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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/arch/mips/math-emu/sp_tint.c
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// SPDX-License-Identifier: GPL-2.0-only
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/* IEEE754 floating point arithmetic
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* single precision
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*/
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/*
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* MIPS floating point support
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* Copyright (C) 1994-2000 Algorithmics Ltd.
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*/
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#include "ieee754sp.h"
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int ieee754sp_tint(union ieee754sp x)
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{
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u32 residue;
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int round;
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int sticky;
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int odd;
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COMPXSP;
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ieee754_clearcx();
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EXPLODEXSP;
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FLUSHXSP;
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switch (xc) {
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case IEEE754_CLASS_SNAN:
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case IEEE754_CLASS_QNAN:
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ieee754_setcx(IEEE754_INVALID_OPERATION);
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return ieee754si_indef();
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case IEEE754_CLASS_INF:
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ieee754_setcx(IEEE754_INVALID_OPERATION);
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return ieee754si_overflow(xs);
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case IEEE754_CLASS_ZERO:
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return 0;
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case IEEE754_CLASS_DNORM:
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case IEEE754_CLASS_NORM:
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break;
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}
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if (xe >= 31) {
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/* look for valid corner case */
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if (xe == 31 && xs && xm == SP_HIDDEN_BIT)
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return -0x80000000;
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/* Set invalid. We will only use overflow for floating
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point overflow */
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ieee754_setcx(IEEE754_INVALID_OPERATION);
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return ieee754si_overflow(xs);
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}
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/* oh gawd */
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if (xe > SP_FBITS) {
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xm <<= xe - SP_FBITS;
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} else {
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if (xe < -1) {
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residue = xm;
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round = 0;
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sticky = residue != 0;
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xm = 0;
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} else {
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/* Shifting a u32 32 times does not work,
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* so we do it in two steps. Be aware that xe
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* may be -1 */
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residue = xm << (xe + 1);
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residue <<= 31 - SP_FBITS;
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round = (residue >> 31) != 0;
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sticky = (residue << 1) != 0;
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xm >>= SP_FBITS - xe;
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}
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odd = (xm & 0x1) != 0x0;
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switch (ieee754_csr.rm) {
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case FPU_CSR_RN:
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if (round && (sticky || odd))
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xm++;
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break;
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case FPU_CSR_RZ:
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break;
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case FPU_CSR_RU: /* toward +Infinity */
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if ((round || sticky) && !xs)
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xm++;
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break;
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case FPU_CSR_RD: /* toward -Infinity */
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if ((round || sticky) && xs)
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xm++;
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break;
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}
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if ((xm >> 31) != 0) {
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/* This can happen after rounding */
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ieee754_setcx(IEEE754_INVALID_OPERATION);
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return ieee754si_overflow(xs);
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}
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if (round || sticky)
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ieee754_setcx(IEEE754_INEXACT);
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}
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if (xs)
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return -xm;
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else
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return xm;
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}
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