| |
| /*============================================================================ |
| |
| 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" |
| |
| extFloat80_t extF80_div( extFloat80_t a, extFloat80_t b ) |
| { |
| union { struct extFloat80M s; extFloat80_t f; } uA; |
| uint_fast16_t uiA64; |
| uint_fast64_t uiA0; |
| bool signA; |
| int_fast32_t expA; |
| uint_fast64_t sigA; |
| union { struct extFloat80M s; extFloat80_t f; } uB; |
| uint_fast16_t uiB64; |
| uint_fast64_t uiB0; |
| bool signB; |
| int_fast32_t expB; |
| uint_fast64_t sigB; |
| bool signZ; |
| struct exp32_sig64 normExpSig; |
| int_fast32_t expZ; |
| struct uint128 rem; |
| uint_fast32_t recip32; |
| uint_fast64_t sigZ; |
| int ix; |
| uint_fast64_t q64; |
| uint_fast32_t q; |
| struct uint128 term; |
| uint_fast64_t sigZExtra; |
| struct uint128 uiZ; |
| uint_fast16_t uiZ64; |
| uint_fast64_t uiZ0; |
| union { struct extFloat80M s; extFloat80_t f; } uZ; |
| |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| uA.f = a; |
| uiA64 = uA.s.signExp; |
| uiA0 = uA.s.signif; |
| signA = signExtF80UI64( uiA64 ); |
| expA = expExtF80UI64( uiA64 ); |
| sigA = uiA0; |
| uB.f = b; |
| uiB64 = uB.s.signExp; |
| uiB0 = uB.s.signif; |
| signB = signExtF80UI64( uiB64 ); |
| expB = expExtF80UI64( uiB64 ); |
| sigB = uiB0; |
| signZ = signA ^ signB; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| if ( expA == 0x7FFF ) { |
| if ( sigA & UINT64_C( 0x7FFFFFFFFFFFFFFF ) ) goto propagateNaN; |
| if ( expB == 0x7FFF ) { |
| if ( sigB & UINT64_C( 0x7FFFFFFFFFFFFFFF ) ) goto propagateNaN; |
| goto invalid; |
| } |
| goto infinity; |
| } |
| if ( expB == 0x7FFF ) { |
| if ( sigB & UINT64_C( 0x7FFFFFFFFFFFFFFF ) ) goto propagateNaN; |
| goto zero; |
| } |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| if ( ! expB ) expB = 1; |
| if ( ! (sigB & UINT64_C( 0x8000000000000000 )) ) { |
| if ( ! sigB ) { |
| if ( ! sigA ) goto invalid; |
| softfloat_raiseFlags( softfloat_flag_infinite ); |
| goto infinity; |
| } |
| normExpSig = softfloat_normSubnormalExtF80Sig( sigB ); |
| expB += normExpSig.exp; |
| sigB = normExpSig.sig; |
| } |
| if ( ! expA ) expA = 1; |
| if ( ! (sigA & UINT64_C( 0x8000000000000000 )) ) { |
| if ( ! sigA ) goto zero; |
| normExpSig = softfloat_normSubnormalExtF80Sig( sigA ); |
| expA += normExpSig.exp; |
| sigA = normExpSig.sig; |
| } |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| expZ = expA - expB + 0x3FFF; |
| if ( sigA < sigB ) { |
| --expZ; |
| rem = softfloat_shortShiftLeft128( 0, sigA, 32 ); |
| } else { |
| rem = softfloat_shortShiftLeft128( 0, sigA, 31 ); |
| } |
| recip32 = softfloat_approxRecip32_1( sigB>>32 ); |
| sigZ = 0; |
| ix = 2; |
| for (;;) { |
| q64 = (uint_fast64_t) (uint32_t) (rem.v64>>2) * recip32; |
| q = (q64 + 0x80000000)>>32; |
| --ix; |
| if ( ix < 0 ) break; |
| rem = softfloat_shortShiftLeft128( rem.v64, rem.v0, 29 ); |
| term = softfloat_mul64ByShifted32To128( sigB, q ); |
| rem = softfloat_sub128( rem.v64, rem.v0, term.v64, term.v0 ); |
| if ( rem.v64 & UINT64_C( 0x8000000000000000 ) ) { |
| --q; |
| rem = softfloat_add128( rem.v64, rem.v0, sigB>>32, sigB<<32 ); |
| } |
| sigZ = (sigZ<<29) + q; |
| } |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| if ( ((q + 1) & 0x3FFFFF) < 2 ) { |
| rem = softfloat_shortShiftLeft128( rem.v64, rem.v0, 29 ); |
| term = softfloat_mul64ByShifted32To128( sigB, q ); |
| rem = softfloat_sub128( rem.v64, rem.v0, term.v64, term.v0 ); |
| term = softfloat_shortShiftLeft128( 0, sigB, 32 ); |
| if ( rem.v64 & UINT64_C( 0x8000000000000000 ) ) { |
| --q; |
| rem = softfloat_add128( rem.v64, rem.v0, term.v64, term.v0 ); |
| } else if ( softfloat_le128( term.v64, term.v0, rem.v64, rem.v0 ) ) { |
| ++q; |
| rem = softfloat_sub128( rem.v64, rem.v0, term.v64, term.v0 ); |
| } |
| if ( rem.v64 | rem.v0 ) q |= 1; |
| } |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| sigZ = (sigZ<<6) + (q>>23); |
| sigZExtra = (uint64_t) ((uint_fast64_t) q<<41); |
| return |
| softfloat_roundPackToExtF80( |
| signZ, expZ, sigZ, sigZExtra, extF80_roundingPrecision ); |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| propagateNaN: |
| uiZ = softfloat_propagateNaNExtF80UI( uiA64, uiA0, uiB64, uiB0 ); |
| uiZ64 = uiZ.v64; |
| uiZ0 = uiZ.v0; |
| goto uiZ; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| invalid: |
| softfloat_raiseFlags( softfloat_flag_invalid ); |
| uiZ64 = defaultNaNExtF80UI64; |
| uiZ0 = defaultNaNExtF80UI0; |
| goto uiZ; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| infinity: |
| uiZ64 = packToExtF80UI64( signZ, 0x7FFF ); |
| uiZ0 = UINT64_C( 0x8000000000000000 ); |
| goto uiZ; |
| /*------------------------------------------------------------------------ |
| *------------------------------------------------------------------------*/ |
| zero: |
| uiZ64 = packToExtF80UI64( signZ, 0 ); |
| uiZ0 = 0; |
| uiZ: |
| uZ.s.signExp = uiZ64; |
| uZ.s.signif = uiZ0; |
| return uZ.f; |
| |
| } |
| |