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//=== lib/fp_trunc.h - high precision -> low precision conversion *- C -*-===// |
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// |
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// The LLVM Compiler Infrastructure |
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// |
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// This file is dual licensed under the MIT and the University of Illinois Open |
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// Source Licenses. See LICENSE.TXT for details. |
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// |
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//===----------------------------------------------------------------------===// |
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// |
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// Set source and destination precision setting |
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// |
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//===----------------------------------------------------------------------===// |
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#ifndef FP_TRUNC_HEADER |
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#define FP_TRUNC_HEADER |
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#include "int_lib.h" |
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#if defined SRC_SINGLE |
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typedef float src_t; |
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typedef uint32_t src_rep_t; |
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#define SRC_REP_C UINT32_C |
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static const int srcSigBits = 23; |
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#elif defined SRC_DOUBLE |
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typedef double src_t; |
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typedef uint64_t src_rep_t; |
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#define SRC_REP_C UINT64_C |
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static const int srcSigBits = 52; |
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#elif defined SRC_QUAD |
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typedef long double src_t; |
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typedef __uint128_t src_rep_t; |
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#define SRC_REP_C (__uint128_t) |
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static const int srcSigBits = 112; |
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#else |
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#error Source should be double precision or quad precision! |
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#endif //end source precision |
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#if defined DST_DOUBLE |
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typedef double dst_t; |
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typedef uint64_t dst_rep_t; |
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#define DST_REP_C UINT64_C |
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static const int dstSigBits = 52; |
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#elif defined DST_SINGLE |
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typedef float dst_t; |
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typedef uint32_t dst_rep_t; |
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#define DST_REP_C UINT32_C |
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static const int dstSigBits = 23; |
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#elif defined DST_HALF |
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typedef uint16_t dst_t; |
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typedef uint16_t dst_rep_t; |
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#define DST_REP_C UINT16_C |
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static const int dstSigBits = 10; |
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#else |
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#error Destination should be single precision or double precision! |
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#endif //end destination precision |
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// End of specialization parameters. Two helper routines for conversion to and |
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// from the representation of floating-point data as integer values follow. |
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static __inline src_rep_t srcToRep(src_t x) { |
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const union { src_t f; src_rep_t i; } rep = {.f = x}; |
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return rep.i; |
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} |
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static __inline dst_t dstFromRep(dst_rep_t x) { |
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const union { dst_t f; dst_rep_t i; } rep = {.i = x}; |
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return rep.f; |
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} |
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#endif // FP_TRUNC_HEADER |