2bbb1ef8eb
don't need it, moved the output of it into the general io functions. saves space, as well as removes the confusing output if a '\n' is left off
201 lines
4.2 KiB
C++
201 lines
4.2 KiB
C++
// Copyright (C) 2001 MandrakeSoft S.A.
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//
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// MandrakeSoft S.A.
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// 43, rue d'Aboukir
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// 75002 Paris - France
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// http://www.linux-mandrake.com/
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// http://www.mandrakesoft.com/
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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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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#define NEED_CPU_REG_SHORTCUTS 1
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#include "bochs.h"
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#define LOG_THIS BX_CPU_THIS_PTR
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void
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BX_CPU_C::MUL_ALEb(BxInstruction_t *i)
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{
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Bit8u op2, op1;
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Bit16u product_16;
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Boolean temp_flag;
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op1 = AL;
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/* op2 is a register or memory reference */
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if (i->mod == 0xc0) {
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op2 = BX_READ_8BIT_REG(i->rm);
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}
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else {
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/* pointer, segment address pair */
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read_virtual_byte(i->seg, i->rm_addr, &op2);
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}
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product_16 = op1 * op2;
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/* set EFLAGS:
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* MUL affects the following flags: C,O
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*/
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temp_flag = ((product_16 & 0xFF00) != 0);
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SET_FLAGS_OxxxxC(temp_flag, temp_flag);
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/* now write product back to destination */
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AX = product_16;
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}
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void
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BX_CPU_C::IMUL_ALEb(BxInstruction_t *i)
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{
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Bit8s op2, op1;
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Bit16s product_16;
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Bit16u upper_bits;
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op1 = AL;
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/* op2 is a register or memory reference */
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if (i->mod == 0xc0) {
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op2 = BX_READ_8BIT_REG(i->rm);
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}
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else {
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/* pointer, segment address pair */
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read_virtual_byte(i->seg, i->rm_addr, (Bit8u *) &op2);
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}
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product_16 = op1 * op2;
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/* now write product back to destination */
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AX = product_16;
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/* set EFLAGS:
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* IMUL affects the following flags: C,O
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* IMUL r/m8: condition for clearing CF & OF:
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* AL = sign-extend of AL to 16 bits
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*/
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upper_bits = AX & 0xff80;
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if (upper_bits==0xff80 || upper_bits==0x0000) {
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SET_FLAGS_OxxxxC(0, 0);
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}
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else {
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SET_FLAGS_OxxxxC(1, 1);
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}
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}
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void
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BX_CPU_C::DIV_ALEb(BxInstruction_t *i)
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{
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Bit8u op2, quotient_8l, remainder_8;
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Bit16u quotient_16, op1;
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op1 = AX;
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/* op2 is a register or memory reference */
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if (i->mod == 0xc0) {
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op2 = BX_READ_8BIT_REG(i->rm);
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}
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else {
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/* pointer, segment address pair */
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read_virtual_byte(i->seg, i->rm_addr, &op2);
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}
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if (op2 == 0) {
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exception(BX_DE_EXCEPTION, 0, 0);
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}
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quotient_16 = op1 / op2;
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remainder_8 = op1 % op2;
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quotient_8l = quotient_16 & 0xFF;
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if (quotient_16 != quotient_8l) {
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exception(BX_DE_EXCEPTION, 0, 0);
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}
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/* set EFLAGS:
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* DIV affects the following flags: O,S,Z,A,P,C are undefined
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*/
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#if INTEL_DIV_FLAG_BUG == 1
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set_CF(1);
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#endif
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/* now write quotient back to destination */
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AL = quotient_8l;
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AH = remainder_8;
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}
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void
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BX_CPU_C::IDIV_ALEb(BxInstruction_t *i)
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{
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Bit8s op2, quotient_8l, remainder_8;
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Bit16s quotient_16, op1;
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op1 = AX;
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/* op2 is a register or memory reference */
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if (i->mod == 0xc0) {
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op2 = BX_READ_8BIT_REG(i->rm);
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}
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else {
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/* pointer, segment address pair */
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read_virtual_byte(i->seg, i->rm_addr, (Bit8u *) &op2);
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}
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if (op2 == 0) {
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exception(BX_DE_EXCEPTION, 0, 0);
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}
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quotient_16 = op1 / op2;
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remainder_8 = op1 % op2;
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quotient_8l = quotient_16 & 0xFF;
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if (quotient_16 != quotient_8l) {
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BX_INFO(("quotient_16: %04x, remainder_8: %02x, quotient_8l: %02x",
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(unsigned) quotient_16, (unsigned) remainder_8, (unsigned) quotient_8l));
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AL = quotient_8l;
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AH = remainder_8;
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BX_INFO(("AH: %02x, AL: %02x", (unsigned) AH, (unsigned) AL));
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exception(BX_DE_EXCEPTION, 0, 0);
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}
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/* set EFLAGS:
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* DIV affects the following flags: O,S,Z,A,P,C are undefined
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*/
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#if INTEL_DIV_FLAG_BUG == 1
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set_CF(1);
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#endif
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/* now write quotient back to destination */
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AL = quotient_8l;
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AH = remainder_8;
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}
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