@ -2,7 +2,7 @@
THIS FILE IS MACHINE GENERATED WITH CGEN .
Copyright ( C ) 1996 - 2024 Free Software Foundation , Inc .
Copyright ( C ) 1996 - 2023 Free Software Foundation , Inc .
This file is part of the GNU simulators .
@ -24375,7 +24375,7 @@ frvbf_media_overflow (current_cpu, 8);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 12 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24386,7 +24386,7 @@ frvbf_media_overflow (current_cpu, 4);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 12 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24395,7 +24395,7 @@ frvbf_media_overflow (current_cpu, 4);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 12 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24581,7 +24581,7 @@ frvbf_media_overflow (current_cpu, 8);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 12 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24592,7 +24592,7 @@ frvbf_media_overflow (current_cpu, 4);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 12 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24601,7 +24601,7 @@ frvbf_media_overflow (current_cpu, 4);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 12 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24790,7 +24790,7 @@ frvbf_media_overflow (current_cpu, 8);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 14 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24801,7 +24801,7 @@ frvbf_media_overflow (current_cpu, 4);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 14 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -24810,7 +24810,7 @@ frvbf_media_overflow (current_cpu, 4);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 14 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25078,7 +25078,7 @@ frvbf_media_overflow (current_cpu, 8);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 18 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25089,7 +25089,7 @@ frvbf_media_overflow (current_cpu, 4);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 18 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25098,7 +25098,7 @@ frvbf_media_overflow (current_cpu, 4);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 18 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25118,7 +25118,7 @@ frvbf_media_overflow (current_cpu, 4);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 2 ) , opval ) ;
written | = ( 1 < < 19 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25129,7 +25129,7 @@ frvbf_media_overflow (current_cpu, 2);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 2 ) , opval ) ;
written | = ( 1 < < 19 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25138,7 +25138,7 @@ frvbf_media_overflow (current_cpu, 2);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 2 ) , opval ) ;
written | = ( 1 < < 19 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25152,7 +25152,7 @@ frvbf_media_overflow (current_cpu, 2);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 3 ) , opval ) ;
written | = ( 1 < < 20 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25163,7 +25163,7 @@ frvbf_media_overflow (current_cpu, 1);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 3 ) , opval ) ;
written | = ( 1 < < 20 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25172,7 +25172,7 @@ frvbf_media_overflow (current_cpu, 1);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 3 ) , opval ) ;
written | = ( 1 < < 20 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25443,7 +25443,7 @@ frvbf_media_overflow (current_cpu, 8);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 20 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25454,7 +25454,7 @@ frvbf_media_overflow (current_cpu, 4);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 20 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25463,7 +25463,7 @@ frvbf_media_overflow (current_cpu, 4);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 1 ) , opval ) ;
written | = ( 1 < < 20 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25483,7 +25483,7 @@ frvbf_media_overflow (current_cpu, 4);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 2 ) , opval ) ;
written | = ( 1 < < 21 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25494,7 +25494,7 @@ frvbf_media_overflow (current_cpu, 2);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 2 ) , opval ) ;
written | = ( 1 < < 21 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25503,7 +25503,7 @@ frvbf_media_overflow (current_cpu, 2);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 2 ) , opval ) ;
written | = ( 1 < < 21 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25517,7 +25517,7 @@ frvbf_media_overflow (current_cpu, 2);
if ( GTDI ( tmp_tmp , MAKEDI ( 255 , 0xffffffff ) ) ) {
{
{
U DI opval = MAKEDI ( 255 , 0xffffffff ) ;
DI opval = MAKEDI ( 255 , 0xffffffff ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 3 ) , opval ) ;
written | = ( 1 < < 22 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25528,7 +25528,7 @@ frvbf_media_overflow (current_cpu, 1);
if ( LTDI ( tmp_tmp , MAKEDI ( 0 , 0 ) ) ) {
{
{
U DI opval = MAKEDI ( 0 , 0 ) ;
DI opval = MAKEDI ( 0 , 0 ) ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 3 ) , opval ) ;
written | = ( 1 < < 22 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;
@ -25537,7 +25537,7 @@ frvbf_media_overflow (current_cpu, 1);
}
} else {
{
U DI opval = tmp_tmp ;
DI opval = tmp_tmp ;
sim_queue_fn_di_write ( current_cpu , frvbf_h_acc40U_set , ADDSI ( FLD ( f_ACC40Uk ) , 3 ) , opval ) ;
written | = ( 1 < < 22 ) ;
CGEN_TRACE_RESULT ( current_cpu , abuf , " acc40U " , ' D ' , opval ) ;