typedef s32 compat_time_t;
typedef s32 compat_clock_t;
typedef s32 compat_pid_t;
-typedef u16 compat_uid_t;
-typedef u16 compat_gid_t;
-typedef u32 compat_uid32_t;
-typedef u32 compat_gid32_t;
+typedef u16 __compat_uid_t;
+typedef u16 __compat_gid_t;
+typedef u32 __compat_uid32_t;
+typedef u32 __compat_gid32_t;
typedef u16 compat_mode_t;
typedef u32 compat_ino_t;
typedef u16 compat_dev_t;
compat_ino_t st_ino;
compat_mode_t st_mode;
compat_nlink_t st_nlink;
- compat_uid_t st_uid;
- compat_gid_t st_gid;
+ __compat_uid_t st_uid;
+ __compat_gid_t st_gid;
compat_dev_t st_rdev;
u16 __pad2;
u32 st_size;
struct compat_ipc64_perm {
compat_key_t key;
- compat_uid32_t uid;
- compat_gid32_t gid;
- compat_uid32_t cuid;
- compat_gid32_t cgid;
+ __compat_uid32_t uid;
+ __compat_gid32_t gid;
+ __compat_uid32_t cuid;
+ __compat_gid32_t cgid;
unsigned short mode;
unsigned short __pad1;
unsigned short seq;
static __inline__ void __user *compat_alloc_user_space(long len)
{
- struct pt_regs *regs = (void *)current->thread.rsp0 - sizeof(struct pt_regs);
+ struct pt_regs *regs = task_pt_regs(current);
return (void __user *)regs->rsp - len;
}
+static inline int is_compat_task(void)
+{
+ return current_thread_info()->status & TS_COMPAT;
+}
+
#endif /* _ASM_X86_64_COMPAT_H */