int64_t& java::lang::Math::negativeZeroFloatBits() { clinit(); return negativeZeroFloatBits_; }
float java::lang::Math::abs(float a) { /* stub */ clinit(); unimplemented_(u"float java::lang::Math::abs(float a)"); return 0; }
int64_t java::lang::Math::addExact(int64_t x, int64_t y) { /* stub */ clinit(); unimplemented_(u"int64_t java::lang::Math::addExact(int64_t x, int64_t y)"); return 0; }
double java::lang::Math::toRadians(double angdeg) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::toRadians(double angdeg)"); return 0; }
float java::lang::Math::ulp(float f) { /* stub */ clinit(); unimplemented_(u"float java::lang::Math::ulp(float f)"); return 0; }
int32_t java::lang::Math::subtractExact(int32_t x, int32_t y) { /* stub */ clinit(); unimplemented_(u"int32_t java::lang::Math::subtractExact(int32_t x, int32_t y)"); return 0; }
double java::lang::Math::toDegrees(double angrad) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::toDegrees(double angrad)"); return 0; }
float java::lang::Math::nextAfter(float start, double direction) { /* stub */ clinit(); unimplemented_(u"float java::lang::Math::nextAfter(float start, double direction)"); return 0; }
java::lang::Math::Math(const ::default_init_tag&) : super(*static_cast< ::default_init_tag* >(0)) { clinit(); }
int32_t java::lang::Math::negateExact(int32_t a) { /* stub */ clinit(); unimplemented_(u"int32_t java::lang::Math::negateExact(int32_t a)"); return 0; }
double& java::lang::Math::twoToTheDoubleScaleUp() { clinit(); return twoToTheDoubleScaleUp_; }
float java::lang::Math::min(float a, float b) { /* stub */ clinit(); unimplemented_(u"float java::lang::Math::min(float a, float b)"); return 0; }
int64_t java::lang::Math::min(int64_t a, int64_t b) { /* stub */ clinit(); unimplemented_(u"int64_t java::lang::Math::min(int64_t a, int64_t b)"); return 0; }
double java::lang::Math::hypot(double x, double y) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::hypot(double x, double y)"); return 0; }
double java::lang::Math::scalb(double d, int32_t scaleFactor) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::scalb(double d, int32_t scaleFactor)"); return 0; }
double java::lang::Math::pow(double a, double b) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::pow(double a, double b)"); return 0; }
float java::lang::Math::scalb(float f, int32_t scaleFactor) { /* stub */ clinit(); unimplemented_(u"float java::lang::Math::scalb(float f, int32_t scaleFactor)"); return 0; }
double java::lang::Math::powerOfTwoD(int32_t n) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::powerOfTwoD(int32_t n)"); return 0; }
double java::lang::Math::tanh(double x) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::tanh(double x)"); return 0; }
float java::lang::Math::powerOfTwoF(int32_t n) { /* stub */ clinit(); unimplemented_(u"float java::lang::Math::powerOfTwoF(int32_t n)"); return 0; }
int32_t java::lang::Math::toIntExact(int64_t value) { /* stub */ clinit(); unimplemented_(u"int32_t java::lang::Math::toIntExact(int64_t value)"); return 0; }
double java::lang::Math::random() { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::random()"); return 0; }
double java::lang::Math::ulp(double d) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::ulp(double d)"); return 0; }
/* private: void ::java::lang::Math::ctor() */ double java::lang::Math::IEEEremainder(double f1, double f2) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::IEEEremainder(double f1, double f2)"); return 0; }
int64_t java::lang::Math::abs(int64_t a) { /* stub */ clinit(); unimplemented_(u"int64_t java::lang::Math::abs(int64_t a)"); return 0; }
int32_t java::lang::Math::round(float a) { /* stub */ clinit(); unimplemented_(u"int32_t java::lang::Math::round(float a)"); return 0; }
double java::lang::Math::acos(double a) { /* stub */ clinit(); unimplemented_(u"double java::lang::Math::acos(double a)"); return 0; }
int64_t java::lang::Math::round(double a) { /* stub */ clinit(); unimplemented_(u"int64_t java::lang::Math::round(double a)"); return 0; }
bool& java::security::MessageDigest::skipDebug() { clinit(); return skipDebug_; }
int32_t java::lang::Math::getExponent(double d) { /* stub */ clinit(); unimplemented_(u"int32_t java::lang::Math::getExponent(double d)"); return 0; }