vmx_read_mem(cpu, data, gva, bytes);
}
+static void hvf_write_mem(CPUState *cpu, void *data, target_ulong gva, int bytes)
+{
+ vmx_write_mem(cpu, gva, data, bytes);
+}
+
static const struct x86_emul_ops hvf_x86_emul_ops = {
.read_mem = hvf_read_mem,
+ .write_mem = hvf_write_mem,
.read_segment_descriptor = hvf_read_segment_descriptor,
.handle_io = hvf_handle_io,
};
write_val_to_reg(ptr, val, size);
return;
}
- vmx_write_mem(env_cpu(env), ptr, &val, size);
+ emul_ops->write_mem(env_cpu(env), &val, ptr, size);
}
uint8_t *read_mmio(CPUX86State *env, target_ulong ptr, int bytes)
emul_ops->handle_io(env_cpu(env), DX(env), env->emu_mmio_buf, 0,
decode->operand_size, 1);
- vmx_write_mem(env_cpu(env), addr, env->emu_mmio_buf,
- decode->operand_size);
+ emul_ops->write_mem(env_cpu(env), env->emu_mmio_buf, addr,
+ decode->operand_size);
string_increment_reg(env, R_EDI, decode);
}
addr = linear_addr_size(env_cpu(env), RDI(env),
decode->addressing_size, R_ES);
val = read_reg(env, R_EAX, decode->operand_size);
- vmx_write_mem(env_cpu(env), addr, &val, decode->operand_size);
+ emul_ops->write_mem(env_cpu(env), &val, addr, decode->operand_size);
string_increment_reg(env, R_EDI, decode);
}
struct x86_emul_ops {
void (*read_mem)(CPUState *cpu, void *data, target_ulong addr, int bytes);
+ void (*write_mem)(CPUState *cpu, void *data, target_ulong addr, int bytes);
void (*read_segment_descriptor)(CPUState *cpu, struct x86_segment_descriptor *desc,
enum X86Seg seg);
void (*handle_io)(CPUState *cpu, uint16_t port, void *data, int direction,