InitializeCpuExceptionHandlers() expects caller allocates IDT while InitializeCpuInterruptHandlers() allocates 256 IDT entries itself. InitializeCpuExceptionHandlers() fills max 32 IDT entries allocated by caller. If caller allocates 10 entries, the API just fills 10 IDT entries. The inconsistency between the two APIs makes code hard to unerstand and hard to share. Because there is only one caller (CpuDxe) for InitializeCpuInterruptHandler(), this patch updates CpuDxe driver to allocates 256 IDT entries then call InitializeCpuExceptionHandlers(). This is also a backward compatible change. With this change, InitializeCpuInterruptHandlers() is removed completely. And InitializeCpuExceptionHandlers() fills max 32 entries for PEI and SMM instance, max 256 entries for DXE instance. Such behavior matches to the original one. Signed-off-by: Ray Ni <ray.ni@intel.com> Cc: Eric Dong <eric.dong@intel.com>
338 lines
12 KiB
C
338 lines
12 KiB
C
/** @file
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CPU Exception Library provides PEI/DXE/SMM CPU common exception handler.
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Copyright (c) 2012 - 2022, Intel Corporation. All rights reserved.<BR>
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SPDX-License-Identifier: BSD-2-Clause-Patent
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**/
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#include <Library/DebugLib.h>
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#include <Library/VmgExitLib.h>
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#include "CpuExceptionCommon.h"
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/**
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Internal worker function for common exception handler.
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@param ExceptionType Exception type.
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@param SystemContext Pointer to EFI_SYSTEM_CONTEXT.
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@param ExceptionHandlerData Pointer to exception handler data.
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**/
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VOID
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CommonExceptionHandlerWorker (
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IN EFI_EXCEPTION_TYPE ExceptionType,
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IN EFI_SYSTEM_CONTEXT SystemContext,
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IN EXCEPTION_HANDLER_DATA *ExceptionHandlerData
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)
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{
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EFI_STATUS Status;
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EXCEPTION_HANDLER_CONTEXT *ExceptionHandlerContext;
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RESERVED_VECTORS_DATA *ReservedVectors;
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EFI_CPU_INTERRUPT_HANDLER *ExternalInterruptHandler;
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switch (ExceptionType) {
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case VC_EXCEPTION:
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//
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// #VC needs to be handled immediately upon enabling exception handling
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// and therefore can't use the RegisterCpuInterruptHandler() interface.
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//
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// Handle the #VC:
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// On EFI_SUCCESS - Exception has been handled, return
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// On other - ExceptionType contains (possibly new) exception
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// value
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//
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Status = VmgExitHandleVc (&ExceptionType, SystemContext);
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if (!EFI_ERROR (Status)) {
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return;
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}
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break;
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case VE_EXCEPTION:
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//
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// #VE needs to be handled immediately upon enabling exception handling
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// and therefore can't use the RegisterCpuInterruptHandler() interface.
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//
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// Handle the #VE:
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// On EFI_SUCCESS - Exception has been handled, return
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// On other - ExceptionType contains (possibly new) exception
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// value
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//
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Status = VmTdExitHandleVe (&ExceptionType, SystemContext);
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if (!EFI_ERROR (Status)) {
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return;
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}
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break;
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default:
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break;
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}
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ExceptionHandlerContext = (EXCEPTION_HANDLER_CONTEXT *)(UINTN)(SystemContext.SystemContextIa32);
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ReservedVectors = ExceptionHandlerData->ReservedVectors;
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ExternalInterruptHandler = ExceptionHandlerData->ExternalInterruptHandler;
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switch (ReservedVectors[ExceptionType].Attribute) {
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case EFI_VECTOR_HANDOFF_HOOK_BEFORE:
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//
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// The new exception handler registered by RegisterCpuInterruptHandler() is executed BEFORE original handler.
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// Save the original handler to stack so the assembly code can jump to it instead of returning from handler.
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//
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ExceptionHandlerContext->ExceptionDataFlag = (mErrorCodeFlag & (1 << ExceptionType)) ? TRUE : FALSE;
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ExceptionHandlerContext->OldIdtHandler = ReservedVectors[ExceptionType].ExceptonHandler;
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break;
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case EFI_VECTOR_HANDOFF_HOOK_AFTER:
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while (TRUE) {
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//
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// If spin-lock can be acquired, it's the first time entering here.
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//
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if (AcquireSpinLockOrFail (&ReservedVectors[ExceptionType].SpinLock)) {
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//
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// The new exception handler registered by RegisterCpuInterruptHandler() is executed AFTER original handler.
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// Save the original handler to stack but skip running the new handler so the original handler is executed
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// firstly.
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//
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ReservedVectors[ExceptionType].ApicId = GetApicId ();
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ArchSaveExceptionContext (ExceptionType, SystemContext, ExceptionHandlerData);
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ExceptionHandlerContext->ExceptionDataFlag = (mErrorCodeFlag & (1 << ExceptionType)) ? TRUE : FALSE;
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ExceptionHandlerContext->OldIdtHandler = ReservedVectors[ExceptionType].ExceptonHandler;
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return;
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}
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//
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// If spin-lock cannot be acquired, it's the second time entering here.
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// 'break' instead of 'return' is used so the new exception handler can be executed.
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//
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if (ReservedVectors[ExceptionType].ApicId == GetApicId ()) {
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//
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// Old IDT handler has been executed, then restore CPU exception content to
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// run new exception handler.
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//
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ArchRestoreExceptionContext (ExceptionType, SystemContext, ExceptionHandlerData);
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//
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// Release spin lock for ApicId
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//
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ReleaseSpinLock (&ReservedVectors[ExceptionType].SpinLock);
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break;
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}
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CpuPause ();
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}
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break;
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case 0xffffffff:
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break;
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default:
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//
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// It should never reach here
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//
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CpuDeadLoop ();
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break;
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}
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if ((ExternalInterruptHandler != NULL) &&
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(ExternalInterruptHandler[ExceptionType] != NULL))
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{
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(ExternalInterruptHandler[ExceptionType])(ExceptionType, SystemContext);
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} else if (ExceptionType < CPU_EXCEPTION_NUM) {
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//
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// Get Spinlock to display CPU information
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//
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while (!AcquireSpinLockOrFail (&ExceptionHandlerData->DisplayMessageSpinLock)) {
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CpuPause ();
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}
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//
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// Initialize the serial port before dumping.
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//
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SerialPortInitialize ();
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//
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// Display ExceptionType, CPU information and Image information
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//
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DumpImageAndCpuContent (ExceptionType, SystemContext);
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//
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// Release Spinlock of output message
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//
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ReleaseSpinLock (&ExceptionHandlerData->DisplayMessageSpinLock);
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//
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// Enter a dead loop if needn't to execute old IDT handler further
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//
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if (ReservedVectors[ExceptionType].Attribute != EFI_VECTOR_HANDOFF_HOOK_BEFORE) {
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CpuDeadLoop ();
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}
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}
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}
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/**
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Internal worker function to update IDT entries accordling to vector attributes.
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@param[in] IdtTable Pointer to IDT table.
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@param[in] TemplateMap Pointer to a buffer where the address map is
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returned.
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@param[in] ExceptionHandlerData Pointer to exception handler data.
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**/
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VOID
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UpdateIdtTable (
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IN IA32_IDT_GATE_DESCRIPTOR *IdtTable,
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IN EXCEPTION_HANDLER_TEMPLATE_MAP *TemplateMap,
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IN EXCEPTION_HANDLER_DATA *ExceptionHandlerData
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)
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{
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UINT16 CodeSegment;
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UINTN Index;
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UINTN InterruptHandler;
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RESERVED_VECTORS_DATA *ReservedVectors;
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ReservedVectors = ExceptionHandlerData->ReservedVectors;
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//
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// Use current CS as the segment selector of interrupt gate in IDT
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//
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CodeSegment = AsmReadCs ();
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for (Index = 0; Index < ExceptionHandlerData->IdtEntryCount; Index++) {
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IdtTable[Index].Bits.Selector = CodeSegment;
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//
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// Check reserved vectors attributes
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//
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switch (ReservedVectors[Index].Attribute) {
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case EFI_VECTOR_HANDOFF_DO_NOT_HOOK:
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//
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// Keep original IDT entry
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//
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continue;
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case EFI_VECTOR_HANDOFF_HOOK_AFTER:
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InitializeSpinLock (&ReservedVectors[Index].SpinLock);
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CopyMem (
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(VOID *)ReservedVectors[Index].HookAfterStubHeaderCode,
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(VOID *)TemplateMap->HookAfterStubHeaderStart,
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TemplateMap->ExceptionStubHeaderSize
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);
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AsmVectorNumFixup (
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(VOID *)ReservedVectors[Index].HookAfterStubHeaderCode,
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(UINT8)Index,
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(VOID *)TemplateMap->HookAfterStubHeaderStart
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);
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//
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// Go on the following code
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//
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case EFI_VECTOR_HANDOFF_HOOK_BEFORE:
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//
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// Save original IDT handler address
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//
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ReservedVectors[Index].ExceptonHandler = ArchGetIdtHandler (&IdtTable[Index]);
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//
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// Go on the following code
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//
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default:
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//
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// Update new IDT entry
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//
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InterruptHandler = TemplateMap->ExceptionStart + Index * TemplateMap->ExceptionStubHeaderSize;
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ArchUpdateIdtEntry (&IdtTable[Index], InterruptHandler);
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break;
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}
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}
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}
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/**
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Internal worker function to initialize exception handler.
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@param[in] VectorInfo Pointer to reserved vector list.
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@param[in, out] ExceptionHandlerData Pointer to exception handler data.
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@retval EFI_SUCCESS CPU Exception Entries have been successfully initialized
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with default exception handlers.
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@retval EFI_INVALID_PARAMETER VectorInfo includes the invalid content if VectorInfo is not NULL.
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@retval EFI_UNSUPPORTED This function is not supported.
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**/
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EFI_STATUS
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InitializeCpuExceptionHandlersWorker (
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IN EFI_VECTOR_HANDOFF_INFO *VectorInfo OPTIONAL,
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IN OUT EXCEPTION_HANDLER_DATA *ExceptionHandlerData
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)
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{
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EFI_STATUS Status;
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IA32_DESCRIPTOR IdtDescriptor;
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UINTN IdtEntryCount;
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EXCEPTION_HANDLER_TEMPLATE_MAP TemplateMap;
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IA32_IDT_GATE_DESCRIPTOR *IdtTable;
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RESERVED_VECTORS_DATA *ReservedVectors;
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ReservedVectors = ExceptionHandlerData->ReservedVectors;
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SetMem ((VOID *)ReservedVectors, sizeof (RESERVED_VECTORS_DATA) * ExceptionHandlerData->IdtEntryCount, 0xff);
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if (VectorInfo != NULL) {
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Status = ReadAndVerifyVectorInfo (VectorInfo, ReservedVectors, ExceptionHandlerData->IdtEntryCount);
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if (EFI_ERROR (Status)) {
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return EFI_INVALID_PARAMETER;
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}
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}
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//
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// Setup the exception handlers according to IDT size, but no more than
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// ExceptionHandlerData->IdtEntryCount (32 in PEI and SMM, 256 in DXE) handlers.
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//
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AsmReadIdtr (&IdtDescriptor);
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IdtEntryCount = (IdtDescriptor.Limit + 1) / sizeof (IA32_IDT_GATE_DESCRIPTOR);
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ExceptionHandlerData->IdtEntryCount = MIN (IdtEntryCount, ExceptionHandlerData->IdtEntryCount);
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IdtTable = (IA32_IDT_GATE_DESCRIPTOR *)IdtDescriptor.Base;
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AsmGetTemplateAddressMap (&TemplateMap);
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ASSERT (TemplateMap.ExceptionStubHeaderSize <= HOOKAFTER_STUB_SIZE);
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UpdateIdtTable (IdtTable, &TemplateMap, ExceptionHandlerData);
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return EFI_SUCCESS;
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}
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/**
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Registers a function to be called from the processor interrupt handler.
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@param[in] InterruptType Defines which interrupt or exception to hook.
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@param[in] InterruptHandler A pointer to a function of type EFI_CPU_INTERRUPT_HANDLER that is called
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when a processor interrupt occurs. If this parameter is NULL, then the handler
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will be uninstalled
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@param[in] ExceptionHandlerData Pointer to exception handler data.
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@retval EFI_SUCCESS The handler for the processor interrupt was successfully installed or uninstalled.
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@retval EFI_ALREADY_STARTED InterruptHandler is not NULL, and a handler for InterruptType was
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previously installed.
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@retval EFI_INVALID_PARAMETER InterruptHandler is NULL, and a handler for InterruptType was not
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previously installed.
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@retval EFI_UNSUPPORTED The interrupt specified by InterruptType is not supported,
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or this function is not supported.
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**/
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EFI_STATUS
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RegisterCpuInterruptHandlerWorker (
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IN EFI_EXCEPTION_TYPE InterruptType,
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IN EFI_CPU_INTERRUPT_HANDLER InterruptHandler,
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IN EXCEPTION_HANDLER_DATA *ExceptionHandlerData
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)
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{
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UINTN EnabledInterruptNum;
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RESERVED_VECTORS_DATA *ReservedVectors;
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EFI_CPU_INTERRUPT_HANDLER *ExternalInterruptHandler;
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EnabledInterruptNum = ExceptionHandlerData->IdtEntryCount;
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ReservedVectors = ExceptionHandlerData->ReservedVectors;
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ExternalInterruptHandler = ExceptionHandlerData->ExternalInterruptHandler;
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if ((InterruptType < 0) || (InterruptType >= (EFI_EXCEPTION_TYPE)EnabledInterruptNum) ||
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(ReservedVectors[InterruptType].Attribute == EFI_VECTOR_HANDOFF_DO_NOT_HOOK))
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{
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return EFI_UNSUPPORTED;
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}
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if ((InterruptHandler == NULL) && (ExternalInterruptHandler[InterruptType] == NULL)) {
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return EFI_INVALID_PARAMETER;
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}
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if ((InterruptHandler != NULL) && (ExternalInterruptHandler[InterruptType] != NULL)) {
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return EFI_ALREADY_STARTED;
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}
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ExternalInterruptHandler[InterruptType] = InterruptHandler;
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return EFI_SUCCESS;
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}
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