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UefiCpuPkg PiSmmCpuDxeSmm: Convert X64/MpFuncs.asm to NASM
The BaseTools/Scripts/ConvertMasmToNasm.py script was used to convert X64/MpFuncs.asm to X64/MpFuncs.nasm And, manually update it to pass build. Contributed-under: TianoCore Contribution Agreement 1.0 Signed-off-by: Liming Gao <liming.gao@intel.com>
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;------------------------------------------------------------------------------ ;
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; Copyright (c) 2016, Intel Corporation. All rights reserved.<BR>
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; This program and the accompanying materials
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; are licensed and made available under the terms and conditions of the BSD License
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; which accompanies this distribution. The full text of the license may be found at
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; http://opensource.org/licenses/bsd-license.php.
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;
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; THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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; WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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;
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; Module Name:
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;
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; MpFuncs.nasm
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;
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; Abstract:
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;
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; This is the assembly code for Multi-processor S3 support
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;
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;-------------------------------------------------------------------------------
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extern ASM_PFX(InitializeFloatingPointUnits)
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%define VacantFlag 0x0
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%define NotVacantFlag 0xff
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%define LockLocation RendezvousFunnelProcEnd - RendezvousFunnelProcStart
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%define StackStartAddressLocation LockLocation + 0x8
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%define StackSizeLocation LockLocation + 0x10
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%define CProcedureLocation LockLocation + 0x18
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%define GdtrLocation LockLocation + 0x20
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%define IdtrLocation LockLocation + 0x2A
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%define BufferStartLocation LockLocation + 0x34
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%define Cr3OffsetLocation LockLocation + 0x38
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;-------------------------------------------------------------------------------------
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;RendezvousFunnelProc procedure follows. All APs execute their procedure. This
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;procedure serializes all the AP processors through an Init sequence. It must be
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;noted that APs arrive here very raw...ie: real mode, no stack.
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;ALSO THIS PROCEDURE IS EXECUTED BY APs ONLY ON 16 BIT MODE. HENCE THIS PROC
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;IS IN MACHINE CODE.
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;-------------------------------------------------------------------------------------
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;RendezvousFunnelProc (&WakeUpBuffer,MemAddress);
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;text SEGMENT
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DEFAULT REL
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SECTION .text
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global ASM_PFX(RendezvousFunnelProc)
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ASM_PFX(RendezvousFunnelProc):
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RendezvousFunnelProcStart:
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; At this point CS = 0x(vv00) and ip= 0x0.
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db 0x8c, 0xc8 ; mov ax, cs
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db 0x8e, 0xd8 ; mov ds, ax
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db 0x8e, 0xc0 ; mov es, ax
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db 0x8e, 0xd0 ; mov ss, ax
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db 0x33, 0xc0 ; xor ax, ax
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db 0x8e, 0xe0 ; mov fs, ax
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db 0x8e, 0xe8 ; mov gs, ax
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flat32Start:
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db 0xBE
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dw BufferStartLocation ; mov si, BufferStartLocation
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db 0x66, 0x8B, 0x14 ; mov edx,dword ptr [si] ; EDX is keeping the start address of wakeup buffer
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db 0xBE
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dw Cr3OffsetLocation ; mov si, Cr3Location
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db 0x66, 0x8B, 0xC ; mov ecx,dword ptr [si] ; ECX is keeping the value of CR3
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db 0xBE
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dw GdtrLocation ; mov si, GdtrProfile
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db 0x66 ; db 66h
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db 0x2E, 0xF, 0x1, 0x14 ; lgdt fword ptr cs:[si]
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db 0xBE
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dw IdtrLocation ; mov si, IdtrProfile
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db 0x66 ; db 66h
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db 0x2E, 0xF, 0x1, 0x1C ; lidt fword ptr cs:[si]
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db 0x33, 0xC0 ; xor ax, ax
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db 0x8E, 0xD8 ; mov ds, ax
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db 0xF, 0x20, 0xC0 ; mov eax, cr0 ; Get control register 0
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db 0x66, 0x83, 0xC8, 0x1 ; or eax, 000000001h ; Set PE bit (bit #0)
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db 0xF, 0x22, 0xC0 ; mov cr0, eax
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FLAT32_JUMP:
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db 0x66, 0x67, 0xEA ; far jump
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dd 0x0 ; 32-bit offset
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dw 0x20 ; 16-bit selector
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PMODE_ENTRY: ; protected mode entry point
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db 0x66, 0xB8, 0x18, 0x0 ; mov ax, 18h
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db 0x66, 0x8E, 0xD8 ; mov ds, ax
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db 0x66, 0x8E, 0xC0 ; mov es, ax
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db 0x66, 0x8E, 0xE0 ; mov fs, ax
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db 0x66, 0x8E, 0xE8 ; mov gs, ax
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db 0x66, 0x8E, 0xD0 ; mov ss, ax ; Flat mode setup.
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db 0xF, 0x20, 0xE0 ; mov eax, cr4
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db 0xF, 0xBA, 0xE8, 0x5 ; bts eax, 5
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db 0xF, 0x22, 0xE0 ; mov cr4, eax
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db 0xF, 0x22, 0xD9 ; mov cr3, ecx
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db 0x8B, 0xF2 ; mov esi, edx ; Save wakeup buffer address
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db 0xB9
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dd 0xC0000080 ; mov ecx, 0c0000080h ; EFER MSR number.
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db 0xF, 0x32 ; rdmsr ; Read EFER.
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db 0xF, 0xBA, 0xE8, 0x8 ; bts eax, 8 ; Set LME=1.
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db 0xF, 0x30 ; wrmsr ; Write EFER.
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db 0xF, 0x20, 0xC0 ; mov eax, cr0 ; Read CR0.
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db 0xF, 0xBA, 0xE8, 0x1F ; bts eax, 31 ; Set PG=1.
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db 0xF, 0x22, 0xC0 ; mov cr0, eax ; Write CR0.
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LONG_JUMP:
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db 0x67, 0xEA ; far jump
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dd 0x0 ; 32-bit offset
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dw 0x38 ; 16-bit selector
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LongModeStart:
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mov ax, 0x30
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o16 mov ds, ax
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o16 mov es, ax
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o16 mov ss, ax
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mov edi, esi
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add edi, LockLocation
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mov al, NotVacantFlag
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TestLock:
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xchg byte [edi], al
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cmp al, NotVacantFlag
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jz TestLock
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ProgramStack:
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mov edi, esi
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add edi, StackSizeLocation
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mov rax, qword [edi]
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mov edi, esi
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add edi, StackStartAddressLocation
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add rax, qword [edi]
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mov rsp, rax
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mov qword [edi], rax
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Releaselock:
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mov al, VacantFlag
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mov edi, esi
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add edi, LockLocation
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xchg byte [edi], al
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;
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; Call assembly function to initialize FPU.
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;
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mov rax, ASM_PFX(InitializeFloatingPointUnits)
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sub rsp, 0x20
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call rax
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add rsp, 0x20
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;
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; Call C Function
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;
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mov edi, esi
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add edi, CProcedureLocation
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mov rax, qword [edi]
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test rax, rax
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jz GoToSleep
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sub rsp, 0x20
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call rax
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add rsp, 0x20
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GoToSleep:
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cli
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hlt
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jmp $-2
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RendezvousFunnelProcEnd:
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;-------------------------------------------------------------------------------------
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; AsmGetAddressMap (&AddressMap);
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;-------------------------------------------------------------------------------------
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; comments here for definition of address map
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global ASM_PFX(AsmGetAddressMap)
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ASM_PFX(AsmGetAddressMap):
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mov rax, RendezvousFunnelProcStart
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mov qword [rcx], rax
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mov qword [rcx+0x8], PMODE_ENTRY - RendezvousFunnelProcStart
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mov qword [rcx+0x10], FLAT32_JUMP - RendezvousFunnelProcStart
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mov qword [rcx+0x18], RendezvousFunnelProcEnd - RendezvousFunnelProcStart
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mov qword [rcx+0x20], LongModeStart - RendezvousFunnelProcStart
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mov qword [rcx+0x28], LONG_JUMP - RendezvousFunnelProcStart
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ret
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