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syscall: fix Plan 9 build.
Move mmapper from syscall.go to syscall_unix.go. Remove Sendfile from syscall_plan9.go. R=rsc, alex.brainman CC=golang-dev https://golang.org/cl/4368060
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@ -13,11 +13,6 @@
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// errno is an operating system error number describing the failure.
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package syscall
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import (
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"sync"
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"unsafe"
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)
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// StringByteSlice returns a NUL-terminated slice of bytes
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// containing the text of s.
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func StringByteSlice(s string) []byte {
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@ -33,63 +28,3 @@ func StringBytePtr(s string) *byte { return &StringByteSlice(s)[0] }
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// Single-word zero for use when we need a valid pointer to 0 bytes.
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// See mksyscall.sh.
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var _zero uintptr
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// Mmap manager, for use by operating system-specific implementations.
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type mmapper struct {
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sync.Mutex
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active map[*byte][]byte // active mappings; key is last byte in mapping
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mmap func(addr, length uintptr, prot, flags, fd int, offset int64) (uintptr, int)
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munmap func(addr uintptr, length uintptr) int
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}
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func (m *mmapper) Mmap(fd int, offset int64, length int, prot int, flags int) (data []byte, errno int) {
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if length <= 0 {
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return nil, EINVAL
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}
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// Map the requested memory.
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addr, errno := m.mmap(0, uintptr(length), prot, flags, fd, offset)
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if errno != 0 {
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return nil, errno
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}
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// Slice memory layout
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var sl = struct {
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addr uintptr
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len int
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cap int
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}{addr, length, length}
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// Use unsafe to turn sl into a []byte.
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b := *(*[]byte)(unsafe.Pointer(&sl))
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// Register mapping in m and return it.
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p := &b[cap(b)-1]
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m.Lock()
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defer m.Unlock()
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m.active[p] = b
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return b, 0
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}
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func (m *mmapper) Munmap(data []byte) (errno int) {
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if len(data) == 0 || len(data) != cap(data) {
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return EINVAL
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}
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// Find the base of the mapping.
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p := &data[cap(data)-1]
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m.Lock()
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defer m.Unlock()
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b := m.active[p]
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if b == nil || &b[0] != &data[0] {
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return EINVAL
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}
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// Unmap the memory and update m.
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if errno := m.munmap(uintptr(unsafe.Pointer(&b[0])), uintptr(len(b))); errno != 0 {
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return errno
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}
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m.active[p] = nil, false
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return 0
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}
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@ -327,11 +327,6 @@ func Getgroups() (gids []int, err Error) {
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return make([]int, 0), nil
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}
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// TODO
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func Sendfile(outfd int, infd int, offset *int64, count int) (written int, errno int) {
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return -1, ENOSYS
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}
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//sys Dup(oldfd int, newfd int) (fd int, err Error)
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//sys Open(path string, mode int) (fd int, err Error)
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//sys Create(path string, mode int, perm uint32) (fd int, err Error)
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@ -4,6 +4,12 @@
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package syscall
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import (
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"sync"
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"unsafe"
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)
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var (
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Stdin = 0
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Stdout = 1
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@ -21,3 +27,63 @@ func Errstr(errno int) string {
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}
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return errors[errno]
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}
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// Mmap manager, for use by operating system-specific implementations.
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type mmapper struct {
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sync.Mutex
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active map[*byte][]byte // active mappings; key is last byte in mapping
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mmap func(addr, length uintptr, prot, flags, fd int, offset int64) (uintptr, int)
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munmap func(addr uintptr, length uintptr) int
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}
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func (m *mmapper) Mmap(fd int, offset int64, length int, prot int, flags int) (data []byte, errno int) {
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if length <= 0 {
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return nil, EINVAL
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}
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// Map the requested memory.
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addr, errno := m.mmap(0, uintptr(length), prot, flags, fd, offset)
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if errno != 0 {
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return nil, errno
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}
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// Slice memory layout
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var sl = struct {
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addr uintptr
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len int
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cap int
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}{addr, length, length}
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// Use unsafe to turn sl into a []byte.
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b := *(*[]byte)(unsafe.Pointer(&sl))
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// Register mapping in m and return it.
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p := &b[cap(b)-1]
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m.Lock()
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defer m.Unlock()
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m.active[p] = b
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return b, 0
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}
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func (m *mmapper) Munmap(data []byte) (errno int) {
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if len(data) == 0 || len(data) != cap(data) {
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return EINVAL
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}
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// Find the base of the mapping.
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p := &data[cap(data)-1]
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m.Lock()
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defer m.Unlock()
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b := m.active[p]
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if b == nil || &b[0] != &data[0] {
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return EINVAL
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}
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// Unmap the memory and update m.
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if errno := m.munmap(uintptr(unsafe.Pointer(&b[0])), uintptr(len(b))); errno != 0 {
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return errno
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}
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m.active[p] = nil, false
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return 0
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}
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