/** @file CPU exception handler library implemenation for DXE modules. Copyright (c) 2013 - 2022, Intel Corporation. All rights reserved.
SPDX-License-Identifier: BSD-2-Clause-Patent **/ #include #include "CpuExceptionCommon.h" #include #include #include CONST UINTN mDoFarReturnFlag = 0; RESERVED_VECTORS_DATA mReservedVectorsData[CPU_INTERRUPT_NUM]; EFI_CPU_INTERRUPT_HANDLER mExternalInterruptHandlerTable[CPU_INTERRUPT_NUM]; EXCEPTION_HANDLER_DATA mExceptionHandlerData = { CPU_INTERRUPT_NUM, 0, // To be fixed mReservedVectorsData, mExternalInterruptHandlerTable }; UINT8 mBuffer[CPU_STACK_SWITCH_EXCEPTION_NUMBER * CPU_KNOWN_GOOD_STACK_SIZE + CPU_TSS_GDT_SIZE]; /** Common exception handler. @param ExceptionType Exception type. @param SystemContext Pointer to EFI_SYSTEM_CONTEXT. **/ VOID EFIAPI CommonExceptionHandler ( IN EFI_EXCEPTION_TYPE ExceptionType, IN EFI_SYSTEM_CONTEXT SystemContext ) { CommonExceptionHandlerWorker (ExceptionType, SystemContext, &mExceptionHandlerData); } /** Initializes all CPU exceptions entries and provides the default exception handlers. Caller should try to get an array of interrupt and/or exception vectors that are in use and need to persist by EFI_VECTOR_HANDOFF_INFO defined in PI 1.3 specification. If caller cannot get reserved vector list or it does not exists, set VectorInfo to NULL. If VectorInfo is not NULL, the exception vectors will be initialized per vector attribute accordingly. @param[in] VectorInfo Pointer to reserved vector list. @retval EFI_SUCCESS CPU Exception Entries have been successfully initialized with default exception handlers. @retval EFI_INVALID_PARAMETER VectorInfo includes the invalid content if VectorInfo is not NULL. @retval EFI_UNSUPPORTED This function is not supported. **/ EFI_STATUS EFIAPI InitializeCpuExceptionHandlers ( IN EFI_VECTOR_HANDOFF_INFO *VectorInfo OPTIONAL ) { InitializeSpinLock (&mExceptionHandlerData.DisplayMessageSpinLock); return InitializeCpuExceptionHandlersWorker (VectorInfo, &mExceptionHandlerData); } /** Registers a function to be called from the processor interrupt handler. This function registers and enables the handler specified by InterruptHandler for a processor interrupt or exception type specified by InterruptType. If InterruptHandler is NULL, then the handler for the processor interrupt or exception type specified by InterruptType is uninstalled. The installed handler is called once for each processor interrupt or exception. NOTE: This function should be invoked after InitializeCpuExceptionHandlers() is invoked, otherwise EFI_UNSUPPORTED returned. @param[in] InterruptType Defines which interrupt or exception to hook. @param[in] InterruptHandler A pointer to a function of type EFI_CPU_INTERRUPT_HANDLER that is called when a processor interrupt occurs. If this parameter is NULL, then the handler will be uninstalled. @retval EFI_SUCCESS The handler for the processor interrupt was successfully installed or uninstalled. @retval EFI_ALREADY_STARTED InterruptHandler is not NULL, and a handler for InterruptType was previously installed. @retval EFI_INVALID_PARAMETER InterruptHandler is NULL, and a handler for InterruptType was not previously installed. @retval EFI_UNSUPPORTED The interrupt specified by InterruptType is not supported, or this function is not supported. **/ EFI_STATUS EFIAPI RegisterCpuInterruptHandler ( IN EFI_EXCEPTION_TYPE InterruptType, IN EFI_CPU_INTERRUPT_HANDLER InterruptHandler ) { return RegisterCpuInterruptHandlerWorker (InterruptType, InterruptHandler, &mExceptionHandlerData); } /** Setup separate stacks for certain exception handlers. If the input Buffer and BufferSize are both NULL, use global variable if possible. @param[in] Buffer Point to buffer used to separate exception stack. @param[in, out] BufferSize On input, it indicates the byte size of Buffer. If the size is not enough, the return status will be EFI_BUFFER_TOO_SMALL, and output BufferSize will be the size it needs. @retval EFI_SUCCESS The stacks are assigned successfully. @retval EFI_UNSUPPORTED This function is not supported. @retval EFI_BUFFER_TOO_SMALL This BufferSize is too small. **/ EFI_STATUS EFIAPI InitializeSeparateExceptionStacks ( IN VOID *Buffer, IN OUT UINTN *BufferSize ) { UINTN LocalBufferSize; EFI_STATUS Status; if ((Buffer == NULL) && (BufferSize == NULL)) { SetMem (mBuffer, sizeof (mBuffer), 0); LocalBufferSize = sizeof (mBuffer); Status = ArchSetupExceptionStack (mBuffer, &LocalBufferSize); ASSERT_EFI_ERROR (Status); return Status; } else { return ArchSetupExceptionStack (Buffer, BufferSize); } }