mirror of https://github.com/acidanthera/audk.git
197 lines
6.3 KiB
C
197 lines
6.3 KiB
C
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/** @file
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Integer Arithmetic Run-time support functions for GCC.
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The integer arithmetic routines are used on platforms that don't provide
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hardware support for arithmetic operations on some modes..
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Copyright (c) 2009 - 2011, Intel Corporation. All rights reserved.<BR>
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This program and the accompanying materials are licensed and made available
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under the terms and conditions of the BSD License which accompanies this
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distribution. The full text of the license may be found at
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http://opensource.org/licenses/bsd-license.
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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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#include <Uefi.h>
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#include <Library/UefiLib.h>
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#include <Library/DebugLib.h>
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#include <sys/EfiCdefs.h>
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#include <Library/BaseLib.h>
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// Shift Datum left by Count bits.
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// ===========================================================================
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//int __ashlsi3(int Datum, int Count)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (int) LShiftU64 ((UINT64)Datum, (UINTN)Count);
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//}
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INT64 __ashldi3(INT64 Datum, int Count)
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{
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DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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return LShiftU64 (Datum, (UINTN)Count);
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}
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//long long __ashlti3(long long Datum, int Count)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (long long) LShiftU64 ((UINT64)Datum, (UINTN)Count);
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//}
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// Arithmetically shift Datum right by Count bits.
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// ===========================================================================
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//int __ashrsi3(int Datum, int Count)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (int) ARShiftU64 ((UINT64) Datum, (UINTN)Count);
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//}
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INT64 __ashrdi3(INT64 Datum, int Count)
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{
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DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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return ARShiftU64 ( Datum, (UINTN)Count);
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}
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//long long __ashrti3(long long Datum, int Count)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (long long) ARShiftU64 ((UINT64) Datum, (UINTN)Count);
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//}
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// Return the quotient of the signed division of Dividend and Divisor
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// ===========================================================================
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//int __divsi3(int Dividend, int Divisor)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (int) DivS64x64Remainder ((INT64) Dividend, (INT64) Divisor, NULL);
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//}
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INT64 __divdi3(INT64 Dividend, INT64 Divisor)
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{
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INT64 Quotient;
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Quotient = DivS64x64Remainder ((INT64) Dividend, (INT64) Divisor, NULL);
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DebugPrint(DEBUG_INFO, "%a: %Ld / %Ld = %Ld\n", __func__, Dividend, Divisor, Quotient);
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return Quotient;
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}
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//long long __divti3(long long Dividend, long long Divisor)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (long long) DivS64x64Remainder ((INT64) Dividend, (INT64) Divisor, NULL);
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//}
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// Logically shift Datum right by Count bits
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// ===========================================================================
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//int __lshrsi3(int Datum, int Count)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (int) RShiftU64 ((UINT64) Datum, (UINTN)Count);
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//}
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INT64 __lshrdi3(INT64 Datum, int Count)
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{
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DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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return RShiftU64 ( Datum, (UINTN)Count);
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}
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//long long __lshrti3(int Datum, int Count)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (long long) RShiftU64 ((UINT64) Datum, (UINTN)Count);
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//}
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// Return the remainder of the signed division of Dividend and Divisor
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// ===========================================================================
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//int __modsi3(int Dividend, int Divisor)
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//{
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// INT64 Remainder;
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// (void) DivS64x64Remainder ((INT64) Dividend, (INT64) Divisor, &Remainder);
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// DebugPrint(DEBUG_INFO, "modsi3: %d %% %d = %d\n", Dividend, Divisor, (int)Remainder);
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// return (int) Remainder;
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//}
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INT64 __moddi3(INT64 Dividend, INT64 Divisor)
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{
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INT64 Remainder;
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(void) DivS64x64Remainder ((INT64) Dividend, (INT64) Divisor, &Remainder);
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DebugPrint(DEBUG_INFO, "moddi3: %Ld %% %Ld = %Ld\n", (INT64)Dividend, (INT64)Divisor, Remainder);
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return Remainder;
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}
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//long long __modti3(long long Dividend, long long Divisor)
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//{
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// INT64 Remainder;
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// (void) DivS64x64Remainder ((INT64) Dividend, (INT64) Divisor, &Remainder);
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// DebugPrint(DEBUG_INFO, "modti3: %Ld %% %Ld = %Ld\n", (INT64)Dividend, (INT64)Divisor, Remainder);
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// return (long long) Remainder;
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//}
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// These functions return the product of the Multiplicand and Multiplier.
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// ===========================================================================
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//long long __multi3(long long Multiplicand, long long Multiplier)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (long long) MultS64x64 ((INT64)Multiplicand, (INT64)Multiplier);
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//}
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// Return the quotient of the unsigned division of a and b.
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// ===========================================================================
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//unsigned int __udivsi3(unsigned int Dividend, unsigned int Divisor)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (int) DivU64x64Remainder ((UINT64) Dividend, (UINT64) Divisor, NULL);
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//}
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UINT64 __udivdi3(UINT64 Dividend, UINT64 Divisor)
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{
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DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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return DivU64x64Remainder ((UINT64) Dividend, (UINT64) Divisor, NULL);
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}
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//unsigned long long __udivti3(unsigned long long Dividend, unsigned long long Divisor)
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//{
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// return (long long) DivU64x64Remainder ((UINT64) Dividend, (UINT64) Divisor, NULL);
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//}
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// ===========================================================================
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//unsigned int __umodsi3(unsigned int Dividend, unsigned int Divisor)
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//{
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// UINT64 Remainder;
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// (void) DivU64x64Remainder ((UINT64) Dividend, (UINT64) Divisor, &Remainder);
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// return (unsigned int) Remainder;
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//}
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UINT64 __umoddi3(UINT64 Dividend, UINT64 Divisor)
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{
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UINT64 Remainder;
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DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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(void) DivU64x64Remainder ((UINT64) Dividend, (UINT64) Divisor, &Remainder);
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return Remainder;
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}
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//unsigned long long __umodti3(unsigned long long Dividend, unsigned long long Divisor)
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//{
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// UINT64 Remainder;
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// DebugPrint(DEBUG_INFO, "%a:\n", __func__);
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// (void) DivU64x64Remainder ((UINT64) Dividend, (UINT64) Divisor, &Remainder);
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// return (unsigned long long) Remainder;
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//}
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