#include #include #include #include // TODO(nnoll): Replace implementations with your own. double math·acos(double x) { return acos(x); } float math·acosf(float x) { return acosf(x); } double math·acosh(double x) { return acosh(x); } float math·acoshf(float x) { return acoshf(x); } double math·asin(double x) { return asin(x); } float math·asinf(float x) { return asinf(x); } double math·asinh(double x) { return asinh(x); } float math·asinhf(float x) { return asinhf(x); } double math·atan(double x) { return atan(x); } float math·atanf(float x) { return atanf(x); } double math·atan2(double x, double y) { return atan2(x, y); } float math·atan2f(float x, float y) { return atan2f(x, y); } double math·atanh(double x) { return atanh(x); } float math·atanhf(float x) { return atanhf(x); } double math·cbrt(double x) { return cbrt(x); } float math·cbrtf(float x) { return cbrtf(x); } double math·ceil(double x) { return ceil(x); } float math·ceilf(float x) { return ceilf(x); } double math·cos(double x) { return cos(x); } float math·cosf(float x) { return cosf(x); } double math·cosh(double x) { return cosh(x); } float math·coshf(float x) { return coshf(x); } double math·erf(double x) { return erf(x); } float math·erff(float x) { return erff(x); } double math·erfc(double x) { return erfc(x); } float math·erfcf(float x) { return erfcf(x); } double math·exp(double x) { return exp(x); } float math·expf(float x) { return expf(x); } double math·exp2(double x) { return exp2(x); } float math·exp2f(float x) { return exp2f(x); } double math·expm1(double x) { return expm1(x); } float math·expm1f(float x) { return expm1f(x); } double math·floor(double x) { return floor(x); } float math·floorf(float x) { return floorf(x); } int math·ilogb(double x) { return ilogb(x); } int math·ilogbf(float x) { return ilogbf(x); } double math·lgamma(double x) { return lgamma(x); } float math·lgammaf(float x) { return lgammaf(x); } vlong math·llrint(double x) { return math·llrint(x); } vlong math·llrintf(float x) { return math·llrintf(x); } vlong math·llround(double x) { return llround(x); } vlong math·llroundf(float x) { return llroundf(x); } double math·log(double x) { return log(x); } float math·logf(float x) { return logf(x); } double math·log10(double x) { return log10(x); } float math·log10f(float x) { return log10f(x); } double math·log1p(double x) { return log1p(x); } float math·log1pf(float x) { return log1pf(x); } double math·log2(double x) { return log2(x); } float math·log2f(float x) { return log2f(x); } double math·logb(double x) { return logb(x); } float math·logbf(float x) { return logbf(x); } long math·lrint(double x) { return lrint(x); } long math·lrintf(float x) { return lrintf(x); } long math·lround(double x) { return lround(x); } long math·lroundf(float x) { return lroundf(x); } double math·modf(double, double *); float math·modff(float, float *); double math·nan(const char * x) { return nan(x); } float math·nanf(const char * x) { return nanf(x); } double math·nearbyint(double x) { return nearbyint(x); } float math·nearbyintf(float x) { return nearbyintf(x); } double math·pow(double x, double exp) { return pow(x, exp); } float math·powf(float x, float exp) { return powf(x, exp); } double math·rint(double x) { return rint(x); } float math·rintf(float x) { return rintf(x); } double math·round(double x) { return round(x); } float math·roundf(float x) { return roundf(x); } double math·scalbln(double, long); float math·scalblnf(float, long); double math·scalbn(double, int); float math·scalbnf(float, int); double math·sin(double x) { return sin(x); } float math·sinf(float x) { return sinf(x); } double math·sinh(double x) { return sinh(x); } float math·sinhf(float x) { return sinhf(x); } double math·sqrt(double x) { return sqrt(x); } float math·sqrtf(float x) { return sqrtf(x); } double math·tan(double x) { return tan(x); } float math·tanf(float x) { return tanf(x); } double math·tanh(double x) { return tanh(x); } float math·tanhf(float x) { return tanhf(x); } double math·tgamma(double x) { return tgamma(x); } float math·tgammaf(float x) { return tgammaf(x); } double math·trunc(double x) { return trunc(x); } float math·truncf(float x) { return truncf(x); }