syscall_linux.go 43 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. // Linux system calls.
  5. // This file is compiled as ordinary Go code,
  6. // but it is also input to mksyscall,
  7. // which parses the //sys lines and generates system call stubs.
  8. // Note that sometimes we use a lowercase //sys name and
  9. // wrap it in our own nicer implementation.
  10. package unix
  11. import (
  12. "syscall"
  13. "unsafe"
  14. )
  15. // SyscallNoError may be used instead of Syscall for syscalls that don't fail.
  16. func SyscallNoError(trap, a1, a2, a3 uintptr) (r1, r2 uintptr)
  17. // RawSyscallNoError may be used instead of RawSyscall for syscalls that don't
  18. // fail.
  19. func RawSyscallNoError(trap, a1, a2, a3 uintptr) (r1, r2 uintptr)
  20. /*
  21. * Wrapped
  22. */
  23. func Access(path string, mode uint32) (err error) {
  24. return Faccessat(AT_FDCWD, path, mode, 0)
  25. }
  26. func Chmod(path string, mode uint32) (err error) {
  27. return Fchmodat(AT_FDCWD, path, mode, 0)
  28. }
  29. func Chown(path string, uid int, gid int) (err error) {
  30. return Fchownat(AT_FDCWD, path, uid, gid, 0)
  31. }
  32. func Creat(path string, mode uint32) (fd int, err error) {
  33. return Open(path, O_CREAT|O_WRONLY|O_TRUNC, mode)
  34. }
  35. //sys fchmodat(dirfd int, path string, mode uint32) (err error)
  36. func Fchmodat(dirfd int, path string, mode uint32, flags int) (err error) {
  37. // Linux fchmodat doesn't support the flags parameter. Mimick glibc's behavior
  38. // and check the flags. Otherwise the mode would be applied to the symlink
  39. // destination which is not what the user expects.
  40. if flags&^AT_SYMLINK_NOFOLLOW != 0 {
  41. return EINVAL
  42. } else if flags&AT_SYMLINK_NOFOLLOW != 0 {
  43. return EOPNOTSUPP
  44. }
  45. return fchmodat(dirfd, path, mode)
  46. }
  47. //sys ioctl(fd int, req uint, arg uintptr) (err error)
  48. // ioctl itself should not be exposed directly, but additional get/set
  49. // functions for specific types are permissible.
  50. // IoctlSetInt performs an ioctl operation which sets an integer value
  51. // on fd, using the specified request number.
  52. func IoctlSetInt(fd int, req uint, value int) error {
  53. return ioctl(fd, req, uintptr(value))
  54. }
  55. func IoctlSetWinsize(fd int, req uint, value *Winsize) error {
  56. return ioctl(fd, req, uintptr(unsafe.Pointer(value)))
  57. }
  58. func IoctlSetTermios(fd int, req uint, value *Termios) error {
  59. return ioctl(fd, req, uintptr(unsafe.Pointer(value)))
  60. }
  61. // IoctlGetInt performs an ioctl operation which gets an integer value
  62. // from fd, using the specified request number.
  63. func IoctlGetInt(fd int, req uint) (int, error) {
  64. var value int
  65. err := ioctl(fd, req, uintptr(unsafe.Pointer(&value)))
  66. return value, err
  67. }
  68. func IoctlGetWinsize(fd int, req uint) (*Winsize, error) {
  69. var value Winsize
  70. err := ioctl(fd, req, uintptr(unsafe.Pointer(&value)))
  71. return &value, err
  72. }
  73. func IoctlGetTermios(fd int, req uint) (*Termios, error) {
  74. var value Termios
  75. err := ioctl(fd, req, uintptr(unsafe.Pointer(&value)))
  76. return &value, err
  77. }
  78. //sys Linkat(olddirfd int, oldpath string, newdirfd int, newpath string, flags int) (err error)
  79. func Link(oldpath string, newpath string) (err error) {
  80. return Linkat(AT_FDCWD, oldpath, AT_FDCWD, newpath, 0)
  81. }
  82. func Mkdir(path string, mode uint32) (err error) {
  83. return Mkdirat(AT_FDCWD, path, mode)
  84. }
  85. func Mknod(path string, mode uint32, dev int) (err error) {
  86. return Mknodat(AT_FDCWD, path, mode, dev)
  87. }
  88. func Open(path string, mode int, perm uint32) (fd int, err error) {
  89. return openat(AT_FDCWD, path, mode|O_LARGEFILE, perm)
  90. }
  91. //sys openat(dirfd int, path string, flags int, mode uint32) (fd int, err error)
  92. func Openat(dirfd int, path string, flags int, mode uint32) (fd int, err error) {
  93. return openat(dirfd, path, flags|O_LARGEFILE, mode)
  94. }
  95. //sys ppoll(fds *PollFd, nfds int, timeout *Timespec, sigmask *Sigset_t) (n int, err error)
  96. func Ppoll(fds []PollFd, timeout *Timespec, sigmask *Sigset_t) (n int, err error) {
  97. if len(fds) == 0 {
  98. return ppoll(nil, 0, timeout, sigmask)
  99. }
  100. return ppoll(&fds[0], len(fds), timeout, sigmask)
  101. }
  102. //sys Readlinkat(dirfd int, path string, buf []byte) (n int, err error)
  103. func Readlink(path string, buf []byte) (n int, err error) {
  104. return Readlinkat(AT_FDCWD, path, buf)
  105. }
  106. func Rename(oldpath string, newpath string) (err error) {
  107. return Renameat(AT_FDCWD, oldpath, AT_FDCWD, newpath)
  108. }
  109. func Rmdir(path string) error {
  110. return Unlinkat(AT_FDCWD, path, AT_REMOVEDIR)
  111. }
  112. //sys Symlinkat(oldpath string, newdirfd int, newpath string) (err error)
  113. func Symlink(oldpath string, newpath string) (err error) {
  114. return Symlinkat(oldpath, AT_FDCWD, newpath)
  115. }
  116. func Unlink(path string) error {
  117. return Unlinkat(AT_FDCWD, path, 0)
  118. }
  119. //sys Unlinkat(dirfd int, path string, flags int) (err error)
  120. //sys utimes(path string, times *[2]Timeval) (err error)
  121. func Utimes(path string, tv []Timeval) error {
  122. if tv == nil {
  123. err := utimensat(AT_FDCWD, path, nil, 0)
  124. if err != ENOSYS {
  125. return err
  126. }
  127. return utimes(path, nil)
  128. }
  129. if len(tv) != 2 {
  130. return EINVAL
  131. }
  132. var ts [2]Timespec
  133. ts[0] = NsecToTimespec(TimevalToNsec(tv[0]))
  134. ts[1] = NsecToTimespec(TimevalToNsec(tv[1]))
  135. err := utimensat(AT_FDCWD, path, (*[2]Timespec)(unsafe.Pointer(&ts[0])), 0)
  136. if err != ENOSYS {
  137. return err
  138. }
  139. return utimes(path, (*[2]Timeval)(unsafe.Pointer(&tv[0])))
  140. }
  141. //sys utimensat(dirfd int, path string, times *[2]Timespec, flags int) (err error)
  142. func UtimesNano(path string, ts []Timespec) error {
  143. if ts == nil {
  144. err := utimensat(AT_FDCWD, path, nil, 0)
  145. if err != ENOSYS {
  146. return err
  147. }
  148. return utimes(path, nil)
  149. }
  150. if len(ts) != 2 {
  151. return EINVAL
  152. }
  153. err := utimensat(AT_FDCWD, path, (*[2]Timespec)(unsafe.Pointer(&ts[0])), 0)
  154. if err != ENOSYS {
  155. return err
  156. }
  157. // If the utimensat syscall isn't available (utimensat was added to Linux
  158. // in 2.6.22, Released, 8 July 2007) then fall back to utimes
  159. var tv [2]Timeval
  160. for i := 0; i < 2; i++ {
  161. tv[i] = NsecToTimeval(TimespecToNsec(ts[i]))
  162. }
  163. return utimes(path, (*[2]Timeval)(unsafe.Pointer(&tv[0])))
  164. }
  165. func UtimesNanoAt(dirfd int, path string, ts []Timespec, flags int) error {
  166. if ts == nil {
  167. return utimensat(dirfd, path, nil, flags)
  168. }
  169. if len(ts) != 2 {
  170. return EINVAL
  171. }
  172. return utimensat(dirfd, path, (*[2]Timespec)(unsafe.Pointer(&ts[0])), flags)
  173. }
  174. //sys futimesat(dirfd int, path *byte, times *[2]Timeval) (err error)
  175. func Futimesat(dirfd int, path string, tv []Timeval) error {
  176. pathp, err := BytePtrFromString(path)
  177. if err != nil {
  178. return err
  179. }
  180. if tv == nil {
  181. return futimesat(dirfd, pathp, nil)
  182. }
  183. if len(tv) != 2 {
  184. return EINVAL
  185. }
  186. return futimesat(dirfd, pathp, (*[2]Timeval)(unsafe.Pointer(&tv[0])))
  187. }
  188. func Futimes(fd int, tv []Timeval) (err error) {
  189. // Believe it or not, this is the best we can do on Linux
  190. // (and is what glibc does).
  191. return Utimes("/proc/self/fd/"+itoa(fd), tv)
  192. }
  193. const ImplementsGetwd = true
  194. //sys Getcwd(buf []byte) (n int, err error)
  195. func Getwd() (wd string, err error) {
  196. var buf [PathMax]byte
  197. n, err := Getcwd(buf[0:])
  198. if err != nil {
  199. return "", err
  200. }
  201. // Getcwd returns the number of bytes written to buf, including the NUL.
  202. if n < 1 || n > len(buf) || buf[n-1] != 0 {
  203. return "", EINVAL
  204. }
  205. return string(buf[0 : n-1]), nil
  206. }
  207. func Getgroups() (gids []int, err error) {
  208. n, err := getgroups(0, nil)
  209. if err != nil {
  210. return nil, err
  211. }
  212. if n == 0 {
  213. return nil, nil
  214. }
  215. // Sanity check group count. Max is 1<<16 on Linux.
  216. if n < 0 || n > 1<<20 {
  217. return nil, EINVAL
  218. }
  219. a := make([]_Gid_t, n)
  220. n, err = getgroups(n, &a[0])
  221. if err != nil {
  222. return nil, err
  223. }
  224. gids = make([]int, n)
  225. for i, v := range a[0:n] {
  226. gids[i] = int(v)
  227. }
  228. return
  229. }
  230. func Setgroups(gids []int) (err error) {
  231. if len(gids) == 0 {
  232. return setgroups(0, nil)
  233. }
  234. a := make([]_Gid_t, len(gids))
  235. for i, v := range gids {
  236. a[i] = _Gid_t(v)
  237. }
  238. return setgroups(len(a), &a[0])
  239. }
  240. type WaitStatus uint32
  241. // Wait status is 7 bits at bottom, either 0 (exited),
  242. // 0x7F (stopped), or a signal number that caused an exit.
  243. // The 0x80 bit is whether there was a core dump.
  244. // An extra number (exit code, signal causing a stop)
  245. // is in the high bits. At least that's the idea.
  246. // There are various irregularities. For example, the
  247. // "continued" status is 0xFFFF, distinguishing itself
  248. // from stopped via the core dump bit.
  249. const (
  250. mask = 0x7F
  251. core = 0x80
  252. exited = 0x00
  253. stopped = 0x7F
  254. shift = 8
  255. )
  256. func (w WaitStatus) Exited() bool { return w&mask == exited }
  257. func (w WaitStatus) Signaled() bool { return w&mask != stopped && w&mask != exited }
  258. func (w WaitStatus) Stopped() bool { return w&0xFF == stopped }
  259. func (w WaitStatus) Continued() bool { return w == 0xFFFF }
  260. func (w WaitStatus) CoreDump() bool { return w.Signaled() && w&core != 0 }
  261. func (w WaitStatus) ExitStatus() int {
  262. if !w.Exited() {
  263. return -1
  264. }
  265. return int(w>>shift) & 0xFF
  266. }
  267. func (w WaitStatus) Signal() syscall.Signal {
  268. if !w.Signaled() {
  269. return -1
  270. }
  271. return syscall.Signal(w & mask)
  272. }
  273. func (w WaitStatus) StopSignal() syscall.Signal {
  274. if !w.Stopped() {
  275. return -1
  276. }
  277. return syscall.Signal(w>>shift) & 0xFF
  278. }
  279. func (w WaitStatus) TrapCause() int {
  280. if w.StopSignal() != SIGTRAP {
  281. return -1
  282. }
  283. return int(w>>shift) >> 8
  284. }
  285. //sys wait4(pid int, wstatus *_C_int, options int, rusage *Rusage) (wpid int, err error)
  286. func Wait4(pid int, wstatus *WaitStatus, options int, rusage *Rusage) (wpid int, err error) {
  287. var status _C_int
  288. wpid, err = wait4(pid, &status, options, rusage)
  289. if wstatus != nil {
  290. *wstatus = WaitStatus(status)
  291. }
  292. return
  293. }
  294. func Mkfifo(path string, mode uint32) error {
  295. return Mknod(path, mode|S_IFIFO, 0)
  296. }
  297. func Mkfifoat(dirfd int, path string, mode uint32) error {
  298. return Mknodat(dirfd, path, mode|S_IFIFO, 0)
  299. }
  300. func (sa *SockaddrInet4) sockaddr() (unsafe.Pointer, _Socklen, error) {
  301. if sa.Port < 0 || sa.Port > 0xFFFF {
  302. return nil, 0, EINVAL
  303. }
  304. sa.raw.Family = AF_INET
  305. p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port))
  306. p[0] = byte(sa.Port >> 8)
  307. p[1] = byte(sa.Port)
  308. for i := 0; i < len(sa.Addr); i++ {
  309. sa.raw.Addr[i] = sa.Addr[i]
  310. }
  311. return unsafe.Pointer(&sa.raw), SizeofSockaddrInet4, nil
  312. }
  313. func (sa *SockaddrInet6) sockaddr() (unsafe.Pointer, _Socklen, error) {
  314. if sa.Port < 0 || sa.Port > 0xFFFF {
  315. return nil, 0, EINVAL
  316. }
  317. sa.raw.Family = AF_INET6
  318. p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port))
  319. p[0] = byte(sa.Port >> 8)
  320. p[1] = byte(sa.Port)
  321. sa.raw.Scope_id = sa.ZoneId
  322. for i := 0; i < len(sa.Addr); i++ {
  323. sa.raw.Addr[i] = sa.Addr[i]
  324. }
  325. return unsafe.Pointer(&sa.raw), SizeofSockaddrInet6, nil
  326. }
  327. func (sa *SockaddrUnix) sockaddr() (unsafe.Pointer, _Socklen, error) {
  328. name := sa.Name
  329. n := len(name)
  330. if n >= len(sa.raw.Path) {
  331. return nil, 0, EINVAL
  332. }
  333. sa.raw.Family = AF_UNIX
  334. for i := 0; i < n; i++ {
  335. sa.raw.Path[i] = int8(name[i])
  336. }
  337. // length is family (uint16), name, NUL.
  338. sl := _Socklen(2)
  339. if n > 0 {
  340. sl += _Socklen(n) + 1
  341. }
  342. if sa.raw.Path[0] == '@' {
  343. sa.raw.Path[0] = 0
  344. // Don't count trailing NUL for abstract address.
  345. sl--
  346. }
  347. return unsafe.Pointer(&sa.raw), sl, nil
  348. }
  349. // SockaddrLinklayer implements the Sockaddr interface for AF_PACKET type sockets.
  350. type SockaddrLinklayer struct {
  351. Protocol uint16
  352. Ifindex int
  353. Hatype uint16
  354. Pkttype uint8
  355. Halen uint8
  356. Addr [8]byte
  357. raw RawSockaddrLinklayer
  358. }
  359. func (sa *SockaddrLinklayer) sockaddr() (unsafe.Pointer, _Socklen, error) {
  360. if sa.Ifindex < 0 || sa.Ifindex > 0x7fffffff {
  361. return nil, 0, EINVAL
  362. }
  363. sa.raw.Family = AF_PACKET
  364. sa.raw.Protocol = sa.Protocol
  365. sa.raw.Ifindex = int32(sa.Ifindex)
  366. sa.raw.Hatype = sa.Hatype
  367. sa.raw.Pkttype = sa.Pkttype
  368. sa.raw.Halen = sa.Halen
  369. for i := 0; i < len(sa.Addr); i++ {
  370. sa.raw.Addr[i] = sa.Addr[i]
  371. }
  372. return unsafe.Pointer(&sa.raw), SizeofSockaddrLinklayer, nil
  373. }
  374. // SockaddrNetlink implements the Sockaddr interface for AF_NETLINK type sockets.
  375. type SockaddrNetlink struct {
  376. Family uint16
  377. Pad uint16
  378. Pid uint32
  379. Groups uint32
  380. raw RawSockaddrNetlink
  381. }
  382. func (sa *SockaddrNetlink) sockaddr() (unsafe.Pointer, _Socklen, error) {
  383. sa.raw.Family = AF_NETLINK
  384. sa.raw.Pad = sa.Pad
  385. sa.raw.Pid = sa.Pid
  386. sa.raw.Groups = sa.Groups
  387. return unsafe.Pointer(&sa.raw), SizeofSockaddrNetlink, nil
  388. }
  389. // SockaddrHCI implements the Sockaddr interface for AF_BLUETOOTH type sockets
  390. // using the HCI protocol.
  391. type SockaddrHCI struct {
  392. Dev uint16
  393. Channel uint16
  394. raw RawSockaddrHCI
  395. }
  396. func (sa *SockaddrHCI) sockaddr() (unsafe.Pointer, _Socklen, error) {
  397. sa.raw.Family = AF_BLUETOOTH
  398. sa.raw.Dev = sa.Dev
  399. sa.raw.Channel = sa.Channel
  400. return unsafe.Pointer(&sa.raw), SizeofSockaddrHCI, nil
  401. }
  402. // SockaddrL2 implements the Sockaddr interface for AF_BLUETOOTH type sockets
  403. // using the L2CAP protocol.
  404. type SockaddrL2 struct {
  405. PSM uint16
  406. CID uint16
  407. Addr [6]uint8
  408. AddrType uint8
  409. raw RawSockaddrL2
  410. }
  411. func (sa *SockaddrL2) sockaddr() (unsafe.Pointer, _Socklen, error) {
  412. sa.raw.Family = AF_BLUETOOTH
  413. psm := (*[2]byte)(unsafe.Pointer(&sa.raw.Psm))
  414. psm[0] = byte(sa.PSM)
  415. psm[1] = byte(sa.PSM >> 8)
  416. for i := 0; i < len(sa.Addr); i++ {
  417. sa.raw.Bdaddr[i] = sa.Addr[len(sa.Addr)-1-i]
  418. }
  419. cid := (*[2]byte)(unsafe.Pointer(&sa.raw.Cid))
  420. cid[0] = byte(sa.CID)
  421. cid[1] = byte(sa.CID >> 8)
  422. sa.raw.Bdaddr_type = sa.AddrType
  423. return unsafe.Pointer(&sa.raw), SizeofSockaddrL2, nil
  424. }
  425. // SockaddrCAN implements the Sockaddr interface for AF_CAN type sockets.
  426. // The RxID and TxID fields are used for transport protocol addressing in
  427. // (CAN_TP16, CAN_TP20, CAN_MCNET, and CAN_ISOTP), they can be left with
  428. // zero values for CAN_RAW and CAN_BCM sockets as they have no meaning.
  429. //
  430. // The SockaddrCAN struct must be bound to the socket file descriptor
  431. // using Bind before the CAN socket can be used.
  432. //
  433. // // Read one raw CAN frame
  434. // fd, _ := Socket(AF_CAN, SOCK_RAW, CAN_RAW)
  435. // addr := &SockaddrCAN{Ifindex: index}
  436. // Bind(fd, addr)
  437. // frame := make([]byte, 16)
  438. // Read(fd, frame)
  439. //
  440. // The full SocketCAN documentation can be found in the linux kernel
  441. // archives at: https://www.kernel.org/doc/Documentation/networking/can.txt
  442. type SockaddrCAN struct {
  443. Ifindex int
  444. RxID uint32
  445. TxID uint32
  446. raw RawSockaddrCAN
  447. }
  448. func (sa *SockaddrCAN) sockaddr() (unsafe.Pointer, _Socklen, error) {
  449. if sa.Ifindex < 0 || sa.Ifindex > 0x7fffffff {
  450. return nil, 0, EINVAL
  451. }
  452. sa.raw.Family = AF_CAN
  453. sa.raw.Ifindex = int32(sa.Ifindex)
  454. rx := (*[4]byte)(unsafe.Pointer(&sa.RxID))
  455. for i := 0; i < 4; i++ {
  456. sa.raw.Addr[i] = rx[i]
  457. }
  458. tx := (*[4]byte)(unsafe.Pointer(&sa.TxID))
  459. for i := 0; i < 4; i++ {
  460. sa.raw.Addr[i+4] = tx[i]
  461. }
  462. return unsafe.Pointer(&sa.raw), SizeofSockaddrCAN, nil
  463. }
  464. // SockaddrALG implements the Sockaddr interface for AF_ALG type sockets.
  465. // SockaddrALG enables userspace access to the Linux kernel's cryptography
  466. // subsystem. The Type and Name fields specify which type of hash or cipher
  467. // should be used with a given socket.
  468. //
  469. // To create a file descriptor that provides access to a hash or cipher, both
  470. // Bind and Accept must be used. Once the setup process is complete, input
  471. // data can be written to the socket, processed by the kernel, and then read
  472. // back as hash output or ciphertext.
  473. //
  474. // Here is an example of using an AF_ALG socket with SHA1 hashing.
  475. // The initial socket setup process is as follows:
  476. //
  477. // // Open a socket to perform SHA1 hashing.
  478. // fd, _ := unix.Socket(unix.AF_ALG, unix.SOCK_SEQPACKET, 0)
  479. // addr := &unix.SockaddrALG{Type: "hash", Name: "sha1"}
  480. // unix.Bind(fd, addr)
  481. // // Note: unix.Accept does not work at this time; must invoke accept()
  482. // // manually using unix.Syscall.
  483. // hashfd, _, _ := unix.Syscall(unix.SYS_ACCEPT, uintptr(fd), 0, 0)
  484. //
  485. // Once a file descriptor has been returned from Accept, it may be used to
  486. // perform SHA1 hashing. The descriptor is not safe for concurrent use, but
  487. // may be re-used repeatedly with subsequent Write and Read operations.
  488. //
  489. // When hashing a small byte slice or string, a single Write and Read may
  490. // be used:
  491. //
  492. // // Assume hashfd is already configured using the setup process.
  493. // hash := os.NewFile(hashfd, "sha1")
  494. // // Hash an input string and read the results. Each Write discards
  495. // // previous hash state. Read always reads the current state.
  496. // b := make([]byte, 20)
  497. // for i := 0; i < 2; i++ {
  498. // io.WriteString(hash, "Hello, world.")
  499. // hash.Read(b)
  500. // fmt.Println(hex.EncodeToString(b))
  501. // }
  502. // // Output:
  503. // // 2ae01472317d1935a84797ec1983ae243fc6aa28
  504. // // 2ae01472317d1935a84797ec1983ae243fc6aa28
  505. //
  506. // For hashing larger byte slices, or byte streams such as those read from
  507. // a file or socket, use Sendto with MSG_MORE to instruct the kernel to update
  508. // the hash digest instead of creating a new one for a given chunk and finalizing it.
  509. //
  510. // // Assume hashfd and addr are already configured using the setup process.
  511. // hash := os.NewFile(hashfd, "sha1")
  512. // // Hash the contents of a file.
  513. // f, _ := os.Open("/tmp/linux-4.10-rc7.tar.xz")
  514. // b := make([]byte, 4096)
  515. // for {
  516. // n, err := f.Read(b)
  517. // if err == io.EOF {
  518. // break
  519. // }
  520. // unix.Sendto(hashfd, b[:n], unix.MSG_MORE, addr)
  521. // }
  522. // hash.Read(b)
  523. // fmt.Println(hex.EncodeToString(b))
  524. // // Output: 85cdcad0c06eef66f805ecce353bec9accbeecc5
  525. //
  526. // For more information, see: http://www.chronox.de/crypto-API/crypto/userspace-if.html.
  527. type SockaddrALG struct {
  528. Type string
  529. Name string
  530. Feature uint32
  531. Mask uint32
  532. raw RawSockaddrALG
  533. }
  534. func (sa *SockaddrALG) sockaddr() (unsafe.Pointer, _Socklen, error) {
  535. // Leave room for NUL byte terminator.
  536. if len(sa.Type) > 13 {
  537. return nil, 0, EINVAL
  538. }
  539. if len(sa.Name) > 63 {
  540. return nil, 0, EINVAL
  541. }
  542. sa.raw.Family = AF_ALG
  543. sa.raw.Feat = sa.Feature
  544. sa.raw.Mask = sa.Mask
  545. typ, err := ByteSliceFromString(sa.Type)
  546. if err != nil {
  547. return nil, 0, err
  548. }
  549. name, err := ByteSliceFromString(sa.Name)
  550. if err != nil {
  551. return nil, 0, err
  552. }
  553. copy(sa.raw.Type[:], typ)
  554. copy(sa.raw.Name[:], name)
  555. return unsafe.Pointer(&sa.raw), SizeofSockaddrALG, nil
  556. }
  557. // SockaddrVM implements the Sockaddr interface for AF_VSOCK type sockets.
  558. // SockaddrVM provides access to Linux VM sockets: a mechanism that enables
  559. // bidirectional communication between a hypervisor and its guest virtual
  560. // machines.
  561. type SockaddrVM struct {
  562. // CID and Port specify a context ID and port address for a VM socket.
  563. // Guests have a unique CID, and hosts may have a well-known CID of:
  564. // - VMADDR_CID_HYPERVISOR: refers to the hypervisor process.
  565. // - VMADDR_CID_HOST: refers to other processes on the host.
  566. CID uint32
  567. Port uint32
  568. raw RawSockaddrVM
  569. }
  570. func (sa *SockaddrVM) sockaddr() (unsafe.Pointer, _Socklen, error) {
  571. sa.raw.Family = AF_VSOCK
  572. sa.raw.Port = sa.Port
  573. sa.raw.Cid = sa.CID
  574. return unsafe.Pointer(&sa.raw), SizeofSockaddrVM, nil
  575. }
  576. func anyToSockaddr(rsa *RawSockaddrAny) (Sockaddr, error) {
  577. switch rsa.Addr.Family {
  578. case AF_NETLINK:
  579. pp := (*RawSockaddrNetlink)(unsafe.Pointer(rsa))
  580. sa := new(SockaddrNetlink)
  581. sa.Family = pp.Family
  582. sa.Pad = pp.Pad
  583. sa.Pid = pp.Pid
  584. sa.Groups = pp.Groups
  585. return sa, nil
  586. case AF_PACKET:
  587. pp := (*RawSockaddrLinklayer)(unsafe.Pointer(rsa))
  588. sa := new(SockaddrLinklayer)
  589. sa.Protocol = pp.Protocol
  590. sa.Ifindex = int(pp.Ifindex)
  591. sa.Hatype = pp.Hatype
  592. sa.Pkttype = pp.Pkttype
  593. sa.Halen = pp.Halen
  594. for i := 0; i < len(sa.Addr); i++ {
  595. sa.Addr[i] = pp.Addr[i]
  596. }
  597. return sa, nil
  598. case AF_UNIX:
  599. pp := (*RawSockaddrUnix)(unsafe.Pointer(rsa))
  600. sa := new(SockaddrUnix)
  601. if pp.Path[0] == 0 {
  602. // "Abstract" Unix domain socket.
  603. // Rewrite leading NUL as @ for textual display.
  604. // (This is the standard convention.)
  605. // Not friendly to overwrite in place,
  606. // but the callers below don't care.
  607. pp.Path[0] = '@'
  608. }
  609. // Assume path ends at NUL.
  610. // This is not technically the Linux semantics for
  611. // abstract Unix domain sockets--they are supposed
  612. // to be uninterpreted fixed-size binary blobs--but
  613. // everyone uses this convention.
  614. n := 0
  615. for n < len(pp.Path) && pp.Path[n] != 0 {
  616. n++
  617. }
  618. bytes := (*[10000]byte)(unsafe.Pointer(&pp.Path[0]))[0:n]
  619. sa.Name = string(bytes)
  620. return sa, nil
  621. case AF_INET:
  622. pp := (*RawSockaddrInet4)(unsafe.Pointer(rsa))
  623. sa := new(SockaddrInet4)
  624. p := (*[2]byte)(unsafe.Pointer(&pp.Port))
  625. sa.Port = int(p[0])<<8 + int(p[1])
  626. for i := 0; i < len(sa.Addr); i++ {
  627. sa.Addr[i] = pp.Addr[i]
  628. }
  629. return sa, nil
  630. case AF_INET6:
  631. pp := (*RawSockaddrInet6)(unsafe.Pointer(rsa))
  632. sa := new(SockaddrInet6)
  633. p := (*[2]byte)(unsafe.Pointer(&pp.Port))
  634. sa.Port = int(p[0])<<8 + int(p[1])
  635. sa.ZoneId = pp.Scope_id
  636. for i := 0; i < len(sa.Addr); i++ {
  637. sa.Addr[i] = pp.Addr[i]
  638. }
  639. return sa, nil
  640. case AF_VSOCK:
  641. pp := (*RawSockaddrVM)(unsafe.Pointer(rsa))
  642. sa := &SockaddrVM{
  643. CID: pp.Cid,
  644. Port: pp.Port,
  645. }
  646. return sa, nil
  647. }
  648. return nil, EAFNOSUPPORT
  649. }
  650. func Accept(fd int) (nfd int, sa Sockaddr, err error) {
  651. var rsa RawSockaddrAny
  652. var len _Socklen = SizeofSockaddrAny
  653. nfd, err = accept(fd, &rsa, &len)
  654. if err != nil {
  655. return
  656. }
  657. sa, err = anyToSockaddr(&rsa)
  658. if err != nil {
  659. Close(nfd)
  660. nfd = 0
  661. }
  662. return
  663. }
  664. func Accept4(fd int, flags int) (nfd int, sa Sockaddr, err error) {
  665. var rsa RawSockaddrAny
  666. var len _Socklen = SizeofSockaddrAny
  667. nfd, err = accept4(fd, &rsa, &len, flags)
  668. if err != nil {
  669. return
  670. }
  671. if len > SizeofSockaddrAny {
  672. panic("RawSockaddrAny too small")
  673. }
  674. sa, err = anyToSockaddr(&rsa)
  675. if err != nil {
  676. Close(nfd)
  677. nfd = 0
  678. }
  679. return
  680. }
  681. func Getsockname(fd int) (sa Sockaddr, err error) {
  682. var rsa RawSockaddrAny
  683. var len _Socklen = SizeofSockaddrAny
  684. if err = getsockname(fd, &rsa, &len); err != nil {
  685. return
  686. }
  687. return anyToSockaddr(&rsa)
  688. }
  689. func GetsockoptInet4Addr(fd, level, opt int) (value [4]byte, err error) {
  690. vallen := _Socklen(4)
  691. err = getsockopt(fd, level, opt, unsafe.Pointer(&value[0]), &vallen)
  692. return value, err
  693. }
  694. func GetsockoptIPMreq(fd, level, opt int) (*IPMreq, error) {
  695. var value IPMreq
  696. vallen := _Socklen(SizeofIPMreq)
  697. err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen)
  698. return &value, err
  699. }
  700. func GetsockoptIPMreqn(fd, level, opt int) (*IPMreqn, error) {
  701. var value IPMreqn
  702. vallen := _Socklen(SizeofIPMreqn)
  703. err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen)
  704. return &value, err
  705. }
  706. func GetsockoptIPv6Mreq(fd, level, opt int) (*IPv6Mreq, error) {
  707. var value IPv6Mreq
  708. vallen := _Socklen(SizeofIPv6Mreq)
  709. err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen)
  710. return &value, err
  711. }
  712. func GetsockoptIPv6MTUInfo(fd, level, opt int) (*IPv6MTUInfo, error) {
  713. var value IPv6MTUInfo
  714. vallen := _Socklen(SizeofIPv6MTUInfo)
  715. err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen)
  716. return &value, err
  717. }
  718. func GetsockoptICMPv6Filter(fd, level, opt int) (*ICMPv6Filter, error) {
  719. var value ICMPv6Filter
  720. vallen := _Socklen(SizeofICMPv6Filter)
  721. err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen)
  722. return &value, err
  723. }
  724. func GetsockoptUcred(fd, level, opt int) (*Ucred, error) {
  725. var value Ucred
  726. vallen := _Socklen(SizeofUcred)
  727. err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen)
  728. return &value, err
  729. }
  730. func GetsockoptTCPInfo(fd, level, opt int) (*TCPInfo, error) {
  731. var value TCPInfo
  732. vallen := _Socklen(SizeofTCPInfo)
  733. err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen)
  734. return &value, err
  735. }
  736. // GetsockoptString returns the string value of the socket option opt for the
  737. // socket associated with fd at the given socket level.
  738. func GetsockoptString(fd, level, opt int) (string, error) {
  739. buf := make([]byte, 256)
  740. vallen := _Socklen(len(buf))
  741. err := getsockopt(fd, level, opt, unsafe.Pointer(&buf[0]), &vallen)
  742. if err != nil {
  743. if err == ERANGE {
  744. buf = make([]byte, vallen)
  745. err = getsockopt(fd, level, opt, unsafe.Pointer(&buf[0]), &vallen)
  746. }
  747. if err != nil {
  748. return "", err
  749. }
  750. }
  751. return string(buf[:vallen-1]), nil
  752. }
  753. func SetsockoptIPMreqn(fd, level, opt int, mreq *IPMreqn) (err error) {
  754. return setsockopt(fd, level, opt, unsafe.Pointer(mreq), unsafe.Sizeof(*mreq))
  755. }
  756. // Keyctl Commands (http://man7.org/linux/man-pages/man2/keyctl.2.html)
  757. // KeyctlInt calls keyctl commands in which each argument is an int.
  758. // These commands are KEYCTL_REVOKE, KEYCTL_CHOWN, KEYCTL_CLEAR, KEYCTL_LINK,
  759. // KEYCTL_UNLINK, KEYCTL_NEGATE, KEYCTL_SET_REQKEY_KEYRING, KEYCTL_SET_TIMEOUT,
  760. // KEYCTL_ASSUME_AUTHORITY, KEYCTL_SESSION_TO_PARENT, KEYCTL_REJECT,
  761. // KEYCTL_INVALIDATE, and KEYCTL_GET_PERSISTENT.
  762. //sys KeyctlInt(cmd int, arg2 int, arg3 int, arg4 int, arg5 int) (ret int, err error) = SYS_KEYCTL
  763. // KeyctlBuffer calls keyctl commands in which the third and fourth
  764. // arguments are a buffer and its length, respectively.
  765. // These commands are KEYCTL_UPDATE, KEYCTL_READ, and KEYCTL_INSTANTIATE.
  766. //sys KeyctlBuffer(cmd int, arg2 int, buf []byte, arg5 int) (ret int, err error) = SYS_KEYCTL
  767. // KeyctlString calls keyctl commands which return a string.
  768. // These commands are KEYCTL_DESCRIBE and KEYCTL_GET_SECURITY.
  769. func KeyctlString(cmd int, id int) (string, error) {
  770. // We must loop as the string data may change in between the syscalls.
  771. // We could allocate a large buffer here to reduce the chance that the
  772. // syscall needs to be called twice; however, this is unnecessary as
  773. // the performance loss is negligible.
  774. var buffer []byte
  775. for {
  776. // Try to fill the buffer with data
  777. length, err := KeyctlBuffer(cmd, id, buffer, 0)
  778. if err != nil {
  779. return "", err
  780. }
  781. // Check if the data was written
  782. if length <= len(buffer) {
  783. // Exclude the null terminator
  784. return string(buffer[:length-1]), nil
  785. }
  786. // Make a bigger buffer if needed
  787. buffer = make([]byte, length)
  788. }
  789. }
  790. // Keyctl commands with special signatures.
  791. // KeyctlGetKeyringID implements the KEYCTL_GET_KEYRING_ID command.
  792. // See the full documentation at:
  793. // http://man7.org/linux/man-pages/man3/keyctl_get_keyring_ID.3.html
  794. func KeyctlGetKeyringID(id int, create bool) (ringid int, err error) {
  795. createInt := 0
  796. if create {
  797. createInt = 1
  798. }
  799. return KeyctlInt(KEYCTL_GET_KEYRING_ID, id, createInt, 0, 0)
  800. }
  801. // KeyctlSetperm implements the KEYCTL_SETPERM command. The perm value is the
  802. // key handle permission mask as described in the "keyctl setperm" section of
  803. // http://man7.org/linux/man-pages/man1/keyctl.1.html.
  804. // See the full documentation at:
  805. // http://man7.org/linux/man-pages/man3/keyctl_setperm.3.html
  806. func KeyctlSetperm(id int, perm uint32) error {
  807. _, err := KeyctlInt(KEYCTL_SETPERM, id, int(perm), 0, 0)
  808. return err
  809. }
  810. //sys keyctlJoin(cmd int, arg2 string) (ret int, err error) = SYS_KEYCTL
  811. // KeyctlJoinSessionKeyring implements the KEYCTL_JOIN_SESSION_KEYRING command.
  812. // See the full documentation at:
  813. // http://man7.org/linux/man-pages/man3/keyctl_join_session_keyring.3.html
  814. func KeyctlJoinSessionKeyring(name string) (ringid int, err error) {
  815. return keyctlJoin(KEYCTL_JOIN_SESSION_KEYRING, name)
  816. }
  817. //sys keyctlSearch(cmd int, arg2 int, arg3 string, arg4 string, arg5 int) (ret int, err error) = SYS_KEYCTL
  818. // KeyctlSearch implements the KEYCTL_SEARCH command.
  819. // See the full documentation at:
  820. // http://man7.org/linux/man-pages/man3/keyctl_search.3.html
  821. func KeyctlSearch(ringid int, keyType, description string, destRingid int) (id int, err error) {
  822. return keyctlSearch(KEYCTL_SEARCH, ringid, keyType, description, destRingid)
  823. }
  824. //sys keyctlIOV(cmd int, arg2 int, payload []Iovec, arg5 int) (err error) = SYS_KEYCTL
  825. // KeyctlInstantiateIOV implements the KEYCTL_INSTANTIATE_IOV command. This
  826. // command is similar to KEYCTL_INSTANTIATE, except that the payload is a slice
  827. // of Iovec (each of which represents a buffer) instead of a single buffer.
  828. // See the full documentation at:
  829. // http://man7.org/linux/man-pages/man3/keyctl_instantiate_iov.3.html
  830. func KeyctlInstantiateIOV(id int, payload []Iovec, ringid int) error {
  831. return keyctlIOV(KEYCTL_INSTANTIATE_IOV, id, payload, ringid)
  832. }
  833. //sys keyctlDH(cmd int, arg2 *KeyctlDHParams, buf []byte) (ret int, err error) = SYS_KEYCTL
  834. // KeyctlDHCompute implements the KEYCTL_DH_COMPUTE command. This command
  835. // computes a Diffie-Hellman shared secret based on the provide params. The
  836. // secret is written to the provided buffer and the returned size is the number
  837. // of bytes written (returning an error if there is insufficient space in the
  838. // buffer). If a nil buffer is passed in, this function returns the minimum
  839. // buffer length needed to store the appropriate data. Note that this differs
  840. // from KEYCTL_READ's behavior which always returns the requested payload size.
  841. // See the full documentation at:
  842. // http://man7.org/linux/man-pages/man3/keyctl_dh_compute.3.html
  843. func KeyctlDHCompute(params *KeyctlDHParams, buffer []byte) (size int, err error) {
  844. return keyctlDH(KEYCTL_DH_COMPUTE, params, buffer)
  845. }
  846. func Recvmsg(fd int, p, oob []byte, flags int) (n, oobn int, recvflags int, from Sockaddr, err error) {
  847. var msg Msghdr
  848. var rsa RawSockaddrAny
  849. msg.Name = (*byte)(unsafe.Pointer(&rsa))
  850. msg.Namelen = uint32(SizeofSockaddrAny)
  851. var iov Iovec
  852. if len(p) > 0 {
  853. iov.Base = &p[0]
  854. iov.SetLen(len(p))
  855. }
  856. var dummy byte
  857. if len(oob) > 0 {
  858. var sockType int
  859. sockType, err = GetsockoptInt(fd, SOL_SOCKET, SO_TYPE)
  860. if err != nil {
  861. return
  862. }
  863. // receive at least one normal byte
  864. if sockType != SOCK_DGRAM && len(p) == 0 {
  865. iov.Base = &dummy
  866. iov.SetLen(1)
  867. }
  868. msg.Control = &oob[0]
  869. msg.SetControllen(len(oob))
  870. }
  871. msg.Iov = &iov
  872. msg.Iovlen = 1
  873. if n, err = recvmsg(fd, &msg, flags); err != nil {
  874. return
  875. }
  876. oobn = int(msg.Controllen)
  877. recvflags = int(msg.Flags)
  878. // source address is only specified if the socket is unconnected
  879. if rsa.Addr.Family != AF_UNSPEC {
  880. from, err = anyToSockaddr(&rsa)
  881. }
  882. return
  883. }
  884. func Sendmsg(fd int, p, oob []byte, to Sockaddr, flags int) (err error) {
  885. _, err = SendmsgN(fd, p, oob, to, flags)
  886. return
  887. }
  888. func SendmsgN(fd int, p, oob []byte, to Sockaddr, flags int) (n int, err error) {
  889. var ptr unsafe.Pointer
  890. var salen _Socklen
  891. if to != nil {
  892. var err error
  893. ptr, salen, err = to.sockaddr()
  894. if err != nil {
  895. return 0, err
  896. }
  897. }
  898. var msg Msghdr
  899. msg.Name = (*byte)(ptr)
  900. msg.Namelen = uint32(salen)
  901. var iov Iovec
  902. if len(p) > 0 {
  903. iov.Base = &p[0]
  904. iov.SetLen(len(p))
  905. }
  906. var dummy byte
  907. if len(oob) > 0 {
  908. var sockType int
  909. sockType, err = GetsockoptInt(fd, SOL_SOCKET, SO_TYPE)
  910. if err != nil {
  911. return 0, err
  912. }
  913. // send at least one normal byte
  914. if sockType != SOCK_DGRAM && len(p) == 0 {
  915. iov.Base = &dummy
  916. iov.SetLen(1)
  917. }
  918. msg.Control = &oob[0]
  919. msg.SetControllen(len(oob))
  920. }
  921. msg.Iov = &iov
  922. msg.Iovlen = 1
  923. if n, err = sendmsg(fd, &msg, flags); err != nil {
  924. return 0, err
  925. }
  926. if len(oob) > 0 && len(p) == 0 {
  927. n = 0
  928. }
  929. return n, nil
  930. }
  931. // BindToDevice binds the socket associated with fd to device.
  932. func BindToDevice(fd int, device string) (err error) {
  933. return SetsockoptString(fd, SOL_SOCKET, SO_BINDTODEVICE, device)
  934. }
  935. //sys ptrace(request int, pid int, addr uintptr, data uintptr) (err error)
  936. func ptracePeek(req int, pid int, addr uintptr, out []byte) (count int, err error) {
  937. // The peek requests are machine-size oriented, so we wrap it
  938. // to retrieve arbitrary-length data.
  939. // The ptrace syscall differs from glibc's ptrace.
  940. // Peeks returns the word in *data, not as the return value.
  941. var buf [sizeofPtr]byte
  942. // Leading edge. PEEKTEXT/PEEKDATA don't require aligned
  943. // access (PEEKUSER warns that it might), but if we don't
  944. // align our reads, we might straddle an unmapped page
  945. // boundary and not get the bytes leading up to the page
  946. // boundary.
  947. n := 0
  948. if addr%sizeofPtr != 0 {
  949. err = ptrace(req, pid, addr-addr%sizeofPtr, uintptr(unsafe.Pointer(&buf[0])))
  950. if err != nil {
  951. return 0, err
  952. }
  953. n += copy(out, buf[addr%sizeofPtr:])
  954. out = out[n:]
  955. }
  956. // Remainder.
  957. for len(out) > 0 {
  958. // We use an internal buffer to guarantee alignment.
  959. // It's not documented if this is necessary, but we're paranoid.
  960. err = ptrace(req, pid, addr+uintptr(n), uintptr(unsafe.Pointer(&buf[0])))
  961. if err != nil {
  962. return n, err
  963. }
  964. copied := copy(out, buf[0:])
  965. n += copied
  966. out = out[copied:]
  967. }
  968. return n, nil
  969. }
  970. func PtracePeekText(pid int, addr uintptr, out []byte) (count int, err error) {
  971. return ptracePeek(PTRACE_PEEKTEXT, pid, addr, out)
  972. }
  973. func PtracePeekData(pid int, addr uintptr, out []byte) (count int, err error) {
  974. return ptracePeek(PTRACE_PEEKDATA, pid, addr, out)
  975. }
  976. func PtracePeekUser(pid int, addr uintptr, out []byte) (count int, err error) {
  977. return ptracePeek(PTRACE_PEEKUSR, pid, addr, out)
  978. }
  979. func ptracePoke(pokeReq int, peekReq int, pid int, addr uintptr, data []byte) (count int, err error) {
  980. // As for ptracePeek, we need to align our accesses to deal
  981. // with the possibility of straddling an invalid page.
  982. // Leading edge.
  983. n := 0
  984. if addr%sizeofPtr != 0 {
  985. var buf [sizeofPtr]byte
  986. err = ptrace(peekReq, pid, addr-addr%sizeofPtr, uintptr(unsafe.Pointer(&buf[0])))
  987. if err != nil {
  988. return 0, err
  989. }
  990. n += copy(buf[addr%sizeofPtr:], data)
  991. word := *((*uintptr)(unsafe.Pointer(&buf[0])))
  992. err = ptrace(pokeReq, pid, addr-addr%sizeofPtr, word)
  993. if err != nil {
  994. return 0, err
  995. }
  996. data = data[n:]
  997. }
  998. // Interior.
  999. for len(data) > sizeofPtr {
  1000. word := *((*uintptr)(unsafe.Pointer(&data[0])))
  1001. err = ptrace(pokeReq, pid, addr+uintptr(n), word)
  1002. if err != nil {
  1003. return n, err
  1004. }
  1005. n += sizeofPtr
  1006. data = data[sizeofPtr:]
  1007. }
  1008. // Trailing edge.
  1009. if len(data) > 0 {
  1010. var buf [sizeofPtr]byte
  1011. err = ptrace(peekReq, pid, addr+uintptr(n), uintptr(unsafe.Pointer(&buf[0])))
  1012. if err != nil {
  1013. return n, err
  1014. }
  1015. copy(buf[0:], data)
  1016. word := *((*uintptr)(unsafe.Pointer(&buf[0])))
  1017. err = ptrace(pokeReq, pid, addr+uintptr(n), word)
  1018. if err != nil {
  1019. return n, err
  1020. }
  1021. n += len(data)
  1022. }
  1023. return n, nil
  1024. }
  1025. func PtracePokeText(pid int, addr uintptr, data []byte) (count int, err error) {
  1026. return ptracePoke(PTRACE_POKETEXT, PTRACE_PEEKTEXT, pid, addr, data)
  1027. }
  1028. func PtracePokeData(pid int, addr uintptr, data []byte) (count int, err error) {
  1029. return ptracePoke(PTRACE_POKEDATA, PTRACE_PEEKDATA, pid, addr, data)
  1030. }
  1031. func PtracePokeUser(pid int, addr uintptr, data []byte) (count int, err error) {
  1032. return ptracePoke(PTRACE_POKEUSR, PTRACE_PEEKUSR, pid, addr, data)
  1033. }
  1034. func PtraceGetRegs(pid int, regsout *PtraceRegs) (err error) {
  1035. return ptrace(PTRACE_GETREGS, pid, 0, uintptr(unsafe.Pointer(regsout)))
  1036. }
  1037. func PtraceSetRegs(pid int, regs *PtraceRegs) (err error) {
  1038. return ptrace(PTRACE_SETREGS, pid, 0, uintptr(unsafe.Pointer(regs)))
  1039. }
  1040. func PtraceSetOptions(pid int, options int) (err error) {
  1041. return ptrace(PTRACE_SETOPTIONS, pid, 0, uintptr(options))
  1042. }
  1043. func PtraceGetEventMsg(pid int) (msg uint, err error) {
  1044. var data _C_long
  1045. err = ptrace(PTRACE_GETEVENTMSG, pid, 0, uintptr(unsafe.Pointer(&data)))
  1046. msg = uint(data)
  1047. return
  1048. }
  1049. func PtraceCont(pid int, signal int) (err error) {
  1050. return ptrace(PTRACE_CONT, pid, 0, uintptr(signal))
  1051. }
  1052. func PtraceSyscall(pid int, signal int) (err error) {
  1053. return ptrace(PTRACE_SYSCALL, pid, 0, uintptr(signal))
  1054. }
  1055. func PtraceSingleStep(pid int) (err error) { return ptrace(PTRACE_SINGLESTEP, pid, 0, 0) }
  1056. func PtraceAttach(pid int) (err error) { return ptrace(PTRACE_ATTACH, pid, 0, 0) }
  1057. func PtraceDetach(pid int) (err error) { return ptrace(PTRACE_DETACH, pid, 0, 0) }
  1058. //sys reboot(magic1 uint, magic2 uint, cmd int, arg string) (err error)
  1059. func Reboot(cmd int) (err error) {
  1060. return reboot(LINUX_REBOOT_MAGIC1, LINUX_REBOOT_MAGIC2, cmd, "")
  1061. }
  1062. func ReadDirent(fd int, buf []byte) (n int, err error) {
  1063. return Getdents(fd, buf)
  1064. }
  1065. //sys mount(source string, target string, fstype string, flags uintptr, data *byte) (err error)
  1066. func Mount(source string, target string, fstype string, flags uintptr, data string) (err error) {
  1067. // Certain file systems get rather angry and EINVAL if you give
  1068. // them an empty string of data, rather than NULL.
  1069. if data == "" {
  1070. return mount(source, target, fstype, flags, nil)
  1071. }
  1072. datap, err := BytePtrFromString(data)
  1073. if err != nil {
  1074. return err
  1075. }
  1076. return mount(source, target, fstype, flags, datap)
  1077. }
  1078. // Sendto
  1079. // Recvfrom
  1080. // Socketpair
  1081. /*
  1082. * Direct access
  1083. */
  1084. //sys Acct(path string) (err error)
  1085. //sys AddKey(keyType string, description string, payload []byte, ringid int) (id int, err error)
  1086. //sys Adjtimex(buf *Timex) (state int, err error)
  1087. //sys Chdir(path string) (err error)
  1088. //sys Chroot(path string) (err error)
  1089. //sys ClockGettime(clockid int32, time *Timespec) (err error)
  1090. //sys Close(fd int) (err error)
  1091. //sys CopyFileRange(rfd int, roff *int64, wfd int, woff *int64, len int, flags int) (n int, err error)
  1092. //sys Dup(oldfd int) (fd int, err error)
  1093. //sys Dup3(oldfd int, newfd int, flags int) (err error)
  1094. //sysnb EpollCreate(size int) (fd int, err error)
  1095. //sysnb EpollCreate1(flag int) (fd int, err error)
  1096. //sysnb EpollCtl(epfd int, op int, fd int, event *EpollEvent) (err error)
  1097. //sys Eventfd(initval uint, flags int) (fd int, err error) = SYS_EVENTFD2
  1098. //sys Exit(code int) = SYS_EXIT_GROUP
  1099. //sys Faccessat(dirfd int, path string, mode uint32, flags int) (err error)
  1100. //sys Fallocate(fd int, mode uint32, off int64, len int64) (err error)
  1101. //sys Fchdir(fd int) (err error)
  1102. //sys Fchmod(fd int, mode uint32) (err error)
  1103. //sys Fchownat(dirfd int, path string, uid int, gid int, flags int) (err error)
  1104. //sys fcntl(fd int, cmd int, arg int) (val int, err error)
  1105. //sys Fdatasync(fd int) (err error)
  1106. //sys Flock(fd int, how int) (err error)
  1107. //sys Fsync(fd int) (err error)
  1108. //sys Getdents(fd int, buf []byte) (n int, err error) = SYS_GETDENTS64
  1109. //sysnb Getpgid(pid int) (pgid int, err error)
  1110. func Getpgrp() (pid int) {
  1111. pid, _ = Getpgid(0)
  1112. return
  1113. }
  1114. //sysnb Getpid() (pid int)
  1115. //sysnb Getppid() (ppid int)
  1116. //sys Getpriority(which int, who int) (prio int, err error)
  1117. //sys Getrandom(buf []byte, flags int) (n int, err error)
  1118. //sysnb Getrusage(who int, rusage *Rusage) (err error)
  1119. //sysnb Getsid(pid int) (sid int, err error)
  1120. //sysnb Gettid() (tid int)
  1121. //sys Getxattr(path string, attr string, dest []byte) (sz int, err error)
  1122. //sys InotifyAddWatch(fd int, pathname string, mask uint32) (watchdesc int, err error)
  1123. //sysnb InotifyInit1(flags int) (fd int, err error)
  1124. //sysnb InotifyRmWatch(fd int, watchdesc uint32) (success int, err error)
  1125. //sysnb Kill(pid int, sig syscall.Signal) (err error)
  1126. //sys Klogctl(typ int, buf []byte) (n int, err error) = SYS_SYSLOG
  1127. //sys Lgetxattr(path string, attr string, dest []byte) (sz int, err error)
  1128. //sys Listxattr(path string, dest []byte) (sz int, err error)
  1129. //sys Llistxattr(path string, dest []byte) (sz int, err error)
  1130. //sys Lremovexattr(path string, attr string) (err error)
  1131. //sys Lsetxattr(path string, attr string, data []byte, flags int) (err error)
  1132. //sys Mkdirat(dirfd int, path string, mode uint32) (err error)
  1133. //sys Mknodat(dirfd int, path string, mode uint32, dev int) (err error)
  1134. //sys Nanosleep(time *Timespec, leftover *Timespec) (err error)
  1135. //sys PivotRoot(newroot string, putold string) (err error) = SYS_PIVOT_ROOT
  1136. //sysnb prlimit(pid int, resource int, newlimit *Rlimit, old *Rlimit) (err error) = SYS_PRLIMIT64
  1137. //sys Prctl(option int, arg2 uintptr, arg3 uintptr, arg4 uintptr, arg5 uintptr) (err error)
  1138. //sys Pselect(nfd int, r *FdSet, w *FdSet, e *FdSet, timeout *Timespec, sigmask *Sigset_t) (n int, err error) = SYS_PSELECT6
  1139. //sys read(fd int, p []byte) (n int, err error)
  1140. //sys Removexattr(path string, attr string) (err error)
  1141. //sys Renameat(olddirfd int, oldpath string, newdirfd int, newpath string) (err error)
  1142. //sys RequestKey(keyType string, description string, callback string, destRingid int) (id int, err error)
  1143. //sys Setdomainname(p []byte) (err error)
  1144. //sys Sethostname(p []byte) (err error)
  1145. //sysnb Setpgid(pid int, pgid int) (err error)
  1146. //sysnb Setsid() (pid int, err error)
  1147. //sysnb Settimeofday(tv *Timeval) (err error)
  1148. //sys Setns(fd int, nstype int) (err error)
  1149. // issue 1435.
  1150. // On linux Setuid and Setgid only affects the current thread, not the process.
  1151. // This does not match what most callers expect so we must return an error
  1152. // here rather than letting the caller think that the call succeeded.
  1153. func Setuid(uid int) (err error) {
  1154. return EOPNOTSUPP
  1155. }
  1156. func Setgid(uid int) (err error) {
  1157. return EOPNOTSUPP
  1158. }
  1159. //sys Setpriority(which int, who int, prio int) (err error)
  1160. //sys Setxattr(path string, attr string, data []byte, flags int) (err error)
  1161. //sys Statx(dirfd int, path string, flags int, mask int, stat *Statx_t) (err error)
  1162. //sys Sync()
  1163. //sys Syncfs(fd int) (err error)
  1164. //sysnb Sysinfo(info *Sysinfo_t) (err error)
  1165. //sys Tee(rfd int, wfd int, len int, flags int) (n int64, err error)
  1166. //sysnb Tgkill(tgid int, tid int, sig syscall.Signal) (err error)
  1167. //sysnb Times(tms *Tms) (ticks uintptr, err error)
  1168. //sysnb Umask(mask int) (oldmask int)
  1169. //sysnb Uname(buf *Utsname) (err error)
  1170. //sys Unmount(target string, flags int) (err error) = SYS_UMOUNT2
  1171. //sys Unshare(flags int) (err error)
  1172. //sys Ustat(dev int, ubuf *Ustat_t) (err error)
  1173. //sys write(fd int, p []byte) (n int, err error)
  1174. //sys exitThread(code int) (err error) = SYS_EXIT
  1175. //sys readlen(fd int, p *byte, np int) (n int, err error) = SYS_READ
  1176. //sys writelen(fd int, p *byte, np int) (n int, err error) = SYS_WRITE
  1177. // mmap varies by architecture; see syscall_linux_*.go.
  1178. //sys munmap(addr uintptr, length uintptr) (err error)
  1179. var mapper = &mmapper{
  1180. active: make(map[*byte][]byte),
  1181. mmap: mmap,
  1182. munmap: munmap,
  1183. }
  1184. func Mmap(fd int, offset int64, length int, prot int, flags int) (data []byte, err error) {
  1185. return mapper.Mmap(fd, offset, length, prot, flags)
  1186. }
  1187. func Munmap(b []byte) (err error) {
  1188. return mapper.Munmap(b)
  1189. }
  1190. //sys Madvise(b []byte, advice int) (err error)
  1191. //sys Mprotect(b []byte, prot int) (err error)
  1192. //sys Mlock(b []byte) (err error)
  1193. //sys Mlockall(flags int) (err error)
  1194. //sys Msync(b []byte, flags int) (err error)
  1195. //sys Munlock(b []byte) (err error)
  1196. //sys Munlockall() (err error)
  1197. // Vmsplice splices user pages from a slice of Iovecs into a pipe specified by fd,
  1198. // using the specified flags.
  1199. func Vmsplice(fd int, iovs []Iovec, flags int) (int, error) {
  1200. n, _, errno := Syscall6(
  1201. SYS_VMSPLICE,
  1202. uintptr(fd),
  1203. uintptr(unsafe.Pointer(&iovs[0])),
  1204. uintptr(len(iovs)),
  1205. uintptr(flags),
  1206. 0,
  1207. 0,
  1208. )
  1209. if errno != 0 {
  1210. return 0, syscall.Errno(errno)
  1211. }
  1212. return int(n), nil
  1213. }
  1214. /*
  1215. * Unimplemented
  1216. */
  1217. // AfsSyscall
  1218. // Alarm
  1219. // ArchPrctl
  1220. // Brk
  1221. // Capget
  1222. // Capset
  1223. // ClockGetres
  1224. // ClockNanosleep
  1225. // ClockSettime
  1226. // Clone
  1227. // CreateModule
  1228. // DeleteModule
  1229. // EpollCtlOld
  1230. // EpollPwait
  1231. // EpollWaitOld
  1232. // Execve
  1233. // Fgetxattr
  1234. // Flistxattr
  1235. // Fork
  1236. // Fremovexattr
  1237. // Fsetxattr
  1238. // Futex
  1239. // GetKernelSyms
  1240. // GetMempolicy
  1241. // GetRobustList
  1242. // GetThreadArea
  1243. // Getitimer
  1244. // Getpmsg
  1245. // IoCancel
  1246. // IoDestroy
  1247. // IoGetevents
  1248. // IoSetup
  1249. // IoSubmit
  1250. // IoprioGet
  1251. // IoprioSet
  1252. // KexecLoad
  1253. // LookupDcookie
  1254. // Mbind
  1255. // MigratePages
  1256. // Mincore
  1257. // ModifyLdt
  1258. // Mount
  1259. // MovePages
  1260. // MqGetsetattr
  1261. // MqNotify
  1262. // MqOpen
  1263. // MqTimedreceive
  1264. // MqTimedsend
  1265. // MqUnlink
  1266. // Mremap
  1267. // Msgctl
  1268. // Msgget
  1269. // Msgrcv
  1270. // Msgsnd
  1271. // Nfsservctl
  1272. // Personality
  1273. // Pselect6
  1274. // Ptrace
  1275. // Putpmsg
  1276. // QueryModule
  1277. // Quotactl
  1278. // Readahead
  1279. // Readv
  1280. // RemapFilePages
  1281. // RestartSyscall
  1282. // RtSigaction
  1283. // RtSigpending
  1284. // RtSigprocmask
  1285. // RtSigqueueinfo
  1286. // RtSigreturn
  1287. // RtSigsuspend
  1288. // RtSigtimedwait
  1289. // SchedGetPriorityMax
  1290. // SchedGetPriorityMin
  1291. // SchedGetparam
  1292. // SchedGetscheduler
  1293. // SchedRrGetInterval
  1294. // SchedSetparam
  1295. // SchedYield
  1296. // Security
  1297. // Semctl
  1298. // Semget
  1299. // Semop
  1300. // Semtimedop
  1301. // SetMempolicy
  1302. // SetRobustList
  1303. // SetThreadArea
  1304. // SetTidAddress
  1305. // Shmat
  1306. // Shmctl
  1307. // Shmdt
  1308. // Shmget
  1309. // Sigaltstack
  1310. // Signalfd
  1311. // Swapoff
  1312. // Swapon
  1313. // Sysfs
  1314. // TimerCreate
  1315. // TimerDelete
  1316. // TimerGetoverrun
  1317. // TimerGettime
  1318. // TimerSettime
  1319. // Timerfd
  1320. // Tkill (obsolete)
  1321. // Tuxcall
  1322. // Umount2
  1323. // Uselib
  1324. // Utimensat
  1325. // Vfork
  1326. // Vhangup
  1327. // Vserver
  1328. // Waitid
  1329. // _Sysctl