"status", "lo", "hi", "badvaddr", "cause", "pc"
};
-mips32_core_reg_t mips32_core_reg_list_arch_info[MIPS32NUMCOREREGS] =
+struct mips32_core_reg mips32_core_reg_list_arch_info[MIPS32NUMCOREREGS] =
{
{0, NULL, NULL},
{1, NULL, NULL},
int mips32_get_core_reg(reg_t *reg)
{
int retval;
- mips32_core_reg_t *mips32_reg = reg->arch_info;
+ struct mips32_core_reg *mips32_reg = reg->arch_info;
target_t *target = mips32_reg->target;
struct mips32_common *mips32_target = target->arch_info;
int mips32_set_core_reg(reg_t *reg, uint8_t *buf)
{
- mips32_core_reg_t *mips32_reg = reg->arch_info;
+ struct mips32_core_reg *mips32_reg = reg->arch_info;
target_t *target = mips32_reg->target;
uint32_t value = buf_get_u32(buf, 0, 32);
int mips32_read_core_reg(struct target_s *target, int num)
{
uint32_t reg_value;
- mips32_core_reg_t *mips_core_reg;
+ struct mips32_core_reg *mips_core_reg;
/* get pointers to arch-specific information */
struct mips32_common *mips32 = target->arch_info;
int mips32_write_core_reg(struct target_s *target, int num)
{
uint32_t reg_value;
- mips32_core_reg_t *mips_core_reg;
+ struct mips32_core_reg *mips_core_reg;
/* get pointers to arch-specific information */
struct mips32_common *mips32 = target->arch_info;
reg_cache_t **cache_p = register_get_last_cache_p(&target->reg_cache);
reg_cache_t *cache = malloc(sizeof(reg_cache_t));
reg_t *reg_list = malloc(sizeof(reg_t) * num_regs);
- mips32_core_reg_t *arch_info = malloc(sizeof(mips32_core_reg_t) * num_regs);
+ struct mips32_core_reg *arch_info = malloc(sizeof(struct mips32_core_reg) * num_regs);
int i;
if (mips32_core_reg_arch_type == -1)