1 1.14 christos $NetBSD: syscalls.master,v 1.14 2024/09/28 19:35:55 christos Exp $ 2 1.1 ryo 3 1.1 ryo ; @(#)syscalls.master 8.1 (Berkeley) 7/19/93 4 1.1 ryo 5 1.1 ryo ; Derived from sys/compat/linux/arch/*/syscalls.master 6 1.1 ryo ; and from Linux include/uapi/asm-generic/unistd.h 7 1.1 ryo 8 1.1 ryo ; NetBSD aarch64 COMPAT_LINUX system call name/number "master" file. 9 1.1 ryo ; (See syscalls.conf to see what it is processed into.) 10 1.1 ryo ; 11 1.1 ryo ; Fields: number type [type-dependent ...] 12 1.1 ryo ; number system call number, must be in order 13 1.1 ryo ; type one of STD, OBSOL, UNIMPL, NODEF, NOARGS, or one of 14 1.1 ryo ; the compatibility options defined in syscalls.conf. 15 1.1 ryo ; 16 1.1 ryo ; types: 17 1.1 ryo ; STD always included 18 1.1 ryo ; OBSOL obsolete, not included in system 19 1.1 ryo ; UNIMPL unimplemented, not included in system 20 1.1 ryo ; NODEF included, but don't define the syscall number 21 1.1 ryo ; NOARGS included, but don't define the syscall args structure 22 1.1 ryo ; INDIR included, but don't define the syscall args structure 23 1.1 ryo ; and allow it to be "really" varargs. 24 1.1 ryo ; 25 1.1 ryo ; The compat options are defined in the syscalls.conf file, and the 26 1.1 ryo ; compat option name is prefixed to the syscall name. Other than 27 1.1 ryo ; that, they're like NODEF (for 'compat' options), or STD (for 28 1.1 ryo ; 'libcompat' options). 29 1.1 ryo ; 30 1.1 ryo ; The type-dependent arguments are as follows: 31 1.1 ryo ; For STD, NODEF, NOARGS, and compat syscalls: 32 1.1 ryo ; { pseudo-proto } [alias] 33 1.1 ryo ; For other syscalls: 34 1.1 ryo ; [comment] 35 1.1 ryo ; 36 1.1 ryo ; #ifdef's, etc. may be included, and are copied to the output files. 37 1.1 ryo ; #include's are copied to the syscall names and switch definition files only. 38 1.1 ryo 39 1.1 ryo #if defined(_KERNEL_OPT) 40 1.1 ryo #include "opt_sysv.h" 41 1.1 ryo #include "opt_compat_43.h" 42 1.1 ryo #include "opt_compat_netbsd.h" 43 1.1 ryo #endif 44 1.1 ryo 45 1.1 ryo #include <sys/param.h> 46 1.1 ryo #include <sys/poll.h> 47 1.1 ryo #include <sys/systm.h> 48 1.1 ryo #include <sys/signal.h> 49 1.1 ryo #include <sys/mount.h> 50 1.1 ryo #include <sys/syscallargs.h> 51 1.1 ryo #include <sys/time.h> 52 1.1 ryo 53 1.1 ryo #include <compat/sys/time.h> 54 1.1 ryo 55 1.1 ryo #include <compat/linux/common/linux_types.h> 56 1.8 rin #include <compat/linux/common/linux_ipc.h> 57 1.8 rin #include <compat/linux/common/linux_machdep.h> 58 1.7 rin #include <compat/linux/common/linux_misc.h> 59 1.1 ryo #include <compat/linux/common/linux_mmap.h> 60 1.1 ryo #include <compat/linux/common/linux_msg.h> 61 1.12 christos #include <compat/linux/common/linux_sched.h> 62 1.1 ryo #include <compat/linux/common/linux_sem.h> 63 1.1 ryo #include <compat/linux/common/linux_shm.h> 64 1.8 rin #include <compat/linux/common/linux_siginfo.h> 65 1.1 ryo #include <compat/linux/common/linux_signal.h> 66 1.13 christos #include <compat/linux/common/linux_mqueue.h> 67 1.1 ryo 68 1.1 ryo #include <compat/linux/linux_syscallargs.h> 69 1.1 ryo 70 1.1 ryo %% 71 1.1 ryo 72 1.1 ryo 0 UNIMPL io_setup 73 1.1 ryo 1 UNIMPL io_destroy 74 1.1 ryo 2 UNIMPL io_submit 75 1.1 ryo 3 UNIMPL io_cancel 76 1.1 ryo 4 UNIMPL io_getevents 77 1.1 ryo 5 STD { int|linux_sys||setxattr(char *path, char *name, \ 78 1.1 ryo void *value, size_t size, int flags); } 79 1.1 ryo 6 STD { int|linux_sys||lsetxattr(char *path, char *name, \ 80 1.1 ryo void *value, size_t size, int flags); } 81 1.1 ryo 7 STD { int|linux_sys||fsetxattr(int fd, char *name, \ 82 1.1 ryo void *value, size_t size, int flags); } 83 1.1 ryo 8 STD { ssize_t|linux_sys||getxattr(char *path, char *name, \ 84 1.1 ryo void *value, size_t size); } 85 1.1 ryo 9 STD { ssize_t|linux_sys||lgetxattr(char *path, char *name, \ 86 1.1 ryo void *value, size_t size); } 87 1.1 ryo 10 STD { ssize_t|linux_sys||fgetxattr(int fd, char *name, \ 88 1.1 ryo void *value, size_t size); } 89 1.1 ryo 11 STD { ssize_t|linux_sys||listxattr(char *path, char *list, \ 90 1.1 ryo size_t size); } 91 1.1 ryo 12 STD { ssize_t|linux_sys||llistxattr(char *path, char *list, \ 92 1.1 ryo size_t size); } 93 1.1 ryo 13 STD { ssize_t|linux_sys||flistxattr(int fd, char *list, \ 94 1.1 ryo size_t size); } 95 1.1 ryo 14 STD { int|linux_sys||removexattr(char *path, char *name); } 96 1.1 ryo 15 STD { int|linux_sys||lremovexattr(char *path, char *name); } 97 1.1 ryo 16 STD { int|linux_sys||fremovexattr(int fd, char *name); } 98 1.1 ryo 17 NOARGS { int|sys||__getcwd(char *bufp, size_t length); } 99 1.1 ryo 18 UNIMPL lookup_dcookie 100 1.1 ryo 19 STD { int|linux_sys||eventfd2(unsigned int initval, \ 101 1.1 ryo int flags); } 102 1.6 christos 20 STD { int|linux_sys||epoll_create1(int flags); } 103 1.6 christos 21 STD { int|linux_sys||epoll_ctl(int epfd, int op, int fd, \ 104 1.6 christos struct linux_epoll_event *event); } 105 1.6 christos 22 STD { int|linux_sys||epoll_pwait(int epfd, \ 106 1.6 christos struct linux_epoll_event *events, int maxevents, \ 107 1.6 christos int timeout, const linux_sigset_t *sigmask); } 108 1.1 ryo 23 NOARGS { int|sys||dup(int fd); } 109 1.1 ryo 24 STD { int|linux_sys||dup3(int from, int to, int flags); } 110 1.1 ryo 25 STD { int|linux_sys||fcntl(int fd, int cmd, void *arg); } 111 1.11 christos 26 STD { int|linux_sys||inotify_init1(int flags); } 112 1.11 christos 27 STD { int|linux_sys||inotify_add_watch(int fd, \ 113 1.11 christos const char *pathname, uint32_t mask); } 114 1.11 christos 28 STD { int|linux_sys||inotify_rm_watch(int fd, int wd); } 115 1.1 ryo 29 STD { int|linux_sys||ioctl(int fd, u_long com, \ 116 1.1 ryo void *data); } 117 1.1 ryo 30 UNIMPL ioprio_set 118 1.1 ryo 31 UNIMPL ioprio_get 119 1.1 ryo 32 NOARGS { int|sys||flock(int fd, int how); } 120 1.1 ryo 33 STD { int|linux_sys||mknodat(int fd, const char *path, \ 121 1.1 ryo linux_umode_t mode, unsigned dev); } 122 1.1 ryo 34 NOARGS { int|sys||mkdirat(int fd, const char *path, \ 123 1.1 ryo linux_umode_t mode); } 124 1.1 ryo 35 STD { int|linux_sys||unlinkat(int fd, const char *path, \ 125 1.1 ryo int flag); } 126 1.1 ryo 36 NOARGS { int|sys||symlinkat(const char *path1, int fd, \ 127 1.1 ryo const char *path2); } 128 1.1 ryo 37 STD { int|linux_sys||linkat(int fd1, const char *name1, \ 129 1.1 ryo int fd2, const char *name2, int flags); } 130 1.1 ryo 38 NOARGS { int|sys||renameat(int fromfd, const char *from, \ 131 1.1 ryo int tofd, const char *to); } 132 1.1 ryo 39 UNIMPL umount2 133 1.1 ryo 40 UNIMPL mount 134 1.1 ryo 41 UNIMPL pivot_root 135 1.1 ryo 42 UNIMPL nfsservctl 136 1.1 ryo 43 STD { int|linux_sys||statfs(const char *path, \ 137 1.1 ryo struct linux_statfs *sp); } 138 1.1 ryo 44 STD { int|linux_sys||fstatfs(int fd, \ 139 1.1 ryo struct linux_statfs *sp); } 140 1.1 ryo 45 STD { int|linux_sys||truncate64(const char *path, \ 141 1.1 ryo off_t length); } 142 1.1 ryo 46 STD { int|linux_sys||ftruncate64(unsigned int fd, \ 143 1.1 ryo off_t length); } 144 1.1 ryo 47 STD { int|linux_sys||fallocate(int fd, int mode, \ 145 1.1 ryo off_t offset, off_t len); } 146 1.1 ryo 48 STD { int|linux_sys||faccessat(int fd, const char *path, \ 147 1.1 ryo int amode); } 148 1.1 ryo 49 NOARGS { int|sys||chdir(const char *path); } 149 1.1 ryo 50 NOARGS { int|sys||fchdir(int fd); } 150 1.1 ryo 51 NOARGS { int|sys||chroot(char *path); } 151 1.1 ryo 52 NOARGS { int|sys||fchmod(int fd, linux_umode_t mode); } 152 1.1 ryo 53 STD { int|linux_sys||fchmodat(int fd, const char *path, \ 153 1.1 ryo linux_umode_t mode); } 154 1.1 ryo 54 STD { int|linux_sys||fchownat(int fd, const char *path, \ 155 1.1 ryo uid_t owner, gid_t group, int flag); } 156 1.1 ryo 55 NOARGS { int|sys||__posix_fchown(int fd, uid_t uid, \ 157 1.1 ryo gid_t gid); } 158 1.1 ryo 56 STD { int|linux_sys||openat(int fd, const char *path, \ 159 1.1 ryo int flags, ... linux_umode_t mode); } 160 1.1 ryo 57 NOARGS { int|sys||close(int fd); } 161 1.1 ryo 58 UNIMPL vhangup 162 1.1 ryo 59 STD { int|linux_sys||pipe2(int *pfds, int flags); } 163 1.1 ryo 60 UNIMPL quotactl 164 1.1 ryo 61 STD { int|linux_sys||getdents64(int fd, \ 165 1.1 ryo struct linux_dirent64 *dent, unsigned int count); } 166 1.1 ryo 62 NOARGS { long|compat_43_sys||lseek(int fd, long offset, \ 167 1.1 ryo int whence); } 168 1.1 ryo 63 NOARGS { ssize_t|sys||read(int fd, void *buf, size_t nbyte); } 169 1.1 ryo 64 NOARGS { ssize_t|sys||write(int fd, const void *buf, \ 170 1.1 ryo size_t nbyte); } 171 1.1 ryo 65 NOARGS { ssize_t|sys||readv(int fd, \ 172 1.1 ryo const struct iovec *iovp, int iovcnt); } 173 1.1 ryo 66 NOARGS { ssize_t|sys||writev(int fd, \ 174 1.1 ryo const struct iovec *iovp, int iovcnt); } 175 1.1 ryo 67 STD { int|linux_sys||pread(int fd, char *buf, \ 176 1.1 ryo size_t nbyte, off_t offset); } 177 1.1 ryo 68 STD { int|linux_sys||pwrite(int fd, char *buf, \ 178 1.1 ryo size_t nbyte, off_t offset); } 179 1.1 ryo 69 STD { int|linux_sys||preadv(int fd, \ 180 1.1 ryo const struct iovec *iovp, int iovcnt, \ 181 1.1 ryo unsigned long off_lo, unsigned long off_hi); } 182 1.1 ryo 70 STD { int|linux_sys||pwritev(int fd, \ 183 1.1 ryo const struct iovcnt *iovp, int iovcnt, \ 184 1.1 ryo unsigned long off_lo, unsigned long off_hi); } 185 1.1 ryo 71 UNIMPL sendfile 186 1.1 ryo 72 STD { int|linux_sys||pselect6(int nfds, fd_set *readfds, \ 187 1.1 ryo fd_set *writefds, fd_set *exceptfds, \ 188 1.1 ryo struct linux_timespec *timeout, \ 189 1.1 ryo linux_sized_sigset_t *ss); } 190 1.1 ryo 73 STD { int|linux_sys||ppoll(struct pollfd *fds, u_int nfds, \ 191 1.1 ryo struct linux_timespec *timeout, \ 192 1.1 ryo linux_sigset_t *sigset); } 193 1.1 ryo 74 UNIMPL signalfd4 194 1.1 ryo 75 UNIMPL vmsplice 195 1.1 ryo 76 UNIMPL splice 196 1.1 ryo 77 UNIMPL tee 197 1.1 ryo 78 NOARGS { ssize_t|sys||readlinkat(int fd, const char *path, \ 198 1.1 ryo char *buf, size_t bufsize); } 199 1.1 ryo 79 STD { int|linux_sys||fstatat64(int fd, const char *path, \ 200 1.1 ryo struct linux_stat *sp, int flag); } 201 1.1 ryo 80 STD { int|linux_sys||fstat64(int fd, \ 202 1.1 ryo struct linux_stat *sp); } 203 1.1 ryo 81 NOARGS { int|sys||sync(void); } 204 1.1 ryo 82 NOARGS { int|sys||fsync(int fd); } 205 1.1 ryo 83 STD { int|linux_sys||fdatasync(int fd); } 206 1.14 christos 84 STD { int|linux_sys||sync_file_range(int fd, \ 207 1.14 christos off_t offset, off_t nbytes, unsigned int flags); } 208 1.1 ryo 85 STD { int|linux_sys||timerfd_create(clockid_t clock_id, \ 209 1.1 ryo int flags); } 210 1.1 ryo 86 STD { int|linux_sys||timerfd_settime(int fd, int flags, \ 211 1.1 ryo const struct linux_itimerspec *tim, \ 212 1.1 ryo struct linux_itimerspec *otim); } 213 1.1 ryo 87 STD { int|linux_sys||timerfd_gettime(int fd, \ 214 1.1 ryo struct linux_itimerspec *tim); } 215 1.1 ryo 88 STD { int|linux_sys||utimensat(int fd, const char *path, \ 216 1.1 ryo struct linux_timespec *times, int flag); } 217 1.1 ryo 89 NOARGS { int|sys||acct(char *path); } 218 1.1 ryo 90 UNIMPL capget 219 1.1 ryo 91 UNIMPL capset 220 1.1 ryo 92 STD { int|linux_sys||personality(unsigned long per); } 221 1.1 ryo 93 STD { int|linux_sys||exit(int rval); } 222 1.1 ryo 94 STD { int|linux_sys||exit_group(int error_code); } 223 1.11 christos 95 STD { int|linux_sys||waitid(int idtype, id_t id, \ 224 1.10 christos linux_siginfo_t *infop, int options, \ 225 1.10 christos struct rusage50 *rusage); } 226 1.1 ryo 96 STD { int|linux_sys||set_tid_address(int *tid); } 227 1.1 ryo 97 UNIMPL unshare 228 1.1 ryo 98 STD { int|linux_sys||futex(int *uaddr, int op, int val, \ 229 1.1 ryo const struct linux_timespec *timeout, int *uaddr2, \ 230 1.1 ryo int val3); } 231 1.1 ryo ; 232 1.1 ryo ; The NetBSD native robust list calls have different 233 1.1 ryo ; argument names / types, but they are ABI-compatible 234 1.1 ryo ; with Linux. 235 1.1 ryo ; 236 1.1 ryo 99 NOARGS { int|sys||__futex_set_robust_list(void *head, \ 237 1.1 ryo size_t len); } 238 1.1 ryo 100 NOARGS { int|sys||__futex_get_robust_list(lwpid_t lwpid, \ 239 1.1 ryo void **headp, size_t *lenp); } 240 1.1 ryo 101 STD { int|linux_sys||nanosleep( \ 241 1.1 ryo const struct linux_timespec *rqtp, \ 242 1.1 ryo struct linux_timespec *rmtp); } 243 1.1 ryo 102 NOARGS { int|compat_50_sys||getitimer(int which, \ 244 1.1 ryo struct itimerval50 *itv); } 245 1.1 ryo 103 NOARGS { int|compat_50_sys||setitimer(int which, \ 246 1.1 ryo struct itimerval50 *itv, \ 247 1.1 ryo struct itimerval50 *oitv); } 248 1.1 ryo 104 UNIMPL kexec_load 249 1.1 ryo 105 UNIMPL init_module 250 1.1 ryo 106 UNIMPL delete_module 251 1.1 ryo 107 STD { int|linux_sys||timer_create(clockid_t clockid, \ 252 1.1 ryo struct linux_sigevent *evp, timer_t *timerid); } 253 1.1 ryo 108 STD { int|linux_sys||timer_gettime(timer_t timerid, \ 254 1.1 ryo struct linux_itimerspec *tim); } 255 1.1 ryo 109 NOARGS { int|sys||timer_getoverrun(timer_t timerid); } 256 1.1 ryo 110 STD { int|linux_sys||timer_settime(timer_t timerid, \ 257 1.1 ryo int flags, const struct linux_itimerspec *tim, \ 258 1.1 ryo struct linux_itimerspec *otim); } 259 1.1 ryo 111 NOARGS { int|sys||timer_delete(timer_t timerid); } 260 1.1 ryo 112 STD { int|linux_sys||clock_settime(clockid_t which, \ 261 1.1 ryo struct linux_timespec *tp); } 262 1.1 ryo 113 STD { int|linux_sys||clock_gettime(clockid_t which, \ 263 1.1 ryo struct linux_timespec *tp); } 264 1.1 ryo 114 STD { int|linux_sys||clock_getres(clockid_t which, \ 265 1.1 ryo struct linux_timespec *tp); } 266 1.1 ryo 115 STD { int|linux_sys||clock_nanosleep(clockid_t which, \ 267 1.1 ryo int flags, struct linux_timespec *rqtp, \ 268 1.1 ryo struct linux_timespec *rmtp); } 269 1.1 ryo 116 UNIMPL syslog 270 1.1 ryo 117 STD { int|linux_sys||ptrace(long request, long pid, \ 271 1.1 ryo long addr, long data); } 272 1.1 ryo 118 STD { int|linux_sys||sched_setparam(pid_t pid, \ 273 1.1 ryo const struct linux_sched_param *sp); } 274 1.1 ryo 119 STD { int|linux_sys||sched_setscheduler(pid_t pid, \ 275 1.1 ryo int policy, const struct linux_sched_param *sp); } 276 1.1 ryo 120 STD { int|linux_sys||sched_getscheduler(pid_t pid); } 277 1.1 ryo 121 STD { int|linux_sys||sched_getparam(pid_t pid, \ 278 1.1 ryo struct linux_sched_param *sp); } 279 1.1 ryo 122 STD { int|linux_sys||sched_setaffinity(pid_t pid, \ 280 1.1 ryo unsigned int len, unsigned long *mask); } 281 1.1 ryo 123 STD { int|linux_sys||sched_getaffinity(pid_t pid, \ 282 1.1 ryo unsigned int len, unsigned long *mask); } 283 1.1 ryo 124 STD { int|linux_sys||sched_yield(void); } 284 1.1 ryo 125 STD { int|linux_sys||sched_get_priority_max(int policy); } 285 1.1 ryo 126 STD { int|linux_sys||sched_get_priority_min(int policy); } 286 1.1 ryo 127 UNIMPL sys_sched_rr_get_interval 287 1.1 ryo 128 UNIMPL restart_syscall 288 1.1 ryo 129 STD { int|linux_sys||kill(int pid, int signum); } 289 1.1 ryo 130 STD { int|linux_sys||tkill(int tid, int sig); } 290 1.1 ryo 131 STD { int|linux_sys||tgkill(int tgid, int tid, int sig); } 291 1.1 ryo 132 STD { int|linux_sys||sigaltstack( \ 292 1.1 ryo const struct linux_sigaltstack *ss, \ 293 1.1 ryo struct linux_sigaltstack *oss); } 294 1.1 ryo 133 STD { int|linux_sys||rt_sigsuspend(linux_sigset_t *unewset, \ 295 1.1 ryo size_t sigsetsize); } 296 1.1 ryo 134 STD { int|linux_sys||rt_sigaction(int signum, \ 297 1.1 ryo const struct linux_sigaction *nsa, \ 298 1.1 ryo struct linux_sigaction *osa, \ 299 1.1 ryo size_t sigsetsize); } 300 1.1 ryo 135 STD { int|linux_sys||rt_sigprocmask(int how, \ 301 1.1 ryo const linux_sigset_t *set, \ 302 1.1 ryo linux_sigset_t *oset, \ 303 1.1 ryo size_t sigsetsize); } 304 1.1 ryo 136 STD { int|linux_sys||rt_sigpending( \ 305 1.1 ryo linux_sigset_t *set, \ 306 1.1 ryo size_t sigsetsize); } 307 1.1 ryo 137 STD { int|linux_sys||rt_sigtimedwait( \ 308 1.1 ryo const linux_sigset_t *set, \ 309 1.1 ryo linux_siginfo_t *info, \ 310 1.1 ryo const struct linux_timespec *timeout); } 311 1.1 ryo 138 UNIMPL rt_sigqueueinfo 312 1.1 ryo 139 NOARGS { int|linux_sys||rt_sigreturn(void); } 313 1.1 ryo 140 NOARGS { int|sys||setpriority(int which, int who, int prio); } 314 1.1 ryo 141 STD { int|linux_sys||getpriority(int which, int who); } 315 1.1 ryo 142 STD { int|linux_sys||reboot(int magic1, int magic2, \ 316 1.1 ryo int cmd, void *arg); } 317 1.1 ryo 143 NOARGS { int|sys||setregid(gid_t rgid, gid_t egid); } 318 1.1 ryo 144 NOARGS { int|sys||setgid(gid_t gid); } 319 1.1 ryo 145 NOARGS { int|sys||setreuid(uid_t ruid, uid_t euid); } 320 1.1 ryo 146 NOARGS { int|sys||setuid(uid_t uid); } 321 1.1 ryo 147 STD { int|linux_sys||setresuid(uid_t ruid, uid_t euid, \ 322 1.1 ryo uid_t suid); } 323 1.1 ryo 148 STD { int|linux_sys||getresuid(uid_t *ruid, uid_t *euid, \ 324 1.1 ryo uid_t *suid); } 325 1.1 ryo 149 STD { int|linux_sys||setresgid(gid_t rgid, gid_t egid, \ 326 1.1 ryo gid_t sgid); } 327 1.1 ryo 150 STD { int|linux_sys||getresgid(gid_t *rgid, gid_t *egid, \ 328 1.1 ryo gid_t *sgid); } 329 1.1 ryo 151 STD { int|linux_sys||setfsuid(uid_t uid); } 330 1.1 ryo 152 STD { int|linux_sys||setfsgid(gid_t gid); } 331 1.1 ryo 153 STD { int|linux_sys||times(struct times *tms); } 332 1.1 ryo 154 NOARGS { int|sys||setpgid(int pid, int pgid); } 333 1.1 ryo 155 NOARGS { pid_t|sys||getpgid(pid_t pid); } 334 1.1 ryo 156 NOARGS { pid_t|sys||getsid(pid_t pid); } 335 1.1 ryo 157 NOARGS { int|sys||setsid(void); } 336 1.1 ryo 158 NOARGS { int|sys||getgroups(int gidsetsize, gid_t *gidset); } 337 1.1 ryo 159 NOARGS { int|sys||setgroups(int gidsetsize, gid_t *gidset); } 338 1.1 ryo 160 STD { int|linux_sys||uname(struct linux_utsname *up); } 339 1.1 ryo 161 NOARGS { int|compat_43_sys||sethostname(char *hostname, \ 340 1.1 ryo u_int len);} 341 1.1 ryo 162 STD { int|linux_sys||setdomainname(char *domainname, \ 342 1.1 ryo int len); } 343 1.1 ryo 163 STD { int|linux_sys||getrlimit(int which, \ 344 1.1 ryo struct rlimit *rlp); } 345 1.1 ryo 164 STD { int|linux_sys||setrlimit(u_int which, \ 346 1.1 ryo struct rlimit *rlp); } 347 1.1 ryo 165 NOARGS { int|compat_50_sys||getrusage(int who, \ 348 1.1 ryo struct rusage50 *rusage); } 349 1.1 ryo 166 NOARGS { int|sys||umask(int newmask); } 350 1.1 ryo 167 UNIMPL prctl 351 1.12 christos 168 STD { int|linux_sys||getcpu(unsigned int *cpu, \ 352 1.12 christos unsigned int *node, \ 353 1.12 christos struct linux_getcpu_cache *tcache); } 354 1.1 ryo 169 STD { int|linux_sys||gettimeofday(struct timeval50 *tp, \ 355 1.1 ryo struct timezone *tzp); } 356 1.1 ryo 170 STD { int|linux_sys||settimeofday(struct timeval50 *tp, \ 357 1.1 ryo struct timezone *tzp); } 358 1.1 ryo 171 UNIMPL adjtimex 359 1.1 ryo 172 STD { pid_t|sys||getpid(void); } 360 1.1 ryo 173 STD { pid_t|sys||getppid(void); } 361 1.1 ryo 174 NOARGS { uid_t|sys||getuid(void); } 362 1.1 ryo 175 NOARGS { uid_t|sys||geteuid(void); } 363 1.1 ryo 176 NOARGS { gid_t|sys||getgid(void); } 364 1.1 ryo 177 NOARGS { gid_t|sys||getegid(void); } 365 1.1 ryo 178 STD { pid_t|linux_sys||gettid(void); } 366 1.1 ryo 179 STD { int|linux_sys||sysinfo(struct linux_sysinfo *arg); } 367 1.13 christos 180 STD { linux_mqd_t|linux_sys||mq_open(const char *name, \ 368 1.13 christos int oflag, linux_umode_t mode, \ 369 1.13 christos struct linux_mq_attr *attr); } 370 1.13 christos 181 STD { int|linux_sys||mq_unlink(const char *name); } 371 1.13 christos 182 STD { int|linux_sys||mq_timedsend(linux_mqd_t mqdes, \ 372 1.13 christos const char *msg_ptr, size_t msg_len, \ 373 1.13 christos unsigned int msg_prio, \ 374 1.13 christos const struct linux_timespec *abs_timeout); } 375 1.13 christos 183 STD { ssize_t|linux_sys||mq_timedreceive(linux_mqd_t mqdes, \ 376 1.13 christos char *msg_ptr, size_t msg_len, \ 377 1.13 christos unsigned int *msg_prio, \ 378 1.13 christos const struct linux_timespec *abs_timeout); } 379 1.13 christos 184 STD { int|linux_sys||mq_notify(linux_mqd_t mqdes, \ 380 1.13 christos const struct linux_sigevent *sevp); } 381 1.13 christos 185 STD { int|linux_sys||mq_getsetattr(linux_mqd_t mqdes, \ 382 1.13 christos const struct linux_mq_attr *newattr, \ 383 1.13 christos struct linux_mq_attr *oldattr); } 384 1.1 ryo #ifdef SYSVMSG 385 1.1 ryo 186 NOARGS { int|sys||msgget(key_t key, int msgflg); } 386 1.1 ryo 187 NOARGS { int|linux_sys||msgctl(int msqid, int cmd, \ 387 1.1 ryo struct linux_msqid_ds *buf); } 388 1.1 ryo 188 NOARGS { ssize_t|sys||msgrcv(int msqid, void *msgp, \ 389 1.1 ryo size_t msgsz, long msgtyp, int msgflg); } 390 1.1 ryo 189 NOARGS { int|sys||msgsnd(int msqid, void *msgp, size_t msgsz, \ 391 1.1 ryo int msgflg); } 392 1.1 ryo #else 393 1.1 ryo 186 UNIMPL msgget 394 1.1 ryo 187 UNIMPL msgctl 395 1.1 ryo 188 UNIMPL msgrcv 396 1.1 ryo 189 UNIMPL msgsnd 397 1.1 ryo #endif 398 1.1 ryo #ifdef SYSVSEM 399 1.1 ryo 190 NOARGS { int|sys||semget(key_t key, int nsems, int semflg); } 400 1.1 ryo 191 STD { int|linux_sys||semctl(int semid, int semnum, \ 401 1.1 ryo int cmd, union linux_semun arg); } 402 1.1 ryo 192 UNIMPL semtimedop 403 1.1 ryo 193 NOARGS { int|sys||semop(int semid, struct sembuf *sops, \ 404 1.1 ryo size_t nsops); } 405 1.1 ryo #else 406 1.1 ryo 190 UNIMPL semget 407 1.1 ryo 191 UNIMPL semctl 408 1.1 ryo 192 UNIMPL semtimedop 409 1.1 ryo 193 UNIMPL semop 410 1.1 ryo #endif 411 1.1 ryo #ifdef SYSVSEM 412 1.1 ryo 194 NOARGS { int|linux_sys||shmget(key_t key, size_t size, \ 413 1.1 ryo int shmflg); } 414 1.1 ryo 195 NOARGS { int|linux_sys||shmctl(int shmid, int cmd, \ 415 1.1 ryo struct linux_shmid_ds *buf); } 416 1.1 ryo 196 NOARGS { int|sys||shmat(int shmid, void *shmaddr, int shmflg); } 417 1.1 ryo 197 NOARGS { int|sys||shmdt(const void *shmaddr); } 418 1.1 ryo #else 419 1.1 ryo 194 UNIMPL shmget 420 1.1 ryo 195 UNIMPL shmctl 421 1.1 ryo 196 UNIMPL shmat 422 1.1 ryo 197 UNIMPL shmdt 423 1.1 ryo #endif 424 1.1 ryo 198 STD { int|linux_sys||socket(int domain, \ 425 1.1 ryo int type, int protocol); } 426 1.1 ryo 199 STD { int|linux_sys||socketpair(int domain, int type, \ 427 1.1 ryo int protocol, int *rsv); } 428 1.1 ryo 200 STD { int|linux_sys||bind(int s, \ 429 1.1 ryo const struct osockaddr *name, \ 430 1.1 ryo unsigned int namelen); } 431 1.1 ryo 201 NOARGS { int|sys||listen(int s, int backlog); } 432 1.1 ryo 202 STD { int|linux_sys||accept(int s, struct osockaddr *name, \ 433 1.1 ryo int *anamelen); } oaccept 434 1.1 ryo 203 STD { int|linux_sys||connect(int s, \ 435 1.1 ryo const struct osockaddr *name, \ 436 1.1 ryo unsigned int namelen); } 437 1.1 ryo 204 STD { int|linux_sys||getsockname(int fdec, void *asa, \ 438 1.1 ryo int *alen); } 439 1.1 ryo 205 STD { int|linux_sys||getpeername(int fdes, \ 440 1.1 ryo struct sockaddr *asa, unsigned int *alen); } 441 1.1 ryo 206 STD { ssize_t|linux_sys||sendto(int s, void *msg, int len, \ 442 1.1 ryo int flags, struct osockaddr *to, int tolen); } 443 1.1 ryo 207 STD { ssize_t|linux_sys||recvfrom(int s, void *buf, \ 444 1.1 ryo size_t len, int flags, struct osockaddr *from, \ 445 1.1 ryo unsigned int *fromlenaddr); } 446 1.1 ryo 208 STD { int|linux_sys||setsockopt(int s, int level, \ 447 1.1 ryo int optname, void *optval, int optlen); } 448 1.1 ryo 209 STD { int|linux_sys||getsockopt(int s, int level, \ 449 1.1 ryo int optname, void *optval, int *optlen); } 450 1.1 ryo 210 NOARGS { int|sys||shutdown(int s, int how); } 451 1.1 ryo 211 STD { int|linux_sys||sendmsg(int s, \ 452 1.1 ryo const struct linux_msghdr *msg, int flags); } 453 1.1 ryo 212 STD { ssize_t|linux_sys||recvmsg(int s, \ 454 1.1 ryo struct linux_msghdr *msg, int flags); } 455 1.9 christos 213 STD { ssize_t|linux_sys||readahead(int fd, off_t offset, \ 456 1.9 christos size_t count); } 457 1.1 ryo 214 STD { int|linux_sys||brk(char *nsize); } 458 1.1 ryo 215 NOARGS { int|sys||munmap(void *addr, size_t len); } 459 1.1 ryo 216 STD { void *|linux_sys||mremap(void *old_address, \ 460 1.1 ryo size_t old_size, size_t new_size, u_long flags); } 461 1.1 ryo 217 UNIMPL add_key 462 1.1 ryo 218 UNIMPL request_key 463 1.1 ryo 219 UNIMPL keyctl 464 1.1 ryo 220 STD { int|linux_sys||clone(int flags, void *stack, \ 465 1.1 ryo void *parent_tidptr, void *child_tidptr, void *tls); } 466 1.1 ryo 221 NOARGS { int|sys||execve(const char *path, char **argp, \ 467 1.1 ryo char **envp); } 468 1.1 ryo 222 NOARGS { linux_off_t|linux_sys||mmap(unsigned long addr, \ 469 1.1 ryo size_t len, int prot, int flags, int fd, \ 470 1.1 ryo linux_off_t offset); } 471 1.1 ryo 223 STD { int|linux_sys||fadvise64(int fd, off_t offset, \ 472 1.1 ryo size_t len, int advice); } 473 1.1 ryo 224 STD { int|linux_sys||swapon(char *name); } 474 1.1 ryo 225 STD { int|linux_sys||swapoff(const char *path); } 475 1.1 ryo 226 STD { int|linux_sys||mprotect(const void *start, \ 476 1.1 ryo unsigned long len, int prot); } 477 1.1 ryo 227 NOARGS { int|sys|13|msync(void *addr, size_t len, int flags); } 478 1.1 ryo 228 NOARGS { int|sys||mlock(void *addr, size_t len); } 479 1.1 ryo 229 NOARGS { int|sys||munlock(void *addr, size_t len); } 480 1.1 ryo 230 NOARGS { int|sys||mlockall(int flags); } 481 1.1 ryo 231 NOARGS { int|sys||munlockall(void); } 482 1.1 ryo 232 NOARGS { int|sys||mincore(void *addr, size_t len, char *vec); } 483 1.1 ryo 233 NOARGS { int|sys||madvise(void *addr, size_t len, int behav); } 484 1.1 ryo 234 UNIMPL remap_file_pages 485 1.1 ryo 235 UNIMPL mbind 486 1.1 ryo 236 UNIMPL get_mempolicy 487 1.1 ryo 237 UNIMPL set_mempolicy 488 1.1 ryo 238 UNIMPL migrate_pages 489 1.1 ryo 239 UNIMPL move_pages 490 1.1 ryo 240 UNIMPL rt_tgsigqueueinfo 491 1.1 ryo 241 UNIMPL perf_event_open 492 1.1 ryo 242 STD { int|linux_sys||accept4(int s, \ 493 1.1 ryo struct osockaddr *name, \ 494 1.1 ryo int *anamelen, int flags); } 495 1.1 ryo 243 STD { int|linux_sys||recvmmsg(int s, \ 496 1.1 ryo struct linux_mmsghdr *msgvec, unsigned int vlen, \ 497 1.1 ryo unsigned int flags, struct timespec *timeout); } 498 1.1 ryo 244 UNIMPL arch_specific_syscall 499 1.1 ryo 245 UNIMPL 500 1.1 ryo 246 UNIMPL 501 1.1 ryo 247 UNIMPL 502 1.1 ryo 248 UNIMPL 503 1.1 ryo 249 UNIMPL 504 1.1 ryo 250 UNIMPL 505 1.1 ryo 251 UNIMPL 506 1.1 ryo 252 UNIMPL 507 1.1 ryo 253 UNIMPL 508 1.1 ryo 254 UNIMPL 509 1.1 ryo 255 UNIMPL 510 1.1 ryo 256 UNIMPL 511 1.1 ryo 257 UNIMPL 512 1.1 ryo 258 UNIMPL 513 1.1 ryo 259 UNIMPL 514 1.1 ryo 260 STD { int|linux_sys||wait4(int pid, int *status, \ 515 1.1 ryo int options, struct rusage50 *rusage); } 516 1.4 ryo 261 STD { int|linux_sys||prlimit64(pid_t pid, int which, \ 517 1.4 ryo struct rlimit *new_rlp, struct rlimit *old_rlp); } 518 1.1 ryo 262 UNIMPL fanotify_init 519 1.1 ryo 263 UNIMPL fanotify_mark 520 1.1 ryo 264 UNIMPL name_to_handle_at 521 1.1 ryo 265 UNIMPL open_by_handle_at 522 1.1 ryo 266 UNIMPL clock_adjtime 523 1.14 christos 267 STD { int|linux_sys||syncfs(int fd); } 524 1.1 ryo 268 UNIMPL setns 525 1.1 ryo 269 STD { int|linux_sys||sendmmsg(int s, \ 526 1.1 ryo struct linux_mmsghdr *msgvec, unsigned int vlen, \ 527 1.1 ryo unsigned int flags); } 528 1.1 ryo 270 UNIMPL process_vm_readv 529 1.1 ryo 271 UNIMPL process_vm_writev 530 1.1 ryo 272 UNIMPL kcmp 531 1.1 ryo 273 UNIMPL finit_module 532 1.1 ryo 274 UNIMPL sched_setattr 533 1.1 ryo 275 UNIMPL sched_getattr 534 1.14 christos 276 STD { int|linux_sys||renameat2(int fromfd, \ 535 1.14 christos const char *from, int tofd, const char *to, \ 536 1.14 christos unsigned int flags); } 537 1.1 ryo 277 UNIMPL seccomp 538 1.2 ryo 278 NOARGS { ssize_t|sys||getrandom(void *buf, size_t buflen, \ 539 1.2 ryo unsigned int flags); } 540 1.5 christos 279 STD { int|linux_sys||memfd_create(const char *name, \ 541 1.5 christos unsigned int flags); } 542 1.1 ryo 280 UNIMPL bpf 543 1.1 ryo 281 UNIMPL execveat 544 1.1 ryo 282 UNIMPL userfaultfd 545 1.1 ryo 283 UNIMPL membarrier 546 1.1 ryo 284 UNIMPL mlock2 547 1.14 christos 285 STD { ssize_t|linux_sys||copy_file_range(int fd_in, \ 548 1.14 christos off_t * off_in, int fd_out, off_t * off_out, \ 549 1.14 christos size_t len, unsigned int flags); } 550 1.1 ryo 286 UNIMPL preadv2 551 1.1 ryo 287 UNIMPL pwritev2 552 1.1 ryo 288 UNIMPL pkey_mprotect 553 1.1 ryo 289 UNIMPL pkey_alloc 554 1.1 ryo 290 UNIMPL pkey_free 555 1.3 ryo 291 STD { int|linux_sys||statx(int fd, const char *path, \ 556 1.3 ryo int flag, unsigned int mask, \ 557 1.3 ryo struct linux_statx *sp); } 558 1.1 ryo 292 UNIMPL io_pgetevents 559 1.1 ryo 293 UNIMPL rseq 560 1.1 ryo 294 UNIMPL kexec_file_load 561 1.1 ryo 295 UNIMPL 562 1.1 ryo 296 UNIMPL 563 1.1 ryo 297 UNIMPL 564 1.1 ryo 298 UNIMPL 565 1.1 ryo 299 UNIMPL 566 1.1 ryo 300 UNIMPL 567 1.1 ryo 301 UNIMPL 568 1.1 ryo 302 UNIMPL 569 1.1 ryo 303 UNIMPL 570 1.1 ryo 304 UNIMPL 571 1.1 ryo 305 UNIMPL 572 1.1 ryo 306 UNIMPL 573 1.1 ryo 307 UNIMPL 574 1.1 ryo 308 UNIMPL 575 1.1 ryo 309 UNIMPL 576 1.1 ryo 310 UNIMPL 577 1.1 ryo 311 UNIMPL 578 1.1 ryo 312 UNIMPL 579 1.1 ryo 313 UNIMPL 580 1.1 ryo 314 UNIMPL 581 1.1 ryo 315 UNIMPL 582 1.1 ryo 316 UNIMPL 583 1.1 ryo 317 UNIMPL 584 1.1 ryo 318 UNIMPL 585 1.1 ryo 319 UNIMPL 586 1.1 ryo 320 UNIMPL 587 1.1 ryo 321 UNIMPL 588 1.1 ryo 322 UNIMPL 589 1.1 ryo 323 UNIMPL 590 1.1 ryo 324 UNIMPL 591 1.1 ryo 325 UNIMPL 592 1.1 ryo 326 UNIMPL 593 1.1 ryo 327 UNIMPL 594 1.1 ryo 328 UNIMPL 595 1.1 ryo 329 UNIMPL 596 1.1 ryo 330 UNIMPL 597 1.1 ryo 331 UNIMPL 598 1.1 ryo 332 UNIMPL 599 1.1 ryo 333 UNIMPL 600 1.1 ryo 334 UNIMPL 601 1.1 ryo 335 UNIMPL 602 1.1 ryo 336 UNIMPL 603 1.1 ryo 337 UNIMPL 604 1.1 ryo 338 UNIMPL 605 1.1 ryo 339 UNIMPL 606 1.1 ryo 340 UNIMPL 607 1.1 ryo 341 UNIMPL 608 1.1 ryo 342 UNIMPL 609 1.1 ryo 343 UNIMPL 610 1.1 ryo 344 UNIMPL 611 1.1 ryo 345 UNIMPL 612 1.1 ryo 346 UNIMPL 613 1.1 ryo 347 UNIMPL 614 1.1 ryo 348 UNIMPL 615 1.1 ryo 349 UNIMPL 616 1.1 ryo 350 UNIMPL 617 1.1 ryo 351 UNIMPL 618 1.1 ryo 352 UNIMPL 619 1.1 ryo 353 UNIMPL 620 1.1 ryo 354 UNIMPL 621 1.1 ryo 355 UNIMPL 622 1.1 ryo 356 UNIMPL 623 1.1 ryo 357 UNIMPL 624 1.1 ryo 358 UNIMPL 625 1.1 ryo 359 UNIMPL 626 1.1 ryo 360 UNIMPL 627 1.1 ryo 361 UNIMPL 628 1.1 ryo 362 UNIMPL 629 1.1 ryo 363 UNIMPL 630 1.1 ryo 364 UNIMPL 631 1.1 ryo 365 UNIMPL 632 1.1 ryo 366 UNIMPL 633 1.1 ryo 367 UNIMPL 634 1.1 ryo 368 UNIMPL 635 1.1 ryo 369 UNIMPL 636 1.1 ryo 370 UNIMPL 637 1.1 ryo 371 UNIMPL 638 1.1 ryo 372 UNIMPL 639 1.1 ryo 373 UNIMPL 640 1.1 ryo 374 UNIMPL 641 1.1 ryo 375 UNIMPL 642 1.1 ryo 376 UNIMPL 643 1.1 ryo 377 UNIMPL 644 1.1 ryo 378 UNIMPL 645 1.1 ryo 379 UNIMPL 646 1.1 ryo 380 UNIMPL 647 1.1 ryo 381 UNIMPL 648 1.1 ryo 382 UNIMPL 649 1.1 ryo 383 UNIMPL 650 1.1 ryo 384 UNIMPL 651 1.1 ryo 385 UNIMPL 652 1.1 ryo 386 UNIMPL 653 1.1 ryo 387 UNIMPL 654 1.1 ryo 388 UNIMPL 655 1.1 ryo 389 UNIMPL 656 1.1 ryo 390 UNIMPL 657 1.1 ryo 391 UNIMPL 658 1.1 ryo 392 UNIMPL 659 1.1 ryo 393 UNIMPL 660 1.1 ryo 394 UNIMPL 661 1.1 ryo 395 UNIMPL 662 1.1 ryo 396 UNIMPL 663 1.1 ryo 397 UNIMPL 664 1.1 ryo 398 UNIMPL 665 1.1 ryo 399 UNIMPL 666 1.1 ryo 400 UNIMPL 667 1.1 ryo 401 UNIMPL 668 1.1 ryo 402 UNIMPL 669 1.1 ryo 403 UNIMPL 670 1.1 ryo 404 UNIMPL 671 1.1 ryo 405 UNIMPL 672 1.1 ryo 406 UNIMPL 673 1.1 ryo 407 UNIMPL 674 1.1 ryo 408 UNIMPL 675 1.1 ryo 409 UNIMPL 676 1.1 ryo 410 UNIMPL 677 1.1 ryo 411 UNIMPL 678 1.1 ryo 412 UNIMPL 679 1.1 ryo 413 UNIMPL 680 1.1 ryo 414 UNIMPL 681 1.1 ryo 415 UNIMPL 682 1.1 ryo 416 UNIMPL 683 1.1 ryo 417 UNIMPL 684 1.1 ryo 418 UNIMPL 685 1.1 ryo 419 UNIMPL 686 1.1 ryo 420 UNIMPL 687 1.1 ryo 421 UNIMPL 688 1.1 ryo 422 UNIMPL 689 1.1 ryo 423 UNIMPL 690 1.1 ryo 424 UNIMPL pidfd_send_signal 691 1.1 ryo 425 UNIMPL io_uring_setup 692 1.1 ryo 426 UNIMPL io_uring_enter 693 1.1 ryo 427 UNIMPL io_uring_register 694 1.1 ryo 428 UNIMPL open_tree 695 1.1 ryo 429 UNIMPL move_mount 696 1.1 ryo 430 UNIMPL fsopen 697 1.1 ryo 431 UNIMPL fsconfig 698 1.1 ryo 432 UNIMPL fsmount 699 1.1 ryo 433 UNIMPL fspick 700 1.1 ryo 434 UNIMPL pidfd_open 701 1.14 christos 435 STD { int|linux_sys||clone3( \ 702 1.14 christos struct linux_user_clone3_args *cl_args, \ 703 1.14 christos size_t size); } 704 1.9 christos 436 STD { int|linux_sys||close_range(unsigned int first, \ 705 1.9 christos unsigned int last, unsigned int flags); } 706 1.1 ryo 437 UNIMPL openat2 707 1.1 ryo 438 UNIMPL pidfd_getfd 708 1.12 christos 439 STD { int|linux_sys||faccessat2(int fd, const char *path, \ 709 1.12 christos int amode, int flags); } 710 1.1 ryo 711 1.1 ryo ; we want a "nosys" syscall, we'll just add an extra entry for it. 712 1.1 ryo 440 STD { int|linux_sys||nosys(void); } 713 1.6 christos 441 STD { int|linux_sys||epoll_pwait2(int epfd, \ 714 1.6 christos struct linux_epoll_event *events, int maxevents, \ 715 1.6 christos const struct linux_timespec *timeout, \ 716 1.6 christos const linux_sigset_t *sigmask); } 717