github.com/hbdrawn/golang@v0.0.0-20141214014649-6b835209aba2/src/syscall/syscall_bsd.go (about) 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 5 // +build darwin dragonfly freebsd netbsd openbsd 6 7 // BSD system call wrappers shared by *BSD based systems 8 // including OS X (Darwin) and FreeBSD. Like the other 9 // syscall_*.go files it is compiled as Go code but also 10 // used as input to mksyscall which parses the //sys 11 // lines and generates system call stubs. 12 13 package syscall 14 15 import ( 16 "runtime" 17 "unsafe" 18 ) 19 20 /* 21 * Wrapped 22 */ 23 24 //sysnb getgroups(ngid int, gid *_Gid_t) (n int, err error) 25 //sysnb setgroups(ngid int, gid *_Gid_t) (err error) 26 27 func Getgroups() (gids []int, err error) { 28 n, err := getgroups(0, nil) 29 if err != nil { 30 return nil, err 31 } 32 if n == 0 { 33 return nil, nil 34 } 35 36 // Sanity check group count. Max is 16 on BSD. 37 if n < 0 || n > 1000 { 38 return nil, EINVAL 39 } 40 41 a := make([]_Gid_t, n) 42 n, err = getgroups(n, &a[0]) 43 if err != nil { 44 return nil, err 45 } 46 gids = make([]int, n) 47 for i, v := range a[0:n] { 48 gids[i] = int(v) 49 } 50 return 51 } 52 53 func Setgroups(gids []int) (err error) { 54 if len(gids) == 0 { 55 return setgroups(0, nil) 56 } 57 58 a := make([]_Gid_t, len(gids)) 59 for i, v := range gids { 60 a[i] = _Gid_t(v) 61 } 62 return setgroups(len(a), &a[0]) 63 } 64 65 func ReadDirent(fd int, buf []byte) (n int, err error) { 66 // Final argument is (basep *uintptr) and the syscall doesn't take nil. 67 // 64 bits should be enough. (32 bits isn't even on 386). Since the 68 // actual system call is getdirentries64, 64 is a good guess. 69 // TODO(rsc): Can we use a single global basep for all calls? 70 var base = (*uintptr)(unsafe.Pointer(new(uint64))) 71 n, err = Getdirentries(fd, buf, base) 72 73 // On OS X 10.10 Yosemite, if you have a directory that can be returned 74 // in a single getdirentries64 call (for example, a directory with one file), 75 // and you read from the directory at EOF twice, you get EOF both times: 76 // fd = open("dir") 77 // getdirentries64(fd) // returns data 78 // getdirentries64(fd) // returns 0 (EOF) 79 // getdirentries64(fd) // returns 0 (EOF) 80 // 81 // But if you remove the file in the middle between the two calls, the 82 // second call returns an error instead. 83 // fd = open("dir") 84 // getdirentries64(fd) // returns data 85 // getdirentries64(fd) // returns 0 (EOF) 86 // remove("dir/file") 87 // getdirentries64(fd) // returns ENOENT/EINVAL 88 // 89 // Whether you get ENOENT or EINVAL depends on exactly what was 90 // in the directory. It is deterministic, just data-dependent. 91 // 92 // This only happens in small directories. A directory containing more data 93 // than fits in a 4k getdirentries64 call will return EOF correctly. 94 // (It's not clear if the criteria is that the directory be split across multiple 95 // getdirentries64 calls or that it be split across multiple file system blocks.) 96 // 97 // We could change package os to avoid the second read at EOF, 98 // and maybe we should, but that's a bit involved. 99 // For now, treat the EINVAL/ENOENT as EOF. 100 if runtime.GOOS == "darwin" && (err == EINVAL || err == ENOENT) { 101 err = nil 102 } 103 104 return 105 } 106 107 // Wait status is 7 bits at bottom, either 0 (exited), 108 // 0x7F (stopped), or a signal number that caused an exit. 109 // The 0x80 bit is whether there was a core dump. 110 // An extra number (exit code, signal causing a stop) 111 // is in the high bits. 112 113 type WaitStatus uint32 114 115 const ( 116 mask = 0x7F 117 core = 0x80 118 shift = 8 119 120 exited = 0 121 stopped = 0x7F 122 ) 123 124 func (w WaitStatus) Exited() bool { return w&mask == exited } 125 126 func (w WaitStatus) ExitStatus() int { 127 if w&mask != exited { 128 return -1 129 } 130 return int(w >> shift) 131 } 132 133 func (w WaitStatus) Signaled() bool { return w&mask != stopped && w&mask != 0 } 134 135 func (w WaitStatus) Signal() Signal { 136 sig := Signal(w & mask) 137 if sig == stopped || sig == 0 { 138 return -1 139 } 140 return sig 141 } 142 143 func (w WaitStatus) CoreDump() bool { return w.Signaled() && w&core != 0 } 144 145 func (w WaitStatus) Stopped() bool { return w&mask == stopped && Signal(w>>shift) != SIGSTOP } 146 147 func (w WaitStatus) Continued() bool { return w&mask == stopped && Signal(w>>shift) == SIGSTOP } 148 149 func (w WaitStatus) StopSignal() Signal { 150 if !w.Stopped() { 151 return -1 152 } 153 return Signal(w>>shift) & 0xFF 154 } 155 156 func (w WaitStatus) TrapCause() int { return -1 } 157 158 //sys wait4(pid int, wstatus *_C_int, options int, rusage *Rusage) (wpid int, err error) 159 160 func Wait4(pid int, wstatus *WaitStatus, options int, rusage *Rusage) (wpid int, err error) { 161 var status _C_int 162 wpid, err = wait4(pid, &status, options, rusage) 163 if wstatus != nil { 164 *wstatus = WaitStatus(status) 165 } 166 return 167 } 168 169 //sys accept(s int, rsa *RawSockaddrAny, addrlen *_Socklen) (fd int, err error) 170 //sys bind(s int, addr unsafe.Pointer, addrlen _Socklen) (err error) 171 //sys connect(s int, addr unsafe.Pointer, addrlen _Socklen) (err error) 172 //sysnb socket(domain int, typ int, proto int) (fd int, err error) 173 //sys getsockopt(s int, level int, name int, val unsafe.Pointer, vallen *_Socklen) (err error) 174 //sys setsockopt(s int, level int, name int, val unsafe.Pointer, vallen uintptr) (err error) 175 //sysnb getpeername(fd int, rsa *RawSockaddrAny, addrlen *_Socklen) (err error) 176 //sysnb getsockname(fd int, rsa *RawSockaddrAny, addrlen *_Socklen) (err error) 177 //sys Shutdown(s int, how int) (err error) 178 179 func (sa *SockaddrInet4) sockaddr() (unsafe.Pointer, _Socklen, error) { 180 if sa.Port < 0 || sa.Port > 0xFFFF { 181 return nil, 0, EINVAL 182 } 183 sa.raw.Len = SizeofSockaddrInet4 184 sa.raw.Family = AF_INET 185 p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port)) 186 p[0] = byte(sa.Port >> 8) 187 p[1] = byte(sa.Port) 188 for i := 0; i < len(sa.Addr); i++ { 189 sa.raw.Addr[i] = sa.Addr[i] 190 } 191 return unsafe.Pointer(&sa.raw), _Socklen(sa.raw.Len), nil 192 } 193 194 func (sa *SockaddrInet6) sockaddr() (unsafe.Pointer, _Socklen, error) { 195 if sa.Port < 0 || sa.Port > 0xFFFF { 196 return nil, 0, EINVAL 197 } 198 sa.raw.Len = SizeofSockaddrInet6 199 sa.raw.Family = AF_INET6 200 p := (*[2]byte)(unsafe.Pointer(&sa.raw.Port)) 201 p[0] = byte(sa.Port >> 8) 202 p[1] = byte(sa.Port) 203 sa.raw.Scope_id = sa.ZoneId 204 for i := 0; i < len(sa.Addr); i++ { 205 sa.raw.Addr[i] = sa.Addr[i] 206 } 207 return unsafe.Pointer(&sa.raw), _Socklen(sa.raw.Len), nil 208 } 209 210 func (sa *SockaddrUnix) sockaddr() (unsafe.Pointer, _Socklen, error) { 211 name := sa.Name 212 n := len(name) 213 if n >= len(sa.raw.Path) || n == 0 { 214 return nil, 0, EINVAL 215 } 216 sa.raw.Len = byte(3 + n) // 2 for Family, Len; 1 for NUL 217 sa.raw.Family = AF_UNIX 218 for i := 0; i < n; i++ { 219 sa.raw.Path[i] = int8(name[i]) 220 } 221 return unsafe.Pointer(&sa.raw), _Socklen(sa.raw.Len), nil 222 } 223 224 func (sa *SockaddrDatalink) sockaddr() (unsafe.Pointer, _Socklen, error) { 225 if sa.Index == 0 { 226 return nil, 0, EINVAL 227 } 228 sa.raw.Len = sa.Len 229 sa.raw.Family = AF_LINK 230 sa.raw.Index = sa.Index 231 sa.raw.Type = sa.Type 232 sa.raw.Nlen = sa.Nlen 233 sa.raw.Alen = sa.Alen 234 sa.raw.Slen = sa.Slen 235 for i := 0; i < len(sa.raw.Data); i++ { 236 sa.raw.Data[i] = sa.Data[i] 237 } 238 return unsafe.Pointer(&sa.raw), SizeofSockaddrDatalink, nil 239 } 240 241 func anyToSockaddr(rsa *RawSockaddrAny) (Sockaddr, error) { 242 switch rsa.Addr.Family { 243 case AF_LINK: 244 pp := (*RawSockaddrDatalink)(unsafe.Pointer(rsa)) 245 sa := new(SockaddrDatalink) 246 sa.Len = pp.Len 247 sa.Family = pp.Family 248 sa.Index = pp.Index 249 sa.Type = pp.Type 250 sa.Nlen = pp.Nlen 251 sa.Alen = pp.Alen 252 sa.Slen = pp.Slen 253 for i := 0; i < len(sa.Data); i++ { 254 sa.Data[i] = pp.Data[i] 255 } 256 return sa, nil 257 258 case AF_UNIX: 259 pp := (*RawSockaddrUnix)(unsafe.Pointer(rsa)) 260 if pp.Len < 2 || pp.Len > SizeofSockaddrUnix { 261 return nil, EINVAL 262 } 263 sa := new(SockaddrUnix) 264 265 // Some BSDs include the trailing NUL in the length, whereas 266 // others do not. Work around this by subtracting the leading 267 // family and len. The path is then scanned to see if a NUL 268 // terminator still exists within the length. 269 n := int(pp.Len) - 2 // subtract leading Family, Len 270 for i := 0; i < n; i++ { 271 if pp.Path[i] == 0 { 272 // found early NUL; assume Len included the NUL 273 // or was overestimating. 274 n = i 275 break 276 } 277 } 278 bytes := (*[10000]byte)(unsafe.Pointer(&pp.Path[0]))[0:n] 279 sa.Name = string(bytes) 280 return sa, nil 281 282 case AF_INET: 283 pp := (*RawSockaddrInet4)(unsafe.Pointer(rsa)) 284 sa := new(SockaddrInet4) 285 p := (*[2]byte)(unsafe.Pointer(&pp.Port)) 286 sa.Port = int(p[0])<<8 + int(p[1]) 287 for i := 0; i < len(sa.Addr); i++ { 288 sa.Addr[i] = pp.Addr[i] 289 } 290 return sa, nil 291 292 case AF_INET6: 293 pp := (*RawSockaddrInet6)(unsafe.Pointer(rsa)) 294 sa := new(SockaddrInet6) 295 p := (*[2]byte)(unsafe.Pointer(&pp.Port)) 296 sa.Port = int(p[0])<<8 + int(p[1]) 297 sa.ZoneId = pp.Scope_id 298 for i := 0; i < len(sa.Addr); i++ { 299 sa.Addr[i] = pp.Addr[i] 300 } 301 return sa, nil 302 } 303 return nil, EAFNOSUPPORT 304 } 305 306 func Accept(fd int) (nfd int, sa Sockaddr, err error) { 307 var rsa RawSockaddrAny 308 var len _Socklen = SizeofSockaddrAny 309 nfd, err = accept(fd, &rsa, &len) 310 if err != nil { 311 return 312 } 313 if runtime.GOOS == "darwin" && len == 0 { 314 // Accepted socket has no address. 315 // This is likely due to a bug in xnu kernels, 316 // where instead of ECONNABORTED error socket 317 // is accepted, but has no address. 318 Close(nfd) 319 return 0, nil, ECONNABORTED 320 } 321 sa, err = anyToSockaddr(&rsa) 322 if err != nil { 323 Close(nfd) 324 nfd = 0 325 } 326 return 327 } 328 329 func Getsockname(fd int) (sa Sockaddr, err error) { 330 var rsa RawSockaddrAny 331 var len _Socklen = SizeofSockaddrAny 332 if err = getsockname(fd, &rsa, &len); err != nil { 333 return 334 } 335 // TODO(jsing): DragonFly has a "bug" (see issue 3349), which should be 336 // reported upstream. 337 if runtime.GOOS == "dragonfly" && rsa.Addr.Family == AF_UNSPEC && rsa.Addr.Len == 0 { 338 rsa.Addr.Family = AF_UNIX 339 rsa.Addr.Len = SizeofSockaddrUnix 340 } 341 return anyToSockaddr(&rsa) 342 } 343 344 //sysnb socketpair(domain int, typ int, proto int, fd *[2]int32) (err error) 345 346 func GetsockoptByte(fd, level, opt int) (value byte, err error) { 347 var n byte 348 vallen := _Socklen(1) 349 err = getsockopt(fd, level, opt, unsafe.Pointer(&n), &vallen) 350 return n, err 351 } 352 353 func GetsockoptInet4Addr(fd, level, opt int) (value [4]byte, err error) { 354 vallen := _Socklen(4) 355 err = getsockopt(fd, level, opt, unsafe.Pointer(&value[0]), &vallen) 356 return value, err 357 } 358 359 func GetsockoptIPMreq(fd, level, opt int) (*IPMreq, error) { 360 var value IPMreq 361 vallen := _Socklen(SizeofIPMreq) 362 err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen) 363 return &value, err 364 } 365 366 func GetsockoptIPv6Mreq(fd, level, opt int) (*IPv6Mreq, error) { 367 var value IPv6Mreq 368 vallen := _Socklen(SizeofIPv6Mreq) 369 err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen) 370 return &value, err 371 } 372 373 func GetsockoptIPv6MTUInfo(fd, level, opt int) (*IPv6MTUInfo, error) { 374 var value IPv6MTUInfo 375 vallen := _Socklen(SizeofIPv6MTUInfo) 376 err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen) 377 return &value, err 378 } 379 380 func GetsockoptICMPv6Filter(fd, level, opt int) (*ICMPv6Filter, error) { 381 var value ICMPv6Filter 382 vallen := _Socklen(SizeofICMPv6Filter) 383 err := getsockopt(fd, level, opt, unsafe.Pointer(&value), &vallen) 384 return &value, err 385 } 386 387 //sys recvfrom(fd int, p []byte, flags int, from *RawSockaddrAny, fromlen *_Socklen) (n int, err error) 388 //sys sendto(s int, buf []byte, flags int, to unsafe.Pointer, addrlen _Socklen) (err error) 389 //sys recvmsg(s int, msg *Msghdr, flags int) (n int, err error) 390 391 func Recvmsg(fd int, p, oob []byte, flags int) (n, oobn int, recvflags int, from Sockaddr, err error) { 392 var msg Msghdr 393 var rsa RawSockaddrAny 394 msg.Name = (*byte)(unsafe.Pointer(&rsa)) 395 msg.Namelen = uint32(SizeofSockaddrAny) 396 var iov Iovec 397 if len(p) > 0 { 398 iov.Base = (*byte)(unsafe.Pointer(&p[0])) 399 iov.SetLen(len(p)) 400 } 401 var dummy byte 402 if len(oob) > 0 { 403 // receive at least one normal byte 404 if len(p) == 0 { 405 iov.Base = &dummy 406 iov.SetLen(1) 407 } 408 msg.Control = (*byte)(unsafe.Pointer(&oob[0])) 409 msg.SetControllen(len(oob)) 410 } 411 msg.Iov = &iov 412 msg.Iovlen = 1 413 if n, err = recvmsg(fd, &msg, flags); err != nil { 414 return 415 } 416 oobn = int(msg.Controllen) 417 recvflags = int(msg.Flags) 418 // source address is only specified if the socket is unconnected 419 if rsa.Addr.Family != AF_UNSPEC { 420 from, err = anyToSockaddr(&rsa) 421 } 422 return 423 } 424 425 //sys sendmsg(s int, msg *Msghdr, flags int) (n int, err error) 426 427 func Sendmsg(fd int, p, oob []byte, to Sockaddr, flags int) (err error) { 428 _, err = SendmsgN(fd, p, oob, to, flags) 429 return 430 } 431 432 func SendmsgN(fd int, p, oob []byte, to Sockaddr, flags int) (n int, err error) { 433 var ptr unsafe.Pointer 434 var salen _Socklen 435 if to != nil { 436 ptr, salen, err = to.sockaddr() 437 if err != nil { 438 return 0, err 439 } 440 } 441 var msg Msghdr 442 msg.Name = (*byte)(unsafe.Pointer(ptr)) 443 msg.Namelen = uint32(salen) 444 var iov Iovec 445 if len(p) > 0 { 446 iov.Base = (*byte)(unsafe.Pointer(&p[0])) 447 iov.SetLen(len(p)) 448 } 449 var dummy byte 450 if len(oob) > 0 { 451 // send at least one normal byte 452 if len(p) == 0 { 453 iov.Base = &dummy 454 iov.SetLen(1) 455 } 456 msg.Control = (*byte)(unsafe.Pointer(&oob[0])) 457 msg.SetControllen(len(oob)) 458 } 459 msg.Iov = &iov 460 msg.Iovlen = 1 461 if n, err = sendmsg(fd, &msg, flags); err != nil { 462 return 0, err 463 } 464 if len(oob) > 0 && len(p) == 0 { 465 n = 0 466 } 467 return n, nil 468 } 469 470 //sys kevent(kq int, change unsafe.Pointer, nchange int, event unsafe.Pointer, nevent int, timeout *Timespec) (n int, err error) 471 472 func Kevent(kq int, changes, events []Kevent_t, timeout *Timespec) (n int, err error) { 473 var change, event unsafe.Pointer 474 if len(changes) > 0 { 475 change = unsafe.Pointer(&changes[0]) 476 } 477 if len(events) > 0 { 478 event = unsafe.Pointer(&events[0]) 479 } 480 return kevent(kq, change, len(changes), event, len(events), timeout) 481 } 482 483 //sys sysctl(mib []_C_int, old *byte, oldlen *uintptr, new *byte, newlen uintptr) (err error) = SYS___SYSCTL 484 485 func Sysctl(name string) (value string, err error) { 486 // Translate name to mib number. 487 mib, err := nametomib(name) 488 if err != nil { 489 return "", err 490 } 491 492 // Find size. 493 n := uintptr(0) 494 if err = sysctl(mib, nil, &n, nil, 0); err != nil { 495 return "", err 496 } 497 if n == 0 { 498 return "", nil 499 } 500 501 // Read into buffer of that size. 502 buf := make([]byte, n) 503 if err = sysctl(mib, &buf[0], &n, nil, 0); err != nil { 504 return "", err 505 } 506 507 // Throw away terminating NUL. 508 if n > 0 && buf[n-1] == '\x00' { 509 n-- 510 } 511 return string(buf[0:n]), nil 512 } 513 514 func SysctlUint32(name string) (value uint32, err error) { 515 // Translate name to mib number. 516 mib, err := nametomib(name) 517 if err != nil { 518 return 0, err 519 } 520 521 // Read into buffer of that size. 522 n := uintptr(4) 523 buf := make([]byte, 4) 524 if err = sysctl(mib, &buf[0], &n, nil, 0); err != nil { 525 return 0, err 526 } 527 if n != 4 { 528 return 0, EIO 529 } 530 return *(*uint32)(unsafe.Pointer(&buf[0])), nil 531 } 532 533 //sys utimes(path string, timeval *[2]Timeval) (err error) 534 535 func Utimes(path string, tv []Timeval) (err error) { 536 if len(tv) != 2 { 537 return EINVAL 538 } 539 return utimes(path, (*[2]Timeval)(unsafe.Pointer(&tv[0]))) 540 } 541 542 func UtimesNano(path string, ts []Timespec) error { 543 // TODO: The BSDs can do utimensat with SYS_UTIMENSAT but it 544 // isn't supported by darwin so this uses utimes instead 545 if len(ts) != 2 { 546 return EINVAL 547 } 548 // Not as efficient as it could be because Timespec and 549 // Timeval have different types in the different OSes 550 tv := [2]Timeval{ 551 NsecToTimeval(TimespecToNsec(ts[0])), 552 NsecToTimeval(TimespecToNsec(ts[1])), 553 } 554 return utimes(path, (*[2]Timeval)(unsafe.Pointer(&tv[0]))) 555 } 556 557 //sys futimes(fd int, timeval *[2]Timeval) (err error) 558 559 func Futimes(fd int, tv []Timeval) (err error) { 560 if len(tv) != 2 { 561 return EINVAL 562 } 563 return futimes(fd, (*[2]Timeval)(unsafe.Pointer(&tv[0]))) 564 } 565 566 //sys fcntl(fd int, cmd int, arg int) (val int, err error) 567 568 // TODO: wrap 569 // Acct(name nil-string) (err error) 570 // Gethostuuid(uuid *byte, timeout *Timespec) (err error) 571 // Madvise(addr *byte, len int, behav int) (err error) 572 // Mprotect(addr *byte, len int, prot int) (err error) 573 // Msync(addr *byte, len int, flags int) (err error) 574 // Ptrace(req int, pid int, addr uintptr, data int) (ret uintptr, err error) 575 576 var mapper = &mmapper{ 577 active: make(map[*byte][]byte), 578 mmap: mmap, 579 munmap: munmap, 580 } 581 582 func Mmap(fd int, offset int64, length int, prot int, flags int) (data []byte, err error) { 583 return mapper.Mmap(fd, offset, length, prot, flags) 584 } 585 586 func Munmap(b []byte) (err error) { 587 return mapper.Munmap(b) 588 }