mirror of
https://github.com/veracrypt/VeraCrypt.git
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434 lines
13 KiB
C
434 lines
13 KiB
C
#ifndef CRYPTOPP_CPU_H
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#define CRYPTOPP_CPU_H
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#include "Common/Tcdefs.h"
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#include "config.h"
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// Applies to both X86/X32/X64 and ARM32/ARM64
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#if defined(CRYPTOPP_LLVM_CLANG_VERSION) || defined(CRYPTOPP_APPLE_CLANG_VERSION) || defined(CRYPTOPP_CLANG_INTEGRATED_ASSEMBLER)
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#define NEW_LINE "\n"
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#define INTEL_PREFIX ".intel_syntax;"
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#define INTEL_NOPREFIX ".intel_syntax;"
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#define ATT_PREFIX ".att_syntax;"
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#define ATT_NOPREFIX ".att_syntax;"
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#elif defined(__GNUC__)
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#define NEW_LINE
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#define INTEL_PREFIX ".intel_syntax prefix;"
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#define INTEL_NOPREFIX ".intel_syntax noprefix;"
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#define ATT_PREFIX ".att_syntax prefix;"
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#define ATT_NOPREFIX ".att_syntax noprefix;"
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#else
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#define NEW_LINE
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#define INTEL_PREFIX
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#define INTEL_NOPREFIX
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#define ATT_PREFIX
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#define ATT_NOPREFIX
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#endif
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#ifdef CRYPTOPP_GENERATE_X64_MASM
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#define CRYPTOPP_X86_ASM_AVAILABLE
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#define CRYPTOPP_BOOL_X64 1
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#define CRYPTOPP_BOOL_SSE2_ASM_AVAILABLE 1
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#else
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#if CRYPTOPP_BOOL_SSE2_INTRINSICS_AVAILABLE
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#if defined(TC_WINDOWS_DRIVER) || defined (_UEFI)
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#if defined(__cplusplus)
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extern "C" {
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#endif
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typedef union __declspec(intrin_type) CRYPTOPP_ALIGN_DATA(8) __m64
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{
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unsigned __int64 m64_u64;
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float m64_f32[2];
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__int8 m64_i8[8];
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__int16 m64_i16[4];
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__int32 m64_i32[2];
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__int64 m64_i64;
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unsigned __int8 m64_u8[8];
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unsigned __int16 m64_u16[4];
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unsigned __int32 m64_u32[2];
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} __m64;
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typedef union __declspec(intrin_type) CRYPTOPP_ALIGN_DATA(16) __m128 {
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float m128_f32[4];
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unsigned __int64 m128_u64[2];
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__int8 m128_i8[16];
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__int16 m128_i16[8];
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__int32 m128_i32[4];
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__int64 m128_i64[2];
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unsigned __int8 m128_u8[16];
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unsigned __int16 m128_u16[8];
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unsigned __int32 m128_u32[4];
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} __m128;
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typedef union __declspec(intrin_type) CRYPTOPP_ALIGN_DATA(16) __m128i {
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__int8 m128i_i8[16];
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__int16 m128i_i16[8];
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__int32 m128i_i32[4];
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__int64 m128i_i64[2];
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unsigned __int8 m128i_u8[16];
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unsigned __int16 m128i_u16[8];
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unsigned __int32 m128i_u32[4];
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unsigned __int64 m128i_u64[2];
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} __m128i;
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typedef struct __declspec(intrin_type) CRYPTOPP_ALIGN_DATA(16) __m128d {
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double m128d_f64[2];
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} __m128d;
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#define _MM_SHUFFLE2(x,y) (((x)<<1) | (y))
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extern void _m_empty(void);
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extern int _mm_extract_epi16(__m128i _A, int _Imm);
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extern __m128i _mm_load_si128(__m128i const*_P);
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extern __m128i _mm_xor_si128(__m128i _A, __m128i _B);
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extern __m128i _mm_cvtsi64_si128(__int64);
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extern __m128i _mm_unpacklo_epi64(__m128i _A, __m128i _B);
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extern void _mm_store_si128(__m128i *_P, __m128i _B);
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extern __m64 _m_pxor(__m64 _MM1, __m64 _MM2);
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extern __m128i _mm_set_epi64(__m64 _Q1, __m64 _Q0);
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extern __m128i _mm_setr_epi32(int _I0, int _I1, int _I2, int _I3);
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extern __m128i _mm_loadu_si128(__m128i const*_P);
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extern __m128i _mm_set_epi32(int _I3, int _I2, int _I1, int _I0);
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extern __m128i _mm_set1_epi32(int _I);
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extern void _mm_storeu_si128(__m128i *_P, __m128i _B);
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extern __m128i _mm_or_si128(__m128i _A, __m128i _B);
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extern __m128i _mm_slli_epi32(__m128i _A, int _Count);
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extern __m128i _mm_srli_epi32(__m128i _A, int _Count);
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extern __m128i _mm_add_epi32(__m128i _A, __m128i _B);
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extern __m128i _mm_sub_epi32(__m128i _A, __m128i _B);
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extern __m128i _mm_or_si128(__m128i _A, __m128i _B);
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extern __m128i _mm_and_si128(__m128i _A, __m128i _B);
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extern __m128i _mm_andnot_si128(__m128i _A, __m128i _B);
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extern __m128i _mm_shufflehi_epi16(__m128i _A, int _Imm);
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extern __m128i _mm_shufflelo_epi16(__m128i _A, int _Imm);
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extern __m128i _mm_unpacklo_epi32(__m128i _A, __m128i _B);
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extern __m128i _mm_unpackhi_epi32(__m128i _A, __m128i _B);
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extern __m128i _mm_unpackhi_epi64(__m128i _A, __m128i _B);
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extern __m128i _mm_srli_epi16(__m128i _A, int _Count);
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extern __m128i _mm_slli_epi16(__m128i _A, int _Count);
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#define _mm_xor_si64 _m_pxor
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#define _mm_empty _m_empty
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#define _MM_SHUFFLE(fp3,fp2,fp1,fp0) (((fp3) << 6) | ((fp2) << 4) | \
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((fp1) << 2) | ((fp0)))
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#if defined(__cplusplus)
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}
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#endif
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#else
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#include <mmintrin.h>
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#include <emmintrin.h>
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#endif
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#endif
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#if CRYPTOPP_BOOL_AESNI_INTRINSICS_AVAILABLE
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#if defined(__SSSE3__) || defined(__INTEL_COMPILER)
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#if defined(TC_WINDOWS_DRIVER) || defined (_UEFI)
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#if defined(__cplusplus)
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extern "C" {
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#endif
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extern __m128i _mm_shuffle_epi8 (__m128i a, __m128i b);
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#if defined(__cplusplus)
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}
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#endif
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#else
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#include <tmmintrin.h>
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#endif
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#endif
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#if defined(__SSE4_1__) || defined(__INTEL_COMPILER) || defined(_MSC_VER)
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#if defined(TC_WINDOWS_DRIVER) || defined (_UEFI)
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#if defined(__cplusplus)
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extern "C" {
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#endif
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extern int _mm_extract_epi32(__m128i src, const int ndx);
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extern __m128i _mm_insert_epi32(__m128i dst, int s, const int ndx);
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#if defined(_M_X64)
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extern __m128i _mm_insert_epi64(__m128i dst, __int64 s, const int ndx);
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#endif
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#if defined(__cplusplus)
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}
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#endif
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#else
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#include <smmintrin.h>
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#endif
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#endif
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#if (defined(__AES__) && defined(__PCLMUL__)) || defined(__INTEL_COMPILER) || CRYPTOPP_BOOL_AESNI_INTRINSICS_AVAILABLE
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#if defined(TC_WINDOWS_DRIVER) || defined (_UEFI)
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#if defined(__cplusplus)
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extern "C" {
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#endif
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extern __m128i _mm_clmulepi64_si128(__m128i v1, __m128i v2,
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const int imm8);
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extern __m128i _mm_aeskeygenassist_si128(__m128i ckey, const int rcon);
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extern __m128i _mm_aesimc_si128(__m128i v);
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extern __m128i _mm_aesenc_si128(__m128i v, __m128i rkey);
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extern __m128i _mm_aesenclast_si128(__m128i v, __m128i rkey);
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extern __m128i _mm_aesdec_si128(__m128i v, __m128i rkey);
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extern __m128i _mm_aesdeclast_si128(__m128i v, __m128i rkey);
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#if defined(__cplusplus)
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}
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#endif
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#else
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#include <wmmintrin.h>
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#endif
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#endif
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#endif
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#if CRYPTOPP_BOOL_X86 || CRYPTOPP_BOOL_X32 || CRYPTOPP_BOOL_X64
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#if defined(__cplusplus)
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extern "C" {
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#endif
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#define CRYPTOPP_CPUID_AVAILABLE
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// these should not be used directly
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extern volatile int g_x86DetectionDone;
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extern volatile int g_hasSSE2;
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extern volatile int g_hasISSE;
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extern volatile int g_hasMMX;
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extern volatile int g_hasAVX;
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extern volatile int g_hasAVX2;
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extern volatile int g_hasBMI2;
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extern volatile int g_hasSSE42;
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extern volatile int g_hasSSE41;
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extern volatile int g_hasSSSE3;
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extern volatile int g_hasAESNI;
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extern volatile int g_hasCLMUL;
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extern volatile int g_isP4;
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extern volatile int g_isIntel;
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extern volatile int g_isAMD;
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extern volatile uint32 g_cacheLineSize;
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void DetectX86Features(); // must be called at the start of the program/driver
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int CpuId(uint32 input, uint32 *output);
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// disable all CPU extended features (e.g. SSE, AVX, AES) that may have
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// been enabled by DetectX86Features.
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void DisableCPUExtendedFeatures ();
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#define HasSSE2() g_hasSSE2
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#define HasISSE() g_hasISSE
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#define HasMMX() g_hasMMX
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#define HasSSE42() g_hasSSE42
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#define HasSSE41() g_hasSSE41
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#define HasSAVX() g_hasAVX
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#define HasSAVX2() g_hasAVX2
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#define HasSBMI2() g_hasBMI2
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#define HasSSSE3() g_hasSSSE3
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#define HasAESNI() g_hasAESNI
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#define HasCLMUL() g_hasCLMUL
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#define IsP4() g_isP4
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#define IsCpuIntel() g_isIntel
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#define IsCpuAMD() g_isAMD
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#define GetCacheLineSize() g_cacheLineSize
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#if defined(__cplusplus)
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}
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#endif
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#else
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#define GetCacheLineSize() CRYPTOPP_L1_CACHE_LINE_SIZE
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#endif
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#endif
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#if CRYPTOPP_BOOL_X86 || CRYPTOPP_BOOL_X32 || CRYPTOPP_BOOL_X64
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#ifdef CRYPTOPP_GENERATE_X64_MASM
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#define AS1(x) x*newline*
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#define AS2(x, y) x, y*newline*
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#define AS3(x, y, z) x, y, z*newline*
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#define ASS(x, y, a, b, c, d) x, y, a*64+b*16+c*4+d*newline*
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#define ASL(x) label##x:*newline*
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#define ASJ(x, y, z) x label##y*newline*
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#define ASC(x, y) x label##y*newline*
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#define AS_HEX(y) 0##y##h
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#elif defined(_MSC_VER) || defined(__BORLANDC__)
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#define CRYPTOPP_MS_STYLE_INLINE_ASSEMBLY
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#define AS1(x) __asm {x}
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#define AS2(x, y) __asm {x, y}
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#define AS3(x, y, z) __asm {x, y, z}
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#define ASS(x, y, a, b, c, d) __asm {x, y, (a)*64+(b)*16+(c)*4+(d)}
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#define ASL(x) __asm {label##x:}
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#define ASJ(x, y, z) __asm {x label##y}
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#define ASC(x, y) __asm {x label##y}
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#define CRYPTOPP_NAKED __declspec(naked)
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#define AS_HEX(y) 0x##y
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#else
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#define CRYPTOPP_GNU_STYLE_INLINE_ASSEMBLY
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// define these in two steps to allow arguments to be expanded
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#define GNU_AS1(x) #x ";" NEW_LINE
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#define GNU_AS2(x, y) #x ", " #y ";" NEW_LINE
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#define GNU_AS3(x, y, z) #x ", " #y ", " #z ";" NEW_LINE
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#define GNU_ASL(x) "\n" #x ":" NEW_LINE
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#define GNU_ASJ(x, y, z) #x " " #y #z ";" NEW_LINE
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#define AS1(x) GNU_AS1(x)
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#define AS2(x, y) GNU_AS2(x, y)
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#define AS3(x, y, z) GNU_AS3(x, y, z)
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#define ASS(x, y, a, b, c, d) #x ", " #y ", " #a "*64+" #b "*16+" #c "*4+" #d ";"
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#define ASL(x) GNU_ASL(x)
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#define ASJ(x, y, z) GNU_ASJ(x, y, z)
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#define ASC(x, y) #x " " #y ";"
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#define CRYPTOPP_NAKED
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#define AS_HEX(y) 0x##y
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#endif
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#define IF0(y)
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#define IF1(y) y
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#ifdef CRYPTOPP_GENERATE_X64_MASM
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#define ASM_MOD(x, y) ((x) MOD (y))
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#define XMMWORD_PTR XMMWORD PTR
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#else
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// GNU assembler doesn't seem to have mod operator
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#define ASM_MOD(x, y) ((x)-((x)/(y))*(y))
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// GAS 2.15 doesn't support XMMWORD PTR. it seems necessary only for MASM
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#define XMMWORD_PTR
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#endif
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#if CRYPTOPP_BOOL_X86
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#define AS_REG_1 ecx
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#define AS_REG_2 edx
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#define AS_REG_3 esi
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#define AS_REG_4 edi
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#define AS_REG_5 eax
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#define AS_REG_6 ebx
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#define AS_REG_7 ebp
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#define AS_REG_1d ecx
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#define AS_REG_2d edx
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#define AS_REG_3d esi
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#define AS_REG_4d edi
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#define AS_REG_5d eax
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#define AS_REG_6d ebx
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#define AS_REG_7d ebp
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#define WORD_SZ 4
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#define WORD_REG(x) e##x
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#define WORD_PTR DWORD PTR
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#define AS_PUSH_IF86(x) AS1(push e##x)
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#define AS_POP_IF86(x) AS1(pop e##x)
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#define AS_JCXZ jecxz
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#elif CRYPTOPP_BOOL_X32
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#define AS_REG_1 ecx
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#define AS_REG_2 edx
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#define AS_REG_3 r8d
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#define AS_REG_4 r9d
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#define AS_REG_5 eax
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#define AS_REG_6 r10d
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#define AS_REG_7 r11d
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#define AS_REG_1d ecx
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#define AS_REG_2d edx
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#define AS_REG_3d r8d
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#define AS_REG_4d r9d
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#define AS_REG_5d eax
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#define AS_REG_6d r10d
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#define AS_REG_7d r11d
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#define WORD_SZ 4
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#define WORD_REG(x) e##x
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#define WORD_PTR DWORD PTR
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#define AS_PUSH_IF86(x) AS1(push r##x)
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#define AS_POP_IF86(x) AS1(pop r##x)
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#define AS_JCXZ jecxz
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#elif CRYPTOPP_BOOL_X64
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#ifdef CRYPTOPP_GENERATE_X64_MASM
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#define AS_REG_1 rcx
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#define AS_REG_2 rdx
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#define AS_REG_3 r8
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#define AS_REG_4 r9
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#define AS_REG_5 rax
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#define AS_REG_6 r10
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#define AS_REG_7 r11
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#define AS_REG_1d ecx
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#define AS_REG_2d edx
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#define AS_REG_3d r8d
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#define AS_REG_4d r9d
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#define AS_REG_5d eax
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#define AS_REG_6d r10d
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#define AS_REG_7d r11d
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#else
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#define AS_REG_1 rdi
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#define AS_REG_2 rsi
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#define AS_REG_3 rdx
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#define AS_REG_4 rcx
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#define AS_REG_5 r8
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#define AS_REG_6 r9
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#define AS_REG_7 r10
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#define AS_REG_1d edi
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#define AS_REG_2d esi
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#define AS_REG_3d edx
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#define AS_REG_4d ecx
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#define AS_REG_5d r8d
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#define AS_REG_6d r9d
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#define AS_REG_7d r10d
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#endif
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#define WORD_SZ 8
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#define WORD_REG(x) r##x
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#define WORD_PTR QWORD PTR
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#define AS_PUSH_IF86(x)
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#define AS_POP_IF86(x)
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#define AS_JCXZ jrcxz
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#endif
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// helper macro for stream cipher output
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#define AS_XMM_OUTPUT4(labelPrefix, inputPtr, outputPtr, x0, x1, x2, x3, t, p0, p1, p2, p3, increment)\
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AS2( test inputPtr, inputPtr)\
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ASC( jz, labelPrefix##3)\
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AS2( test inputPtr, 15)\
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ASC( jnz, labelPrefix##7)\
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AS2( pxor xmm##x0, [inputPtr+p0*16])\
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AS2( pxor xmm##x1, [inputPtr+p1*16])\
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AS2( pxor xmm##x2, [inputPtr+p2*16])\
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AS2( pxor xmm##x3, [inputPtr+p3*16])\
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AS2( add inputPtr, increment*16)\
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ASC( jmp, labelPrefix##3)\
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ASL(labelPrefix##7)\
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AS2( movdqu xmm##t, [inputPtr+p0*16])\
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AS2( pxor xmm##x0, xmm##t)\
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AS2( movdqu xmm##t, [inputPtr+p1*16])\
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AS2( pxor xmm##x1, xmm##t)\
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AS2( movdqu xmm##t, [inputPtr+p2*16])\
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AS2( pxor xmm##x2, xmm##t)\
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AS2( movdqu xmm##t, [inputPtr+p3*16])\
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AS2( pxor xmm##x3, xmm##t)\
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AS2( add inputPtr, increment*16)\
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ASL(labelPrefix##3)\
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AS2( test outputPtr, 15)\
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ASC( jnz, labelPrefix##8)\
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AS2( movdqa [outputPtr+p0*16], xmm##x0)\
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AS2( movdqa [outputPtr+p1*16], xmm##x1)\
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AS2( movdqa [outputPtr+p2*16], xmm##x2)\
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AS2( movdqa [outputPtr+p3*16], xmm##x3)\
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ASC( jmp, labelPrefix##9)\
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ASL(labelPrefix##8)\
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AS2( movdqu [outputPtr+p0*16], xmm##x0)\
|
|
AS2( movdqu [outputPtr+p1*16], xmm##x1)\
|
|
AS2( movdqu [outputPtr+p2*16], xmm##x2)\
|
|
AS2( movdqu [outputPtr+p3*16], xmm##x3)\
|
|
ASL(labelPrefix##9)\
|
|
AS2( add outputPtr, increment*16)
|
|
|
|
#endif // X86/X32/X64
|
|
|
|
#if defined(TC_WINDOWS_DRIVER) || defined (_UEFI)
|
|
#ifdef __cplusplus
|
|
extern "C" {
|
|
#endif
|
|
extern unsigned __int64 __cdecl _rotl64(unsigned __int64,int);
|
|
extern unsigned __int64 __cdecl _rotr64(unsigned __int64,int);
|
|
extern unsigned int __cdecl _rotl(unsigned int,int);
|
|
extern unsigned int __cdecl _rotr(unsigned int,int);
|
|
extern unsigned char _rotr8(unsigned char value, unsigned char shift);
|
|
extern unsigned short _rotr16(unsigned short value, unsigned char shift);
|
|
extern unsigned char _rotl8(unsigned char value, unsigned char shift);
|
|
extern unsigned short _rotl16(unsigned short value, unsigned char shift);
|
|
#ifdef __cplusplus
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
#endif
|