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authorRichard Henderson <richard.henderson@linaro.org>2020-02-24 14:22:23 -0800
committerPeter Maydell <peter.maydell@linaro.org>2020-02-28 16:14:57 +0000
commit82f6abe16b9b951180657c5fe15942d5214aa12e (patch)
treee4e96347860c984a58789324571d5a42ce54eb7e /target/arm
parent84774cc37f2c17e48a4867a8e8e055deb23bea69 (diff)
downloadqemu-82f6abe16b9b951180657c5fe15942d5214aa12e.zip
target/arm: Add missing checks for fpsp_v2
We will eventually remove the early ARM_FEATURE_VFP test, so add a proper test for each trans_* that does not already have another ISA test. Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Signed-off-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20200224222232.13807-9-richard.henderson@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
Diffstat (limited to 'target/arm')
-rw-r--r--target/arm/translate-vfp.inc.c78
1 files changed, 69 insertions, 9 deletions
diff --git a/target/arm/translate-vfp.inc.c b/target/arm/translate-vfp.inc.c
index 51d46f4302..f88a95438f 100644
--- a/target/arm/translate-vfp.inc.c
+++ b/target/arm/translate-vfp.inc.c
@@ -555,6 +555,13 @@ static bool trans_VMOV_to_gp(DisasContext *s, arg_VMOV_to_gp *a)
int pass;
uint32_t offset;
+ /* SIZE == 2 is a VFP instruction; otherwise NEON. */
+ if (a->size == 2
+ ? !dc_isar_feature(aa32_fpsp_v2, s)
+ : !arm_dc_feature(s, ARM_FEATURE_NEON)) {
+ return false;
+ }
+
/* UNDEF accesses to D16-D31 if they don't exist */
if (!dc_isar_feature(aa32_simd_r32, s) && (a->vn & 0x10)) {
return false;
@@ -564,10 +571,6 @@ static bool trans_VMOV_to_gp(DisasContext *s, arg_VMOV_to_gp *a)
pass = extract32(offset, 2, 1);
offset = extract32(offset, 0, 2) * 8;
- if (a->size != 2 && !arm_dc_feature(s, ARM_FEATURE_NEON)) {
- return false;
- }
-
if (!vfp_access_check(s)) {
return true;
}
@@ -614,6 +617,13 @@ static bool trans_VMOV_from_gp(DisasContext *s, arg_VMOV_from_gp *a)
int pass;
uint32_t offset;
+ /* SIZE == 2 is a VFP instruction; otherwise NEON. */
+ if (a->size == 2
+ ? !dc_isar_feature(aa32_fpsp_v2, s)
+ : !arm_dc_feature(s, ARM_FEATURE_NEON)) {
+ return false;
+ }
+
/* UNDEF accesses to D16-D31 if they don't exist */
if (!dc_isar_feature(aa32_simd_r32, s) && (a->vn & 0x10)) {
return false;
@@ -623,10 +633,6 @@ static bool trans_VMOV_from_gp(DisasContext *s, arg_VMOV_from_gp *a)
pass = extract32(offset, 2, 1);
offset = extract32(offset, 0, 2) * 8;
- if (a->size != 2 && !arm_dc_feature(s, ARM_FEATURE_NEON)) {
- return false;
- }
-
if (!vfp_access_check(s)) {
return true;
}
@@ -700,6 +706,10 @@ static bool trans_VMSR_VMRS(DisasContext *s, arg_VMSR_VMRS *a)
TCGv_i32 tmp;
bool ignore_vfp_enabled = false;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
if (arm_dc_feature(s, ARM_FEATURE_M)) {
/*
* The only M-profile VFP vmrs/vmsr sysreg is FPSCR.
@@ -844,6 +854,10 @@ static bool trans_VMOV_single(DisasContext *s, arg_VMOV_single *a)
{
TCGv_i32 tmp;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
if (!vfp_access_check(s)) {
return true;
}
@@ -873,6 +887,10 @@ static bool trans_VMOV_64_sp(DisasContext *s, arg_VMOV_64_sp *a)
{
TCGv_i32 tmp;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
/*
* VMOV between two general-purpose registers and two single precision
* floating point registers
@@ -908,8 +926,12 @@ static bool trans_VMOV_64_dp(DisasContext *s, arg_VMOV_64_dp *a)
/*
* VMOV between two general-purpose registers and one double precision
- * floating point register
+ * floating point register. Note that this does not require support
+ * for double precision arithmetic.
*/
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
/* UNDEF accesses to D16-D31 if they don't exist */
if (!dc_isar_feature(aa32_simd_r32, s) && (a->vm & 0x10)) {
@@ -946,6 +968,10 @@ static bool trans_VLDR_VSTR_sp(DisasContext *s, arg_VLDR_VSTR_sp *a)
uint32_t offset;
TCGv_i32 addr, tmp;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
if (!vfp_access_check(s)) {
return true;
}
@@ -977,6 +1003,11 @@ static bool trans_VLDR_VSTR_dp(DisasContext *s, arg_VLDR_VSTR_dp *a)
TCGv_i32 addr;
TCGv_i64 tmp;
+ /* Note that this does not require support for double arithmetic. */
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
/* UNDEF accesses to D16-D31 if they don't exist */
if (!dc_isar_feature(aa32_simd_r32, s) && (a->vd & 0x10)) {
return false;
@@ -1013,6 +1044,10 @@ static bool trans_VLDM_VSTM_sp(DisasContext *s, arg_VLDM_VSTM_sp *a)
TCGv_i32 addr, tmp;
int i, n;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
n = a->imm;
if (n == 0 || (a->vd + n) > 32) {
@@ -1086,6 +1121,11 @@ static bool trans_VLDM_VSTM_dp(DisasContext *s, arg_VLDM_VSTM_dp *a)
TCGv_i64 tmp;
int i, n;
+ /* Note that this does not require support for double arithmetic. */
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
n = a->imm >> 1;
if (n == 0 || (a->vd + n) > 32 || n > 16) {
@@ -1234,6 +1274,10 @@ static bool do_vfp_3op_sp(DisasContext *s, VFPGen3OpSPFn *fn,
TCGv_i32 f0, f1, fd;
TCGv_ptr fpst;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
if (!dc_isar_feature(aa32_fpshvec, s) &&
(veclen != 0 || s->vec_stride != 0)) {
return false;
@@ -1388,6 +1432,10 @@ static bool do_vfp_2op_sp(DisasContext *s, VFPGen2OpSPFn *fn, int vd, int vm)
int veclen = s->vec_len;
TCGv_i32 f0, fd;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
if (!dc_isar_feature(aa32_fpshvec, s) &&
(veclen != 0 || s->vec_stride != 0)) {
return false;
@@ -2023,6 +2071,10 @@ static bool trans_VCMP_sp(DisasContext *s, arg_VCMP_sp *a)
{
TCGv_i32 vd, vm;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
/* Vm/M bits must be zero for the Z variant */
if (a->z && a->vm != 0) {
return false;
@@ -2466,6 +2518,10 @@ static bool trans_VCVT_int_sp(DisasContext *s, arg_VCVT_int_sp *a)
TCGv_i32 vm;
TCGv_ptr fpst;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
if (!vfp_access_check(s)) {
return true;
}
@@ -2684,6 +2740,10 @@ static bool trans_VCVT_sp_int(DisasContext *s, arg_VCVT_sp_int *a)
TCGv_i32 vm;
TCGv_ptr fpst;
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
+ return false;
+ }
+
if (!vfp_access_check(s)) {
return true;
}