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200 lines
3.5 KiB
200 lines
3.5 KiB
// cpu.cpp - written and placed in the public domain by Wei Dai
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#include "pch.h"
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#ifndef CRYPTOPP_IMPORTS
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#include "cpu.h"
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#include "misc.h"
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#include <algorithm>
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#ifdef __GNUC__
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#include <signal.h>
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#include <setjmp.h>
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#endif
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#ifdef CRYPTOPP_MSVC6PP_OR_LATER
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#include <emmintrin.h>
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#endif
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NAMESPACE_BEGIN(CryptoPP)
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#ifdef CRYPTOPP_X86_ASM_AVAILABLE
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#ifndef _MSC_VER
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typedef void (*SigHandler)(int);
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static jmp_buf s_jmpNoCPUID;
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static void SigIllHandlerCPUID(int)
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{
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longjmp(s_jmpNoCPUID, 1);
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}
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#endif
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bool CpuId(word32 input, word32 *output)
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{
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#ifdef _MSC_VER
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__try
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{
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__asm
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{
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mov eax, input
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cpuid
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mov edi, output
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mov [edi], eax
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mov [edi+4], ebx
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mov [edi+8], ecx
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mov [edi+12], edx
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}
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}
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__except (1)
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{
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return false;
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}
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return true;
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#else
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SigHandler oldHandler = signal(SIGILL, SigIllHandlerCPUID);
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if (oldHandler == SIG_ERR)
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return false;
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bool result = true;
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if (setjmp(s_jmpNoCPUID))
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result = false;
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else
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{
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__asm__
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(
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// save ebx in case -fPIC is being used
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#if CRYPTOPP_BOOL_X86
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"push %%ebx; cpuid; mov %%ebx, %%edi; pop %%ebx"
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#else
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"pushq %%rbx; cpuid; mov %%ebx, %%edi; popq %%rbx"
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#endif
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: "=a" (output[0]), "=D" (output[1]), "=c" (output[2]), "=d" (output[3])
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: "a" (input)
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);
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}
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signal(SIGILL, oldHandler);
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return result;
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#endif
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}
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#ifndef _MSC_VER
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static jmp_buf s_jmpNoSSE2;
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static void SigIllHandlerSSE2(int)
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{
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longjmp(s_jmpNoSSE2, 1);
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}
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#endif
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#elif _MSC_VER >= 1400 && CRYPTOPP_BOOL_X64
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bool CpuId(word32 input, word32 *output)
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{
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__cpuid((int *)output, input);
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return true;
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}
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#endif
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#ifdef CRYPTOPP_CPUID_AVAILABLE
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static bool TrySSE2()
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{
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#if CRYPTOPP_BOOL_X64
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return true;
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#elif defined(_MSC_VER)
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__try
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{
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#if CRYPTOPP_BOOL_SSE2_ASM_AVAILABLE
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AS2(por xmm0, xmm0) // executing SSE2 instruction
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#elif CRYPTOPP_BOOL_SSE2_INTRINSICS_AVAILABLE
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__mm128i x = _mm_setzero_si128();
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return _mm_cvtsi128_si32(x) == 0;
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#endif
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}
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__except (1)
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{
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return false;
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}
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return true;
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#elif defined(__GNUC__)
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SigHandler oldHandler = signal(SIGILL, SigIllHandlerSSE2);
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if (oldHandler == SIG_ERR)
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return false;
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bool result = true;
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if (setjmp(s_jmpNoSSE2))
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result = false;
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else
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{
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#if CRYPTOPP_BOOL_SSE2_ASM_AVAILABLE
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__asm __volatile ("por %xmm0, %xmm0");
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#elif CRYPTOPP_BOOL_SSE2_INTRINSICS_AVAILABLE
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__mm128i x = _mm_setzero_si128();
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result = _mm_cvtsi128_si32(x) == 0;
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#endif
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}
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signal(SIGILL, oldHandler);
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return result;
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#else
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return false;
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#endif
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}
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bool g_x86DetectionDone = false;
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bool g_hasISSE = false, g_hasSSE2 = false, g_hasSSSE3 = false, g_hasMMX = false, g_isP4 = false;
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word32 g_cacheLineSize = CRYPTOPP_L1_CACHE_LINE_SIZE;
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void DetectX86Features()
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{
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word32 cpuid[4], cpuid1[4];
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if (!CpuId(0, cpuid))
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return;
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if (!CpuId(1, cpuid1))
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return;
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g_hasMMX = (cpuid1[3] & (1 << 23)) != 0;
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if ((cpuid1[3] & (1 << 26)) != 0)
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g_hasSSE2 = TrySSE2();
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g_hasSSSE3 = g_hasSSE2 && (cpuid1[2] & (1<<9));
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if ((cpuid1[3] & (1 << 25)) != 0)
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g_hasISSE = true;
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else
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{
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word32 cpuid2[4];
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CpuId(0x080000000, cpuid2);
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if (cpuid2[0] >= 0x080000001)
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{
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CpuId(0x080000001, cpuid2);
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g_hasISSE = (cpuid2[3] & (1 << 22)) != 0;
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}
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}
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std::swap(cpuid[2], cpuid[3]);
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if (memcmp(cpuid+1, "GenuineIntel", 12) == 0)
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{
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g_isP4 = ((cpuid1[0] >> 8) & 0xf) == 0xf;
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g_cacheLineSize = 8 * GETBYTE(cpuid1[1], 1);
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}
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else if (memcmp(cpuid+1, "AuthenticAMD", 12) == 0)
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{
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CpuId(0x80000005, cpuid);
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g_cacheLineSize = GETBYTE(cpuid[2], 0);
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}
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if (!g_cacheLineSize)
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g_cacheLineSize = CRYPTOPP_L1_CACHE_LINE_SIZE;
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g_x86DetectionDone = true;
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}
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#endif
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NAMESPACE_END
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#endif
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