uint64_t vaddr_in = (uint64_t) value;
uint64_t vaddr = vaddr_in & ~(dline_size - 1);
void *haddr;
- int mem_idx = cpu_mmu_index(env, false);
+ int mem_idx = arm_env_mmu_index(env);
/* This won't be crossing page boundaries */
haddr = probe_read(env, vaddr, dline_size, mem_idx, GETPC());
#define BANK_HYP 6
#define BANK_MON 7
+static inline int arm_env_mmu_index(CPUARMState *env)
+{
+ return EX_TBFLAG_ANY(env->hflags, MMUIDX);
+}
+
static inline bool excp_is_internal(int excp)
{
/* Return true if this exception number represents a QEMU-internal
tbii = EX_TBFLAG_A64(env->hflags, TBII);
if ((tbii >> extract64(new_pc, 55, 1)) & 1) {
/* TBI is enabled. */
- int core_mmu_idx = cpu_mmu_index(env, false);
+ int core_mmu_idx = arm_env_mmu_index(env);
if (regime_has_2_ranges(core_to_aa64_mmu_idx(core_mmu_idx))) {
new_pc = sextract64(new_pc, 0, 56);
} else {
*/
int blocklen = 4 << env_archcpu(env)->dcz_blocksize;
uint64_t vaddr = vaddr_in & ~(blocklen - 1);
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
void *mem;
/*
uint64_t HELPER(ldg)(CPUARMState *env, uint64_t ptr, uint64_t xt)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
uint8_t *mem;
int rtag = 0;
{
if (unlikely(!QEMU_IS_ALIGNED(ptr, TAG_GRANULE))) {
arm_cpu_do_unaligned_access(env_cpu(env), ptr, MMU_DATA_STORE,
- cpu_mmu_index(env, false), ra);
+ arm_env_mmu_index(env), ra);
g_assert_not_reached();
}
}
static inline void do_stg(CPUARMState *env, uint64_t ptr, uint64_t xt,
uintptr_t ra, stg_store1 store1)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
uint8_t *mem;
check_tag_aligned(env, ptr, ra);
void HELPER(stg_stub)(CPUARMState *env, uint64_t ptr)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
uintptr_t ra = GETPC();
check_tag_aligned(env, ptr, ra);
static inline void do_st2g(CPUARMState *env, uint64_t ptr, uint64_t xt,
uintptr_t ra, stg_store1 store1)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
int tag = allocation_tag_from_addr(xt);
uint8_t *mem1, *mem2;
void HELPER(st2g_stub)(CPUARMState *env, uint64_t ptr)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
uintptr_t ra = GETPC();
int in_page = -(ptr | TARGET_PAGE_MASK);
uint64_t HELPER(ldgm)(CPUARMState *env, uint64_t ptr)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
uintptr_t ra = GETPC();
int gm_bs = env_archcpu(env)->gm_blocksize;
int gm_bs_bytes = 4 << gm_bs;
void HELPER(stgm)(CPUARMState *env, uint64_t ptr, uint64_t val)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
uintptr_t ra = GETPC();
int gm_bs = env_archcpu(env)->gm_blocksize;
int gm_bs_bytes = 4 << gm_bs;
void HELPER(stzgm_tags)(CPUARMState *env, uint64_t ptr, uint64_t val)
{
uintptr_t ra = GETPC();
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
int log2_dcz_bytes, log2_tag_bytes;
intptr_t dcz_bytes, tag_bytes;
uint8_t *mem;
CPUARMState *env, target_ulong addr,
MMUAccessType access_type, uintptr_t retaddr)
{
- int mmu_idx = cpu_mmu_index(env, false);
+ int mmu_idx = arm_env_mmu_index(env);
int mem_off = info->mem_off_first[0];
bool nofault = fault == FAULT_NO;
bool have_work = true;
sve_ldst1_host_fn *host_fn,
sve_ldst1_tlb_fn *tlb_fn)
{
- const int mmu_idx = cpu_mmu_index(env, false);
+ const int mmu_idx = arm_env_mmu_index(env);
const intptr_t reg_max = simd_oprsz(desc);
const int scale = simd_data(desc);
ARMVectorReg scratch;
sve_ldst1_host_fn *host_fn,
sve_ldst1_tlb_fn *tlb_fn)
{
- const int mmu_idx = cpu_mmu_index(env, false);
+ const int mmu_idx = arm_env_mmu_index(env);
const intptr_t reg_max = simd_oprsz(desc);
const int scale = simd_data(desc);
const int esize = 1 << esz;
sve_ldst1_host_fn *host_fn,
sve_ldst1_tlb_fn *tlb_fn)
{
- const int mmu_idx = cpu_mmu_index(env, false);
+ const int mmu_idx = arm_env_mmu_index(env);
const intptr_t reg_max = simd_oprsz(desc);
const int scale = simd_data(desc);
void *host[ARM_MAX_VQ * 4];
{
ARMMMUFaultInfo fi = { .type = ARMFault_Alignment };
int target_el = exception_target_el(env);
- int mmu_idx = cpu_mmu_index(env, true);
+ int mmu_idx = arm_env_mmu_index(env);
uint32_t fsc;
env->exception.vaddress = pc;