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-rw-r--r--target/arm/helper.c56
1 files changed, 54 insertions, 2 deletions
diff --git a/target/arm/helper.c b/target/arm/helper.c
index e6f37e160f..cfcad97ce0 100644
--- a/target/arm/helper.c
+++ b/target/arm/helper.c
@@ -6098,6 +6098,32 @@ int sme_exception_el(CPUARMState *env, int el)
return 0;
}
+/* This corresponds to the ARM pseudocode function IsFullA64Enabled(). */
+static bool sme_fa64(CPUARMState *env, int el)
+{
+ if (!cpu_isar_feature(aa64_sme_fa64, env_archcpu(env))) {
+ return false;
+ }
+
+ if (el <= 1 && !el_is_in_host(env, el)) {
+ if (!FIELD_EX64(env->vfp.smcr_el[1], SMCR, FA64)) {
+ return false;
+ }
+ }
+ if (el <= 2 && arm_is_el2_enabled(env)) {
+ if (!FIELD_EX64(env->vfp.smcr_el[2], SMCR, FA64)) {
+ return false;
+ }
+ }
+ if (arm_feature(env, ARM_FEATURE_EL3)) {
+ if (!FIELD_EX64(env->vfp.smcr_el[3], SMCR, FA64)) {
+ return false;
+ }
+ }
+
+ return true;
+}
+
/*
* Given that SVE is enabled, return the vector length for EL.
*/
@@ -10801,6 +10827,20 @@ static CPUARMTBFlags rebuild_hflags_a32(CPUARMState *env, int fp_el,
DP_TBFLAG_ANY(flags, PSTATE__IL, 1);
}
+ /*
+ * The SME exception we are testing for is raised via
+ * AArch64.CheckFPAdvSIMDEnabled(), as called from
+ * AArch32.CheckAdvSIMDOrFPEnabled().
+ */
+ if (el == 0
+ && FIELD_EX64(env->svcr, SVCR, SM)
+ && (!arm_is_el2_enabled(env)
+ || (arm_el_is_aa64(env, 2) && !(env->cp15.hcr_el2 & HCR_TGE)))
+ && arm_el_is_aa64(env, 1)
+ && !sme_fa64(env, el)) {
+ DP_TBFLAG_A32(flags, SME_TRAP_NONSTREAMING, 1);
+ }
+
return rebuild_hflags_common_32(env, fp_el, mmu_idx, flags);
}
@@ -10850,6 +10890,7 @@ static CPUARMTBFlags rebuild_hflags_a64(CPUARMState *env, int el, int fp_el,
}
if (FIELD_EX64(env->svcr, SVCR, SM)) {
DP_TBFLAG_A64(flags, PSTATE_SM, 1);
+ DP_TBFLAG_A64(flags, SME_TRAP_NONSTREAMING, !sme_fa64(env, el));
}
DP_TBFLAG_A64(flags, PSTATE_ZA, FIELD_EX64(env->svcr, SVCR, ZA));
}
@@ -11201,6 +11242,19 @@ void aarch64_sve_change_el(CPUARMState *env, int old_el,
return;
}
+ old_a64 = old_el ? arm_el_is_aa64(env, old_el) : el0_a64;
+ new_a64 = new_el ? arm_el_is_aa64(env, new_el) : el0_a64;
+
+ /*
+ * Both AArch64.TakeException and AArch64.ExceptionReturn
+ * invoke ResetSVEState when taking an exception from, or
+ * returning to, AArch32 state when PSTATE.SM is enabled.
+ */
+ if (old_a64 != new_a64 && FIELD_EX64(env->svcr, SVCR, SM)) {
+ arm_reset_sve_state(env);
+ return;
+ }
+
/*
* DDI0584A.d sec 3.2: "If SVE instructions are disabled or trapped
* at ELx, or not available because the EL is in AArch32 state, then
@@ -11213,10 +11267,8 @@ void aarch64_sve_change_el(CPUARMState *env, int old_el,
* we already have the correct register contents when encountering the
* vq0->vq0 transition between EL0->EL1.
*/
- old_a64 = old_el ? arm_el_is_aa64(env, old_el) : el0_a64;
old_len = (old_a64 && !sve_exception_el(env, old_el)
? sve_vqm1_for_el(env, old_el) : 0);
- new_a64 = new_el ? arm_el_is_aa64(env, new_el) : el0_a64;
new_len = (new_a64 && !sve_exception_el(env, new_el)
? sve_vqm1_for_el(env, new_el) : 0);