File:  [Power 6/32 Unix Tahoe 4.2BSD] / cci / d / macro4 / cvld.c
Revision 1.1.1.1 (vendor branch): download - view: text, annotated - select for diffs
Sun Jul 28 12:30:56 2019 UTC (7 years ago) by root
Branches: bsd, MAIN
CVS tags: v121, HEAD
Power 6/32 Unix version 1.21


#include "fpp_defs.h"


/*****************************************************************************
*
*       CVLD - SINGLE PRECISION FLOATING POINT CONVERT LONG TO FLOAT TEST
*
*****************************************************************************/
cvld()
{
        asm(".globl _cvld_t");
        asm("_cvld_t:");                       /* entry address              */
        if( ( cycle ==1 ) && ( prt_hdrs ) )    /* print headers on 1st pass  */
           writes(" CVLD");
        cvld_1();                              /* load through a register    */
        cvld_2();                              /* load through the cache     */
        cvld_3();                              /* register stability         */
        cvld_4();                              /* PSL stability test         */
        asm("jmp *return");                    /* return to the test monitor */
}
 


/************************************************************************
*
*               SUBTEST 1
*
************************************************************************/
cvld_1() 
{
        force_loop = FALSE;
        subtest = 1;
        index = 0;
        do 
        {
             sgl_value_2  = 0xffffffff;         /* get an initial value     */
             sgl_value_3  = 0xfff0fff0;         /* for the accumulator      */
             sgl_value_1  = cvld_1_data[index].ld;   /* get the operand     */
             dbl_expected = cvld_1_data[index].exp;  /* get expected result */
/*
 * If LOOP ON ERROR is set, this is the loop for this subtest.
 * The force loop flag is set after the first error.
*/
             asm("_cvld_1_lp1:");
             asm("movl _sgl_value_2,r4");       /* move background data     */
             asm("movl _sgl_value_3,r5");
             asm("movl _sgl_value_1,r6");       /* move the operand to r6   */
             asm("ldd r4");                     /* load the background data */
             asm("cvld r6");                    /* convert the value        */
             asm("std r8");                     /* store the result in R8   */
             if( force_loop )
                  asm("brb _cvld_1_lp1");;      /* loop on the error       */
/* 
 * end error loop - test the results
*/
             asm("movl r8,_dbl_st_acc");	/* move MSW to cache      */
             asm("movl r9,_dbl_st_acc+4");      /* move LSW to cache      */
             if(  ( dbl_st_acc.m != dbl_expected.m ) || /* COMPARE the values */
                  ( dbl_st_acc.l != dbl_expected.l ) ){
                   errcnt++;                    /* bump the error count   */
                   if( prt_error ) {
                        writes(" \n");      /* start a new print line */
                        writes("cycle: ");
                        writed( cycle );
                        writes("  CVLD test ");
			writed( test_no );
			writes(", subtest 1 (Reg. Data) - BAD FINAL ACC\n");
                        print_cvld_data();
                        writes(",   index = ");
                        writed( index );
                        writec('\n');
                        writes("    operand = ");
			write32h( sgl_value_1 );
			writes("          expected Acc = ");
                        write32h( dbl_expected.m );
                        writec(' ');
                        write32h( dbl_expected.l );
                        writec('\n');
                   }
                   if( halt_flg ) 
                        cvld_er_halt( BAD_ACC_HLT );    /* halt on the error */
                   if( loop_on_err ) {
                        force_loop = TRUE;        /* set the force loop flag */
                        asm("brw _cvld_1_lp1");;  /* and loop on the error   */
                   }   /* end of loop on error */
             }   /* end of compare error */
        } while( index++ < max_cvld_1_index );  /* end of WHILE loop */
}  /* end of subtest 1 */
 


/************************************************************************
*
*               SUBTEST 2 - convert through memory
*
************************************************************************/
cvld_2() 
{
        force_loop = FALSE;
        subtest = 2;
        index = 0;
        do 
        {
             dbl_ld_acc.m = 0xffffffff;         /* get an initial value     */
             dbl_ld_acc.l = 0xfff0fff0;         /* for the accumulator      */
             sgl_value_1  = cvld_1_data[index].ld;   /* get the operand     */
             dbl_expected = cvld_1_data[index].exp;  /* get expected result */
/*
 * If LOOP ON ERROR is set, this is the loop for this subtest.
 * The force loop flag is set after the first error.
*/
             asm("_cvld_2_lp1:");
             asm("ldd _dbl_ld_acc");            /* load the base value     */
             asm("cvld _sgl_value_1");          /* convert the value       */
             asm("std _dbl_st_acc");            /* store the result        */
             if( force_loop )
                  asm("brb _cvld_2_lp1");;      /* loop on the error       */
/* 
 * end error loop - test the results
*/
             if(  ( dbl_st_acc.m != dbl_expected.m ) || /* COMPARE the values */
                  ( dbl_st_acc.l != dbl_expected.l ) ){
                   errcnt++;                    /* bump the error count   */
                   if( prt_error ) {
                        writes(" \n");      /* start a new print line */
                        writes("cycle: ");
                        writed( cycle );
                        writes("  CVLD test ");
			writed( test_no );
			writes(", subtest 2 (Cache Data) - BAD FINAL ACC\n");
                        print_cvld_data();
                        writes(",   index = ");
                        writed( index );
                        writec('\n');
                        writes("    operand = ");
			write32h( sgl_value_1 );
			writes("          expected Acc = ");
                        write32h( dbl_expected.m );
                        writec(' ');
                        write32h( dbl_expected.l );
                        writec('\n');
                   }
                   if( halt_flg ) 
                        cvld_er_halt( BAD_ACC_HLT );    /* halt on the error */
                   if( loop_on_err ) {
                        force_loop = TRUE;        /* set the force loop flag */
                        asm("brw _cvld_2_lp1");;  /* and loop on the error   */
                   }   /* end of loop on error */
             }   /* end of compare error */
        } while( index++ < max_cvld_1_index );  /* end of WHILE loop */
}  /* end of subtest 2 */
 


/************************************************************************
*
*       SUBTEST 3 - Check for register corruption 
*
************************************************************************/
cvld_3() 
{
        force_loop = FALSE;                     /* clear force_loop flg */
        subtest = 3;
        fill_reg_buf( load_regs );              /* get patterns for regs */
        index = 0;
             dbl_ld_acc.m = 0xffffffff;         /* get an initial value     */
             dbl_ld_acc.l = 0xfff0fff0;         /* for the accumulator      */
             sgl_value_1  = cvld_1_data[index].ld;   /* get the operand     */
             dbl_expected = cvld_1_data[index].exp;  /* get expected result */
/*
 * If LOOP ON ERROR is set, this is the loop for this subtest.
 * The force loop flag is set after the first error.
*/
        asm("_cvld_3_lp1:");
        asm("ldd _dbl_ld_acc");                 /* load base value       */
        asm("loadr $0x1fff,_load_regs");        /* load regs 0 - 12      */
        asm("nop");
        asm("cvld _sgl_value_1");               /* convert the value     */
        asm("nop");
        asm("storer $0x1fff,_store_regs");      /* store regs 0 - 12 */
        asm("std _dbl_st_acc");                 /* save the accumulator  */
        if( force_loop )
             asm("brb _cvld_3_lp1");;           /* loop on the error     */
/*
 * Now compare the stored register values to those that were loaded
*/
        index2 = 0;
        while( (load_regs[index2] == store_regs[index2]) && (index2 < 13) )
             index2++;                          /* check reg values        */
        if( index2 < 13 ) {                     /* error if index2 < 13    */
             errcnt++;                          /* bump the error count    */
             if( prt_error ) {
                  writes(" \n");           /* start a new print line  */
                  writes("cycle: ");
                  writed( cycle );
                  writes("  CVLD test ");
		  writed( test_no );
	writes(", subtest 3 - A REGISTER WAS MODIFIED\n");
                  print_cvld_data();
                  writec('\n');
                  writes("    operand = ");
		  write32h( sgl_value_1 );
                  writec('\n');
                  writes("register ");          /* print the information   */
                  writed( index2 );             /*    about the corrupted  */
                  writes(" = ");                /*        register         */
                  write32h( store_regs[index2] );
                  writes(",  should be = ");
                  write32h( load_regs[index2] );
                  writec('\n');
             }
             if( halt_flg )   
                  cvld_er_halt( BAD_REG_HLT );  /* halt on the error      */
             if( loop_on_err ) {
                  force_loop = TRUE;        /* set the force loop flag */
                  asm("brw _cvld_3_lp1");;  /* and loop on the error   */
             }   /* end of loop on error */
        }  /* end of register corruption error */
}  /* end of subtest 3 */
  


/************************************************************************
*
*       SUBTEST 4 - Check for PSL corruption 
*
************************************************************************/
cvld_4() 
{
        force_loop = FALSE;                     /* clear force_loop flg */
        subtest = 4;
        fill_reg_buf( load_regs );              /* get patterns for regs */
        for( index = 0; index < 3; index++ ) {
             dbl_ld_acc.m = 0xffffffff;         /* get an initial value     */
             dbl_ld_acc.l = 0xfff0fff0;         /* for the accumulator      */
             sgl_value_1  = cvld_1_data[index].ld;   /* get the operand     */
             dbl_expected = cvld_1_data[index].exp;  /* get expected  */
             sgl_dummy1 = status_array[status_index];    /* status = +, -, 0 */
/*
 * If LOOP ON ERROR is set, this is the loop for this subtest.
 * The force loop flag is set after the first error.
*/
             asm("_cvld_4_lp1:");
             asm("ldd _dbl_ld_acc");            /* load the base value   */
             asm("tstl _sgl_dummy1");		/* set the PSL status    */
	     asm("movpsl _init_psl");		/* save the initial PSL  */
             asm("nop");
             asm("cvld _sgl_value_1");          /* convert the value     */
             asm("nop");
             asm("movpsl _psl_val");            /* save the final PSL    */
             asm("std _dbl_st_acc");            /* save the accumulator  */
             if( force_loop )
                  asm("brb _cvld_4_lp1");;      /* loop on the error     */
/*
 * Now compare the final PSL to the initial PSL -they should be the same
*/
             if( psl_val != init_psl ) {
                  errcnt++;                     /* bump the error count    */
                  if( prt_error ) {
                       writes(" \n");      /* start a new print line  */
                       writes("cycle: ");
                       writed( cycle );
                       writes("  CVLD test ");
		       writed( test_no );
	writes(", subtest 4 - INCORRECT FINAL PSL\n");
                       print_cvld_data();       /* print the operands      */
                       writec('\n');
                       writes("    operand = ");
		       write32h( sgl_value_1 );
                       writec('\n');
                       writes("initial PSL = ");
                       write32h( init_psl );
                       writes(",  final PSL = ");
                       write32h( psl_val );
                       writes(",  expected PSL = ");
                       write32h( psl_val );
                       writes("\n");
                  }
                  if( halt_flg )   
                       cvld_er_halt( BAD_PSL_HLT );   /* halt on the error */
                  if( loop_on_err ) {
                       force_loop = TRUE;        /* set the force loop flag */
                       asm("brw _cvld_4_lp1");;  /* and loop on the error   */
                  }   /* end of loop on error */
             }  /* end of PSL corruption error */
        }  /* end of WHILE loop */
}  /* end of subtest 4 */
  


/**************************************************************************
*
*       PRINT THE DATA AND STORE RESULTS
*
* initial Acc = xxxxxxxx xxxxxxxx,  final Acc = xxxxxxxx xxxxxxxx
**************************************************************************/
print_cvld_data()
{
        writes("initial Acc = ");
        write32h( dbl_ld_acc.m );
        writec(' ');
        write32h( dbl_ld_acc.l );
        writes(",  final Acc = ");
        write32h( dbl_st_acc.m );
        writec(' ');
        write32h( dbl_st_acc.l );
}
  


/**************************************************************************
*
*               HALT ON ERROR ROUTINE 
*
**************************************************************************/
cvld_er_halt( halt_code )
int halt_code;
{
        sgl_value_1 = dbl_ld_acc.m;
        sgl_value_2 = dbl_ld_acc.l;
        sgl_value_3 = sgl_value_1;
        sgl_value_4 = dbl_st_acc.m;
        sgl_value_5 = dbl_st_acc.l;
        sgl_dummy1 = halt_code;                 /* get the error type    */
        asm("movl _test_no,r0");                /* r0  = test number     */
        asm("movl _subtest,r1");                /* r1  = subtest number  */
        asm("movl _sgl_dummy1,r2");             /* r2  = error code      */
        asm("movl _cycle,r3");                  /* r3  = cycle count     */
        asm("movl _sgl_value_1,r4");            /* r4  = MS operand 1    */
        asm("movl _sgl_value_2,r5");            /* r5  = LS operand 1    */
        asm("movl _sgl_value_3,r6");            /* r6  = operand 2       */
        asm("movl _sgl_value_4,r7");            /* r7  = MS stored       */
        asm("movl _sgl_value_5,r8");            /* r8  = LS stored       */
        if( halt_code == BAD_ACC_HLT ) {
             sgl_value_1 = dbl_expected.m;
             sgl_value_2 = dbl_expected.l;
             asm("movl _sgl_value_1,r9");       /* r9  = MS expected     */
             asm("movl _sgl_value_2,r10");      /* r10 = LS expected     */
             asm("movl _index2,r11");           /* r11 = data index      */
        } else 
          if( halt_code == BAD_REG_HLT ) {
             sgl_dummy1 = load_regs[index2];
             sgl_dummy2 = store_regs[index2];
             asm("movl _index2,r9");            /* r9  = bad register #  */
             asm("movl _sgl_dummy2,r10");       /* r10 = actual value    */
             asm("movl _sgl_dummy1,r11");       /* r11 = expected value  */
        } else
          if( halt_code == BAD_PSL_HLT ) {
             asm("movl _init_psl,r9");          /* r9  = initial PSL     */
             asm("movl _psl_val,r10");          /* r10 = final PSL       */
             asm("movl _exp_psl,r11");          /* r11 = expected PSL    */
        };
        asm("halt");                            /* HALT ...              */
}  

unix.superglobalmegacorp.com

This archive runs on limited infrastructure. Preserving old code on modern bandwidth. Automated agents are requested to crawl responsibly.