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try to auto-detect whether to use 128-bit 4-way SSE2
git-svn-id: https://bitcoin.svn.sourceforge.net/svnroot/bitcoin/trunk@150 1a98c847-1fd6-4fd8-948a-caf3550aa51b
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@ -184,8 +184,8 @@ public:
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void deallocate(void *p, size_type n)
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{
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//// Bitcoin: can't figure out why this is tripping on a few compiles.
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//assert(false);
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//// Bitcoin: don't know why this trips, probably a false alarm, depends on the compiler used.
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//assert(false);
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}
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size_type max_size() const {return 0;}
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66
main.cpp
66
main.cpp
@ -2767,6 +2767,68 @@ inline void SHA256Transform(void* pstate, void* pinput, const void* pinit)
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static const int NPAR = 32;
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extern void Double_BlockSHA256(const void* pin, void* pout, const void* pinit, unsigned int hash[8][NPAR], const void* init2);
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#ifdef __GNUC__
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void CallCPUID(int in, int& aret, int& cret)
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{
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int a, c;
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asm (
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"mov %2, %%eax; " // in into eax
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"cpuid;"
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"mov %%eax, %0;" // eax into ret
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"mov %%ecx, %1;" // eax into ret
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:"=r"(a),"=r"(c) /* output */
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:"r"(in) /* input */
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:"%eax","%ecx" /* clobbered register */
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);
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aret = a;
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cret = c;
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}
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bool Detect128BitSSE2()
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{
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int a, c, nBrand;
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CallCPUID(0, a, nBrand);
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bool fIntel = (nBrand == 0x6c65746e); // ntel
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bool fAMD = (nBrand == 0x444d4163); // cAMD
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struct
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{
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unsigned int nStepping : 4;
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unsigned int nModel : 4;
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unsigned int nFamily : 4;
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unsigned int nProcessorType : 2;
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unsigned int nUnused : 2;
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unsigned int nExtendedModel : 4;
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unsigned int nExtendedFamily : 8;
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}
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cpu;
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CallCPUID(1, a, c);
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memcpy(&cpu, &a, sizeof(cpu));
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int nFamily = cpu.nExtendedFamily + cpu.nFamily;
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int nModel = cpu.nExtendedModel*16 + cpu.nModel;
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// We need Intel Nehalem or AMD K10 or better for 128bit SSE2
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// Nehalem = i3/i5/i7 and some Xeon
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// K10 = Opterons with 4 or more cores, Phenom, Phenom II, Athlon II
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// Intel Core i5 family 6, model 26 or 30
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// Intel Core i7 family 6, model 26 or 30
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// Intel Core i3 family 6, model 37
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// AMD Phenom family 16, model 10
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bool fUseSSE2 = ((fIntel && nFamily * 10000 + nModel >= 60026) ||
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(fAMD && nFamily * 10000 + nModel >= 160010));
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static bool fPrinted;
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if (!fPrinted)
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{
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fPrinted = true;
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printf("CPUID %08x family %d, model %d, stepping %d, fUseSSE2=%d\n", nBrand, nFamily, nModel, cpu.nStepping, fUseSSE2);
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}
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return fUseSSE2;
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}
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#else
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bool Detect128BitSSE2() { return false; }
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#endif
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@ -2774,6 +2836,9 @@ void BitcoinMiner()
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{
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printf("BitcoinMiner started\n");
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SetThreadPriority(THREAD_PRIORITY_LOWEST);
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bool f4WaySSE2 = Detect128BitSSE2();
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if (mapArgs.count("-4way"))
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f4WaySSE2 = (mapArgs["-4way"] != "0");
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CKey key;
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key.MakeNewKey();
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@ -2913,7 +2978,6 @@ void BitcoinMiner()
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//
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// Search
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//
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bool f4WaySSE2 = mapArgs.count("-4way");
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int64 nStart = GetTime();
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uint256 hashTarget = CBigNum().SetCompact(pblock->nBits).getuint256();
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uint256 hashbuf[2];
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4
net.cpp
4
net.cpp
@ -1160,7 +1160,9 @@ void ThreadMessageHandler2(void* parg)
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pnode->Release();
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}
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// Wait and allow messages to bunch up
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// Wait and allow messages to bunch up.
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// Reduce vnThreadsRunning so StopNode has permission to exit while
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// we're sleeping, but we must always check fShutdown after doing this.
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vnThreadsRunning[2]--;
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Sleep(100);
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if (fRequestShutdown)
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@ -23,7 +23,7 @@ class CAutoFile;
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static const unsigned int MAX_SIZE = 0x02000000;
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static const int VERSION = 312;
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static const char* pszSubVer = ".1";
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static const char* pszSubVer = ".2";
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