#ifndef CONFIG_USER_ONLY
qemu_fprintf(f, " %s " TARGET_FMT_lx "\n", "mhartid ", env->mhartid);
qemu_fprintf(f, " %s " TARGET_FMT_lx "\n", "mstatus ", env->mstatus);
+#ifdef TARGET_RISCV32
+ qemu_fprintf(f, " %s " TARGET_FMT_lx "\n", "mstatush ", env->mstatush);
+#endif
if (riscv_has_ext(env, RVH)) {
qemu_fprintf(f, " %s " TARGET_FMT_lx "\n", "hstatus ", env->hstatus);
qemu_fprintf(f, " %s " TARGET_FMT_lx "\n", "vsstatus ", env->vsstatus);
target_ulong mip;
+#ifdef TARGET_RISCV32
+ target_ulong mstatush;
+#endif
+
uint32_t miclaim;
target_ulong mie;
target_ulong vscause;
target_ulong vstval;
target_ulong vsatp;
+#ifdef TARGET_RISCV32
+ target_ulong vsstatush;
+#endif
target_ulong mtval2;
target_ulong mtinst;
target_ulong stval_hs;
target_ulong satp_hs;
target_ulong mstatus_hs;
+#ifdef TARGET_RISCV32
+ target_ulong mstatush_hs;
+#endif
target_ulong scounteren;
target_ulong mcounteren;
#define CSR_MTVEC 0x305
#define CSR_MCOUNTEREN 0x306
+/* 32-bit only */
+#define CSR_MSTATUSH 0x310
+
/* Legacy Counter Setup (priv v1.9.1) */
/* Update to #define CSR_MCOUNTINHIBIT 0x320 for 1.11.0 */
#define CSR_MUCOUNTEREN 0x320
env->mstatus &= ~mstatus_mask;
env->mstatus |= env->mstatus_hs;
+#if defined(TARGET_RISCV32)
+ env->vsstatush = env->mstatush;
+ env->mstatush |= env->mstatush_hs;
+#endif
+
env->vstvec = env->stvec;
env->stvec = env->stvec_hs;
env->mstatus &= ~mstatus_mask;
env->mstatus |= env->vsstatus;
+#if defined(TARGET_RISCV32)
+ env->mstatush_hs = env->mstatush;
+ env->mstatush |= env->vsstatush;
+#endif
+
env->stvec_hs = env->stvec;
env->stvec = env->vstvec;
if (riscv_cpu_virt_enabled(env)) {
riscv_cpu_swap_hypervisor_regs(env);
}
+#ifdef TARGET_RISCV32
+ env->mstatush = set_field(env->mstatush, MSTATUS_MPV,
+ riscv_cpu_virt_enabled(env));
+ env->mstatush = set_field(env->mstatush, MSTATUS_MTL,
+ riscv_cpu_force_hs_excep_enabled(env));
+#else
env->mstatus = set_field(env->mstatus, MSTATUS_MPV,
riscv_cpu_virt_enabled(env));
env->mstatus = set_field(env->mstatus, MSTATUS_MTL,
riscv_cpu_force_hs_excep_enabled(env));
+#endif
mtval2 = env->guest_phys_fault_addr;
return 0;
}
+#ifdef TARGET_RISCV32
+static int read_mstatush(CPURISCVState *env, int csrno, target_ulong *val)
+{
+ *val = env->mstatush;
+ return 0;
+}
+
+static int write_mstatush(CPURISCVState *env, int csrno, target_ulong val)
+{
+ if ((val ^ env->mstatush) & (MSTATUS_MPV)) {
+ tlb_flush(env_cpu(env));
+ }
+
+ val &= MSTATUS_MPV | MSTATUS_MTL;
+
+ env->mstatush = val;
+
+ return 0;
+}
+#endif
+
static int read_misa(CPURISCVState *env, int csrno, target_ulong *val)
{
*val = env->misa;
[CSR_MTVEC] = { any, read_mtvec, write_mtvec },
[CSR_MCOUNTEREN] = { any, read_mcounteren, write_mcounteren },
+#if defined(TARGET_RISCV32)
+ [CSR_MSTATUSH] = { any, read_mstatush, write_mstatush },
+#endif
+
/* Legacy Counter Setup (priv v1.9.1) */
[CSR_MUCOUNTEREN] = { any, read_mucounteren, write_mucounteren },
[CSR_MSCOUNTEREN] = { any, read_mscounteren, write_mscounteren },
get_field(mstatus, MSTATUS_MPIE));
mstatus = set_field(mstatus, MSTATUS_MPIE, 1);
mstatus = set_field(mstatus, MSTATUS_MPP, PRV_U);
+#ifdef TARGET_RISCV32
+ env->mstatush = set_field(env->mstatush, MSTATUS_MPV, 0);
+#else
mstatus = set_field(mstatus, MSTATUS_MPV, 0);
+#endif
env->mstatus = mstatus;
riscv_cpu_set_mode(env, prev_priv);