mirror of
https://github.com/superseriousbusiness/gotosocial.git
synced 2024-11-24 12:46:38 +00:00
461 lines
14 KiB
Go
461 lines
14 KiB
Go
package vfs
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import (
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"context"
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"crypto/rand"
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"io"
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"reflect"
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"strings"
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"time"
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"github.com/tetratelabs/wazero"
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"github.com/tetratelabs/wazero/api"
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"github.com/ncruces/go-sqlite3/internal/util"
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"github.com/ncruces/go-sqlite3/util/sql3util"
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"github.com/ncruces/julianday"
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)
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// ExportHostFunctions is an internal API users need not call directly.
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//
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// ExportHostFunctions registers the required VFS host functions
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// with the provided env module.
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func ExportHostFunctions(env wazero.HostModuleBuilder) wazero.HostModuleBuilder {
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util.ExportFuncII(env, "go_vfs_find", vfsFind)
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util.ExportFuncIIJ(env, "go_localtime", vfsLocaltime)
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util.ExportFuncIIII(env, "go_randomness", vfsRandomness)
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util.ExportFuncIII(env, "go_sleep", vfsSleep)
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util.ExportFuncIII(env, "go_current_time_64", vfsCurrentTime64)
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util.ExportFuncIIIII(env, "go_full_pathname", vfsFullPathname)
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util.ExportFuncIIII(env, "go_delete", vfsDelete)
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util.ExportFuncIIIII(env, "go_access", vfsAccess)
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util.ExportFuncIIIIIII(env, "go_open", vfsOpen)
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util.ExportFuncII(env, "go_close", vfsClose)
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util.ExportFuncIIIIJ(env, "go_read", vfsRead)
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util.ExportFuncIIIIJ(env, "go_write", vfsWrite)
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util.ExportFuncIIJ(env, "go_truncate", vfsTruncate)
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util.ExportFuncIII(env, "go_sync", vfsSync)
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util.ExportFuncIII(env, "go_file_size", vfsFileSize)
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util.ExportFuncIIII(env, "go_file_control", vfsFileControl)
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util.ExportFuncII(env, "go_sector_size", vfsSectorSize)
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util.ExportFuncII(env, "go_device_characteristics", vfsDeviceCharacteristics)
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util.ExportFuncIII(env, "go_lock", vfsLock)
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util.ExportFuncIII(env, "go_unlock", vfsUnlock)
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util.ExportFuncIII(env, "go_check_reserved_lock", vfsCheckReservedLock)
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util.ExportFuncIIIIII(env, "go_shm_map", vfsShmMap)
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util.ExportFuncIIIII(env, "go_shm_lock", vfsShmLock)
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util.ExportFuncIII(env, "go_shm_unmap", vfsShmUnmap)
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util.ExportFuncVI(env, "go_shm_barrier", vfsShmBarrier)
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return env
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}
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func vfsFind(ctx context.Context, mod api.Module, zVfsName uint32) uint32 {
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name := util.ReadString(mod, zVfsName, _MAX_NAME)
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if vfs := Find(name); vfs != nil && vfs != (vfsOS{}) {
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return 1
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}
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return 0
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}
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func vfsLocaltime(ctx context.Context, mod api.Module, pTm uint32, t int64) _ErrorCode {
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tm := time.Unix(t, 0)
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var isdst int
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if tm.IsDST() {
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isdst = 1
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}
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const size = 32 / 8
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// https://pubs.opengroup.org/onlinepubs/7908799/xsh/time.h.html
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util.WriteUint32(mod, pTm+0*size, uint32(tm.Second()))
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util.WriteUint32(mod, pTm+1*size, uint32(tm.Minute()))
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util.WriteUint32(mod, pTm+2*size, uint32(tm.Hour()))
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util.WriteUint32(mod, pTm+3*size, uint32(tm.Day()))
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util.WriteUint32(mod, pTm+4*size, uint32(tm.Month()-time.January))
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util.WriteUint32(mod, pTm+5*size, uint32(tm.Year()-1900))
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util.WriteUint32(mod, pTm+6*size, uint32(tm.Weekday()-time.Sunday))
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util.WriteUint32(mod, pTm+7*size, uint32(tm.YearDay()-1))
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util.WriteUint32(mod, pTm+8*size, uint32(isdst))
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return _OK
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}
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func vfsRandomness(ctx context.Context, mod api.Module, pVfs uint32, nByte int32, zByte uint32) uint32 {
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mem := util.View(mod, zByte, uint64(nByte))
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n, _ := rand.Reader.Read(mem)
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return uint32(n)
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}
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func vfsSleep(ctx context.Context, mod api.Module, pVfs uint32, nMicro int32) _ErrorCode {
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time.Sleep(time.Duration(nMicro) * time.Microsecond)
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return _OK
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}
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func vfsCurrentTime64(ctx context.Context, mod api.Module, pVfs, piNow uint32) _ErrorCode {
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day, nsec := julianday.Date(time.Now())
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msec := day*86_400_000 + nsec/1_000_000
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util.WriteUint64(mod, piNow, uint64(msec))
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return _OK
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}
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func vfsFullPathname(ctx context.Context, mod api.Module, pVfs, zRelative uint32, nFull int32, zFull uint32) _ErrorCode {
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vfs := vfsGet(mod, pVfs)
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path := util.ReadString(mod, zRelative, _MAX_PATHNAME)
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path, err := vfs.FullPathname(path)
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if len(path) >= int(nFull) {
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return _CANTOPEN_FULLPATH
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}
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util.WriteString(mod, zFull, path)
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return vfsErrorCode(err, _CANTOPEN_FULLPATH)
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}
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func vfsDelete(ctx context.Context, mod api.Module, pVfs, zPath, syncDir uint32) _ErrorCode {
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vfs := vfsGet(mod, pVfs)
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path := util.ReadString(mod, zPath, _MAX_PATHNAME)
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err := vfs.Delete(path, syncDir != 0)
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return vfsErrorCode(err, _IOERR_DELETE)
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}
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func vfsAccess(ctx context.Context, mod api.Module, pVfs, zPath uint32, flags AccessFlag, pResOut uint32) _ErrorCode {
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vfs := vfsGet(mod, pVfs)
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path := util.ReadString(mod, zPath, _MAX_PATHNAME)
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ok, err := vfs.Access(path, flags)
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var res uint32
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if ok {
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res = 1
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}
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util.WriteUint32(mod, pResOut, res)
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return vfsErrorCode(err, _IOERR_ACCESS)
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}
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func vfsOpen(ctx context.Context, mod api.Module, pVfs, zPath, pFile uint32, flags OpenFlag, pOutFlags, pOutVFS uint32) _ErrorCode {
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vfs := vfsGet(mod, pVfs)
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name := GetFilename(ctx, mod, zPath, flags)
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var file File
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var err error
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if ffs, ok := vfs.(VFSFilename); ok {
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file, flags, err = ffs.OpenFilename(name, flags)
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} else {
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file, flags, err = vfs.Open(name.String(), flags)
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}
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if err != nil {
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return vfsErrorCode(err, _CANTOPEN)
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}
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if file, ok := file.(FilePowersafeOverwrite); ok {
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if b, ok := sql3util.ParseBool(name.URIParameter("psow")); ok {
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file.SetPowersafeOverwrite(b)
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}
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}
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if file, ok := file.(FileSharedMemory); ok &&
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pOutVFS != 0 && file.SharedMemory() != nil {
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util.WriteUint32(mod, pOutVFS, 1)
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}
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if pOutFlags != 0 {
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util.WriteUint32(mod, pOutFlags, uint32(flags))
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}
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file = cksmWrapFile(name, flags, file)
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vfsFileRegister(ctx, mod, pFile, file)
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return _OK
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}
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func vfsClose(ctx context.Context, mod api.Module, pFile uint32) _ErrorCode {
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err := vfsFileClose(ctx, mod, pFile)
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return vfsErrorCode(err, _IOERR_CLOSE)
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}
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func vfsRead(ctx context.Context, mod api.Module, pFile, zBuf uint32, iAmt int32, iOfst int64) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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buf := util.View(mod, zBuf, uint64(iAmt))
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n, err := file.ReadAt(buf, iOfst)
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if n == int(iAmt) {
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return _OK
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}
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if err != io.EOF {
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return vfsErrorCode(err, _IOERR_READ)
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}
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clear(buf[n:])
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return _IOERR_SHORT_READ
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}
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func vfsWrite(ctx context.Context, mod api.Module, pFile, zBuf uint32, iAmt int32, iOfst int64) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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buf := util.View(mod, zBuf, uint64(iAmt))
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_, err := file.WriteAt(buf, iOfst)
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return vfsErrorCode(err, _IOERR_WRITE)
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}
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func vfsTruncate(ctx context.Context, mod api.Module, pFile uint32, nByte int64) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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err := file.Truncate(nByte)
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return vfsErrorCode(err, _IOERR_TRUNCATE)
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}
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func vfsSync(ctx context.Context, mod api.Module, pFile uint32, flags SyncFlag) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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err := file.Sync(flags)
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return vfsErrorCode(err, _IOERR_FSYNC)
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}
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func vfsFileSize(ctx context.Context, mod api.Module, pFile, pSize uint32) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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size, err := file.Size()
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util.WriteUint64(mod, pSize, uint64(size))
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return vfsErrorCode(err, _IOERR_SEEK)
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}
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func vfsLock(ctx context.Context, mod api.Module, pFile uint32, eLock LockLevel) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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err := file.Lock(eLock)
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return vfsErrorCode(err, _IOERR_LOCK)
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}
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func vfsUnlock(ctx context.Context, mod api.Module, pFile uint32, eLock LockLevel) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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err := file.Unlock(eLock)
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return vfsErrorCode(err, _IOERR_UNLOCK)
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}
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func vfsCheckReservedLock(ctx context.Context, mod api.Module, pFile, pResOut uint32) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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locked, err := file.CheckReservedLock()
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var res uint32
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if locked {
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res = 1
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}
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util.WriteUint32(mod, pResOut, res)
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return vfsErrorCode(err, _IOERR_CHECKRESERVEDLOCK)
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}
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func vfsFileControl(ctx context.Context, mod api.Module, pFile uint32, op _FcntlOpcode, pArg uint32) _ErrorCode {
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file := vfsFileGet(ctx, mod, pFile).(File)
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if file, ok := file.(fileControl); ok {
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return file.fileControl(ctx, mod, op, pArg)
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}
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return vfsFileControlImpl(ctx, mod, file, op, pArg)
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}
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func vfsFileControlImpl(ctx context.Context, mod api.Module, file File, op _FcntlOpcode, pArg uint32) _ErrorCode {
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switch op {
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case _FCNTL_LOCKSTATE:
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if file, ok := file.(FileLockState); ok {
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if lk := file.LockState(); lk <= LOCK_EXCLUSIVE {
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util.WriteUint32(mod, pArg, uint32(lk))
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return _OK
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}
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}
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case _FCNTL_PERSIST_WAL:
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if file, ok := file.(FilePersistentWAL); ok {
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if i := util.ReadUint32(mod, pArg); int32(i) >= 0 {
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file.SetPersistentWAL(i != 0)
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} else if file.PersistentWAL() {
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util.WriteUint32(mod, pArg, 1)
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} else {
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util.WriteUint32(mod, pArg, 0)
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}
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return _OK
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}
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case _FCNTL_POWERSAFE_OVERWRITE:
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if file, ok := file.(FilePowersafeOverwrite); ok {
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if i := util.ReadUint32(mod, pArg); int32(i) >= 0 {
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file.SetPowersafeOverwrite(i != 0)
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} else if file.PowersafeOverwrite() {
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util.WriteUint32(mod, pArg, 1)
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} else {
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util.WriteUint32(mod, pArg, 0)
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}
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return _OK
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}
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case _FCNTL_CHUNK_SIZE:
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if file, ok := file.(FileChunkSize); ok {
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size := util.ReadUint32(mod, pArg)
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file.ChunkSize(int(size))
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return _OK
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}
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case _FCNTL_SIZE_HINT:
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if file, ok := file.(FileSizeHint); ok {
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size := util.ReadUint64(mod, pArg)
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err := file.SizeHint(int64(size))
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return vfsErrorCode(err, _IOERR_TRUNCATE)
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}
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case _FCNTL_HAS_MOVED:
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if file, ok := file.(FileHasMoved); ok {
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moved, err := file.HasMoved()
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var res uint32
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if moved {
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res = 1
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}
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util.WriteUint32(mod, pArg, res)
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return vfsErrorCode(err, _IOERR_FSTAT)
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}
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case _FCNTL_OVERWRITE:
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if file, ok := file.(FileOverwrite); ok {
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err := file.Overwrite()
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return vfsErrorCode(err, _IOERR)
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}
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case _FCNTL_COMMIT_PHASETWO:
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if file, ok := file.(FileCommitPhaseTwo); ok {
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err := file.CommitPhaseTwo()
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return vfsErrorCode(err, _IOERR)
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}
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case _FCNTL_BEGIN_ATOMIC_WRITE:
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if file, ok := file.(FileBatchAtomicWrite); ok {
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err := file.BeginAtomicWrite()
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return vfsErrorCode(err, _IOERR_BEGIN_ATOMIC)
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}
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case _FCNTL_COMMIT_ATOMIC_WRITE:
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if file, ok := file.(FileBatchAtomicWrite); ok {
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err := file.CommitAtomicWrite()
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return vfsErrorCode(err, _IOERR_COMMIT_ATOMIC)
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}
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case _FCNTL_ROLLBACK_ATOMIC_WRITE:
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if file, ok := file.(FileBatchAtomicWrite); ok {
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err := file.RollbackAtomicWrite()
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return vfsErrorCode(err, _IOERR_ROLLBACK_ATOMIC)
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}
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case _FCNTL_CKPT_START:
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if file, ok := file.(FileCheckpoint); ok {
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file.CheckpointStart()
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return _OK
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}
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case _FCNTL_CKPT_DONE:
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if file, ok := file.(FileCheckpoint); ok {
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file.CheckpointDone()
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return _OK
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}
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case _FCNTL_PRAGMA:
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if file, ok := file.(FilePragma); ok {
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ptr := util.ReadUint32(mod, pArg+1*ptrlen)
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name := util.ReadString(mod, ptr, _MAX_SQL_LENGTH)
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var value string
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if ptr := util.ReadUint32(mod, pArg+2*ptrlen); ptr != 0 {
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value = util.ReadString(mod, ptr, _MAX_SQL_LENGTH)
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}
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out, err := file.Pragma(strings.ToLower(name), value)
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ret := vfsErrorCode(err, _ERROR)
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if ret == _ERROR {
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out = err.Error()
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}
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if out != "" {
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fn := mod.ExportedFunction("sqlite3_malloc64")
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stack := [...]uint64{uint64(len(out) + 1)}
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if err := fn.CallWithStack(ctx, stack[:]); err != nil {
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panic(err)
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}
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util.WriteUint32(mod, pArg, uint32(stack[0]))
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util.WriteString(mod, uint32(stack[0]), out)
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}
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return ret
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}
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case _FCNTL_LOCK_TIMEOUT:
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if file, ok := file.(FileSharedMemory); ok {
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if shm, ok := file.SharedMemory().(blockingSharedMemory); ok {
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shm.shmEnableBlocking(util.ReadUint32(mod, pArg) != 0)
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return _OK
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}
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}
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}
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// Consider also implementing these opcodes (in use by SQLite):
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// _FCNTL_BUSYHANDLER
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// _FCNTL_LAST_ERRNO
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// _FCNTL_SYNC
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return _NOTFOUND
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}
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func vfsSectorSize(ctx context.Context, mod api.Module, pFile uint32) uint32 {
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file := vfsFileGet(ctx, mod, pFile).(File)
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return uint32(file.SectorSize())
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}
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func vfsDeviceCharacteristics(ctx context.Context, mod api.Module, pFile uint32) DeviceCharacteristic {
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file := vfsFileGet(ctx, mod, pFile).(File)
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return file.DeviceCharacteristics()
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}
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func vfsShmBarrier(ctx context.Context, mod api.Module, pFile uint32) {
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shm := vfsFileGet(ctx, mod, pFile).(FileSharedMemory).SharedMemory()
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shm.shmBarrier()
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}
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func vfsShmMap(ctx context.Context, mod api.Module, pFile uint32, iRegion, szRegion int32, bExtend, pp uint32) _ErrorCode {
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shm := vfsFileGet(ctx, mod, pFile).(FileSharedMemory).SharedMemory()
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p, rc := shm.shmMap(ctx, mod, iRegion, szRegion, bExtend != 0)
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util.WriteUint32(mod, pp, p)
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return rc
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}
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func vfsShmLock(ctx context.Context, mod api.Module, pFile uint32, offset, n int32, flags _ShmFlag) _ErrorCode {
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shm := vfsFileGet(ctx, mod, pFile).(FileSharedMemory).SharedMemory()
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return shm.shmLock(offset, n, flags)
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}
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func vfsShmUnmap(ctx context.Context, mod api.Module, pFile, bDelete uint32) _ErrorCode {
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shm := vfsFileGet(ctx, mod, pFile).(FileSharedMemory).SharedMemory()
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shm.shmUnmap(bDelete != 0)
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return _OK
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}
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func vfsGet(mod api.Module, pVfs uint32) VFS {
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var name string
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if pVfs != 0 {
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const zNameOffset = 16
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name = util.ReadString(mod, util.ReadUint32(mod, pVfs+zNameOffset), _MAX_NAME)
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}
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if vfs := Find(name); vfs != nil {
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return vfs
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}
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panic(util.NoVFSErr + util.ErrorString(name))
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}
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func vfsFileRegister(ctx context.Context, mod api.Module, pFile uint32, file File) {
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const fileHandleOffset = 4
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id := util.AddHandle(ctx, file)
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util.WriteUint32(mod, pFile+fileHandleOffset, id)
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}
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func vfsFileGet(ctx context.Context, mod api.Module, pFile uint32) any {
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const fileHandleOffset = 4
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id := util.ReadUint32(mod, pFile+fileHandleOffset)
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return util.GetHandle(ctx, id)
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}
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func vfsFileClose(ctx context.Context, mod api.Module, pFile uint32) error {
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const fileHandleOffset = 4
|
|
id := util.ReadUint32(mod, pFile+fileHandleOffset)
|
|
return util.DelHandle(ctx, id)
|
|
}
|
|
|
|
func vfsErrorCode(err error, def _ErrorCode) _ErrorCode {
|
|
if err == nil {
|
|
return _OK
|
|
}
|
|
switch v := reflect.ValueOf(err); v.Kind() {
|
|
case reflect.Uint8, reflect.Uint16, reflect.Uint32:
|
|
return _ErrorCode(v.Uint())
|
|
}
|
|
return def
|
|
}
|