1*0ba22f51SPetr Hosek //===-- mulsc3.c - Implement __mulsc3 -------------------------------------===//
2*0ba22f51SPetr Hosek //
3*0ba22f51SPetr Hosek // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4*0ba22f51SPetr Hosek // See https://llvm.org/LICENSE.txt for license information.
5*0ba22f51SPetr Hosek // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6*0ba22f51SPetr Hosek //
7*0ba22f51SPetr Hosek //===----------------------------------------------------------------------===//
8*0ba22f51SPetr Hosek //
9*0ba22f51SPetr Hosek // This file implements __mulsc3 for the compiler_rt library.
10*0ba22f51SPetr Hosek //
11*0ba22f51SPetr Hosek //===----------------------------------------------------------------------===//
12a6b264b5SAlexey Samsonov
13a6b264b5SAlexey Samsonov #include "int_lib.h"
14a6b264b5SAlexey Samsonov #include "int_math.h"
15a6b264b5SAlexey Samsonov
16*0ba22f51SPetr Hosek // Returns: the product of a + ib and c + id
17a6b264b5SAlexey Samsonov
__mulsc3(float __a,float __b,float __c,float __d)18082b89b2SPetr Hosek COMPILER_RT_ABI Fcomplex __mulsc3(float __a, float __b, float __c, float __d) {
19a6b264b5SAlexey Samsonov float __ac = __a * __c;
20a6b264b5SAlexey Samsonov float __bd = __b * __d;
21a6b264b5SAlexey Samsonov float __ad = __a * __d;
22a6b264b5SAlexey Samsonov float __bc = __b * __c;
23b0b7c8a8SSaleem Abdulrasool Fcomplex z;
24b0b7c8a8SSaleem Abdulrasool COMPLEX_REAL(z) = __ac - __bd;
25b0b7c8a8SSaleem Abdulrasool COMPLEX_IMAGINARY(z) = __ad + __bc;
26082b89b2SPetr Hosek if (crt_isnan(COMPLEX_REAL(z)) && crt_isnan(COMPLEX_IMAGINARY(z))) {
27a6b264b5SAlexey Samsonov int __recalc = 0;
28082b89b2SPetr Hosek if (crt_isinf(__a) || crt_isinf(__b)) {
29a6b264b5SAlexey Samsonov __a = crt_copysignf(crt_isinf(__a) ? 1 : 0, __a);
30a6b264b5SAlexey Samsonov __b = crt_copysignf(crt_isinf(__b) ? 1 : 0, __b);
31a6b264b5SAlexey Samsonov if (crt_isnan(__c))
32a6b264b5SAlexey Samsonov __c = crt_copysignf(0, __c);
33a6b264b5SAlexey Samsonov if (crt_isnan(__d))
34a6b264b5SAlexey Samsonov __d = crt_copysignf(0, __d);
35a6b264b5SAlexey Samsonov __recalc = 1;
36a6b264b5SAlexey Samsonov }
37082b89b2SPetr Hosek if (crt_isinf(__c) || crt_isinf(__d)) {
38a6b264b5SAlexey Samsonov __c = crt_copysignf(crt_isinf(__c) ? 1 : 0, __c);
39a6b264b5SAlexey Samsonov __d = crt_copysignf(crt_isinf(__d) ? 1 : 0, __d);
40a6b264b5SAlexey Samsonov if (crt_isnan(__a))
41a6b264b5SAlexey Samsonov __a = crt_copysignf(0, __a);
42a6b264b5SAlexey Samsonov if (crt_isnan(__b))
43a6b264b5SAlexey Samsonov __b = crt_copysignf(0, __b);
44a6b264b5SAlexey Samsonov __recalc = 1;
45a6b264b5SAlexey Samsonov }
46082b89b2SPetr Hosek if (!__recalc && (crt_isinf(__ac) || crt_isinf(__bd) || crt_isinf(__ad) ||
47082b89b2SPetr Hosek crt_isinf(__bc))) {
48a6b264b5SAlexey Samsonov if (crt_isnan(__a))
49a6b264b5SAlexey Samsonov __a = crt_copysignf(0, __a);
50a6b264b5SAlexey Samsonov if (crt_isnan(__b))
51a6b264b5SAlexey Samsonov __b = crt_copysignf(0, __b);
52a6b264b5SAlexey Samsonov if (crt_isnan(__c))
53a6b264b5SAlexey Samsonov __c = crt_copysignf(0, __c);
54a6b264b5SAlexey Samsonov if (crt_isnan(__d))
55a6b264b5SAlexey Samsonov __d = crt_copysignf(0, __d);
56a6b264b5SAlexey Samsonov __recalc = 1;
57a6b264b5SAlexey Samsonov }
58082b89b2SPetr Hosek if (__recalc) {
59b0b7c8a8SSaleem Abdulrasool COMPLEX_REAL(z) = CRT_INFINITY * (__a * __c - __b * __d);
60b0b7c8a8SSaleem Abdulrasool COMPLEX_IMAGINARY(z) = CRT_INFINITY * (__a * __d + __b * __c);
61a6b264b5SAlexey Samsonov }
62a6b264b5SAlexey Samsonov }
63a6b264b5SAlexey Samsonov return z;
64a6b264b5SAlexey Samsonov }
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