437 lines
11 KiB
C++
Executable File
437 lines
11 KiB
C++
Executable File
/////////////////////////////////////////////////////////////////////////
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// $Id: fpu_trans.cc,v 1.29 2010-03-22 22:11:00 sshwarts Exp $
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/////////////////////////////////////////////////////////////////////////
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//
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// Copyright (c) 2003-2009 Stanislav Shwartsman
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// Written by Stanislav Shwartsman [sshwarts at sourceforge net]
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2 of the License, or (at your option) any later version.
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//
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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//
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/////////////////////////////////////////////////////////////////////////
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#define NEED_CPU_REG_SHORTCUTS 1
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#include "bochs.h"
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#include "cpu/cpu.h"
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#define LOG_THIS BX_CPU_THIS_PTR
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#if BX_SUPPORT_FPU
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#include "softfloatx80.h"
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#include "softfloat-specialize.h"
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extern float_status_t FPU_pre_exception_handling(Bit16u control_word);
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/* D9 F0 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::F2XM1(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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if (IS_TAG_EMPTY(0)) {
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FPU_stack_underflow(0);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 result = f2xm1(BX_READ_FPU_REG(0), status);
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if (! FPU_exception(status.float_exception_flags))
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BX_WRITE_FPU_REG(result, 0);
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}
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/* D9 F1 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FYL2X(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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if (IS_TAG_EMPTY(0) || IS_TAG_EMPTY(1))
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{
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FPU_stack_underflow(1, 1 /* pop_stack */);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 result = fyl2x(BX_READ_FPU_REG(0), BX_READ_FPU_REG(1), status);
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if (! FPU_exception(status.float_exception_flags)) {
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BX_CPU_THIS_PTR the_i387.FPU_pop();
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BX_WRITE_FPU_REG(result, 0);
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}
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}
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/* D9 F2 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FPTAN(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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clear_C2();
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if (IS_TAG_EMPTY(0) || ! IS_TAG_EMPTY(-1))
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{
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if(IS_TAG_EMPTY(0))
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FPU_exception(FPU_EX_Stack_Underflow);
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else
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FPU_exception(FPU_EX_Stack_Overflow);
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/* The masked response */
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if (BX_CPU_THIS_PTR the_i387.is_IA_masked())
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{
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BX_WRITE_FPU_REG(floatx80_default_nan, 0);
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BX_CPU_THIS_PTR the_i387.FPU_push();
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BX_WRITE_FPU_REG(floatx80_default_nan, 0);
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}
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return;
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}
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extern const floatx80 Const_1;
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 y = BX_READ_FPU_REG(0);
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if (ftan(y, status) == -1)
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{
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FPU_PARTIAL_STATUS |= FPU_SW_C2;
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return;
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}
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if (floatx80_is_nan(y))
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{
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if (! FPU_exception(status.float_exception_flags))
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{
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BX_WRITE_FPU_REG(y, 0);
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BX_CPU_THIS_PTR the_i387.FPU_push();
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BX_WRITE_FPU_REG(y, 0);
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}
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return;
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}
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if (! FPU_exception(status.float_exception_flags)) {
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BX_WRITE_FPU_REG(y, 0);
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BX_CPU_THIS_PTR the_i387.FPU_push();
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BX_WRITE_FPU_REG(Const_1, 0);
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}
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}
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/* D9 F3 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FPATAN(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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if (IS_TAG_EMPTY(0) || IS_TAG_EMPTY(1))
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{
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FPU_stack_underflow(1, 1 /* pop_stack */);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 result = fpatan(BX_READ_FPU_REG(0), BX_READ_FPU_REG(1), status);
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if (! FPU_exception(status.float_exception_flags)) {
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BX_CPU_THIS_PTR the_i387.FPU_pop();
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BX_WRITE_FPU_REG(result, 0);
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}
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}
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/* D9 F4 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FXTRACT(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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if (IS_TAG_EMPTY(0) || ! IS_TAG_EMPTY(-1))
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{
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if(IS_TAG_EMPTY(0))
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FPU_exception(FPU_EX_Stack_Underflow);
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else
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FPU_exception(FPU_EX_Stack_Overflow);
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/* The masked response */
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if (BX_CPU_THIS_PTR the_i387.is_IA_masked())
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{
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BX_WRITE_FPU_REG(floatx80_default_nan, 0);
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BX_CPU_THIS_PTR the_i387.FPU_push();
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BX_WRITE_FPU_REG(floatx80_default_nan, 0);
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}
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word());
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floatx80 a = BX_READ_FPU_REG(0);
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floatx80 b = floatx80_extract(a, status);
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if (! FPU_exception(status.float_exception_flags)) {
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BX_WRITE_FPU_REG(b, 0); // exponent
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BX_CPU_THIS_PTR the_i387.FPU_push();
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BX_WRITE_FPU_REG(a, 0); // fraction
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}
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}
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/* D9 F5 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FPREM1(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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clear_C2();
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if (IS_TAG_EMPTY(0) || IS_TAG_EMPTY(1))
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{
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FPU_stack_underflow(0);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word());
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Bit64u quotient;
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floatx80 a = BX_READ_FPU_REG(0);
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floatx80 b = BX_READ_FPU_REG(1);
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floatx80 result;
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int flags = floatx80_ieee754_remainder(a, b, result, quotient, status);
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if (! FPU_exception(status.float_exception_flags)) {
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if (flags >= 0) {
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int cc = 0;
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if (flags) cc = FPU_SW_C2;
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else {
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if (quotient & 1) cc |= FPU_SW_C1;
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if (quotient & 2) cc |= FPU_SW_C3;
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if (quotient & 4) cc |= FPU_SW_C0;
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}
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setcc(cc);
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}
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BX_WRITE_FPU_REG(result, 0);
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}
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}
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/* D9 F8 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FPREM(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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clear_C2();
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if (IS_TAG_EMPTY(0) || IS_TAG_EMPTY(1))
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{
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FPU_stack_underflow(0);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word());
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Bit64u quotient;
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floatx80 a = BX_READ_FPU_REG(0);
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floatx80 b = BX_READ_FPU_REG(1);
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floatx80 result;
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int flags = floatx80_remainder(a, b, result, quotient, status);
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if (! FPU_exception(status.float_exception_flags)) {
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if (flags >= 0) {
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int cc = 0;
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if (flags) cc = FPU_SW_C2;
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else {
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if (quotient & 1) cc |= FPU_SW_C1;
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if (quotient & 2) cc |= FPU_SW_C3;
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if (quotient & 4) cc |= FPU_SW_C0;
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}
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setcc(cc);
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}
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BX_WRITE_FPU_REG(result, 0);
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}
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}
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/* D9 F9 */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FYL2XP1(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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if (IS_TAG_EMPTY(0) || IS_TAG_EMPTY(1))
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{
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FPU_stack_underflow(1, 1 /* pop_stack */);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 result = fyl2xp1(BX_READ_FPU_REG(0), BX_READ_FPU_REG(1), status);
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if (! FPU_exception(status.float_exception_flags)) {
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BX_CPU_THIS_PTR the_i387.FPU_pop();
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BX_WRITE_FPU_REG(result, 0);
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}
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}
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/* D9 FB */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FSINCOS(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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clear_C2();
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if (IS_TAG_EMPTY(0) || ! IS_TAG_EMPTY(-1))
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{
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if(IS_TAG_EMPTY(0))
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FPU_exception(FPU_EX_Stack_Underflow);
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else
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FPU_exception(FPU_EX_Stack_Overflow);
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/* The masked response */
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if (BX_CPU_THIS_PTR the_i387.is_IA_masked())
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{
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BX_WRITE_FPU_REG(floatx80_default_nan, 0);
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BX_CPU_THIS_PTR the_i387.FPU_push();
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BX_WRITE_FPU_REG(floatx80_default_nan, 0);
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}
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 y = BX_READ_FPU_REG(0);
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floatx80 sin_y, cos_y;
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if (fsincos(y, &sin_y, &cos_y, status) == -1)
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{
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FPU_PARTIAL_STATUS |= FPU_SW_C2;
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return;
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}
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if (! FPU_exception(status.float_exception_flags)) {
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BX_WRITE_FPU_REG(sin_y, 0);
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BX_CPU_THIS_PTR the_i387.FPU_push();
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BX_WRITE_FPU_REG(cos_y, 0);
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}
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}
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/* D9 FD */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FSCALE(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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if (IS_TAG_EMPTY(0) || IS_TAG_EMPTY(1))
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{
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FPU_stack_underflow(0);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word());
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floatx80 result = floatx80_scale(BX_READ_FPU_REG(0), BX_READ_FPU_REG(1), status);
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if (! FPU_exception(status.float_exception_flags))
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BX_WRITE_FPU_REG(result, 0);
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}
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/* D9 FE */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FSIN(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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clear_C2();
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if (IS_TAG_EMPTY(0)) {
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FPU_stack_underflow(0);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 y = BX_READ_FPU_REG(0);
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if (fsin(y, status) == -1)
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{
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FPU_PARTIAL_STATUS |= FPU_SW_C2;
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return;
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}
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if (! FPU_exception(status.float_exception_flags))
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BX_WRITE_FPU_REG(y, 0);
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}
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/* D9 FF */
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void BX_CPP_AttrRegparmN(1) BX_CPU_C::FCOS(bxInstruction_c *i)
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{
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BX_CPU_THIS_PTR prepareFPU(i);
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BX_CPU_THIS_PTR FPU_update_last_instruction(i);
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clear_C1();
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clear_C2();
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if (IS_TAG_EMPTY(0)) {
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FPU_stack_underflow(0);
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return;
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}
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float_status_t status =
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FPU_pre_exception_handling(BX_CPU_THIS_PTR the_i387.get_control_word() | FPU_PR_80_BITS);
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floatx80 y = BX_READ_FPU_REG(0);
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if (fcos(y, status) == -1)
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{
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FPU_PARTIAL_STATUS |= FPU_SW_C2;
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return;
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}
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if (! FPU_exception(status.float_exception_flags))
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BX_WRITE_FPU_REG(y, 0);
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}
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#endif
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