Assign or clean up audit identifiers for a number of additional Linux

system calls on the amd64 architecture.

Some minor white space tweaks for consistency with other syscalls.master
files.

Obtained from:	TrustedBSD Project
This commit is contained in:
Robert Watson 2006-12-29 01:17:02 +00:00
parent b92167c505
commit a46b391df7

View File

@ -50,7 +50,7 @@
6 AUE_CLOSE NOPROTO { int close(int fd); }
7 AUE_WAIT4 STD { int linux_waitpid(l_pid_t pid, \
l_int *status, l_int options); }
8 AUE_O_CREAT STD { int linux_creat(char *path, \
8 AUE_CREAT STD { int linux_creat(char *path, \
l_int mode); }
9 AUE_LINK STD { int linux_link(char *path, char *to); }
10 AUE_UNLINK STD { int linux_unlink(char *path); }
@ -80,7 +80,7 @@
26 AUE_PTRACE STD { int linux_ptrace(l_long req, l_long pid, \
l_long addr, l_long data); }
27 AUE_NULL STD { int linux_alarm(l_uint secs); }
28 AUE_NULL UNIMPL fstat
28 AUE_FSTAT UNIMPL fstat
29 AUE_NULL STD { int linux_pause(void); }
30 AUE_UTIME STD { int linux_utime(char *fname, \
struct l_utimbuf *times); }
@ -160,11 +160,11 @@
84 AUE_LSTAT STD { int linux_lstat(char *path, struct linux_lstat *up); }
85 AUE_READLINK STD { int linux_readlink(char *name, char *buf, \
l_int count); }
86 AUE_NULL UNIMPL linux_uselib
86 AUE_USELIB UNIMPL linux_uselib
87 AUE_SWAPON NOPROTO { int swapon(char *name); }
88 AUE_REBOOT STD { int linux_reboot(l_int magic1, \
l_int magic2, l_uint cmd, void *arg); }
89 AUE_O_GETDENTS STD { int linux_readdir(l_uint fd, \
89 AUE_GETDIRENTRIES STD { int linux_readdir(l_uint fd, \
struct l_dirent *dent, l_uint count); }
90 AUE_MMAP STD { int linux_mmap(struct l_mmap_argv *ptr); }
91 AUE_MUNMAP NOPROTO { int munmap(caddr_t addr, int len); }
@ -176,7 +176,7 @@
96 AUE_GETPRIORITY STD { int linux_getpriority(int which, int who); }
97 AUE_SETPRIORITY NOPROTO { int setpriority(int which, int who, \
int prio); }
98 AUE_AUE_PROFILE UNIMPL profil
98 AUE_PROFILE UNIMPL profil
99 AUE_STATFS STD { int linux_statfs(char *path, \
struct l_statfs_buf *buf); }
100 AUE_FSTATFS STD { int linux_fstatfs(l_uint fd, \
@ -243,7 +243,7 @@
140 AUE_LSEEK STD { int linux_llseek(l_int fd, l_ulong ohigh, \
l_ulong olow, l_loff_t *res, \
l_uint whence); }
141 AUE_O_GETDENTS STD { int linux_getdents(l_uint fd, void *dent, \
141 AUE_GETDIRENTRIES STD { int linux_getdents(l_uint fd, void *dent, \
l_uint count); }
142 AUE_SELECT STD { int linux_select(l_int nfds, \
l_fd_set *readfds, l_fd_set *writefds, \
@ -252,9 +252,9 @@
143 AUE_FLOCK NOPROTO { int flock(int fd, int how); }
144 AUE_MSYNC STD { int linux_msync(l_ulong addr, \
l_size_t len, l_int fl); }
145 AUE_READV STD { int linux_readv(int fd, struct iovec32 *iovp, \
145 AUE_READV STD { int linux_readv(int fd, struct iovec32 *iovp, \
u_int iovcnt); }
146 AUE_WRITEV STD { int linux_writev(int fd, struct iovec32 *iovp, \
146 AUE_WRITEV STD { int linux_writev(int fd, struct iovec32 *iovp, \
u_int iovcnt); }
147 AUE_GETSID STD { int linux_getsid(l_pid_t pid); }
148 AUE_NULL STD { int linux_fdatasync(l_uint fd); }
@ -268,16 +268,17 @@
const struct sched_param *param); }
155 AUE_SCHED_GETPARAM NOPROTO { int sched_getparam(pid_t pid, \
struct sched_param *param); }
156 AUE_SCHED_SETSCHEDULER STD { int linux_sched_setscheduler(l_pid_t pid, \
l_int policy, \
156 AUE_SCHED_SETSCHEDULER STD { int linux_sched_setscheduler( \
l_pid_t pid, l_int policy, \
struct l_sched_param *param); }
157 AUE_SCHED_GETSCHEDULER STD { int linux_sched_getscheduler(l_pid_t pid); }
157 AUE_SCHED_GETSCHEDULER STD { int linux_sched_getscheduler( \
l_pid_t pid); }
158 AUE_NULL NOPROTO { int sched_yield(void); }
159 AUE_SCHED_GET_PRIORITY_MAX STD { int linux_sched_get_priority_max( \
159 AUE_SCHED_GET_PRIORITY_MAX STD { int linux_sched_get_priority_max( \
l_int policy); }
160 AUE_SCHED_GET_PRIORITY_MIN STD { int linux_sched_get_priority_min( \
160 AUE_SCHED_GET_PRIORITY_MIN STD { int linux_sched_get_priority_min( \
l_int policy); }
161 AUE_SCHED_RR_GET_INTERVAL STD { int linux_sched_rr_get_interval(l_pid_t pid, \
161 AUE_SCHED_RR_GET_INTERVAL STD { int linux_sched_rr_get_interval(l_pid_t pid, \
struct l_timespec *interval); }
162 AUE_NULL STD { int linux_nanosleep( \
const struct l_timespec *rqtp, \
@ -379,7 +380,7 @@
l_size_t len, u_char *vec); }
219 AUE_MADVISE NOPROTO { int madvise(void *addr, size_t len, \
int behav); }
220 AUE_O_GETDENTS STD { int linux_getdents64(l_uint fd, \
220 AUE_GETDIRENTRIES STD { int linux_getdents64(l_uint fd, \
void *dirent, l_uint count); }
221 AUE_FCNTL STD { int linux_fcntl64(l_uint fd, l_uint cmd, \
uintptr_t arg); }
@ -431,10 +432,10 @@
266 AUE_NULL STD { int linux_clock_getres(clockid_t which, struct l_timespec *tp); }
267 AUE_NULL STD { int linux_clock_nanosleep(clockid_t which, int flags, \
struct l_timespec *rqtp, struct l_timespec *rmtp); }
268 AUE_NULL STD { int linux_statfs64(char *path, struct l_statfs64_buf *buf); }
269 AUE_NULL STD { int linux_fstatfs64(void); }
268 AUE_STATFS STD { int linux_statfs64(char *path, struct l_statfs64_buf *buf); }
269 AUE_FSTATFS STD { int linux_fstatfs64(void); }
270 AUE_NULL STD { int linux_tgkill(int tgid, int pid, int sig); }
271 AUE_NULL STD { int linux_utimes(void); }
271 AUE_UTIMES STD { int linux_utimes(void); }
272 AUE_NULL STD { int linux_fadvise64_64(void); }
273 AUE_NULL UNIMPL
274 AUE_NULL STD { int linux_mbind(void); }