mirror of
https://codeberg.org/superseriousbusiness/gotosocial.git
synced 2024-12-25 02:18:16 +03:00
1e7b32490d
This allows for building GoToSocial with [SQLite transpiled to WASM](https://github.com/ncruces/go-sqlite3) and accessed through [Wazero](https://wazero.io/).
187 lines
5.6 KiB
Go
187 lines
5.6 KiB
Go
package sysfs
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import (
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"net"
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"os"
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experimentalsys "github.com/tetratelabs/wazero/experimental/sys"
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"github.com/tetratelabs/wazero/internal/fsapi"
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socketapi "github.com/tetratelabs/wazero/internal/sock"
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"github.com/tetratelabs/wazero/sys"
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)
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// NewTCPListenerFile creates a socketapi.TCPSock for a given *net.TCPListener.
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func NewTCPListenerFile(tl *net.TCPListener) socketapi.TCPSock {
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return newTCPListenerFile(tl)
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}
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// baseSockFile implements base behavior for all TCPSock, TCPConn files,
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// regardless the platform.
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type baseSockFile struct {
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experimentalsys.UnimplementedFile
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}
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var _ experimentalsys.File = (*baseSockFile)(nil)
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// IsDir implements the same method as documented on File.IsDir
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func (*baseSockFile) IsDir() (bool, experimentalsys.Errno) {
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// We need to override this method because WASI-libc prestats the FD
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// and the default impl returns ENOSYS otherwise.
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return false, 0
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}
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// Stat implements the same method as documented on File.Stat
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func (f *baseSockFile) Stat() (fs sys.Stat_t, errno experimentalsys.Errno) {
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// The mode is not really important, but it should be neither a regular file nor a directory.
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fs.Mode = os.ModeIrregular
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return
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}
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var _ socketapi.TCPSock = (*tcpListenerFile)(nil)
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type tcpListenerFile struct {
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baseSockFile
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tl *net.TCPListener
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closed bool
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nonblock bool
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}
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// newTCPListenerFile is a constructor for a socketapi.TCPSock.
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//
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// The current strategy is to wrap a net.TCPListener
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// and invoking raw syscalls using syscallConnControl:
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// this internal calls RawConn.Control(func(fd)), making sure
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// that the underlying file descriptor is valid throughout
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// the duration of the syscall.
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func newDefaultTCPListenerFile(tl *net.TCPListener) socketapi.TCPSock {
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return &tcpListenerFile{tl: tl}
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}
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// Close implements the same method as documented on experimentalsys.File
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func (f *tcpListenerFile) Close() experimentalsys.Errno {
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if !f.closed {
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return experimentalsys.UnwrapOSError(f.tl.Close())
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}
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return 0
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}
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// Addr is exposed for testing.
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func (f *tcpListenerFile) Addr() *net.TCPAddr {
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return f.tl.Addr().(*net.TCPAddr)
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}
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// IsNonblock implements the same method as documented on fsapi.File
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func (f *tcpListenerFile) IsNonblock() bool {
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return f.nonblock
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}
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// Poll implements the same method as documented on fsapi.File
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func (f *tcpListenerFile) Poll(flag fsapi.Pflag, timeoutMillis int32) (ready bool, errno experimentalsys.Errno) {
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return false, experimentalsys.ENOSYS
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}
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var _ socketapi.TCPConn = (*tcpConnFile)(nil)
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type tcpConnFile struct {
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baseSockFile
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tc *net.TCPConn
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// nonblock is true when the underlying connection is flagged as non-blocking.
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// This ensures that reads and writes return experimentalsys.EAGAIN without blocking the caller.
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nonblock bool
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// closed is true when closed was called. This ensures proper experimentalsys.EBADF
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closed bool
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}
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func newTcpConn(tc *net.TCPConn) socketapi.TCPConn {
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return &tcpConnFile{tc: tc}
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}
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// Read implements the same method as documented on experimentalsys.File
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func (f *tcpConnFile) Read(buf []byte) (n int, errno experimentalsys.Errno) {
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if len(buf) == 0 {
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return 0, 0 // Short-circuit 0-len reads.
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}
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if nonBlockingFileReadSupported && f.IsNonblock() {
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n, errno = syscallConnControl(f.tc, func(fd uintptr) (int, experimentalsys.Errno) {
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n, err := readSocket(fd, buf)
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errno = experimentalsys.UnwrapOSError(err)
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errno = fileError(f, f.closed, errno)
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return n, errno
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})
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} else {
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n, errno = read(f.tc, buf)
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}
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if errno != 0 {
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// Defer validation overhead until we've already had an error.
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errno = fileError(f, f.closed, errno)
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}
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return
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}
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// Write implements the same method as documented on experimentalsys.File
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func (f *tcpConnFile) Write(buf []byte) (n int, errno experimentalsys.Errno) {
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if nonBlockingFileWriteSupported && f.IsNonblock() {
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return syscallConnControl(f.tc, func(fd uintptr) (int, experimentalsys.Errno) {
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n, err := writeSocket(fd, buf)
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errno = experimentalsys.UnwrapOSError(err)
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errno = fileError(f, f.closed, errno)
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return n, errno
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})
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} else {
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n, errno = write(f.tc, buf)
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}
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if errno != 0 {
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// Defer validation overhead until we've already had an error.
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errno = fileError(f, f.closed, errno)
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}
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return
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}
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// Recvfrom implements the same method as documented on socketapi.TCPConn
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func (f *tcpConnFile) Recvfrom(p []byte, flags int) (n int, errno experimentalsys.Errno) {
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if flags != MSG_PEEK {
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errno = experimentalsys.EINVAL
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return
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}
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return syscallConnControl(f.tc, func(fd uintptr) (int, experimentalsys.Errno) {
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n, err := recvfrom(fd, p, MSG_PEEK)
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errno = experimentalsys.UnwrapOSError(err)
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errno = fileError(f, f.closed, errno)
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return n, errno
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})
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}
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// Close implements the same method as documented on experimentalsys.File
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func (f *tcpConnFile) Close() experimentalsys.Errno {
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return f.close()
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}
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func (f *tcpConnFile) close() experimentalsys.Errno {
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if f.closed {
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return 0
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}
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f.closed = true
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return f.Shutdown(socketapi.SHUT_RDWR)
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}
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// SetNonblock implements the same method as documented on fsapi.File
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func (f *tcpConnFile) SetNonblock(enabled bool) (errno experimentalsys.Errno) {
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f.nonblock = enabled
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_, errno = syscallConnControl(f.tc, func(fd uintptr) (int, experimentalsys.Errno) {
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return 0, experimentalsys.UnwrapOSError(setNonblockSocket(fd, enabled))
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})
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return
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}
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// IsNonblock implements the same method as documented on fsapi.File
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func (f *tcpConnFile) IsNonblock() bool {
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return f.nonblock
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}
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// Poll implements the same method as documented on fsapi.File
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func (f *tcpConnFile) Poll(flag fsapi.Pflag, timeoutMillis int32) (ready bool, errno experimentalsys.Errno) {
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return false, experimentalsys.ENOSYS
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}
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