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[/] [openrisc/] [trunk/] [or1ksim/] [testsuite/] [test-code-or1k/] [inst-set-test/] [is-div-test.S] - Rev 590

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/* is-div-test.S. l.div and l.divu instruction test of Or1ksim
 * 
 * Copyright (C) 1999-2006 OpenCores
 * Copyright (C) 2010 Embecosm Limited
 * 
 * Contributors various OpenCores participants
 * Contributor Jeremy Bennett <jeremy.bennett@embecosm.com>
 * 
 * This file is part of OpenRISC 1000 Architectural Simulator.
 * 
 * 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 3 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, see <http:  www.gnu.org/licenses/>.
 */

/* ----------------------------------------------------------------------------
 * Coding conventions are described in inst-set-test.S
 * ------------------------------------------------------------------------- */

/* ----------------------------------------------------------------------------
 * Test coverage
 *
 * The l.div and l.divu instructions should set the carry flag as well as
 * triggering an event when divide by zero occurs.
 *
 * Having fixed the problem, this is (in good software engineering style), a
 * regresison test to go with the fix.
 *
 * This is not a comprehensive test of either instruction (yet).
 *
 * Of course what is really needed is a comprehensive instruction test...
 * ------------------------------------------------------------------------- */


#include "inst-set-test.h"

/* ----------------------------------------------------------------------------
 * A macro to carry out a test of divide signed or unsigned
 *
 * Arguments
 *   opc:       The opcode
 *   op1:       First operand value
 *   op2:       Second operand value
 *   res:       Expected result
 *   cy:        Expected carry flag
 *   ov:        Expected overflow flag
 * ------------------------------------------------------------------------- */
#define TEST_DIV(opc, op1, op2, res, cy, ov)                             \
        l.mfspr r3,r0,SPR_SR                                            ;\
        LOAD_CONST (r2, ~(SPR_SR_CY | SPR_SR_OV))                       ;\
        l.and   r3,r3,r2                /* Clear flags */               ;\
        l.mtspr r0,r3,SPR_SR                                            ;\
                                                                        ;\
        l.or    r4,r0,r0                /* Clear result reg */          ;\
        LOAD_CONST (r5,op1)             /* Load numbers to add */       ;\
        LOAD_CONST (r6,op2)                                             ;\
        l.mtspr r0,r0,SPR_EPCR_BASE     /* Clear record */              ;\
50:     opc     r4,r5,r6                                                ;\
        l.mfspr r2,r0,SPR_SR            /* So we can examine flags */   ;\
        l.mfspr r5,r0,SPR_EPCR_BASE     /* What triggered exception */  ;\
        PUSH (r5)                       /* Save EPCR for later */       ;\
        PUSH (r2)                       /* Save SR for later */         ;\
        PUSH (r4)                       /* Save result for later */     ;\
                                                                        ;\
        PUTS ("  0x")                                                   ;\
        PUTH (op1)                                                      ;\
        PUTS (" / 0x")                                                  ;\
        PUTH (op2)                                                      ;\
        PUTS (" = 0x")                                                  ;\
        PUTH (res)                                                      ;\
        PUTS (": ")                                                     ;\
        POP (r4)                                                        ;\
        CHECK_RES1 (r4, res)                                            ;\
                                                                        ;\
        POP (r2)                        /* Retrieve SR */               ;\
        PUSH (r2)                                                       ;\
        LOAD_CONST (r4, SPR_SR_CY)      /* The carry bit */             ;\
        l.and   r2,r2,r4                                                ;\
        l.sfeq  r2,r4                                                   ;\
        CHECK_FLAG ("- carry flag set:      ", cy)                      ;\
                                                                        ;\
        POP (r2)                        /* Retrieve SR */               ;\
        LOAD_CONST (r4, SPR_SR_OV)      /* The overflow bit */          ;\
        l.and   r2,r2,r4                                                ;\
        l.sfeq  r2,r4                                                   ;\
        CHECK_FLAG ("- overflow flag set:   ", ov)                      ;\
                                                                        ;\
        POP (r2)                        /* Retrieve EPCR */             ;\
        LOAD_CONST (r4, 50b)            /* The opcode of interest */    ;\
        l.and   r2,r2,r4                                                ;\
        l.sfeq  r2,r4                                                   ;\
        l.bnf   51f                                                     ;\
                                                                        ;\
        PUTS ("  - exception triggered: TRUE\n")                        ;\
        l.j     52f                                                     ;\
        l.nop                                                           ;\
                                                                        ;\
51:     PUTS ("  - exception triggered: FALSE\n")                       ;\
52:     
        
        
/* ----------------------------------------------------------------------------
 * Start of code
 * ------------------------------------------------------------------------- */
        .section .text
        .global _start
_start:
        l.mfspr r3,r0,SPR_SR
        LOAD_CONST (r2, ~SPR_SR_OVE)    /* Clear OVE */
        l.and   r3,r3,r2
        l.mtspr r0,r3,SPR_SR
        
        LOAD_STR (r3, "  ** OVE flag cleared **\n")
        l.jal   _puts
        l.nop

/* ----------------------------------------------------------------------------
 * Test of divide signed, l.div
 * ------------------------------------------------------------------------- */
_div:   
        LOAD_STR (r3, "l.div\n")
        l.jal   _puts
        l.nop

        /* Divide two positive numbers and check rounding. Should set no
           flags. */
        TEST_DIV (l.div, 0x0000000c, 0x00000003,
                  0x00000004, FALSE, FALSE)

        TEST_DIV (l.div, 0x0000000b, 0x00000003,
                  0x00000003, FALSE, FALSE)

        /* Divide two negative numbers and check rounding. Should set no
           flags. */
        TEST_DIV (l.div, 0xfffffff4, 0xfffffffd,
                  0x00000004, FALSE, FALSE)

        TEST_DIV (l.div, 0xfffffff5, 0xfffffffd,
                  0x00000003, FALSE, FALSE)

        /* Divide a negative number by a positive number and check
           rounding. Should set no flags. */
        TEST_DIV (l.div, 0xfffffff4, 0x00000003,
                  0xfffffffc, FALSE, FALSE)

        TEST_DIV (l.div, 0xfffffff5, 0x00000003,
                  0xfffffffd, FALSE, FALSE)

        /* Divide a positive number by a negative number and check
           rounding. Should set no flags. */
        TEST_DIV (l.div, 0x0000000c, 0xfffffffd,
                  0xfffffffc, FALSE, FALSE)

        TEST_DIV (l.div, 0x0000000b, 0xfffffffd,
                  0xfffffffd, FALSE, FALSE)

        /* Divide by zero. Should set the overflow flag. */
        TEST_DIV (l.div, 0x0000000c, 0x00000000,
                  0x00000000, TRUE, FALSE)
        
        TEST_DIV (l.div, 0xfffffff4, 0x00000000,
                  0x00000000, TRUE, FALSE)

        /* Check that range exceptions are triggered */
        l.mfspr r3,r0,SPR_SR
        LOAD_CONST (r2, SPR_SR_OVE)     /* Set OVE */
        l.or    r3,r3,r2
        l.mtspr r0,r3,SPR_SR
        
        LOAD_STR (r3, "  ** OVE flag set **\n")
        l.jal   _puts
        l.nop

        /* Divide by zero. Should set the overflow flag and trigger an
           exception. */
        TEST_DIV (l.div, 0x0000000c, 0x00000000,
                  0x00000000, TRUE, FALSE)
        
        TEST_DIV (l.div, 0xfffffff4, 0x00000000,
                  0x00000000, TRUE, FALSE)

        /* Finished checking range exceptions */
        l.mfspr r3,r0,SPR_SR
        LOAD_CONST (r2, ~SPR_SR_OVE)    /* Clear OVE */
        l.and   r3,r3,r2
        l.mtspr r0,r3,SPR_SR
        
        LOAD_STR (r3, "  ** OVE flag cleared **\n")
        l.jal   _puts
        l.nop

/* ----------------------------------------------------------------------------
 * Test of divide unsigned, l.divu
 * ------------------------------------------------------------------------- */
_divu:  
        LOAD_STR (r3, "l.divu\n")
        l.jal   _puts
        l.nop

        /* Divide two positive numbers and check rounding. Should set no
           flags. */
        TEST_DIV (l.divu, 0x0000000c, 0x00000003,
                  0x00000004, FALSE, FALSE)

        TEST_DIV (l.divu, 0x0000000b, 0x00000003,
                  0x00000003, FALSE, FALSE)

        /* Divide two numbers that would be negative under 2's complement and
           check rounding. Should set no flags. */
        TEST_DIV (l.divu, 0xfffffff4, 0xfffffffd,
                  0x00000000, FALSE, FALSE)

        TEST_DIV (l.divu, 0xfffffff5, 0xfffffffd,
                  0x00000000, FALSE, FALSE)

        /* Divide a number that would be negative under 2's complement by a
           number that would be positive under 2's complement and check
           rounding. Should set no flags. */
        TEST_DIV (l.divu, 0xfffffff4, 0x00000003,
                  0x55555551, FALSE, FALSE)

        TEST_DIV (l.divu, 0xfffffff5, 0x00000003,
                  0x55555551, FALSE, FALSE)

        /* Divide a number that would be positive under 2's complement by a
           number that would be negative under 2's complement and check
           rounding. Should set no flags. */
        TEST_DIV (l.divu, 0x0000000c, 0xfffffffd,
                  0x00000000, FALSE, FALSE)

        TEST_DIV (l.divu, 0x0000000b, 0xfffffffd,
                  0x00000000, FALSE, FALSE)

        /* Divide by zero. Should set the overflow flag. */
        TEST_DIV (l.divu, 0x0000000c, 0x00000000,
                  0x00000000, TRUE, FALSE)
        
        TEST_DIV (l.divu, 0xfffffff4, 0x00000000,
                  0x00000000, TRUE, FALSE)

        /* Check that range exceptions are triggered */
        l.mfspr r3,r0,SPR_SR
        LOAD_CONST (r2, SPR_SR_OVE)     /* Set OVE */
        l.or    r3,r3,r2
        l.mtspr r0,r3,SPR_SR
        
        LOAD_STR (r3, "  ** OVE flag set **\n")
        l.jal   _puts
        l.nop

        /* Divide by zero. Should set the overflow flag and trigger an
           exception. */
        TEST_DIV (l.divu, 0x0000000c, 0x00000000,
                  0x00000000, TRUE, FALSE)
        
        TEST_DIV (l.divu, 0xfffffff4, 0x00000000,
                  0x00000000, TRUE, FALSE)

        /* Finished checking range exceptions */
        l.mfspr r3,r0,SPR_SR
        LOAD_CONST (r2, ~SPR_SR_OVE)    /* Clear OVE */
        l.and   r3,r3,r2
        l.mtspr r0,r3,SPR_SR
        
        LOAD_STR (r3, "  ** OVE flag cleared **\n")
        l.jal   _puts
        l.nop

/* ----------------------------------------------------------------------------
 * All done
 * ------------------------------------------------------------------------- */
_exit:
        LOAD_STR (r3, "Test completed\n")
        l.jal   _puts
        l.nop

        TEST_EXIT

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