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bcecde14 1/** @file\r
2\r
81c0d6e9 3Copyright (c) 2006 - 2012, Intel Corporation. All rights reserved.<BR>\r
bcecde14 4\r
5This program and the accompanying materials\r
6are licensed and made available under the terms and conditions\r
7of the BSD License which accompanies this distribution. The\r
8full text of the license may be found at\r
9http://opensource.org/licenses/bsd-license.php\r
10\r
11THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
12WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
13\r
14**/\r
15\r
16#ifndef _LEGACY_BIOS_INTERFACE_\r
17#define _LEGACY_BIOS_INTERFACE_\r
18\r
19\r
20#include <FrameworkDxe.h>\r
21\r
22#include <Guid/SmBios.h>\r
23#include <Guid/Acpi.h>\r
24#include <Guid/DxeServices.h>\r
25#include <Guid/LegacyBios.h>\r
26#include <Guid/StatusCodeDataTypeId.h>\r
0f8b0298 27#include <Guid/ImageAuthentication.h>\r
bcecde14 28\r
29#include <Protocol/BlockIo.h>\r
30#include <Protocol/LoadedImage.h>\r
31#include <Protocol/PciIo.h>\r
32#include <Protocol/Cpu.h>\r
f767f990 33#include <Protocol/Timer.h>\r
bcecde14 34#include <Protocol/IsaIo.h>\r
35#include <Protocol/LegacyRegion2.h>\r
36#include <Protocol/SimpleTextIn.h>\r
37#include <Protocol/LegacyInterrupt.h>\r
38#include <Protocol/LegacyBios.h>\r
39#include <Protocol/DiskInfo.h>\r
40#include <Protocol/GenericMemoryTest.h>\r
41#include <Protocol/LegacyBiosPlatform.h>\r
42#include <Protocol/DevicePath.h>\r
43#include <Protocol/Legacy8259.h>\r
44#include <Protocol/PciRootBridgeIo.h>\r
bcecde14 45\r
46#include <Library/BaseLib.h>\r
47#include <Library/DebugLib.h>\r
48#include <Library/UefiLib.h>\r
49#include <Library/BaseMemoryLib.h>\r
50#include <Library/ReportStatusCodeLib.h>\r
51#include <Library/UefiRuntimeServicesTableLib.h>\r
52#include <Library/HobLib.h>\r
53#include <Library/UefiDriverEntryPoint.h>\r
54#include <Library/MemoryAllocationLib.h>\r
55#include <Library/UefiBootServicesTableLib.h>\r
56#include <Library/IoLib.h>\r
57#include <Library/PcdLib.h>\r
58#include <Library/DevicePathLib.h>\r
59#include <Library/DxeServicesTableLib.h>\r
60#include <Library/PeCoffLib.h>\r
61#include <Library/CacheMaintenanceLib.h>\r
62#include <Library/DebugAgentLib.h>\r
63\r
64//\r
bcecde14 65// BUGBUG: This entry maybe changed to PCD in future and wait for\r
66// redesign of BDS library\r
67//\r
68#define MAX_BBS_ENTRIES 0x100\r
69\r
70//\r
71// Thunk Status Codes\r
72// (These apply only to errors with the thunk and not to the code that was\r
73// thunked to.)\r
74//\r
75#define THUNK_OK 0x00\r
76#define THUNK_ERR_A20_UNSUP 0x01\r
77#define THUNK_ERR_A20_FAILED 0x02\r
78\r
79//\r
80// Vector base definitions\r
81//\r
82//\r
83// 8259 Hardware definitions\r
84//\r
85#define LEGACY_MODE_BASE_VECTOR_MASTER 0x08\r
86#define LEGACY_MODE_BASE_VECTOR_SLAVE 0x70\r
87\r
88//\r
89// The original PC used INT8-F for master PIC. Since these mapped over\r
90// processor exceptions TIANO moved the master PIC to INT68-6F.\r
91//\r
92// The vector base for slave PIC is set as 0x70 for PC-AT compatibility.\r
93//\r
94#define PROTECTED_MODE_BASE_VECTOR_MASTER 0x68\r
95#define PROTECTED_MODE_BASE_VECTOR_SLAVE 0x70\r
96\r
81c0d6e9 97//\r
98// When we call CSM16 functions, some CSM16 use es:[offset + 0xabcd] to get data passed from CSM32, \r
99// offset + 0xabcd could overflow which exceeds 0xFFFF which is invalid in real mode. \r
100// So this will keep offset as small as possible to avoid offset overflow in real mode. \r
101//\r
102#define NORMALIZE_EFI_SEGMENT(_Adr) (UINT16) (((UINTN) (_Adr)) >> 4)\r
103#define NORMALIZE_EFI_OFFSET(_Adr) (UINT16) (((UINT16) ((UINTN) (_Adr))) & 0xf)\r
104\r
bcecde14 105//\r
106// Trace defines\r
107//\r
108//\r
109#define LEGACY_BDA_TRACE 0x000\r
110#define LEGACY_BIOS_TRACE 0x040\r
111#define LEGACY_BOOT_TRACE 0x080\r
112#define LEGACY_CMOS_TRACE 0x0C0\r
113#define LEGACY_IDE_TRACE 0x100\r
114#define LEGACY_MP_TRACE 0x140\r
115#define LEGACY_PCI_TRACE 0x180\r
116#define LEGACY_SIO_TRACE 0x1C0\r
117\r
118#define LEGACY_PCI_TRACE_000 LEGACY_PCI_TRACE + 0x00\r
119#define LEGACY_PCI_TRACE_001 LEGACY_PCI_TRACE + 0x01\r
120#define LEGACY_PCI_TRACE_002 LEGACY_PCI_TRACE + 0x02\r
121#define LEGACY_PCI_TRACE_003 LEGACY_PCI_TRACE + 0x03\r
122#define LEGACY_PCI_TRACE_004 LEGACY_PCI_TRACE + 0x04\r
123#define LEGACY_PCI_TRACE_005 LEGACY_PCI_TRACE + 0x05\r
124#define LEGACY_PCI_TRACE_006 LEGACY_PCI_TRACE + 0x06\r
125#define LEGACY_PCI_TRACE_007 LEGACY_PCI_TRACE + 0x07\r
126#define LEGACY_PCI_TRACE_008 LEGACY_PCI_TRACE + 0x08\r
127#define LEGACY_PCI_TRACE_009 LEGACY_PCI_TRACE + 0x09\r
128#define LEGACY_PCI_TRACE_00A LEGACY_PCI_TRACE + 0x0A\r
129#define LEGACY_PCI_TRACE_00B LEGACY_PCI_TRACE + 0x0B\r
130#define LEGACY_PCI_TRACE_00C LEGACY_PCI_TRACE + 0x0C\r
131#define LEGACY_PCI_TRACE_00D LEGACY_PCI_TRACE + 0x0D\r
132#define LEGACY_PCI_TRACE_00E LEGACY_PCI_TRACE + 0x0E\r
133#define LEGACY_PCI_TRACE_00F LEGACY_PCI_TRACE + 0x0F\r
134\r
135\r
136typedef struct {\r
137 UINTN PciSegment;\r
138 UINTN PciBus;\r
139 UINTN PciDevice;\r
140 UINTN PciFunction;\r
141 UINT32 ShadowAddress;\r
142 UINT32 ShadowedSize;\r
143 UINT8 DiskStart;\r
144 UINT8 DiskEnd;\r
145} ROM_INSTANCE_ENTRY;\r
146\r
147//\r
148// Values for RealModeGdt\r
149//\r
150#if defined (MDE_CPU_IA32)\r
151\r
152#define NUM_REAL_GDT_ENTRIES 3\r
153#define CONVENTIONAL_MEMORY_TOP 0xA0000 // 640 KB\r
154#define INITIAL_VALUE_BELOW_1K 0x0\r
155\r
156#elif defined (MDE_CPU_X64)\r
157\r
158#define NUM_REAL_GDT_ENTRIES 8\r
159#define CONVENTIONAL_MEMORY_TOP 0xA0000 // 640 KB\r
160#define INITIAL_VALUE_BELOW_1K 0x0\r
161\r
162#elif defined (MDE_CPU_IPF)\r
163\r
164#define NUM_REAL_GDT_ENTRIES 3\r
165#define CONVENTIONAL_MEMORY_TOP 0x80000 // 512 KB\r
166#define INITIAL_VALUE_BELOW_1K 0xff\r
167\r
168#endif\r
169\r
bcecde14 170#pragma pack(1)\r
171\r
172//\r
173// Define what a processor GDT looks like\r
174//\r
175typedef struct {\r
176 UINT32 LimitLo : 16;\r
177 UINT32 BaseLo : 16;\r
178 UINT32 BaseMid : 8;\r
179 UINT32 Type : 4;\r
180 UINT32 System : 1;\r
181 UINT32 Dpl : 2;\r
182 UINT32 Present : 1;\r
183 UINT32 LimitHi : 4;\r
184 UINT32 Software : 1;\r
185 UINT32 Reserved : 1;\r
186 UINT32 DefaultSize : 1;\r
187 UINT32 Granularity : 1;\r
188 UINT32 BaseHi : 8;\r
189} GDT32;\r
190\r
191typedef struct {\r
192 UINT16 LimitLow;\r
193 UINT16 BaseLow;\r
194 UINT8 BaseMid;\r
195 UINT8 Attribute;\r
196 UINT8 LimitHi;\r
197 UINT8 BaseHi;\r
198} GDT64;\r
199\r
200//\r
201// Define what a processor descriptor looks like\r
202// This data structure must be kept in sync with ASM STRUCT in Thunk.inc\r
203//\r
204typedef struct {\r
205 UINT16 Limit;\r
206 UINT64 Base;\r
207} DESCRIPTOR64;\r
208\r
209typedef struct {\r
210 UINT16 Limit;\r
211 UINT32 Base;\r
212} DESCRIPTOR32;\r
213\r
214//\r
215// Low stub lay out\r
216//\r
217#define LOW_STACK_SIZE (8 * 1024) // 8k?\r
218#define EFI_MAX_E820_ENTRY 100\r
219#define FIRST_INSTANCE 1\r
220#define NOT_FIRST_INSTANCE 0\r
221\r
222#if defined (MDE_CPU_IA32)\r
223typedef struct {\r
224 //\r
225 // Space for the code\r
226 // The address of Code is also the beginning of the relocated Thunk code\r
227 //\r
228 CHAR8 Code[4096]; // ?\r
229 //\r
230 // The address of the Reverse Thunk code\r
231 // Note that this member CONTAINS the address of the relocated reverse thunk\r
232 // code unlike the member variable 'Code', which IS the address of the Thunk\r
233 // code.\r
234 //\r
235 UINT32 LowReverseThunkStart;\r
236\r
237 //\r
238 // Data for the code (cs releative)\r
239 //\r
240 DESCRIPTOR32 GdtDesc; // Protected mode GDT\r
241 DESCRIPTOR32 IdtDesc; // Protected mode IDT\r
242 UINT32 FlatSs;\r
243 UINT32 FlatEsp;\r
244\r
245 UINT32 LowCodeSelector; // Low code selector in GDT\r
246 UINT32 LowDataSelector; // Low data selector in GDT\r
247 UINT32 LowStack;\r
248 DESCRIPTOR32 RealModeIdtDesc;\r
249\r
250 //\r
251 // real-mode GDT (temporary GDT with two real mode segment descriptors)\r
252 //\r
253 GDT32 RealModeGdt[NUM_REAL_GDT_ENTRIES];\r
254 DESCRIPTOR32 RealModeGdtDesc;\r
255\r
256 //\r
257 // Members specifically for the reverse thunk\r
258 // The RevReal* members are used to store the current state of real mode\r
259 // before performing the reverse thunk. The RevFlat* members must be set\r
260 // before calling the reverse thunk assembly code.\r
261 //\r
262 UINT16 RevRealDs;\r
263 UINT16 RevRealSs;\r
264 UINT32 RevRealEsp;\r
265 DESCRIPTOR32 RevRealIdtDesc;\r
266 UINT16 RevFlatDataSelector; // Flat data selector in GDT\r
267 UINT32 RevFlatStack;\r
268\r
269 //\r
270 // A low memory stack\r
271 //\r
272 CHAR8 Stack[LOW_STACK_SIZE];\r
273\r
274 //\r
275 // Stack for flat mode after reverse thunk\r
276 // @bug - This may no longer be necessary if the reverse thunk interface\r
277 // is changed to have the flat stack in a different location.\r
278 //\r
279 CHAR8 RevThunkStack[LOW_STACK_SIZE];\r
280\r
281 //\r
282 // Legacy16 Init memory map info\r
283 //\r
284 EFI_TO_COMPATIBILITY16_INIT_TABLE EfiToLegacy16InitTable;\r
285\r
286 EFI_TO_COMPATIBILITY16_BOOT_TABLE EfiToLegacy16BootTable;\r
287\r
288 CHAR8 InterruptRedirectionCode[32];\r
289 EFI_LEGACY_INSTALL_PCI_HANDLER PciHandler;\r
290 EFI_DISPATCH_OPROM_TABLE DispatchOpromTable;\r
291 BBS_TABLE BbsTable[MAX_BBS_ENTRIES];\r
292} LOW_MEMORY_THUNK;\r
293\r
294#elif defined (MDE_CPU_X64)\r
295\r
296typedef struct {\r
297 //\r
298 // Space for the code\r
299 // The address of Code is also the beginning of the relocated Thunk code\r
300 //\r
301 CHAR8 Code[4096]; // ?\r
302\r
303 //\r
304 // Data for the code (cs releative)\r
305 //\r
306 DESCRIPTOR64 X64GdtDesc; // Protected mode GDT\r
307 DESCRIPTOR64 X64IdtDesc; // Protected mode IDT\r
308 UINTN X64Ss;\r
309 UINTN X64Esp;\r
310\r
311 UINTN RealStack;\r
312 DESCRIPTOR32 RealModeIdtDesc;\r
313 DESCRIPTOR32 RealModeGdtDesc;\r
314\r
315 //\r
316 // real-mode GDT (temporary GDT with two real mode segment descriptors)\r
317 //\r
318 GDT64 RealModeGdt[NUM_REAL_GDT_ENTRIES];\r
319 UINT64 PageMapLevel4;\r
320\r
321 //\r
322 // A low memory stack\r
323 //\r
324 CHAR8 Stack[LOW_STACK_SIZE];\r
325\r
326 //\r
327 // Legacy16 Init memory map info\r
328 //\r
329 EFI_TO_COMPATIBILITY16_INIT_TABLE EfiToLegacy16InitTable;\r
330\r
331 EFI_TO_COMPATIBILITY16_BOOT_TABLE EfiToLegacy16BootTable;\r
332\r
333 CHAR8 InterruptRedirectionCode[32];\r
334 EFI_LEGACY_INSTALL_PCI_HANDLER PciHandler;\r
335 EFI_DISPATCH_OPROM_TABLE DispatchOpromTable;\r
336 BBS_TABLE BbsTable[MAX_BBS_ENTRIES];\r
337} LOW_MEMORY_THUNK;\r
338\r
339#elif defined (MDE_CPU_IPF)\r
340\r
341typedef struct {\r
342 //\r
343 // Space for the code\r
344 // The address of Code is also the beginning of the relocated Thunk code\r
345 //\r
346 CHAR8 Code[4096]; // ?\r
347 //\r
348 // The address of the Reverse Thunk code\r
349 // Note that this member CONTAINS the address of the relocated reverse thunk\r
350 // code unlike the member variable 'Code', which IS the address of the Thunk\r
351 // code.\r
352 //\r
353 UINT32 LowReverseThunkStart;\r
354\r
355 //\r
356 // Data for the code (cs releative)\r
357 //\r
358 DESCRIPTOR32 GdtDesc; // Protected mode GDT\r
359 DESCRIPTOR32 IdtDesc; // Protected mode IDT\r
360 UINT32 FlatSs;\r
361 UINT32 FlatEsp;\r
362\r
363 UINT32 LowCodeSelector; // Low code selector in GDT\r
364 UINT32 LowDataSelector; // Low data selector in GDT\r
365 UINT32 LowStack;\r
366 DESCRIPTOR32 RealModeIdtDesc;\r
367\r
368 //\r
369 // real-mode GDT (temporary GDT with two real mode segment descriptors)\r
370 //\r
371 GDT32 RealModeGdt[NUM_REAL_GDT_ENTRIES];\r
372 DESCRIPTOR32 RealModeGdtDesc;\r
373\r
374 //\r
375 // Members specifically for the reverse thunk\r
376 // The RevReal* members are used to store the current state of real mode\r
377 // before performing the reverse thunk. The RevFlat* members must be set\r
378 // before calling the reverse thunk assembly code.\r
379 //\r
380 UINT16 RevRealDs;\r
381 UINT16 RevRealSs;\r
382 UINT32 RevRealEsp;\r
383 DESCRIPTOR32 RevRealIdtDesc;\r
384 UINT16 RevFlatDataSelector; // Flat data selector in GDT\r
385 UINT32 RevFlatStack;\r
386\r
387 //\r
388 // A low memory stack\r
389 //\r
390 CHAR8 Stack[LOW_STACK_SIZE];\r
391\r
392 //\r
393 // Stack for flat mode after reverse thunk\r
394 // @bug - This may no longer be necessary if the reverse thunk interface\r
395 // is changed to have the flat stack in a different location.\r
396 //\r
397 CHAR8 RevThunkStack[LOW_STACK_SIZE];\r
398\r
399 //\r
400 // Legacy16 Init memory map info\r
401 //\r
402 EFI_TO_COMPATIBILITY16_INIT_TABLE EfiToLegacy16InitTable;\r
403\r
404 EFI_TO_COMPATIBILITY16_BOOT_TABLE EfiToLegacy16BootTable;\r
405\r
406 CHAR8 InterruptRedirectionCode[32];\r
407 EFI_LEGACY_INSTALL_PCI_HANDLER PciHandler;\r
408 EFI_DISPATCH_OPROM_TABLE DispatchOpromTable;\r
409 BBS_TABLE BbsTable[MAX_BBS_ENTRIES];\r
410} LOW_MEMORY_THUNK;\r
411\r
412#endif\r
413\r
414//\r
415// PnP Expansion Header\r
416//\r
417typedef struct {\r
418 UINT32 PnpSignature;\r
419 UINT8 Revision;\r
420 UINT8 Length;\r
421 UINT16 NextHeader;\r
422 UINT8 Reserved1;\r
423 UINT8 Checksum;\r
424 UINT32 DeviceId;\r
425 UINT16 MfgPointer;\r
426 UINT16 ProductNamePointer;\r
427 UINT8 Class;\r
428 UINT8 SubClass;\r
429 UINT8 Interface;\r
430 UINT8 DeviceIndicators;\r
431 UINT16 Bcv;\r
432 UINT16 DisconnectVector;\r
433 UINT16 Bev;\r
434 UINT16 Reserved2;\r
435 UINT16 StaticResourceVector;\r
436} LEGACY_PNP_EXPANSION_HEADER;\r
437\r
438typedef struct {\r
439 UINT8 PciSegment;\r
440 UINT8 PciBus;\r
441 UINT8 PciDevice;\r
442 UINT8 PciFunction;\r
443 UINT16 Vid;\r
444 UINT16 Did;\r
445 UINT16 SysSid;\r
446 UINT16 SVid;\r
447 UINT8 Class;\r
448 UINT8 SubClass;\r
449 UINT8 Interface;\r
450 UINT8 Reserved;\r
451 UINTN RomStart;\r
452 UINTN ManufacturerString;\r
453 UINTN ProductNameString;\r
454} LEGACY_ROM_AND_BBS_TABLE;\r
455\r
456//\r
457// Structure how EFI has mapped a devices HDD drive numbers.\r
458// Boot to EFI aware OS or shell requires this mapping when\r
459// 16-bit CSM assigns drive numbers.\r
460// This mapping is ignored booting to a legacy OS.\r
461//\r
462typedef struct {\r
463 UINT8 PciSegment;\r
464 UINT8 PciBus;\r
465 UINT8 PciDevice;\r
466 UINT8 PciFunction;\r
467 UINT8 StartDriveNumber;\r
468 UINT8 EndDriveNumber;\r
469} LEGACY_EFI_HDD_TABLE;\r
470\r
471//\r
472// This data is passed to Leacy16Boot\r
473//\r
474typedef enum {\r
475 EfiAcpiAddressRangeMemory = 1,\r
476 EfiAcpiAddressRangeReserved = 2,\r
477 EfiAcpiAddressRangeACPI = 3,\r
478 EfiAcpiAddressRangeNVS = 4\r
479} EFI_ACPI_MEMORY_TYPE;\r
480\r
481typedef struct {\r
482 UINT64 BaseAddr;\r
483 UINT64 Length;\r
484 EFI_ACPI_MEMORY_TYPE Type;\r
485} EFI_E820_ENTRY64;\r
486\r
487typedef struct {\r
488 UINT32 BassAddrLow;\r
489 UINT32 BaseAddrHigh;\r
490 UINT32 LengthLow;\r
491 UINT32 LengthHigh;\r
492 EFI_ACPI_MEMORY_TYPE Type;\r
493} EFI_E820_ENTRY;\r
494\r
495#pragma pack()\r
496\r
497extern BBS_TABLE *mBbsTable;\r
498\r
499extern EFI_GENERIC_MEMORY_TEST_PROTOCOL *gGenMemoryTest;\r
500\r
bcecde14 501#define PORT_70 0x70\r
502#define PORT_71 0x71\r
503\r
504#define CMOS_0A 0x0a ///< Status register A\r
505#define CMOS_0D 0x0d ///< Status register D\r
506#define CMOS_0E 0x0e ///< Diagnostic Status\r
507#define CMOS_0F 0x0f ///< Shutdown status\r
508#define CMOS_10 0x10 ///< Floppy type\r
509#define CMOS_12 0x12 ///< IDE type\r
510#define CMOS_14 0x14 ///< Same as BDA 40:10\r
511#define CMOS_15 0x15 ///< Low byte of base memory in 1k increments\r
512#define CMOS_16 0x16 ///< High byte of base memory in 1k increments\r
513#define CMOS_17 0x17 ///< Low byte of 1MB+ memory in 1k increments - max 15 MB\r
514#define CMOS_18 0x18 ///< High byte of 1MB+ memory in 1k increments - max 15 MB\r
515#define CMOS_19 0x19 ///< C: extended drive type\r
516#define CMOS_1A 0x1a ///< D: extended drive type\r
517#define CMOS_2E 0x2e ///< Most significient byte of standard checksum\r
518#define CMOS_2F 0x2f ///< Least significient byte of standard checksum\r
519#define CMOS_30 0x30 ///< CMOS 0x17\r
520#define CMOS_31 0x31 ///< CMOS 0x18\r
521#define CMOS_32 0x32 ///< Century byte\r
522\r
f767f990 523//\r
524// 8254 Timer registers\r
525//\r
526#define TIMER0_COUNT_PORT 0x40\r
527#define TIMER1_COUNT_PORT 0x41\r
528#define TIMER2_COUNT_PORT 0x42\r
529#define TIMER_CONTROL_PORT 0x43\r
530\r
531//\r
532// Timer 0, Read/Write LSB then MSB, Square wave output, binary count use.\r
533//\r
534#define TIMER0_CONTROL_WORD 0x36 \r
bcecde14 535\r
536#define LEGACY_BIOS_INSTANCE_SIGNATURE SIGNATURE_32 ('L', 'B', 'I', 'T')\r
537typedef struct {\r
538 UINTN Signature;\r
539\r
540 EFI_HANDLE Handle;\r
541 EFI_LEGACY_BIOS_PROTOCOL LegacyBios;\r
542\r
543 EFI_HANDLE ImageHandle;\r
544\r
545 //\r
546 // CPU Architectural Protocol \r
547 //\r
548 EFI_CPU_ARCH_PROTOCOL *Cpu;\r
549\r
f767f990 550 //\r
551 // Timer Architectural Protocol \r
552 //\r
553 EFI_TIMER_ARCH_PROTOCOL *Timer;\r
554 BOOLEAN TimerUses8254; \r
555 \r
bcecde14 556 //\r
557 // Protocol to Lock and Unlock 0xc0000 - 0xfffff\r
558 //\r
559 EFI_LEGACY_REGION2_PROTOCOL *LegacyRegion;\r
560\r
561 EFI_LEGACY_BIOS_PLATFORM_PROTOCOL *LegacyBiosPlatform;\r
562\r
563 //\r
564 // Interrupt control for thunk and PCI IRQ\r
565 //\r
566 EFI_LEGACY_8259_PROTOCOL *Legacy8259;\r
f767f990 567 \r
bcecde14 568 //\r
569 // PCI Interrupt PIRQ control\r
570 //\r
571 EFI_LEGACY_INTERRUPT_PROTOCOL *LegacyInterrupt;\r
572\r
573 //\r
574 // Generic Memory Test\r
575 //\r
576 EFI_GENERIC_MEMORY_TEST_PROTOCOL *GenericMemoryTest;\r
577\r
578 //\r
579 // TRUE if PCI Interupt Line registers have been programmed.\r
580 //\r
581 BOOLEAN PciInterruptLine;\r
582\r
583 //\r
584 // Code space below 1MB needed by thunker to transition to real mode.\r
585 // Contains stack and real mode code fragments\r
586 //\r
587 LOW_MEMORY_THUNK *IntThunk;\r
588\r
589 //\r
590 // Starting shadow address of the Legacy BIOS\r
591 //\r
592 UINT32 BiosStart;\r
593 UINT32 LegacyBiosImageSize;\r
594\r
595 //\r
596 // Start of variables used by CsmItp.mac ITP macro file and/os LegacyBios\r
597 //\r
598 UINT8 Dump[4];\r
599\r
600 //\r
601 // $EFI Legacy16 code entry info in memory < 1 MB;\r
602 //\r
603 EFI_COMPATIBILITY16_TABLE *Legacy16Table;\r
604 VOID *Legacy16InitPtr;\r
605 VOID *Legacy16BootPtr;\r
606 VOID *InternalIrqRoutingTable;\r
607 UINT32 NumberIrqRoutingEntries;\r
608 VOID *BbsTablePtr;\r
609 VOID *HddTablePtr;\r
610 UINT32 NumberHddControllers;\r
611\r
612 //\r
613 // Cached copy of Legacy16 entry point\r
614 //\r
615 UINT16 Legacy16CallSegment;\r
616 UINT16 Legacy16CallOffset;\r
617\r
618 //\r
619 // Returned from $EFI and passed in to OPROMS\r
620 //\r
621 UINT16 PnPInstallationCheckSegment;\r
622 UINT16 PnPInstallationCheckOffset;\r
623\r
624 //\r
625 // E820 table\r
626 //\r
627 EFI_E820_ENTRY E820Table[EFI_MAX_E820_ENTRY];\r
628 UINT32 NumberE820Entries;\r
629\r
630 //\r
631 // True if legacy VGA INT 10h handler installed\r
632 //\r
633 BOOLEAN VgaInstalled;\r
634\r
635 //\r
636 // Number of IDE drives\r
637 //\r
638 UINT8 IdeDriveCount;\r
639\r
640 //\r
641 // Current Free Option ROM space. An option ROM must NOT go past\r
642 // BiosStart.\r
643 //\r
644 UINT32 OptionRom;\r
645\r
646 //\r
647 // Save Legacy16 unexpected interrupt vector. Reprogram INT 68-6F from\r
648 // EFI values to legacy value just before boot.\r
649 //\r
650 UINT32 BiosUnexpectedInt;\r
651 UINT32 ThunkSavedInt[8];\r
652 UINT16 ThunkSeg;\r
653 LEGACY_EFI_HDD_TABLE *LegacyEfiHddTable;\r
654 UINT16 LegacyEfiHddTableIndex;\r
655 UINT8 DiskEnd;\r
656 UINT8 Disk4075;\r
657 UINT16 TraceIndex;\r
658 UINT16 Trace[0x200];\r
659\r
660 //\r
661 // Indicate that whether GenericLegacyBoot is entered or not\r
662 //\r
663 BOOLEAN LegacyBootEntered; \r
664\r
665 //\r
666 // CSM16 PCI Interface Version\r
667 //\r
668 UINT16 Csm16PciInterfaceVersion;\r
669\r
670} LEGACY_BIOS_INSTANCE;\r
671\r
672\r
673#pragma pack(1)\r
674\r
675/*\r
676 40:00-01 Com1\r
677 40:02-03 Com2\r
678 40:04-05 Com3\r
679 40:06-07 Com4\r
680 40:08-09 Lpt1\r
681 40:0A-0B Lpt2\r
682 40:0C-0D Lpt3\r
683 40:0E-0E Ebda segment\r
684 40:10-11 MachineConfig\r
685 40:12 Bda12 - skip\r
686 40:13-14 MemSize below 1MB\r
687 40:15-16 Bda15_16 - skip\r
688 40:17 Keyboard Shift status\r
689 40:18-19 Bda18_19 - skip\r
690 40:1A-1B Key buffer head\r
691 40:1C-1D Key buffer tail\r
692 40:1E-3D Bda1E_3D- key buffer -skip\r
693 40:3E-3F FloppyData 3E = Calibration status 3F = Motor status\r
694 40:40 FloppyTimeout\r
695 40:41-74 Bda41_74 - skip\r
696 40:75 Number of HDD drives\r
697 40:76-77 Bda76_77 - skip\r
698 40:78-79 78 = Lpt1 timeout, 79 = Lpt2 timeout\r
699 40:7A-7B 7A = Lpt3 timeout, 7B = Lpt4 timeout\r
700 40:7C-7D 7C = Com1 timeout, 7D = Com2 timeout\r
701 40:7E-7F 7E = Com3 timeout, 7F = Com4 timeout\r
702 40:80-81 Pointer to start of key buffer\r
703 40:82-83 Pointer to end of key buffer\r
704 40:84-87 Bda84_87 - skip\r
705 40:88 HDD Data Xmit rate\r
706 40:89-8f skip\r
707 40:90 Floppy data rate\r
708 40:91-95 skip\r
709 40:96 Keyboard Status\r
710 40:97 LED Status\r
711 40:98-101 skip\r
712*/\r
713typedef struct {\r
714 UINT16 Com1;\r
715 UINT16 Com2;\r
716 UINT16 Com3;\r
717 UINT16 Com4;\r
718 UINT16 Lpt1;\r
719 UINT16 Lpt2;\r
720 UINT16 Lpt3;\r
721 UINT16 Ebda;\r
722 UINT16 MachineConfig;\r
723 UINT8 Bda12;\r
724 UINT16 MemSize;\r
725 UINT8 Bda15_16[0x02];\r
726 UINT8 ShiftStatus;\r
727 UINT8 Bda18_19[0x02];\r
728 UINT16 KeyHead;\r
729 UINT16 KeyTail;\r
730 UINT16 Bda1E_3D[0x10];\r
731 UINT16 FloppyData;\r
732 UINT8 FloppyTimeout;\r
733 UINT8 Bda41_74[0x34];\r
734 UINT8 NumberOfDrives;\r
735 UINT8 Bda76_77[0x02];\r
736 UINT16 Lpt1_2Timeout;\r
737 UINT16 Lpt3_4Timeout;\r
738 UINT16 Com1_2Timeout;\r
739 UINT16 Com3_4Timeout;\r
740 UINT16 KeyStart;\r
741 UINT16 KeyEnd;\r
742 UINT8 Bda84_87[0x4];\r
743 UINT8 DataXmit;\r
744 UINT8 Bda89_8F[0x07];\r
745 UINT8 FloppyXRate;\r
746 UINT8 Bda91_95[0x05];\r
747 UINT8 KeyboardStatus;\r
748 UINT8 LedStatus;\r
749} BDA_STRUC;\r
750#pragma pack()\r
751\r
752#define LEGACY_BIOS_INSTANCE_FROM_THIS(this) CR (this, LEGACY_BIOS_INSTANCE, LegacyBios, LEGACY_BIOS_INSTANCE_SIGNATURE)\r
753\r
754/**\r
755 Thunk to 16-bit real mode and execute a software interrupt with a vector\r
756 of BiosInt. Regs will contain the 16-bit register context on entry and\r
757 exit.\r
758\r
759 @param This Protocol instance pointer.\r
760 @param BiosInt Processor interrupt vector to invoke\r
761 @param Regs Register contexted passed into (and returned) from thunk to\r
762 16-bit mode\r
763\r
764 @retval FALSE Thunk completed, and there were no BIOS errors in the target code.\r
765 See Regs for status.\r
766 @retval TRUE There was a BIOS erro in the target code.\r
767\r
768**/\r
769BOOLEAN\r
770EFIAPI\r
771LegacyBiosInt86 (\r
772 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
773 IN UINT8 BiosInt,\r
774 IN EFI_IA32_REGISTER_SET *Regs\r
775 );\r
776\r
777\r
778/**\r
779 Thunk to 16-bit real mode and call Segment:Offset. Regs will contain the\r
780 16-bit register context on entry and exit. Arguments can be passed on\r
781 the Stack argument\r
782\r
783 @param This Protocol instance pointer.\r
784 @param Segment Segemnt of 16-bit mode call\r
785 @param Offset Offset of 16-bit mdoe call\r
786 @param Regs Register contexted passed into (and returned) from\r
787 thunk to 16-bit mode\r
788 @param Stack Caller allocated stack used to pass arguments\r
789 @param StackSize Size of Stack in bytes\r
790\r
791 @retval FALSE Thunk completed, and there were no BIOS errors in\r
792 the target code. See Regs for status.\r
793 @retval TRUE There was a BIOS erro in the target code.\r
794\r
795**/\r
796BOOLEAN\r
797EFIAPI\r
798LegacyBiosFarCall86 (\r
799 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
800 IN UINT16 Segment,\r
801 IN UINT16 Offset,\r
802 IN EFI_IA32_REGISTER_SET *Regs,\r
803 IN VOID *Stack,\r
804 IN UINTN StackSize\r
805 );\r
806\r
807\r
808/**\r
809 Test to see if a legacy PCI ROM exists for this device. Optionally return\r
810 the Legacy ROM instance for this PCI device.\r
811\r
812 @param This Protocol instance pointer.\r
813 @param PciHandle The PCI PC-AT OPROM from this devices ROM BAR will\r
814 be loaded\r
815 @param RomImage Return the legacy PCI ROM for this device\r
816 @param RomSize Size of ROM Image\r
817 @param Flags Indicates if ROM found and if PC-AT.\r
818\r
819 @retval EFI_SUCCESS Legacy Option ROM availible for this device\r
820 @retval EFI_UNSUPPORTED Legacy Option ROM not supported.\r
821\r
822**/\r
823EFI_STATUS\r
824EFIAPI\r
825LegacyBiosCheckPciRom (\r
826 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
827 IN EFI_HANDLE PciHandle,\r
828 OUT VOID **RomImage, OPTIONAL\r
829 OUT UINTN *RomSize, OPTIONAL\r
830 OUT UINTN *Flags\r
831 );\r
832\r
833\r
834/**\r
835 Assign drive number to legacy HDD drives prior to booting an EFI\r
836 aware OS so the OS can access drives without an EFI driver.\r
837 Note: BBS compliant drives ARE NOT available until this call by\r
838 either shell or EFI.\r
839\r
840 @param This Protocol instance pointer.\r
841 @param BbsCount Number of BBS_TABLE structures\r
842 @param BbsTable List BBS entries\r
843\r
844 @retval EFI_SUCCESS Drive numbers assigned\r
845\r
846**/\r
847EFI_STATUS\r
848EFIAPI\r
849LegacyBiosPrepareToBootEfi (\r
850 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
851 OUT UINT16 *BbsCount,\r
852 OUT BBS_TABLE **BbsTable\r
853 );\r
854\r
855\r
856/**\r
857 To boot from an unconventional device like parties and/or execute\r
858 HDD diagnostics.\r
859\r
860 @param This Protocol instance pointer.\r
861 @param Attributes How to interpret the other input parameters\r
862 @param BbsEntry The 0-based index into the BbsTable for the parent\r
863 device.\r
864 @param BeerData Pointer to the 128 bytes of ram BEER data.\r
865 @param ServiceAreaData Pointer to the 64 bytes of raw Service Area data.\r
866 The caller must provide a pointer to the specific\r
867 Service Area and not the start all Service Areas.\r
868 EFI_INVALID_PARAMETER if error. Does NOT return if no error.\r
869\r
870**/\r
871EFI_STATUS\r
872EFIAPI\r
873LegacyBiosBootUnconventionalDevice (\r
874 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
875 IN UDC_ATTRIBUTES Attributes,\r
876 IN UINTN BbsEntry,\r
877 IN VOID *BeerData,\r
878 IN VOID *ServiceAreaData\r
879 );\r
880\r
881\r
882/**\r
883 Load a legacy PC-AT OPROM on the PciHandle device. Return information\r
884 about how many disks were added by the OPROM and the shadow address and\r
885 size. DiskStart & DiskEnd are INT 13h drive letters. Thus 0x80 is C:\r
886\r
887 @param This Protocol instance pointer.\r
888 @param PciHandle The PCI PC-AT OPROM from this devices ROM BAR will\r
889 be loaded. This value is NULL if RomImage is\r
890 non-NULL. This is the normal case.\r
891 @param RomImage A PCI PC-AT ROM image. This argument is non-NULL\r
892 if there is no hardware associated with the ROM\r
893 and thus no PciHandle, otherwise is must be NULL.\r
894 Example is PXE base code.\r
895 @param Flags Indicates if ROM found and if PC-AT.\r
896 @param DiskStart Disk number of first device hooked by the ROM. If\r
897 DiskStart is the same as DiskEnd no disked were\r
898 hooked.\r
899 @param DiskEnd Disk number of the last device hooked by the ROM.\r
900 @param RomShadowAddress Shadow address of PC-AT ROM\r
901 @param RomShadowedSize Size of RomShadowAddress in bytes\r
902\r
903 @retval EFI_SUCCESS Legacy ROM loaded for this device\r
904 @retval EFI_INVALID_PARAMETER PciHandle not found\r
905 @retval EFI_UNSUPPORTED There is no PCI ROM in the ROM BAR or no onboard\r
906 ROM\r
907\r
908**/\r
909EFI_STATUS\r
910EFIAPI\r
911LegacyBiosInstallPciRom (\r
912 IN EFI_LEGACY_BIOS_PROTOCOL * This,\r
913 IN EFI_HANDLE PciHandle,\r
914 IN VOID **RomImage,\r
915 OUT UINTN *Flags,\r
916 OUT UINT8 *DiskStart, OPTIONAL\r
917 OUT UINT8 *DiskEnd, OPTIONAL\r
918 OUT VOID **RomShadowAddress, OPTIONAL\r
919 OUT UINT32 *RomShadowedSize OPTIONAL\r
920 );\r
921\r
922\r
923/**\r
924 Fill in the standard BDA for Keyboard LEDs\r
925\r
926 @param This Protocol instance pointer.\r
927 @param Leds Current LED status\r
928\r
929 @retval EFI_SUCCESS It should always work.\r
930\r
931**/\r
932EFI_STATUS\r
933EFIAPI\r
934LegacyBiosUpdateKeyboardLedStatus (\r
935 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
936 IN UINT8 Leds\r
937 );\r
938\r
939\r
940/**\r
941 Get all BBS info\r
942\r
943 @param This Protocol instance pointer.\r
944 @param HddCount Number of HDD_INFO structures\r
945 @param HddInfo Onboard IDE controller information\r
946 @param BbsCount Number of BBS_TABLE structures\r
947 @param BbsTable List BBS entries\r
948\r
949 @retval EFI_SUCCESS Tables returned\r
950 @retval EFI_NOT_FOUND resource not found\r
951 @retval EFI_DEVICE_ERROR can not get BBS table\r
952\r
953**/\r
954EFI_STATUS\r
955EFIAPI\r
956LegacyBiosGetBbsInfo (\r
957 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
958 OUT UINT16 *HddCount,\r
959 OUT HDD_INFO **HddInfo,\r
960 OUT UINT16 *BbsCount,\r
961 OUT BBS_TABLE **BbsTable\r
962 );\r
963\r
964\r
965/**\r
966 Shadow all legacy16 OPROMs that haven't been shadowed.\r
967 Warning: Use this with caution. This routine disconnects all EFI\r
968 drivers. If used externally then caller must re-connect EFI\r
969 drivers.\r
970\r
971 @param This Protocol instance pointer.\r
972\r
973 @retval EFI_SUCCESS OPROMs shadowed\r
974\r
975**/\r
976EFI_STATUS\r
977EFIAPI\r
978LegacyBiosShadowAllLegacyOproms (\r
979 IN EFI_LEGACY_BIOS_PROTOCOL *This\r
980 );\r
981\r
982\r
983/**\r
984 Attempt to legacy boot the BootOption. If the EFI contexted has been\r
985 compromised this function will not return.\r
986\r
987 @param This Protocol instance pointer.\r
988 @param BbsDevicePath EFI Device Path from BootXXXX variable.\r
989 @param LoadOptionsSize Size of LoadOption in size.\r
990 @param LoadOptions LoadOption from BootXXXX variable\r
991\r
992 @retval EFI_SUCCESS Removable media not present\r
993\r
994**/\r
995EFI_STATUS\r
996EFIAPI\r
997LegacyBiosLegacyBoot (\r
998 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
999 IN BBS_BBS_DEVICE_PATH *BbsDevicePath,\r
1000 IN UINT32 LoadOptionsSize,\r
1001 IN VOID *LoadOptions\r
1002 );\r
1003\r
1004\r
1005/**\r
1006 Allocate memory < 1 MB and copy the thunker code into low memory. Se up\r
1007 all the descriptors.\r
1008\r
1009 @param Private Private context for Legacy BIOS\r
1010\r
1011 @retval EFI_SUCCESS Should only pass.\r
1012\r
1013**/\r
1014EFI_STATUS\r
1015LegacyBiosInitializeThunk (\r
1016 IN LEGACY_BIOS_INSTANCE *Private\r
1017 );\r
1018\r
1019\r
1020/**\r
1021 Fill in the standard BDA and EBDA stuff before Legacy16 load\r
1022\r
1023 @param Private Legacy BIOS Instance data\r
1024\r
1025 @retval EFI_SUCCESS It should always work.\r
1026\r
1027**/\r
1028EFI_STATUS\r
1029LegacyBiosInitBda (\r
1030 IN LEGACY_BIOS_INSTANCE *Private\r
1031 );\r
1032\r
1033\r
1034/**\r
1035 Collect IDE Inquiry data from the IDE disks\r
1036\r
1037 @param Private Legacy BIOS Instance data\r
1038 @param HddInfo Hdd Information\r
1039 @param Flag Reconnect IdeController or not\r
1040\r
1041 @retval EFI_SUCCESS It should always work.\r
1042\r
1043**/\r
1044EFI_STATUS\r
1045LegacyBiosBuildIdeData (\r
1046 IN LEGACY_BIOS_INSTANCE *Private,\r
1047 IN HDD_INFO **HddInfo,\r
1048 IN UINT16 Flag\r
1049 );\r
1050\r
1051\r
1052/**\r
1053 Enable ide controller. This gets disabled when LegacyBoot.c is about\r
1054 to run the Option ROMs.\r
1055\r
1056 @param Private Legacy BIOS Instance data\r
1057\r
1058\r
1059**/\r
1060VOID\r
1061EnableIdeController (\r
1062 IN LEGACY_BIOS_INSTANCE *Private\r
1063 );\r
1064\r
1065\r
1066/**\r
1067 If the IDE channel is in compatibility (legacy) mode, remove all\r
1068 PCI I/O BAR addresses from the controller.\r
1069\r
1070 @param IdeController The handle of target IDE controller\r
1071\r
1072\r
1073**/\r
1074VOID\r
1075InitLegacyIdeController (\r
1076 IN EFI_HANDLE IdeController\r
1077 );\r
1078\r
1079\r
1080/**\r
1081 Program the interrupt routing register in all the PCI devices. On a PC AT system\r
1082 this register contains the 8259 IRQ vector that matches it's PCI interrupt.\r
1083\r
1084 @param Private Legacy BIOS Instance data\r
1085\r
1086 @retval EFI_SUCCESS Succeed.\r
1087 @retval EFI_ALREADY_STARTED All PCI devices have been processed.\r
1088\r
1089**/\r
1090EFI_STATUS\r
1091PciProgramAllInterruptLineRegisters (\r
1092 IN LEGACY_BIOS_INSTANCE *Private\r
1093 );\r
1094\r
1095\r
1096/**\r
1097 Collect EFI Info about legacy devices.\r
1098\r
1099 @param Private Legacy BIOS Instance data\r
1100\r
1101 @retval EFI_SUCCESS It should always work.\r
1102\r
1103**/\r
1104EFI_STATUS\r
1105LegacyBiosBuildSioData (\r
1106 IN LEGACY_BIOS_INSTANCE *Private\r
1107 );\r
1108\r
1109\r
1110/**\r
1111 Shadow all the PCI legacy ROMs. Use data from the Legacy BIOS Protocol\r
1112 to chose the order. Skip any devices that have already have legacy\r
1113 BIOS run.\r
1114\r
1115 @param Private Protocol instance pointer.\r
1116\r
1117 @retval EFI_SUCCESS Succeed.\r
1118 @retval EFI_UNSUPPORTED Cannot get VGA device handle.\r
1119\r
1120**/\r
1121EFI_STATUS\r
1122PciShadowRoms (\r
1123 IN LEGACY_BIOS_INSTANCE *Private\r
1124 );\r
1125\r
1126\r
1127/**\r
1128 Fill in the standard BDA and EBDA stuff prior to legacy Boot\r
1129\r
1130 @param Private Legacy BIOS Instance data\r
1131\r
1132 @retval EFI_SUCCESS It should always work.\r
1133\r
1134**/\r
1135EFI_STATUS\r
1136LegacyBiosCompleteBdaBeforeBoot (\r
1137 IN LEGACY_BIOS_INSTANCE *Private\r
1138 );\r
1139\r
1140\r
1141/**\r
1142 Fill in the standard CMOS stuff before Legacy16 load\r
1143\r
1144 @param Private Legacy BIOS Instance data\r
1145\r
1146 @retval EFI_SUCCESS It should always work.\r
1147\r
1148**/\r
1149EFI_STATUS\r
1150LegacyBiosInitCmos (\r
1151 IN LEGACY_BIOS_INSTANCE *Private\r
1152 );\r
1153\r
1154\r
1155/**\r
1156 Fill in the standard CMOS stuff prior to legacy Boot\r
1157\r
1158 @param Private Legacy BIOS Instance data\r
1159\r
1160 @retval EFI_SUCCESS It should always work.\r
1161\r
1162**/\r
1163EFI_STATUS\r
1164LegacyBiosCompleteStandardCmosBeforeBoot (\r
1165 IN LEGACY_BIOS_INSTANCE *Private\r
1166 );\r
1167\r
1168\r
1169/**\r
1170 Contains the code that is copied into low memory (below 640K).\r
1171 This code reflects interrupts 0x68-0x6f to interrupts 0x08-0x0f.\r
1172 This template must be copied into low memory, and the IDT entries\r
1173 0x68-0x6F must be point to the low memory copy of this code. Each\r
1174 entry is 4 bytes long, so IDT entries 0x68-0x6F can be easily\r
1175 computed.\r
1176\r
1177**/\r
1178VOID\r
1179InterruptRedirectionTemplate (\r
1180 VOID\r
1181 );\r
1182\r
1183\r
1184/**\r
1185 Build the E820 table.\r
1186\r
1187 @param Private Legacy BIOS Instance data\r
1188 @param Size Size of E820 Table\r
1189\r
1190 @retval EFI_SUCCESS It should always work.\r
1191\r
1192**/\r
1193EFI_STATUS\r
1194LegacyBiosBuildE820 (\r
1195 IN LEGACY_BIOS_INSTANCE *Private,\r
1196 OUT UINTN *Size\r
1197 );\r
1198\r
1199/**\r
1200 This function is to put all AP in halt state.\r
1201\r
1202 @param Private Legacy BIOS Instance data\r
1203\r
1204**/\r
1205VOID\r
1206ShutdownAPs (\r
1207 IN LEGACY_BIOS_INSTANCE *Private\r
1208 );\r
1209\r
1210/**\r
1211 Worker function for LegacyBiosGetFlatDescs, retrieving content of\r
1212 specific registers.\r
1213\r
1214 @param IntThunk Pointer to IntThunk of Legacy BIOS context.\r
1215\r
1216**/\r
1217VOID\r
1218GetRegisters (\r
1219 LOW_MEMORY_THUNK *IntThunk\r
1220 );\r
1221\r
1222/**\r
1223 Routine for calling real thunk code.\r
1224\r
1225 @param RealCode The address of thunk code.\r
1226 @param BiosInt The Bios interrupt vector number.\r
1227 @param CallAddress The address of 16-bit mode call.\r
1228\r
1229 @return Status returned by real thunk code\r
1230\r
1231**/\r
1232UINTN\r
1233CallRealThunkCode (\r
1234 UINT8 *RealCode,\r
1235 UINT8 BiosInt,\r
1236 UINT32 CallAddress\r
1237 );\r
1238\r
1239/**\r
1240 Routine for generating soft interrupt.\r
1241\r
1242 @param Vector The interrupt vector number.\r
1243\r
1244**/\r
1245VOID\r
1246GenerateSoftInit (\r
1247 UINT8 Vector\r
1248 );\r
1249\r
1250/**\r
1251 Do an AllocatePages () of type AllocateMaxAddress for EfiBootServicesCode\r
1252 memory.\r
1253\r
1254 @param AllocateType Allocated Legacy Memory Type\r
1255 @param StartPageAddress Start address of range\r
1256 @param Pages Number of pages to allocate\r
1257 @param Result Result of allocation\r
1258\r
1259 @retval EFI_SUCCESS Legacy16 code loaded\r
1260 @retval Other No protocol installed, unload driver.\r
1261\r
1262**/\r
1263EFI_STATUS\r
1264AllocateLegacyMemory (\r
1265 IN EFI_ALLOCATE_TYPE AllocateType,\r
1266 IN EFI_PHYSICAL_ADDRESS StartPageAddress,\r
1267 IN UINTN Pages,\r
1268 OUT EFI_PHYSICAL_ADDRESS *Result\r
1269 );\r
1270\r
1271/**\r
1272 Get a region from the LegacyBios for Tiano usage. Can only be invoked once.\r
1273\r
1274 @param This Protocol instance pointer.\r
1275 @param LegacyMemorySize Size of required region\r
1276 @param Region Region to use. 00 = Either 0xE0000 or 0xF0000\r
1277 block Bit0 = 1 0xF0000 block Bit1 = 1 0xE0000\r
1278 block\r
1279 @param Alignment Address alignment. Bit mapped. First non-zero\r
1280 bit from right is alignment.\r
1281 @param LegacyMemoryAddress Region Assigned\r
1282\r
1283 @retval EFI_SUCCESS Region assigned\r
1284 @retval EFI_ACCESS_DENIED Procedure previously invoked\r
1285 @retval Other Region not assigned\r
1286\r
1287**/\r
1288EFI_STATUS\r
1289EFIAPI\r
1290LegacyBiosGetLegacyRegion (\r
1291 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
1292 IN UINTN LegacyMemorySize,\r
1293 IN UINTN Region,\r
1294 IN UINTN Alignment,\r
1295 OUT VOID **LegacyMemoryAddress\r
1296 );\r
1297\r
1298/**\r
1299 Get a region from the LegacyBios for Tiano usage. Can only be invoked once.\r
1300\r
1301 @param This Protocol instance pointer.\r
1302 @param LegacyMemorySize Size of data to copy\r
1303 @param LegacyMemoryAddress Legacy Region destination address Note: must\r
1304 be in region assigned by\r
1305 LegacyBiosGetLegacyRegion\r
1306 @param LegacyMemorySourceAddress Source of data\r
1307\r
1308 @retval EFI_SUCCESS Region assigned\r
1309 @retval EFI_ACCESS_DENIED Destination outside assigned region\r
1310\r
1311**/\r
1312EFI_STATUS\r
1313EFIAPI\r
1314LegacyBiosCopyLegacyRegion (\r
1315 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
1316 IN UINTN LegacyMemorySize,\r
1317 IN VOID *LegacyMemoryAddress,\r
1318 IN VOID *LegacyMemorySourceAddress\r
1319 );\r
1320\r
1321/**\r
1322 Find Legacy16 BIOS image in the FLASH device and shadow it into memory. Find\r
1323 the $EFI table in the shadow area. Thunk into the Legacy16 code after it had\r
1324 been shadowed.\r
1325\r
1326 @param Private Legacy BIOS context data\r
1327\r
1328 @retval EFI_SUCCESS Legacy16 code loaded\r
1329 @retval Other No protocol installed, unload driver.\r
1330\r
1331**/\r
1332EFI_STATUS\r
1333ShadowAndStartLegacy16 (\r
1334 IN LEGACY_BIOS_INSTANCE *Private\r
1335 );\r
1336\r
1337/**\r
1338 Checks the state of the floppy and if media is inserted.\r
1339 \r
1340 This routine checks the state of the floppy and if media is inserted.\r
1341 There are 3 cases:\r
1342 No floppy present - Set BBS entry to ignore\r
1343 Floppy present & no media - Set BBS entry to lowest priority. We cannot\r
1344 set it to ignore since 16-bit CSM will\r
1345 indicate no floppy and thus drive A: is\r
1346 unusable. CSM-16 will not try floppy since\r
1347 lowest priority and thus not incur boot\r
1348 time penality.\r
1349 Floppy present & media - Set BBS entry to some priority.\r
1350\r
1351 @return State of floppy media\r
1352\r
1353**/\r
1354UINT8\r
1355HasMediaInFloppy (\r
1356 VOID\r
1357 );\r
1358\r
1359/**\r
1360 Identify drive data must be updated to actual parameters before boot.\r
1361 This requires updating the checksum, if it exists.\r
1362\r
1363 @param IdentifyDriveData ATA Identify Data\r
1364 @param Checksum checksum of the ATA Identify Data\r
1365\r
1366 @retval EFI_SUCCESS checksum calculated\r
1367 @retval EFI_SECURITY_VIOLATION IdentifyData invalid\r
1368\r
1369**/\r
1370EFI_STATUS\r
1371CalculateIdentifyDriveChecksum (\r
1372 IN UINT8 *IdentifyDriveData,\r
1373 OUT UINT8 *Checksum\r
1374 );\r
1375\r
1376/**\r
1377 Identify drive data must be updated to actual parameters before boot.\r
1378\r
1379 @param IdentifyDriveData ATA Identify Data\r
1380\r
1381**/\r
1382VOID\r
1383UpdateIdentifyDriveData (\r
1384 IN UINT8 *IdentifyDriveData\r
1385 );\r
1386\r
1387/**\r
1388 Complete build of BBS TABLE.\r
1389\r
1390 @param Private Legacy BIOS Instance data\r
1391 @param BbsTable BBS Table passed to 16-bit code\r
1392\r
1393 @retval EFI_SUCCESS Removable media not present\r
1394\r
1395**/\r
1396EFI_STATUS\r
1397LegacyBiosBuildBbs (\r
1398 IN LEGACY_BIOS_INSTANCE *Private,\r
1399 IN BBS_TABLE *BbsTable\r
1400 );\r
1401\r
1402/**\r
1403 Read CMOS register through index/data port.\r
1404\r
1405 @param[in] Index The index of the CMOS register to read.\r
1406\r
1407 @return The data value from the CMOS register specified by Index.\r
1408\r
1409**/\r
1410UINT8\r
1411LegacyReadStandardCmos (\r
1412 IN UINT8 Index\r
1413 );\r
1414\r
1415/**\r
1416 Write CMOS register through index/data port.\r
1417\r
1418 @param[in] Index The index of the CMOS register to write.\r
1419 @param[in] Value The value of CMOS register to write.\r
1420\r
1421 @return The value written to the CMOS register specified by Index.\r
1422\r
1423**/\r
1424UINT8\r
1425LegacyWriteStandardCmos (\r
1426 IN UINT8 Index,\r
1427 IN UINT8 Value\r
1428 );\r
1429\r
1430/**\r
1431 Calculate the new standard CMOS checksum and write it.\r
1432\r
1433 @param Private Legacy BIOS Instance data\r
1434\r
1435 @retval EFI_SUCCESS Calculate 16-bit checksum successfully\r
1436\r
1437**/\r
1438EFI_STATUS\r
1439LegacyCalculateWriteStandardCmosChecksum (\r
1440 VOID\r
1441 );\r
1442\r
1443/**\r
1444 Test to see if a legacy PCI ROM exists for this device. Optionally return\r
1445 the Legacy ROM instance for this PCI device.\r
1446\r
1447 @param[in] This Protocol instance pointer.\r
1448 @param[in] PciHandle The PCI PC-AT OPROM from this devices ROM BAR will be loaded\r
1449 @param[out] RomImage Return the legacy PCI ROM for this device\r
1450 @param[out] RomSize Size of ROM Image\r
1451 @param[out] RuntimeImageLength Runtime size of ROM Image\r
1452 @param[out] Flags Indicates if ROM found and if PC-AT.\r
1453 @param[out] OpromRevision Revision of the PCI Rom\r
1454 @param[out] ConfigUtilityCodeHeaderPointer of Configuration Utility Code Header\r
1455\r
1456 @return EFI_SUCCESS Legacy Option ROM availible for this device\r
1457 @return EFI_ALREADY_STARTED This device is already managed by its Oprom\r
1458 @return EFI_UNSUPPORTED Legacy Option ROM not supported.\r
1459\r
1460**/\r
1461EFI_STATUS\r
1462LegacyBiosCheckPciRomEx (\r
1463 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
1464 IN EFI_HANDLE PciHandle,\r
1465 OUT VOID **RomImage, OPTIONAL\r
1466 OUT UINTN *RomSize, OPTIONAL\r
1467 OUT UINTN *RuntimeImageLength, OPTIONAL\r
1468 OUT UINTN *Flags, OPTIONAL\r
1469 OUT UINT8 *OpromRevision, OPTIONAL\r
1470 OUT VOID **ConfigUtilityCodeHeader OPTIONAL\r
1471 );\r
1472\r
1473/**\r
1474 Relocate this image under 4G memory for IPF.\r
1475\r
1476 @param ImageHandle Handle of driver image.\r
1477 @param SystemTable Pointer to system table.\r
1478\r
1479 @retval EFI_SUCCESS Image successfully relocated.\r
1480 @retval EFI_ABORTED Failed to relocate image.\r
1481\r
1482**/\r
1483EFI_STATUS\r
1484RelocateImageUnder4GIfNeeded (\r
1485 IN EFI_HANDLE ImageHandle,\r
1486 IN EFI_SYSTEM_TABLE *SystemTable\r
1487 );\r
1488\r
1489/**\r
1490 Thunk to 16-bit real mode and call Segment:Offset. Regs will contain the\r
1491 16-bit register context on entry and exit. Arguments can be passed on\r
1492 the Stack argument\r
1493\r
1494 @param This Protocol instance pointer.\r
1495 @param Segment Segemnt of 16-bit mode call\r
1496 @param Offset Offset of 16-bit mdoe call\r
1497 @param Regs Register contexted passed into (and returned) from thunk to\r
1498 16-bit mode\r
1499 @param Stack Caller allocated stack used to pass arguments\r
1500 @param StackSize Size of Stack in bytes\r
1501\r
1502 @retval FALSE Thunk completed, and there were no BIOS errors in the target code.\r
1503 See Regs for status.\r
1504 @retval TRUE There was a BIOS erro in the target code.\r
1505\r
1506**/\r
1507BOOLEAN\r
1508EFIAPI\r
1509InternalLegacyBiosFarCall (\r
1510 IN EFI_LEGACY_BIOS_PROTOCOL *This,\r
1511 IN UINT16 Segment,\r
1512 IN UINT16 Offset,\r
1513 IN EFI_IA32_REGISTER_SET *Regs,\r
1514 IN VOID *Stack,\r
1515 IN UINTN StackSize\r
1516 );\r
1517\r
1518#endif\r