}
/* Should be called after any operation that may raise IEEE exceptions. */
-static void handle_exceptions(CPUS390XState *env, uintptr_t retaddr)
+static void handle_exceptions(CPUS390XState *env, bool XxC, uintptr_t retaddr)
{
unsigned s390_exc, qemu_exc;
}
/* inexact handling */
- if (s390_exc & S390_IEEE_MASK_INEXACT) {
+ if (s390_exc & S390_IEEE_MASK_INEXACT && !XxC) {
/* trap condition - overflow/underflow _not_ reported along */
if (s390_exc & S390_IEEE_MASK_INEXACT & env->fpc >> 24) {
tcg_s390_data_exception(env, s390_exc & S390_IEEE_MASK_INEXACT,
uint64_t HELPER(aeb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float32 ret = float32_add(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(adb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float64 ret = float64_add(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float128 ret = float128_add(make_float128(ah, al),
make_float128(bh, bl),
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
uint64_t HELPER(seb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float32 ret = float32_sub(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(sdb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float64 ret = float64_sub(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float128 ret = float128_sub(make_float128(ah, al),
make_float128(bh, bl),
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
uint64_t HELPER(deb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float32 ret = float32_div(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(ddb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float64 ret = float64_div(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float128 ret = float128_div(make_float128(ah, al),
make_float128(bh, bl),
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
uint64_t HELPER(meeb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float32 ret = float32_mul(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(mdb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
float64 ret = float64_mul(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
{
float64 ret = float32_to_float64(f2, &env->fpu_status);
ret = float64_mul(f1, ret, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float128 ret = float128_mul(make_float128(ah, al),
make_float128(bh, bl),
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
{
float128 ret = float64_to_float128(f2, &env->fpu_status);
ret = float128_mul(make_float128(ah, al), ret, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
uint64_t HELPER(ldeb)(CPUS390XState *env, uint64_t f2)
{
float64 ret = float32_to_float64(f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(ldxb)(CPUS390XState *env, uint64_t ah, uint64_t al)
{
float64 ret = float128_to_float64(make_float128(ah, al), &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(lxdb)(CPUS390XState *env, uint64_t f2)
{
float128 ret = float64_to_float128(f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
uint64_t HELPER(lxeb)(CPUS390XState *env, uint64_t f2)
{
float128 ret = float32_to_float128(f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
uint64_t HELPER(ledb)(CPUS390XState *env, uint64_t f2)
{
float32 ret = float64_to_float32(f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(lexb)(CPUS390XState *env, uint64_t ah, uint64_t al)
{
float32 ret = float128_to_float32(make_float128(ah, al), &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint32_t HELPER(ceb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
int cmp = float32_compare_quiet(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return float_comp_to_cc(env, cmp);
}
uint32_t HELPER(cdb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
int cmp = float64_compare_quiet(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return float_comp_to_cc(env, cmp);
}
int cmp = float128_compare_quiet(make_float128(ah, al),
make_float128(bh, bl),
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return float_comp_to_cc(env, cmp);
}
float32 ret = int64_to_float32(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float64 ret = int64_to_float64(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float128 ret = int64_to_float128(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
float32 ret = uint64_to_float32(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float64 ret = uint64_to_float64(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float128 ret = uint64_to_float128(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
int64_t ret = float32_to_int64(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
int64_t ret = float64_to_int64(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
int64_t ret = float128_to_int64(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
int32_t ret = float32_to_int32(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
int32_t ret = float64_to_int32(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
int32_t ret = float128_to_int32(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
v2 = float32_to_float64(v2, &env->fpu_status);
ret = float64_to_uint64(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t ret = float64_to_uint64(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t ret = float128_to_uint64(make_float128(h, l), &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint32_t ret = float32_to_uint32(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint32_t ret = float64_to_uint32(v2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint32_t ret = float128_to_uint32(make_float128(h, l), &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float32 ret = float32_round_to_int(f2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
float64 ret = float64_round_to_int(f2, &env->fpu_status);
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(fixb)(CPUS390XState *env, uint64_t ah, uint64_t al, uint32_t m3)
{
int old_mode = s390_swap_bfp_rounding_mode(env, m3);
-
float128 ret = float128_round_to_int(make_float128(ah, al),
&env->fpu_status);
+
s390_restore_bfp_rounding_mode(env, old_mode);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}
uint32_t HELPER(keb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
int cmp = float32_compare(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return float_comp_to_cc(env, cmp);
}
uint32_t HELPER(kdb)(CPUS390XState *env, uint64_t f1, uint64_t f2)
{
int cmp = float64_compare(f1, f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return float_comp_to_cc(env, cmp);
}
int cmp = float128_compare(make_float128(ah, al),
make_float128(bh, bl),
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return float_comp_to_cc(env, cmp);
}
uint64_t f2, uint64_t f3)
{
float32 ret = float32_muladd(f2, f3, f1, 0, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t f2, uint64_t f3)
{
float64 ret = float64_muladd(f2, f3, f1, 0, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
{
float32 ret = float32_muladd(f2, f3, f1, float_muladd_negate_c,
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
{
float64 ret = float64_muladd(f2, f3, f1, float_muladd_negate_c,
&env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(sqeb)(CPUS390XState *env, uint64_t f2)
{
float32 ret = float32_sqrt(f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(sqdb)(CPUS390XState *env, uint64_t f2)
{
float64 ret = float64_sqrt(f2, &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return ret;
}
uint64_t HELPER(sqxb)(CPUS390XState *env, uint64_t ah, uint64_t al)
{
float128 ret = float128_sqrt(make_float128(ah, al), &env->fpu_status);
- handle_exceptions(env, GETPC());
+ handle_exceptions(env, false, GETPC());
return RET128(ret);
}