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MIPS: math-emu: Add support for the MIPS R6 MIN{, A} FPU instruction
MIPS R6 introduced the following instruction: Scalar Floating-Point Minimum and Scalar Floating-Point argument with Minimum Absolute Value MIN.fmt writes the minimum value of the inputs fs and ft to the destination fd. MINA.fmt takes input arguments fs and ft and writes the argument with the minimum absolute value to the destination fd. Signed-off-by: Markos Chandras <markos.chandras@imgtec.com> Cc: linux-mips@linux-mips.org Patchwork: https://patchwork.linux-mips.org/patch/10960/ Signed-off-by: Ralf Baechle <ralf@linux-mips.org>
This commit is contained in:
parent
38db37ba06
commit
4e9561b20e
@ -4,9 +4,9 @@
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obj-y += cp1emu.o ieee754dp.o ieee754sp.o ieee754.o \
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dp_div.o dp_mul.o dp_sub.o dp_add.o dp_fsp.o dp_cmp.o dp_simple.o \
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dp_tint.o dp_fint.o dp_maddf.o dp_msubf.o dp_2008class.o \
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dp_tint.o dp_fint.o dp_maddf.o dp_msubf.o dp_2008class.o dp_fmin.o \
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sp_div.o sp_mul.o sp_sub.o sp_add.o sp_fdp.o sp_cmp.o sp_simple.o \
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sp_tint.o sp_fint.o sp_maddf.o sp_msubf.o sp_2008class.o \
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sp_tint.o sp_fint.o sp_maddf.o sp_msubf.o sp_2008class.o sp_fmin.o \
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dsemul.o
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lib-y += ieee754d.o \
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@ -1815,6 +1815,30 @@ static int fpu_emu(struct pt_regs *xcp, struct mips_fpu_struct *ctx,
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break;
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}
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case fmin_op: {
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union ieee754sp fs, ft;
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if (!cpu_has_mips_r6)
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return SIGILL;
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SPFROMREG(ft, MIPSInst_FT(ir));
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SPFROMREG(fs, MIPSInst_FS(ir));
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rv.s = ieee754sp_fmin(fs, ft);
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break;
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}
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case fmina_op: {
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union ieee754sp fs, ft;
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if (!cpu_has_mips_r6)
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return SIGILL;
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SPFROMREG(ft, MIPSInst_FT(ir));
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SPFROMREG(fs, MIPSInst_FS(ir));
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rv.s = ieee754sp_fmina(fs, ft);
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break;
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}
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case fabs_op:
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handler.u = ieee754sp_abs;
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goto scopuop;
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@ -2085,6 +2109,30 @@ copcsr:
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break;
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}
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case fmin_op: {
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union ieee754dp fs, ft;
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if (!cpu_has_mips_r6)
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return SIGILL;
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DPFROMREG(ft, MIPSInst_FT(ir));
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DPFROMREG(fs, MIPSInst_FS(ir));
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rv.d = ieee754dp_fmin(fs, ft);
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break;
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}
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case fmina_op: {
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union ieee754dp fs, ft;
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if (!cpu_has_mips_r6)
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return SIGILL;
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DPFROMREG(ft, MIPSInst_FT(ir));
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DPFROMREG(fs, MIPSInst_FS(ir));
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rv.d = ieee754dp_fmina(fs, ft);
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break;
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}
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case fabs_op:
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handler.u = ieee754dp_abs;
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goto dcopuop;
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213
arch/mips/math-emu/dp_fmin.c
Normal file
213
arch/mips/math-emu/dp_fmin.c
Normal file
@ -0,0 +1,213 @@
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/*
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* IEEE754 floating point arithmetic
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* double precision: MIN{,A}.f
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* MIN : Scalar Floating-Point Minimum
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* MINA: Scalar Floating-Point argument with Minimum Absolute Value
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*
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* MIN.D : FPR[fd] = minNum(FPR[fs],FPR[ft])
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* MINA.D: FPR[fd] = maxNumMag(FPR[fs],FPR[ft])
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*
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* MIPS floating point support
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* Copyright (C) 2015 Imagination Technologies, Ltd.
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* Author: Markos Chandras <markos.chandras@imgtec.com>
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*
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* This program is free software; you can distribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; version 2 of the License.
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*/
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#include "ieee754dp.h"
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union ieee754dp ieee754dp_fmin(union ieee754dp x, union ieee754dp y)
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{
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COMPXDP;
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COMPYDP;
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EXPLODEXDP;
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EXPLODEYDP;
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FLUSHXDP;
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FLUSHYDP;
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ieee754_clearcx();
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switch (CLPAIR(xc, yc)) {
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_SNAN):
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return ieee754dp_nanxcpt(y);
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_INF):
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return ieee754dp_nanxcpt(x);
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/* numbers are preferred to NaNs */
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_QNAN):
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return x;
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_INF):
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return y;
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/*
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* Infinity and zero handling
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*/
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_ZERO):
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return xs ? x : y;
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_DNORM):
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return ys ? y : x;
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_ZERO):
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if (xs == ys)
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return x;
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return ieee754dp_zero(1);
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_DNORM):
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DPDNORMX;
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_DNORM):
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DPDNORMY;
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break;
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_NORM):
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DPDNORMX;
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}
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/* Finally get to do some computation */
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assert(xm & DP_HIDDEN_BIT);
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assert(ym & DP_HIDDEN_BIT);
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/* Compare signs */
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if (xs > ys)
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return x;
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else if (xs < ys)
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return y;
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/* Compare exponent */
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if (xe > ye)
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return y;
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else if (xe < ye)
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return x;
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/* Compare mantissa */
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if (xm <= ym)
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return x;
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return y;
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}
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union ieee754dp ieee754dp_fmina(union ieee754dp x, union ieee754dp y)
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{
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COMPXDP;
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COMPYDP;
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EXPLODEXDP;
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EXPLODEYDP;
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FLUSHXDP;
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FLUSHYDP;
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ieee754_clearcx();
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switch (CLPAIR(xc, yc)) {
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_SNAN):
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return ieee754dp_nanxcpt(y);
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_INF):
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return ieee754dp_nanxcpt(x);
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/* numbers are preferred to NaNs */
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_QNAN):
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return x;
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_INF):
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return y;
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/*
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* Infinity and zero handling
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*/
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_ZERO):
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return x;
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_DNORM):
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return y;
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_ZERO):
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if (xs == ys)
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return x;
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return ieee754dp_zero(1);
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_DNORM):
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DPDNORMX;
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_DNORM):
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DPDNORMY;
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break;
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_NORM):
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DPDNORMX;
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}
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/* Finally get to do some computation */
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assert(xm & DP_HIDDEN_BIT);
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assert(ym & DP_HIDDEN_BIT);
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/* Compare exponent */
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if (xe > ye)
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return y;
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else if (xe < ye)
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return x;
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/* Compare mantissa */
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if (xm <= ym)
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return x;
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return y;
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}
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@ -80,6 +80,8 @@ union ieee754sp ieee754sp_maddf(union ieee754sp z, union ieee754sp x,
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union ieee754sp ieee754sp_msubf(union ieee754sp z, union ieee754sp x,
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union ieee754sp y);
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int ieee754sp_2008class(union ieee754sp x);
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union ieee754sp ieee754sp_fmin(union ieee754sp x, union ieee754sp y);
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union ieee754sp ieee754sp_fmina(union ieee754sp x, union ieee754sp y);
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/*
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* double precision (often aka double)
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@ -110,6 +112,8 @@ union ieee754dp ieee754dp_maddf(union ieee754dp z, union ieee754dp x,
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union ieee754dp ieee754dp_msubf(union ieee754dp z, union ieee754dp x,
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union ieee754dp y);
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int ieee754dp_2008class(union ieee754dp x);
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union ieee754dp ieee754dp_fmin(union ieee754dp x, union ieee754dp y);
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union ieee754dp ieee754dp_fmina(union ieee754dp x, union ieee754dp y);
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/* 5 types of floating point number
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213
arch/mips/math-emu/sp_fmin.c
Normal file
213
arch/mips/math-emu/sp_fmin.c
Normal file
@ -0,0 +1,213 @@
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/*
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* IEEE754 floating point arithmetic
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* single precision: MIN{,A}.f
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* MIN : Scalar Floating-Point Minimum
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* MINA: Scalar Floating-Point argument with Minimum Absolute Value
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*
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* MIN.S : FPR[fd] = minNum(FPR[fs],FPR[ft])
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* MINA.S: FPR[fd] = maxNumMag(FPR[fs],FPR[ft])
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*
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* MIPS floating point support
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* Copyright (C) 2015 Imagination Technologies, Ltd.
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* Author: Markos Chandras <markos.chandras@imgtec.com>
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*
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* This program is free software; you can distribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; version 2 of the License.
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*/
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#include "ieee754sp.h"
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union ieee754sp ieee754sp_fmin(union ieee754sp x, union ieee754sp y)
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{
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COMPXSP;
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COMPYSP;
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EXPLODEXSP;
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EXPLODEYSP;
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FLUSHXSP;
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FLUSHYSP;
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ieee754_clearcx();
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switch (CLPAIR(xc, yc)) {
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_SNAN):
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return ieee754sp_nanxcpt(y);
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_SNAN):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_INF):
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return ieee754sp_nanxcpt(x);
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/* numbers are preferred to NaNs */
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_QNAN):
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return x;
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_QNAN):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_INF):
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return y;
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/*
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* Infinity and zero handling
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*/
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_DNORM):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_ZERO):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_ZERO):
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return xs ? x : y;
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case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_INF):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_NORM):
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_DNORM):
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return ys ? y : x;
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case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_ZERO):
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if (xs == ys)
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return x;
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return ieee754sp_zero(1);
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_DNORM):
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SPDNORMX;
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case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_DNORM):
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SPDNORMY;
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break;
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case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_NORM):
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SPDNORMX;
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}
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/* Finally get to do some computation */
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assert(xm & SP_HIDDEN_BIT);
|
||||
assert(ym & SP_HIDDEN_BIT);
|
||||
|
||||
/* Compare signs */
|
||||
if (xs > ys)
|
||||
return x;
|
||||
else if (xs < ys)
|
||||
return y;
|
||||
|
||||
/* Compare exponent */
|
||||
if (xe > ye)
|
||||
return y;
|
||||
else if (xe < ye)
|
||||
return x;
|
||||
|
||||
/* Compare mantissa */
|
||||
if (xm <= ym)
|
||||
return x;
|
||||
return y;
|
||||
}
|
||||
|
||||
union ieee754sp ieee754sp_fmina(union ieee754sp x, union ieee754sp y)
|
||||
{
|
||||
COMPXSP;
|
||||
COMPYSP;
|
||||
|
||||
EXPLODEXSP;
|
||||
EXPLODEYSP;
|
||||
|
||||
FLUSHXSP;
|
||||
FLUSHYSP;
|
||||
|
||||
ieee754_clearcx();
|
||||
|
||||
switch (CLPAIR(xc, yc)) {
|
||||
case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_SNAN):
|
||||
case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_SNAN):
|
||||
case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_SNAN):
|
||||
case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_SNAN):
|
||||
case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_SNAN):
|
||||
return ieee754sp_nanxcpt(y);
|
||||
|
||||
case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_SNAN):
|
||||
case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_QNAN):
|
||||
case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_ZERO):
|
||||
case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_NORM):
|
||||
case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_DNORM):
|
||||
case CLPAIR(IEEE754_CLASS_SNAN, IEEE754_CLASS_INF):
|
||||
return ieee754sp_nanxcpt(x);
|
||||
|
||||
/* numbers are preferred to NaNs */
|
||||
case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_QNAN):
|
||||
case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_QNAN):
|
||||
case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_QNAN):
|
||||
case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_QNAN):
|
||||
return x;
|
||||
|
||||
case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_QNAN):
|
||||
case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_ZERO):
|
||||
case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_NORM):
|
||||
case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_DNORM):
|
||||
case CLPAIR(IEEE754_CLASS_QNAN, IEEE754_CLASS_INF):
|
||||
return y;
|
||||
|
||||
/*
|
||||
* Infinity and zero handling
|
||||
*/
|
||||
case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_ZERO):
|
||||
case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_NORM):
|
||||
case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_DNORM):
|
||||
case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_ZERO):
|
||||
case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_ZERO):
|
||||
return x;
|
||||
|
||||
case CLPAIR(IEEE754_CLASS_INF, IEEE754_CLASS_INF):
|
||||
case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_INF):
|
||||
case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_INF):
|
||||
case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_INF):
|
||||
case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_NORM):
|
||||
case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_DNORM):
|
||||
return y;
|
||||
|
||||
case CLPAIR(IEEE754_CLASS_ZERO, IEEE754_CLASS_ZERO):
|
||||
if (xs == ys)
|
||||
return x;
|
||||
return ieee754sp_zero(1);
|
||||
|
||||
case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_DNORM):
|
||||
SPDNORMX;
|
||||
|
||||
case CLPAIR(IEEE754_CLASS_NORM, IEEE754_CLASS_DNORM):
|
||||
SPDNORMY;
|
||||
break;
|
||||
|
||||
case CLPAIR(IEEE754_CLASS_DNORM, IEEE754_CLASS_NORM):
|
||||
SPDNORMX;
|
||||
}
|
||||
|
||||
/* Finally get to do some computation */
|
||||
|
||||
assert(xm & SP_HIDDEN_BIT);
|
||||
assert(ym & SP_HIDDEN_BIT);
|
||||
|
||||
/* Compare exponent */
|
||||
if (xe > ye)
|
||||
return y;
|
||||
else if (xe < ye)
|
||||
return x;
|
||||
|
||||
/* Compare mantissa */
|
||||
if (xm <= ym)
|
||||
return x;
|
||||
return y;
|
||||
}
|
Loading…
Reference in New Issue
Block a user