR_QUESTION_HEADER *Qheader) {
334 return &(Qheader)->Header;
335 }
336
337 public:
338 EFI_QUESTION_ID QUESTION_ID (VOID) {
339 return mHeader->QuestionId;
340 }
341
342 EFI_VARSTORE_ID VARSTORE_ID (VOID) {
343 return mHeader->VarStoreId;
344 }
345
346 VOID VARSTORE_INFO (OUT EFI_VARSTORE_INFO *Info) {
347 if (Info != NULL) {
348 Info->mVarStoreId = mHeader->VarStoreId;
349 memcpy (&Info->mVarStoreId, &mHeader->VarStoreInfo, sizeof (Info->mVarStoreId));
350 }
351 }
352
353 UINT8 FLAGS (VOID) {
354 return mHeader->Flags;
355 }
356
357 public:
358 CIfrQuestionHeader (
359 IN EFI_IFR_QUESTION_HEADER *StartAddr,
360 IN UINT8 Flags = EFI_IFR_QUESTION_FLAG_DEFAULT
361 ) : CIfrStatementHeader (QH2SH(StartAddr)) {
362 mHeader = StartAddr;
363 mHeader->QuestionId = EFI_QUESTION_ID_INVALID;
364 mHeader->VarStoreId = EFI_VARSTORE_ID_INVALID;
365 mHeader->VarStoreInfo.VarName = EFI_STRING_ID_INVALID;
366 mHeader->VarStoreInfo.VarOffset = EFI_VAROFFSET_INVALID;
367 mHeader->Flags = Flags;
368 }
369
370 VOID SetQuestionId (IN EFI_QUESTION_ID QuestionId) {
371 mHeader->QuestionId = QuestionId;
372 }
373
374 VOID SetVarStoreInfo (IN EFI_VARSTORE_INFO *Info) {
375 mHeader->VarStoreId = Info->mVarStoreId;
376 mHeader->VarStoreInfo.VarName = Info->mInfo.mVarName;
377 mHeader->VarStoreInfo.VarOffset = Info->mInfo.mVarOffset;
378 }
379
380 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 Flags) {
381 if (_FLAG_TEST_AND_CLEAR (Flags, EFI_IFR_FLAG_READ_ONLY)) {
382 mHeader->Flags |= EFI_IFR_FLAG_READ_ONLY;
383 }
384
385 _FLAG_CLEAR (Flags, 0x02);
386
387 if (_FLAG_TEST_AND_CLEAR (Flags, EFI_IFR_FLAG_CALLBACK)) {
388 mHeader->Flags |= EFI_IFR_FLAG_CALLBACK;
389 }
390
391 //
392 // ignore NVAccessFlag
393 //
394 _FLAG_CLEAR (Flags, 0x08);
395
396 if (_FLAG_TEST_AND_CLEAR (Flags, EFI_IFR_FLAG_RESET_REQUIRED)) {
397 mHeader->Flags |= EFI_IFR_FLAG_RESET_REQUIRED;
398 }
399
400 //
401 // Set LateCheck Flag to compatible for framework flag
402 // but it uses 0x20 as its flag, if in the future UEFI may take this flag
403 //
404 if (_FLAG_TEST_AND_CLEAR (Flags, 0x20)) {
405 mHeader->Flags |= 0x20;
406 }
407
408 if (_FLAG_TEST_AND_CLEAR (Flags, EFI_IFR_FLAG_OPTIONS_ONLY)) {
409 mHeader->Flags |= EFI_IFR_FLAG_OPTIONS_ONLY;
410 }
411
412 return _FLAGS_ZERO (Flags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
413 }
414 };
415
416 /*
417 * The definition of CIfrMinMaxStepData
418 */
419 class CIfrMinMaxStepData {
420 private:
421 MINMAXSTEP_DATA *mMinMaxStepData;
422 BOOLEAN ValueIsSet;
423 BOOLEAN IsNumeric;
424
425 public:
426 CIfrMinMaxStepData (MINMAXSTEP_DATA *DataAddr, BOOLEAN NumericOpcode=FALSE) : mMinMaxStepData (DataAddr) {
427 mMinMaxStepData->u64.MinValue = 0;
428 mMinMaxStepData->u64.MaxValue = 0;
429 mMinMaxStepData->u64.Step = 0;
430 ValueIsSet = FALSE;
431 IsNumeric = NumericOpcode;
432 }
433
434 VOID SetMinMaxStepData (IN UINT64 MinValue, IN UINT64 MaxValue, IN UINT64 Step) {
435 if (!ValueIsSet) {
436 mMinMaxStepData->u64.MinValue = MinValue;
437 mMinMaxStepData->u64.MaxValue = MaxValue;
438 ValueIsSet = TRUE;
439 } else {
440 if (MinValue < mMinMaxStepData->u64.MinValue) {
441 mMinMaxStepData->u64.MinValue = MinValue;
442 }
443 if (MaxValue > mMinMaxStepData->u64.MaxValue) {
444 mMinMaxStepData->u64.MaxValue = MaxValue;
445 }
446 }
447 mMinMaxStepData->u64.Step = Step;
448 }
449
450 VOID SetMinMaxStepData (IN UINT32 MinValue, IN UINT32 MaxValue, IN UINT32 Step) {
451 if (!ValueIsSet) {
452 mMinMaxStepData->u32.MinValue = MinValue;
453 mMinMaxStepData->u32.MaxValue = MaxValue;
454 ValueIsSet = TRUE;
455 } else {
456 if (MinValue < mMinMaxStepData->u32.MinValue) {
457 mMinMaxStepData->u32.MinValue = MinValue;
458 }
459 if (MaxValue > mMinMaxStepData->u32.MaxValue) {
460 mMinMaxStepData->u32.MaxValue = MaxValue;
461 }
462 }
463 mMinMaxStepData->u32.Step = Step;
464 }
465
466 VOID SetMinMaxStepData (IN UINT16 MinValue, IN UINT16 MaxValue, IN UINT16 Step) {
467 if (!ValueIsSet) {
468 mMinMaxStepData->u16.MinValue = MinValue;
469 mMinMaxStepData->u16.MaxValue = MaxValue;
470 ValueIsSet = TRUE;
471 } else {
472 if (MinValue < mMinMaxStepData->u16.MinValue) {
473 mMinMaxStepData->u16.MinValue = MinValue;
474 }
475 if (MaxValue > mMinMaxStepData->u16.MaxValue) {
476 mMinMaxStepData->u16.MaxValue = MaxValue;
477 }
478 }
479 mMinMaxStepData->u16.Step = Step;
480 }
481
482 VOID SetMinMaxStepData (IN UINT8 MinValue, IN UINT8 MaxValue, IN UINT8 Step) {
483 if (!ValueIsSet) {
484 mMinMaxStepData->u8.MinValue = MinValue;
485 mMinMaxStepData->u8.MaxValue = MaxValue;
486 ValueIsSet = TRUE;
487 } else {
488 if (MinValue < mMinMaxStepData->u8.MinValue) {
489 mMinMaxStepData->u8.MinValue = MinValue;
490 }
491 if (MaxValue > mMinMaxStepData->u8.MaxValue) {
492 mMinMaxStepData->u8.MaxValue = MaxValue;
493 }
494 }
495 mMinMaxStepData->u8.Step = Step;
496 }
497
498 UINT64 GetMinData (UINT8 VarType) {
499 UINT64 MinValue = 0;
500 switch (VarType) {
501 case EFI_IFR_TYPE_NUM_SIZE_64:
502 MinValue = mMinMaxStepData->u64.MinValue;
503 break;
504 case EFI_IFR_TYPE_NUM_SIZE_32:
505 MinValue = (UINT64) mMinMaxStepData->u32.MinValue;
506 break;
507 case EFI_IFR_TYPE_NUM_SIZE_16:
508 MinValue = (UINT64) mMinMaxStepData->u16.MinValue;
509 break;
510 case EFI_IFR_TYPE_NUM_SIZE_8:
511 MinValue = (UINT64) mMinMaxStepData->u8.MinValue;
512 break;
513 default:
514 break;
515 }
516 return MinValue;
517 }
518
519 UINT64 GetMaxData (UINT8 VarType) {
520 UINT64 MaxValue = 0;
521 switch (VarType) {
522 case EFI_IFR_TYPE_NUM_SIZE_64:
523 MaxValue = mMinMaxStepData->u64.MaxValue;
524 break;
525 case EFI_IFR_TYPE_NUM_SIZE_32:
526 MaxValue = (UINT64) mMinMaxStepData->u32.MaxValue;
527 break;
528 case EFI_IFR_TYPE_NUM_SIZE_16:
529 MaxValue = (UINT64) mMinMaxStepData->u16.MaxValue;
530 break;
531 case EFI_IFR_TYPE_NUM_SIZE_8:
532 MaxValue = (UINT64) mMinMaxStepData->u8.MaxValue;
533 break;
534 default:
535 break;
536 }
537 return MaxValue;
538 }
539
540 UINT64 GetStepData (UINT8 VarType) {
541 UINT64 MaxValue = 0;
542 switch (VarType) {
543 case EFI_IFR_TYPE_NUM_SIZE_64:
544 MaxValue = mMinMaxStepData->u64.Step;
545 break;
546 case EFI_IFR_TYPE_NUM_SIZE_32:
547 MaxValue = (UINT64) mMinMaxStepData->u32.Step;
548 break;
549 case EFI_IFR_TYPE_NUM_SIZE_16:
550 MaxValue = (UINT64) mMinMaxStepData->u16.Step;
551 break;
552 case EFI_IFR_TYPE_NUM_SIZE_8:
553 MaxValue = (UINT64) mMinMaxStepData->u8.Step;
554 break;
555 default:
556 break;
557 }
558 return MaxValue;
559 }
560
561 BOOLEAN IsNumericOpcode () {
562 return IsNumeric;
563 }
564 };
565
566 static CIfrQuestionHeader *gCurrentQuestion = NULL;
567 static CIfrMinMaxStepData *gCurrentMinMaxData = NULL;
568
569 /*
570 * The definition of all of the UEFI IFR Objects
571 */
572 class CIfrFormSet : public CIfrObj, public CIfrOpHeader {
573 private:
574 EFI_IFR_FORM_SET *mFormSet;
575 EFI_GUID *mClassGuid;
576
577 public:
578 CIfrFormSet (UINT8 Size) : CIfrObj (EFI_IFR_FORM_SET_OP, (CHAR8 **)&mFormSet, Size),
579 CIfrOpHeader (EFI_IFR_FORM_SET_OP, &mFormSet->Header, Size) {
580 mFormSet->Help = EFI_STRING_ID_INVALID;
581 mFormSet->FormSetTitle = EFI_STRING_ID_INVALID;
582 mFormSet->Flags = 0;
583 memset (&mFormSet->Guid, 0, sizeof (EFI_GUID));
584 mClassGuid = (EFI_GUID *) (mFormSet + 1);
585 }
586
587 VOID SetGuid (IN EFI_GUID *Guid) {
588 memcpy (&mFormSet->Guid, Guid, sizeof (EFI_GUID));
589 }
590
591 VOID SetFormSetTitle (IN EFI_STRING_ID FormSetTitle) {
592 mFormSet->FormSetTitle = FormSetTitle;
593 }
594
595 VOID SetHelp (IN EFI_STRING_ID Help) {
596 mFormSet->Help = Help;
597 }
598
599 VOID SetClassGuid (IN EFI_GUID *Guid) {
600 memcpy (&(mClassGuid[mFormSet->Flags++]), Guid, sizeof (EFI_GUID));
601 }
602
603 UINT8 GetFlags() {
604 return mFormSet->Flags;
605 }
606 };
607
608 class CIfrEnd : public CIfrObj, public CIfrOpHeader {
609 private:
610 EFI_IFR_END *mEnd;
611
612 public:
613 CIfrEnd () : CIfrObj (EFI_IFR_END_OP, (CHAR8 **)&mEnd),
614 CIfrOpHeader (EFI_IFR_END_OP, &mEnd->Header) {}
615 };
616
617 class CIfrDefaultStore : public CIfrObj, public CIfrOpHeader {
618 private:
619 EFI_IFR_DEFAULTSTORE *mDefaultStore;
620
621 public:
622 CIfrDefaultStore () : CIfrObj (EFI_IFR_DEFAULTSTORE_OP, (CHAR8 **)&mDefaultStore),
623 CIfrOpHeader (EFI_IFR_DEFAULTSTORE_OP, &mDefaultStore->Header) {
624 mDefaultStore->DefaultId = EFI_VARSTORE_ID_INVALID;
625 mDefaultStore->DefaultName = EFI_STRING_ID_INVALID;
626 }
627
628 VOID SetDefaultName (IN EFI_STRING_ID DefaultName) {
629 mDefaultStore->DefaultName = DefaultName;
630 }
631
632 VOID SetDefaultId (IN UINT16 DefaultId) {
633 mDefaultStore->DefaultId = DefaultId;
634 }
635 };
636
637 #define EFI_FORM_ID_MAX 0xFFFF
638 #define EFI_FREE_FORM_ID_BITMAP_SIZE ((EFI_FORM_ID_MAX + 1) / EFI_BITS_PER_UINT32)
639
640 class CIfrFormId {
641 public:
642 STATIC UINT32 FormIdBitMap[EFI_FREE_FORM_ID_BITMAP_SIZE];
643
644 STATIC BOOLEAN ChekFormIdFree (IN EFI_FORM_ID FormId) {
645 UINT32 Index = (FormId / EFI_BITS_PER_UINT32);
646 UINT32 Offset = (FormId % EFI_BITS_PER_UINT32);
647
648 return (FormIdBitMap[Index] & (0x80000000 >> Offset)) == 0;
649 }
650
651 STATIC VOID MarkFormIdUsed (IN EFI_FORM_ID FormId) {
652 UINT32 Index = (FormId / EFI_BITS_PER_UINT32);
653 UINT32 Offset = (FormId % EFI_BITS_PER_UINT32);
654
655 FormIdBitMap[Index] |= (0x80000000 >> Offset);
656 }
657 };
658
659 class CIfrForm : public CIfrObj, public CIfrOpHeader {
660 private:
661 EFI_IFR_FORM *mForm;
662
663 public:
664 CIfrForm () : CIfrObj (EFI_IFR_FORM_OP, (CHAR8 **)&mForm),
665 CIfrOpHeader (EFI_IFR_FORM_OP, &mForm->Header) {
666 mForm->FormId = 0;
667 mForm->FormTitle = EFI_STRING_ID_INVALID;
668 }
669
670 EFI_VFR_RETURN_CODE SetFormId (IN EFI_FORM_ID FormId) {
671 if (FormId == 0) {
672 //
673 // FormId can't be 0.
674 //
675 return VFR_RETURN_INVALID_PARAMETER;
676 }
677 if (CIfrFormId::ChekFormIdFree (FormId) == FALSE) {
678 return VFR_RETURN_FORMID_REDEFINED;
679 }
680 mForm->FormId = FormId;
681 CIfrFormId::MarkFormIdUsed (FormId);
682 return VFR_RETURN_SUCCESS;
683 }
684
685 VOID SetFormTitle (IN EFI_STRING_ID FormTitle) {
686 mForm->FormTitle = FormTitle;
687 }
688 };
689
690 class CIfrFormMap : public CIfrObj, public CIfrOpHeader {
691 private:
692 EFI_IFR_FORM_MAP *mFormMap;
693 EFI_IFR_FORM_MAP_METHOD *mMethodMap;
694
695 public:
696 CIfrFormMap () : CIfrObj (EFI_IFR_FORM_MAP_OP, (CHAR8 **)&mFormMap, sizeof (EFI_IFR_FORM_MAP), TRUE),
697 CIfrOpHeader (EFI_IFR_FORM_MAP_OP, &mFormMap->Header) {
698 mFormMap->FormId = 0;
699 mMethodMap = (EFI_IFR_FORM_MAP_METHOD *) (mFormMap + 1);
700 }
701
702 EFI_VFR_RETURN_CODE SetFormId (IN EFI_FORM_ID FormId) {
703 if (FormId == 0) {
704 //
705 // FormId can't be 0.
706 //
707 return VFR_RETURN_INVALID_PARAMETER;
708 }
709 if (CIfrFormId::ChekFormIdFree (FormId) == FALSE) {
710 return VFR_RETURN_FORMID_REDEFINED;
711 }
712 mFormMap->FormId = FormId;
713 CIfrFormId::MarkFormIdUsed (FormId);
714 return VFR_RETURN_SUCCESS;
715 }
716
717 VOID SetFormMapMethod (IN EFI_STRING_ID MethodTitle, IN EFI_GUID *MethodGuid) {
718 if (ExpendObjBin (sizeof (EFI_IFR_FORM_MAP_METHOD))) {
719 IncLength (sizeof (EFI_IFR_FORM_MAP_METHOD));
720
721 mMethodMap->MethodTitle = MethodTitle;
722 memcpy (&(mMethodMap->MethodIdentifier), MethodGuid, sizeof (EFI_GUID));
723 mMethodMap ++;
724 }
725 }
726 };
727
728 class CIfrVarStore : public CIfrObj, public CIfrOpHeader {
729 private:
730 EFI_IFR_VARSTORE *mVarStore;
731
732 public:
733 CIfrVarStore () : CIfrObj (EFI_IFR_VARSTORE_OP, (CHAR8 **)&mVarStore, sizeof (EFI_IFR_VARSTORE), TRUE),
734 CIfrOpHeader (EFI_IFR_VARSTORE_OP, &mVarStore->Header) {
735 mVarStore->VarStoreId = EFI_VARSTORE_ID_INVALID;
736 mVarStore->Size = 0;
737 memset (&mVarStore->Guid, 0, sizeof (EFI_GUID));
738 mVarStore->Name[0] = '\0';
739 }
740
741 VOID SetGuid (IN EFI_GUID *Guid) {
742 memcpy (&mVarStore->Guid, Guid, sizeof (EFI_GUID));
743 }
744
745 VOID SetVarStoreId (IN EFI_VARSTORE_ID VarStoreId) {
746 mVarStore->VarStoreId = VarStoreId;
747 }
748
749 VOID SetSize (IN UINT16 Size) {
750 mVarStore->Size = Size;
751 }
752
753 VOID SetName (IN CHAR8 *Name) {
754 UINT8 Len;
755
756 if (Name != NULL) {
757 Len = (UINT8) strlen (Name);
758 if (Len != 0) {
759 if (ExpendObjBin (Len) == TRUE) {
760 IncLength (Len);
761 strcpy ((CHAR8 *)(mVarStore->Name), Name);
762 }
763 }
764 }
765 }
766 };
767
768 class CIfrVarStoreEfi : public CIfrObj, public CIfrOpHeader {
769 private:
770 EFI_IFR_VARSTORE_EFI *mVarStoreEfi;
771
772 public:
773 CIfrVarStoreEfi () : CIfrObj (EFI_IFR_VARSTORE_EFI_OP, (CHAR8 **)&mVarStoreEfi, sizeof (EFI_IFR_VARSTORE_EFI), TRUE),
774 CIfrOpHeader (EFI_IFR_VARSTORE_EFI_OP, &mVarStoreEfi->Header) {
775 mVarStoreEfi->VarStoreId = EFI_VAROFFSET_INVALID;
776 mVarStoreEfi->Size = 0;
777 memset (&mVarStoreEfi->Guid, 0, sizeof (EFI_GUID));
778 mVarStoreEfi->Name[0] = '\0';
779 }
780
781 VOID SetGuid (IN EFI_GUID *Guid) {
782 memcpy (&mVarStoreEfi->Guid, Guid, sizeof (EFI_GUID));
783 }
784
785 VOID SetVarStoreId (IN UINT16 VarStoreId) {
786 mVarStoreEfi->VarStoreId = VarStoreId;
787 }
788
789 VOID SetAttributes (IN UINT32 Attributes) {
790 mVarStoreEfi->Attributes = Attributes;
791 }
792 VOID SetSize (IN UINT16 Size) {
793 mVarStoreEfi->Size = Size;
794 }
795
796 VOID SetName (IN CHAR8 *Name) {
797 UINT8 Len;
798
799 if (Name != NULL) {
800 Len = (UINT8) strlen (Name);
801 if (Len != 0) {
802 if (ExpendObjBin (Len) == TRUE) {
803 IncLength (Len);
804 strcpy ((CHAR8 *)(mVarStoreEfi->Name), Name);
805 }
806 }
807 }
808 }
809
810 VOID SetBinaryLength (IN UINT16 Size) {
811 UINT16 Len;
812
813 Len = sizeof (EFI_IFR_VARSTORE_EFI);
814 if (Size > Len) {
815 ExpendObjBin(Size - Len);
816 IncLength(Size - Len);
817 } else {
818 ShrinkObjBin(Len - Size);
819 DecLength(Len - Size);
820 }
821 }
822 };
823
824 class CIfrVarStoreNameValue : public CIfrObj, public CIfrOpHeader {
825 private:
826 EFI_IFR_VARSTORE_NAME_VALUE *mVarStoreNameValue;
827
828 public:
829 CIfrVarStoreNameValue () : CIfrObj (EFI_IFR_VARSTORE_NAME_VALUE_OP, (CHAR8 **)&mVarStoreNameValue),
830 CIfrOpHeader (EFI_IFR_VARSTORE_NAME_VALUE_OP, &mVarStoreNameValue->Header) {
831 mVarStoreNameValue->VarStoreId = EFI_VAROFFSET_INVALID;
832 memset (&mVarStoreNameValue->Guid, 0, sizeof (EFI_GUID));
833 }
834
835 VOID SetGuid (IN EFI_GUID *Guid) {
836 memcpy (&mVarStoreNameValue->Guid, Guid, sizeof (EFI_GUID));
837 }
838
839 VOID SetVarStoreId (IN UINT16 VarStoreId) {
840 mVarStoreNameValue->VarStoreId = VarStoreId;
841 }
842 };
843
844 class CIfrImage : public CIfrObj, public CIfrOpHeader {
845 private:
846 EFI_IFR_IMAGE *mImage;
847
848 public:
849 CIfrImage () : CIfrObj (EFI_IFR_IMAGE_OP, (CHAR8 **)&mImage),
850 CIfrOpHeader (EFI_IFR_IMAGE_OP, &mImage->Header) {
851 mImage->Id = EFI_IMAGE_ID_INVALID;
852 }
853
854 VOID SetImageId (IN EFI_IMAGE_ID ImageId) {
855 mImage->Id = ImageId;
856 }
857 };
858
859 class CIfrModal : public CIfrObj, public CIfrOpHeader {
860 private:
861 EFI_IFR_MODAL *mModal;
862
863 public:
864 CIfrModal () : CIfrObj (EFI_IFR_MODAL_TAG_OP, (CHAR8 **)&mModal),
865 CIfrOpHeader (EFI_IFR_MODAL_TAG_OP, &mModal->Header) {
866 }
867 };
868
869
870 class CIfrLocked : public CIfrObj, public CIfrOpHeader {
871 private:
872 EFI_IFR_LOCKED *mLocked;
873
874 public:
875 CIfrLocked () : CIfrObj (EFI_IFR_LOCKED_OP, (CHAR8 **)&mLocked),
876 CIfrOpHeader (EFI_IFR_LOCKED_OP, &mLocked->Header) {}
877 };
878
879 class CIfrRule : public CIfrObj, public CIfrOpHeader {
880 private:
881 EFI_IFR_RULE *mRule;
882
883 public:
884 CIfrRule () : CIfrObj (EFI_IFR_RULE_OP, (CHAR8 **)&mRule),
885 mRule ((EFI_IFR_RULE *)GetObjBinAddr()),
886 CIfrOpHeader (EFI_IFR_RULE_OP, &mRule->Header) {
887 mRule->RuleId = EFI_RULE_ID_INVALID;
888 }
889
890 VOID SetRuleId (IN UINT8 RuleId) {
891 mRule->RuleId = RuleId;
892 }
893 };
894
895 static EFI_IFR_TYPE_VALUE gZeroEfiIfrTypeValue = {0, };
896
897 class CIfrDefault : public CIfrObj, public CIfrOpHeader {
898 private:
899 EFI_IFR_DEFAULT *mDefault;
900
901 public:
902 CIfrDefault (
903 IN UINT16 DefaultId = EFI_HII_DEFAULT_CLASS_STANDARD,
904 IN UINT8 Type = EFI_IFR_TYPE_OTHER,
905 IN EFI_IFR_TYPE_VALUE Value = gZeroEfiIfrTypeValue
906 ) : CIfrObj (EFI_IFR_DEFAULT_OP, (CHAR8 **)&mDefault),
907 CIfrOpHeader (EFI_IFR_DEFAULT_OP, &mDefault->Header) {
908 mDefault->Type = Type;
909 mDefault->Value = Value;
910 mDefault->DefaultId = DefaultId;
911 }
912
913 VOID SetDefaultId (IN UINT16 DefaultId) {
914 mDefault->DefaultId = DefaultId;
915 }
916
917 VOID SetType (IN UINT8 Type) {
918 mDefault->Type = Type;
919 }
920
921 VOID SetValue (IN EFI_IFR_TYPE_VALUE Value) {
922 mDefault->Value = Value;
923 }
924 };
925
926 class CIfrValue : public CIfrObj, public CIfrOpHeader{
927 private:
928 EFI_IFR_VALUE *mValue;
929
930 public:
931 CIfrValue () : CIfrObj (EFI_IFR_VALUE_OP, (CHAR8 **)&mValue),
932 CIfrOpHeader (EFI_IFR_VALUE_OP, &mValue->Header) {}
933
934 };
935
936 class CIfrRead : public CIfrObj, public CIfrOpHeader{
937 private:
938 EFI_IFR_READ *mRead;
939
940 public:
941 CIfrRead () : CIfrObj (EFI_IFR_READ_OP, (CHAR8 **)&mRead),
942 CIfrOpHeader (EFI_IFR_READ_OP, &mRead->Header) {}
943
944 };
945
946 class CIfrWrite : public CIfrObj, public CIfrOpHeader{
947 private:
948 EFI_IFR_WRITE *mWrite;
949
950 public:
951 CIfrWrite () : CIfrObj (EFI_IFR_WRITE_OP, (CHAR8 **)&mWrite),
952 CIfrOpHeader (EFI_IFR_WRITE_OP, &mWrite->Header) {}
953
954 };
955
956 class CIfrGet : public CIfrObj, public CIfrOpHeader{
957 private:
958 EFI_IFR_GET *mGet;
959
960 public:
961 CIfrGet (
962 IN UINT32 LineNo
963 ) : CIfrObj (EFI_IFR_GET_OP, (CHAR8 **)&mGet),
964 CIfrOpHeader (EFI_IFR_GET_OP, &mGet->Header) {
965 SetLineNo (LineNo);
966 }
967
968 VOID SetVarInfo (IN EFI_VARSTORE_INFO *Info) {
969 mGet->VarStoreId = Info->mVarStoreId;
970 mGet->VarStoreInfo.VarName = Info->mInfo.mVarName;
971 mGet->VarStoreInfo.VarOffset = Info->mInfo.mVarOffset;
972 mGet->VarStoreType = Info->mVarType;
973 }
974 };
975
976 class CIfrSet : public CIfrObj, public CIfrOpHeader{
977 private:
978 EFI_IFR_SET *mSet;
979
980 public:
981 CIfrSet (
982 IN UINT32 LineNo
983 ) : CIfrObj (EFI_IFR_SET_OP, (CHAR8 **)&mSet),
984 CIfrOpHeader (EFI_IFR_SET_OP, &mSet->Header) {
985 SetLineNo (LineNo);
986 }
987
988 VOID SetVarInfo (IN EFI_VARSTORE_INFO *Info) {
989 mSet->VarStoreId = Info->mVarStoreId;
990 mSet->VarStoreInfo.VarName = Info->mInfo.mVarName;
991 mSet->VarStoreInfo.VarOffset = Info->mInfo.mVarOffset;
992 mSet->VarStoreType = Info->mVarType;
993 }
994 };
995
996 class CIfrSubtitle : public CIfrObj, public CIfrOpHeader, public CIfrStatementHeader {
997 private:
998 EFI_IFR_SUBTITLE *mSubtitle;
999
1000 public:
1001 CIfrSubtitle () : CIfrObj (EFI_IFR_SUBTITLE_OP, (CHAR8 **)&mSubtitle),
1002 CIfrOpHeader (EFI_IFR_SUBTITLE_OP, &mSubtitle->Header),
1003 CIfrStatementHeader (&mSubtitle->Statement) {
1004 mSubtitle->Flags = 0;
1005 }
1006
1007 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 LFlags) {
1008 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_FLAGS_HORIZONTAL)) {
1009 mSubtitle->Flags |= EFI_IFR_FLAGS_HORIZONTAL;
1010 }
1011
1012 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
1013 }
1014 };
1015
1016 class CIfrText : public CIfrObj, public CIfrOpHeader, public CIfrStatementHeader {
1017 private:
1018 EFI_IFR_TEXT *mText;
1019
1020 public:
1021 CIfrText () : CIfrObj (EFI_IFR_TEXT_OP, (CHAR8 **)&mText),
1022 CIfrOpHeader (EFI_IFR_TEXT_OP, &mText->Header),
1023 CIfrStatementHeader (&mText->Statement) {
1024 mText->TextTwo = EFI_STRING_ID_INVALID;
1025 }
1026
1027 VOID SetTextTwo (IN EFI_STRING_ID StringId) {
1028 mText->TextTwo = StringId;
1029 }
1030 };
1031
1032 class CIfrRef : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1033 private:
1034 EFI_IFR_REF *mRef;
1035
1036 public:
1037 CIfrRef () : CIfrObj (EFI_IFR_REF_OP, (CHAR8 **)&mRef),
1038 CIfrOpHeader (EFI_IFR_REF_OP, &mRef->Header),
1039 CIfrQuestionHeader (&mRef->Question) {
1040 mRef->FormId = 0;
1041 }
1042
1043 VOID SetFormId (IN EFI_FORM_ID FormId) {
1044 mRef->FormId = FormId;
1045 }
1046 };
1047
1048 class CIfrRef2 : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1049 private:
1050 EFI_IFR_REF2 *mRef2;
1051
1052 public:
1053 CIfrRef2 () : CIfrObj (EFI_IFR_REF_OP, (CHAR8 **)&mRef2, sizeof (EFI_IFR_REF2)),
1054 CIfrOpHeader (EFI_IFR_REF_OP, &mRef2->Header, sizeof (EFI_IFR_REF2)),
1055 CIfrQuestionHeader (&mRef2->Question) {
1056 mRef2->FormId = 0;
1057 mRef2->QuestionId = EFI_QUESTION_ID_INVALID;
1058 }
1059
1060 VOID SetFormId (IN EFI_FORM_ID FormId) {
1061 mRef2->FormId = FormId;
1062 }
1063
1064 VOID SetQuestionId (IN EFI_QUESTION_ID QuestionId) {
1065 mRef2->QuestionId = QuestionId;
1066 }
1067 };
1068
1069 class CIfrRef3 : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1070 private:
1071 EFI_IFR_REF3 *mRef3;
1072
1073 public:
1074 CIfrRef3 () : CIfrObj (EFI_IFR_REF_OP, (CHAR8 **)&mRef3, sizeof(EFI_IFR_REF3)),
1075 CIfrOpHeader (EFI_IFR_REF_OP, &mRef3->Header, sizeof (EFI_IFR_REF3)),
1076 CIfrQuestionHeader (&mRef3->Question) {
1077 mRef3->FormId = 0;
1078 mRef3->QuestionId = EFI_QUESTION_ID_INVALID;
1079 memset (&mRef3->FormSetId, 0, sizeof (EFI_GUID));
1080 }
1081
1082 VOID SetFormId (IN EFI_FORM_ID FormId) {
1083 mRef3->FormId = FormId;
1084 }
1085
1086 VOID SetQuestionId (IN EFI_QUESTION_ID QuestionId) {
1087 mRef3->QuestionId = QuestionId;
1088 }
1089
1090 VOID SetFormSetId (IN EFI_GUID FormSetId) {
1091 mRef3->FormSetId = FormSetId;
1092 }
1093 };
1094
1095 class CIfrRef4 : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1096 private:
1097 EFI_IFR_REF4 *mRef4;
1098
1099 public:
1100 CIfrRef4 () : CIfrObj (EFI_IFR_REF_OP, (CHAR8 **)&mRef4, sizeof(EFI_IFR_REF4)),
1101 CIfrOpHeader (EFI_IFR_REF_OP, &mRef4->Header, sizeof(EFI_IFR_REF4)),
1102 CIfrQuestionHeader (&mRef4->Question) {
1103 mRef4->FormId = 0;
1104 mRef4->QuestionId = EFI_QUESTION_ID_INVALID;
1105 memset (&mRef4->FormSetId, 0, sizeof (EFI_GUID));
1106 mRef4->DevicePath = EFI_STRING_ID_INVALID;
1107 }
1108
1109 VOID SetFormId (IN EFI_FORM_ID FormId) {
1110 mRef4->FormId = FormId;
1111 }
1112
1113 VOID SetQuestionId (IN EFI_QUESTION_ID QuestionId) {
1114 mRef4->QuestionId = QuestionId;
1115 }
1116
1117 VOID SetFormSetId (IN EFI_GUID FormSetId) {
1118 mRef4->FormSetId = FormSetId;
1119 }
1120
1121 VOID SetDevicePath (IN EFI_STRING_ID DevicePath) {
1122 mRef4->DevicePath = DevicePath;
1123 }
1124 };
1125
1126 class CIfrRef5 : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1127 private:
1128 EFI_IFR_REF5 *mRef5;
1129
1130 public:
1131 CIfrRef5 () : CIfrObj (EFI_IFR_REF_OP, (CHAR8 **)&mRef5, sizeof (EFI_IFR_REF5)),
1132 CIfrOpHeader (EFI_IFR_REF_OP, &mRef5->Header, sizeof (EFI_IFR_REF5)),
1133 CIfrQuestionHeader (&mRef5->Question) {
1134 }
1135 };
1136
1137 class CIfrResetButton : public CIfrObj, public CIfrOpHeader, public CIfrStatementHeader {
1138 private:
1139 EFI_IFR_RESET_BUTTON *mResetButton;
1140
1141 public:
1142 CIfrResetButton () : CIfrObj (EFI_IFR_RESET_BUTTON_OP, (CHAR8 **)&mResetButton),
1143 CIfrOpHeader (EFI_IFR_RESET_BUTTON_OP, &mResetButton->Header),
1144 CIfrStatementHeader (&mResetButton->Statement) {
1145 mResetButton->DefaultId = EFI_HII_DEFAULT_CLASS_STANDARD;
1146 }
1147
1148 VOID SetDefaultId (IN UINT16 DefaultId) {
1149 mResetButton->DefaultId = DefaultId;
1150 }
1151 };
1152
1153 class CIfrCheckBox : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1154 private:
1155 EFI_IFR_CHECKBOX *mCheckBox;
1156
1157 public:
1158 CIfrCheckBox () : CIfrObj (EFI_IFR_CHECKBOX_OP, (CHAR8 **)&mCheckBox),
1159 CIfrOpHeader (EFI_IFR_CHECKBOX_OP, &mCheckBox->Header),
1160 CIfrQuestionHeader (&mCheckBox->Question) {
1161 mCheckBox->Flags = 0;
1162 gCurrentQuestion = this;
1163 }
1164
1165 ~CIfrCheckBox () {
1166 gCurrentQuestion = NULL;
1167 }
1168
1169 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 HFlags, UINT8 LFlags) {
1170 EFI_VFR_RETURN_CODE Ret;
1171
1172 Ret = CIfrQuestionHeader::SetFlags (HFlags);
1173 if (Ret != VFR_RETURN_SUCCESS) {
1174 return Ret;
1175 }
1176
1177 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_CHECKBOX_DEFAULT)) {
1178 mCheckBox->Flags |= EFI_IFR_CHECKBOX_DEFAULT;
1179 }
1180
1181 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_CHECKBOX_DEFAULT_MFG)) {
1182 mCheckBox->Flags |= EFI_IFR_CHECKBOX_DEFAULT_MFG;
1183 }
1184
1185 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
1186 }
1187
1188 UINT8 GetFlags (VOID) {
1189 return mCheckBox->Flags;
1190 }
1191 };
1192
1193 class CIfrAction : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1194 private:
1195 EFI_IFR_ACTION *mAction;
1196
1197 public:
1198 CIfrAction () : CIfrObj (EFI_IFR_ACTION_OP, (CHAR8 **)&mAction),
1199 CIfrOpHeader (EFI_IFR_ACTION_OP, &mAction->Header),
1200 CIfrQuestionHeader (&mAction->Question) {
1201 mAction->QuestionConfig = EFI_STRING_ID_INVALID;
1202 }
1203
1204 VOID SetQuestionConfig (IN EFI_STRING_ID QuestionConfig) {
1205 mAction->QuestionConfig = QuestionConfig;
1206 }
1207 };
1208
1209 class CIfrDate : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1210 private:
1211 EFI_IFR_DATE *mDate;
1212
1213 public:
1214 CIfrDate () : CIfrObj (EFI_IFR_DATE_OP, (CHAR8 **)&mDate),
1215 CIfrOpHeader (EFI_IFR_DATE_OP, &mDate->Header),
1216 CIfrQuestionHeader (&mDate->Question) {
1217 mDate->Flags = 0;
1218 }
1219
1220 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 HFlags, IN UINT8 LFlags) {
1221 EFI_VFR_RETURN_CODE Ret;
1222
1223 Ret = CIfrQuestionHeader::SetFlags (HFlags);
1224 if (Ret != VFR_RETURN_SUCCESS) {
1225 return Ret;
1226 }
1227
1228 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_QF_DATE_YEAR_SUPPRESS)) {
1229 mDate->Flags |= EFI_QF_DATE_YEAR_SUPPRESS;
1230 }
1231
1232 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_QF_DATE_MONTH_SUPPRESS)) {
1233 mDate->Flags |= EFI_QF_DATE_MONTH_SUPPRESS;
1234 }
1235
1236 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_QF_DATE_DAY_SUPPRESS)) {
1237 mDate->Flags |= EFI_QF_DATE_DAY_SUPPRESS;
1238 }
1239
1240 if (_FLAG_TEST_AND_CLEAR (LFlags, QF_DATE_STORAGE_NORMAL)) {
1241 mDate->Flags |= QF_DATE_STORAGE_NORMAL;
1242 } else if (_FLAG_TEST_AND_CLEAR (LFlags, QF_DATE_STORAGE_TIME)) {
1243 mDate->Flags |= QF_DATE_STORAGE_TIME;
1244 } else if (_FLAG_TEST_AND_CLEAR (LFlags, QF_DATE_STORAGE_WAKEUP)) {
1245 mDate->Flags |= QF_DATE_STORAGE_WAKEUP;
1246 }
1247
1248 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
1249 }
1250 };
1251
1252 class CIfrNumeric : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader, public CIfrMinMaxStepData {
1253 private:
1254 EFI_IFR_NUMERIC *mNumeric;
1255
1256 public:
1257 CIfrNumeric () : CIfrObj (EFI_IFR_NUMERIC_OP, (CHAR8 **)&mNumeric),
1258 CIfrOpHeader (EFI_IFR_NUMERIC_OP, &mNumeric->Header),
1259 CIfrQuestionHeader (&mNumeric->Question),
1260 CIfrMinMaxStepData (&mNumeric->data, TRUE) {
1261 mNumeric->Flags = EFI_IFR_NUMERIC_SIZE_1 | EFI_IFR_DISPLAY_UINT_DEC;
1262 gCurrentQuestion = this;
1263 gCurrentMinMaxData = this;
1264 }
1265
1266 ~CIfrNumeric () {
1267 gCurrentQuestion = NULL;
1268 gCurrentMinMaxData = NULL;
1269 }
1270
1271 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 HFlags, IN UINT8 LFlags) {
1272 EFI_VFR_RETURN_CODE Ret;
1273
1274 Ret = CIfrQuestionHeader::SetFlags (HFlags);
1275 if (Ret != VFR_RETURN_SUCCESS) {
1276 return Ret;
1277 }
1278
1279 if (LFlags & EFI_IFR_DISPLAY) {
1280 mNumeric->Flags = LFlags;
1281 } else {
1282 mNumeric->Flags = LFlags | EFI_IFR_DISPLAY_UINT_DEC;
1283 }
1284 return VFR_RETURN_SUCCESS;
1285 }
1286 };
1287
1288 class CIfrOneOf : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader, public CIfrMinMaxStepData {
1289 private:
1290 EFI_IFR_ONE_OF *mOneOf;
1291
1292 public:
1293 CIfrOneOf () : CIfrObj (EFI_IFR_ONE_OF_OP, (CHAR8 **)&mOneOf),
1294 CIfrOpHeader (EFI_IFR_ONE_OF_OP, &mOneOf->Header),
1295 CIfrQuestionHeader (&mOneOf->Question),
1296 CIfrMinMaxStepData (&mOneOf->data) {
1297 mOneOf->Flags = 0;
1298 gCurrentQuestion = this;
1299 gCurrentMinMaxData = this;
1300 }
1301
1302 ~CIfrOneOf () {
1303 gCurrentQuestion = NULL;
1304 gCurrentMinMaxData = NULL;
1305 }
1306
1307 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 HFlags, IN UINT8 LFlags) {
1308 EFI_VFR_RETURN_CODE Ret;
1309
1310 Ret = CIfrQuestionHeader::SetFlags (HFlags);
1311 if (Ret != VFR_RETURN_SUCCESS) {
1312 return Ret;
1313 }
1314
1315 if (LFlags & EFI_IFR_DISPLAY) {
1316 mOneOf->Flags = LFlags;
1317 } else {
1318 mOneOf->Flags = LFlags | EFI_IFR_DISPLAY_UINT_DEC;
1319 }
1320 return VFR_RETURN_SUCCESS;
1321 }
1322 };
1323
1324 class CIfrString : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1325 private:
1326 EFI_IFR_STRING *mString;
1327
1328 public:
1329 CIfrString () : CIfrObj (EFI_IFR_STRING_OP, (CHAR8 **)&mString),
1330 CIfrOpHeader (EFI_IFR_STRING_OP, &mString->Header),
1331 CIfrQuestionHeader (&mString->Question) {
1332 mString->Flags = 0;
1333 mString->MinSize = 0;
1334 mString->MaxSize = 0;
1335 gCurrentQuestion = this;
1336 }
1337
1338 ~CIfrString () {
1339 gCurrentQuestion = NULL;
1340 }
1341
1342 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 HFlags, IN UINT8 LFlags) {
1343 EFI_VFR_RETURN_CODE Ret;
1344
1345 Ret = CIfrQuestionHeader::SetFlags (HFlags);
1346 if (Ret != VFR_RETURN_SUCCESS) {
1347 return Ret;
1348 }
1349
1350 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_STRING_MULTI_LINE)) {
1351 mString->Flags |= EFI_IFR_STRING_MULTI_LINE;
1352 }
1353
1354 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
1355 }
1356
1357 VOID SetMinSize (IN UINT8 Flags) {
1358 mString->MinSize = Flags;
1359 }
1360
1361 VOID SetMaxSize (IN UINT8 MaxSize) {
1362 mString->MaxSize = MaxSize;
1363 }
1364 };
1365
1366 class CIfrPassword : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1367 private:
1368 EFI_IFR_PASSWORD *mPassword;
1369
1370 public:
1371 CIfrPassword () : CIfrObj (EFI_IFR_PASSWORD_OP, (CHAR8 **)&mPassword),
1372 CIfrOpHeader (EFI_IFR_PASSWORD_OP, &mPassword->Header),
1373 CIfrQuestionHeader (&mPassword->Question) {
1374 mPassword->MinSize = 0;
1375 mPassword->MaxSize = 0;
1376 gCurrentQuestion = this;
1377 }
1378
1379 ~CIfrPassword () {
1380 gCurrentQuestion = NULL;
1381 }
1382
1383 VOID SetMinSize (IN UINT16 MinSize) {
1384 mPassword->MinSize = MinSize;
1385 }
1386
1387 VOID SetMaxSize (IN UINT16 MaxSize) {
1388 mPassword->MaxSize = MaxSize;
1389 }
1390 };
1391
1392 class CIfrOrderedList : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1393 private:
1394 EFI_IFR_ORDERED_LIST *mOrderedList;
1395
1396 public:
1397 CIfrOrderedList () : CIfrObj (EFI_IFR_ORDERED_LIST_OP, (CHAR8 **)&mOrderedList),
1398 CIfrOpHeader (EFI_IFR_ORDERED_LIST_OP, &mOrderedList->Header),
1399 CIfrQuestionHeader (&mOrderedList->Question) {
1400 mOrderedList->MaxContainers = 0;
1401 mOrderedList->Flags = 0;
1402 gCurrentQuestion = this;
1403 }
1404
1405 ~CIfrOrderedList () {
1406 gCurrentQuestion = NULL;
1407 }
1408
1409 VOID SetMaxContainers (IN UINT8 MaxContainers) {
1410 mOrderedList->MaxContainers = MaxContainers;
1411 }
1412
1413 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 HFlags, IN UINT8 LFlags) {
1414 EFI_VFR_RETURN_CODE Ret;
1415
1416 Ret = CIfrQuestionHeader::SetFlags (HFlags);
1417 if (Ret != VFR_RETURN_SUCCESS) {
1418 return Ret;
1419 }
1420
1421 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_UNIQUE_SET)) {
1422 mOrderedList->Flags |= EFI_IFR_UNIQUE_SET;
1423 }
1424
1425 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_NO_EMPTY_SET)) {
1426 mOrderedList->Flags |= EFI_IFR_NO_EMPTY_SET;
1427 }
1428
1429 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
1430 }
1431 };
1432
1433 class CIfrTime : public CIfrObj, public CIfrOpHeader, public CIfrQuestionHeader {
1434 private:
1435 EFI_IFR_TIME *mTime;
1436
1437 public:
1438 CIfrTime () : CIfrObj (EFI_IFR_TIME_OP, (CHAR8 **)&mTime),
1439 CIfrOpHeader (EFI_IFR_TIME_OP, &mTime->Header),
1440 CIfrQuestionHeader (&mTime->Question) {
1441 mTime->Flags = 0;
1442 }
1443
1444 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 HFlags, IN UINT8 LFlags) {
1445 EFI_VFR_RETURN_CODE Ret;
1446
1447 Ret = CIfrQuestionHeader::SetFlags (HFlags);
1448 if (Ret != VFR_RETURN_SUCCESS) {
1449 return Ret;
1450 }
1451
1452 if (_FLAG_TEST_AND_CLEAR (LFlags, QF_TIME_HOUR_SUPPRESS)) {
1453 mTime->Flags |= QF_TIME_HOUR_SUPPRESS;
1454 }
1455
1456 if (_FLAG_TEST_AND_CLEAR (LFlags, QF_TIME_MINUTE_SUPPRESS)) {
1457 mTime->Flags |= QF_TIME_MINUTE_SUPPRESS;
1458 }
1459
1460 if (_FLAG_TEST_AND_CLEAR (LFlags, QF_TIME_SECOND_SUPPRESS)) {
1461 mTime->Flags |= QF_TIME_SECOND_SUPPRESS;
1462 }
1463
1464 if (_FLAG_TEST_AND_CLEAR (LFlags, QF_TIME_STORAGE_NORMAL)) {
1465 mTime->Flags |= QF_TIME_STORAGE_NORMAL;
1466 } else if (_FLAG_TEST_AND_CLEAR (LFlags, QF_TIME_STORAGE_TIME)) {
1467 mTime->Flags |= QF_TIME_STORAGE_TIME;
1468 } else if (_FLAG_TEST_AND_CLEAR (LFlags, QF_TIME_STORAGE_WAKEUP)) {
1469 mTime->Flags |= QF_TIME_STORAGE_WAKEUP;
1470 }
1471
1472 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
1473 }
1474 };
1475
1476 class CIfrDisableIf : public CIfrObj, public CIfrOpHeader {
1477 private:
1478 EFI_IFR_DISABLE_IF *mDisableIf;
1479
1480 public:
1481 CIfrDisableIf () : CIfrObj (EFI_IFR_DISABLE_IF_OP, (CHAR8 **)&mDisableIf),
1482 mDisableIf ((EFI_IFR_DISABLE_IF *) GetObjBinAddr()),
1483 CIfrOpHeader (EFI_IFR_DISABLE_IF_OP, &mDisableIf->Header) {}
1484 };
1485
1486 class CIfrSuppressIf : public CIfrObj, public CIfrOpHeader {
1487 private:
1488 EFI_IFR_SUPPRESS_IF *mSuppressIf;
1489
1490 public:
1491 CIfrSuppressIf () : CIfrObj (EFI_IFR_SUPPRESS_IF_OP, (CHAR8 **)&mSuppressIf),
1492 CIfrOpHeader (EFI_IFR_SUPPRESS_IF_OP, &mSuppressIf->Header) {}
1493 };
1494
1495 class CIfrGrayOutIf : public CIfrObj, public CIfrOpHeader {
1496 private:
1497 EFI_IFR_GRAY_OUT_IF *mGrayOutIf;
1498
1499 public:
1500 CIfrGrayOutIf () : CIfrObj (EFI_IFR_GRAY_OUT_IF_OP, (CHAR8 **)&mGrayOutIf),
1501 CIfrOpHeader (EFI_IFR_GRAY_OUT_IF_OP, &mGrayOutIf->Header) {}
1502 };
1503
1504 class CIfrInconsistentIf : public CIfrObj, public CIfrOpHeader {
1505 private:
1506 EFI_IFR_INCONSISTENT_IF *mInconsistentIf;
1507
1508 public:
1509 CIfrInconsistentIf () : CIfrObj (EFI_IFR_INCONSISTENT_IF_OP, (CHAR8 **)&mInconsistentIf),
1510 CIfrOpHeader (EFI_IFR_INCONSISTENT_IF_OP, &mInconsistentIf->Header) {
1511 mInconsistentIf->Error = EFI_STRING_ID_INVALID;
1512 }
1513
1514 VOID SetError (IN EFI_STRING_ID Error) {
1515 mInconsistentIf->Error = Error;
1516 }
1517 };
1518
1519 class CIfrNoSubmitIf : public CIfrObj, public CIfrOpHeader {
1520 private:
1521 EFI_IFR_NO_SUBMIT_IF *mNoSubmitIf;
1522
1523 public:
1524 CIfrNoSubmitIf () : CIfrObj (EFI_IFR_NO_SUBMIT_IF_OP, (CHAR8 **)&mNoSubmitIf),
1525 CIfrOpHeader (EFI_IFR_NO_SUBMIT_IF_OP, &mNoSubmitIf->Header) {
1526 mNoSubmitIf->Error = EFI_STRING_ID_INVALID;
1527 }
1528
1529 VOID SetError (IN EFI_STRING_ID Error) {
1530 mNoSubmitIf->Error = Error;
1531 }
1532 };
1533
1534 class CIfrRefresh : public CIfrObj, public CIfrOpHeader {
1535 private:
1536 EFI_IFR_REFRESH *mRefresh;
1537
1538 public:
1539 CIfrRefresh () : CIfrObj (EFI_IFR_REFRESH_OP, (CHAR8 **)&mRefresh),
1540 CIfrOpHeader (EFI_IFR_REFRESH_OP, &mRefresh->Header) {
1541 mRefresh->RefreshInterval = 0;
1542 }
1543
1544 VOID SetRefreshInterval (IN UINT8 RefreshInterval) {
1545 mRefresh->RefreshInterval = RefreshInterval;
1546 }
1547 };
1548
1549 class CIfrRefreshId : public CIfrObj, public CIfrOpHeader {
1550 private:
1551 EFI_IFR_REFRESH_ID *mRefreshId;
1552
1553 public:
1554 CIfrRefreshId () : CIfrObj (EFI_IFR_REFRESH_ID_OP, (CHAR8 **)&mRefreshId),
1555 CIfrOpHeader (EFI_IFR_REFRESH_ID_OP, &mRefreshId->Header) {
1556 memset (&mRefreshId->RefreshEventGroupId, 0, sizeof (EFI_GUID));
1557 }
1558
1559 VOID SetRefreshEventGroutId (IN EFI_GUID *RefreshEventGroupId) {
1560 memcpy (&mRefreshId->RefreshEventGroupId, RefreshEventGroupId, sizeof (EFI_GUID));
1561 }
1562 };
1563
1564 class CIfrVarStoreDevice : public CIfrObj, public CIfrOpHeader {
1565 private:
1566 EFI_IFR_VARSTORE_DEVICE *mVarStoreDevice;
1567
1568 public:
1569 CIfrVarStoreDevice () : CIfrObj (EFI_IFR_VARSTORE_DEVICE_OP, (CHAR8 **)&mVarStoreDevice),
1570 CIfrOpHeader (EFI_IFR_VARSTORE_DEVICE_OP, &mVarStoreDevice->Header) {
1571 mVarStoreDevice->DevicePath = EFI_STRING_ID_INVALID;
1572 }
1573
1574 VOID SetDevicePath (IN EFI_STRING_ID DevicePath) {
1575 mVarStoreDevice->DevicePath = DevicePath;
1576 }
1577 };
1578
1579 class CIfrOneOfOption : public CIfrObj, public CIfrOpHeader {
1580 private:
1581 EFI_IFR_ONE_OF_OPTION *mOneOfOption;
1582
1583 public:
1584 CIfrOneOfOption () : CIfrObj (EFI_IFR_ONE_OF_OPTION_OP, (CHAR8 **)&mOneOfOption),
1585 CIfrOpHeader (EFI_IFR_ONE_OF_OPTION_OP, &mOneOfOption->Header) {
1586 mOneOfOption->Flags = 0;
1587 mOneOfOption->Option = EFI_STRING_ID_INVALID;
1588 mOneOfOption->Type = EFI_IFR_TYPE_OTHER;
1589 memset (&mOneOfOption->Value, 0, sizeof (mOneOfOption->Value));
1590 }
1591
1592 VOID SetOption (IN EFI_STRING_ID Option) {
1593 mOneOfOption->Option = Option;
1594 }
1595
1596 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 LFlags) {
1597 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_OPTION_DEFAULT)) {
1598 mOneOfOption->Flags |= EFI_IFR_OPTION_DEFAULT;
1599 }
1600
1601 if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_OPTION_DEFAULT_MFG)) {
1602 mOneOfOption->Flags |= EFI_IFR_OPTION_DEFAULT_MFG;
1603 }
1604
1605 if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_NUM_SIZE_8)) {
1606 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_NUM_SIZE_8);
1607 mOneOfOption->Flags |= EFI_IFR_TYPE_NUM_SIZE_8;
1608 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_NUM_SIZE_16)) {
1609 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_NUM_SIZE_16);
1610 mOneOfOption->Flags |= EFI_IFR_TYPE_NUM_SIZE_16;
1611 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_NUM_SIZE_32)) {
1612 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_NUM_SIZE_32);
1613 mOneOfOption->Flags |= EFI_IFR_TYPE_NUM_SIZE_32;
1614 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_NUM_SIZE_64)) {
1615 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_NUM_SIZE_64);
1616 mOneOfOption->Flags |= EFI_IFR_TYPE_NUM_SIZE_64;
1617 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_BOOLEAN)) {
1618 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_BOOLEAN);
1619 mOneOfOption->Flags |= EFI_IFR_TYPE_BOOLEAN;
1620 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_TIME)) {
1621 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_TIME);
1622 mOneOfOption->Flags |= EFI_IFR_TYPE_TIME;
1623 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_DATE)) {
1624 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_DATE);
1625 mOneOfOption->Flags |= EFI_IFR_TYPE_DATE;
1626 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_STRING)) {
1627 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_STRING);
1628 mOneOfOption->Flags |= EFI_IFR_TYPE_STRING;
1629 } else if (_IS_EQUAL (LFlags, EFI_IFR_TYPE_OTHER)) {
1630 _FLAG_CLEAR (LFlags, EFI_IFR_TYPE_OTHER);
1631 mOneOfOption->Flags |= EFI_IFR_TYPE_OTHER;
1632 }
1633
1634 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
1635 }
1636
1637 VOID SetType (IN UINT8 Type) {
1638 mOneOfOption->Type = Type;
1639 }
1640
1641 VOID SetValue (IN EFI_IFR_TYPE_VALUE Value) {
1642 mOneOfOption->Value = Value;
1643 }
1644
1645 UINT8 GetFlags (VOID) {
1646 return mOneOfOption->Flags;
1647 }
1648 };
1649
1650 static EFI_GUID IfrTianoGuid = EFI_IFR_TIANO_GUID;
1651 static EFI_GUID IfrFrameworkGuid = EFI_IFR_FRAMEWORK_GUID;
1652
1653 class CIfrClass : public CIfrObj, public CIfrOpHeader {
1654 private:
1655 EFI_IFR_GUID_CLASS *mClass;
1656
1657 public:
1658 CIfrClass () : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mClass, sizeof (EFI_IFR_GUID_CLASS)),
1659 CIfrOpHeader (EFI_IFR_GUID_OP, &mClass->Header, sizeof (EFI_IFR_GUID_CLASS)) {
1660 mClass->ExtendOpCode = EFI_IFR_EXTEND_OP_CLASS;
1661 mClass->Guid = IfrTianoGuid;
1662 mClass->Class = EFI_NON_DEVICE_CLASS;
1663 }
1664
1665 VOID SetClass (IN UINT16 Class) {
1666 mClass->Class = Class;
1667 }
1668 };
1669
1670 class CIfrSubClass : public CIfrObj, public CIfrOpHeader {
1671 private:
1672 EFI_IFR_GUID_SUBCLASS *mSubClass;
1673
1674 public:
1675 CIfrSubClass () : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mSubClass, sizeof (EFI_IFR_GUID_SUBCLASS)),
1676 CIfrOpHeader (EFI_IFR_GUID_OP, &mSubClass->Header, sizeof (EFI_IFR_GUID_SUBCLASS)) {
1677 mSubClass->ExtendOpCode = EFI_IFR_EXTEND_OP_SUBCLASS;
1678 mSubClass->Guid = IfrTianoGuid;
1679 mSubClass->SubClass = EFI_SETUP_APPLICATION_SUBCLASS;
1680 }
1681
1682 VOID SetSubClass (IN UINT16 SubClass) {
1683 mSubClass->SubClass = SubClass;
1684 }
1685 };
1686
1687 class CIfrLabel : public CIfrObj, public CIfrOpHeader {
1688 private:
1689 EFI_IFR_GUID_LABEL *mLabel;
1690
1691 public:
1692 CIfrLabel () : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mLabel, sizeof (EFI_IFR_GUID_LABEL)),
1693 CIfrOpHeader (EFI_IFR_GUID_OP, &mLabel->Header, sizeof (EFI_IFR_GUID_LABEL)) {
1694 mLabel->ExtendOpCode = EFI_IFR_EXTEND_OP_LABEL;
1695 mLabel->Guid = IfrTianoGuid;
1696 }
1697
1698 VOID SetNumber (IN UINT16 Number) {
1699 mLabel->Number = Number;
1700 }
1701 };
1702
1703 class CIfrBanner : public CIfrObj, public CIfrOpHeader {
1704 private:
1705 EFI_IFR_GUID_BANNER *mBanner;
1706
1707 public:
1708 CIfrBanner () : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mBanner, sizeof (EFI_IFR_GUID_BANNER)),
1709 CIfrOpHeader (EFI_IFR_GUID_OP, &mBanner->Header, sizeof (EFI_IFR_GUID_BANNER)) {
1710 mBanner->ExtendOpCode = EFI_IFR_EXTEND_OP_BANNER;
1711 mBanner->Guid = IfrTianoGuid;
1712 }
1713
1714 VOID SetTitle (IN EFI_STRING_ID StringId) {
1715 mBanner->Title = StringId;
1716 }
1717
1718 VOID SetLine (IN UINT16 Line) {
1719 mBanner->LineNumber = Line;
1720 }
1721
1722 VOID SetAlign (IN UINT8 Align) {
1723 mBanner->Alignment = Align;
1724 }
1725 };
1726
1727 class CIfrOptionKey : public CIfrObj, public CIfrOpHeader {
1728 private:
1729 EFI_IFR_GUID_OPTIONKEY *mOptionKey;
1730
1731 public:
1732 CIfrOptionKey (
1733 IN EFI_QUESTION_ID QuestionId,
1734 IN EFI_IFR_TYPE_VALUE &OptionValue,
1735 IN EFI_QUESTION_ID KeyValue
1736 ) : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mOptionKey, sizeof (EFI_IFR_GUID_OPTIONKEY)),
1737 CIfrOpHeader (EFI_IFR_GUID_OP, &mOptionKey->Header, sizeof (EFI_IFR_GUID_OPTIONKEY)) {
1738 mOptionKey->ExtendOpCode = EFI_IFR_EXTEND_OP_OPTIONKEY;
1739 mOptionKey->Guid = IfrFrameworkGuid;
1740 mOptionKey->QuestionId = QuestionId;
1741 mOptionKey->OptionValue = OptionValue;
1742 mOptionKey->KeyValue = KeyValue;
1743 }
1744 };
1745
1746 class CIfrVarEqName : public CIfrObj, public CIfrOpHeader {
1747 private:
1748 EFI_IFR_GUID_VAREQNAME *mVarEqName;
1749
1750 public:
1751 CIfrVarEqName (
1752 IN EFI_QUESTION_ID QuestionId,
1753 IN EFI_STRING_ID NameId
1754 ) : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mVarEqName, sizeof (EFI_IFR_GUID_VAREQNAME)),
1755 CIfrOpHeader (EFI_IFR_GUID_OP, &mVarEqName->Header, sizeof (EFI_IFR_GUID_VAREQNAME)) {
1756 mVarEqName->ExtendOpCode = EFI_IFR_EXTEND_OP_VAREQNAME;
1757 mVarEqName->Guid = IfrFrameworkGuid;
1758 mVarEqName->QuestionId = QuestionId;
1759 mVarEqName->NameId = NameId;
1760 }
1761 };
1762
1763 class CIfrTimeout : public CIfrObj, public CIfrOpHeader {
1764 private:
1765 EFI_IFR_GUID_TIMEOUT *mTimeout;
1766
1767 public:
1768 CIfrTimeout (IN UINT16 Timeout = 0) : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mTimeout, sizeof (EFI_IFR_GUID_TIMEOUT)),
1769 CIfrOpHeader (EFI_IFR_GUID_OP, &mTimeout->Header, sizeof (EFI_IFR_GUID_TIMEOUT)) {
1770 mTimeout->ExtendOpCode = EFI_IFR_EXTEND_OP_TIMEOUT;
1771 mTimeout->Guid = IfrTianoGuid;
1772 mTimeout->TimeOut = Timeout;
1773 }
1774
1775 VOID SetTimeout (IN UINT16 Timeout) {
1776 mTimeout->TimeOut = Timeout;
1777 }
1778 };
1779
1780 class CIfrGuid : public CIfrObj, public CIfrOpHeader {
1781 private:
1782 EFI_IFR_GUID *mGuid;
1783
1784 public:
1785 CIfrGuid (UINT8 Size) : CIfrObj (EFI_IFR_GUID_OP, (CHAR8 **)&mGuid, sizeof (EFI_IFR_GUID)+Size),
1786 CIfrOpHeader (EFI_IFR_GUID_OP, &mGuid->Header, sizeof (EFI_IFR_GUID)+Size) {
1787 memset (&mGuid->Guid, 0, sizeof (EFI_GUID));
1788 }
1789
1790 VOID SetGuid (IN EFI_GUID *Guid) {
1791 memcpy (&mGuid->Guid, Guid, sizeof (EFI_GUID));
1792 }
1793
1794 VOID SetData (IN UINT8* DataBuff, IN UINT8 Size) {
1795 memcpy ((UINT8 *)mGuid + sizeof (EFI_IFR_GUID), DataBuff, Size);
1796 }
1797 };
1798
1799 class CIfrDup : public CIfrObj, public CIfrOpHeader {
1800 private:
1801 EFI_IFR_DUP *mDup;
1802
1803 public:
1804 CIfrDup (
1805 IN UINT32 LineNo
1806 ) : CIfrObj (EFI_IFR_DUP_OP, (CHAR8 **)&mDup),
1807 CIfrOpHeader (EFI_IFR_DUP_OP, &mDup->Header) {
1808 SetLineNo (LineNo);
1809 }
1810 };
1811
1812 class CIfrEqIdId : public CIfrObj, public CIfrOpHeader {
1813 private:
1814 EFI_IFR_EQ_ID_ID *mEqIdId;
1815
1816 public:
1817 CIfrEqIdId (
1818 IN UINT32 LineNo
1819 ) : CIfrObj (EFI_IFR_EQ_ID_ID_OP, (CHAR8 **)&mEqIdId),
1820 CIfrOpHeader (EFI_IFR_EQ_ID_ID_OP, &mEqIdId->Header) {
1821 SetLineNo (LineNo);
1822 mEqIdId->QuestionId1 = EFI_QUESTION_ID_INVALID;
1823 mEqIdId->QuestionId2 = EFI_QUESTION_ID_INVALID;
1824 }
1825
1826 VOID SetQuestionId1 (
1827 IN EFI_QUESTION_ID QuestionId,
1828 IN CHAR8 *VarIdStr,
1829 IN UINT32 LineNo
1830 ) {
1831 if (QuestionId != EFI_QUESTION_ID_INVALID) {
1832 mEqIdId->QuestionId1 = QuestionId;
1833 } else {
1834 gCFormPkg.AssignPending (VarIdStr, (VOID *)(&mEqIdId->QuestionId1), sizeof (EFI_QUESTION_ID), LineNo, NO_QST_REFED);
1835 }
1836 }
1837
1838 VOID SetQuestionId2 (
1839 IN EFI_QUESTION_ID QuestionId,
1840 IN CHAR8 *VarIdStr,
1841 IN UINT32 LineNo
1842 ) {
1843 if (QuestionId != EFI_QUESTION_ID_INVALID) {
1844 mEqIdId->QuestionId2 = QuestionId;
1845 } else {
1846 gCFormPkg.AssignPending (VarIdStr, (VOID *)(&mEqIdId->QuestionId2), sizeof (EFI_QUESTION_ID), LineNo, NO_QST_REFED);
1847 }
1848 }
1849 };
1850
1851 class CIfrEqIdVal : public CIfrObj, public CIfrOpHeader {
1852 private:
1853 EFI_IFR_EQ_ID_VAL *mEqIdVal;
1854
1855 public:
1856 CIfrEqIdVal (
1857 IN UINT32 LineNo
1858 ) : CIfrObj (EFI_IFR_EQ_ID_VAL_OP, (CHAR8 **)&mEqIdVal),
1859 CIfrOpHeader (EFI_IFR_EQ_ID_VAL_OP, &mEqIdVal->Header) {
1860 SetLineNo (LineNo);
1861 mEqIdVal->QuestionId = EFI_QUESTION_ID_INVALID;
1862 }
1863
1864 VOID SetQuestionId (
1865 IN EFI_QUESTION_ID QuestionId,
1866 IN CHAR8 *VarIdStr,
1867 IN UINT32 LineNo
1868 ) {
1869 if (QuestionId != EFI_QUESTION_ID_INVALID) {
1870 mEqIdVal->QuestionId = QuestionId;
1871 } else {
1872 gCFormPkg.AssignPending (VarIdStr, (VOID *)(&mEqIdVal->QuestionId), sizeof (EFI_QUESTION_ID), LineNo, NO_QST_REFED);
1873 }
1874 }
1875
1876 VOID SetValue (IN UINT16 Value) {
1877 mEqIdVal->Value = Value;
1878 }
1879 };
1880
1881 class CIfrEqIdList : public CIfrObj, public CIfrOpHeader {
1882 private:
1883 EFI_IFR_EQ_ID_VAL_LIST *mEqIdVList;
1884
1885 public:
1886 CIfrEqIdList (
1887 IN UINT32 LineNo
1888 ) : CIfrObj (EFI_IFR_EQ_ID_LIST_OP, (CHAR8 **)&mEqIdVList, sizeof (EFI_IFR_EQ_ID_VAL_LIST), TRUE),
1889 CIfrOpHeader (EFI_IFR_EQ_ID_LIST_OP, &mEqIdVList->Header) {
1890 SetLineNo (LineNo);
1891 mEqIdVList->QuestionId = EFI_QUESTION_ID_INVALID;
1892 mEqIdVList->ListLength = 0;
1893 mEqIdVList->ValueList[0] = 0;
1894 }
1895
1896 VOID UpdateIfrBuffer (
1897 ) {
1898 _EMIT_PENDING_OBJ();
1899 mEqIdVList = (EFI_IFR_EQ_ID_VAL_LIST *) GetObjBinAddr();
1900 UpdateHeader (&mEqIdVList->Header);
1901 }
1902
1903 VOID SetQuestionId (
1904 IN EFI_QUESTION_ID QuestionId,
1905 IN CHAR8 *VarIdStr,
1906 IN UINT32 LineNo
1907 ) {
1908 if (QuestionId != EFI_QUESTION_ID_INVALID) {
1909 mEqIdVList->QuestionId = QuestionId;
1910 } else {
1911 gCFormPkg.AssignPending (VarIdStr, (VOID *)(&mEqIdVList->QuestionId), sizeof (EFI_QUESTION_ID), LineNo, NO_QST_REFED);
1912 }
1913 }
1914
1915 VOID SetListLength (IN UINT16 ListLength) {
1916 mEqIdVList->ListLength = ListLength;
1917 }
1918
1919 VOID SetValueList (IN UINT16 Index, IN UINT16 Value) {
1920 if (Index == 0) {
1921 mEqIdVList->ValueList[0] = Value;
1922 return;
1923 }
1924
1925 if (ExpendObjBin (sizeof (UINT16)) ==TRUE) {
1926 IncLength (sizeof (UINT16));
1927 mEqIdVList->ValueList[Index] = Value;
1928 }
1929 }
1930 };
1931
1932 class CIfrQuestionRef1 : public CIfrObj, public CIfrOpHeader {
1933 private:
1934 EFI_IFR_QUESTION_REF1 *mQuestionRef1;
1935
1936 public:
1937 CIfrQuestionRef1 (
1938 IN UINT32 LineNo
1939 ) : CIfrObj (EFI_IFR_QUESTION_REF1_OP, (CHAR8 **)&mQuestionRef1),
1940 CIfrOpHeader (EFI_IFR_QUESTION_REF1_OP, &mQuestionRef1->Header) {
1941 SetLineNo (LineNo);
1942 mQuestionRef1->QuestionId = EFI_QUESTION_ID_INVALID;
1943 }
1944
1945 VOID SetQuestionId (
1946 IN EFI_QUESTION_ID QuestionId,
1947 IN CHAR8 *VarIdStr,
1948 IN UINT32 LineNo
1949 ) {
1950 if (QuestionId != EFI_QUESTION_ID_INVALID) {
1951 mQuestionRef1->QuestionId = QuestionId;
1952 } else {
1953 gCFormPkg.AssignPending (VarIdStr, (VOID *)(&mQuestionRef1->QuestionId), sizeof (EFI_QUESTION_ID), LineNo, NO_QST_REFED);
1954 }
1955 }
1956 };
1957
1958 class CIfrQuestionRef2 : public CIfrObj, public CIfrOpHeader {
1959 private:
1960 EFI_IFR_QUESTION_REF2 *mQuestionRef2;
1961
1962 public:
1963 CIfrQuestionRef2 (
1964 IN UINT32 LineNo
1965 ) : CIfrObj (EFI_IFR_QUESTION_REF2_OP, (CHAR8 **)&mQuestionRef2),
1966 CIfrOpHeader (EFI_IFR_QUESTION_REF2_OP, &mQuestionRef2->Header) {
1967 SetLineNo (LineNo);
1968 }
1969 };
1970
1971 class CIfrQuestionRef3 : public CIfrObj, public CIfrOpHeader {
1972 private:
1973 EFI_IFR_QUESTION_REF3 *mQuestionRef3;
1974
1975 public:
1976 CIfrQuestionRef3 (
1977 IN UINT32 LineNo
1978 ) : CIfrObj (EFI_IFR_QUESTION_REF3_OP, (CHAR8 **)&mQuestionRef3),
1979 CIfrOpHeader (EFI_IFR_QUESTION_REF3_OP, &mQuestionRef3->Header) {
1980 SetLineNo (LineNo);
1981 }
1982 };
1983
1984 class CIfrQuestionRef3_2 : public CIfrObj, public CIfrOpHeader {
1985 private:
1986 EFI_IFR_QUESTION_REF3_2 *mQuestionRef3_2;
1987
1988 public:
1989 CIfrQuestionRef3_2 (
1990 IN UINT32 LineNo
1991 ) : CIfrObj (EFI_IFR_QUESTION_REF3_OP, (CHAR8 **)&mQuestionRef3_2, sizeof (EFI_IFR_QUESTION_REF3_2)),
1992 CIfrOpHeader (EFI_IFR_QUESTION_REF3_OP, &mQuestionRef3_2->Header, sizeof (EFI_IFR_QUESTION_REF3_2)) {
1993 SetLineNo (LineNo);
1994 mQuestionRef3_2->DevicePath = EFI_STRING_ID_INVALID;
1995 }
1996
1997 VOID SetDevicePath (IN EFI_STRING_ID DevicePath) {
1998 mQuestionRef3_2->DevicePath = DevicePath;
1999 }
2000 };
2001
2002 class CIfrQuestionRef3_3 : public CIfrObj, public CIfrOpHeader {
2003 private:
2004 EFI_IFR_QUESTION_REF3_3 *mQuestionRef3_3;
2005
2006 public:
2007 CIfrQuestionRef3_3 (
2008 IN UINT32 LineNo
2009 ) : CIfrObj (EFI_IFR_QUESTION_REF3_OP, (CHAR8 **)&mQuestionRef3_3, sizeof (EFI_IFR_QUESTION_REF3_3)),
2010 CIfrOpHeader (EFI_IFR_QUESTION_REF3_OP, &mQuestionRef3_3->Header, sizeof (EFI_IFR_QUESTION_REF3_3)) {
2011 SetLineNo (LineNo);
2012 mQuestionRef3_3->DevicePath = EFI_STRING_ID_INVALID;
2013 memset (&mQuestionRef3_3->Guid, 0, sizeof (EFI_GUID));
2014 }
2015
2016 VOID SetDevicePath (IN EFI_STRING_ID DevicePath) {
2017 mQuestionRef3_3->DevicePath = DevicePath;
2018 }
2019
2020 VOID SetGuid (IN EFI_GUID *Guid) {
2021 mQuestionRef3_3->Guid = *Guid;
2022 }
2023 };
2024
2025 class CIfrRuleRef : public CIfrObj, public CIfrOpHeader {
2026 private:
2027 EFI_IFR_RULE_REF *mRuleRef;
2028
2029 public:
2030 CIfrRuleRef (
2031 IN UINT32 LineNo
2032 ) : CIfrObj (EFI_IFR_RULE_REF_OP, (CHAR8 **)&mRuleRef),
2033 CIfrOpHeader (EFI_IFR_RULE_REF_OP, &mRuleRef->Header) {
2034 SetLineNo (LineNo);
2035 mRuleRef->RuleId = EFI_RULE_ID_INVALID;
2036 }
2037
2038 VOID SetRuleId (IN UINT8 RuleId) {
2039 mRuleRef->RuleId = RuleId;
2040 }
2041 };
2042
2043 class CIfrStringRef1 : public CIfrObj, public CIfrOpHeader {
2044 private:
2045 EFI_IFR_STRING_REF1 *mStringRef1;
2046
2047 public:
2048 CIfrStringRef1 (
2049 IN UINT32 LineNo
2050 ) : CIfrObj (EFI_IFR_STRING_REF1_OP, (CHAR8 **)&mStringRef1),
2051 CIfrOpHeader (EFI_IFR_STRING_REF1_OP, &mStringRef1->Header) {
2052 SetLineNo (LineNo);
2053 mStringRef1->StringId = EFI_STRING_ID_INVALID;
2054 }
2055
2056 VOID SetStringId (IN EFI_STRING_ID StringId) {
2057 mStringRef1->StringId = StringId;
2058 }
2059 };
2060
2061 class CIfrStringRef2 : public CIfrObj, public CIfrOpHeader {
2062 private:
2063 EFI_IFR_STRING_REF2 *mStringRef2;
2064
2065 public:
2066 CIfrStringRef2 (
2067 IN UINT32 LineNo
2068 ) : CIfrObj (EFI_IFR_STRING_REF2_OP, (CHAR8 **)&mStringRef2),
2069 CIfrOpHeader (EFI_IFR_STRING_REF2_OP, &mStringRef2->Header) {
2070 SetLineNo (LineNo);
2071 }
2072 };
2073
2074 class CIfrThis : public CIfrObj, public CIfrOpHeader {
2075 private:
2076 EFI_IFR_THIS *mThis;
2077
2078 public:
2079 CIfrThis (
2080 IN UINT32 LineNo
2081 ) : CIfrObj (EFI_IFR_THIS_OP, (CHAR8 **)&mThis),
2082 CIfrOpHeader (EFI_IFR_THIS_OP, &mThis->Header) {
2083 SetLineNo (LineNo);
2084 }
2085 };
2086
2087 class CIfrSecurity : public CIfrObj, public CIfrOpHeader {
2088 private:
2089 EFI_IFR_SECURITY *mSecurity;
2090
2091 public:
2092 CIfrSecurity (
2093 IN UINT32 LineNo
2094 ) : CIfrObj (EFI_IFR_SECURITY_OP, (CHAR8 **)&mSecurity),
2095 CIfrOpHeader (EFI_IFR_SECURITY_OP, &mSecurity->Header) {
2096 SetLineNo (LineNo);
2097 memset (&mSecurity->Permissions, 0, sizeof (EFI_GUID));
2098 }
2099
2100 VOID SetPermissions (IN EFI_GUID *Permissions) {
2101 memcpy (&mSecurity->Permissions, Permissions, sizeof (EFI_GUID));
2102 }
2103 };
2104
2105 class CIfrUint8 : public CIfrObj, public CIfrOpHeader {
2106 private:
2107 EFI_IFR_UINT8 *mUint8;
2108
2109 public:
2110 CIfrUint8 (
2111 IN UINT32 LineNo
2112 ) : CIfrObj (EFI_IFR_UINT8_OP, (CHAR8 **)&mUint8),
2113 CIfrOpHeader (EFI_IFR_UINT8_OP, &mUint8->Header) {
2114 SetLineNo (LineNo);
2115 }
2116
2117 VOID SetValue (IN UINT8 Value) {
2118 mUint8->Value = Value;
2119 }
2120 };
2121
2122 class CIfrUint16 : public CIfrObj, public CIfrOpHeader {
2123 private:
2124 EFI_IFR_UINT16 *mUint16;
2125
2126 public:
2127 CIfrUint16 (
2128 IN UINT32 LineNo
2129 ) : CIfrObj (EFI_IFR_UINT16_OP, (CHAR8 **)&mUint16),
2130 CIfrOpHeader (EFI_IFR_UINT16_OP, &mUint16->Header) {
2131 SetLineNo (LineNo);
2132 }
2133
2134 VOID SetValue (IN UINT16 Value) {
2135 mUint16->Value = Value;
2136 }
2137 };
2138
2139 class CIfrUint32 : public CIfrObj, public CIfrOpHeader {
2140 private:
2141 EFI_IFR_UINT32 *mUint32;
2142
2143 public:
2144 CIfrUint32 (
2145 IN UINT32 LineNo
2146 ) : CIfrObj (EFI_IFR_UINT32_OP, (CHAR8 **)&mUint32),
2147 CIfrOpHeader (EFI_IFR_UINT32_OP, &mUint32->Header) {
2148 SetLineNo (LineNo);
2149 }
2150
2151 VOID SetValue (IN UINT32 Value) {
2152 mUint32->Value = Value;
2153 }
2154 };
2155
2156 class CIfrUint64 : public CIfrObj, public CIfrOpHeader {
2157 private:
2158 EFI_IFR_UINT64 *mUint64;
2159
2160 public:
2161 CIfrUint64 (
2162 IN UINT32 LineNo
2163 ) : CIfrObj (EFI_IFR_UINT64_OP, (CHAR8 **)&mUint64),
2164 CIfrOpHeader (EFI_IFR_UINT64_OP, &mUint64->Header) {
2165 SetLineNo (LineNo);
2166 }
2167
2168 VOID SetValue (IN UINT64 Value) {
2169 mUint64->Value = Value;
2170 }
2171 };
2172
2173 class CIfrTrue : public CIfrObj, public CIfrOpHeader {
2174 private:
2175 EFI_IFR_TRUE *mTrue;
2176
2177 public:
2178 CIfrTrue (
2179 IN UINT32 LineNo
2180 ) : CIfrObj (EFI_IFR_TRUE_OP, (CHAR8 **)&mTrue),
2181 CIfrOpHeader (EFI_IFR_TRUE_OP, &mTrue->Header) {
2182 SetLineNo (LineNo);
2183 }
2184 };
2185
2186 class CIfrFalse : public CIfrObj, public CIfrOpHeader {
2187 private:
2188 EFI_IFR_FALSE *mFalse;
2189
2190 public:
2191 CIfrFalse (
2192 IN UINT32 LineNo
2193 ) : CIfrObj (EFI_IFR_FALSE_OP, (CHAR8 **)&mFalse),
2194 CIfrOpHeader (EFI_IFR_FALSE_OP, &mFalse->Header) {
2195 SetLineNo (LineNo);
2196 }
2197 };
2198
2199 class CIfrOne : public CIfrObj, public CIfrOpHeader {
2200 private:
2201 EFI_IFR_ONE *mOne;
2202
2203 public:
2204 CIfrOne (
2205 IN UINT32 LineNo
2206 ) : CIfrObj (EFI_IFR_ONE_OP, (CHAR8 **)&mOne),
2207 CIfrOpHeader (EFI_IFR_ONE_OP, &mOne->Header) {
2208 SetLineNo (LineNo);
2209 }
2210 };
2211
2212 class CIfrOnes : public CIfrObj, public CIfrOpHeader {
2213 private:
2214 EFI_IFR_ONES *mOnes;
2215
2216 public:
2217 CIfrOnes (
2218 IN UINT32 LineNo
2219 ) : CIfrObj (EFI_IFR_ONES_OP, (CHAR8 **)&mOnes),
2220 CIfrOpHeader (EFI_IFR_ONES_OP, &mOnes->Header) {
2221 SetLineNo (LineNo);
2222 }
2223 };
2224
2225 class CIfrZero : public CIfrObj, public CIfrOpHeader {
2226 private:
2227 EFI_IFR_ZERO *mZero;
2228
2229 public:
2230 CIfrZero (
2231 IN UINT32 LineNo
2232 ) : CIfrObj (EFI_IFR_ZERO_OP, (CHAR8 **)&mZero),
2233 CIfrOpHeader (EFI_IFR_ZERO_OP, &mZero->Header) {
2234 SetLineNo (LineNo);
2235 }
2236 };
2237
2238 class CIfrUndefined : public CIfrObj, public CIfrOpHeader {
2239 private:
2240 EFI_IFR_UNDEFINED *mUndefined;
2241
2242 public:
2243 CIfrUndefined (
2244 IN UINT32 LineNo
2245 ) : CIfrObj (EFI_IFR_UNDEFINED_OP, (CHAR8 **)&mUndefined),
2246 CIfrOpHeader (EFI_IFR_UNDEFINED_OP, &mUndefined->Header) {
2247 SetLineNo (LineNo);
2248 }
2249 };
2250
2251 class CIfrVersion : public CIfrObj, public CIfrOpHeader {
2252 private:
2253 EFI_IFR_VERSION *mVersion;
2254
2255 public:
2256 CIfrVersion (
2257 IN UINT32 LineNo
2258 ) : CIfrObj (EFI_IFR_VERSION_OP, (CHAR8 **)&mVersion),
2259 CIfrOpHeader (EFI_IFR_VERSION_OP, &mVersion->Header) {
2260 SetLineNo (LineNo);
2261 }
2262 };
2263
2264 class CIfrLength : public CIfrObj, public CIfrOpHeader {
2265 private:
2266 EFI_IFR_LENGTH *mLength;
2267
2268 public:
2269 CIfrLength (
2270 IN UINT32 LineNo
2271 ) : CIfrObj (EFI_IFR_LENGTH_OP, (CHAR8 **)&mLength),
2272 CIfrOpHeader (EFI_IFR_LENGTH_OP, &mLength->Header) {
2273 SetLineNo (LineNo);
2274 }
2275 };
2276
2277 class CIfrNot : public CIfrObj, public CIfrOpHeader {
2278 private:
2279 EFI_IFR_NOT *mNot;
2280
2281 public:
2282 CIfrNot (
2283 IN UINT32 LineNo
2284 ) : CIfrObj (EFI_IFR_NOT_OP, (CHAR8 **)&mNot),
2285 CIfrOpHeader (EFI_IFR_NOT_OP, &mNot->Header) {
2286 SetLineNo (LineNo);
2287 }
2288 };
2289
2290 class CIfrBitWiseNot : public CIfrObj, public CIfrOpHeader {
2291 private:
2292 EFI_IFR_BITWISE_NOT *mBitWise;
2293
2294 public:
2295 CIfrBitWiseNot (
2296 IN UINT32 LineNo
2297 ) : CIfrObj (EFI_IFR_BITWISE_NOT_OP, (CHAR8 **)&mBitWise),
2298 CIfrOpHeader (EFI_IFR_BITWISE_NOT_OP, &mBitWise->Header) {
2299 SetLineNo (LineNo);
2300 }
2301 };
2302
2303 class CIfrToBoolean : public CIfrObj, public CIfrOpHeader {
2304 private:
2305 EFI_IFR_TO_BOOLEAN *mToBoolean;
2306
2307 public:
2308 CIfrToBoolean (
2309 IN UINT32 LineNo
2310 ) : CIfrObj (EFI_IFR_TO_BOOLEAN_OP, (CHAR8 **)&mToBoolean),
2311 CIfrOpHeader (EFI_IFR_TO_BOOLEAN_OP, &mToBoolean->Header) {
2312 SetLineNo (LineNo);
2313 }
2314 };
2315
2316 class CIfrToString : public CIfrObj, public CIfrOpHeader {
2317 private:
2318 EFI_IFR_TO_STRING *mToString;
2319
2320 public:
2321 CIfrToString (
2322 IN UINT32 LineNo
2323 ) : CIfrObj (EFI_IFR_TO_STRING_OP, (CHAR8 **)&mToString),
2324 CIfrOpHeader (EFI_IFR_TO_STRING_OP, &mToString->Header) {
2325 SetLineNo (LineNo);
2326 }
2327
2328 VOID SetFormat (IN UINT8 Format) {
2329 mToString->Format = Format;
2330 }
2331 };
2332
2333 class CIfrToUint : public CIfrObj, public CIfrOpHeader {
2334 private:
2335 EFI_IFR_TO_UINT *mToUint;
2336
2337 public:
2338 CIfrToUint (
2339 IN UINT32 LineNo
2340 ) : CIfrObj (EFI_IFR_TO_UINT_OP, (CHAR8 **)&mToUint),
2341 CIfrOpHeader (EFI_IFR_TO_UINT_OP, &mToUint->Header) {
2342 SetLineNo (LineNo);
2343 }
2344 };
2345
2346 class CIfrToUpper : public CIfrObj, public CIfrOpHeader {
2347 private:
2348 EFI_IFR_TO_UPPER *mToUpper;
2349
2350 public:
2351 CIfrToUpper (
2352 IN UINT32 LineNo
2353 ) : CIfrObj (EFI_IFR_TO_UPPER_OP, (CHAR8 **)&mToUpper),
2354 CIfrOpHeader (EFI_IFR_TO_UPPER_OP, &mToUpper->Header) {
2355 SetLineNo (LineNo);
2356 }
2357 };
2358
2359 class CIfrToLower : public CIfrObj, public CIfrOpHeader {
2360 private:
2361 EFI_IFR_TO_LOWER *mToLower;
2362
2363 public:
2364 CIfrToLower (
2365 IN UINT32 LineNo
2366 ) : CIfrObj (EFI_IFR_TO_LOWER_OP, (CHAR8 **)&mToLower),
2367 CIfrOpHeader (EFI_IFR_TO_LOWER_OP, &mToLower->Header) {
2368 SetLineNo (LineNo);
2369 }
2370 };
2371
2372 class CIfrAdd : public CIfrObj, public CIfrOpHeader {
2373 private:
2374 EFI_IFR_ADD *mAdd;
2375
2376 public:
2377 CIfrAdd (
2378 IN UINT32 LineNo
2379 ) : CIfrObj (EFI_IFR_ADD_OP, (CHAR8 **)&mAdd),
2380 CIfrOpHeader (EFI_IFR_ADD_OP, &mAdd->Header) {
2381 SetLineNo (LineNo);
2382 }
2383 };
2384
2385 class CIfrBitWiseAnd : public CIfrObj, public CIfrOpHeader {
2386 private:
2387 EFI_IFR_BITWISE_AND *mBitWiseAnd;
2388
2389 public:
2390 CIfrBitWiseAnd (
2391 IN UINT32 LineNo
2392 ) : CIfrObj (EFI_IFR_BITWISE_AND_OP, (CHAR8 **)&mBitWiseAnd),
2393 CIfrOpHeader (EFI_IFR_BITWISE_AND_OP, &mBitWiseAnd->Header) {
2394 SetLineNo(LineNo);
2395 }
2396 };
2397
2398 class CIfrBitWiseOr : public CIfrObj, public CIfrOpHeader {
2399 private:
2400 EFI_IFR_BITWISE_OR *mBitWiseOr;
2401
2402 public:
2403 CIfrBitWiseOr (
2404 IN UINT32 LineNo
2405 ) : CIfrObj (EFI_IFR_BITWISE_OR_OP, (CHAR8 **)&mBitWiseOr),
2406 CIfrOpHeader (EFI_IFR_BITWISE_OR_OP, &mBitWiseOr->Header) {
2407 SetLineNo (LineNo);
2408 }
2409 };
2410
2411 class CIfrAnd : public CIfrObj, public CIfrOpHeader {
2412 private:
2413 EFI_IFR_AND *mAnd;
2414
2415 public:
2416 CIfrAnd (
2417 IN UINT32 LineNo
2418 ) : CIfrObj (EFI_IFR_AND_OP, (CHAR8 **)&mAnd),
2419 CIfrOpHeader (EFI_IFR_AND_OP, &mAnd->Header) {
2420 SetLineNo (LineNo);
2421 }
2422 };
2423
2424 class CIfrCatenate : public CIfrObj, public CIfrOpHeader {
2425 private:
2426 EFI_IFR_CATENATE *mCatenate;
2427
2428 public:
2429 CIfrCatenate (
2430 IN UINT32 LineNo
2431 ) : CIfrObj (EFI_IFR_CATENATE_OP, (CHAR8 **)&mCatenate),
2432 CIfrOpHeader (EFI_IFR_CATENATE_OP, &mCatenate->Header) {
2433 SetLineNo (LineNo);
2434 }
2435 };
2436
2437 class CIfrDivide : public CIfrObj, public CIfrOpHeader {
2438 private:
2439 EFI_IFR_DIVIDE *mDivide;
2440
2441 public:
2442 CIfrDivide (
2443 IN UINT32 LineNo
2444 ) : CIfrObj (EFI_IFR_DIVIDE_OP, (CHAR8 **)&mDivide),
2445 CIfrOpHeader (EFI_IFR_DIVIDE_OP, &mDivide->Header) {
2446 SetLineNo (LineNo);
2447 }
2448 };
2449
2450 class CIfrEqual : public CIfrObj, public CIfrOpHeader {
2451 private:
2452 EFI_IFR_EQUAL *mEqual;
2453
2454 public:
2455 CIfrEqual (
2456 IN UINT32 LineNo
2457 ) : CIfrObj (EFI_IFR_EQUAL_OP, (CHAR8 **)&mEqual),
2458 CIfrOpHeader (EFI_IFR_EQUAL_OP, &mEqual->Header) {
2459 SetLineNo (LineNo);
2460 }
2461 };
2462
2463 class CIfrGreaterEqual : public CIfrObj, public CIfrOpHeader {
2464 private:
2465 EFI_IFR_GREATER_EQUAL *mGreaterEqual;
2466
2467 public:
2468 CIfrGreaterEqual (
2469 IN UINT32 LineNo
2470 ) : CIfrObj (EFI_IFR_GREATER_EQUAL_OP, (CHAR8 **)&mGreaterEqual),
2471 CIfrOpHeader (EFI_IFR_GREATER_EQUAL_OP, &mGreaterEqual->Header) {
2472 SetLineNo (LineNo);
2473 }
2474 };
2475
2476 class CIfrGreaterThan : public CIfrObj, public CIfrOpHeader {
2477 private:
2478 EFI_IFR_GREATER_THAN *mGreaterThan;
2479
2480 public:
2481 CIfrGreaterThan (
2482 IN UINT32 LineNo
2483 ) : CIfrObj (EFI_IFR_GREATER_THAN_OP, (CHAR8 **)&mGreaterThan),
2484 CIfrOpHeader (EFI_IFR_GREATER_THAN_OP, &mGreaterThan->Header) {
2485 SetLineNo (LineNo);
2486 }
2487 };
2488
2489 class CIfrLessEqual : public CIfrObj, public CIfrOpHeader {
2490 private:
2491 EFI_IFR_LESS_EQUAL *mLessEqual;
2492
2493 public:
2494 CIfrLessEqual (
2495 IN UINT32 LineNo
2496 ) : CIfrObj (EFI_IFR_LESS_EQUAL_OP, (CHAR8 **)&mLessEqual),
2497 CIfrOpHeader (EFI_IFR_LESS_EQUAL_OP, &mLessEqual->Header) {
2498 SetLineNo (LineNo);
2499 }
2500 };
2501
2502 class CIfrLessThan : public CIfrObj, public CIfrOpHeader {
2503 private:
2504 EFI_IFR_LESS_THAN *mLessThan;
2505
2506 public:
2507 CIfrLessThan (
2508 IN UINT32 LineNo
2509 ) : CIfrObj (EFI_IFR_LESS_THAN_OP, (CHAR8 **)&mLessThan),
2510 CIfrOpHeader (EFI_IFR_LESS_THAN_OP, &mLessThan->Header) {
2511 SetLineNo (LineNo);
2512 }
2513 };
2514
2515 class CIfrMap : public CIfrObj, public CIfrOpHeader{
2516 private:
2517 EFI_IFR_MAP *mMap;
2518
2519 public:
2520 CIfrMap (
2521 IN UINT32 LineNo
2522 ) : CIfrObj (EFI_IFR_MAP_OP, (CHAR8 **)&mMap),
2523 CIfrOpHeader (EFI_IFR_MAP_OP, &mMap->Header) {
2524 SetLineNo (LineNo);
2525 }
2526 };
2527
2528 class CIfrMatch : public CIfrObj, public CIfrOpHeader {
2529 private:
2530 EFI_IFR_MATCH *mMatch;
2531
2532 public:
2533 CIfrMatch (
2534 IN UINT32 LineNo
2535 ) : CIfrObj (EFI_IFR_MATCH_OP, (CHAR8 **)&mMatch),
2536 CIfrOpHeader (EFI_IFR_MATCH_OP, &mMatch->Header) {
2537 SetLineNo (LineNo);
2538 }
2539 };
2540
2541 class CIfrMultiply : public CIfrObj, public CIfrOpHeader {
2542 private:
2543 EFI_IFR_MULTIPLY *mMultiply;
2544
2545 public:
2546 CIfrMultiply (
2547 IN UINT32 LineNo
2548 ) : CIfrObj (EFI_IFR_MULTIPLY_OP, (CHAR8 **)&mMultiply),
2549 CIfrOpHeader (EFI_IFR_MULTIPLY_OP, &mMultiply->Header) {
2550 SetLineNo (LineNo);
2551 }
2552 };
2553
2554 class CIfrModulo : public CIfrObj, public CIfrOpHeader {
2555 private:
2556 EFI_IFR_MODULO *mModulo;
2557
2558 public:
2559 CIfrModulo (
2560 IN UINT32 LineNo
2561 ) : CIfrObj (EFI_IFR_MODULO_OP, (CHAR8 **)&mModulo),
2562 CIfrOpHeader (EFI_IFR_MODULO_OP, &mModulo->Header) {
2563 SetLineNo (LineNo);
2564 }
2565 };
2566
2567 class CIfrNotEqual : public CIfrObj, public CIfrOpHeader {
2568 private:
2569 EFI_IFR_NOT_EQUAL *mNotEqual;
2570
2571 public:
2572 CIfrNotEqual (
2573 IN UINT32 LineNo
2574 ) : CIfrObj (EFI_IFR_NOT_EQUAL_OP, (CHAR8 **)&mNotEqual),
2575 CIfrOpHeader (EFI_IFR_NOT_EQUAL_OP, &mNotEqual->Header) {
2576 SetLineNo (LineNo);
2577 }
2578 };
2579
2580 class CIfrOr : public CIfrObj, public CIfrOpHeader {
2581 private:
2582 EFI_IFR_OR *mOr;
2583
2584 public:
2585 CIfrOr (
2586 IN UINT32 LineNo
2587 ) : CIfrObj (EFI_IFR_OR_OP, (CHAR8 **)&mOr),
2588 CIfrOpHeader (EFI_IFR_OR_OP, &mOr->Header) {
2589 SetLineNo (LineNo);
2590 }
2591 };
2592
2593 class CIfrShiftLeft : public CIfrObj, public CIfrOpHeader {
2594 private:
2595 EFI_IFR_SHIFT_LEFT *mShiftLeft;
2596
2597 public:
2598 CIfrShiftLeft (
2599 IN UINT32 LineNo
2600 ) : CIfrObj (EFI_IFR_SHIFT_LEFT_OP, (CHAR8 **)&mShiftLeft),
2601 CIfrOpHeader (EFI_IFR_SHIFT_LEFT_OP, &mShiftLeft->Header) {
2602 SetLineNo (LineNo);
2603 }
2604 };
2605
2606 class CIfrShiftRight : public CIfrObj, public CIfrOpHeader {
2607 private:
2608 EFI_IFR_SHIFT_RIGHT *mShiftRight;
2609
2610 public:
2611 CIfrShiftRight (
2612 IN UINT32 LineNo
2613 ) : CIfrObj (EFI_IFR_SHIFT_RIGHT_OP, (CHAR8 **)&mShiftRight),
2614 CIfrOpHeader (EFI_IFR_SHIFT_RIGHT_OP, &mShiftRight->Header) {
2615 SetLineNo (LineNo);
2616 }
2617 };
2618
2619 class CIfrSubtract : public CIfrObj, public CIfrOpHeader {
2620 private:
2621 EFI_IFR_SUBTRACT *mSubtract;
2622
2623 public:
2624 CIfrSubtract (
2625 IN UINT32 LineNo
2626 ) : CIfrObj (EFI_IFR_SUBTRACT_OP, (CHAR8 **)&mSubtract),
2627 CIfrOpHeader (EFI_IFR_SUBTRACT_OP, &mSubtract->Header) {
2628 SetLineNo (LineNo);
2629 }
2630 };
2631
2632 class CIfrConditional : public CIfrObj, public CIfrOpHeader {
2633 private:
2634 EFI_IFR_CONDITIONAL *mConditional;
2635
2636 public:
2637 CIfrConditional (
2638 IN UINT32 LineNo
2639 ) : CIfrObj (EFI_IFR_CONDITIONAL_OP, (CHAR8 **)&mConditional),
2640 CIfrOpHeader (EFI_IFR_CONDITIONAL_OP, &mConditional->Header) {
2641 SetLineNo (LineNo);
2642 }
2643 };
2644
2645 class CIfrFind : public CIfrObj, public CIfrOpHeader {
2646 private:
2647 EFI_IFR_FIND *mFind;
2648
2649 public:
2650 CIfrFind (
2651 IN UINT32 LineNo
2652 ) : CIfrObj (EFI_IFR_FIND_OP, (CHAR8 **)&mFind),
2653 CIfrOpHeader (EFI_IFR_FIND_OP, &mFind->Header) {
2654 SetLineNo (LineNo);
2655 }
2656
2657 VOID SetFormat (IN UINT8 Format) {
2658 mFind->Format = Format;
2659 }
2660 };
2661
2662 class CIfrMid : public CIfrObj, public CIfrOpHeader {
2663 private:
2664 EFI_IFR_MID *mMid;
2665
2666 public:
2667 CIfrMid (
2668 IN UINT32 LineNo
2669 ) : CIfrObj (EFI_IFR_MID_OP, (CHAR8 **)&mMid),
2670 CIfrOpHeader (EFI_IFR_MID_OP, &mMid->Header) {
2671 SetLineNo (LineNo);
2672 }
2673 };
2674
2675 class CIfrToken : public CIfrObj, public CIfrOpHeader {
2676 private:
2677 EFI_IFR_TOKEN *mToken;
2678
2679 public:
2680 CIfrToken (
2681 IN UINT32 LineNo
2682 ) : CIfrObj (EFI_IFR_TOKEN_OP, (CHAR8 **)&mToken),
2683 CIfrOpHeader (EFI_IFR_TOKEN_OP, &mToken->Header) {
2684 SetLineNo (LineNo);
2685 }
2686 };
2687
2688 class CIfrSpan : public CIfrObj, public CIfrOpHeader {
2689 private:
2690 EFI_IFR_SPAN *mSpan;
2691
2692 public:
2693 CIfrSpan (
2694 IN UINT32 LineNo
2695 ) : CIfrObj (EFI_IFR_SPAN_OP, (CHAR8 **)&mSpan),
2696 CIfrOpHeader (EFI_IFR_SPAN_OP, &mSpan->Header) {
2697 SetLineNo (LineNo);
2698 mSpan->Flags = EFI_IFR_FLAGS_FIRST_MATCHING;
2699 }
2700
2701 EFI_VFR_RETURN_CODE SetFlags (IN UINT8 LFlags) {
2702 if (_IS_EQUAL (LFlags, EFI_IFR_FLAGS_FIRST_MATCHING)) {
2703 mSpan->Flags |= EFI_IFR_FLAGS_FIRST_MATCHING;
2704 } else if (_FLAG_TEST_AND_CLEAR (LFlags, EFI_IFR_FLAGS_FIRST_NON_MATCHING)) {
2705 mSpan->Flags |= EFI_IFR_FLAGS_FIRST_NON_MATCHING;
2706 }
2707
2708 return _FLAGS_ZERO (LFlags) ? VFR_RETURN_SUCCESS : VFR_RETURN_FLAGS_UNSUPPORTED;
2709 }
2710 };
2711
2712 #endif