1 //===-- mulxc3.c - Implement __mulxc3 -------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file implements __mulxc3 for the compiler_rt library. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #if !_ARCH_PPC 14 15 #include "int_lib.h" 16 #include "int_math.h" 17 18 // Returns: the product of a + ib and c + id 19 20 COMPILER_RT_ABI Lcomplex __mulxc3(xf_float __a, xf_float __b, xf_float __c, 21 xf_float __d) { 22 xf_float __ac = __a * __c; 23 xf_float __bd = __b * __d; 24 xf_float __ad = __a * __d; 25 xf_float __bc = __b * __c; 26 Lcomplex z; 27 COMPLEX_REAL(z) = __ac - __bd; 28 COMPLEX_IMAGINARY(z) = __ad + __bc; 29 if (crt_isnan(COMPLEX_REAL(z)) && crt_isnan(COMPLEX_IMAGINARY(z))) { 30 int __recalc = 0; 31 if (crt_isinf(__a) || crt_isinf(__b)) { 32 __a = crt_copysignl(crt_isinf(__a) ? 1 : 0, __a); 33 __b = crt_copysignl(crt_isinf(__b) ? 1 : 0, __b); 34 if (crt_isnan(__c)) 35 __c = crt_copysignl(0, __c); 36 if (crt_isnan(__d)) 37 __d = crt_copysignl(0, __d); 38 __recalc = 1; 39 } 40 if (crt_isinf(__c) || crt_isinf(__d)) { 41 __c = crt_copysignl(crt_isinf(__c) ? 1 : 0, __c); 42 __d = crt_copysignl(crt_isinf(__d) ? 1 : 0, __d); 43 if (crt_isnan(__a)) 44 __a = crt_copysignl(0, __a); 45 if (crt_isnan(__b)) 46 __b = crt_copysignl(0, __b); 47 __recalc = 1; 48 } 49 if (!__recalc && (crt_isinf(__ac) || crt_isinf(__bd) || crt_isinf(__ad) || 50 crt_isinf(__bc))) { 51 if (crt_isnan(__a)) 52 __a = crt_copysignl(0, __a); 53 if (crt_isnan(__b)) 54 __b = crt_copysignl(0, __b); 55 if (crt_isnan(__c)) 56 __c = crt_copysignl(0, __c); 57 if (crt_isnan(__d)) 58 __d = crt_copysignl(0, __d); 59 __recalc = 1; 60 } 61 if (__recalc) { 62 COMPLEX_REAL(z) = CRT_INFINITY * (__a * __c - __b * __d); 63 COMPLEX_IMAGINARY(z) = CRT_INFINITY * (__a * __d + __b * __c); 64 } 65 } 66 return z; 67 } 68 69 #endif 70