syscall_bsd.go 16 KB

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  1. // Copyright 2009 The Go Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. // +build darwin dragonfly freebsd netbsd openbsd
  5. // BSD system call wrappers shared by *BSD based systems
  6. // including OS X (Darwin) and FreeBSD. Like the other
  7. // syscall_*.go files it is compiled as Go code but also
  8. // used as input to mksyscall which parses the //sys
  9. // lines and generates system call stubs.
  10. package unix
  11. import (
  12. "runtime"
  13. "syscall"
  14. "unsafe"
  15. )
  16. /*
  17. * Wrapped
  18. */
  19. //sysnb getgroups(ngid int, gid *_Gid_t) (n int, err error)
  20. //sysnb setgroups(ngid int, gid *_Gid_t) (err error)
  21. func Getgroups() (gids []int, err error) {
  22. n, err := getgroups(0, nil)
  23. if err != nil {
  24. return nil, err
  25. }
  26. if n == 0 {
  27. return nil, nil
  28. }
  29. // Sanity check group count. Max is 16 on BSD.
  30. if n < 0 || n > 1000 {
  31. return nil, EINVAL
  32. }
  33. a := make([]_Gid_t, n)
  34. n, err = getgroups(n, &a[0])
  35. if err != nil {
  36. return nil, err
  37. }
  38. gids = make([]int, n)
  39. for i, v := range a[0:n] {
  40. gids[i] = int(v)
  41. }
  42. return
  43. }
  44. func Setgroups(gids []int) (err error) {
  45. if len(gids) == 0 {
  46. return setgroups(0, nil)
  47. }
  48. a := make([]_Gid_t, len(gids))
  49. for i, v := range gids {
  50. a[i] = _Gid_t(v)
  51. }
  52. return setgroups(len(a), &a[0])
  53. }
  54. func ReadDirent(fd int, buf []byte) (n int, err error) {
  55. // Final argument is (basep *uintptr) and the syscall doesn't take nil.
  56. // 64 bits should be enough. (32 bits isn't even on 386). Since the
  57. // actual system call is getdirentries64, 64 is a good guess.
  58. // TODO(rsc): Can we use a single global basep for all calls?
  59. var base = (*uintptr)(unsafe.Pointer(new(uint64)))
  60. return Getdirentries(fd, buf, base)
  61. }
  62. // Wait status is 7 bits at bottom, either 0 (exited),
  63. // 0x7F (stopped), or a signal number that caused an exit.
  64. // The 0x80 bit is whether there was a core dump.
  65. // An extra number (exit code, signal causing a stop)
  66. // is in the high bits.
  67. type WaitStatus uint32
  68. const (
  69. mask = 0x7F
  70. core = 0x80
  71. shift = 8
  72. exited = 0
  73. killed = 9
  74. stopped = 0x7F
  75. )
  76. func (w WaitStatus) Exited() bool { return w&mask == exited }
  77. func (w WaitStatus) ExitStatus() int {
  78. if w&mask != exited {
  79. return -1
  80. }
  81. return int(w >> shift)
  82. }
  83. func (w WaitStatus) Signaled() bool { return w&mask != stopped && w&mask != 0 }
  84. func (w WaitStatus) Signal() syscall.Signal {
  85. sig := syscall.Signal(w & mask)
  86. if sig == stopped || sig == 0 {
  87. return -1
  88. }
  89. return sig
  90. }
  91. func (w WaitStatus) CoreDump() bool { return w.Signaled() && w&core != 0 }
  92. func (w WaitStatus) Stopped() bool { return w&mask == stopped && syscall.Signal(w>>shift) != SIGSTOP }
  93. func (w WaitStatus) Killed() bool { return w&mask == killed && syscall.Signal(w>>shift) != SIGKILL }
  94. func (w WaitStatus) Continued() bool { return w&mask == stopped && syscall.Signal(w>>shift) == SIGSTOP }
  95. func (w WaitStatus) StopSignal() syscall.Signal {
  96. if !w.Stopped() {
  97. return -1
  98. }
  99. return syscall.Signal(w>>shift) & 0xFF
  100. }
  101. func (w WaitStatus) TrapCause() int { return -1 }
  102. //sys wait4(pid int, wstatus *_C_int, options int, rusage *Rusage) (wpid int, err error)
  103. func Wait4(pid int, wstatus *WaitStatus, options int, rusage *Rusage) (wpid int, err error) {
  104. var status _C_int
  105. wpid, err = wait4(pid, &status, options, rusage)
  106. if wstatus != nil {
  107. *wstatus = WaitStatus(status)
  108. }
  109. return
  110. }
  111. //sys accept(s int, rsa *RawSockaddrAny, addrlen *_Socklen) (fd int, err error)
  112. //sys bind(s int, addr unsafe.Pointer, addrlen _Socklen) (err error)
  113. //sys connect(s int, addr unsafe.Pointer, addrlen _Socklen) (err error)
  114. //sysnb socket(domain int, typ int, proto int) (fd int, err error)
  115. //sys getsockopt(s int, level int, name int, val unsafe.Pointer, vallen *_Socklen) (err error)
  116. //sys setsockopt(s int, level int, name int, val unsafe.Pointer, vallen uintptr) (err error)
  117. //sysnb getpeername(fd int, rsa *RawSockaddrAny, addrlen *_Socklen) (err error)
  118. //sysnb getsockname(fd int, rsa *RawSockaddrAny, addrlen *_Socklen) (err error)
  119. //sys Shutdown(s int, how int) (err error)
  120. func (sa *SockaddrInet4) sockaddr() (unsafe.Pointer, _Socklen, error) {
  121. if sa.Port < 0 || sa.Port > 0xFFFF {
  122. return nil, 0, EINVAL
  123. }
  124. sa.raw.Len = SizeofSockaddrInet4
  125. sa.raw.Family = AF_INET
  126. p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port))
  127. p[0] = byte(sa.Port >> 8)
  128. p[1] = byte(sa.Port)
  129. for i := 0; i < len(sa.Addr); i++ {
  130. sa.raw.Addr[i] = sa.Addr[i]
  131. }
  132. return unsafe.Pointer(&sa.raw), _Socklen(sa.raw.Len), nil
  133. }
  134. func (sa *SockaddrInet6) sockaddr() (unsafe.Pointer, _Socklen, error) {
  135. if sa.Port < 0 || sa.Port > 0xFFFF {
  136. return nil, 0, EINVAL
  137. }
  138. sa.raw.Len = SizeofSockaddrInet6
  139. sa.raw.Family = AF_INET6
  140. p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port))
  141. p[0] = byte(sa.Port >> 8)
  142. p[1] = byte(sa.Port)
  143. sa.raw.Scope_id = sa.ZoneId
  144. for i := 0; i < len(sa.Addr); i++ {
  145. sa.raw.Addr[i] = sa.Addr[i]
  146. }
  147. return unsafe.Pointer(&sa.raw), _Socklen(sa.raw.Len), nil
  148. }
  149. func (sa *SockaddrUnix) sockaddr() (unsafe.Pointer, _Socklen, error) {
  150. name := sa.Name
  151. n := len(name)
  152. if n >= len(sa.raw.Path) || n == 0 {
  153. return nil, 0, EINVAL
  154. }
  155. sa.raw.Len = byte(3 + n) // 2 for Family, Len; 1 for NUL
  156. sa.raw.Family = AF_UNIX
  157. for i := 0; i < n; i++ {
  158. sa.raw.Path[i] = int8(name[i])
  159. }
  160. return unsafe.Pointer(&sa.raw), _Socklen(sa.raw.Len), nil
  161. }
  162. func (sa *SockaddrDatalink) sockaddr() (unsafe.Pointer, _Socklen, error) {
  163. if sa.Index == 0 {
  164. return nil, 0, EINVAL
  165. }
  166. sa.raw.Len = sa.Len
  167. sa.raw.Family = AF_LINK
  168. sa.raw.Index = sa.Index
  169. sa.raw.Type = sa.Type
  170. sa.raw.Nlen = sa.Nlen
  171. sa.raw.Alen = sa.Alen
  172. sa.raw.Slen = sa.Slen
  173. for i := 0; i < len(sa.raw.Data); i++ {
  174. sa.raw.Data[i] = sa.Data[i]
  175. }
  176. return unsafe.Pointer(&sa.raw), SizeofSockaddrDatalink, nil
  177. }
  178. func anyToSockaddr(fd int, rsa *RawSockaddrAny) (Sockaddr, error) {
  179. switch rsa.Addr.Family {
  180. case AF_LINK:
  181. pp := (*RawSockaddrDatalink)(unsafe.Pointer(rsa))
  182. sa := new(SockaddrDatalink)
  183. sa.Len = pp.Len
  184. sa.Family = pp.Family
  185. sa.Index = pp.Index
  186. sa.Type = pp.Type
  187. sa.Nlen = pp.Nlen
  188. sa.Alen = pp.Alen
  189. sa.Slen = pp.Slen
  190. for i := 0; i < len(sa.Data); i++ {
  191. sa.Data[i] = pp.Data[i]
  192. }
  193. return sa, nil
  194. case AF_UNIX:
  195. pp := (*RawSockaddrUnix)(unsafe.Pointer(rsa))
  196. if pp.Len < 2 || pp.Len > SizeofSockaddrUnix {
  197. return nil, EINVAL
  198. }
  199. sa := new(SockaddrUnix)
  200. // Some BSDs include the trailing NUL in the length, whereas
  201. // others do not. Work around this by subtracting the leading
  202. // family and len. The path is then scanned to see if a NUL
  203. // terminator still exists within the length.
  204. n := int(pp.Len) - 2 // subtract leading Family, Len
  205. for i := 0; i < n; i++ {
  206. if pp.Path[i] == 0 {
  207. // found early NUL; assume Len included the NUL
  208. // or was overestimating.
  209. n = i
  210. break
  211. }
  212. }
  213. bytes := (*[10000]byte)(unsafe.Pointer(&pp.Path[0]))[0:n]
  214. sa.Name = string(bytes)
  215. return sa, nil
  216. case AF_INET:
  217. pp := (*RawSockaddrInet4)(unsafe.Pointer(rsa))
  218. sa := new(SockaddrInet4)
  219. p := (*[2]byte)(unsafe.Pointer(&pp.Port))
  220. sa.Port = int(p[0])<<8 + int(p[1])
  221. for i := 0; i < len(sa.Addr); i++ {
  222. sa.Addr[i] = pp.Addr[i]
  223. }
  224. return sa, nil
  225. case AF_INET6:
  226. pp := (*RawSockaddrInet6)(unsafe.Pointer(rsa))
  227. sa := new(SockaddrInet6)
  228. p := (*[2]byte)(unsafe.Pointer(&pp.Port))
  229. sa.Port = int(p[0])<<8 + int(p[1])
  230. sa.ZoneId = pp.Scope_id
  231. for i := 0; i < len(sa.Addr); i++ {
  232. sa.Addr[i] = pp.Addr[i]
  233. }
  234. return sa, nil
  235. }
  236. return nil, EAFNOSUPPORT
  237. }
  238. func Accept(fd int) (nfd int, sa Sockaddr, err error) {
  239. var rsa RawSockaddrAny
  240. var len _Socklen = SizeofSockaddrAny
  241. nfd, err = accept(fd, &rsa, &len)
  242. if err != nil {
  243. return
  244. }
  245. if runtime.GOOS == "darwin" && len == 0 {
  246. // Accepted socket has no address.
  247. // This is likely due to a bug in xnu kernels,
  248. // where instead of ECONNABORTED error socket
  249. // is accepted, but has no address.
  250. Close(nfd)
  251. return 0, nil, ECONNABORTED
  252. }
  253. sa, err = anyToSockaddr(fd, &rsa)
  254. if err != nil {
  255. Close(nfd)
  256. nfd = 0
  257. }
  258. return
  259. }
  260. func Getsockname(fd int) (sa Sockaddr, err error) {
  261. var rsa RawSockaddrAny
  262. var len _Socklen = SizeofSockaddrAny
  263. if err = getsockname(fd, &rsa, &len); err != nil {
  264. return
  265. }
  266. // TODO(jsing): DragonFly has a "bug" (see issue 3349), which should be
  267. // reported upstream.
  268. if runtime.GOOS == "dragonfly" && rsa.Addr.Family == AF_UNSPEC && rsa.Addr.Len == 0 {
  269. rsa.Addr.Family = AF_UNIX
  270. rsa.Addr.Len = SizeofSockaddrUnix
  271. }
  272. return anyToSockaddr(fd, &rsa)
  273. }
  274. //sysnb socketpair(domain int, typ int, proto int, fd *[2]int32) (err error)
  275. // GetsockoptString returns the string value of the socket option opt for the
  276. // socket associated with fd at the given socket level.
  277. func GetsockoptString(fd, level, opt int) (string, error) {
  278. buf := make([]byte, 256)
  279. vallen := _Socklen(len(buf))
  280. err := getsockopt(fd, level, opt, unsafe.Pointer(&buf[0]), &vallen)
  281. if err != nil {
  282. return "", err
  283. }
  284. return string(buf[:vallen-1]), nil
  285. }
  286. //sys recvfrom(fd int, p []byte, flags int, from *RawSockaddrAny, fromlen *_Socklen) (n int, err error)
  287. //sys sendto(s int, buf []byte, flags int, to unsafe.Pointer, addrlen _Socklen) (err error)
  288. //sys recvmsg(s int, msg *Msghdr, flags int) (n int, err error)
  289. func Recvmsg(fd int, p, oob []byte, flags int) (n, oobn int, recvflags int, from Sockaddr, err error) {
  290. var msg Msghdr
  291. var rsa RawSockaddrAny
  292. msg.Name = (*byte)(unsafe.Pointer(&rsa))
  293. msg.Namelen = uint32(SizeofSockaddrAny)
  294. var iov Iovec
  295. if len(p) > 0 {
  296. iov.Base = (*byte)(unsafe.Pointer(&p[0]))
  297. iov.SetLen(len(p))
  298. }
  299. var dummy byte
  300. if len(oob) > 0 {
  301. // receive at least one normal byte
  302. if len(p) == 0 {
  303. iov.Base = &dummy
  304. iov.SetLen(1)
  305. }
  306. msg.Control = (*byte)(unsafe.Pointer(&oob[0]))
  307. msg.SetControllen(len(oob))
  308. }
  309. msg.Iov = &iov
  310. msg.Iovlen = 1
  311. if n, err = recvmsg(fd, &msg, flags); err != nil {
  312. return
  313. }
  314. oobn = int(msg.Controllen)
  315. recvflags = int(msg.Flags)
  316. // source address is only specified if the socket is unconnected
  317. if rsa.Addr.Family != AF_UNSPEC {
  318. from, err = anyToSockaddr(fd, &rsa)
  319. }
  320. return
  321. }
  322. //sys sendmsg(s int, msg *Msghdr, flags int) (n int, err error)
  323. func Sendmsg(fd int, p, oob []byte, to Sockaddr, flags int) (err error) {
  324. _, err = SendmsgN(fd, p, oob, to, flags)
  325. return
  326. }
  327. func SendmsgN(fd int, p, oob []byte, to Sockaddr, flags int) (n int, err error) {
  328. var ptr unsafe.Pointer
  329. var salen _Socklen
  330. if to != nil {
  331. ptr, salen, err = to.sockaddr()
  332. if err != nil {
  333. return 0, err
  334. }
  335. }
  336. var msg Msghdr
  337. msg.Name = (*byte)(unsafe.Pointer(ptr))
  338. msg.Namelen = uint32(salen)
  339. var iov Iovec
  340. if len(p) > 0 {
  341. iov.Base = (*byte)(unsafe.Pointer(&p[0]))
  342. iov.SetLen(len(p))
  343. }
  344. var dummy byte
  345. if len(oob) > 0 {
  346. // send at least one normal byte
  347. if len(p) == 0 {
  348. iov.Base = &dummy
  349. iov.SetLen(1)
  350. }
  351. msg.Control = (*byte)(unsafe.Pointer(&oob[0]))
  352. msg.SetControllen(len(oob))
  353. }
  354. msg.Iov = &iov
  355. msg.Iovlen = 1
  356. if n, err = sendmsg(fd, &msg, flags); err != nil {
  357. return 0, err
  358. }
  359. if len(oob) > 0 && len(p) == 0 {
  360. n = 0
  361. }
  362. return n, nil
  363. }
  364. //sys kevent(kq int, change unsafe.Pointer, nchange int, event unsafe.Pointer, nevent int, timeout *Timespec) (n int, err error)
  365. func Kevent(kq int, changes, events []Kevent_t, timeout *Timespec) (n int, err error) {
  366. var change, event unsafe.Pointer
  367. if len(changes) > 0 {
  368. change = unsafe.Pointer(&changes[0])
  369. }
  370. if len(events) > 0 {
  371. event = unsafe.Pointer(&events[0])
  372. }
  373. return kevent(kq, change, len(changes), event, len(events), timeout)
  374. }
  375. //sys sysctl(mib []_C_int, old *byte, oldlen *uintptr, new *byte, newlen uintptr) (err error) = SYS___SYSCTL
  376. // sysctlmib translates name to mib number and appends any additional args.
  377. func sysctlmib(name string, args ...int) ([]_C_int, error) {
  378. // Translate name to mib number.
  379. mib, err := nametomib(name)
  380. if err != nil {
  381. return nil, err
  382. }
  383. for _, a := range args {
  384. mib = append(mib, _C_int(a))
  385. }
  386. return mib, nil
  387. }
  388. func Sysctl(name string) (string, error) {
  389. return SysctlArgs(name)
  390. }
  391. func SysctlArgs(name string, args ...int) (string, error) {
  392. buf, err := SysctlRaw(name, args...)
  393. if err != nil {
  394. return "", err
  395. }
  396. n := len(buf)
  397. // Throw away terminating NUL.
  398. if n > 0 && buf[n-1] == '\x00' {
  399. n--
  400. }
  401. return string(buf[0:n]), nil
  402. }
  403. func SysctlUint32(name string) (uint32, error) {
  404. return SysctlUint32Args(name)
  405. }
  406. func SysctlUint32Args(name string, args ...int) (uint32, error) {
  407. mib, err := sysctlmib(name, args...)
  408. if err != nil {
  409. return 0, err
  410. }
  411. n := uintptr(4)
  412. buf := make([]byte, 4)
  413. if err := sysctl(mib, &buf[0], &n, nil, 0); err != nil {
  414. return 0, err
  415. }
  416. if n != 4 {
  417. return 0, EIO
  418. }
  419. return *(*uint32)(unsafe.Pointer(&buf[0])), nil
  420. }
  421. func SysctlUint64(name string, args ...int) (uint64, error) {
  422. mib, err := sysctlmib(name, args...)
  423. if err != nil {
  424. return 0, err
  425. }
  426. n := uintptr(8)
  427. buf := make([]byte, 8)
  428. if err := sysctl(mib, &buf[0], &n, nil, 0); err != nil {
  429. return 0, err
  430. }
  431. if n != 8 {
  432. return 0, EIO
  433. }
  434. return *(*uint64)(unsafe.Pointer(&buf[0])), nil
  435. }
  436. func SysctlRaw(name string, args ...int) ([]byte, error) {
  437. mib, err := sysctlmib(name, args...)
  438. if err != nil {
  439. return nil, err
  440. }
  441. // Find size.
  442. n := uintptr(0)
  443. if err := sysctl(mib, nil, &n, nil, 0); err != nil {
  444. return nil, err
  445. }
  446. if n == 0 {
  447. return nil, nil
  448. }
  449. // Read into buffer of that size.
  450. buf := make([]byte, n)
  451. if err := sysctl(mib, &buf[0], &n, nil, 0); err != nil {
  452. return nil, err
  453. }
  454. // The actual call may return less than the original reported required
  455. // size so ensure we deal with that.
  456. return buf[:n], nil
  457. }
  458. //sys utimes(path string, timeval *[2]Timeval) (err error)
  459. func Utimes(path string, tv []Timeval) error {
  460. if tv == nil {
  461. return utimes(path, nil)
  462. }
  463. if len(tv) != 2 {
  464. return EINVAL
  465. }
  466. return utimes(path, (*[2]Timeval)(unsafe.Pointer(&tv[0])))
  467. }
  468. func UtimesNano(path string, ts []Timespec) error {
  469. if ts == nil {
  470. err := utimensat(AT_FDCWD, path, nil, 0)
  471. if err != ENOSYS {
  472. return err
  473. }
  474. return utimes(path, nil)
  475. }
  476. if len(ts) != 2 {
  477. return EINVAL
  478. }
  479. // Darwin setattrlist can set nanosecond timestamps
  480. err := setattrlistTimes(path, ts, 0)
  481. if err != ENOSYS {
  482. return err
  483. }
  484. err = utimensat(AT_FDCWD, path, (*[2]Timespec)(unsafe.Pointer(&ts[0])), 0)
  485. if err != ENOSYS {
  486. return err
  487. }
  488. // Not as efficient as it could be because Timespec and
  489. // Timeval have different types in the different OSes
  490. tv := [2]Timeval{
  491. NsecToTimeval(TimespecToNsec(ts[0])),
  492. NsecToTimeval(TimespecToNsec(ts[1])),
  493. }
  494. return utimes(path, (*[2]Timeval)(unsafe.Pointer(&tv[0])))
  495. }
  496. func UtimesNanoAt(dirfd int, path string, ts []Timespec, flags int) error {
  497. if ts == nil {
  498. return utimensat(dirfd, path, nil, flags)
  499. }
  500. if len(ts) != 2 {
  501. return EINVAL
  502. }
  503. err := setattrlistTimes(path, ts, flags)
  504. if err != ENOSYS {
  505. return err
  506. }
  507. return utimensat(dirfd, path, (*[2]Timespec)(unsafe.Pointer(&ts[0])), flags)
  508. }
  509. //sys futimes(fd int, timeval *[2]Timeval) (err error)
  510. func Futimes(fd int, tv []Timeval) error {
  511. if tv == nil {
  512. return futimes(fd, nil)
  513. }
  514. if len(tv) != 2 {
  515. return EINVAL
  516. }
  517. return futimes(fd, (*[2]Timeval)(unsafe.Pointer(&tv[0])))
  518. }
  519. //sys fcntl(fd int, cmd int, arg int) (val int, err error)
  520. //sys poll(fds *PollFd, nfds int, timeout int) (n int, err error)
  521. func Poll(fds []PollFd, timeout int) (n int, err error) {
  522. if len(fds) == 0 {
  523. return poll(nil, 0, timeout)
  524. }
  525. return poll(&fds[0], len(fds), timeout)
  526. }
  527. // TODO: wrap
  528. // Acct(name nil-string) (err error)
  529. // Gethostuuid(uuid *byte, timeout *Timespec) (err error)
  530. // Ptrace(req int, pid int, addr uintptr, data int) (ret uintptr, err error)
  531. var mapper = &mmapper{
  532. active: make(map[*byte][]byte),
  533. mmap: mmap,
  534. munmap: munmap,
  535. }
  536. func Mmap(fd int, offset int64, length int, prot int, flags int) (data []byte, err error) {
  537. return mapper.Mmap(fd, offset, length, prot, flags)
  538. }
  539. func Munmap(b []byte) (err error) {
  540. return mapper.Munmap(b)
  541. }
  542. //sys Madvise(b []byte, behav int) (err error)
  543. //sys Mlock(b []byte) (err error)
  544. //sys Mlockall(flags int) (err error)
  545. //sys Mprotect(b []byte, prot int) (err error)
  546. //sys Msync(b []byte, flags int) (err error)
  547. //sys Munlock(b []byte) (err error)
  548. //sys Munlockall() (err error)