| |
| /*============================================================================ |
| |
| This C source file is part of the SoftFloat IEEE Floating-Point Arithmetic |
| Package, Release 3e, by John R. Hauser. |
| |
| Copyright 2011, 2012, 2013, 2014 The Regents of the University of California. |
| All rights reserved. |
| |
| Redistribution and use in source and binary forms, with or without |
| modification, are permitted provided that the following conditions are met: |
| |
| 1. Redistributions of source code must retain the above copyright notice, |
| this list of conditions, and the following disclaimer. |
| |
| 2. Redistributions in binary form must reproduce the above copyright notice, |
| this list of conditions, and the following disclaimer in the documentation |
| and/or other materials provided with the distribution. |
| |
| 3. Neither the name of the University nor the names of its contributors may |
| be used to endorse or promote products derived from this software without |
| specific prior written permission. |
| |
| THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS "AS IS", AND ANY |
| EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED |
| WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE, ARE |
| DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE FOR ANY |
| DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES |
| (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; |
| LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND |
| ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
| (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS |
| SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
| |
| =============================================================================*/ |
| |
| #include <stdbool.h> |
| #include <stdint.h> |
| #include "platform.h" |
| #include "internals.h" |
| #include "specialize.h" |
| #include "softfloat.h" |
| |
| #ifdef SOFTFLOAT_FAST_INT64 |
| |
| void |
| f128M_rem( const float128_t *aPtr, const float128_t *bPtr, float128_t *zPtr ) |
| { |
| |
| *zPtr = f128_rem( *aPtr, *bPtr ); |
| |
| } |
| |
| #else |
| |
| void |
| f128M_rem( const float128_t *aPtr, const float128_t *bPtr, float128_t *zPtr ) |
| { |
| const uint32_t *aWPtr, *bWPtr; |
| uint32_t *zWPtr, uiA96; |
| int32_t expA, expB; |
| uint32_t x[4], rem1[5], *remPtr; |
| bool signRem; |
| int32_t expDiff; |
| uint32_t q, recip32; |
| uint64_t q64; |
| uint32_t rem2[5], *altRemPtr, *newRemPtr, wordMeanRem; |
| |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| aWPtr = (const uint32_t *) aPtr; |
| bWPtr = (const uint32_t *) bPtr; |
| zWPtr = (uint32_t *) zPtr; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| uiA96 = aWPtr[indexWordHi( 4 )]; |
| expA = expF128UI96( uiA96 ); |
| expB = expF128UI96( bWPtr[indexWordHi( 4 )] ); |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| if ( (expA == 0x7FFF) || (expB == 0x7FFF) ) { |
| if ( softfloat_tryPropagateNaNF128M( aWPtr, bWPtr, zWPtr ) ) return; |
| if ( expA == 0x7FFF ) goto invalid; |
| goto copyA; |
| } |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| if ( expA < expB - 1 ) goto copyA; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| expB = softfloat_shiftNormSigF128M( bWPtr, 13, x ); |
| if ( expB == -128 ) goto invalid; |
| remPtr = &rem1[indexMultiwordLo( 5, 4 )]; |
| expA = softfloat_shiftNormSigF128M( aWPtr, 13, remPtr ); |
| if ( expA == -128 ) goto copyA; |
| signRem = signF128UI96( uiA96 ); |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| expDiff = expA - expB; |
| if ( expDiff < 1 ) { |
| if ( expDiff < -1 ) goto copyA; |
| if ( expDiff ) { |
| --expB; |
| softfloat_add128M( x, x, x ); |
| q = 0; |
| } else { |
| q = (softfloat_compare128M( x, remPtr ) <= 0); |
| if ( q ) softfloat_sub128M( remPtr, x, remPtr ); |
| } |
| } else { |
| recip32 = |
| softfloat_approxRecip32_1( |
| ((uint64_t) x[indexWord( 4, 3 )]<<32 | x[indexWord( 4, 2 )]) |
| >>30 |
| ); |
| expDiff -= 30; |
| for (;;) { |
| q64 = (uint64_t) remPtr[indexWordHi( 4 )] * recip32; |
| if ( expDiff < 0 ) break; |
| q = (q64 + 0x80000000)>>32; |
| softfloat_remStep128MBy32( remPtr, 29, x, q, remPtr ); |
| if ( remPtr[indexWordHi( 4 )] & 0x80000000 ) { |
| softfloat_add128M( remPtr, x, remPtr ); |
| } |
| expDiff -= 29; |
| } |
| /*-------------------------------------------------------------------- |
| | (`expDiff' cannot be less than -29 here.) |
| *--------------------------------------------------------------------*/ |
| q = (uint32_t) (q64>>32)>>(~expDiff & 31); |
| softfloat_remStep128MBy32( remPtr, expDiff + 30, x, q, remPtr ); |
| if ( remPtr[indexWordHi( 4 )] & 0x80000000 ) { |
| altRemPtr = &rem2[indexMultiwordLo( 5, 4 )]; |
| softfloat_add128M( remPtr, x, altRemPtr ); |
| goto selectRem; |
| } |
| } |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| altRemPtr = &rem2[indexMultiwordLo( 5, 4 )]; |
| do { |
| ++q; |
| newRemPtr = altRemPtr; |
| softfloat_sub128M( remPtr, x, newRemPtr ); |
| altRemPtr = remPtr; |
| remPtr = newRemPtr; |
| } while ( ! (remPtr[indexWordHi( 4 )] & 0x80000000) ); |
| selectRem: |
| softfloat_add128M( remPtr, altRemPtr, x ); |
| wordMeanRem = x[indexWordHi( 4 )]; |
| if ( |
| (wordMeanRem & 0x80000000) |
| || (! wordMeanRem && (q & 1) && ! x[indexWord( 4, 0 )] |
| && ! (x[indexWord( 4, 2 )] | x[indexWord( 4, 1 )])) |
| ) { |
| remPtr = altRemPtr; |
| } |
| if ( remPtr[indexWordHi( 4 )] & 0x80000000 ) { |
| signRem = ! signRem; |
| softfloat_negX128M( remPtr ); |
| } |
| remPtr -= indexMultiwordLo( 5, 4 ); |
| remPtr[indexWordHi( 5 )] = 0; |
| softfloat_normRoundPackMToF128M( signRem, expB + 18, remPtr, zWPtr ); |
| return; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| invalid: |
| softfloat_invalidF128M( zWPtr ); |
| return; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| copyA: |
| zWPtr[indexWordHi( 4 )] = uiA96; |
| zWPtr[indexWord( 4, 2 )] = aWPtr[indexWord( 4, 2 )]; |
| zWPtr[indexWord( 4, 1 )] = aWPtr[indexWord( 4, 1 )]; |
| zWPtr[indexWord( 4, 0 )] = aWPtr[indexWord( 4, 0 )]; |
| |
| } |
| |
| #endif |
| |