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1 | //===-- lib/floatunditf.c - uint -> quad-precision conversion -----*- C -*-===// |
2 | // | |
3 | // The LLVM Compiler Infrastructure | |
4 | // | |
5 | // This file is dual licensed under the MIT and the University of Illinois Open | |
6 | // Source Licenses. See LICENSE.TXT for details. | |
7 | // | |
8 | //===----------------------------------------------------------------------===// | |
9 | // | |
10 | // This file implements du_int to quad-precision conversion for the | |
11 | // compiler-rt library in the IEEE-754 default round-to-nearest, ties-to-even | |
12 | // mode. | |
13 | // | |
14 | //===----------------------------------------------------------------------===// | |
15 | ||
16 | #define QUAD_PRECISION | |
17 | #include "fp_lib.h" | |
18 | ||
19 | #if defined(CRT_HAS_128BIT) && defined(CRT_LDBL_128BIT) | |
20 | COMPILER_RT_ABI fp_t __floatunditf(du_int a) { | |
21 | ||
22 | const int aWidth = sizeof a * CHAR_BIT; | |
23 | ||
24 | // Handle zero as a special case to protect clz | |
25 | if (a == 0) return fromRep(0); | |
26 | ||
27 | // Exponent of (fp_t)a is the width of abs(a). | |
28 | const int exponent = (aWidth - 1) - __builtin_clzll(a); | |
29 | rep_t result; | |
30 | ||
31 | // Shift a into the significand field and clear the implicit bit. | |
32 | const int shift = significandBits - exponent; | |
33 | result = (rep_t)a << shift ^ implicitBit; | |
34 | ||
35 | // Insert the exponent | |
36 | result += (rep_t)(exponent + exponentBias) << significandBits; | |
37 | return fromRep(result); | |
38 | } | |
39 | ||
40 | #endif |