214 lines
7.8 KiB
C++
214 lines
7.8 KiB
C++
//===- subzero/crosstest/test_fcmp_main.cpp - Driver for tests ------------===//
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//
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// The Subzero Code Generator
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// Driver for cross testing the fcmp bitcode instruction
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//
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//===----------------------------------------------------------------------===//
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/* crosstest.py --test=test_fcmp.pnacl.ll --driver=test_fcmp_main.cpp \
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--prefix=Subzero_ --output=test_fcmp */
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#include <cassert>
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#include <cfloat>
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#include <cmath>
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#include <cstring>
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#include <iostream>
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#include "test_arith.def"
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#include "test_fcmp.def"
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#include "vectors.h"
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#define X(cmp) \
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extern "C" bool fcmp##cmp##Float(float a, float b); \
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extern "C" bool fcmp##cmp##Double(double a, double b); \
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extern "C" int fcmpSelect##cmp##Float(float a, float b, int c, int d); \
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extern "C" int fcmpSelect##cmp##Double(double a, double b, int c, int d); \
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extern "C" v4si32 fcmp##cmp##Vector(v4f32 a, v4f32 b); \
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extern "C" bool Subzero_fcmp##cmp##Float(float a, float b); \
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extern "C" bool Subzero_fcmp##cmp##Double(double a, double b); \
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extern "C" int Subzero_fcmpSelect##cmp##Float(float a, float b, int c, \
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int d); \
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extern "C" int Subzero_fcmpSelect##cmp##Double(double a, double b, int c, \
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int d); \
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extern "C" v4si32 Subzero_fcmp##cmp##Vector(v4f32 a, v4f32 b);
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FCMP_TABLE;
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#undef X
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volatile double *Values;
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size_t NumValues;
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void initializeValues() {
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static const double NegInf = -1.0 / 0.0;
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static const double Zero = 0.0;
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static const double PosInf = 1.0 / 0.0;
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static const double Nan = 0.0 / 0.0;
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static const double NegNan = -0.0 / 0.0;
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assert(std::fpclassify(NegInf) == FP_INFINITE);
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assert(std::fpclassify(PosInf) == FP_INFINITE);
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assert(std::fpclassify(Nan) == FP_NAN);
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assert(std::fpclassify(NegNan) == FP_NAN);
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assert(NegInf < Zero);
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assert(NegInf < PosInf);
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assert(Zero < PosInf);
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static volatile double InitValues[] =
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FP_VALUE_ARRAY(NegInf, PosInf, NegNan, Nan);
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NumValues = sizeof(InitValues) / sizeof(*InitValues);
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Values = InitValues;
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}
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void testsScalar(size_t &TotalTests, size_t &Passes, size_t &Failures) {
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typedef bool (*FuncTypeFloat)(float, float);
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typedef bool (*FuncTypeDouble)(double, double);
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typedef int (*FuncTypeFloatSelect)(float, float, int, int);
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typedef int (*FuncTypeDoubleSelect)(double, double, int, int);
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static struct {
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const char *Name;
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FuncTypeFloat FuncFloatSz;
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FuncTypeFloat FuncFloatLlc;
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FuncTypeDouble FuncDoubleSz;
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FuncTypeDouble FuncDoubleLlc;
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FuncTypeFloatSelect FuncFloatSelectSz;
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FuncTypeFloatSelect FuncFloatSelectLlc;
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FuncTypeDoubleSelect FuncDoubleSelectSz;
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FuncTypeDoubleSelect FuncDoubleSelectLlc;
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} Funcs[] = {
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#define X(cmp) \
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{"fcmp" STR(cmp), Subzero_fcmp##cmp##Float, \
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fcmp##cmp##Float, Subzero_fcmp##cmp##Double, \
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fcmp##cmp##Double, Subzero_fcmpSelect##cmp##Float, \
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fcmpSelect##cmp##Float, Subzero_fcmpSelect##cmp##Double, \
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fcmpSelect##cmp##Double},
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FCMP_TABLE
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#undef X
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};
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const static size_t NumFuncs = sizeof(Funcs) / sizeof(*Funcs);
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bool ResultSz, ResultLlc;
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assert(Values && NumValues);
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for (size_t f = 0; f < NumFuncs; ++f) {
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for (size_t i = 0; i < NumValues; ++i) {
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for (size_t j = 0; j < NumValues; ++j) {
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++TotalTests;
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float Value1Float = Values[i];
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float Value2Float = Values[j];
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ResultSz = Funcs[f].FuncFloatSz(Value1Float, Value2Float);
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ResultLlc = Funcs[f].FuncFloatLlc(Value1Float, Value2Float);
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if (ResultSz == ResultLlc) {
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++Passes;
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} else {
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++Failures;
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std::cout << Funcs[f].Name << "Float(" << Value1Float << ", "
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<< Value2Float << "): sz=" << ResultSz
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<< " llc=" << ResultLlc << "\n";
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}
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++TotalTests;
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double Value1Double = Values[i];
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double Value2Double = Values[j];
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ResultSz = Funcs[f].FuncDoubleSz(Value1Double, Value2Double);
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ResultLlc = Funcs[f].FuncDoubleLlc(Value1Double, Value2Double);
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if (ResultSz == ResultLlc) {
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++Passes;
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} else {
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++Failures;
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std::cout << Funcs[f].Name << "Double(" << Value1Double << ", "
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<< Value2Double << "): sz=" << ResultSz
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<< " llc=" << ResultLlc << "\n";
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}
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++TotalTests;
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float Value1SelectFloat = Values[i];
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float Value2SelectFloat = Values[j];
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ResultSz = Funcs[f].FuncFloatSelectSz(Value1Float, Value2Float, 1, 2);
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ResultLlc = Funcs[f].FuncFloatSelectLlc(Value1Float, Value2Float, 1, 2);
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if (ResultSz == ResultLlc) {
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++Passes;
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} else {
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++Failures;
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std::cout << Funcs[f].Name << "SelectFloat(" << Value1Float << ", "
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<< Value2Float << "): sz=" << ResultSz
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<< " llc=" << ResultLlc << "\n";
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}
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++TotalTests;
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double Value1SelectDouble = Values[i];
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double Value2SelectDouble = Values[j];
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ResultSz =
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Funcs[f].FuncDoubleSelectSz(Value1Double, Value2Double, 1, 2);
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ResultLlc =
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Funcs[f].FuncDoubleSelectLlc(Value1Double, Value2Double, 1, 2);
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if (ResultSz == ResultLlc) {
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++Passes;
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} else {
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++Failures;
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std::cout << Funcs[f].Name << "SelectDouble(" << Value1Double << ", "
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<< Value2Double << "): sz=" << ResultSz
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<< " llc=" << ResultLlc << "\n";
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}
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}
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}
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}
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}
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void testsVector(size_t &TotalTests, size_t &Passes, size_t &Failures) {
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typedef v4si32 (*FuncTypeVector)(v4f32, v4f32);
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static struct {
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const char *Name;
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FuncTypeVector FuncVectorSz;
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FuncTypeVector FuncVectorLlc;
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} Funcs[] = {
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#define X(cmp) {"fcmp" STR(cmp), Subzero_fcmp##cmp##Vector, fcmp##cmp##Vector},
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FCMP_TABLE
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#undef X
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};
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const static size_t NumFuncs = sizeof(Funcs) / sizeof(*Funcs);
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const static size_t NumElementsInType = 4;
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const static size_t MaxTestsPerFunc = 100000;
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assert(Values && NumValues);
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for (size_t f = 0; f < NumFuncs; ++f) {
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PRNG Index;
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for (size_t i = 0; i < MaxTestsPerFunc; ++i) {
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v4f32 Value1, Value2;
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for (size_t j = 0; j < NumElementsInType; ++j) {
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Value1[j] = Values[Index() % NumValues];
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Value2[j] = Values[Index() % NumValues];
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}
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++TotalTests;
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v4si32 ResultSz, ResultLlc;
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ResultSz = Funcs[f].FuncVectorSz(Value1, Value2);
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ResultLlc = Funcs[f].FuncVectorLlc(Value1, Value2);
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if (!memcmp(&ResultSz, &ResultLlc, sizeof(ResultSz))) {
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++Passes;
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} else {
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++Failures;
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std::cout << Funcs[f].Name << "Vector(" << vectAsString<v4f32>(Value1)
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<< ", " << vectAsString<v4f32>(Value2)
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<< "): sz=" << vectAsString<v4si32>(ResultSz)
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<< " llc=" << vectAsString<v4si32>(ResultLlc) << "\n";
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}
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}
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}
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}
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int main(int argc, char *argv[]) {
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size_t TotalTests = 0;
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size_t Passes = 0;
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size_t Failures = 0;
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initializeValues();
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testsScalar(TotalTests, Passes, Failures);
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testsVector(TotalTests, Passes, Failures);
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std::cout << "TotalTests=" << TotalTests << " Passes=" << Passes
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<< " Failures=" << Failures << "\n";
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return Failures;
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}
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