golang zsysnum_freebsd_arm64 代码
文件路径:/src/syscall/zsysnum_freebsd_arm64.go
/ mksysnum_freebsd.pl
/ Code generated by the command above; DO NOT EDIT.
/go:build arm64 && freebsd
package syscall
const (
/ SYS_NOSYS = 0; / { int nosys(void); } syscall nosys_args int
SYS_EXIT = 1 / { void sys_exit(int rval); } exit sys_exit_args void
SYS_FORK = 2 / { int fork(void); }
SYS_READ = 3 / { ssize_t read(int fd, void *buf, size_t nbyte); }
SYS_WRITE = 4 / { ssize_t write(int fd, const void *buf, size_t nbyte); }
SYS_OPEN = 5 / { int open(char *path, int flags, int mode); }
SYS_CLOSE = 6 / { int close(int fd); }
SYS_WAIT4 = 7 / { int wait4(int pid, int *status, int options, struct rusage *rusage); }
SYS_LINK = 9 / { int link(char *path, char *link); }
SYS_UNLINK = 10 / { int unlink(char *path); }
SYS_CHDIR = 12 / { int chdir(char *path); }
SYS_FCHDIR = 13 / { int fchdir(int fd); }
SYS_MKNOD = 14 / { int mknod(char *path, int mode, int dev); }
SYS_CHMOD = 15 / { int chmod(char *path, int mode); }
SYS_CHOWN = 16 / { int chown(char *path, int uid, int gid); }
SYS_OBREAK = 17 / { int obreak(char *nsize); } break obreak_args int
SYS_GETPID = 20 / { pid_t getpid(void); }
SYS_MOUNT = 21 / { int mount(char *type, char *path, int flags, caddr_t data); }
SYS_UNMOUNT = 22 / { int unmount(char *path, int flags); }
SYS_SETUID = 23 / { int setuid(uid_t uid); }
SYS_GETUID = 24 / { uid_t getuid(void); }
SYS_GETEUID = 25 / { uid_t geteuid(void); }
SYS_PTRACE = 26 / { int ptrace(int req, pid_t pid, caddr_t addr, int data); }
SYS_RECVMSG = 27 / { int recvmsg(int s, struct msghdr *msg, int flags); }
SYS_SENDMSG = 28 / { int sendmsg(int s, struct msghdr *msg, int flags); }
SYS_RECVFROM = 29 / { int recvfrom(int s, caddr_t buf, size_t len, int flags, struct sockaddr * __restrict from, __socklen_t * __restrict fromlenaddr); }
SYS_ACCEPT = 30 / { int accept(int s, struct sockaddr * __restrict name, __socklen_t * __restrict anamelen); }
SYS_GETPEERNAME = 31 / { int getpeername(int fdes, struct sockaddr * __restrict asa, __socklen_t * __restrict alen); }
SYS_GETSOCKNAME = 32 / { int getsockname(int fdes, struct sockaddr * __restrict asa, __socklen_t * __restrict alen); }
SYS_ACCESS = 33 / { int access(char *path, int amode); }
SYS_CHFLAGS = 34 / { int chflags(const char *path, u_long flags); }
SYS_FCHFLAGS = 35 / { int fchflags(int fd, u_long flags); }
SYS_SYNC = 36 / { int sync(void); }
SYS_KILL = 37 / { int kill(int pid, int signum); }
SYS_GETPPID = 39 / { pid_t getppid(void); }
SYS_DUP = 41 / { int dup(u_int fd); }
SYS_PIPE = 42 / { int pipe(void); }
SYS_GETEGID = 43 / { gid_t getegid(void); }
SYS_PROFIL = 44 / { int profil(caddr_t samples, size_t size, size_t offset, u_int scale); }
SYS_KTRACE = 45 / { int ktrace(const char *fname, int ops, int facs, int pid); }
SYS_GETGID = 47 / { gid_t getgid(void); }
SYS_GETLOGIN = 49 / { int getlogin(char *namebuf, u_int namelen); }
SYS_SETLOGIN = 50 / { int setlogin(char *namebuf); }
SYS_ACCT = 51 / { int acct(char *path); }
SYS_SIGALTSTACK = 53 / { int sigaltstack(stack_t *ss, stack_t *oss); }
SYS_IOCTL = 54 / { int ioctl(int fd, u_long com, caddr_t data); }
SYS_REBOOT = 55 / { int reboot(int opt); }
SYS_REVOKE = 56 / { int revoke(char *path); }
SYS_SYMLINK = 57 / { int symlink(char *path, char *link); }
SYS_READLINK = 58 / { ssize_t readlink(char *path, char *buf, size_t count); }
SYS_EXECVE = 59 / { int execve(char *fname, char **argv, char **envv); }
SYS_UMASK = 60 / { int umask(int newmask); } umask umask_args int
SYS_CHROOT = 61 / { int chroot(char *path); }
SYS_MSYNC = 65 / { int msync(void *addr, size_t len, int flags); }
SYS_VFORK = 66 / { int vfork(void); }
SYS_SBRK = 69 / { int sbrk(int incr); }
SYS_SSTK = 70 / { int sstk(int incr); }
SYS_OVADVISE = 72 / { int ovadvise(int anom); } vadvise ovadvise_args int
SYS_MUNMAP = 73 / { int munmap(void *addr, size_t len); }
SYS_MPROTECT = 74 / { int mprotect(const void *addr, size_t len, int prot); }
SYS_MADVISE = 75 / { int madvise(void *addr, size_t len, int behav); }
SYS_MINCORE = 78 / { int mincore(const void *addr, size_t len, char *vec); }
SYS_GETGROUPS = 79 / { int getgroups(u_int gidsetsize, gid_t *gidset); }
SYS_SETGROUPS = 80 / { int setgroups(u_int gidsetsize, gid_t *gidset); }
SYS_GETPGRP = 81 / { int getpgrp(void); }
SYS_SETPGID = 82 / { int setpgid(int pid, int pgid); }
SYS_SETITIMER = 83 / { int setitimer(u_int which, struct itimerval *itv, struct itimerval *oitv); }
SYS_SWAPON = 85 / { int swapon(char *name); }
SYS_GETITIMER = 86 / { int getitimer(u_int which, struct itimerval *itv); }
SYS_GETDTABLESIZE = 89 / { int getdtablesize(void); }
SYS_DUP2 = 90 / { int dup2(u_int from, u_int to); }
SYS_FCNTL = 92 / { int fcntl(int fd, int cmd, long arg); }
SYS_SELECT = 93 / { int select(int nd, fd_set *in, fd_set *ou, fd_set *ex, struct timeval *tv); }
SYS_FSYNC = 95 / { int fsync(int fd); }
SYS_SETPRIORITY = 96 / { int setpriority(int which, int who, int prio); }
SYS_SOCKET = 97 / { int socket(int domain, int type, int protocol); }
SYS_CONNECT = 98 / { int connect(int s, caddr_t name, int namelen); }
SYS_GETPRIORITY = 100 / { int getpriority(int which, int who); }
SYS_BIND = 104 / { int bind(int s, caddr_t name, int namelen); }
SYS_SETSOCKOPT = 105 / { int setsockopt(int s, int level, int name, caddr_t val, int valsize); }
SYS_LISTEN = 106 / { int listen(int s, int backlog); }
SYS_GETTIMEOFDAY = 116 / { int gettimeofday(struct timeval *tp, struct timezone *tzp); }
SYS_GETRUSAGE = 117 / { int getrusage(int who, struct rusage *rusage); }
SYS_GETSOCKOPT = 118 / { int getsockopt(int s, int level, int name, caddr_t val, int *avalsize); }
SYS_READV = 120 / { int readv(int fd, struct iovec *iovp, u_int iovcnt); }
SYS_WRITEV = 121 / { int writev(int fd, struct iovec *iovp, u_int iovcnt); }
SYS_SETTIMEOFDAY = 122 / { int settimeofday(struct timeval *tv, struct timezone *tzp); }
SYS_FCHOWN = 123 / { int fchown(int fd, int uid, int gid); }
SYS_FCHMOD = 124 / { int fchmod(int fd, int mode); }
SYS_SETREUID = 126 / { int setreuid(int ruid, int euid); }
SYS_SETREGID = 127 / { int setregid(int rgid, int egid); }
SYS_RENAME = 128 / { int rename(char *from, char *to); }
SYS_FLOCK = 131 / { int flock(int fd, int how); }
SYS_MKFIFO = 132 / { int mkfifo(char *path, int mode); }
SYS_SENDTO = 133 / { int sendto(int s, caddr_t buf, size_t len, int flags, caddr_t to, int tolen); }
SYS_SHUTDOWN = 134 / { int shutdown(int s, int how); }
SYS_SOCKETPAIR = 135 / { int socketpair(int domain, int type, int protocol, int *rsv); }
SYS_MKDIR = 136 / { int mkdir(char *path, int mode); }
SYS_RMDIR = 137 / { int rmdir(char *path); }
SYS_UTIMES = 138 / { int utimes(char *path, struct timeval *tptr); }
SYS_ADJTIME = 140 / { int adjtime(struct timeval *delta, struct timeval *olddelta); }
SYS_SETSID = 147 / { int setsid(void); }
SYS_QUOTACTL = 148 / { int quotactl(char *path, int cmd, int uid, caddr_t arg); }
SYS_NLM_SYSCALL = 154 / { int nlm_syscall(int debug_level, int grace_period, int addr_count, char **addrs); }
SYS_NFSSVC = 155 / { int nfssvc(int flag, caddr_t argp); }
SYS_LGETFH = 160 / { int lgetfh(char *fname, struct fhandle *fhp); }
SYS_GETFH = 161 / { int getfh(char *fname, struct fhandle *fhp); }
SYS_SYSARCH = 165 / { int sysarch(int op, char *parms); }
SYS_RTPRIO = 166 / { int rtprio(int function, pid_t pid, struct rtprio *rtp); }
SYS_SEMSYS = 169 / { int semsys(int which, int a2, int a3, int a4, int a5); }
SYS_MSGSYS = 170 / { int msgsys(int which, int a2, int a3, int a4, int a5, int a6); }
SYS_SHMSYS = 171 / { int shmsys(int which, int a2, int a3, int a4); }
SYS_SETFIB = 175 / { int setfib(int fibnum); }
SYS_NTP_ADJTIME = 176 / { int ntp_adjtime(struct timex *tp); }
SYS_SETGID = 181 / { int setgid(gid_t gid); }
SYS_SETEGID = 182 / { int setegid(gid_t egid); }
SYS_SETEUID = 183 / { int seteuid(uid_t euid); }
SYS_STAT = 188 / { int stat(char *path, struct stat *ub); }
SYS_FSTAT = 189 / { int fstat(int fd, struct stat *sb); }
SYS_LSTAT = 190 / { int lstat(char *path, struct stat *ub); }
SYS_PATHCONF = 191 / { int pathconf(char *path, int name); }
SYS_FPATHCONF = 192 / { int fpathconf(int fd, int name); }
SYS_GETRLIMIT = 194 / { int getrlimit(u_int which, struct rlimit *rlp); } getrlimit __getrlimit_args int
SYS_SETRLIMIT = 195 / { int setrlimit(u_int which, struct rlimit *rlp); } setrlimit __setrlimit_args int
SYS_GETDIRENTRIES = 196 / { int getdirentries(int fd, char *buf, u_int count, long *basep); }
SYS___SYSCTL = 202 / { int __sysctl(int *name, u_int namelen, void *old, size_t *oldlenp, void *new, size_t newlen); } __sysctl sysctl_args int
SYS_MLOCK = 203 / { int mlock(const void *addr, size_t len); }
SYS_MUNLOCK = 204 / { int munlock(const void *addr, size_t len); }
SYS_UNDELETE = 205 / { int undelete(char *path); }
SYS_FUTIMES = 206 / { int futimes(int fd, struct timeval *tptr); }
SYS_GETPGID = 207 / { int getpgid(pid_t pid); }
SYS_POLL = 209 / { int poll(struct pollfd *fds, u_int nfds, int timeout); }
SYS_SEMGET = 221 / { int semget(key_t key, int nsems, int semflg); }
SYS_SEMOP = 222 / { int semop(int semid, struct sembuf *sops, size_t nsops); }
SYS_MSGGET = 225 / { int msgget(key_t key, int msgflg); }
SYS_MSGSND = 226 / { int msgsnd(int msqid, const void *msgp, size_t msgsz, int msgflg); }
SYS_MSGRCV = 227 / { int msgrcv(int msqid, void *msgp, size_t msgsz, long msgtyp, int msgflg); }
SYS_SHMAT = 228 / { int shmat(int shmid, const void *shmaddr, int shmflg); }
SYS_SHMDT = 230 / { int shmdt(const void *shmaddr); }
SYS_SHMGET = 231 / { int shmget(key_t key, size_t size, int shmflg); }
SYS_CLOCK_GETTIME = 232 / { int clock_gettime(clockid_t clock_id, struct timespec *tp); }
SYS_CLOCK_SETTIME = 233 / { int clock_settime( clockid_t clock_id, const struct timespec *tp); }
SYS_CLOCK_GETRES = 234 / { int clock_getres(clockid_t clock_id, struct timespec *tp); }
SYS_KTIMER_CREATE = 235 / { int ktimer_create(clockid_t clock_id, struct sigevent *evp, int *timerid); }
SYS_KTIMER_DELETE = 236 / { int ktimer_delete(int timerid); }
SYS_KTIMER_SETTIME = 237 / { int ktimer_settime(int timerid, int flags, const struct itimerspec *value, struct itimerspec *ovalue); }
SYS_KTIMER_GETTIME = 238 / { int ktimer_gettime(int timerid, struct itimerspec *value); }
SYS_KTIMER_GETOVERRUN = 239 / { int ktimer_getoverrun(int timerid); }
SYS_NANOSLEEP = 240 / { int nanosleep(const struct timespec *rqtp, struct timespec *rmtp); }
SYS_FFCLOCK_GETCOUNTER = 241 / { int ffclock_getcounter(ffcounter *ffcount); }
SYS_FFCLOCK_SETESTIMATE = 242 / { int ffclock_setestimate( struct ffclock_estimate *cest); }
SYS_FFCLOCK_GETESTIMATE = 243 / { int ffclock_getestimate( struct ffclock_estimate *cest); }
SYS_CLOCK_NANOSLEEP = 244 / { int clock_nanosleep(clockid_t clock_id, int flags, const struct timespec *rqtp, struct timespec *rmtp); }
SYS_CLOCK_GETCPUCLOCKID2 = 247 / { int clock_getcpuclockid2(id_t id,int which, clockid_t *clock_id); }
SYS_NTP_GETTIME = 248 / { int ntp_gettime(struct ntptimeval *ntvp); }
SYS_MINHERIT = 250 / { int minherit(void *addr, size_t len, int inherit); }
SYS_RFORK = 251 / { int rfork(int flags); }
SYS_OPENBSD_POLL = 252 / { int openbsd_poll(struct pollfd *fds, u_int nfds, int timeout); }
SYS_ISSETUGID = 253 / { int issetugid(void); }
SYS_LCHOWN = 254 / { int lchown(char *path, int uid, int gid); }
SYS_AIO_READ = 255 / { int aio_read(struct aiocb *aiocbp); }
SYS_AIO_WRITE = 256 / { int aio_write(struct aiocb *aiocbp); }
SYS_LIO_LISTIO = 257 / { int lio_listio(int mode, struct aiocb * const *acb_list, int nent, struct sigevent *sig); }
SYS_GETDENTS = 272 / { int getdents(int fd, char *buf, size_t count); }
SYS_LCHMOD = 274 / { int lchmod(char *path, mode_t mode); }
SYS_LUTIMES = 276 / { int lutimes(char *path, struct timeval *tptr); }
SYS_NSTAT = 278 / { int nstat(char *path, struct nstat *ub); }
SYS_NFSTAT = 279 / { int nfstat(int fd, struct nstat *sb); }
SYS_NLSTAT = 280 / { int nlstat(char *path, struct nstat *ub); }
SYS_PREADV = 289 / { ssize_t preadv(int fd, struct iovec *iovp, u_int iovcnt, off_t offset); }
SYS_PWRITEV = 290 / { ssize_t pwritev(int fd, struct iovec *iovp, u_int iovcnt, off_t offset); }
SYS_FHOPEN = 298 / { int fhopen(const struct fhandle *u_fhp, int flags); }
SYS_FHSTAT = 299 / { int fhstat(const struct fhandle *u_fhp, struct stat *sb); }
SYS_MODNEXT = 300 / { int modnext(int modid); }
SYS_MODSTAT = 301 / { int modstat(int modid, struct module_stat *stat); }
SYS_MODFNEXT = 302 / { int modfnext(int modid); }
SYS_MODFIND = 303 / { int modfind(const char *name); }
SYS_KLDLOAD = 304 / { int kldload(const char *file); }
SYS_KLDUNLOAD = 305 / { int kldunload(int fileid); }
SYS_KLDFIND = 306 / { int kldfind(const char *file); }
SYS_KLDNEXT = 307 / { int kldnext(int fileid); }
SYS_KLDSTAT = 308 / { int kldstat(int fileid, struct kld_file_stat* stat); }
SYS_KLDFIRSTMOD = 309 / { int kldfirstmod(int fileid); }
SYS_GETSID = 310 / { int getsid(pid_t pid); }
SYS_SETRESUID = 311 / { int setresuid(uid_t ruid, uid_t euid, uid_t suid); }
SYS_SETRESGID = 312 / { int setresgid(gid_t rgid, gid_t egid, gid_t sgid); }
SYS_AIO_RETURN = 314 / { ssize_t aio_return(struct aiocb *aiocbp); }
SYS_AIO_SUSPEND = 315 / { int aio_suspend( struct aiocb * const * aiocbp, int nent, const struct timespec *timeout); }
SYS_AIO_CANCEL = 316 / { int aio_cancel(int fd, struct aiocb *aiocbp); }
SYS_AIO_ERROR = 317 / { int aio_error(struct aiocb *aiocbp); }
SYS_YIELD = 321 / { int yield(void); }
SYS_MLOCKALL = 324 / { int mlockall(int how); }
SYS_MUNLOCKALL = 325 / { int munlockall(void); }
SYS___GETCWD = 326 / { int __getcwd(char *buf, u_int buflen); }
SYS_SCHED_SETPARAM = 327 / { int sched_setparam (pid_t pid, const struct sched_param *param); }
SYS_SCHED_GETPARAM = 328 / { int sched_getparam (pid_t pid, struct sched_param *param); }
SYS_SCHED_SETSCHEDULER = 329 / { int sched_setscheduler (pid_t pid, int policy, const struct sched_param *param); }
SYS_SCHED_GETSCHEDULER = 330 / { int sched_getscheduler (pid_t pid); }
SYS_SCHED_YIELD = 331 / { int sched_yield (void); }
SYS_SCHED_GET_PRIORITY_MAX = 332 / { int sched_get_priority_max (int policy); }
SYS_SCHED_GET_PRIORITY_MIN = 333 / { int sched_get_priority_min (int policy); }
SYS_SCHED_RR_GET_INTERVAL = 334 / { int sched_rr_get_interval (pid_t pid, struct timespec *interval); }
SYS_UTRACE = 335 / { int utrace(const void *addr, size_t len); }
SYS_KLDSYM = 337 / { int kldsym(int fileid, int cmd, void *data); }
SYS_JAIL = 338 / { int jail(struct jail *jail); }
SYS_SIGPROCMASK = 340 / { int sigprocmask(int how, const sigset_t *set, sigset_t *oset); }
SYS_SIGSUSPEND = 341 / { int sigsuspend(const sigset_t *sigmask); }
SYS_SIGPENDING = 343 / { int sigpending(sigset_t *set); }
SYS_SIGTIMEDWAIT = 345 / { int sigtimedwait(const sigset_t *set, siginfo_t *info, const struct timespec *timeout); }
SYS_SIGWAITINFO = 346 / { int sigwaitinfo(const sigset_t *set, siginfo_t *info); }
SYS___ACL_GET_FILE = 347 / { int __acl_get_file(const char *path, acl_type_t type, struct acl *aclp); }
SYS___ACL_SET_FILE = 348 / { int __acl_set_file(const char *path, acl_type_t type, struct acl *aclp); }
SYS___ACL_GET_FD = 349 / { int __acl_get_fd(int filedes, acl_type_t type, struct acl *aclp); }
SYS___ACL_SET_FD = 350 / { int __acl_set_fd(int filedes, acl_type_t type, struct acl *aclp); }
SYS___ACL_DELETE_FILE = 351 / { int __acl_delete_file(const char *path, acl_type_t type); }
SYS___ACL_DELETE_FD = 352 / { int __acl_delete_fd(int filedes, acl_type_t type); }
SYS___ACL_ACLCHECK_FILE = 353 / { int __acl_aclcheck_file(const char *path, acl_type_t type, struct acl *aclp); }
SYS___ACL_ACLCHECK_FD = 354 / { int __acl_aclcheck_fd(int filedes, acl_type_t type, struct acl *aclp); }
SYS_EXTATTRCTL = 355 / { int extattrctl(const char *path, int cmd, const char *filename, int attrnamespace, const char *attrname); }
SYS_EXTATTR_SET_FILE = 356 / { ssize_t extattr_set_file( const char *path, int attrnamespace, const char *attrname, void *data, size_t nbytes); }
SYS_EXTATTR_GET_FILE = 357 / { ssize_t extattr_get_file( const char *path, int attrnamespace, const char *attrname, void *data, size_t nbytes); }
SYS_EXTATTR_DELETE_FILE = 358 / { int extattr_delete_file(const char *path, int attrnamespace, const char *attrname); }
SYS_AIO_WAITCOMPLETE = 359 / { ssize_t aio_waitcomplete( struct aiocb **aiocbp, struct timespec *timeout); }
SYS_GETRESUID = 360 / { int getresuid(uid_t *ruid, uid_t *euid, uid_t *suid); }
SYS_GETRESGID = 361 / { int getresgid(gid_t *rgid, gid_t *egid, gid_t *sgid); }
SYS_KQUEUE = 362 / { int kqueue(void); }
SYS_KEVENT = 363 / { int kevent(int fd, struct kevent *changelist, int nchanges, struct kevent *eventlist, int nevents, const struct timespec *timeout); }
SYS_EXTATTR_SET_FD = 371 / { ssize_t extattr_set_fd(int fd, int attrnamespace, const char *attrname, void *data, size_t nbytes); }
SYS_EXTATTR_GET_FD = 372 / { ssize_t extattr_get_fd(int fd, int attrnamespace, const char *attrname, void *data, size_t nbytes); }
SYS_EXTATTR_DELETE_FD = 373 / { int extattr_delete_fd(int fd, int attrnamespace, const char *attrname); }
SYS___SETUGID = 374 / { int __setugid(int flag); }
SYS_EACCESS = 376 / { int eaccess(char *path, int amode); }
SYS_NMOUNT = 378 / { int nmount(struct iovec *iovp, unsigned int iovcnt, int flags); }
SYS___MAC_GET_PROC = 384 / { int __mac_get_proc(struct mac *mac_p); }
SYS___MAC_SET_PROC = 385 / { int __mac_set_proc(struct mac *mac_p); }
SYS___MAC_GET_FD = 386 / { int __mac_get_fd(int fd, struct mac *mac_p); }
SYS___MAC_GET_FILE = 387 / { int __mac_get_file(const char *path_p, struct mac *mac_p); }
SYS___MAC_SET_FD = 388 / { int __mac_set_fd(int fd, struct mac *mac_p); }
SYS___MAC_SET_FILE = 389 / { int __mac_set_file(const char *path_p, struct mac *mac_p); }
SYS_KENV = 390 / { int kenv(int what, const char *name, char *value, int len); }
SYS_LCHFLAGS = 391 / { int lchflags(const char *path, u_long flags); }
SYS_UUIDGEN = 392 / { int uuidgen(struct uuid *store, int count); }
SYS_SENDFILE = 393 / { int sendfile(int fd, int s, off_t offset, size_t nbytes, struct sf_hdtr *hdtr, off_t *sbytes, int flags); }
SYS_MAC_SYSCALL = 394 / { int mac_syscall(const char *policy, int call, void *arg); }
SYS_GETFSSTAT = 395 / { int getfsstat(struct statfs *buf, long bufsize, int mode); }
SYS_STATFS = 396 / { int statfs(char *path, struct statfs *buf); }
SYS_FSTATFS = 397 / { int fstatfs(int fd, struct statfs *buf); }
SYS_FHSTATFS = 398 / { int fhstatfs(const struct fhandle *u_fhp, struct statfs *buf); }
SYS_KSEM_CLOSE = 400 / { int ksem_close(semid_t id); }
SYS_KSEM_POST = 401 / { int ksem_post(semid_t id); }
SYS_KSEM_WAIT = 402 / { int ksem_wait(semid_t id); }
SYS_KSEM_TRYWAIT = 403 / { int ksem_trywait(semid_t id); }
SYS_KSEM_INIT = 404 / { int ksem_init(semid_t *idp, unsigned int value); }
SYS_KSEM_OPEN = 405 / { int ksem_open(semid_t *idp, const char *name, int oflag, mode_t mode, unsigned int value); }
SYS_KSEM_UNLINK = 406 / { int ksem_unlink(const char *name); }
SYS_KSEM_GETVALUE = 407 / { int ksem_getvalue(semid_t id, int *val); }
SYS_KSEM_DESTROY = 408 / { int ksem_destroy(semid_t id); }
SYS___MAC_GET_PID = 409 / { int __mac_get_pid(pid_t pid, struct mac *mac_p); }
SYS___MAC_GET_LINK = 410 / { int __mac_get_link(const char *path_p, struct mac *mac_p); }
SYS___MAC_SET_LINK = 411 / { int __mac_set_link(const char *path_p, struct mac *mac_p); }
SYS_EXTATTR_SET_LINK = 412 / { ssize_t extattr_set_link( const char *path, int attrnamespace, const char *attrname, void *data, size_t nbytes); }
SYS_EXTATTR_GET_LINK = 413 / { ssize_t extattr_get_link( const char *path, int attrnamespace, const char *attrname, void *data, size_t nbytes); }
SYS_EXTATTR_DELETE_LINK = 414 / { int extattr_delete_link( const char *path, int attrnamespace, const char *attrname); }
SYS___MAC_EXECVE = 415 / { int __mac_execve(char *fname, char **argv, char **envv, struct mac *mac_p); }
SYS_SIGACTION = 416 / { int sigaction(int sig, const struct sigaction *act, struct sigaction *oact); }
SYS_SIGRETURN = 417 / { int sigreturn( const struct __ucontext *sigcntxp); }
SYS_GETCONTEXT = 421 / { int getcontext(struct __ucontext *ucp); }
SYS_SETCONTEXT = 422 / { int setcontext( const struct __ucontext *ucp); }
SYS_SWAPCONTEXT = 423 / { int swapcontext(struct __ucontext *oucp, const struct __ucontext *ucp); }
SYS_SWAPOFF = 424 / { int swapoff(const char *name); }
SYS___ACL_GET_LINK = 425 / { int __acl_get_link(const char *path, acl_type_t type, struct acl *aclp); }
SYS___ACL_SET_LINK = 426 / { int __acl_set_link(const char *path, acl_type_t type, struct acl *aclp); }
SYS___ACL_DELETE_LINK = 427 / { int __acl_delete_link(const char *path, acl_type_t type); }
SYS___ACL_ACLCHECK_LINK = 428 / { int __acl_aclcheck_link(const char *path, acl_type_t type, struct acl *aclp); }
SYS_SIGWAIT = 429 / { int sigwait(const sigset_t *set, int *sig); }
SYS_THR_CREATE = 430 / { int thr_create(ucontext_t *ctx, long *id, int flags); }
SYS_THR_EXIT = 431 / { void thr_exit(long *state); }
SYS_THR_SELF = 432 / { int thr_self(long *id); }
SYS_THR_KILL = 433 / { int thr_kill(long id, int sig); }
SYS_JAIL_ATTACH = 436 / { int jail_attach(int jid); }
SYS_EXTATTR_LIST_FD = 437 / { ssize_t extattr_list_fd(int fd, int attrnamespace, void *data, size_t nbytes); }
SYS_EXTATTR_LIST_FILE = 438 / { ssize_t extattr_list_file( const char *path, int attrnamespace, void *data, size_t nbytes); }
SYS_EXTATTR_LIST_LINK = 439 / { ssize_t extattr_list_link( const char *path, int attrnamespace, void *data, size_t nbytes); }
SYS_KSEM_TIMEDWAIT = 441 / { int ksem_timedwait(semid_t id, const struct timespec *abstime); }
SYS_THR_SUSPEND = 442 / { int thr_suspend( const struct timespec *timeout); }
SYS_THR_WAKE = 443 / { int thr_wake(long id); }
SYS_KLDUNLOADF = 444 / { int kldunloadf(int fileid, int flags); }
SYS_AUDIT = 445 / { int audit(const void *record, u_int length); }
SYS_AUDITON = 446 / { int auditon(int cmd, void *data, u_int length); }
SYS_GETAUID = 447 / { int getauid(uid_t *auid); }
SYS_SETAUID = 448 / { int setauid(uid_t *auid); }
SYS_GETAUDIT = 449 / { int getaudit(struct auditinfo *auditinfo); }
SYS_SETAUDIT = 450 / { int setaudit(struct auditinfo *auditinfo); }
SYS_GETAUDIT_ADDR = 451 / { int getaudit_addr( struct auditinfo_addr *auditinfo_addr, u_int length); }
SYS_SETAUDIT_ADDR = 452 / { int setaudit_addr( struct auditinfo_addr *auditinfo_addr, u_int length); }
SYS_AUDITCTL = 453 / { int auditctl(char *path); }
SYS__UMTX_OP = 454 / { int _umtx_op(void *obj, int op, u_long val, void *uaddr1, void *uaddr2); }
SYS_THR_NEW = 455 / { int thr_new(struct thr_param *param, int param_size); }
SYS_SIGQUEUE = 456 / { int sigqueue(pid_t pid, int signum, void *value); }
SYS_KMQ_OPEN = 457 / { int kmq_open(const char *path, int flags, mode_t mode, const struct mq_attr *attr); }
SYS_KMQ_SETATTR = 458 / { int kmq_setattr(int mqd, const struct mq_attr *attr, struct mq_attr *oattr); }
SYS_KMQ_TIMEDRECEIVE = 459 / { int kmq_timedreceive(int mqd, char *msg_ptr, size_t msg_len, unsigned *msg_prio, const struct timespec *abs_timeout); }
SYS_KMQ_TIMEDSEND = 460 / { int kmq_timedsend(int mqd, const char *msg_ptr, size_t msg_len,unsigned msg_prio, const struct timespec *abs_timeout);}
SYS_KMQ_NOTIFY = 461 / { int kmq_notify(int mqd, const struct sigevent *sigev); }
SYS_KMQ_UNLINK = 462 / { int kmq_unlink(const char *path); }
SYS_ABORT2 = 463 / { int abort2(const char *why, int nargs, void **args); }
SYS_THR_SET_NAME = 464 / { int thr_set_name(long id, const char *name); }
SYS_AIO_FSYNC = 465 / { int aio_fsync(int op, struct aiocb *aiocbp); }
SYS_RTPRIO_THREAD = 466 / { int rtprio_thread(int function, lwpid_t lwpid, struct rtprio *rtp); }
SYS_SCTP_PEELOFF = 471 / { int sctp_peeloff(int sd, uint32_t name); }
SYS_SCTP_GENERIC_SENDMSG = 472 / { int sctp_generic_sendmsg(int sd, caddr_t msg, int mlen, caddr_t to, __socklen_t tolen, struct sctp_sndrcvinfo *sinfo, int flags); }
SYS_SCTP_GENERIC_SENDMSG_IOV = 473 / { int sctp_generic_sendmsg_iov(int sd, struct iovec *iov, int iovlen, caddr_t to, __socklen_t tolen, struct sctp_sndrcvinfo *sinfo, int flags); }
SYS_SCTP_GENERIC_RECVMSG = 474 / { int sctp_generic_recvmsg(int sd, struct iovec *iov, int iovlen, struct sockaddr * from, __socklen_t *fromlenaddr, struct sctp_sndrcvinfo *sinfo, int *msg_flags); }
SYS_PREAD = 475 / { ssize_t pread(int fd, void *buf, size_t nbyte, off_t offset); }
SYS_PWRITE = 476 / { ssize_t pwrite(int fd, const void *buf, size_t nbyte, off_t offset); }
SYS_MMAP = 477 / { caddr_t mmap(caddr_t addr, size_t len, int prot, int flags, int fd, off_t pos); }
SYS_LSEEK = 478 / { off_t lseek(int fd, off_t offset, int whence); }
SYS_TRUNCATE = 479 / { int truncate(char *path, off_t length); }
SYS_FTRUNCATE = 480 / { int ftruncate(int fd, off_t length); }
SYS_THR_KILL2 = 481 / { int thr_kill2(pid_t pid, long id, int sig); }
SYS_SHM_OPEN = 482 / { int shm_open(const char *path, int flags, mode_t mode); }
SYS_SHM_UNLINK = 483 / { int shm_unlink(const char *path); }
SYS_CPUSET = 484 / { int cpuset(cpusetid_t *setid); }
SYS_CPUSET_SETID = 485 / { int cpuset_setid(cpuwhich_t which, id_t id, cpusetid_t setid); }
SYS_CPUSET_GETID = 486 / { int cpuset_getid(cpulevel_t level, cpuwhich_t which, id_t id, cpusetid_t *setid); }
SYS_CPUSET_GETAFFINITY = 487 / { int cpuset_getaffinity(cpulevel_t level, cpuwhich_t which, id_t id, size_t cpusetsize, cpuset_t *mask); }
SYS_CPUSET_SETAFFINITY = 488 / { int cpuset_setaffinity(cpulevel_t level, cpuwhich_t which, id_t id, size_t cpusetsize, const cpuset_t *mask); }
SYS_FACCESSAT = 489 / { int faccessat(int fd, char *path, int amode, int flag); }
SYS_FCHMODAT = 490 / { int fchmodat(int fd, char *path, mode_t mode, int flag); }
SYS_FCHOWNAT = 491 / { int fchownat(int fd, char *path, uid_t uid, gid_t gid, int flag); }
SYS_FEXECVE = 492 / { int fexecve(int fd, char **argv, char **envv); }
SYS_FSTATAT = 493 / { int fstatat(int fd, char *path, struct stat *buf, int flag); }
SYS_FUTIMESAT = 494 / { int futimesat(int fd, char *path, struct timeval *times); }
SYS_LINKAT = 495 / { int linkat(int fd1, char *path1, int fd2, char *path2, int flag); }
SYS_MKDIRAT = 496 / { int mkdirat(int fd, char *path, mode_t mode); }
SYS_MKFIFOAT = 497 / { int mkfifoat(int fd, char *path, mode_t mode); }
SYS_MKNODAT = 498 / { int mknodat(int fd, char *path, mode_t mode, dev_t dev); }
SYS_OPENAT = 499 / { int openat(int fd, char *path, int flag, mode_t mode); }
SYS_READLINKAT = 500 / { int readlinkat(int fd, char *path, char *buf, size_t bufsize); }
SYS_RENAMEAT = 501 / { int renameat(int oldfd, char *old, int newfd, char *new); }
SYS_SYMLINKAT = 502 / { int symlinkat(char *path1, int fd, char *path2); }
SYS_UNLINKAT = 503 / { int unlinkat(int fd, char *path, int flag); }
SYS_POSIX_OPENPT = 504 / { int posix_openpt(int flags); }
SYS_GSSD_SYSCALL = 505 / { int gssd_syscall(char *path); }
SYS_JAIL_GET = 506 / { int jail_get(struct iovec *iovp, unsigned int iovcnt, int flags); }
SYS_JAIL_SET = 507 / { int jail_set(struct iovec *iovp, unsigned int iovcnt, int flags); }
SYS_JAIL_REMOVE = 508 / { int jail_remove(int jid); }
SYS_CLOSEFROM = 509 / { int closefrom(int lowfd); }
SYS___SEMCTL = 510 / { int __semctl(int semid, int semnum, int cmd, union semun *arg); }
SYS_MSGCTL = 511 / { int msgctl(int msqid, int cmd, struct msqid_ds *buf); }
SYS_SHMCTL = 512 / { int shmctl(int shmid, int cmd, struct shmid_ds *buf); }
SYS_LPATHCONF = 513 / { int lpathconf(char *path, int name); }
SYS___CAP_RIGHTS_GET = 515 / { int __cap_rights_get(int version, int fd, cap_rights_t *rightsp); }
SYS_CAP_ENTER = 516 / { int cap_enter(void); }
SYS_CAP_GETMODE = 517 / { int cap_getmode(u_int *modep); }
SYS_PDFORK = 518 / { int pdfork(int *fdp, int flags); }
SYS_PDKILL = 519 / { int pdkill(int fd, int signum); }
SYS_PDGETPID = 520 / { int pdgetpid(int fd, pid_t *pidp); }
SYS_PSELECT = 522 / { int pselect(int nd, fd_set *in, fd_set *ou, fd_set *ex, const struct timespec *ts, const sigset_t *sm); }
SYS_GETLOGINCLASS = 523 / { int getloginclass(char *namebuf, size_t namelen); }
SYS_SETLOGINCLASS = 524 / { int setloginclass(const char *namebuf); }
SYS_RCTL_GET_RACCT = 525 / { int rctl_get_racct(const void *inbufp, size_t inbuflen, void *outbufp, size_t outbuflen); }
SYS_RCTL_GET_RULES = 526 / { int rctl_get_rules(const void *inbufp, size_t inbuflen, void *outbufp, size_t outbuflen); }
SYS_RCTL_GET_LIMITS = 527 / { int rctl_get_limits(const void *inbufp, size_t inbuflen, void *outbufp, size_t outbuflen); }
SYS_RCTL_ADD_RULE = 528 / { int rctl_add_rule(const void *inbufp, size_t inbuflen, void *outbufp, size_t outbuflen); }
SYS_RCTL_REMOVE_RULE = 529 / { int rctl_remove_rule(const void *inbufp, size_t inbuflen, void *outbufp, size_t outbuflen); }
SYS_POSIX_FALLOCATE = 530 / { int posix_fallocate(int fd, off_t offset, off_t len); }
SYS_POSIX_FADVISE = 531 / { int posix_fadvise(int fd, off_t offset, off_t len, int advice); }
SYS_WAIT6 = 532 / { int wait6(idtype_t idtype, id_t id, int *status, int options, struct __wrusage *wrusage, siginfo_t *info); }
SYS_CAP_RIGHTS_LIMIT = 533 / { int cap_rights_limit(int fd, cap_rights_t *rightsp); }
SYS_CAP_IOCTLS_LIMIT = 534 / { int cap_ioctls_limit(int fd, const u_long *cmds, size_t ncmds); }
SYS_CAP_IOCTLS_GET = 535 / { ssize_t cap_ioctls_get(int fd, u_long *cmds, size_t maxcmds); }
SYS_CAP_FCNTLS_LIMIT = 536 / { int cap_fcntls_limit(int fd, uint32_t fcntlrights); }
SYS_CAP_FCNTLS_GET = 537 / { int cap_fcntls_get(int fd, uint32_t *fcntlrightsp); }
SYS_BINDAT = 538 / { int bindat(int fd, int s, caddr_t name, int namelen); }
SYS_CONNECTAT = 539 / { int connectat(int fd, int s, caddr_t name, int namelen); }
SYS_CHFLAGSAT = 540 / { int chflagsat(int fd, const char *path, u_long flags, int atflag); }
SYS_ACCEPT4 = 541 / { int accept4(int s, struct sockaddr * __restrict name, __socklen_t * __restrict anamelen, int flags); }
SYS_PIPE2 = 542 / { int pipe2(int *fildes, int flags); }
SYS_AIO_MLOCK = 543 / { int aio_mlock(struct aiocb *aiocbp); }
SYS_PROCCTL = 544 / { int procctl(idtype_t idtype, id_t id, int com, void *data); }
SYS_PPOLL = 545 / { int ppoll(struct pollfd *fds, u_int nfds, const struct timespec *ts, const sigset_t *set); }
SYS_FUTIMENS = 546 / { int futimens(int fd, struct timespec *times); }
SYS_UTIMENSAT = 547 / { int utimensat(int fd, char *path, struct timespec *times, int flag); }
SYS_NUMA_GETAFFINITY = 548 / { int numa_getaffinity(cpuwhich_t which, id_t id, struct vm_domain_policy_entry *policy); }
SYS_NUMA_SETAFFINITY = 549 / { int numa_setaffinity(cpuwhich_t which, id_t id, const struct vm_domain_policy_entry *policy); }
SYS_FDATASYNC = 550 / { int fdatasync(int fd); }
)