mirror of
https://source.quilibrium.com/quilibrium/ceremonyclient.git
synced 2024-12-26 00:25:17 +00:00
461 lines
10 KiB
Go
461 lines
10 KiB
Go
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// Copyright 2012 The LevelDB-Go and Pebble Authors. All rights reserved. Use
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// of this source code is governed by a BSD-style license that can be found in
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// the LICENSE file.
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package vfs
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import (
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"fmt"
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"io"
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"os"
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"sort"
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"strconv"
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"strings"
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"testing"
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"github.com/cockroachdb/datadriven"
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"github.com/stretchr/testify/require"
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)
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func runTestCases(t *testing.T, testCases []string, fs *MemFS) {
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var f File
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for _, tc := range testCases {
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s := strings.Split(tc, " ")[1:]
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saveF := s[0] == "f" && s[1] == "="
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if saveF {
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s = s[2:]
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}
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fails := s[len(s)-1] == "fails"
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if fails {
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s = s[:len(s)-1]
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}
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var (
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fi os.FileInfo
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g File
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err error
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)
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switch s[0] {
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case "create":
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g, err = fs.Create(s[1])
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case "link":
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err = fs.Link(s[1], s[2])
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case "open":
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g, err = fs.Open(s[1])
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case "openDir":
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g, err = fs.OpenDir(s[1])
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case "mkdirall":
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err = fs.MkdirAll(s[1], 0755)
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case "remove":
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err = fs.Remove(s[1])
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case "rename":
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err = fs.Rename(s[1], s[2])
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case "reuseForWrite":
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g, err = fs.ReuseForWrite(s[1], s[2])
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case "resetToSynced":
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fs.ResetToSyncedState()
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case "ignoreSyncs":
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fs.SetIgnoreSyncs(true)
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case "stopIgnoringSyncs":
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fs.SetIgnoreSyncs(false)
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case "f.write":
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_, err = f.Write([]byte(s[1]))
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case "f.sync":
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err = f.Sync()
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case "f.read":
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n, _ := strconv.Atoi(s[1])
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buf := make([]byte, n)
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_, err = io.ReadFull(f, buf)
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if err != nil {
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break
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}
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if got, want := string(buf), s[3]; got != want {
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t.Fatalf("%q: got %q, want %q", tc, got, want)
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}
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case "f.readat":
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n, _ := strconv.Atoi(s[1])
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off, _ := strconv.Atoi(s[2])
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buf := make([]byte, n)
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_, err = f.ReadAt(buf, int64(off))
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if err != nil {
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break
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}
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if got, want := string(buf), s[4]; got != want {
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t.Fatalf("%q: got %q, want %q", tc, got, want)
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}
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case "f.close":
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f, err = nil, f.Close()
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case "f.stat.name":
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fi, err = f.Stat()
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if err != nil {
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break
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}
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if got, want := fi.Name(), s[2]; got != want {
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t.Fatalf("%q: got %q, want %q", tc, got, want)
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}
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default:
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t.Fatalf("bad test case: %q", tc)
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}
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if saveF {
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f, g = g, nil
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} else if g != nil {
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g.Close()
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}
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if fails {
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if err == nil {
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t.Fatalf("%q: got nil error, want non-nil", tc)
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}
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} else {
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if err != nil {
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t.Fatalf("%q: %v", tc, err)
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}
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}
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}
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// Both "" and "/" are allowed to be used to refer to the root of the FS
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// for the purposes of cloning.
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checkClonedIsEquivalent(t, fs, "")
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checkClonedIsEquivalent(t, fs, "/")
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}
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// Test that the FS can be cloned and that the clone serializes identically.
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func checkClonedIsEquivalent(t *testing.T, fs *MemFS, path string) {
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t.Helper()
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clone := NewMem()
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cloned, err := Clone(fs, clone, path, path)
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require.NoError(t, err)
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require.True(t, cloned)
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require.Equal(t, fs.String(), clone.String())
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}
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func TestBasics(t *testing.T) {
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fs := NewMem()
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testCases := []string{
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// Create a top-level file.
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"1a: create /foo",
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// Create a child of that file. It should fail, since /foo is not a directory.
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"2a: create /foo/x fails",
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// Create a third-level file. It should fail, since /bar has not been created.
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// Similarly, opening that file should fail.
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"3a: create /bar/baz/y fails",
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"3b: open /bar/baz/y fails",
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// Make the /bar/baz directory; create a third-level file. Creation should now succeed.
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"4a: mkdirall /bar/baz",
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"4b: f = create /bar/baz/y",
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"4c: f.stat.name == y",
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// Write some data; read it back.
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"5a: f.write abcde",
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"5b: f.close",
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"5c: f = open /bar/baz/y",
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"5d: f.read 5 == abcde",
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"5e: f.readat 2 1 == bc",
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"5f: f.close",
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// Link /bar/baz/y to /bar/baz/z. We should be able to read from both files
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// and remove them independently.
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"6a: link /bar/baz/y /bar/baz/z",
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"6b: f = open /bar/baz/z",
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"6c: f.read 5 == abcde",
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"6d: f.close",
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"6e: remove /bar/baz/z",
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"6f: f = open /bar/baz/y",
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"6g: f.read 5 == abcde",
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"6h: f.close",
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// Remove the file twice. The first should succeed, the second should fail.
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"7a: remove /bar/baz/y",
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"7b: remove /bar/baz/y fails",
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"7c: open /bar/baz/y fails",
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// Rename /foo to /goo. Trying to open /foo should succeed before the rename and
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// fail afterwards, and vice versa for /goo.
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"8a: open /foo",
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"8b: open /goo fails",
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"8c: rename /foo /goo",
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"8d: open /foo fails",
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"8e: open /goo",
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// Create /bar/baz/z and rename /bar/baz to /bar/caz.
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"9a: create /bar/baz/z",
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"9b: open /bar/baz/z",
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"9c: open /bar/caz/z fails",
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"9d: rename /bar/baz /bar/caz",
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"9e: open /bar/baz/z fails",
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"9f: open /bar/caz/z",
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// ReuseForWrite
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"10a: reuseForWrite /bar/caz/z /bar/z",
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"10b: open /bar/caz/z fails",
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"10c: open /bar/z",
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// Opening the root directory works.
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"11a: f = open /",
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"11b: f.stat.name == /",
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}
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runTestCases(t, testCases, fs)
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}
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func TestList(t *testing.T) {
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fs := NewMem()
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dirnames := []string{
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"/bar",
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"/foo/2",
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}
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for _, dirname := range dirnames {
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err := fs.MkdirAll(dirname, 0755)
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if err != nil {
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t.Fatalf("MkdirAll %q: %v", dirname, err)
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}
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}
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filenames := []string{
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"/a",
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"/bar/baz",
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"/foo/0",
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"/foo/1",
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"/foo/2/a",
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"/foo/2/b",
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"/foo/3",
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"/foot",
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}
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for _, filename := range filenames {
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f, err := fs.Create(filename)
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if err != nil {
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t.Fatalf("Create %q: %v", filename, err)
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}
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if err := f.Close(); err != nil {
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t.Fatalf("Close %q: %v", filename, err)
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}
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}
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{
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got := fs.String()
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const want = ` /
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0 a
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bar/
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0 baz
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foo/
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0 0
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0 1
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2/
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0 a
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0 b
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0 3
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0 foot
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`
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if got != want {
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t.Fatalf("String:\n----got----\n%s----want----\n%s", got, want)
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}
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}
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testCases := []string{
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"/:a bar foo foot",
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"/bar:baz",
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"/bar/:baz",
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"/baz:",
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"/baz/:",
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"/foo:0 1 2 3",
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"/foo/:0 1 2 3",
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"/foo/1:",
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"/foo/1/:",
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"/foo/2:a b",
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"/foo/2/:a b",
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"/foot:",
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"/foot/:",
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}
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for _, tc := range testCases {
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s := strings.Split(tc, ":")
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list, _ := fs.List(s[0])
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sort.Strings(list)
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got := strings.Join(list, " ")
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want := s[1]
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if got != want {
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t.Errorf("List %q: got %q, want %q", s[0], got, want)
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}
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}
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}
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func TestMemFile(t *testing.T) {
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want := "foo"
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f := NewMemFile([]byte(want))
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buf, err := io.ReadAll(f)
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if err != nil {
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t.Fatalf("%v", err)
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}
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if got := string(buf); got != want {
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t.Fatalf("got %q, want %q", got, want)
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}
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}
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func TestStrictFS(t *testing.T) {
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fs := NewStrictMem()
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testCases := []string{
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// Created file disappears if directory is not synced.
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"1a: create /foo",
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"1b: open /foo",
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"1c: resetToSynced",
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"1d: open /foo fails",
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// Create directory and a file in it and write and read from it.
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"2a: mkdirall /bar",
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"2b: f = create /bar/y",
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"2c: f.stat.name == y",
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// Write some data; read it back.
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"2d: f.write abcde",
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"2e: f.close",
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"2f: f = open /bar/y",
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"2g: f.read 5 == abcde",
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"2h: f.close",
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"2i: open /bar",
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// Resetting causes both the directory and file to disappear.
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"3a: resetToSynced",
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"3b: openDir /bar fails",
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"3c: open /bar/y fails",
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// Create the directory and file again. Link the file to another file in the same dir,
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// and to a file in the root dir. Sync the root dir. After reset, the created dir and the
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// file in the root dir are the only ones visible.
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"4a: mkdirall /bar",
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"4b: create /bar/y",
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"4c: f = openDir /",
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"4d: f.sync",
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"4e: f.close",
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"4f: link /bar/y /bar/z",
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"4g: link /bar/y /z",
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"4h: f = openDir /",
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"4i: f.sync",
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"4j: f.close",
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"4k: resetToSynced",
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"4l: openDir /bar",
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"4m: open /bar/y fails",
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"4n: open /bar/z fails",
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"4o: open /z",
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// Create the file in the directory again and this time sync /bar directory. The file is
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// preserved after reset.
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"5a: create /bar/y",
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"5b: f = openDir /bar",
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"5c: f.sync",
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"5d: f.close",
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"5e: resetToSynced",
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"5f: openDir /bar",
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"5g: open /bar/y",
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// Unsynced data in the file is lost on reset.
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"5a: f = create /bar/y",
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"5b: f.write a",
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"5c: f.sync",
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"5d: f.write b",
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"5e: f.close",
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"5f: f = openDir /bar",
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"5g: f.sync",
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"5h: f.close",
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"5i: resetToSynced",
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"5j: f = open /bar/y",
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"5k: f.read 1 = a",
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"5l: f.read 1 fails",
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"5m: f.close",
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// reuseForWrite works correctly in strict mode in that unsynced data does not overwrite
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// previous contents when a reset happens.
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"6a: f = create /z",
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"6b: f.write abcdefgh",
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"6c: f.sync",
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"6d: f.close",
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"6e: f = reuseForWrite /z /y",
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"6f: f.write x",
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"6g: f.sync",
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"6h: f.write y", // will be lost
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"6i: f.close",
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"6j: f = openDir /",
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"6k: f.sync",
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"6l: f.close",
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"6m: resetToSynced",
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"6n: f = open /y",
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"6o: f.read 8 = xbcdefgh",
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"6p: f.close",
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// Ignore syncs.
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"7a: f = create /z",
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"7b: f.write a",
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"7c: f.sync",
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"7d: ignoreSyncs",
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"7e: f.write b",
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"7f: f.sync",
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"7g: f.close",
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"7h: stopIgnoringSyncs",
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"7e: f = openDir /",
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"7f: f.sync",
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"7g: f.close",
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"7h: resetToSynced",
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"7i: f = open /z",
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"7j: f.read 1 = a",
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"7k: f.read 1 fails",
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"7l: f.close",
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}
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runTestCases(t, testCases, fs)
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}
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func TestMemFSLock(t *testing.T) {
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filesystems := map[string]FS{}
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fileLocks := map[string]io.Closer{}
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datadriven.RunTest(t, "testdata/memfs_lock", func(t *testing.T, td *datadriven.TestData) string {
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switch td.Cmd {
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case "mkfs":
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for _, arg := range td.CmdArgs {
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filesystems[arg.String()] = NewMem()
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}
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return "OK"
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// lock fs=<filesystem-name> handle=<handle> path=<path>
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case "lock":
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var filesystemName string
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var path string
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var handle string
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td.ScanArgs(t, "fs", &filesystemName)
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td.ScanArgs(t, "path", &path)
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td.ScanArgs(t, "handle", &handle)
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fs := filesystems[filesystemName]
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if fs == nil {
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return fmt.Sprintf("filesystem %q doesn't exist", filesystemName)
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}
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l, err := fs.Lock(path)
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||
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if err != nil {
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return err.Error()
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}
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fileLocks[handle] = l
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return "OK"
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|
|
||
|
// mkdirall fs=<filesystem-name> path=<path>
|
||
|
case "mkdirall":
|
||
|
var filesystemName string
|
||
|
var path string
|
||
|
td.ScanArgs(t, "fs", &filesystemName)
|
||
|
td.ScanArgs(t, "path", &path)
|
||
|
fs := filesystems[filesystemName]
|
||
|
if fs == nil {
|
||
|
return fmt.Sprintf("filesystem %q doesn't exist", filesystemName)
|
||
|
}
|
||
|
err := fs.MkdirAll(path, 0755)
|
||
|
if err != nil {
|
||
|
return err.Error()
|
||
|
}
|
||
|
return "OK"
|
||
|
|
||
|
// close handle=<handle>
|
||
|
case "close":
|
||
|
var handle string
|
||
|
td.ScanArgs(t, "handle", &handle)
|
||
|
err := fileLocks[handle].Close()
|
||
|
delete(fileLocks, handle)
|
||
|
if err != nil {
|
||
|
return err.Error()
|
||
|
}
|
||
|
return "OK"
|
||
|
default:
|
||
|
return fmt.Sprintf("unrecognized command %q", td.Cmd)
|
||
|
}
|
||
|
})
|
||
|
}
|