mirror of
https://github.com/openhwgroup/cvw
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954 lines
30 KiB
C
954 lines
30 KiB
C
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/*============================================================================
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This C source file is part of TestFloat, Release 3e, a package of programs for
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testing the correctness of floating-point arithmetic complying with the IEEE
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Standard for Floating-Point, by John R. Hauser.
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Copyright 2011, 2012, 2013, 2014, 2015, 2016, 2017 The Regents of the
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University of California. All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are met:
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1. Redistributions of source code must retain the above copyright notice,
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this list of conditions, and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright notice,
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this list of conditions, and the following disclaimer in the documentation
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and/or other materials provided with the distribution.
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3. Neither the name of the University nor the names of its contributors may
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be used to endorse or promote products derived from this software without
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specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS "AS IS", AND ANY
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EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE, ARE
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DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE FOR ANY
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DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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=============================================================================*/
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#include <stdbool.h>
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#include <stdint.h>
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#include <string.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <signal.h>
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#include "platform.h"
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#include "fail.h"
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#include "softfloat.h"
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#include "functions.h"
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#include "genCases.h"
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#include "genLoops.h"
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enum {
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TYPE_UI32 = NUM_FUNCTIONS,
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TYPE_UI64,
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TYPE_I32,
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TYPE_I64,
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TYPE_F16,
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TYPE_F16_2,
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TYPE_F16_3,
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TYPE_F32,
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TYPE_F32_2,
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TYPE_F32_3,
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TYPE_F64,
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TYPE_F64_2,
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TYPE_F64_3,
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TYPE_EXTF80,
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TYPE_EXTF80_2,
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TYPE_EXTF80_3,
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TYPE_F128,
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TYPE_F128_2,
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TYPE_F128_3
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};
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static void catchSIGINT( int signalCode )
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{
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if ( genLoops_stop ) exit( EXIT_FAILURE );
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genLoops_stop = true;
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}
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int main( int argc, char *argv[] )
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{
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const char *prefixTextPtr;
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uint_fast8_t roundingMode;
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bool exact;
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int functionCode;
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const char *argPtr;
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unsigned long ui;
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long i;
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int functionAttribs;
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#ifdef FLOAT16
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float16_t (*trueFunction_abz_f16)( float16_t, float16_t );
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bool (*trueFunction_ab_f16_z_bool)( float16_t, float16_t );
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#endif
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float32_t (*trueFunction_abz_f32)( float32_t, float32_t );
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bool (*trueFunction_ab_f32_z_bool)( float32_t, float32_t );
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#ifdef FLOAT64
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float64_t (*trueFunction_abz_f64)( float64_t, float64_t );
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bool (*trueFunction_ab_f64_z_bool)( float64_t, float64_t );
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#endif
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#ifdef EXTFLOAT80
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void
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(*trueFunction_abz_extF80)(
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const extFloat80_t *, const extFloat80_t *, extFloat80_t * );
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bool
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(*trueFunction_ab_extF80_z_bool)(
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const extFloat80_t *, const extFloat80_t * );
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#endif
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#ifdef FLOAT128
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void
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(*trueFunction_abz_f128)(
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const float128_t *, const float128_t *, float128_t * );
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bool
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(*trueFunction_ab_f128_z_bool)( const float128_t *, const float128_t * );
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#endif
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/*------------------------------------------------------------------------
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*------------------------------------------------------------------------*/
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fail_programName = "testfloat_gen";
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if ( argc <= 1 ) goto writeHelpMessage;
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prefixTextPtr = 0;
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softfloat_detectTininess = softfloat_tininess_afterRounding;
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#ifdef EXTFLOAT80
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extF80_roundingPrecision = 80;
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#endif
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roundingMode = softfloat_round_near_even;
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exact = false;
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genCases_setLevel( 1 );
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genLoops_trueFlagsPtr = &softfloat_exceptionFlags;
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genLoops_forever = false;
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genLoops_givenCount = false;
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functionCode = 0;
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for (;;) {
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--argc;
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if ( ! argc ) break;
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argPtr = *++argv;
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if ( ! argPtr ) break;
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if ( argPtr[0] == '-' ) ++argPtr;
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if (
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! strcmp( argPtr, "help" ) || ! strcmp( argPtr, "-help" )
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|| ! strcmp( argPtr, "h" )
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) {
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writeHelpMessage:
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fputs(
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"testfloat_gen [<option>...] <type>|<function>\n"
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" <option>: (* is default)\n"
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" -help --Write this message and exit.\n"
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" -prefix <text> --Write <text> as a line of output before any test cases.\n"
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" -seed <num> --Set pseudo-random number generator seed to <num>.\n"
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" * -seed 1\n"
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" -level <num> --Testing level <num> (1 or 2).\n"
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" * -level 1\n"
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" -n <num> --Generate <num> test cases.\n"
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" -forever --Generate test cases indefinitely (implies '-level 2').\n"
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#ifdef EXTFLOAT80
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" -precision32 --For extF80, rounding precision is 32 bits.\n"
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" -precision64 --For extF80, rounding precision is 64 bits.\n"
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" * -precision80 --For extF80, rounding precision is 80 bits.\n"
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#endif
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" * -rnear_even --Round to nearest/even.\n"
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" -rminMag --Round to minimum magnitude (toward zero).\n"
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" -rmin --Round to minimum (down).\n"
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" -rmax --Round to maximum (up).\n"
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" -rnear_maxMag --Round to nearest/maximum magnitude (nearest/away).\n"
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#ifdef FLOAT_ROUND_ODD
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" -rodd --Round to odd (jamming). (For rounding to an integer\n"
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" value, rounds to minimum magnitude instead.)\n"
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#endif
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" -tininessbefore --Detect underflow tininess before rounding.\n"
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" * -tininessafter --Detect underflow tininess after rounding.\n"
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" * -notexact --Rounding to integer is not exact (no inexact\n"
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" exceptions).\n"
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" -exact --Rounding to integer is exact (raising inexact\n"
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" exceptions).\n"
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" <type>:\n"
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" <int> --Generate test cases with one integer operand.\n"
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" <float> --Generate test cases with one floating-point operand.\n"
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" <float> <num> --Generate test cases with <num> (1, 2, or 3)\n"
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" floating-point operands.\n"
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" <function>:\n"
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" <int>_to_<float> <float>_add <float>_eq\n"
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" <float>_to_<int> <float>_sub <float>_le\n"
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" <float>_to_<float> <float>_mul <float>_lt\n"
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" <float>_roundToInt <float>_mulAdd <float>_eq_signaling\n"
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" <float>_div <float>_le_quiet\n"
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" <float>_rem <float>_lt_quiet\n"
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" <float>_sqrt\n"
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" <int>:\n"
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" ui32 --Unsigned 32-bit integer.\n"
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" ui64 --Unsigned 64-bit integer.\n"
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" i32 --Signed 32-bit integer.\n"
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" i64 --Signed 64-bit integer.\n"
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" <float>:\n"
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#ifdef FLOAT16
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" f16 --Binary 16-bit floating-point (half-precision).\n"
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#endif
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" f32 --Binary 32-bit floating-point (single-precision).\n"
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#ifdef FLOAT64
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" f64 --Binary 64-bit floating-point (double-precision).\n"
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#endif
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#ifdef EXTFLOAT80
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" extF80 --Binary 80-bit extended floating-point.\n"
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#endif
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#ifdef FLOAT128
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" f128 --Binary 128-bit floating-point (quadruple-precision).\n"
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#endif
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,
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stdout
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);
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return EXIT_SUCCESS;
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} else if ( ! strcmp( argPtr, "prefix" ) ) {
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if ( argc < 2 ) goto optionError;
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prefixTextPtr = argv[1];
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--argc;
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++argv;
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} else if ( ! strcmp( argPtr, "seed" ) ) {
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if ( argc < 2 ) goto optionError;
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ui = strtoul( argv[1], (char **) &argPtr, 10 );
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if ( *argPtr ) goto optionError;
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srand( ui );
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--argc;
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++argv;
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} else if ( ! strcmp( argPtr, "level" ) ) {
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if ( argc < 2 ) goto optionError;
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i = strtol( argv[1], (char **) &argPtr, 10 );
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if ( *argPtr ) goto optionError;
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genCases_setLevel( i );
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--argc;
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++argv;
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} else if ( ! strcmp( argPtr, "level1" ) ) {
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genCases_setLevel( 1 );
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} else if ( ! strcmp( argPtr, "level2" ) ) {
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genCases_setLevel( 2 );
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} else if ( ! strcmp( argPtr, "n" ) ) {
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if ( argc < 2 ) goto optionError;
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genLoops_forever = true;
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genLoops_givenCount = true;
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i = strtol( argv[1], (char **) &argPtr, 10 );
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if ( *argPtr ) goto optionError;
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genLoops_count = i;
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--argc;
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++argv;
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} else if ( ! strcmp( argPtr, "forever" ) ) {
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genCases_setLevel( 2 );
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genLoops_forever = true;
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genLoops_givenCount = false;
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#ifdef EXTFLOAT80
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} else if ( ! strcmp( argPtr, "precision32" ) ) {
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extF80_roundingPrecision = 32;
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} else if ( ! strcmp( argPtr, "precision64" ) ) {
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extF80_roundingPrecision = 64;
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} else if ( ! strcmp( argPtr, "precision80" ) ) {
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extF80_roundingPrecision = 80;
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#endif
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} else if (
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! strcmp( argPtr, "rnear_even" )
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|| ! strcmp( argPtr, "rneareven" )
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|| ! strcmp( argPtr, "rnearest_even" )
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) {
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roundingMode = softfloat_round_near_even;
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} else if (
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! strcmp( argPtr, "rminmag" ) || ! strcmp( argPtr, "rminMag" )
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) {
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roundingMode = softfloat_round_minMag;
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} else if ( ! strcmp( argPtr, "rmin" ) ) {
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roundingMode = softfloat_round_min;
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} else if ( ! strcmp( argPtr, "rmax" ) ) {
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roundingMode = softfloat_round_max;
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} else if (
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! strcmp( argPtr, "rnear_maxmag" )
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|| ! strcmp( argPtr, "rnear_maxMag" )
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|| ! strcmp( argPtr, "rnearmaxmag" )
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|| ! strcmp( argPtr, "rnearest_maxmag" )
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|| ! strcmp( argPtr, "rnearest_maxMag" )
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) {
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roundingMode = softfloat_round_near_maxMag;
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#ifdef FLOAT_ROUND_ODD
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} else if ( ! strcmp( argPtr, "rodd" ) ) {
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roundingMode = softfloat_round_odd;
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#endif
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} else if ( ! strcmp( argPtr, "tininessbefore" ) ) {
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softfloat_detectTininess = softfloat_tininess_beforeRounding;
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} else if ( ! strcmp( argPtr, "tininessafter" ) ) {
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softfloat_detectTininess = softfloat_tininess_afterRounding;
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} else if ( ! strcmp( argPtr, "notexact" ) ) {
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exact = false;
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} else if ( ! strcmp( argPtr, "exact" ) ) {
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exact = true;
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} else if (
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! strcmp( argPtr, "ui32" ) || ! strcmp( argPtr, "uint32" )
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) {
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functionCode = TYPE_UI32;
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if ( 2 <= argc ) goto absorbArg1;
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} else if (
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! strcmp( argPtr, "ui64" ) || ! strcmp( argPtr, "uint64" )
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) {
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functionCode = TYPE_UI64;
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if ( 2 <= argc ) goto absorbArg1;
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} else if (
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! strcmp( argPtr, "i32" ) || ! strcmp( argPtr, "int32" )
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) {
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functionCode = TYPE_I32;
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if ( 2 <= argc ) goto absorbArg1;
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} else if (
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! strcmp( argPtr, "i64" ) || ! strcmp( argPtr, "int64" )
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) {
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functionCode = TYPE_I64;
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if ( 2 <= argc ) goto absorbArg1;
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#ifdef FLOAT16
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} else if (
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! strcmp( argPtr, "f16" ) || ! strcmp( argPtr, "float16" )
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) {
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functionCode = TYPE_F16;
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goto absorbArg;
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#endif
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} else if (
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! strcmp( argPtr, "f32" ) || ! strcmp( argPtr, "float32" )
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) {
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functionCode = TYPE_F32;
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#ifdef FLOAT64
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goto absorbArg;
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} else if (
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! strcmp( argPtr, "f64" ) || ! strcmp( argPtr, "float64" )
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) {
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functionCode = TYPE_F64;
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#endif
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#ifdef EXTFLOAT80
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goto absorbArg;
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} else if (
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! strcmp( argPtr, "extF80" ) || ! strcmp( argPtr, "extFloat80" )
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) {
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functionCode = TYPE_EXTF80;
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#endif
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#ifdef FLOAT128
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goto absorbArg;
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} else if (
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! strcmp( argPtr, "f128" ) || ! strcmp( argPtr, "float128" )
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) {
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functionCode = TYPE_F128;
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#endif
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absorbArg:
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if ( 2 <= argc ) {
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if ( ! strcmp( argv[1], "2" ) ) {
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--argc;
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++argv;
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++functionCode;
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} else if ( ! strcmp( argv[1], "3" ) ) {
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--argc;
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++argv;
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functionCode += 2;
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} else {
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absorbArg1:
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if ( ! strcmp( argv[1], "1" ) ) {
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--argc;
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++argv;
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}
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}
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}
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} else {
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functionCode = 1;
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while ( strcmp( argPtr, functionInfos[functionCode].namePtr ) ) {
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++functionCode;
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if ( functionCode == NUM_FUNCTIONS ) goto invalidArg;
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}
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functionAttribs = functionInfos[functionCode].attribs;
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if (
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(functionAttribs & FUNC_ARG_EXACT)
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&& ! (functionAttribs & FUNC_ARG_ROUNDINGMODE)
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) {
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goto invalidArg;
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}
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}
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}
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if ( ! functionCode ) fail( "Type or function argument required" );
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/*------------------------------------------------------------------------
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*------------------------------------------------------------------------*/
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if ( prefixTextPtr ) {
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fputs( prefixTextPtr, stdout );
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fputc( '\n', stdout );
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}
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softfloat_roundingMode = roundingMode;
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signal( SIGINT, catchSIGINT );
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signal( SIGTERM, catchSIGINT );
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switch ( functionCode ) {
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/*--------------------------------------------------------------------
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*--------------------------------------------------------------------*/
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case TYPE_UI32:
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gen_a_ui32();
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break;
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case TYPE_UI64:
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gen_a_ui64();
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break;
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case TYPE_I32:
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gen_a_i32();
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break;
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case TYPE_I64:
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gen_a_i64();
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break;
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#ifdef FLOAT16
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case TYPE_F16:
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gen_a_f16();
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break;
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case TYPE_F16_2:
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gen_ab_f16();
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break;
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case TYPE_F16_3:
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gen_abc_f16();
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break;
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#endif
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case TYPE_F32:
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gen_a_f32();
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break;
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case TYPE_F32_2:
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gen_ab_f32();
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break;
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case TYPE_F32_3:
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gen_abc_f32();
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break;
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#ifdef FLOAT64
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case TYPE_F64:
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gen_a_f64();
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break;
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case TYPE_F64_2:
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gen_ab_f64();
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break;
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case TYPE_F64_3:
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gen_abc_f64();
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break;
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#endif
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#ifdef EXTFLOAT80
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case TYPE_EXTF80:
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gen_a_extF80();
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break;
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case TYPE_EXTF80_2:
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gen_ab_extF80();
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break;
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case TYPE_EXTF80_3:
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gen_abc_extF80();
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break;
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#endif
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#ifdef FLOAT128
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case TYPE_F128:
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gen_a_f128();
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break;
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case TYPE_F128_2:
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gen_ab_f128();
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break;
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case TYPE_F128_3:
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gen_abc_f128();
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break;
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#endif
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/*--------------------------------------------------------------------
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*--------------------------------------------------------------------*/
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#ifdef FLOAT16
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case UI32_TO_F16:
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gen_a_ui32_z_f16( ui32_to_f16 );
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break;
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#endif
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case UI32_TO_F32:
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gen_a_ui32_z_f32( ui32_to_f32 );
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break;
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#ifdef FLOAT64
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case UI32_TO_F64:
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gen_a_ui32_z_f64( ui32_to_f64 );
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break;
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#endif
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#ifdef EXTFLOAT80
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case UI32_TO_EXTF80:
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gen_a_ui32_z_extF80( ui32_to_extF80M );
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break;
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#endif
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#ifdef FLOAT128
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case UI32_TO_F128:
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gen_a_ui32_z_f128( ui32_to_f128M );
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break;
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#endif
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#ifdef FLOAT16
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case UI64_TO_F16:
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gen_a_ui64_z_f16( ui64_to_f16 );
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break;
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#endif
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case UI64_TO_F32:
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gen_a_ui64_z_f32( ui64_to_f32 );
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break;
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#ifdef FLOAT64
|
|
case UI64_TO_F64:
|
|
gen_a_ui64_z_f64( ui64_to_f64 );
|
|
break;
|
|
#endif
|
|
#ifdef EXTFLOAT80
|
|
case UI64_TO_EXTF80:
|
|
gen_a_ui64_z_extF80( ui64_to_extF80M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT128
|
|
case UI64_TO_F128:
|
|
gen_a_ui64_z_f128( ui64_to_f128M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT16
|
|
case I32_TO_F16:
|
|
gen_a_i32_z_f16( i32_to_f16 );
|
|
break;
|
|
#endif
|
|
case I32_TO_F32:
|
|
gen_a_i32_z_f32( i32_to_f32 );
|
|
break;
|
|
#ifdef FLOAT64
|
|
case I32_TO_F64:
|
|
gen_a_i32_z_f64( i32_to_f64 );
|
|
break;
|
|
#endif
|
|
#ifdef EXTFLOAT80
|
|
case I32_TO_EXTF80:
|
|
gen_a_i32_z_extF80( i32_to_extF80M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT128
|
|
case I32_TO_F128:
|
|
gen_a_i32_z_f128( i32_to_f128M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT16
|
|
case I64_TO_F16:
|
|
gen_a_i64_z_f16( i64_to_f16 );
|
|
break;
|
|
#endif
|
|
case I64_TO_F32:
|
|
gen_a_i64_z_f32( i64_to_f32 );
|
|
break;
|
|
#ifdef FLOAT64
|
|
case I64_TO_F64:
|
|
gen_a_i64_z_f64( i64_to_f64 );
|
|
break;
|
|
#endif
|
|
#ifdef EXTFLOAT80
|
|
case I64_TO_EXTF80:
|
|
gen_a_i64_z_extF80( i64_to_extF80M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT128
|
|
case I64_TO_F128:
|
|
gen_a_i64_z_f128( i64_to_f128M );
|
|
break;
|
|
#endif
|
|
/*--------------------------------------------------------------------
|
|
*--------------------------------------------------------------------*/
|
|
#ifdef FLOAT16
|
|
case F16_TO_UI32:
|
|
gen_a_f16_z_ui32_rx( f16_to_ui32, roundingMode, exact );
|
|
break;
|
|
case F16_TO_UI64:
|
|
gen_a_f16_z_ui64_rx( f16_to_ui64, roundingMode, exact );
|
|
break;
|
|
case F16_TO_I32:
|
|
gen_a_f16_z_i32_rx( f16_to_i32, roundingMode, exact );
|
|
break;
|
|
case F16_TO_I64:
|
|
gen_a_f16_z_i64_rx( f16_to_i64, roundingMode, exact );
|
|
break;
|
|
case F16_TO_F32:
|
|
gen_a_f16_z_f32( f16_to_f32 );
|
|
break;
|
|
#ifdef FLOAT64
|
|
case F16_TO_F64:
|
|
gen_a_f16_z_f64( f16_to_f64 );
|
|
break;
|
|
#endif
|
|
#ifdef EXTFLOAT80
|
|
case F16_TO_EXTF80:
|
|
gen_a_f16_z_extF80( f16_to_extF80M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT128
|
|
case F16_TO_F128:
|
|
gen_a_f16_z_f128( f16_to_f128M );
|
|
break;
|
|
#endif
|
|
case F16_ROUNDTOINT:
|
|
gen_az_f16_rx( f16_roundToInt, roundingMode, exact );
|
|
break;
|
|
case F16_ADD:
|
|
trueFunction_abz_f16 = f16_add;
|
|
goto gen_abz_f16;
|
|
case F16_SUB:
|
|
trueFunction_abz_f16 = f16_sub;
|
|
goto gen_abz_f16;
|
|
case F16_MUL:
|
|
trueFunction_abz_f16 = f16_mul;
|
|
goto gen_abz_f16;
|
|
case F16_DIV:
|
|
trueFunction_abz_f16 = f16_div;
|
|
goto gen_abz_f16;
|
|
case F16_REM:
|
|
trueFunction_abz_f16 = f16_rem;
|
|
gen_abz_f16:
|
|
gen_abz_f16( trueFunction_abz_f16 );
|
|
break;
|
|
case F16_MULADD:
|
|
gen_abcz_f16( f16_mulAdd );
|
|
break;
|
|
case F16_SQRT:
|
|
gen_az_f16( f16_sqrt );
|
|
break;
|
|
case F16_EQ:
|
|
trueFunction_ab_f16_z_bool = f16_eq;
|
|
goto gen_ab_f16_z_bool;
|
|
case F16_LE:
|
|
trueFunction_ab_f16_z_bool = f16_le;
|
|
goto gen_ab_f16_z_bool;
|
|
case F16_LT:
|
|
trueFunction_ab_f16_z_bool = f16_lt;
|
|
goto gen_ab_f16_z_bool;
|
|
case F16_EQ_SIGNALING:
|
|
trueFunction_ab_f16_z_bool = f16_eq_signaling;
|
|
goto gen_ab_f16_z_bool;
|
|
case F16_LE_QUIET:
|
|
trueFunction_ab_f16_z_bool = f16_le_quiet;
|
|
goto gen_ab_f16_z_bool;
|
|
case F16_LT_QUIET:
|
|
trueFunction_ab_f16_z_bool = f16_lt_quiet;
|
|
gen_ab_f16_z_bool:
|
|
gen_ab_f16_z_bool( trueFunction_ab_f16_z_bool );
|
|
break;
|
|
#endif
|
|
/*--------------------------------------------------------------------
|
|
*--------------------------------------------------------------------*/
|
|
case F32_TO_UI32:
|
|
gen_a_f32_z_ui32_rx( f32_to_ui32, roundingMode, exact );
|
|
break;
|
|
case F32_TO_UI64:
|
|
gen_a_f32_z_ui64_rx( f32_to_ui64, roundingMode, exact );
|
|
break;
|
|
case F32_TO_I32:
|
|
gen_a_f32_z_i32_rx( f32_to_i32, roundingMode, exact );
|
|
break;
|
|
case F32_TO_I64:
|
|
gen_a_f32_z_i64_rx( f32_to_i64, roundingMode, exact );
|
|
break;
|
|
#ifdef FLOAT16
|
|
case F32_TO_F16:
|
|
gen_a_f32_z_f16( f32_to_f16 );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT64
|
|
case F32_TO_F64:
|
|
gen_a_f32_z_f64( f32_to_f64 );
|
|
break;
|
|
#endif
|
|
#ifdef EXTFLOAT80
|
|
case F32_TO_EXTF80:
|
|
gen_a_f32_z_extF80( f32_to_extF80M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT128
|
|
case F32_TO_F128:
|
|
gen_a_f32_z_f128( f32_to_f128M );
|
|
break;
|
|
#endif
|
|
case F32_ROUNDTOINT:
|
|
gen_az_f32_rx( f32_roundToInt, roundingMode, exact );
|
|
break;
|
|
case F32_ADD:
|
|
trueFunction_abz_f32 = f32_add;
|
|
goto gen_abz_f32;
|
|
case F32_SUB:
|
|
trueFunction_abz_f32 = f32_sub;
|
|
goto gen_abz_f32;
|
|
case F32_MUL:
|
|
trueFunction_abz_f32 = f32_mul;
|
|
goto gen_abz_f32;
|
|
case F32_DIV:
|
|
trueFunction_abz_f32 = f32_div;
|
|
goto gen_abz_f32;
|
|
case F32_REM:
|
|
trueFunction_abz_f32 = f32_rem;
|
|
gen_abz_f32:
|
|
gen_abz_f32( trueFunction_abz_f32 );
|
|
break;
|
|
case F32_MULADD:
|
|
gen_abcz_f32( f32_mulAdd );
|
|
break;
|
|
case F32_SQRT:
|
|
gen_az_f32( f32_sqrt );
|
|
break;
|
|
case F32_EQ:
|
|
trueFunction_ab_f32_z_bool = f32_eq;
|
|
goto gen_ab_f32_z_bool;
|
|
case F32_LE:
|
|
trueFunction_ab_f32_z_bool = f32_le;
|
|
goto gen_ab_f32_z_bool;
|
|
case F32_LT:
|
|
trueFunction_ab_f32_z_bool = f32_lt;
|
|
goto gen_ab_f32_z_bool;
|
|
case F32_EQ_SIGNALING:
|
|
trueFunction_ab_f32_z_bool = f32_eq_signaling;
|
|
goto gen_ab_f32_z_bool;
|
|
case F32_LE_QUIET:
|
|
trueFunction_ab_f32_z_bool = f32_le_quiet;
|
|
goto gen_ab_f32_z_bool;
|
|
case F32_LT_QUIET:
|
|
trueFunction_ab_f32_z_bool = f32_lt_quiet;
|
|
gen_ab_f32_z_bool:
|
|
gen_ab_f32_z_bool( trueFunction_ab_f32_z_bool );
|
|
break;
|
|
/*--------------------------------------------------------------------
|
|
*--------------------------------------------------------------------*/
|
|
#ifdef FLOAT64
|
|
case F64_TO_UI32:
|
|
gen_a_f64_z_ui32_rx( f64_to_ui32, roundingMode, exact );
|
|
break;
|
|
case F64_TO_UI64:
|
|
gen_a_f64_z_ui64_rx( f64_to_ui64, roundingMode, exact );
|
|
break;
|
|
case F64_TO_I32:
|
|
gen_a_f64_z_i32_rx( f64_to_i32, roundingMode, exact );
|
|
break;
|
|
case F64_TO_I64:
|
|
gen_a_f64_z_i64_rx( f64_to_i64, roundingMode, exact );
|
|
break;
|
|
#ifdef FLOAT16
|
|
case F64_TO_F16:
|
|
gen_a_f64_z_f16( f64_to_f16 );
|
|
break;
|
|
#endif
|
|
case F64_TO_F32:
|
|
gen_a_f64_z_f32( f64_to_f32 );
|
|
break;
|
|
#ifdef EXTFLOAT80
|
|
case F64_TO_EXTF80:
|
|
gen_a_f64_z_extF80( f64_to_extF80M );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT128
|
|
case F64_TO_F128:
|
|
gen_a_f64_z_f128( f64_to_f128M );
|
|
break;
|
|
#endif
|
|
case F64_ROUNDTOINT:
|
|
gen_az_f64_rx( f64_roundToInt, roundingMode, exact );
|
|
break;
|
|
case F64_ADD:
|
|
trueFunction_abz_f64 = f64_add;
|
|
goto gen_abz_f64;
|
|
case F64_SUB:
|
|
trueFunction_abz_f64 = f64_sub;
|
|
goto gen_abz_f64;
|
|
case F64_MUL:
|
|
trueFunction_abz_f64 = f64_mul;
|
|
goto gen_abz_f64;
|
|
case F64_DIV:
|
|
trueFunction_abz_f64 = f64_div;
|
|
goto gen_abz_f64;
|
|
case F64_REM:
|
|
trueFunction_abz_f64 = f64_rem;
|
|
gen_abz_f64:
|
|
gen_abz_f64( trueFunction_abz_f64 );
|
|
break;
|
|
case F64_MULADD:
|
|
gen_abcz_f64( f64_mulAdd );
|
|
break;
|
|
case F64_SQRT:
|
|
gen_az_f64( f64_sqrt );
|
|
break;
|
|
case F64_EQ:
|
|
trueFunction_ab_f64_z_bool = f64_eq;
|
|
goto gen_ab_f64_z_bool;
|
|
case F64_LE:
|
|
trueFunction_ab_f64_z_bool = f64_le;
|
|
goto gen_ab_f64_z_bool;
|
|
case F64_LT:
|
|
trueFunction_ab_f64_z_bool = f64_lt;
|
|
goto gen_ab_f64_z_bool;
|
|
case F64_EQ_SIGNALING:
|
|
trueFunction_ab_f64_z_bool = f64_eq_signaling;
|
|
goto gen_ab_f64_z_bool;
|
|
case F64_LE_QUIET:
|
|
trueFunction_ab_f64_z_bool = f64_le_quiet;
|
|
goto gen_ab_f64_z_bool;
|
|
case F64_LT_QUIET:
|
|
trueFunction_ab_f64_z_bool = f64_lt_quiet;
|
|
gen_ab_f64_z_bool:
|
|
gen_ab_f64_z_bool( trueFunction_ab_f64_z_bool );
|
|
break;
|
|
#endif
|
|
/*--------------------------------------------------------------------
|
|
*--------------------------------------------------------------------*/
|
|
#ifdef EXTFLOAT80
|
|
case EXTF80_TO_UI32:
|
|
gen_a_extF80_z_ui32_rx( extF80M_to_ui32, roundingMode, exact );
|
|
break;
|
|
case EXTF80_TO_UI64:
|
|
gen_a_extF80_z_ui64_rx( extF80M_to_ui64, roundingMode, exact );
|
|
break;
|
|
case EXTF80_TO_I32:
|
|
gen_a_extF80_z_i32_rx( extF80M_to_i32, roundingMode, exact );
|
|
break;
|
|
case EXTF80_TO_I64:
|
|
gen_a_extF80_z_i64_rx( extF80M_to_i64, roundingMode, exact );
|
|
break;
|
|
#ifdef FLOAT16
|
|
case EXTF80_TO_F16:
|
|
gen_a_extF80_z_f16( extF80M_to_f16 );
|
|
break;
|
|
#endif
|
|
case EXTF80_TO_F32:
|
|
gen_a_extF80_z_f32( extF80M_to_f32 );
|
|
break;
|
|
#ifdef FLOAT64
|
|
case EXTF80_TO_F64:
|
|
gen_a_extF80_z_f64( extF80M_to_f64 );
|
|
break;
|
|
#endif
|
|
#ifdef FLOAT128
|
|
case EXTF80_TO_F128:
|
|
gen_a_extF80_z_f128( extF80M_to_f128M );
|
|
break;
|
|
#endif
|
|
case EXTF80_ROUNDTOINT:
|
|
gen_az_extF80_rx( extF80M_roundToInt, roundingMode, exact );
|
|
break;
|
|
case EXTF80_ADD:
|
|
trueFunction_abz_extF80 = extF80M_add;
|
|
goto gen_abz_extF80;
|
|
case EXTF80_SUB:
|
|
trueFunction_abz_extF80 = extF80M_sub;
|
|
goto gen_abz_extF80;
|
|
case EXTF80_MUL:
|
|
trueFunction_abz_extF80 = extF80M_mul;
|
|
goto gen_abz_extF80;
|
|
case EXTF80_DIV:
|
|
trueFunction_abz_extF80 = extF80M_div;
|
|
goto gen_abz_extF80;
|
|
case EXTF80_REM:
|
|
trueFunction_abz_extF80 = extF80M_rem;
|
|
gen_abz_extF80:
|
|
gen_abz_extF80( trueFunction_abz_extF80 );
|
|
break;
|
|
case EXTF80_SQRT:
|
|
gen_az_extF80( extF80M_sqrt );
|
|
break;
|
|
case EXTF80_EQ:
|
|
trueFunction_ab_extF80_z_bool = extF80M_eq;
|
|
goto gen_ab_extF80_z_bool;
|
|
case EXTF80_LE:
|
|
trueFunction_ab_extF80_z_bool = extF80M_le;
|
|
goto gen_ab_extF80_z_bool;
|
|
case EXTF80_LT:
|
|
trueFunction_ab_extF80_z_bool = extF80M_lt;
|
|
goto gen_ab_extF80_z_bool;
|
|
case EXTF80_EQ_SIGNALING:
|
|
trueFunction_ab_extF80_z_bool = extF80M_eq_signaling;
|
|
goto gen_ab_extF80_z_bool;
|
|
case EXTF80_LE_QUIET:
|
|
trueFunction_ab_extF80_z_bool = extF80M_le_quiet;
|
|
goto gen_ab_extF80_z_bool;
|
|
case EXTF80_LT_QUIET:
|
|
trueFunction_ab_extF80_z_bool = extF80M_lt_quiet;
|
|
gen_ab_extF80_z_bool:
|
|
gen_ab_extF80_z_bool( trueFunction_ab_extF80_z_bool );
|
|
break;
|
|
#endif
|
|
/*--------------------------------------------------------------------
|
|
*--------------------------------------------------------------------*/
|
|
#ifdef FLOAT128
|
|
case F128_TO_UI32:
|
|
gen_a_f128_z_ui32_rx( f128M_to_ui32, roundingMode, exact );
|
|
break;
|
|
case F128_TO_UI64:
|
|
gen_a_f128_z_ui64_rx( f128M_to_ui64, roundingMode, exact );
|
|
break;
|
|
case F128_TO_I32:
|
|
gen_a_f128_z_i32_rx( f128M_to_i32, roundingMode, exact );
|
|
break;
|
|
case F128_TO_I64:
|
|
gen_a_f128_z_i64_rx( f128M_to_i64, roundingMode, exact );
|
|
break;
|
|
#ifdef FLOAT16
|
|
case F128_TO_F16:
|
|
gen_a_f128_z_f16( f128M_to_f16 );
|
|
break;
|
|
#endif
|
|
case F128_TO_F32:
|
|
gen_a_f128_z_f32( f128M_to_f32 );
|
|
break;
|
|
#ifdef FLOAT64
|
|
case F128_TO_F64:
|
|
gen_a_f128_z_f64( f128M_to_f64 );
|
|
break;
|
|
#endif
|
|
#ifdef EXTFLOAT80
|
|
case F128_TO_EXTF80:
|
|
gen_a_f128_z_extF80( f128M_to_extF80M );
|
|
break;
|
|
#endif
|
|
case F128_ROUNDTOINT:
|
|
gen_az_f128_rx( f128M_roundToInt, roundingMode, exact );
|
|
break;
|
|
case F128_ADD:
|
|
trueFunction_abz_f128 = f128M_add;
|
|
goto gen_abz_f128;
|
|
case F128_SUB:
|
|
trueFunction_abz_f128 = f128M_sub;
|
|
goto gen_abz_f128;
|
|
case F128_MUL:
|
|
trueFunction_abz_f128 = f128M_mul;
|
|
goto gen_abz_f128;
|
|
case F128_DIV:
|
|
trueFunction_abz_f128 = f128M_div;
|
|
goto gen_abz_f128;
|
|
case F128_REM:
|
|
trueFunction_abz_f128 = f128M_rem;
|
|
gen_abz_f128:
|
|
gen_abz_f128( trueFunction_abz_f128 );
|
|
break;
|
|
case F128_MULADD:
|
|
gen_abcz_f128( f128M_mulAdd );
|
|
break;
|
|
case F128_SQRT:
|
|
gen_az_f128( f128M_sqrt );
|
|
break;
|
|
case F128_EQ:
|
|
trueFunction_ab_f128_z_bool = f128M_eq;
|
|
goto gen_ab_f128_z_bool;
|
|
case F128_LE:
|
|
trueFunction_ab_f128_z_bool = f128M_le;
|
|
goto gen_ab_f128_z_bool;
|
|
case F128_LT:
|
|
trueFunction_ab_f128_z_bool = f128M_lt;
|
|
goto gen_ab_f128_z_bool;
|
|
case F128_EQ_SIGNALING:
|
|
trueFunction_ab_f128_z_bool = f128M_eq_signaling;
|
|
goto gen_ab_f128_z_bool;
|
|
case F128_LE_QUIET:
|
|
trueFunction_ab_f128_z_bool = f128M_le_quiet;
|
|
goto gen_ab_f128_z_bool;
|
|
case F128_LT_QUIET:
|
|
trueFunction_ab_f128_z_bool = f128M_lt_quiet;
|
|
gen_ab_f128_z_bool:
|
|
gen_ab_f128_z_bool( trueFunction_ab_f128_z_bool );
|
|
break;
|
|
#endif
|
|
}
|
|
return EXIT_SUCCESS;
|
|
/*------------------------------------------------------------------------
|
|
*------------------------------------------------------------------------*/
|
|
optionError:
|
|
fail( "'%s' option requires numeric argument", *argv );
|
|
invalidArg:
|
|
fail( "Invalid argument '%s'", *argv );
|
|
|
|
}
|
|
|