/* * DSLL.java * * 24th may 2006 * Instruction DSLL of the MIPS64 Instruction Set * (c) 2006 EduMips64 project - Trubia Massimo, Russo Daniele * * This file is part of the EduMIPS64 project, and is released under the GNU * General Public License. * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */ package org.edumips64.core.is; import org.edumips64.core.*; import org.edumips64.utils.*; /** * <pre> * Syntax: DSLL rd, rt, sa Doubleword shift left logical * Description: To execute a left-shift of a doubleword by a fixed amount—0 to 31 bits * The 64-bit doubleword contents of GPR rt are shifted left, * inserting zeros into the emptied bits; the result is placed in GPR rd. * The bit-shift amount in the range 0 to 31 is specified by sa. *</pre> * @author Trubia Massimo, Russo Daniele */ public class DSLL extends ALU_RType { final int RD_FIELD = 0; final int RT_FIELD = 1; final int SA_FIELD = 2; final int RD_FIELD_INIT = 16; final int RT_FIELD_INIT = 11; final int SA_FIELD_INIT = 21; final int RD_FIELD_LENGTH = 5; final int RT_FIELD_LENGTH = 5; final int SA_FIELD_LENGTH = 5; final String OPCODE_VALUE = "111000"; DSLL() { super.OPCODE_VALUE = OPCODE_VALUE; name = "DSLL"; syntax = "%R,%R,%U"; } //since this operation is carried out writing sa value as unsigned value, it is necessary //the overriding of ID method public void ID() throws RAWException, IrregularWriteOperationException { //if the source register is valid passing his own value into a temporary register Register rt = cpu.getRegister(params.get(RT_FIELD)); if (rt.getWriteSemaphore() > 0) { throw new RAWException(); } TR[RT_FIELD] = rt; //writing on a temporary register the sa field as unsigned value TR[SA_FIELD].writeDoubleWord(params.get(SA_FIELD)); //increment the semaphore of the destination register Register rd = cpu.getRegister(params.get(RD_FIELD)); rd.incrWriteSemaphore(); } public void EX() throws IrregularStringOfBitsException, IntegerOverflowException, TwosComplementSumException { //getting strings from temporary registers int sa = (int) TR[SA_FIELD].getValue(); String rt = TR[RT_FIELD].getBinString(); //composing new shifted value StringBuffer sb = new StringBuffer(); sb.append(rt.substring(sa)); for (int i = 0; i < sa; i++) { sb.append('0'); } TR[RD_FIELD].setBits(sb.substring(0), 0); if (cpu.isEnableForwarding()) { doWB(); } } public void pack() throws IrregularStringOfBitsException { //conversion of instruction parameters of "params" list to the "repr" form (32 binary value) repr.setBits(OPCODE_VALUE, OPCODE_VALUE_INIT); repr.setBits(Converter.intToBin(SA_FIELD_LENGTH, params.get(SA_FIELD)), SA_FIELD_INIT); repr.setBits(Converter.intToBin(RT_FIELD_LENGTH, params.get(RT_FIELD)), RT_FIELD_INIT); repr.setBits(Converter.intToBin(RD_FIELD_LENGTH, params.get(RD_FIELD)), RD_FIELD_INIT); } }