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1 //===-- lib/floatunsisf.c - uint -> single-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 unsigned integer to single-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 SINGLE_PRECISION
17 #include "fp_lib.h"
18 
19 #include "int_lib.h"
20 
21 ARM_EABI_FNALIAS(ui2f, floatunsisf);
22 
__floatunsisf(unsigned int a)23 fp_t __floatunsisf(unsigned int a) {
24 
25     const int aWidth = sizeof a * CHAR_BIT;
26 
27     // Handle zero as a special case to protect clz
28     if (a == 0) return fromRep(0);
29 
30     // Exponent of (fp_t)a is the width of abs(a).
31     const int exponent = (aWidth - 1) - __builtin_clz(a);
32     rep_t result;
33 
34     // Shift a into the significand field, rounding if it is a right-shift
35     if (exponent <= significandBits) {
36         const int shift = significandBits - exponent;
37         result = (rep_t)a << shift ^ implicitBit;
38     } else {
39         const int shift = exponent - significandBits;
40         result = (rep_t)a >> shift ^ implicitBit;
41         rep_t round = (rep_t)a << (typeWidth - shift);
42         if (round > signBit) result++;
43         if (round == signBit) result += result & 1;
44     }
45 
46     // Insert the exponent
47     result += (rep_t)(exponent + exponentBias) << significandBits;
48     return fromRep(result);
49 }
50