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1 Commits

Author SHA1 Message Date
Christian Schwarz d476cdb12a WIP: draft snapmgmt 2020-02-17 18:10:16 +01:00
131 changed files with 2034 additions and 5328 deletions
-6
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@@ -6,7 +6,6 @@ workflows:
- build-1.11
- build-1.12
- build-1.13
- build-1.14
- build-latest
- test-build-in-docker
jobs:
@@ -112,11 +111,6 @@ jobs:
docker:
- image: circleci/golang:1.13
build-1.14:
<<: *build-latest
docker:
- image: circleci/golang:1.14
# this job tries to mimic the build-in-docker instructions
# given in docs/installation.rst
#
+4 -10
View File
@@ -23,8 +23,7 @@ GOHOSTARCH ?= $(shell bash -c 'source <($(GO) env) && echo "$$GOHOSTARCH"')
GO_ENV_VARS := GO111MODULE=on
GO_LDFLAGS := "-X github.com/zrepl/zrepl/version.zreplVersion=$(_ZREPL_VERSION)"
GO_MOD_READONLY := -mod=readonly
GO_EXTRA_BUILDFLAGS :=
GO_BUILDFLAGS := $(GO_MOD_READONLY) $(GO_EXTRA_BUILDFLAGS)
GO_BUILDFLAGS := $(GO_MOD_READONLY)
GO_BUILD := $(GO_ENV_VARS) $(GO) build $(GO_BUILDFLAGS) -ldflags $(GO_LDFLAGS)
GOLANGCI_LINT := golangci-lint
ifneq ($(GOARM),)
@@ -66,7 +65,6 @@ wrapup-and-checksum:
-acf $(NOARCH_TARBALL) \
$(ARTIFACTDIR)/docs/html \
$(ARTIFACTDIR)/bash_completion \
$(ARTIFACTDIR)/_zrepl.zsh_completion \
$(ARTIFACTDIR)/go_env.txt \
dist \
config/samples
@@ -161,7 +159,7 @@ platformtest: # do not track dependency on platformtest-bin to allow build of pl
$(ZREPL_PLATFORMTEST_ARGS)
##################### NOARCH #####################
.PHONY: noarch $(ARTIFACTDIR)/bash_completion $(ARTIFACTDIR)/_zrepl.zsh_completion $(ARTIFACTDIR)/go_env.txt docs docs-clean
.PHONY: noarch $(ARTIFACTDIR)/bash_completion $(ARTIFACTDIR)/go_env.txt docs docs-clean
$(ARTIFACTDIR):
@@ -169,16 +167,12 @@ $(ARTIFACTDIR):
$(ARTIFACTDIR)/docs: $(ARTIFACTDIR)
mkdir -p "$@"
noarch: $(ARTIFACTDIR)/bash_completion $(ARTIFACTDIR)/_zrepl.zsh_completion $(ARTIFACTDIR)/go_env.txt docs
noarch: $(ARTIFACTDIR)/bash_completion $(ARTIFACTDIR)/go_env.txt docs
# pass
$(ARTIFACTDIR)/bash_completion:
$(MAKE) zrepl-bin GOOS=$(GOHOSTOS) GOARCH=$(GOHOSTARCH)
artifacts/zrepl-$(GOHOSTOS)-$(GOHOSTARCH) gencompletion bash "$@"
$(ARTIFACTDIR)/_zrepl.zsh_completion:
$(MAKE) zrepl-bin GOOS=$(GOHOSTOS) GOARCH=$(GOHOSTARCH)
artifacts/zrepl-$(GOHOSTOS)-$(GOHOSTARCH) gencompletion zsh "$@"
artifacts/zrepl-$(GOHOSTOS)-$(GOHOSTARCH) bashcomp "$@"
$(ARTIFACTDIR)/go_env.txt:
$(GO_ENV_VARS) $(GO) env > $@
+9 -21
View File
@@ -1,9 +1,8 @@
[![GitHub license](https://img.shields.io/github/license/zrepl/zrepl.svg)](https://github.com/zrepl/zrepl/blob/master/LICENSE)
[![Language: Go](https://img.shields.io/badge/language-Go-6ad7e5.svg)](https://golang.org/)
[![User Docs](https://img.shields.io/badge/docs-web-blue.svg)](https://zrepl.github.io)
[![Donate via Patreon](https://img.shields.io/endpoint.svg?url=https%3A%2F%2Fshieldsio-patreon.herokuapp.com%2Fzrepl%2Fpledges&style=flat&color=yellow)](https://www.patreon.com/zrepl)
[![Donate via Liberapay](https://img.shields.io/liberapay/receives/zrepl.svg?logo=liberapay)](https://liberapay.com/zrepl/donate)
[![Donate via PayPal](https://img.shields.io/badge/donate-paypal-yellow.svg)](https://www.paypal.com/cgi-bin/webscr?cmd=_s-xclick&hosted_button_id=R5QSXJVYHGX96)
[![Donate via Liberapay](https://img.shields.io/liberapay/receives/zrepl.svg?logo=liberapay)](https://liberapay.com/zrepl/donate)
[![Twitter](https://img.shields.io/twitter/url/https/github.com/zrepl/zrepl.svg?style=social)](https://twitter.com/intent/tweet?text=Wow:&url=https%3A%2F%2Fgithub.com%2Fzrepl%2Fzrepl)
# zrepl
@@ -24,7 +23,6 @@ zrepl is a one-stop ZFS backup & replication solution.
If so, think of an expressive configuration example.
2. Think of at least one use case that generalizes from your concrete application.
3. Open an issue on GitHub with example conf & use case attached.
4. **Optional**: [Post a bounty](https://www.bountysource.com/teams/zrepl) on the issue, or [contact Christian Schwarz](https://cschwarz.com) for contract work.
The above does not apply if you already implemented everything.
Check out the *Coding Workflow* section below for details.
@@ -48,8 +46,11 @@ zrepl is written in [Go](https://golang.org) and uses [Go modules](https://githu
The documentation is written in [ReStructured Text](http://docutils.sourceforge.net/rst.html) using the [Sphinx](https://www.sphinx-doc.org) framework.
To get started, run `./lazy.sh devsetup` to easily install build dependencies and read `docs/installation.rst -> Compiling from Source`.
`lazy.sh` uses `python3-pip` to fetch the build dependencies for the docs - you might want to use a [venv](https://docs.python.org/3/library/venv.html).
If you just want to install the Go dependencies, run `./lazy.sh godep`.
### Overall Architecture
The application architecture is documented as part of the user docs in the *Implementation* section (`docs/content/impl`).
Make sure to develop an understanding how zrepl is typically used by studying the user docs first.
### Project Structure
@@ -61,15 +62,14 @@ If you just want to install the Go dependencies, run `./lazy.sh godep`.
│   └── samples
├── daemon # the implementation of `zrepl daemon` subcommand
│   ├── filters
│   ├── hooks # snapshot hooks
│   ├── job # job implementations
│   ├── logging # logging outlets + formatters
│   ├── nethelpers
│   ├── prometheus
│   ├── pruner # pruner implementation
│   ├── snapper # snapshotter implementation
├── dist # supplemental material for users & package maintainers
├── docs # sphinx-based documentation
├── dist # supplemental material for users & package maintainers
│   ├── **/*.rst # documentation in reStructuredText
│   ├── sphinxconf
│   │   └── conf.py # sphinx config (see commit 445a280 why its not in docs/)
@@ -78,7 +78,6 @@ If you just want to install the Go dependencies, run `./lazy.sh godep`.
│   └── public_git # checkout of zrepl.github.io managed by above shell script
├── endpoint # implementation of replication endpoints (=> package replication)
├── logger # our own logger package
├── platformtest # test suite for our zfs abstractions (error classification, etc)
├── pruning # pruning rules (the logic, not the actual execution)
│   └── retentiongrid
├── replication
@@ -93,13 +92,14 @@ If you just want to install the Go dependencies, run `./lazy.sh godep`.
│ ├── transportmux # TCP connecter and listener used to split control & data traffic
│ └── versionhandshake # replication protocol version handshake perfomed on newly established connections
├── tlsconf # abstraction for Go TLS server + client config
├── transport # transport implementations
├── transport # transports implementation
│ ├── fromconfig
│ ├── local
│ ├── ssh
│ ├── tcp
│ └── tls
├── util
├── vendor # managed by dep
├── version # abstraction for versions (filled during build by Makefile)
└── zfs # zfs(8) wrappers
```
@@ -134,15 +134,3 @@ There will not be a big refactoring (an attempt was made, but it's destroying to
However, new contributions & patches should fix naming without further notice in the commit message.
### RPC debugging
Optionally, there are various RPC-related environment variables, that if set to something != `""` will produce additional debug output on stderr:
https://github.com/zrepl/zrepl/blob/master/rpc/rpc_debug.go#L11
https://github.com/zrepl/zrepl/blob/master/rpc/dataconn/dataconn_debug.go#L11
https://github.com/zrepl/zrepl/blob/master/rpc/dataconn/stream/stream_debug.go#L11
https://github.com/zrepl/zrepl/blob/master/rpc/dataconn/heartbeatconn/heartbeatconn_debug.go#L11
+19 -45
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@@ -19,55 +19,29 @@ var rootCmd = &cobra.Command{
Short: "One-stop ZFS replication solution",
}
func init() {
rootCmd.PersistentFlags().StringVar(&rootArgs.configPath, "config", "", "config file path")
}
var genCompletionCmd = &cobra.Command{
Use: "gencompletion",
Short: "generate shell auto-completions",
}
type completionCmdInfo struct {
genFunc func(outpath string) error
help string
}
var completionCmdMap = map[string]completionCmdInfo{
"zsh": {
rootCmd.GenZshCompletionFile,
" save to file `_zrepl` in your zsh's $fpath",
},
"bash": {
rootCmd.GenBashCompletionFile,
" save to a path and source that path in your .bashrc",
var bashcompCmd = &cobra.Command{
Use: "bashcomp path/to/out/file",
Short: "generate bash completions",
Run: func(cmd *cobra.Command, args []string) {
if len(args) != 1 {
fmt.Fprintf(os.Stderr, "specify exactly one positional agument\n")
err := cmd.Usage()
if err != nil {
panic(err)
}
os.Exit(1)
}
if err := rootCmd.GenBashCompletionFile(args[0]); err != nil {
fmt.Fprintf(os.Stderr, "error generating bash completion: %s", err)
os.Exit(1)
}
},
Hidden: true,
}
func init() {
for sh, info := range completionCmdMap {
sh, info := sh, info
genCompletionCmd.AddCommand(&cobra.Command{
Use: fmt.Sprintf("%s path/to/out/file", sh),
Short: fmt.Sprintf("generate %s completions", sh),
Example: info.help,
Run: func(cmd *cobra.Command, args []string) {
if len(args) != 1 {
fmt.Fprintf(os.Stderr, "specify exactly one positional agument\n")
err := cmd.Usage()
if err != nil {
panic(err)
}
os.Exit(1)
}
if err := info.genFunc(args[0]); err != nil {
fmt.Fprintf(os.Stderr, "error generating %s completion: %s", sh, err)
os.Exit(1)
}
},
})
}
rootCmd.AddCommand(genCompletionCmd)
rootCmd.PersistentFlags().StringVar(&rootArgs.configPath, "config", "", "config file path")
rootCmd.AddCommand(bashcompCmd)
}
type Subcommand struct {
+87
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@@ -0,0 +1,87 @@
package client
import (
"context"
"encoding/json"
"fmt"
"os"
"strings"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/cli"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/zfs"
)
var (
HoldsCmd = &cli.Subcommand{
Use: "holds",
Short: "manage holds & step bookmarks",
SetupSubcommands: func() []*cli.Subcommand {
return holdsList
},
}
)
var holdsList = []*cli.Subcommand{
&cli.Subcommand{
Use: "list [FSFILTER]",
Run: doHoldsList,
NoRequireConfig: true,
Short: `
FSFILTER SYNTAX:
representation of a 'filesystems' filter statement on the command line
`,
},
}
func fsfilterFromCliArg(arg string) (zfs.DatasetFilter, error) {
mappings := strings.Split(arg, ",")
f := filters.NewDatasetMapFilter(len(mappings), true)
for _, m := range mappings {
thisMappingErr := fmt.Errorf("expecting comma-separated list of <dataset-pattern>:<ok|!> pairs, got %q", m)
lhsrhs := strings.SplitN(m, ":", 2)
if len(lhsrhs) != 2 {
return nil, thisMappingErr
}
err := f.Add(lhsrhs[0], lhsrhs[1])
if err != nil {
return nil, fmt.Errorf("%s: %s", thisMappingErr, err)
}
}
return f.AsFilter(), nil
}
func doHoldsList(sc *cli.Subcommand, args []string) error {
var err error
ctx := context.Background()
if len(args) > 1 {
return errors.New("this subcommand takes at most one argument")
}
var filter zfs.DatasetFilter
if len(args) == 0 {
filter = zfs.NoFilter()
} else {
filter, err = fsfilterFromCliArg(args[0])
if err != nil {
return errors.Wrap(err, "cannot parse filesystem filter args")
}
}
listing, err := endpoint.ListZFSHoldsAndBookmarks(ctx, filter)
if err != nil {
return err // context clear by invocation of command
}
enc := json.NewEncoder(os.Stdout)
enc.SetIndent(" ", " ")
if err := enc.Encode(listing); err != nil {
panic(err)
}
return nil
}
+10 -8
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@@ -99,7 +99,7 @@ func doMigratePlaceholder0_1(sc *cli.Subcommand, args []string) error {
}
for _, fs := range wi.fss {
fmt.Printf("\t%q ... ", fs.ToString())
r, err := zfs.ZFSMigrateHashBasedPlaceholderToCurrent(ctx, fs, migratePlaceholder0_1Args.dryRun)
r, err := zfs.ZFSMigrateHashBasedPlaceholderToCurrent(fs, migratePlaceholder0_1Args.dryRun)
if err != nil {
fmt.Printf("error: %s\n", err)
} else if !r.NeedsModification {
@@ -165,7 +165,7 @@ func doMigrateReplicationCursor(sc *cli.Subcommand, args []string) error {
var hadError bool
for _, fs := range fss {
bold.Printf("INSPECT FILESYSTEM %q\n", fs.ToString())
bold.Printf("INSPECT FILESYTEM %q\n", fs.ToString())
err := doMigrateReplicationCursorFS(ctx, v1cursorJobs, fs)
if err == migrateReplicationCursorSkipSentinel {
@@ -211,15 +211,17 @@ func doMigrateReplicationCursorFS(ctx context.Context, v1CursorJobs []job.Job, f
}
fmt.Printf("identified owning job %q\n", owningJob.Name())
bookmarks, err := zfs.ZFSListFilesystemVersions(ctx, fs, zfs.ListFilesystemVersionsOptions{
Types: zfs.Bookmarks,
})
versions, err := zfs.ZFSListFilesystemVersions(fs, nil)
if err != nil {
return errors.Wrapf(err, "list filesystem versions of %q", fs.ToString())
}
var oldCursor *zfs.FilesystemVersion
for i, fsv := range bookmarks {
for i, fsv := range versions {
if fsv.Type != zfs.Bookmark {
continue
}
_, _, err := endpoint.ParseReplicationCursorBookmarkName(fsv.ToAbsPath(fs))
if err != endpoint.ErrV1ReplicationCursor {
continue
@@ -230,7 +232,7 @@ func doMigrateReplicationCursorFS(ctx context.Context, v1CursorJobs []job.Job, f
return errors.Wrap(err, "multiple filesystem versions identified as v1 replication cursors")
}
oldCursor = &bookmarks[i]
oldCursor = &versions[i]
}
@@ -262,7 +264,7 @@ func doMigrateReplicationCursorFS(ctx context.Context, v1CursorJobs []job.Job, f
if migrateReplicationCursorArgs.dryRun {
succ.Printf("DRY RUN\n")
} else {
if err := zfs.ZFSDestroyFilesystemVersion(ctx, fs, oldCursor); err != nil {
if err := zfs.ZFSDestroyFilesystemVersion(fs, oldCursor); err != nil {
return err
}
}
+7 -7
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@@ -11,7 +11,7 @@ import (
"sync"
"time"
// tcell is the termbox-compatible library for abstracting away escape sequences, etc.
// tcell is the termbox-compatbile library for abstracting away escape sequences, etc.
// as of tcell#252, the number of default distributed terminals is relatively limited
// additional terminal definitions can be included via side-effect import
// See https://github.com/gdamore/tcell/blob/master/terminfo/base/base.go
@@ -81,7 +81,7 @@ type tui struct {
indent int
lock sync.Mutex //For report and error
report map[string]*job.Status
report map[string]job.Status
err error
jobFilter string
@@ -219,7 +219,7 @@ func runStatus(s *cli.Subcommand, args []string) error {
defer termbox.Close()
update := func() {
var m daemon.Status
m := make(map[string]job.Status)
err2 := jsonRequestResponse(httpc, daemon.ControlJobEndpointStatus,
struct{}{},
@@ -228,7 +228,7 @@ func runStatus(s *cli.Subcommand, args []string) error {
t.lock.Lock()
t.err = err2
t.report = m.Jobs
t.report = m
t.lock.Unlock()
t.draw()
}
@@ -264,7 +264,7 @@ loop:
}
func (t *tui) getReplicationProgressHistory(jobName string) *bytesProgressHistory {
func (t *tui) getReplicationProgresHistory(jobName string) *bytesProgressHistory {
p, ok := t.replicationProgress[jobName]
if !ok {
p = &bytesProgressHistory{}
@@ -329,7 +329,7 @@ func (t *tui) draw() {
t.printf("Replication:")
t.newline()
t.addIndent(1)
t.renderReplicationReport(activeStatus.Replication, t.getReplicationProgressHistory(k))
t.renderReplicationReport(activeStatus.Replication, t.getReplicationProgresHistory(k))
t.addIndent(-1)
t.printf("Pruning Sender:")
@@ -697,7 +697,7 @@ func rightPad(str string, length int, pad string) string {
var arrowPositions = `>\|/`
// changeCount = 0 indicates stall / no progress
// changeCount = 0 indicates stall / no progresss
func (t *tui) drawBar(length int, bytes, totalBytes int64, changeCount int) {
var completedLength int
if totalBytes > 0 {
+3 -7
View File
@@ -49,7 +49,6 @@ func runTestFilterCmd(subcommand *cli.Subcommand, args []string) error {
}
conf := subcommand.Config()
ctx := context.Background()
var confFilter config.FilesystemsFilter
job, err := conf.Job(testFilterArgs.job)
@@ -61,8 +60,6 @@ func runTestFilterCmd(subcommand *cli.Subcommand, args []string) error {
confFilter = j.Filesystems
case *config.PushJob:
confFilter = j.Filesystems
case *config.SnapJob:
confFilter = j.Filesystems
default:
return fmt.Errorf("job type %T does not have filesystems filter", j)
}
@@ -76,7 +73,7 @@ func runTestFilterCmd(subcommand *cli.Subcommand, args []string) error {
if testFilterArgs.input != "" {
fsnames = []string{testFilterArgs.input}
} else {
out, err := zfs.ZFSList(ctx, []string{"name"})
out, err := zfs.ZFSList([]string{"name"})
if err != nil {
return fmt.Errorf("could not list ZFS filesystems: %s", err)
}
@@ -140,11 +137,10 @@ var testPlaceholder = &cli.Subcommand{
func runTestPlaceholder(subcommand *cli.Subcommand, args []string) error {
var checkDPs []*zfs.DatasetPath
ctx := context.Background()
// all actions first
if testPlaceholderArgs.all {
out, err := zfs.ZFSList(ctx, []string{"name"})
out, err := zfs.ZFSList([]string{"name"})
if err != nil {
return errors.Wrap(err, "could not list ZFS filesystems")
}
@@ -168,7 +164,7 @@ func runTestPlaceholder(subcommand *cli.Subcommand, args []string) error {
fmt.Printf("IS_PLACEHOLDER\tDATASET\tzrepl:placeholder\n")
for _, dp := range checkDPs {
ph, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, dp)
ph, err := zfs.ZFSGetFilesystemPlaceholderState(dp)
if err != nil {
return errors.Wrap(err, "cannot get placeholder state")
}
-147
View File
@@ -1,147 +0,0 @@
package client
import (
"fmt"
"sort"
"strings"
"github.com/spf13/pflag"
"github.com/zrepl/zrepl/cli"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/zfs"
)
var (
ZFSAbstractionsCmd = &cli.Subcommand{
Use: "zfs-abstraction",
Short: "manage abstractions that zrepl builds on top of ZFS",
SetupSubcommands: func() []*cli.Subcommand {
return []*cli.Subcommand{
zabsCmdList,
zabsCmdReleaseAll,
zabsCmdReleaseStale,
zabsCmdCreate,
}
},
}
)
// a common set of CLI flags that map to the fields of an
// endpoint.ListZFSHoldsAndBookmarksQuery
type zabsFilterFlags struct {
Filesystems FilesystemsFilterFlag
Job JobIDFlag
Types AbstractionTypesFlag
Concurrency int64
}
// produce a query from the CLI flags
func (f zabsFilterFlags) Query() (endpoint.ListZFSHoldsAndBookmarksQuery, error) {
q := endpoint.ListZFSHoldsAndBookmarksQuery{
FS: f.Filesystems.FlagValue(),
What: f.Types.FlagValue(),
JobID: f.Job.FlagValue(),
Concurrency: f.Concurrency,
}
return q, q.Validate()
}
func (f *zabsFilterFlags) registerZabsFilterFlags(s *pflag.FlagSet, verb string) {
// Note: the default value is defined in the .FlagValue methods
s.Var(&f.Filesystems, "fs", fmt.Sprintf("only %s holds on the specified filesystem [default: all filesystems] [comma-separated list of <dataset-pattern>:<ok|!> pairs]", verb))
s.Var(&f.Job, "job", fmt.Sprintf("only %s holds created by the specified job [default: any job]", verb))
variants := make([]string, 0, len(endpoint.AbstractionTypesAll))
for v := range endpoint.AbstractionTypesAll {
variants = append(variants, string(v))
}
variants = sort.StringSlice(variants)
variantsJoined := strings.Join(variants, "|")
s.Var(&f.Types, "type", fmt.Sprintf("only %s holds of the specified type [default: all] [comma-separated list of %s]", verb, variantsJoined))
s.Int64VarP(&f.Concurrency, "concurrency", "p", 1, "number of concurrently queried filesystems")
}
type JobIDFlag struct{ J *endpoint.JobID }
func (f *JobIDFlag) Set(s string) error {
if len(s) == 0 {
*f = JobIDFlag{J: nil}
return nil
}
jobID, err := endpoint.MakeJobID(s)
if err != nil {
return err
}
*f = JobIDFlag{J: &jobID}
return nil
}
func (f JobIDFlag) Type() string { return "job-ID" }
func (f JobIDFlag) String() string { return fmt.Sprint(f.J) }
func (f JobIDFlag) FlagValue() *endpoint.JobID { return f.J }
type AbstractionTypesFlag map[endpoint.AbstractionType]bool
func (f *AbstractionTypesFlag) Set(s string) error {
ats, err := endpoint.AbstractionTypeSetFromStrings(strings.Split(s, ","))
if err != nil {
return err
}
*f = AbstractionTypesFlag(ats)
return nil
}
func (f AbstractionTypesFlag) Type() string { return "abstraction-type" }
func (f AbstractionTypesFlag) String() string {
return endpoint.AbstractionTypeSet(f).String()
}
func (f AbstractionTypesFlag) FlagValue() map[endpoint.AbstractionType]bool {
if len(f) > 0 {
return f
}
return endpoint.AbstractionTypesAll
}
type FilesystemsFilterFlag struct {
F endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter
}
func (flag *FilesystemsFilterFlag) Set(s string) error {
mappings := strings.Split(s, ",")
if len(mappings) == 1 && !strings.Contains(mappings[0], ":") {
flag.F = endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &mappings[0],
}
return nil
}
f := filters.NewDatasetMapFilter(len(mappings), true)
for _, m := range mappings {
thisMappingErr := fmt.Errorf("expecting comma-separated list of <dataset-pattern>:<ok|!> pairs, got %q", m)
lhsrhs := strings.SplitN(m, ":", 2)
if len(lhsrhs) != 2 {
return thisMappingErr
}
err := f.Add(lhsrhs[0], lhsrhs[1])
if err != nil {
return fmt.Errorf("%s: %s", thisMappingErr, err)
}
}
flag.F = endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{
Filter: f,
}
return nil
}
func (flag FilesystemsFilterFlag) Type() string { return "filesystem filter spec" }
func (flag FilesystemsFilterFlag) String() string {
return fmt.Sprintf("%v", flag.F)
}
func (flag FilesystemsFilterFlag) FlagValue() endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter {
var z FilesystemsFilterFlag
if flag == z {
return endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{Filter: zfs.NoFilter()}
}
return flag.F
}
-14
View File
@@ -1,14 +0,0 @@
package client
import "github.com/zrepl/zrepl/cli"
var zabsCmdCreate = &cli.Subcommand{
Use: "create",
NoRequireConfig: true,
Short: `create zrepl ZFS abstractions (mostly useful for debugging & development, users should not need to use this command)`,
SetupSubcommands: func() []*cli.Subcommand {
return []*cli.Subcommand{
zabsCmdCreateStepHold,
}
},
}
@@ -1,60 +0,0 @@
package client
import (
"context"
"fmt"
"github.com/pkg/errors"
"github.com/spf13/pflag"
"github.com/zrepl/zrepl/cli"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/zfs"
)
var zabsCreateStepHoldFlags struct {
target string
jobid JobIDFlag
}
var zabsCmdCreateStepHold = &cli.Subcommand{
Use: "step",
Run: doZabsCreateStep,
NoRequireConfig: true,
Short: `create a step hold or bookmark`,
SetupFlags: func(f *pflag.FlagSet) {
f.StringVarP(&zabsCreateStepHoldFlags.target, "target", "t", "", "snapshot to be held / bookmark to be held")
f.VarP(&zabsCreateStepHoldFlags.jobid, "jobid", "j", "jobid for which the hold is installed")
},
}
func doZabsCreateStep(sc *cli.Subcommand, args []string) error {
if len(args) > 0 {
return errors.New("subcommand takes no arguments")
}
f := &zabsCreateStepHoldFlags
fs, _, _, err := zfs.DecomposeVersionString(f.target)
if err != nil {
return errors.Wrapf(err, "%q invalid target", f.target)
}
if f.jobid.FlagValue() == nil {
return errors.Errorf("jobid must be set")
}
ctx := context.Background()
v, err := zfs.ZFSGetFilesystemVersion(ctx, f.target)
if err != nil {
return errors.Wrapf(err, "get info about target %q", f.target)
}
step, err := endpoint.HoldStep(ctx, fs, v, *f.jobid.FlagValue())
if err != nil {
return errors.Wrap(err, "create step hold")
}
fmt.Println(step.String())
return nil
}
-100
View File
@@ -1,100 +0,0 @@
package client
import (
"context"
"encoding/json"
"fmt"
"os"
"sync"
"github.com/fatih/color"
"github.com/pkg/errors"
"github.com/spf13/pflag"
"github.com/zrepl/zrepl/cli"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/util/chainlock"
)
var zabsListFlags struct {
Filter zabsFilterFlags
Json bool
}
var zabsCmdList = &cli.Subcommand{
Use: "list",
Short: `list zrepl ZFS abstractions`,
Run: doZabsList,
NoRequireConfig: true,
SetupFlags: func(f *pflag.FlagSet) {
zabsListFlags.Filter.registerZabsFilterFlags(f, "list")
f.BoolVar(&zabsListFlags.Json, "json", false, "emit JSON")
},
}
func doZabsList(sc *cli.Subcommand, args []string) error {
var err error
ctx := context.Background()
if len(args) > 0 {
return errors.New("this subcommand takes no positional arguments")
}
q, err := zabsListFlags.Filter.Query()
if err != nil {
return errors.Wrap(err, "invalid filter specification on command line")
}
abstractions, errors, err := endpoint.ListAbstractionsStreamed(ctx, q)
if err != nil {
return err // context clear by invocation of command
}
var line chainlock.L
var wg sync.WaitGroup
defer wg.Wait()
wg.Add(1)
// print results
go func() {
defer wg.Done()
enc := json.NewEncoder(os.Stdout)
for a := range abstractions {
func() {
defer line.Lock().Unlock()
if zabsListFlags.Json {
enc.SetIndent("", " ")
if err := enc.Encode(abstractions); err != nil {
panic(err)
}
fmt.Println()
} else {
fmt.Println(a)
}
}()
}
}()
// print errors to stderr
errorColor := color.New(color.FgRed)
var errorsSlice []endpoint.ListAbstractionsError
wg.Add(1)
go func() {
defer wg.Done()
for err := range errors {
func() {
defer line.Lock().Unlock()
errorsSlice = append(errorsSlice, err)
errorColor.Fprintf(os.Stderr, "%s\n", err)
}()
}
}()
wg.Wait()
if len(errorsSlice) > 0 {
errorColor.Add(color.Bold).Fprintf(os.Stderr, "there were errors in listing the abstractions")
return fmt.Errorf("")
} else {
return nil
}
}
-145
View File
@@ -1,145 +0,0 @@
package client
import (
"context"
"encoding/json"
"fmt"
"os"
"github.com/fatih/color"
"github.com/pkg/errors"
"github.com/spf13/pflag"
"github.com/zrepl/zrepl/cli"
"github.com/zrepl/zrepl/endpoint"
)
// shared between release-all and release-step
var zabsReleaseFlags struct {
Filter zabsFilterFlags
Json bool
DryRun bool
}
func registerZabsReleaseFlags(s *pflag.FlagSet) {
zabsReleaseFlags.Filter.registerZabsFilterFlags(s, "release")
s.BoolVar(&zabsReleaseFlags.Json, "json", false, "emit json instead of pretty-printed")
s.BoolVar(&zabsReleaseFlags.DryRun, "dry-run", false, "do a dry-run")
}
var zabsCmdReleaseAll = &cli.Subcommand{
Use: "release-all",
Run: doZabsReleaseAll,
NoRequireConfig: true,
Short: `(DANGEROUS) release ALL zrepl ZFS abstractions (mostly useful for uninstalling zrepl completely or for "de-zrepl-ing" a filesystem)`,
SetupFlags: registerZabsReleaseFlags,
}
var zabsCmdReleaseStale = &cli.Subcommand{
Use: "release-stale",
Run: doZabsReleaseStale,
NoRequireConfig: true,
Short: `release stale zrepl ZFS abstractions (useful if zrepl has a bug and does not do it by itself)`,
SetupFlags: registerZabsReleaseFlags,
}
func doZabsReleaseAll(sc *cli.Subcommand, args []string) error {
var err error
ctx := context.Background()
if len(args) > 0 {
return errors.New("this subcommand takes no positional arguments")
}
q, err := zabsReleaseFlags.Filter.Query()
if err != nil {
return errors.Wrap(err, "invalid filter specification on command line")
}
abstractions, listErrors, err := endpoint.ListAbstractions(ctx, q)
if err != nil {
return err // context clear by invocation of command
}
if len(listErrors) > 0 {
color.New(color.FgRed).Fprintf(os.Stderr, "there were errors in listing the abstractions:\n%s\n", listErrors)
// proceed anyways with rest of abstractions
}
return doZabsRelease_Common(ctx, abstractions)
}
func doZabsReleaseStale(sc *cli.Subcommand, args []string) error {
var err error
ctx := context.Background()
if len(args) > 0 {
return errors.New("this subcommand takes no positional arguments")
}
q, err := zabsReleaseFlags.Filter.Query()
if err != nil {
return errors.Wrap(err, "invalid filter specification on command line")
}
stalenessInfo, err := endpoint.ListStale(ctx, q)
if err != nil {
return err // context clear by invocation of command
}
return doZabsRelease_Common(ctx, stalenessInfo.Stale)
}
func doZabsRelease_Common(ctx context.Context, destroy []endpoint.Abstraction) error {
if zabsReleaseFlags.DryRun {
if zabsReleaseFlags.Json {
m, err := json.MarshalIndent(destroy, "", " ")
if err != nil {
panic(err)
}
if _, err := os.Stdout.Write(m); err != nil {
panic(err)
}
fmt.Println()
} else {
for _, a := range destroy {
fmt.Printf("would destroy %s\n", a)
}
}
return nil
}
outcome := endpoint.BatchDestroy(ctx, destroy)
hadErr := false
enc := json.NewEncoder(os.Stdout)
enc.SetIndent("", " ")
colorErr := color.New(color.FgRed)
printfSuccess := color.New(color.FgGreen).FprintfFunc()
printfSection := color.New(color.Bold).FprintfFunc()
for res := range outcome {
hadErr = hadErr || res.DestroyErr != nil
if zabsReleaseFlags.Json {
err := enc.Encode(res)
if err != nil {
colorErr.Fprintf(os.Stderr, "cannot marshal there were errors in destroying the abstractions")
}
} else {
printfSection(os.Stdout, "destroy %s ...", res.Abstraction)
if res.DestroyErr != nil {
colorErr.Fprintf(os.Stdout, " failed:\n%s\n", res.DestroyErr)
} else {
printfSuccess(os.Stdout, " OK\n")
}
}
}
if hadErr {
colorErr.Add(color.Bold).Fprintf(os.Stderr, "there were errors in destroying the abstractions")
return fmt.Errorf("")
} else {
return nil
}
}
+1 -1
View File
@@ -620,7 +620,7 @@ func ParseConfigBytes(bytes []byte) (*Config, error) {
var durationStringRegex *regexp.Regexp = regexp.MustCompile(`^\s*(\d+)\s*(s|m|h|d|w)\s*$`)
func parsePositiveDuration(e string) (d time.Duration, err error) {
func parsePostitiveDuration(e string) (d time.Duration, err error) {
comps := durationStringRegex.FindStringSubmatch(e)
if len(comps) != 3 {
err = fmt.Errorf("does not match regex: %s %#v", e, comps)
+1 -1
View File
@@ -21,7 +21,7 @@ jobs:
clients: {
"10.0.0.1":"foo"
}
root_fs: zroot/foo
root_fs: zoot/foo
`
_, err := ParseConfigBytes([]byte(jobdef))
require.NoError(t, err)
+1 -1
View File
@@ -42,7 +42,7 @@ func TestSampleConfigsAreParsedWithoutErrors(t *testing.T) {
}
// template must be a template/text template with a single '{{ . }}' as placeholder for val
// template must be a template/text template with a single '{{ . }}' as placehodler for val
//nolint[:deadcode,unused]
func testValidConfigTemplate(t *testing.T, tmpl string, val string) *Config {
tmp, err := template.New("master").Parse(tmpl)
+1 -1
View File
@@ -64,7 +64,7 @@ func parseRetentionGridIntervalString(e string) (intervals []RetentionInterval,
return nil, fmt.Errorf("contains factor <= 0")
}
duration, err := parsePositiveDuration(comps[2])
duration, err := parsePostitiveDuration(comps[2])
if err != nil {
return nil, err
}
+1 -5
View File
@@ -5,11 +5,7 @@ jobs:
type: tcp
listen: "0.0.0.0:8888"
clients: {
"192.168.122.123" : "mysql01",
"192.168.122.42" : "mx01",
"2001:0db8:85a3::8a2e:0370:7334": "gateway",
"10.23.42.0/24": "cluster-*",
"fde4:8dba:82e1::/64": "san-*",
"192.168.122.123" : "client1"
}
filesystems: {
"<": true,
+3 -6
View File
@@ -20,7 +20,6 @@ import (
"github.com/zrepl/zrepl/util/envconst"
"github.com/zrepl/zrepl/version"
"github.com/zrepl/zrepl/zfs"
"github.com/zrepl/zrepl/zfs/zfscmd"
)
type controlJob struct {
@@ -65,7 +64,7 @@ func (j *controlJob) RegisterMetrics(registerer prometheus.Registerer) {
Namespace: "zrepl",
Subsystem: "control",
Name: "request_finished",
Help: "time it took a request to finish",
Help: "time it took a request to finih",
Buckets: []float64{1e-6, 10e-6, 100e-6, 500e-6, 1e-3, 10e-3, 100e-3, 200e-3, 400e-3, 800e-3, 1, 10, 20},
}, []string{"endpoint"})
registerer.MustRegister(promControl.requestBegin)
@@ -118,9 +117,7 @@ func (j *controlJob) Run(ctx context.Context) {
mux.Handle(ControlJobEndpointStatus,
// don't log requests to status endpoint, too spammy
jsonResponder{log, func() (interface{}, error) {
jobs := j.jobs.status()
globalZFS := zfscmd.GetReport()
s := Status{Jobs: jobs, Global: GlobalStatus{ZFSCmds: globalZFS}}
s := j.jobs.status()
return s, nil
}})
@@ -253,7 +250,7 @@ func (j jsonRequestResponder) ServeHTTP(w http.ResponseWriter, r *http.Request)
var buf bytes.Buffer
encodeErr := json.NewEncoder(&buf).Encode(res)
if encodeErr != nil {
j.log.WithError(producerErr).Error("control handler json marshal error")
j.log.WithError(producerErr).Error("control handler json marhsal error")
w.WriteHeader(http.StatusInternalServerError)
_, err := io.WriteString(w, encodeErr.Error())
logIoErr(err)
-14
View File
@@ -20,7 +20,6 @@ import (
"github.com/zrepl/zrepl/daemon/logging"
"github.com/zrepl/zrepl/logger"
"github.com/zrepl/zrepl/version"
"github.com/zrepl/zrepl/zfs/zfscmd"
)
func Run(conf *config.Config) error {
@@ -82,9 +81,6 @@ func Run(conf *config.Config) error {
jobs.start(ctx, job, true)
}
// register global (=non job-local) metrics
zfscmd.RegisterMetrics(prometheus.DefaultRegisterer)
log.Info("starting daemon")
// start regular jobs
@@ -132,15 +128,6 @@ func (s *jobs) wait() <-chan struct{} {
return ch
}
type Status struct {
Jobs map[string]*job.Status
Global GlobalStatus
}
type GlobalStatus struct {
ZFSCmds *zfscmd.Report
}
func (s *jobs) status() map[string]*job.Status {
s.m.RLock()
defer s.m.RUnlock()
@@ -220,7 +207,6 @@ func (s *jobs) start(ctx context.Context, j job.Job, internal bool) {
s.jobs[jobName] = j
ctx = job.WithLogger(ctx, jobLog)
ctx = zfscmd.WithJobID(ctx, j.Name())
ctx, wakeup := wakeup.Context(ctx)
ctx, resetFunc := reset.Context(ctx)
s.wakeups[jobName] = wakeup
+1 -1
View File
@@ -161,7 +161,7 @@ func (m DatasetMapFilter) Filter(p *zfs.DatasetPath) (pass bool, err error) {
}
// Construct a new filter-only DatasetMapFilter from a mapping
// The new filter allows exactly those paths that were not forbidden by the mapping.
// The new filter allows excactly those paths that were not forbidden by the mapping.
func (m DatasetMapFilter) InvertedFilter() (inv *DatasetMapFilter, err error) {
if m.filterMode {
+41
View File
@@ -0,0 +1,41 @@
package filters
import (
"strings"
"github.com/zrepl/zrepl/zfs"
)
type AnyFSVFilter struct{}
func NewAnyFSVFilter() AnyFSVFilter {
return AnyFSVFilter{}
}
var _ zfs.FilesystemVersionFilter = AnyFSVFilter{}
func (AnyFSVFilter) Filter(t zfs.VersionType, name string) (accept bool, err error) {
return true, nil
}
type PrefixFilter struct {
prefix string
fstype zfs.VersionType
fstypeSet bool // optionals anyone?
}
var _ zfs.FilesystemVersionFilter = &PrefixFilter{}
func NewPrefixFilter(prefix string) *PrefixFilter {
return &PrefixFilter{prefix: prefix}
}
func NewTypedPrefixFilter(prefix string, versionType zfs.VersionType) *PrefixFilter {
return &PrefixFilter{prefix, versionType, true}
}
func (f *PrefixFilter) Filter(t zfs.VersionType, name string) (accept bool, err error) {
fstypeMatches := (!f.fstypeSet || t == f.fstype)
prefixMatches := strings.HasPrefix(name, f.prefix)
return fstypeMatches && prefixMatches, nil
}
+1 -1
View File
@@ -147,7 +147,7 @@ func modePushFromConfig(g *config.Global, in *config.PushJob, jobID endpoint.Job
fsf, err := filters.DatasetMapFilterFromConfig(in.Filesystems)
if err != nil {
return nil, errors.Wrap(err, "cannot build filesystem filter")
return nil, errors.Wrap(err, "cannnot build filesystem filter")
}
m.senderConfig = &endpoint.SenderConfig{
+1 -1
View File
@@ -75,7 +75,7 @@ func modeSourceFromConfig(g *config.Global, in *config.SourceJob, jobID endpoint
m = &modeSource{}
fsf, err := filters.DatasetMapFilterFromConfig(in.Filesystems)
if err != nil {
return nil, errors.Wrap(err, "cannot build filesystem filter")
return nil, errors.Wrap(err, "cannnot build filesystem filter")
}
m.senderConfig = &endpoint.SenderConfig{
FSF: fsf,
+2 -5
View File
@@ -22,7 +22,6 @@ import (
"github.com/zrepl/zrepl/rpc/transportmux"
"github.com/zrepl/zrepl/tlsconf"
"github.com/zrepl/zrepl/transport"
"github.com/zrepl/zrepl/zfs/zfscmd"
)
func OutletsFromConfig(in config.LoggingOutletEnumList) (*logger.Outlets, error) {
@@ -71,7 +70,7 @@ type Subsystem string
const (
SubsysReplication Subsystem = "repl"
SubsysEndpoint Subsystem = "endpoint"
SubsyEndpoint Subsystem = "endpoint"
SubsysPruning Subsystem = "pruning"
SubsysSnapshot Subsystem = "snapshot"
SubsysHooks Subsystem = "hook"
@@ -80,19 +79,17 @@ const (
SubsysRPC Subsystem = "rpc"
SubsysRPCControl Subsystem = "rpc.ctrl"
SubsysRPCData Subsystem = "rpc.data"
SubsysZFSCmd Subsystem = "zfs.cmd"
)
func WithSubsystemLoggers(ctx context.Context, log logger.Logger) context.Context {
ctx = logic.WithLogger(ctx, log.WithField(SubsysField, SubsysReplication))
ctx = driver.WithLogger(ctx, log.WithField(SubsysField, SubsysReplication))
ctx = endpoint.WithLogger(ctx, log.WithField(SubsysField, SubsysEndpoint))
ctx = endpoint.WithLogger(ctx, log.WithField(SubsysField, SubsyEndpoint))
ctx = pruner.WithLogger(ctx, log.WithField(SubsysField, SubsysPruning))
ctx = snapper.WithLogger(ctx, log.WithField(SubsysField, SubsysSnapshot))
ctx = hooks.WithLogger(ctx, log.WithField(SubsysField, SubsysHooks))
ctx = transport.WithLogger(ctx, log.WithField(SubsysField, SubsysTransport))
ctx = transportmux.WithLogger(ctx, log.WithField(SubsysField, SubsysTransportMux))
ctx = zfscmd.WithLogger(ctx, log.WithField(SubsysField, SubsysZFSCmd))
ctx = rpc.WithLoggers(ctx,
rpc.Loggers{
General: log.WithField(SubsysField, SubsysRPC),
+1 -1
View File
@@ -211,7 +211,7 @@ func logfmtTryEncodeKeyval(enc *logfmt.Encoder, field, value interface{}) error
case logfmt.ErrUnsupportedValueType:
err := enc.EncodeKeyval(field, fmt.Sprintf("<%T>", value))
if err != nil {
return errors.Wrap(err, "cannot encode unsupported value type Go type")
return errors.Wrap(err, "cannot encode unsuuported value type Go type")
}
return nil
}
+1 -1
View File
@@ -63,7 +63,7 @@ func NewTCPOutlet(formatter EntryFormatter, network, address string, tlsConfig *
return
}
entryChan := make(chan *bytes.Buffer, 1) // allow one message in flight while previous is in io.Copy()
entryChan := make(chan *bytes.Buffer, 1) // allow one message in flight while previos is in io.Copy()
o := &TCPOutlet{
formatter: formatter,
+2 -2
View File
@@ -18,13 +18,13 @@ import (
"github.com/zrepl/zrepl/util/envconst"
)
// Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint
// Try to keep it compatible with gitub.com/zrepl/zrepl/endpoint.Endpoint
type History interface {
ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error)
ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error)
}
// Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint
// Try to keep it compatible with gitub.com/zrepl/zrepl/endpoint.Endpoint
type Target interface {
ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error)
ListFilesystemVersions(ctx context.Context, req *pdu.ListFilesystemVersionsReq) (*pdu.ListFilesystemVersionsRes, error)
+2 -5
View File
@@ -277,7 +277,7 @@ func snapshot(a args, u updater) state {
jobCallback := hooks.NewCallbackHookForFilesystem("snapshot", fs, func(_ context.Context) (err error) {
l.Debug("create snapshot")
err = zfs.ZFSSnapshot(a.ctx, fs, snapname, false) // TODO propagate context to ZFSSnapshot
err = zfs.ZFSSnapshot(fs, snapname, false) // TODO propagagte context to ZFSSnapshot
if err != nil {
l.WithError(err).Error("cannot create snapshot")
}
@@ -485,10 +485,7 @@ var findSyncPointFSNoFilesystemVersionsErr = fmt.Errorf("no filesystem versions"
func findSyncPointFSNextOptimalSnapshotTime(l Logger, now time.Time, interval time.Duration, prefix string, d *zfs.DatasetPath) (time.Time, error) {
fsvs, err := zfs.ZFSListFilesystemVersions(context.TODO(), d, zfs.ListFilesystemVersionsOptions{
Types: zfs.Snapshots,
ShortnamePrefix: prefix,
})
fsvs, err := zfs.ZFSListFilesystemVersions(d, filters.NewTypedPrefixFilter(prefix, zfs.Snapshot))
if err != nil {
return time.Time{}, errors.Wrap(err, "list filesystem versions")
}
+1 -3
View File
@@ -62,9 +62,7 @@ Actual changelog:
* |bugfix| |docs| snapshotting: clarify sync-up behavior and warn about filesystems
that will not be snapshotted until the sync-up phase is over
* |docs| Document new replication features in the :ref:`config overview <overview-how-replication-works>` and :repomasterlink:`replication/design.md`.
* |feature| documented subcommand to generate ``bash`` and ``zsh`` completions
* **[MAINTAINER NOTICE]** New platform tests in this version, please make sure you run them for your distro!
* **[MAINTAINER NOTICE]** Please add the shell completions to the zrepl packages.
0.2.1
-----
@@ -107,7 +105,7 @@ Actual changelog:
| You can support maintenance and feature development through one of the following services:
| |Donate via Patreon| |Donate via Liberapay| |Donate via PayPal|
| Note that PayPal processing fees are relatively high for small donations.
| For SEPA wire transfer and **commercial support**, please `contact Christian directly <https://cschwarz.com>`_.
| For SEPA wire transfer and **commerical support**, please `contact Christian directly <https://cschwarz.com>`_.
0.1.1
+1 -1
View File
@@ -202,7 +202,7 @@ The latter is particularly useful in combination with log aggregation services.
.. WARNING::
zrepl drops log messages to the TCP outlet if the underlying connection is not fast enough.
Note that TCP buffering in the kernel must first run full before messages are dropped.
Note that TCP buffering in the kernel must first run full becfore messages are dropped.
Make sure to always configure a ``stdout`` outlet as the special error outlet to be informed about problems
with the TCP outlet (see :ref:`above <logging-error-outlet>` ).
+1 -1
View File
@@ -15,7 +15,7 @@ Prometheus & Grafana
zrepl can expose `Prometheus metrics <https://prometheus.io/docs/instrumenting/exposition_formats/>`_ via HTTP.
The ``listen`` attribute is a `net.Listen <https://golang.org/pkg/net/#Listen>`_ string for tcp, e.g. ``:9091`` or ``127.0.0.1:9091``.
The ``listen_freebind`` attribute is :ref:`explained here <listen-freebind-explanation>`.
The Prometheus monitoring job appears in the ``zrepl control`` job list and may be specified **at most once**.
The Prometheues monitoring job appears in the ``zrepl control`` job list and may be specified **at most once**.
zrepl also ships with an importable `Grafana <https://grafana.com>`_ dashboard that consumes the Prometheus metrics:
see :repomasterlink:`dist/grafana`.
+7 -7
View File
@@ -26,9 +26,9 @@ Config File Structure
type: push
- ...
zrepl is configured using a single YAML configuration file with two main sections: ``global`` and ``jobs``.
zrepl is confgured using a single YAML configuration file with two main sections: ``global`` and ``jobs``.
The ``global`` section is filled with sensible defaults and is covered later in this chapter.
The ``jobs`` section is a list of jobs which we are going to explain now.
The ``jobs`` section is a list of jobs which we are goind to explain now.
.. _job-overview:
@@ -41,7 +41,7 @@ Jobs are identified by their ``name``, both in log files and the ``zrepl status`
Replication always happens between a pair of jobs: one is the **active side**, and one the **passive side**.
The active side connects to the passive side using a :ref:`transport <transport>` and starts executing the replication logic.
The passive side responds to requests from the active side after checking its permissions.
The passive side responds to requests from the active side after checking its persmissions.
The following table shows how different job types can be combined to achieve **both push and pull mode setups**.
Note that snapshot-creation denoted by "(snap)" is orthogonal to whether a job is active or passive.
@@ -120,7 +120,7 @@ The following steps take place during replication and can be monitored using the
* Perform replication steps in the following order:
Among all filesystems with pending replication steps, pick the filesystem whose next replication step's snapshot is the oldest.
* Create placeholder filesystems on the receiving side to mirror the dataset paths on the sender to ``root_fs/${client_identity}``.
* Acquire send-side *step-holds* on the step's `from` and `to` snapshots.
* Aquire send-side step-holds on the step's `from` and `to` snapshots.
* Perform the replication step.
* Move the **replication cursor** bookmark on the sending side (see below).
* Move the **last-received-hold** on the receiving side (see below).
@@ -141,7 +141,7 @@ The ``zrepl holds list`` provides a listing of all bookmarks and holds managed b
.. _replication-placeholder-property:
**Placeholder filesystems** on the receiving side are regular ZFS filesystems with the placeholder property ``zrepl:placeholder=on``.
Placeholders allow the receiving side to mirror the sender's ZFS dataset hierarchy without replicating every filesystem at every intermediary dataset path component.
Placeholders allow the receiving side to mirror the sender's ZFS dataset hierachy without replicating every filesystem at every intermediary dataset path component.
Consider the following example: ``S/H/J`` shall be replicated to ``R/sink/job/S/H/J``, but neither ``S/H`` nor ``S`` shall be replicated.
ZFS requires the existence of ``R/sink/job/S`` and ``R/sink/job/S/H`` in order to receive into ``R/sink/job/S/H/J``.
Thus, zrepl creates the parent filesystems as placeholders on the receiving side.
@@ -181,7 +181,7 @@ No Overlapping
Jobs run independently of each other.
If two jobs match the same filesystem with their ``filesystems`` filter, they will operate on that filesystem independently and potentially in parallel.
For example, if job A prunes snapshots that job B is planning to replicate, the replication will fail because B assumed the snapshot to still be present.
For example, if job A prunes snapshots that job B is planning to replicate, the replication will fail because B asssumed the snapshot to still be present.
However, the next replication attempt will re-examine the situation from scratch and should work.
N push jobs to 1 sink
@@ -198,5 +198,5 @@ Multiple pull jobs pulling from the same source have potential for race conditio
each pull job prunes the source side independently, causing replication-prune and prune-prune races.
There is currently no way for a pull job to filter which snapshots it should attempt to replicate.
Thus, it is not possible to just manually assert that the prune rules of all pull jobs are disjoint to avoid replication-prune and prune-prune races.
Thus, it is not possibe to just manually assert that the prune rules of all pull jobs are disjoint to avoid replication-prune and prune-prune races.
+1 -1
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@@ -154,7 +154,7 @@ Policy ``regex``
negate: true
regex: "^zrepl_.*"
``regex`` keeps all snapshots whose names are matched by the regular expression in ``regex``.
``regex`` keeps all snapshots whose names are matched by the regular expressionin ``regex``.
Like all other regular expression fields in prune policies, zrepl uses Go's `regexp.Regexp <https://golang.org/pkg/regexp/#Compile>`_ Perl-compatible regular expressions (`Syntax <https://golang.org/pkg/regexp/syntax>`_).
The optional `negate` boolean field inverts the semantics: Use it if you want to keep all snapshots that *do not* match the given regex.
+1 -1
View File
@@ -24,7 +24,7 @@ Send Options
---------------------
The ``encryption`` variable controls whether the matched filesystems are sent as `OpenZFS native encryption <http://open-zfs.org/wiki/ZFS-Native_Encryption>`_ raw sends.
More specifically, if ``encryption=true``, zrepl
More specificially, if ``encryption=true``, zrepl
* checks for any of the filesystems matched by ``filesystems`` whether the ZFS ``encryption`` property indicates that the filesystem is actually encrypted with ZFS native encryption and
* invokes the ``zfs send`` subcommand with the ``-w`` option (raw sends) and
+2 -9
View File
@@ -52,15 +52,8 @@ Serve
listen: ":8888"
listen_freebind: true # optional, default false
clients: {
"192.168.122.123" : "mysql01",
"192.168.122.42" : "mx01",
"2001:0db8:85a3::8a2e:0370:7334": "gateway",
# CIDR masks require a '*' in the client identity string
# that is expanded to the client's IP address
"10.23.42.0/24": "cluster-*"
"fde4:8dba:82e1::/64": "san-*"
"192.168.122.123" : "mysql01"
"192.168.122.123" : "mx01"
}
...
+129 -10
View File
@@ -1,19 +1,138 @@
.. _binary releases: https://github.com/zrepl/zrepl/releases
.. _installation_toc:
.. _installation:
************
Installation
************
============
.. TIP::
Note: check out the :ref:`tutorial` if you want a first impression of zrepl.
.. toctree::
User Privileges
---------------
installation/user-privileges
installation/packages
installation/apt-repos
installation/compile-from-source
installation/freebsd-jail-with-iocage
installation/what-next
It is possible to run zrepl as an unprivileged user in combination with
`ZFS delegation <https://www.freebsd.org/doc/handbook/zfs-zfs-allow.html>`_.
Also, there is the possibility to run it in a jail on FreeBSD by delegating a dataset to the jail.
However, until we get around documenting those setups, you will have to run zrepl as root or experiment yourself :)
Packages
--------
zrepl source releases are signed & tagged by the author in the git repository.
Your OS vendor may provide binary packages of zrepl through the package manager.
Additionally, `binary releases`_ are provided on GitHub.
The following list may be incomplete, feel free to submit a PR with an update:
.. list-table::
:header-rows: 1
* - OS / Distro
- Install Command
- Link
* - FreeBSD
- ``pkg install zrepl``
- `<https://www.freshports.org/sysutils/zrepl/>`_
* - MacOS
- ``brew install zrepl``
- Available on `homebrew <https://brew.sh>`_
* - Arch Linux
- ``yay install zrepl``
- Available on `AUR <https://aur.archlinux.org/packages/zrepl>`_
* - Fedora
- ``dnf install zrepl``
- Available on `COPR <https://copr.fedorainfracloud.org/coprs/poettlerric/zrepl/>`_
* - CentOS/RHEL
- ``yum install zrepl``
- Available on `COPR <https://copr.fedorainfracloud.org/coprs/poettlerric/zrepl/>`_
* - Debian + Ubuntu
- ``apt install zrepl``
- APT repository config :ref:`see below <installation-apt-repos>`
* - OmniOS
- ``pkg install zrepl``
- Available since `r151030 <https://pkg.omniosce.org/r151030/extra/en/search.shtml?token=zrepl&action=Search>`_
* - Void Linux
- ``xbps-install zrepl``
- Available since `a88a2a4 <https://github.com/void-linux/void-packages/commit/a88a2a4d7bf56072dadf61ab56b8424e39155890>`_
* - Others
-
- Use `binary releases`_ or build from source.
.. _installation-apt-repos:
Debian / Ubuntu APT repositories
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
We maintain APT repositories for Debian, Ubuntu and derivatives.
The fingerprint of the signing key is ``E101 418F D3D6 FBCB 9D65 A62D 7086 99FC 5F2E BF16``.
It is available at `<https://zrepl.cschwarz.com/apt/apt-key.asc>`_ .
Please open an issue `in the packaging repository <https://github.com/zrepl/debian-binary-packaging>`_ if you encounter any issues with the repository.
The following snippet configure the repository for your Debian or Ubuntu release:
::
apt update && apt install curl gnupg lsb-release; \
ARCH="$(dpkg --print-architecture)"; \
CODENAME="$(lsb_release -i -s | tr '[:upper:]' '[:lower:]') $(lsb_release -c -s | tr '[:upper:]' '[:lower:]')"; \
echo "Using Distro and Codename: $CODENAME"; \
(curl https://zrepl.cschwarz.com/apt/apt-key.asc | apt-key add -) && \
(echo "deb [arch=$ARCH] https://zrepl.cschwarz.com/apt/$CODENAME main" > /etc/apt/sources.list.d/zrepl.list) && \
apt update
.. NOTE::
Until zrepl reaches 1.0, all APT repositories will be updated to the latest zrepl release immediately.
This includes breaking changes between zrepl versions.
Use ``apt-mark hold zrepl`` to prevent upgrades of zrepl.
Compile From Source
~~~~~~~~~~~~~~~~~~~
Producing a release requires **Go 1.11** or newer and **Python 3** + **pip3** + ``docs/requirements.txt`` for the Sphinx documentation.
A tutorial to install Go is available over at `golang.org <https://golang.org/doc/install>`_.
Python and pip3 should probably be installed via your distro's package manager.
Alternatively, you can use the Docker build process:
it is used to produce the official zrepl `binary releases`_
and serves as a reference for build dependencies and procedure:
::
git clone https://github.com/zrepl/zrepl.git
cd zrepl
sudo docker build -t zrepl_build -f build.Dockerfile .
sudo docker run -it --rm \
-v "${PWD}:/src" \
--user "$(id -u):$(id -g)" \
zrepl_build make release
Alternatively, you can install build dependencies on your local system and then build in your ``$GOPATH``:
::
mkdir -p "${GOPATH}/src/github.com/zrepl/zrepl"
git clone https://github.com/zrepl/zrepl.git "${GOPATH}/src/github.com/zrepl/zrepl"
cd "${GOPATH}/src/github.com/zrepl/zrepl"
python3 -m venv3
source venv3/bin/activate
./lazy.sh devsetup
make release
The Python venv is used for the documentation build dependencies.
If you just want to build the zrepl binary, leave it out and use `./lazy.sh godep` instead.
Either way, all build results are located in the ``artifacts/`` directory.
.. NOTE::
It is your job to install the apropriate binary in the zrepl users's ``$PATH``, e.g. ``/usr/local/bin/zrepl``.
Otherwise, the examples in the :ref:`tutorial` may need to be adjusted.
What next?
----------
Read the :ref:`configuration chapter<configuration_toc>` and then continue with the :ref:`usage chapter<usage>`.
**Reminder**: If you want a quick introduction, please read the :ref:`tutorial`.
-29
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@@ -1,29 +0,0 @@
.. _installation-apt-repos:
Debian / Ubuntu APT repositories
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
We maintain APT repositories for Debian, Ubuntu and derivatives.
The fingerprint of the signing key is ``E101 418F D3D6 FBCB 9D65 A62D 7086 99FC 5F2E BF16``.
It is available at `<https://zrepl.cschwarz.com/apt/apt-key.asc>`_ .
Please open an issue `in the packaging repository <https://github.com/zrepl/debian-binary-packaging>`_ if you encounter any issues with the repository.
The following snippet configure the repository for your Debian or Ubuntu release:
::
apt update && apt install curl gnupg lsb-release; \
ARCH="$(dpkg --print-architecture)"; \
CODENAME="$(lsb_release -i -s | tr '[:upper:]' '[:lower:]') $(lsb_release -c -s | tr '[:upper:]' '[:lower:]')"; \
echo "Using Distro and Codename: $CODENAME"; \
(curl https://zrepl.cschwarz.com/apt/apt-key.asc | apt-key add -) && \
(echo "deb [arch=$ARCH] https://zrepl.cschwarz.com/apt/$CODENAME main" > /etc/apt/sources.list.d/zrepl.list) && \
apt update
.. NOTE::
Until zrepl reaches 1.0, all APT repositories will be updated to the latest zrepl release immediately.
This includes breaking changes between zrepl versions.
Use ``apt-mark hold zrepl`` to prevent upgrades of zrepl.
-45
View File
@@ -1,45 +0,0 @@
.. _binary releases: https://github.com/zrepl/zrepl/releases
.. _installation-compile-from-source:
Compile From Source
~~~~~~~~~~~~~~~~~~~
Producing a release requires **Go 1.11** or newer and **Python 3** + **pip3** + ``docs/requirements.txt`` for the Sphinx documentation.
A tutorial to install Go is available over at `golang.org <https://golang.org/doc/install>`_.
Python and pip3 should probably be installed via your distro's package manager.
Alternatively, you can use the Docker build process:
it is used to produce the official zrepl `binary releases`_
and serves as a reference for build dependencies and procedure:
::
git clone https://github.com/zrepl/zrepl.git && \
cd zrepl && \
sudo docker build -t zrepl_build -f build.Dockerfile . && \
sudo docker run -it --rm \
-v "${PWD}:/src" \
--user "$(id -u):$(id -g)" \
zrepl_build make release
Alternatively, you can install build dependencies on your local system and then build in your ``$GOPATH``:
::
mkdir -p "${GOPATH}/src/github.com/zrepl/zrepl"
git clone https://github.com/zrepl/zrepl.git "${GOPATH}/src/github.com/zrepl/zrepl"
cd "${GOPATH}/src/github.com/zrepl/zrepl"
python3 -m venv3
source venv3/bin/activate
./lazy.sh devsetup
make release
The Python venv is used for the documentation build dependencies.
If you just want to build the zrepl binary, leave it out and use `./lazy.sh godep` instead.
Either way, all build results are located in the ``artifacts/`` directory.
.. NOTE::
It is your job to install the appropriate binary in the zrepl users's ``$PATH``, e.g. ``/usr/local/bin/zrepl``.
Otherwise, the examples in the :ref:`tutorial` may need to be adjusted.
@@ -1,140 +0,0 @@
.. include:: ../global.rst.inc
.. _installation-freebsd-jail-with-iocage:
FreeBSD Jail With iocage
========================
This tutorial shows how zrepl can be installed on FreeBSD, or FreeNAS in a jail using iocage.
While this tutorial focuses on using iocage, much of the setup would be similar
using a different jail manager.
.. NOTE::
From a security perspective, just keep in mind that ``zfs send``/``recv`` was never designed with
jails in mind, an attacker could probably crash the receive-side kernel or worse induce stateful
damage to the receive-side pool if they were able to get access to the jail.
The jail doesn't provide security benefits, but only management ones.
Requirements
------------
A dataset that will be delegated to the jail needs to be created if one does not already exist.
For the tutorial ``tank/zrepl`` will be used.
.. code-block:: bash
zfs create -o mountpoint=none tank/zrepl
The only software requirements on the host system are ``iocage``, which can be installed
from ports or packages.
.. code-block:: bash
pkg install py37-iocage
.. NOTE::
By default ``iocage`` will "activate" on first use which will set up some defaults such as
which pool will be used. To activate ``iocage`` manually the ``iocage activate`` command can be used.
Jail Creation
-------------
There are two options for jail creation using FreeBSD.
1. Manually set up the jail from scratch
2. Create the jail using the ``zrepl`` plugin. On FreeNAS this is possible from the user interface using the community index.
Manual Jail
###########
Create a jail, using the same release as the host, called ``zrepl`` that will be automatically started at boot.
The jail will have ``tank/zrepl`` delegated into it.
.. code-block:: bash
iocage create --release "$(freebsd-version -k | cut -d '-' -f '1,2')" --name zrepl \
boot=on nat=1 \
jail_zfs=on \
jail_zfs_dataset=zrepl \
jail_zfs_mountpoint='none'
Enter the jail:
.. code-block:: bash
iocage console zrepl
Install ``zrepl``
.. code-block:: bash
pkg update && pkg upgrade
pkg install zrepl
Create the log file ``/var/log/zrepl.log``
.. code-block:: bash
touch /var/log/zrepl.log && service newsyslog restart
Tell syslogd to redirect facility local0 to the ``zrepl.log`` file:
.. code-block:: bash
service syslogd reload
Enable the zrepl daemon to start automatically at boot:
.. code-block:: bash
sysrc zrepl_enable="YES"
Plugin
######
When using the plugin, ``zrepl`` will be installed for you in a jail using the following ``iocage`` properties.
* ``nat=1``
* ``jail_zfs=on``
* ``jail_zfs_mountpoint=none``
Additionally the delegated dataset should be specified upon creation, and optionally start on boot can be set.
This can also be done from the FreeNAS webui.
.. code-block:: bash
fetch https://raw.githubusercontent.com/ix-plugin-hub/iocage-plugin-index/master/zrepl.json -o /tmp/zrepl.json
iocage fetch -P /tmp/zrepl.json --name zrepl jail_zfs_dataset=zrepl boot=on
Configuration
-------------
Now ``zrepl`` can be configured.
Enter the jail.
.. code-block:: bash
iocage console zrepl
Modify the ``/usr/local/etc/zrepl/zrepl.yml`` configuration file.
.. TIP::
Note: check out the :ref:`tutorial` for examples of a ``sink`` job.
Now ``zrepl`` can be started.
.. code-block:: bash
service zrepl start
Summary
-------
Congratulations, you have a working jail!
-50
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@@ -1,50 +0,0 @@
.. _installation-packages:
.. _binary releases: https://github.com/zrepl/zrepl/releases
Packages
--------
zrepl source releases are signed & tagged by the author in the git repository.
Your OS vendor may provide binary packages of zrepl through the package manager.
Additionally, `binary releases`_ are provided on GitHub.
The following list may be incomplete, feel free to submit a PR with an update:
.. list-table::
:header-rows: 1
* - OS / Distro
- Install Command
- Link
* - FreeBSD
- ``pkg install zrepl``
- `<https://www.freshports.org/sysutils/zrepl/>`_
:ref:`installation-freebsd-jail-with-iocage`
* - FreeNAS
-
- :ref:`installation-freebsd-jail-with-iocage`
* - MacOS
- ``brew install zrepl``
- Available on `homebrew <https://brew.sh>`_
* - Arch Linux
- ``yay install zrepl``
- Available on `AUR <https://aur.archlinux.org/packages/zrepl>`_
* - Fedora
- ``dnf install zrepl``
- Available on `COPR <https://copr.fedorainfracloud.org/coprs/poettlerric/zrepl/>`_
* - CentOS/RHEL
- ``yum install zrepl``
- Available on `COPR <https://copr.fedorainfracloud.org/coprs/poettlerric/zrepl/>`_
* - Debian + Ubuntu
- ``apt install zrepl``
- APT repository config :ref:`see below <installation-apt-repos>`
* - OmniOS
- ``pkg install zrepl``
- Available since `r151030 <https://pkg.omniosce.org/r151030/extra/en/search.shtml?token=zrepl&action=Search>`_
* - Void Linux
- ``xbps-install zrepl``
- Available since `a88a2a4 <https://github.com/void-linux/void-packages/commit/a88a2a4d7bf56072dadf61ab56b8424e39155890>`_
* - Others
-
- Use `binary releases`_ or build from source.
-12
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@@ -1,12 +0,0 @@
.. _installation-user-privileges:
User Privileges
---------------
It is possible to run zrepl as an unprivileged user in combination with
`ZFS delegation <https://www.freebsd.org/doc/handbook/zfs-zfs-allow.html>`_.
Also, there is the possibility to run it in a jail on FreeBSD by delegating a dataset to the jail.
.. TIP::
Note: check out the :ref:`installation-freebsd-jail-with-iocage` for FreeBSD jail setup instructions.
-8
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@@ -1,8 +0,0 @@
.. _installation-what-next:
What next?
----------
Read the :ref:`configuration chapter<configuration_toc>` and then continue with the :ref:`usage chapter<usage>`.
**Reminder**: If you want a quick introduction, please read the :ref:`tutorial`.
+1 -1
View File
@@ -6,7 +6,7 @@
zrepl is a spare-time project primarily developed by `Christian Schwarz <https://cschwarz.com>`_.
You can support maintenance and feature development through one of the services listed above.
For SEPA wire transfer and **commercial support**, please `contact Christian directly <https://cschwarz.com>`_.
For SEPA wire transfer and **commerical support**, please `contact Christian directly <https://cschwarz.com>`_.
**Thanks for your support!**
+1 -1
View File
@@ -47,7 +47,7 @@ We can model this situation as two jobs:
Install zrepl
-------------
Follow the :ref:`OS-specific installation instructions <installation_toc>` and come back here.
Follow the :ref:`OS-specific installation instructions <installation>` and come back here.
Generate TLS Certificates
-------------------------
+2 -4
View File
@@ -38,8 +38,6 @@ CLI Overview
* - ``zrepl migrate``
- | perform on-disk state / ZFS property migrations
| (see :ref:`changelog <changelog>` for details)
* - ``zrepl zfs-abstractions``
- list and remove zrepl's abstractions on top of ZFS, e.g. holds and step bookmarks (see :ref:`overview <replication-cursor-and-last-received-hold>` )
.. _usage-zrepl-daemon:
@@ -50,7 +48,7 @@ zrepl daemon
All actual work zrepl does is performed by a daemon process.
The daemon supports structured :ref:`logging <logging>` and provides :ref:`monitoring endpoints <monitoring>`.
When installing from a package, the package maintainer should have provided an init script / systemd.service file.
When installating from a package, the package maintainer should have provided an init script / systemd.service file.
You should thus be able to start zrepl daemon using your init system.
Alternatively, or for running zrepl in the foreground, simply execute ``zrepl daemon``.
@@ -75,6 +73,6 @@ The daemon exits as soon as all jobs have reported shut down.
Systemd Unit File
~~~~~~~~~~~~~~~~~
A systemd service definition template is available in :repomasterlink:`dist/systemd`.
A systemd service defintion template is available in :repomasterlink:`dist/systemd`.
Note that some of the options only work on recent versions of systemd.
Any help & improvements are very welcome, see :issue:`145`.
+129
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@@ -0,0 +1,129 @@
# Tiered Snapshotting, Pruning & Replication
## Use Case
* Differently paced snapshotting & replication
* 20 x 10min-spaced snapshots for rollback in case of adminstrative mistakes.
* Should never be replicated
* Daily Snapshots for off-site replication
* at 3:00 AM to avoid impacting production workload
* Sometimes, out-of-routine snapshot for off-site replication
* e.g. before system update
## Config Draft
```yaml
- type: push
connect:
type: tcp
address: "backup-server.foo.bar:8888"
filesystems: {
"<": true,
"tmp": false
}
send:
snap_filters:
- type: snapmgmt # auto-add this snap filter if snapmgmt != {}
# every snapmgmt method produces a list of snaps_filters which this snap_filter type represents
- type: regex
regex: "manual_.*" # admin may create snapshots named like `manual_pre_upgrade` and have those replicated as well
# TODO: how does a manual `zfs snapshot` trigger replication? `zrepl signal wakeup ...` good enough for now
snapmgmt:
type: tiered
prefix: zrepl_
tiers:
- name: local
cron: every 10 minutes
keep: { local: 10, remote: 0 }
- name: daily
cron: every day at 3 AM
keep: { local: 14, remote: 30 }
- name: weekly
cron: every sunday at 3 AM
keep: { local: 0, remote: 20 }
- name: monthly
cron: every last sunday of the month at 3 AM
keep: { local: 0, remote: 12 }
```
TODO pull - likely breaks existing split of responsibilities about pruning between `pull` and `source`
## Implementation
A `snapmgmt` type implements both snapshotting and *local* pruning in one service (`RunSnapshotterAndLocalPruner()`)
The `snapmgmt` type `tiered` works as follows:
* Snapshots are created per tier:
* snapshot name = `${PREFIX}_${JOBNAME}_TIERED_${thistier.name}_${NOW}`
* property `zrepl:JOBNAME:tier=${thistier.name}`
* property `zrepl:JOBNAME:destroy_at=${thistier.destroy_at(NOW)}`
* Sender-side pruning by
* filtering all snaps by userprop `zrepl:JOBNAME:tier=${thistier.name}`
* destroying all snaps in the filtered list with `(zrepl:JOBNAME:destroy_at).Before(NOW)`
* sleeping until MIN of
* `MIN(filtered_list.zrepl:JOBNAME:destroy_at)`
* `(<-newSnapshots).DestroyAt)`
The replication enigne remains orthogonal to `snapmgmt`, but the protocol allows a sender to present a filtered view of snapshots in the `ListFilesystemVersions` RPC response.
The filters are specified in a list, and have OR semantics, i.e., if one filter matches, the snapshot is presented tothe replication engine.
The filter type supporting the feature proposed in this issue is the `tiered` filter type:
it includes snapshots that are
* named by the snapshotter above: `${PREFIX}_${JOBNAME}_${snapmgmt.tiers|.name}_${NOW}`
* and the respective tier has a non-zero `keep.remote`
* TODO: deriving the tier from the snapshot name is unclean.
We could instead allow that a replication filter is not pure (i.e. may use zfs.ZFSGet).
Would work for both `push` and `source` jobs.
Receiver-side pruning is still unsolved (TODO):
* We could replicate the `destroy_at` property, and have independent pruning on the receive-side.
* While there are cases where this is desirable (use case "guarantee that replicated data is destroyed after X months")
* it might be undesirable in cases where the receive-side is a backup (which should not self-destroy)
* We could require each `snapmgmt` method to have a `PruneReceiver(receiver)` method, and require that `receiver` provides an RPC endpoint to get the `destroy_at` infromation required to evaluate the prune policy (e.g. a flag in the request, like `GetDestroyAt=true`)
## Other future `snapmgmt` methods
```yaml
snapmgmt:
# zrepl signal ondemand JOBNAME SNAPNAME EXPIRE_AT
# => creates snapshot @SNAPNAME for all filesystems matched by `$JOB.filesystems` with expiration date `EXPIRE_AT`
# => snapshot has user prop `zrepl:JOBNAME:ondemand=on`
# replication filter `snapmgmt` filters by `ondemand` property
# pruning filter uses expieration data encoded in property
type: ondemand
snapmgmt:
# no snapshots, never-matching filter
type: manual
```
## Existing Use-Cases
### Existing Configurations & Migration to New Config
`snapmgmt` replaces the previous `snapshotting` and `pruning` fields.
Proposed migration for existing configs:
```yaml
snapmgmt:
type: pre-snapmgmt
snapshotting:
type: periodic
interval: 10m
prefix: zrepl_
pruning:
keep_sender:
- type: not_replicated
- type: last_n
count: 10
- type: grid
grid: 1x1h(keep=all) | 24x1h | 14x1d
regex: "^zrepl_.*"
keep_receiver:
- type: grid
grid: 1x1h(keep=all) | 24x1h | 35x1d | 6x30d
regex: "^zrepl_.*"
```
+55 -143
View File
@@ -96,7 +96,7 @@ func (s *Sender) ListFilesystemVersions(ctx context.Context, r *pdu.ListFilesyst
if err != nil {
return nil, err
}
fsvs, err := zfs.ZFSListFilesystemVersions(ctx, lp, zfs.ListFilesystemVersionsOptions{})
fsvs, err := zfs.ZFSListFilesystemVersions(lp, nil)
if err != nil {
return nil, err
}
@@ -110,116 +110,34 @@ func (s *Sender) ListFilesystemVersions(ctx context.Context, r *pdu.ListFilesyst
}
func (p *Sender) HintMostRecentCommonAncestor(ctx context.Context, r *pdu.HintMostRecentCommonAncestorReq) (*pdu.HintMostRecentCommonAncestorRes, error) {
var err error
fsp, err := p.filterCheckFS(r.GetFilesystem())
if err != nil {
return nil, err
}
fs := fsp.ToString()
log := getLogger(ctx).WithField("fs", fs).WithField("hinted_most_recent", fmt.Sprintf("%#v", r.GetSenderVersion()))
log.WithField("full_hint", r).Debug("full hint")
if r.GetSenderVersion() == nil {
// no common ancestor found, likely due to failed prior replication attempt
// => release stale step holds to prevent them from accumulating
// (they can accumulate on initial replication because each inital replication step might hold a different `to`)
// => replication cursors cannot accumulate because we always _move_ the replication cursor
log.Debug("releasing all step holds on the filesystem")
TryReleaseStepStaleFS(ctx, fs, p.jobId)
return &pdu.HintMostRecentCommonAncestorRes{}, nil
}
// we were hinted a specific common ancestor
mostRecentVersion, err := sendArgsFromPDUAndValidateExistsAndGetVersion(ctx, fs, r.GetSenderVersion())
fs := r.GetFilesystem()
mostRecent, err := sendArgsFromPDUAndValidateExists(ctx, fs, r.GetSenderVersion())
if err != nil {
msg := "HintMostRecentCommonAncestor rpc with nonexistent most recent version"
log.Warn(msg)
getLogger(ctx).WithField("fs", fs).WithField("hinted_most_recent", fmt.Sprintf("%#v", mostRecent)).
Warn(msg)
return nil, errors.Wrap(err, msg)
}
// move replication cursor to this position
destroyedCursors, err := MoveReplicationCursor(ctx, fs, mostRecentVersion, p.jobId)
_, err = MoveReplicationCursor(ctx, fs, mostRecent, p.jobId)
if err == zfs.ErrBookmarkCloningNotSupported {
log.Debug("not creating replication cursor from bookmark because ZFS does not support it")
getLogger(ctx).Debug("not creating replication cursor from bookmark because ZFS does not support it")
// fallthrough
} else if err != nil {
return nil, errors.Wrap(err, "cannot set replication cursor to hinted version")
}
// take care of stale step holds
log.WithField("step-holds-cleanup-mode", senderHintMostRecentCommonAncestorStepCleanupMode).
Debug("taking care of possibly stale step holds")
doStepCleanup := false
var stepCleanupSince *CreateTXGRangeBound
switch senderHintMostRecentCommonAncestorStepCleanupMode {
case StepCleanupNoCleanup:
doStepCleanup = false
case StepCleanupRangeSinceUnbounded:
doStepCleanup = true
stepCleanupSince = nil
case StepCleanupRangeSinceReplicationCursor:
doStepCleanup = true
// Use the destroyed replication cursors as indicator how far the previous replication got.
// To be precise: We limit the amount of visisted snapshots to exactly those snapshots
// created since the last successful replication cursor movement (i.e. last successful replication step)
//
// If we crash now, we'll leak the step we are about to release, but the performance gain
// of limiting the amount of snapshots we visit makes up for that.
// Users have the `zrepl holds release-stale` command to cleanup leaked step holds.
for _, destroyed := range destroyedCursors {
if stepCleanupSince == nil {
stepCleanupSince = &CreateTXGRangeBound{
CreateTXG: destroyed.GetCreateTXG(),
Inclusive: &zfs.NilBool{B: true},
}
} else if destroyed.GetCreateTXG() < stepCleanupSince.CreateTXG {
stepCleanupSince.CreateTXG = destroyed.GetCreateTXG()
}
}
default:
panic(senderHintMostRecentCommonAncestorStepCleanupMode)
}
if !doStepCleanup {
log.Info("skipping cleanup of prior invocations' step holds due to environment variable setting")
} else {
if err := ReleaseStepCummulativeInclusive(ctx, fs, stepCleanupSince, mostRecentVersion, p.jobId); err != nil {
return nil, errors.Wrap(err, "cannot cleanup prior invocation's step holds and bookmarks")
} else {
log.Info("step hold cleanup done")
}
// cleanup previous steps
if err := ReleaseStepAll(ctx, fs, mostRecent, p.jobId); err != nil {
return nil, errors.Wrap(err, "cannot cleanup prior invocation's step holds and bookmarks")
}
return &pdu.HintMostRecentCommonAncestorRes{}, nil
}
type HintMostRecentCommonAncestorStepCleanupMode struct{ string }
var (
StepCleanupRangeSinceReplicationCursor = HintMostRecentCommonAncestorStepCleanupMode{"range-since-replication-cursor"}
StepCleanupRangeSinceUnbounded = HintMostRecentCommonAncestorStepCleanupMode{"range-since-unbounded"}
StepCleanupNoCleanup = HintMostRecentCommonAncestorStepCleanupMode{"no-cleanup"}
)
func (m HintMostRecentCommonAncestorStepCleanupMode) String() string { return string(m.string) }
func (m *HintMostRecentCommonAncestorStepCleanupMode) Set(s string) error {
switch s {
case StepCleanupRangeSinceReplicationCursor.String():
*m = StepCleanupRangeSinceReplicationCursor
case StepCleanupRangeSinceUnbounded.String():
*m = StepCleanupRangeSinceUnbounded
case StepCleanupNoCleanup.String():
*m = StepCleanupNoCleanup
default:
return fmt.Errorf("unknown step cleanup mode %q", s)
}
return nil
}
var senderHintMostRecentCommonAncestorStepCleanupMode = *envconst.Var("ZREPL_ENDPOINT_SENDER_HINT_MOST_RECENT_STEP_HOLD_CLEANUP_MODE", &StepCleanupRangeSinceReplicationCursor).(*HintMostRecentCommonAncestorStepCleanupMode)
var maxConcurrentZFSSendSemaphore = semaphore.New(envconst.Int64("ZREPL_ENDPOINT_MAX_CONCURRENT_SEND", 10))
func uncheckedSendArgsFromPDU(fsv *pdu.FilesystemVersion) *zfs.ZFSSendArgVersion {
@@ -229,16 +147,15 @@ func uncheckedSendArgsFromPDU(fsv *pdu.FilesystemVersion) *zfs.ZFSSendArgVersion
return &zfs.ZFSSendArgVersion{RelName: fsv.GetRelName(), GUID: fsv.Guid}
}
func sendArgsFromPDUAndValidateExistsAndGetVersion(ctx context.Context, fs string, fsv *pdu.FilesystemVersion) (v zfs.FilesystemVersion, err error) {
sendArgs := uncheckedSendArgsFromPDU(fsv)
if sendArgs == nil {
return v, errors.New("must not be nil")
func sendArgsFromPDUAndValidateExists(ctx context.Context, fs string, fsv *pdu.FilesystemVersion) (*zfs.ZFSSendArgVersion, error) {
v := uncheckedSendArgsFromPDU(fsv)
if v == nil {
return nil, errors.New("must not be nil")
}
version, err := sendArgs.ValidateExistsAndGetVersion(ctx, fs)
if err != nil {
return v, err
if err := v.ValidateExists(ctx, fs); err != nil {
return nil, err
}
return version, nil
return v, nil
}
func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.StreamCopier, error) {
@@ -253,7 +170,7 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.St
// ok, fallthrough outer
case pdu.Tri_False:
if s.encrypt.B {
return nil, nil, errors.New("only encrypted sends allowed (send -w + encryption!= off), but unencrypted send requested")
return nil, nil, errors.New("only encrytped sends allowed (send -w + encryption!= off), but unencrytped send requested")
}
// fallthrough outer
case pdu.Tri_True:
@@ -265,7 +182,7 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.St
return nil, nil, fmt.Errorf("unknown pdu.Tri variant %q", r.Encrypted)
}
sendArgsUnvalidated := zfs.ZFSSendArgsUnvalidated{
sendArgs := zfs.ZFSSendArgs{
FS: r.Filesystem,
From: uncheckedSendArgsFromPDU(r.GetFrom()), // validated by zfs.ZFSSendDry / zfs.ZFSSend
To: uncheckedSendArgsFromPDU(r.GetTo()), // validated by zfs.ZFSSendDry / zfs.ZFSSend
@@ -273,11 +190,6 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.St
ResumeToken: r.ResumeToken, // nil or not nil, depending on decoding success
}
sendArgs, err := sendArgsUnvalidated.Validate(ctx)
if err != nil {
return nil, nil, errors.Wrap(err, "validate send arguments")
}
getLogger(ctx).Debug("acquire concurrent send semaphore")
// TODO use try-acquire and fail with resource-exhaustion rpc status
// => would require handling on the client-side
@@ -294,7 +206,7 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.St
}
// From now on, assume that sendArgs has been validated by ZFSSendDry
// (because validation involves shelling out, it's actually a little expensive)
// (because validation invovles shelling out, it's actually a little expensive)
var expSize int64 = 0 // protocol says 0 means no estimate
if si.SizeEstimate != -1 { // but si returns -1 for no size estimate
@@ -312,7 +224,7 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.St
// update replication cursor
if sendArgs.From != nil {
// For all but the first replication, this should always be a no-op because SendCompleted already moved the cursor
_, err = MoveReplicationCursor(ctx, sendArgs.FS, sendArgs.FromVersion, s.jobId)
_, err = MoveReplicationCursor(ctx, sendArgs.FS, sendArgs.From, s.jobId)
if err == zfs.ErrBookmarkCloningNotSupported {
getLogger(ctx).Debug("not creating replication cursor from bookmark because ZFS does not support it")
// fallthrough
@@ -323,18 +235,18 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.St
// make sure `From` doesn't go away in order to make this step resumable
if sendArgs.From != nil {
_, err := HoldStep(ctx, sendArgs.FS, *sendArgs.FromVersion, s.jobId)
err := HoldStep(ctx, sendArgs.FS, sendArgs.From, s.jobId)
if err == zfs.ErrBookmarkCloningNotSupported {
getLogger(ctx).Debug("not creating step bookmark because ZFS does not support it")
// fallthrough
} else if err != nil {
return nil, nil, errors.Wrapf(err, "cannot hold `from` version %q before starting send", *sendArgs.FromVersion)
return nil, nil, errors.Wrap(err, "cannot create step bookmark")
}
}
// make sure `To` doesn't go away in order to make this step resumable
_, err = HoldStep(ctx, sendArgs.FS, sendArgs.ToVersion, s.jobId)
err = HoldStep(ctx, sendArgs.FS, sendArgs.To, s.jobId)
if err != nil {
return nil, nil, errors.Wrapf(err, "cannot hold `to` version %q before starting send", sendArgs.ToVersion)
return nil, nil, errors.Wrapf(err, "cannot hold `to` version %q before starting send", sendArgs.To.RelName)
}
// step holds & replication cursor released / moved forward in s.SendCompleted => s.moveCursorAndReleaseSendHolds
@@ -347,32 +259,27 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, zfs.St
}
func (p *Sender) SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*pdu.SendCompletedRes, error) {
orig := r.GetOriginalReq() // may be nil, always use proto getters
fsp, err := p.filterCheckFS(orig.GetFilesystem())
if err != nil {
return nil, err
}
fs := fsp.ToString()
fs := orig.GetFilesystem()
var from *zfs.FilesystemVersion
var err error
var from *zfs.ZFSSendArgVersion
if orig.GetFrom() != nil {
f, err := sendArgsFromPDUAndValidateExistsAndGetVersion(ctx, fs, orig.GetFrom()) // no shadow
from, err = sendArgsFromPDUAndValidateExists(ctx, fs, orig.GetFrom()) // no shadow
if err != nil {
return nil, errors.Wrap(err, "validate `from` exists")
}
from = &f
}
to, err := sendArgsFromPDUAndValidateExistsAndGetVersion(ctx, fs, orig.GetTo())
to, err := sendArgsFromPDUAndValidateExists(ctx, fs, orig.GetTo())
if err != nil {
return nil, errors.Wrap(err, "validate `to` exists")
}
log := getLogger(ctx).WithField("to_guid", to.Guid).
log := getLogger(ctx).WithField("to_guid", to.GUID).
WithField("fs", fs).
WithField("to", to.RelName)
if from != nil {
log = log.WithField("from", from.RelName).WithField("from_guid", from.Guid)
log = log.WithField("from", from.RelName).WithField("from_guid", from.GUID)
}
log.Debug("move replication cursor to most recent common version")
@@ -413,14 +320,18 @@ func (p *Sender) SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*p
return
}
log.Debug("release step-hold of or step-bookmark on `from`")
err := ReleaseStep(ctx, fs, *from, p.jobId)
err := ReleaseStep(ctx, fs, from, p.jobId)
if err != nil {
if dne, ok := err.(*zfs.DatasetDoesNotExist); ok {
// If bookmark cloning is not supported, `from` might be the old replication cursor
// and thus have already been destroyed by MoveReplicationCursor above
// In that case, nonexistence of `from` is not an error, otherwise it is.
for _, c := range destroyedCursors {
if c.GetFullPath() == dne.Path {
fsp, err := zfs.NewDatasetPath(fs)
if err != nil {
panic(err) // fs has been validated multiple times above
}
for _, fsv := range destroyedCursors {
if fsv.ToAbsPath(fsp) == dne.Path {
log.Info("`from` was a replication cursor and has already been destroyed")
return
}
@@ -600,7 +511,7 @@ func (s *Receiver) ListFilesystems(ctx context.Context, req *pdu.ListFilesystemR
fss := make([]*pdu.Filesystem, 0, len(filtered))
for _, a := range filtered {
l := getLogger(ctx).WithField("fs", a)
ph, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, a)
ph, err := zfs.ZFSGetFilesystemPlaceholderState(a)
if err != nil {
l.WithError(err).Error("error getting placeholder state")
return nil, errors.Wrapf(err, "cannot get placeholder state for fs %q", a)
@@ -646,9 +557,8 @@ func (s *Receiver) ListFilesystemVersions(ctx context.Context, req *pdu.ListFile
if err != nil {
return nil, err
}
// TODO share following code with sender
fsvs, err := zfs.ZFSListFilesystemVersions(ctx, lp, zfs.ListFilesystemVersionsOptions{})
fsvs, err := zfs.ZFSListFilesystemVersions(lp, nil)
if err != nil {
return nil, err
}
@@ -700,6 +610,9 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive zfs
if to == nil {
return nil, errors.New("`To` must not be nil")
}
if err := to.ValidateInMemory(lp.ToString()); err != nil {
return nil, errors.Wrap(err, "`To` invalid")
}
if !to.IsSnapshot() {
return nil, errors.New("`To` must be a snapshot")
}
@@ -712,9 +625,9 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive zfs
// ZFS dataset hierarchy subtrees.
var visitErr error
func() {
getLogger(ctx).Debug("begin acquire recvParentCreationMtx")
getLogger(ctx).Debug("begin aquire recvParentCreationMtx")
defer s.recvParentCreationMtx.Lock().Unlock()
getLogger(ctx).Debug("end acquire recvParentCreationMtx")
getLogger(ctx).Debug("end aquire recvParentCreationMtx")
defer getLogger(ctx).Debug("release recvParentCreationMtx")
f := zfs.NewDatasetPathForest()
@@ -724,7 +637,7 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive zfs
if v.Path.Equal(lp) {
return false
}
ph, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, v.Path)
ph, err := zfs.ZFSGetFilesystemPlaceholderState(v.Path)
getLogger(ctx).
WithField("fs", v.Path.ToString()).
WithField("placeholder_state", fmt.Sprintf("%#v", ph)).
@@ -748,7 +661,7 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive zfs
}
l := getLogger(ctx).WithField("placeholder_fs", v.Path)
l.Debug("create placeholder filesystem")
err := zfs.ZFSCreatePlaceholderFilesystem(ctx, v.Path)
err := zfs.ZFSCreatePlaceholderFilesystem(v.Path)
if err != nil {
l.WithError(err).Error("cannot create placeholder filesystem")
visitErr = err
@@ -768,19 +681,19 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive zfs
// determine whether we need to rollback the filesystem / change its placeholder state
var clearPlaceholderProperty bool
var recvOpts zfs.RecvOptions
ph, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, lp)
ph, err := zfs.ZFSGetFilesystemPlaceholderState(lp)
if err == nil && ph.FSExists && ph.IsPlaceholder {
recvOpts.RollbackAndForceRecv = true
clearPlaceholderProperty = true
}
if clearPlaceholderProperty {
if err := zfs.ZFSSetPlaceholder(ctx, lp, false); err != nil {
if err := zfs.ZFSSetPlaceholder(lp, false); err != nil {
return nil, fmt.Errorf("cannot clear placeholder property for forced receive: %s", err)
}
}
if req.ClearResumeToken && ph.FSExists {
if err := zfs.ZFSRecvClearResumeToken(ctx, lp.ToString()); err != nil {
if err := zfs.ZFSRecvClearResumeToken(lp.ToString()); err != nil {
return nil, errors.Wrap(err, "cannot clear resume token")
}
}
@@ -806,14 +719,13 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive zfs
if err := zfs.ZFSRecv(ctx, lp.ToString(), to, receive, recvOpts); err != nil {
getLogger(ctx).
WithError(err).
WithField("opts", fmt.Sprintf("%#v", recvOpts)).
WithField("opts", recvOpts).
Error("zfs receive failed")
return nil, err
}
// validate that we actually received what the sender claimed
toRecvd, err := to.ValidateExistsAndGetVersion(ctx, lp.ToString())
if err != nil {
if err := to.ValidateExists(ctx, lp.ToString()); err != nil {
msg := "receive request's `To` version does not match what we received in the stream"
getLogger(ctx).WithError(err).WithField("snap", snapFullPath).Error(msg)
getLogger(ctx).Error("aborting recv request, but keeping received snapshot for inspection")
@@ -822,7 +734,7 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive zfs
if s.conf.UpdateLastReceivedHold {
getLogger(ctx).Debug("move last-received-hold")
if err := MoveLastReceivedHold(ctx, lp.ToString(), toRecvd, s.conf.JobID); err != nil {
if err := MoveLastReceivedHold(ctx, lp.ToString(), *to, s.conf.JobID); err != nil {
return nil, errors.Wrap(err, "cannot move last-received-hold")
}
}
+503
View File
@@ -0,0 +1,503 @@
package endpoint
import (
"context"
"fmt"
"regexp"
"sort"
"github.com/kr/pretty"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/zfs"
)
var stepHoldTagRE = regexp.MustCompile("^zrepl_STEP_J_(.+)")
func StepHoldTag(jobid JobID) (string, error) {
return stepHoldTagImpl(jobid.String())
}
func stepHoldTagImpl(jobid string) (string, error) {
t := fmt.Sprintf("zrepl_STEP_J_%s", jobid)
if err := zfs.ValidHoldTag(t); err != nil {
return "", err
}
return t, nil
}
// err != nil always means that the bookmark is not a step bookmark
func ParseStepHoldTag(tag string) (JobID, error) {
match := stepHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, fmt.Errorf("parse hold tag: match regex %q", stepHoldTagRE)
}
jobID, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse hold tag: invalid job id field")
}
return jobID, nil
}
const stepBookmarkNamePrefix = "zrepl_STEP"
// v must be validated by caller
func StepBookmarkName(fs string, guid uint64, id JobID) (string, error) {
return stepBookmarkNameImpl(fs, guid, id.String())
}
func stepBookmarkNameImpl(fs string, guid uint64, jobid string) (string, error) {
return makeJobAndGuidBookmarkName(stepBookmarkNamePrefix, fs, guid, jobid)
}
// name is the full bookmark name, including dataset path
//
// err != nil always means that the bookmark is not a step bookmark
func ParseStepBookmarkName(fullname string) (guid uint64, jobID JobID, err error) {
guid, jobID, err = parseJobAndGuidBookmarkName(fullname, stepBookmarkNamePrefix)
if err != nil {
err = errors.Wrap(err, "parse step bookmark name") // no shadow!
}
return guid, jobID, err
}
const replicationCursorBookmarkNamePrefix = "zrepl_CURSOR"
func ReplicationCursorBookmarkName(fs string, guid uint64, id JobID) (string, error) {
return replicationCursorBookmarkNameImpl(fs, guid, id.String())
}
func replicationCursorBookmarkNameImpl(fs string, guid uint64, jobid string) (string, error) {
return makeJobAndGuidBookmarkName(replicationCursorBookmarkNamePrefix, fs, guid, jobid)
}
var ErrV1ReplicationCursor = fmt.Errorf("bookmark name is a v1-replication cursor")
//err != nil always means that the bookmark is not a valid replication bookmark
//
// Returns ErrV1ReplicationCursor as error if the bookmark is a v1 replication cursor
func ParseReplicationCursorBookmarkName(fullname string) (uint64, JobID, error) {
// check for legacy cursors
{
if err := zfs.EntityNamecheck(fullname, zfs.EntityTypeBookmark); err != nil {
return 0, JobID{}, errors.Wrap(err, "parse replication cursor bookmark name")
}
_, _, name, err := zfs.DecomposeVersionString(fullname)
if err != nil {
return 0, JobID{}, errors.Wrap(err, "parse replication cursor bookmark name: decompose version string")
}
const V1ReplicationCursorBookmarkName = "zrepl_replication_cursor"
if name == V1ReplicationCursorBookmarkName {
return 0, JobID{}, ErrV1ReplicationCursor
}
}
guid, jobID, err := parseJobAndGuidBookmarkName(fullname, replicationCursorBookmarkNamePrefix)
if err != nil {
err = errors.Wrap(err, "parse replication cursor bookmark name") // no shadow
}
return guid, jobID, err
}
// may return nil for both values, indicating there is no cursor
func GetMostRecentReplicationCursorOfJob(ctx context.Context, fs string, jobID JobID) (*zfs.FilesystemVersion, error) {
fsp, err := zfs.NewDatasetPath(fs)
if err != nil {
return nil, err
}
candidates, err := GetReplicationCursors(ctx, fsp, jobID)
if err != nil || len(candidates) == 0 {
return nil, err
}
sort.Slice(candidates, func(i, j int) bool {
return candidates[i].CreateTXG < candidates[j].CreateTXG
})
mostRecent := candidates[len(candidates)-1]
return &mostRecent, nil
}
func GetReplicationCursors(ctx context.Context, fs *zfs.DatasetPath, jobID JobID) ([]zfs.FilesystemVersion, error) {
listOut := &ListHoldsAndBookmarksOutput{}
if err := listZFSHoldsAndBookmarksImplFS(ctx, listOut, fs); err != nil {
return nil, errors.Wrap(err, "get replication cursor: list bookmarks and holds")
}
if len(listOut.V1ReplicationCursors) > 0 {
getLogger(ctx).WithField("bookmark", pretty.Sprint(listOut.V1ReplicationCursors)).
Warn("found v1-replication cursor bookmarks, consider running migration 'replication-cursor:v1-v2' after successful replication with this zrepl version")
}
candidates := make([]zfs.FilesystemVersion, 0)
for _, v := range listOut.ReplicationCursorBookmarks {
zv := zfs.ZFSSendArgVersion{
RelName: "#" + v.Name,
GUID: v.Guid,
}
if err := zv.ValidateExists(ctx, v.FS); err != nil {
getLogger(ctx).WithError(err).WithField("bookmark", zv.FullPath(v.FS)).
Error("found invalid replication cursor bookmark")
continue
}
candidates = append(candidates, v.v)
}
return candidates, nil
}
// `target` is validated before replication cursor is set. if validation fails, the cursor is not moved.
//
// returns ErrBookmarkCloningNotSupported if version is a bookmark and bookmarking bookmarks is not supported by ZFS
func MoveReplicationCursor(ctx context.Context, fs string, target *zfs.ZFSSendArgVersion, jobID JobID) (destroyedCursors []zfs.FilesystemVersion, err error) {
if !target.IsSnapshot() {
return nil, zfs.ErrBookmarkCloningNotSupported
}
snapProps, err := target.ValidateExistsAndGetCheckedProps(ctx, fs)
if err != nil {
return nil, errors.Wrapf(err, "invalid replication cursor target %q (guid=%v)", target.RelName, target.GUID)
}
bookmarkname, err := ReplicationCursorBookmarkName(fs, snapProps.Guid, jobID)
if err != nil {
return nil, errors.Wrap(err, "determine replication cursor name")
}
// idempotently create bookmark (guid is encoded in it, hence we'll most likely add a new one
// cleanup the old one afterwards
err = zfs.ZFSBookmark(fs, *target, bookmarkname)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
return nil, err // TODO go1.13 use wrapping
}
return nil, errors.Wrapf(err, "cannot create bookmark")
}
destroyedCursors, err = DestroyObsoleteReplicationCursors(ctx, fs, target, jobID)
if err != nil {
return nil, errors.Wrap(err, "destroy obsolete replication cursors")
}
return destroyedCursors, nil
}
func DestroyObsoleteReplicationCursors(ctx context.Context, fs string, target *zfs.ZFSSendArgVersion, jobID JobID) (destroyed []zfs.FilesystemVersion, err error) {
return destroyBookmarksOlderThan(ctx, fs, target, jobID, func(shortname string) (accept bool) {
_, parsedID, err := ParseReplicationCursorBookmarkName(fs + "#" + shortname)
return err == nil && parsedID == jobID
})
}
// idempotently hold / step-bookmark `version`
//
// returns ErrBookmarkCloningNotSupported if version is a bookmark and bookmarking bookmarks is not supported by ZFS
func HoldStep(ctx context.Context, fs string, v *zfs.ZFSSendArgVersion, jobID JobID) error {
if err := v.ValidateExists(ctx, fs); err != nil {
return err
}
if v.IsSnapshot() {
tag, err := StepHoldTag(jobID)
if err != nil {
return errors.Wrap(err, "step hold tag")
}
if err := zfs.ZFSHold(ctx, fs, *v, tag); err != nil {
return errors.Wrap(err, "step hold: zfs")
}
return nil
}
v.MustBeBookmark()
bmname, err := StepBookmarkName(fs, v.GUID, jobID)
if err != nil {
return errors.Wrap(err, "create step bookmark: determine bookmark name")
}
// idempotently create bookmark
err = zfs.ZFSBookmark(fs, *v, bmname)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
// TODO we could actually try to find a local snapshot that has the requested GUID
// however, the replication algorithm prefers snapshots anyways, so this quest
// is most likely not going to be successful. Also, there's the possibility that
// the caller might want to filter what snapshots are eligibile, and this would
// complicate things even further.
return err // TODO go1.13 use wrapping
}
return errors.Wrap(err, "create step bookmark: zfs")
}
return nil
}
// idempotently release the step-hold on v if v is a snapshot
// or idempotently destroy the step-bookmark of v if v is a bookmark
//
// note that this operation leaves v itself untouched, unless v is the step-bookmark itself, in which case v is destroyed
//
// returns an instance of *zfs.DatasetDoesNotExist if `v` does not exist
func ReleaseStep(ctx context.Context, fs string, v *zfs.ZFSSendArgVersion, jobID JobID) error {
if err := v.ValidateExists(ctx, fs); err != nil {
return err
}
if v.IsSnapshot() {
tag, err := StepHoldTag(jobID)
if err != nil {
return errors.Wrap(err, "step release tag")
}
if err := zfs.ZFSRelease(ctx, tag, v.FullPath(fs)); err != nil {
return errors.Wrap(err, "step release: zfs")
}
return nil
}
v.MustBeBookmark()
bmname, err := StepBookmarkName(fs, v.GUID, jobID)
if err != nil {
return errors.Wrap(err, "step release: determine bookmark name")
}
// idempotently destroy bookmark
if err := zfs.ZFSDestroyIdempotent(bmname); err != nil {
return errors.Wrap(err, "step release: bookmark destroy: zfs")
}
return nil
}
// release {step holds, step bookmarks} earlier and including `mostRecent`
func ReleaseStepAll(ctx context.Context, fs string, mostRecent *zfs.ZFSSendArgVersion, jobID JobID) error {
if err := mostRecent.ValidateInMemory(fs); err != nil {
return err
}
tag, err := StepHoldTag(jobID)
if err != nil {
return errors.Wrap(err, "step release all: tag")
}
err = zfs.ZFSReleaseAllOlderAndIncludingGUID(ctx, fs, mostRecent.GUID, tag)
if err != nil {
return errors.Wrapf(err, "step release all: release holds older and including %q", mostRecent.FullPath(fs))
}
_, err = destroyBookmarksOlderThan(ctx, fs, mostRecent, jobID, func(shortname string) bool {
_, parsedId, parseErr := ParseStepBookmarkName(fs + "#" + shortname)
return parseErr == nil && parsedId == jobID
})
if err != nil {
return errors.Wrapf(err, "step release all: destroy bookmarks older than %q", mostRecent.FullPath(fs))
}
return nil
}
var lastReceivedHoldTagRE = regexp.MustCompile("^zrepl_last_received_J_(.+)$")
// err != nil always means that the bookmark is not a step bookmark
func ParseLastReceivedHoldTag(tag string) (JobID, error) {
match := lastReceivedHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, errors.Errorf("parse last-received-hold tag: does not match regex %s", lastReceivedHoldTagRE.String())
}
jobId, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse last-received-hold tag: invalid job id field")
}
return jobId, nil
}
func LastReceivedHoldTag(jobID JobID) (string, error) {
return lastReceivedHoldImpl(jobID.String())
}
func lastReceivedHoldImpl(jobid string) (string, error) {
tag := fmt.Sprintf("zrepl_last_received_J_%s", jobid)
if err := zfs.ValidHoldTag(tag); err != nil {
return "", err
}
return tag, nil
}
func MoveLastReceivedHold(ctx context.Context, fs string, to zfs.ZFSSendArgVersion, jobID JobID) error {
if err := to.ValidateExists(ctx, fs); err != nil {
return err
}
if err := zfs.EntityNamecheck(to.FullPath(fs), zfs.EntityTypeSnapshot); err != nil {
return err
}
tag, err := LastReceivedHoldTag(jobID)
if err != nil {
return errors.Wrap(err, "last-received-hold: hold tag")
}
// we never want to be without a hold
// => hold new one before releasing old hold
err = zfs.ZFSHold(ctx, fs, to, tag)
if err != nil {
return errors.Wrap(err, "last-received-hold: hold newly received")
}
err = zfs.ZFSReleaseAllOlderThanGUID(ctx, fs, to.GUID, tag)
if err != nil {
return errors.Wrap(err, "last-received-hold: release older holds")
}
return nil
}
type ListHoldsAndBookmarksOutputBookmarkV1ReplicationCursor struct {
FS string
Name string
}
type ListHoldsAndBookmarksOutput struct {
StepBookmarks []*ListHoldsAndBookmarksOutputBookmark
StepHolds []*ListHoldsAndBookmarksOutputHold
ReplicationCursorBookmarks []*ListHoldsAndBookmarksOutputBookmark
V1ReplicationCursors []*ListHoldsAndBookmarksOutputBookmarkV1ReplicationCursor
LastReceivedHolds []*ListHoldsAndBookmarksOutputHold
}
type ListHoldsAndBookmarksOutputBookmark struct {
FS, Name string
Guid uint64
JobID JobID
v zfs.FilesystemVersion
}
type ListHoldsAndBookmarksOutputHold struct {
FS string
Snap string
SnapGuid uint64
SnapCreateTXG uint64
Tag string
JobID JobID
}
// List all holds and bookmarks managed by endpoint
func ListZFSHoldsAndBookmarks(ctx context.Context, fsfilter zfs.DatasetFilter) (*ListHoldsAndBookmarksOutput, error) {
// initialize all fields so that JSON serializion of output looks pretty (see client/holds.go)
// however, listZFSHoldsAndBookmarksImplFS shouldn't rely on it
out := &ListHoldsAndBookmarksOutput{
StepBookmarks: make([]*ListHoldsAndBookmarksOutputBookmark, 0),
StepHolds: make([]*ListHoldsAndBookmarksOutputHold, 0),
ReplicationCursorBookmarks: make([]*ListHoldsAndBookmarksOutputBookmark, 0),
V1ReplicationCursors: make([]*ListHoldsAndBookmarksOutputBookmarkV1ReplicationCursor, 0),
LastReceivedHolds: make([]*ListHoldsAndBookmarksOutputHold, 0),
}
fss, err := zfs.ZFSListMapping(ctx, fsfilter)
if err != nil {
return nil, errors.Wrap(err, "list filesystems")
}
for _, fs := range fss {
err := listZFSHoldsAndBookmarksImplFS(ctx, out, fs)
if err != nil {
return nil, errors.Wrapf(err, "list holds and bookmarks on %q", fs.ToString())
}
}
return out, nil
}
func listZFSHoldsAndBookmarksImplFS(ctx context.Context, out *ListHoldsAndBookmarksOutput, fs *zfs.DatasetPath) error {
fsvs, err := zfs.ZFSListFilesystemVersions(fs, nil)
if err != nil {
return errors.Wrapf(err, "list filesystem versions of %q", fs)
}
for _, v := range fsvs {
switch v.Type {
case zfs.Bookmark:
listZFSHoldsAndBookmarksImplTryParseBookmark(ctx, out, fs, v)
case zfs.Snapshot:
holds, err := zfs.ZFSHolds(ctx, fs.ToString(), v.Name)
if err != nil {
return errors.Wrapf(err, "get holds of %q", v.ToAbsPath(fs))
}
for _, tag := range holds {
listZFSHoldsAndBookmarksImplSnapshotTryParseHold(ctx, out, fs, v, tag)
}
default:
continue
}
}
return nil
}
// pure function, err != nil always indicates parsing error
func listZFSHoldsAndBookmarksImplTryParseBookmark(ctx context.Context, out *ListHoldsAndBookmarksOutput, fs *zfs.DatasetPath, v zfs.FilesystemVersion) {
var err error
if v.Type != zfs.Bookmark {
panic("impl error")
}
fullname := v.ToAbsPath(fs)
bm := &ListHoldsAndBookmarksOutputBookmark{
FS: fs.ToString(), Name: v.Name, v: v,
}
bm.Guid, bm.JobID, err = ParseStepBookmarkName(fullname)
if err == nil {
out.StepBookmarks = append(out.StepBookmarks, bm)
return
}
bm.Guid, bm.JobID, err = ParseReplicationCursorBookmarkName(fullname)
if err == nil {
out.ReplicationCursorBookmarks = append(out.ReplicationCursorBookmarks, bm)
return
} else if err == ErrV1ReplicationCursor {
v1rc := &ListHoldsAndBookmarksOutputBookmarkV1ReplicationCursor{
FS: fs.ToString(), Name: v.Name,
}
out.V1ReplicationCursors = append(out.V1ReplicationCursors, v1rc)
return
}
}
// pure function, err != nil always indicates parsing error
func listZFSHoldsAndBookmarksImplSnapshotTryParseHold(ctx context.Context, out *ListHoldsAndBookmarksOutput, fs *zfs.DatasetPath, v zfs.FilesystemVersion, holdTag string) {
var err error
if v.Type != zfs.Snapshot {
panic("impl error")
}
hold := &ListHoldsAndBookmarksOutputHold{
FS: fs.ToString(),
Snap: v.Name,
SnapGuid: v.Guid,
SnapCreateTXG: v.CreateTXG,
Tag: holdTag,
}
hold.JobID, err = ParseStepHoldTag(holdTag)
if err == nil {
out.StepHolds = append(out.StepHolds, hold)
return
}
hold.JobID, err = ParseLastReceivedHoldTag(holdTag)
if err == nil {
out.LastReceivedHolds = append(out.LastReceivedHolds, hold)
return
}
}
-838
View File
@@ -1,838 +0,0 @@
package endpoint
import (
"context"
"encoding/json"
"fmt"
"math"
"sort"
"strings"
"sync"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/util/envconst"
"github.com/zrepl/zrepl/util/semaphore"
"github.com/zrepl/zrepl/zfs"
)
type AbstractionType string
// Implementation note:
// There are a lot of exhaustive switches on AbstractionType in the code base.
// When adding a new abstraction type, make sure to search and update them!
const (
AbstractionStepBookmark AbstractionType = "step-bookmark"
AbstractionStepHold AbstractionType = "step-hold"
AbstractionLastReceivedHold AbstractionType = "last-received-hold"
AbstractionReplicationCursorBookmarkV1 AbstractionType = "replication-cursor-bookmark-v1"
AbstractionReplicationCursorBookmarkV2 AbstractionType = "replication-cursor-bookmark-v2"
)
var AbstractionTypesAll = map[AbstractionType]bool{
AbstractionStepBookmark: true,
AbstractionStepHold: true,
AbstractionLastReceivedHold: true,
AbstractionReplicationCursorBookmarkV1: true,
AbstractionReplicationCursorBookmarkV2: true,
}
// Implementation Note:
// Whenever you add a new accessor, adjust AbstractionJSON.MarshalJSON accordingly
type Abstraction interface {
GetType() AbstractionType
GetFS() string
GetName() string
GetFullPath() string
GetJobID() *JobID // may return nil if the abstraction does not have a JobID
GetCreateTXG() uint64
GetFilesystemVersion() zfs.FilesystemVersion
String() string
// destroy the abstraction: either releases the hold or destroys the bookmark
Destroy(context.Context) error
json.Marshaler
}
func (t AbstractionType) Validate() error {
switch t {
case AbstractionStepBookmark:
return nil
case AbstractionStepHold:
return nil
case AbstractionLastReceivedHold:
return nil
case AbstractionReplicationCursorBookmarkV1:
return nil
case AbstractionReplicationCursorBookmarkV2:
return nil
default:
return errors.Errorf("unknown abstraction type %q", t)
}
}
func (t AbstractionType) MustValidate() error {
if err := t.Validate(); err != nil {
panic(err)
}
return nil
}
type AbstractionJSON struct{ Abstraction }
var _ json.Marshaler = (*AbstractionJSON)(nil)
func (a AbstractionJSON) MarshalJSON() ([]byte, error) {
type S struct {
Type AbstractionType
FS string
Name string
FullPath string
JobID *JobID // may return nil if the abstraction does not have a JobID
CreateTXG uint64
FilesystemVersion zfs.FilesystemVersion
String string
}
v := S{
Type: a.Abstraction.GetType(),
FS: a.Abstraction.GetFS(),
Name: a.Abstraction.GetName(),
FullPath: a.Abstraction.GetFullPath(),
JobID: a.Abstraction.GetJobID(),
CreateTXG: a.Abstraction.GetCreateTXG(),
FilesystemVersion: a.Abstraction.GetFilesystemVersion(),
String: a.Abstraction.String(),
}
return json.Marshal(v)
}
type AbstractionTypeSet map[AbstractionType]bool
func AbstractionTypeSetFromStrings(sts []string) (AbstractionTypeSet, error) {
ats := make(map[AbstractionType]bool, len(sts))
for i, t := range sts {
at := AbstractionType(t)
if err := at.Validate(); err != nil {
return nil, errors.Wrapf(err, "invalid abstraction type #%d %q", i+1, t)
}
ats[at] = true
}
return ats, nil
}
func (s AbstractionTypeSet) ContainsAll(q AbstractionTypeSet) bool {
for k := range q {
if _, ok := s[k]; !ok {
return false
}
}
return true
}
func (s AbstractionTypeSet) ContainsAnyOf(q AbstractionTypeSet) bool {
for k := range q {
if _, ok := s[k]; ok {
return true
}
}
return false
}
func (s AbstractionTypeSet) String() string {
sts := make([]string, 0, len(s))
for i := range s {
sts = append(sts, string(i))
}
sts = sort.StringSlice(sts)
return strings.Join(sts, ",")
}
func (s AbstractionTypeSet) Validate() error {
for k := range s {
if err := k.Validate(); err != nil {
return err
}
}
return nil
}
type BookmarkExtractor func(fs *zfs.DatasetPath, v zfs.FilesystemVersion) Abstraction
// returns nil if the abstraction type is not bookmark-based
func (t AbstractionType) BookmarkExtractor() BookmarkExtractor {
switch t {
case AbstractionStepBookmark:
return StepBookmarkExtractor
case AbstractionReplicationCursorBookmarkV1:
return ReplicationCursorV1Extractor
case AbstractionReplicationCursorBookmarkV2:
return ReplicationCursorV2Extractor
case AbstractionStepHold:
return nil
case AbstractionLastReceivedHold:
return nil
default:
panic(fmt.Sprintf("unimpl: %q", t))
}
}
type HoldExtractor = func(fs *zfs.DatasetPath, v zfs.FilesystemVersion, tag string) Abstraction
// returns nil if the abstraction type is not hold-based
func (t AbstractionType) HoldExtractor() HoldExtractor {
switch t {
case AbstractionStepBookmark:
return nil
case AbstractionReplicationCursorBookmarkV1:
return nil
case AbstractionReplicationCursorBookmarkV2:
return nil
case AbstractionStepHold:
return StepHoldExtractor
case AbstractionLastReceivedHold:
return LastReceivedHoldExtractor
default:
panic(fmt.Sprintf("unimpl: %q", t))
}
}
type ListZFSHoldsAndBookmarksQuery struct {
FS ListZFSHoldsAndBookmarksQueryFilesystemFilter
// What abstraction types should match (any contained in the set)
What AbstractionTypeSet
// The output for the query must satisfy _all_ (AND) requirements of all fields in this query struct.
// if not nil: JobID of the hold or bookmark in question must be equal
// else: JobID of the hold or bookmark can be any value
JobID *JobID
// zero-value means any CreateTXG is acceptable
CreateTXG CreateTXGRange
// Number of concurrently queried filesystems. Must be >= 1
Concurrency int64
}
type CreateTXGRangeBound struct {
CreateTXG uint64
Inclusive *zfs.NilBool // must not be nil
}
// A non-empty range of CreateTXGs
//
// If both Since and Until are nil, any CreateTXG is acceptable
type CreateTXGRange struct {
// if not nil: The hold's snapshot or the bookmark's createtxg must be greater than (or equal) Since
// else: CreateTXG of the hold or bookmark can be any value accepted by Until
Since *CreateTXGRangeBound
// if not nil: The hold's snapshot or the bookmark's createtxg must be less than (or equal) Until
// else: CreateTXG of the hold or bookmark can be any value accepted by Since
Until *CreateTXGRangeBound
}
// FS == nil XOR Filter == nil
type ListZFSHoldsAndBookmarksQueryFilesystemFilter struct {
FS *string
Filter zfs.DatasetFilter
}
func (q *ListZFSHoldsAndBookmarksQuery) Validate() error {
if err := q.FS.Validate(); err != nil {
return errors.Wrap(err, "FS")
}
if q.JobID != nil {
q.JobID.MustValidate() // FIXME
}
if err := q.CreateTXG.Validate(); err != nil {
return errors.Wrap(err, "CreateTXGRange")
}
if err := q.What.Validate(); err != nil {
return err
}
if q.Concurrency < 1 {
return errors.New("Concurrency must be >= 1")
}
return nil
}
var createTXGRangeBoundAllowCreateTXG0 = envconst.Bool("ZREPL_ENDPOINT_LIST_ABSTRACTIONS_QUERY_CREATETXG_RANGE_BOUND_ALLOW_0", false)
func (i *CreateTXGRangeBound) Validate() error {
if err := i.Inclusive.Validate(); err != nil {
return errors.Wrap(err, "Inclusive")
}
if i.CreateTXG == 0 && !createTXGRangeBoundAllowCreateTXG0 {
return errors.New("CreateTXG must be non-zero")
}
return nil
}
func (f *ListZFSHoldsAndBookmarksQueryFilesystemFilter) Validate() error {
if f == nil {
return nil
}
fsSet := f.FS != nil
filterSet := f.Filter != nil
if fsSet && filterSet || !fsSet && !filterSet {
return fmt.Errorf("must set FS or Filter field, but fsIsSet=%v and filterIsSet=%v", fsSet, filterSet)
}
if fsSet {
if err := zfs.EntityNamecheck(*f.FS, zfs.EntityTypeFilesystem); err != nil {
return errors.Wrap(err, "FS invalid")
}
}
return nil
}
func (f *ListZFSHoldsAndBookmarksQueryFilesystemFilter) Filesystems(ctx context.Context) ([]string, error) {
if err := f.Validate(); err != nil {
panic(err)
}
if f.FS != nil {
return []string{*f.FS}, nil
}
if f.Filter != nil {
dps, err := zfs.ZFSListMapping(ctx, f.Filter)
if err != nil {
return nil, err
}
fss := make([]string, len(dps))
for i, dp := range dps {
fss[i] = dp.ToString()
}
return fss, nil
}
panic("unreachable")
}
func (r *CreateTXGRange) Validate() error {
if r.Since != nil {
if err := r.Since.Validate(); err != nil {
return errors.Wrap(err, "Since")
}
}
if r.Until != nil {
if err := r.Until.Validate(); err != nil {
return errors.Wrap(err, "Until")
}
}
if _, err := r.effectiveBounds(); err != nil {
return errors.Wrapf(err, "specified range %s is semantically invalid", r)
}
return nil
}
// inclusive-inclusive bounds
type effectiveBounds struct {
sinceInclusive uint64
sinceUnbounded bool
untilInclusive uint64
untilUnbounded bool
}
// callers must have validated r.Since and r.Until before calling this method
func (r *CreateTXGRange) effectiveBounds() (bounds effectiveBounds, err error) {
bounds.sinceUnbounded = r.Since == nil
bounds.untilUnbounded = r.Until == nil
if r.Since == nil && r.Until == nil {
return bounds, nil
}
if r.Since != nil {
bounds.sinceInclusive = r.Since.CreateTXG
if !r.Since.Inclusive.B {
if r.Since.CreateTXG == math.MaxUint64 {
return bounds, errors.Errorf("Since-exclusive (%v) must be less than math.MaxUint64 (%v)",
r.Since.CreateTXG, uint64(math.MaxUint64))
}
bounds.sinceInclusive++
}
}
if r.Until != nil {
bounds.untilInclusive = r.Until.CreateTXG
if !r.Until.Inclusive.B {
if r.Until.CreateTXG == 0 {
return bounds, errors.Errorf("Until-exclusive (%v) must be greater than 0", r.Until.CreateTXG)
}
bounds.untilInclusive--
}
}
if !bounds.sinceUnbounded && !bounds.untilUnbounded {
if bounds.sinceInclusive >= bounds.untilInclusive {
return bounds, errors.Errorf("effective range bounds are [%v,%v] which is empty or invalid", bounds.sinceInclusive, bounds.untilInclusive)
}
// fallthrough
}
return bounds, nil
}
func (r *CreateTXGRange) String() string {
var buf strings.Builder
if r.Since == nil {
fmt.Fprintf(&buf, "~")
} else {
if err := r.Since.Inclusive.Validate(); err != nil {
fmt.Fprintf(&buf, "?")
} else if r.Since.Inclusive.B {
fmt.Fprintf(&buf, "[")
} else {
fmt.Fprintf(&buf, "(")
}
fmt.Fprintf(&buf, "%d", r.Since.CreateTXG)
}
fmt.Fprintf(&buf, ",")
if r.Until == nil {
fmt.Fprintf(&buf, "~")
} else {
fmt.Fprintf(&buf, "%d", r.Until.CreateTXG)
if err := r.Until.Inclusive.Validate(); err != nil {
fmt.Fprintf(&buf, "?")
} else if r.Until.Inclusive.B {
fmt.Fprintf(&buf, "]")
} else {
fmt.Fprintf(&buf, ")")
}
}
return buf.String()
}
// panics if not .Validate()
func (r *CreateTXGRange) IsUnbounded() bool {
if err := r.Validate(); err != nil {
panic(err)
}
bounds, err := r.effectiveBounds()
if err != nil {
panic(err)
}
return bounds.sinceUnbounded && bounds.untilUnbounded
}
// panics if not .Validate()
func (r *CreateTXGRange) Contains(qCreateTxg uint64) bool {
if err := r.Validate(); err != nil {
panic(err)
}
bounds, err := r.effectiveBounds()
if err != nil {
panic(err)
}
sinceMatches := bounds.sinceUnbounded || bounds.sinceInclusive <= qCreateTxg
untilMatches := bounds.untilUnbounded || qCreateTxg <= bounds.untilInclusive
return sinceMatches && untilMatches
}
type ListAbstractionsError struct {
FS string
Snap string
What string
Err error
}
func (e ListAbstractionsError) Error() string {
if e.FS == "" {
return fmt.Sprintf("list endpoint abstractions: %s: %s", e.What, e.Err)
} else {
v := e.FS
if e.Snap != "" {
v = fmt.Sprintf("%s@%s", e.FS, e.Snap)
}
return fmt.Sprintf("list endpoint abstractions on %q: %s: %s", v, e.What, e.Err)
}
}
type putListAbstractionErr func(err error, fs string, what string)
type putListAbstraction func(a Abstraction)
type ListAbstractionsErrors []ListAbstractionsError
func (e ListAbstractionsErrors) Error() string {
if len(e) == 0 {
panic(e)
}
if len(e) == 1 {
return fmt.Sprintf("list endpoint abstractions: %s", e[0])
}
msgs := make([]string, len(e))
for i := range e {
msgs[i] = e[i].Error()
}
return fmt.Sprintf("list endpoint abstractions: multiple errors:\n%s", strings.Join(msgs, "\n"))
}
func ListAbstractions(ctx context.Context, query ListZFSHoldsAndBookmarksQuery) (out []Abstraction, outErrs []ListAbstractionsError, err error) {
outChan, outErrsChan, err := ListAbstractionsStreamed(ctx, query)
if err != nil {
return nil, nil, err
}
var wg sync.WaitGroup
wg.Add(1)
go func() {
defer wg.Done()
for a := range outChan {
out = append(out, a)
}
}()
wg.Add(1)
go func() {
defer wg.Done()
for err := range outErrsChan {
outErrs = append(outErrs, err)
}
}()
wg.Wait()
return out, outErrs, nil
}
// if err != nil, the returned channels are both nil
// if err == nil, both channels must be fully drained by the caller to avoid leaking goroutines
func ListAbstractionsStreamed(ctx context.Context, query ListZFSHoldsAndBookmarksQuery) (<-chan Abstraction, <-chan ListAbstractionsError, error) {
// impl note: structure the query processing in such a way that
// a minimum amount of zfs shell-outs needs to be done
if err := query.Validate(); err != nil {
return nil, nil, errors.Wrap(err, "validate query")
}
fss, err := query.FS.Filesystems(ctx)
if err != nil {
return nil, nil, errors.Wrap(err, "list filesystems")
}
outErrs := make(chan ListAbstractionsError)
out := make(chan Abstraction)
errCb := func(err error, fs string, what string) {
outErrs <- ListAbstractionsError{Err: err, FS: fs, What: what}
}
emitAbstraction := func(a Abstraction) {
jobIdMatches := query.JobID == nil || a.GetJobID() == nil || *a.GetJobID() == *query.JobID
createTXGMatches := query.CreateTXG.Contains(a.GetCreateTXG())
if jobIdMatches && createTXGMatches {
out <- a
}
}
sem := semaphore.New(int64(query.Concurrency))
go func() {
defer close(out)
defer close(outErrs)
var wg sync.WaitGroup
defer wg.Wait()
for i := range fss {
wg.Add(1)
go func(i int) {
defer wg.Done()
g, err := sem.Acquire(ctx)
if err != nil {
errCb(err, fss[i], err.Error())
return
}
func() {
defer g.Release()
listAbstractionsImplFS(ctx, fss[i], &query, emitAbstraction, errCb)
}()
}(i)
}
}()
return out, outErrs, nil
}
func listAbstractionsImplFS(ctx context.Context, fs string, query *ListZFSHoldsAndBookmarksQuery, emitCandidate putListAbstraction, errCb putListAbstractionErr) {
fsp, err := zfs.NewDatasetPath(fs)
if err != nil {
panic(err)
}
if len(query.What) == 0 {
return
}
whatTypes := zfs.VersionTypeSet{}
for what := range query.What {
if e := what.BookmarkExtractor(); e != nil {
whatTypes[zfs.Bookmark] = true
}
if e := what.HoldExtractor(); e != nil {
whatTypes[zfs.Snapshot] = true
}
}
fsvs, err := zfs.ZFSListFilesystemVersions(ctx, fsp, zfs.ListFilesystemVersionsOptions{
Types: whatTypes,
})
if err != nil {
errCb(err, fs, "list filesystem versions")
return
}
for at := range query.What {
bmE := at.BookmarkExtractor()
holdE := at.HoldExtractor()
if bmE == nil && holdE == nil || bmE != nil && holdE != nil {
panic("implementation error: extractors misconfigured for " + at)
}
for _, v := range fsvs {
var a Abstraction
if v.Type == zfs.Bookmark && bmE != nil {
a = bmE(fsp, v)
}
if v.Type == zfs.Snapshot && holdE != nil && query.CreateTXG.Contains(v.GetCreateTXG()) && (!v.UserRefs.Valid || v.UserRefs.Value > 0) {
holds, err := zfs.ZFSHolds(ctx, fsp.ToString(), v.Name)
if err != nil {
errCb(err, v.ToAbsPath(fsp), "get hold on snap")
continue
}
for _, tag := range holds {
a = holdE(fsp, v, tag)
}
}
if a != nil {
emitCandidate(a)
}
}
}
}
type BatchDestroyResult struct {
Abstraction
DestroyErr error
}
var _ json.Marshaler = (*BatchDestroyResult)(nil)
func (r BatchDestroyResult) MarshalJSON() ([]byte, error) {
err := ""
if r.DestroyErr != nil {
err = r.DestroyErr.Error()
}
s := struct {
Abstraction AbstractionJSON
DestroyErr string
}{
AbstractionJSON{r.Abstraction},
err,
}
return json.Marshal(s)
}
func BatchDestroy(ctx context.Context, abs []Abstraction) <-chan BatchDestroyResult {
// hold-based batching: per snapshot
// bookmark-based batching: none possible via CLI
// => not worth the trouble for now, will be worth it once we start using channel programs
// => TODO: actual batching using channel programs
res := make(chan BatchDestroyResult, len(abs))
go func() {
for _, a := range abs {
res <- BatchDestroyResult{
a,
a.Destroy(ctx),
}
}
close(res)
}()
return res
}
type StalenessInfo struct {
ConstructedWithQuery ListZFSHoldsAndBookmarksQuery
Live []Abstraction
Stale []Abstraction
}
type fsAndJobId struct {
fs string
jobId JobID
}
type ListStaleQueryError struct {
error
}
// returns *ListStaleQueryError if the given query cannot be used for determining staleness info
func ListStale(ctx context.Context, q ListZFSHoldsAndBookmarksQuery) (*StalenessInfo, error) {
if !q.CreateTXG.IsUnbounded() {
// we must determine the most recent step per FS, can't allow that
return nil, &ListStaleQueryError{errors.New("ListStale cannot have Until != nil set on query")}
}
// if asking for step holds, must also as for step bookmarks (same kind of abstraction)
// as well as replication cursor bookmarks (for firstNotStale)
ifAnyThenAll := AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionStepBookmark: true,
AbstractionReplicationCursorBookmarkV2: true,
}
if q.What.ContainsAnyOf(ifAnyThenAll) && !q.What.ContainsAll(ifAnyThenAll) {
return nil, &ListStaleQueryError{errors.Errorf("ListStale requires query to ask for all of %s", ifAnyThenAll.String())}
}
// ----------------- done validating query for listStaleFiltering -----------------------
qAbs, absErr, err := ListAbstractions(ctx, q)
if err != nil {
return nil, err
}
if len(absErr) > 0 {
// can't go on here because we can't determine the most recent step
return nil, ListAbstractionsErrors(absErr)
}
si := listStaleFiltering(qAbs, q.CreateTXG.Since)
si.ConstructedWithQuery = q
return si, nil
}
type fsAjobAtype struct {
fsAndJobId
Type AbstractionType
}
// For step holds and bookmarks, only those older than the most recent replication cursor
// of their (filesystem,job) is considered because younger ones cannot be stale by definition
// (if we destroy them, we might actually lose the hold on the `To` for an ongoing incremental replication)
//
// For replication cursors and last-received-holds, only the most recent one is kept.
//
// the returned StalenessInfo.ConstructedWithQuery is not set
func listStaleFiltering(abs []Abstraction, sinceBound *CreateTXGRangeBound) *StalenessInfo {
var noJobId []Abstraction
by := make(map[fsAjobAtype][]Abstraction)
for _, a := range abs {
if a.GetJobID() == nil {
noJobId = append(noJobId, a)
continue
}
faj := fsAjobAtype{fsAndJobId{a.GetFS(), *a.GetJobID()}, a.GetType()}
l := by[faj]
l = append(l, a)
by[faj] = l
}
type stepFirstNotStaleCandidate struct {
cursor *Abstraction
step *Abstraction
}
stepFirstNotStaleCandidates := make(map[fsAndJobId]stepFirstNotStaleCandidate) // empty map => will always return nil
for _, a := range abs {
if a.GetJobID() == nil {
continue // already put those into always-live list noJobId in above loop
}
key := fsAndJobId{a.GetFS(), *a.GetJobID()}
c := stepFirstNotStaleCandidates[key]
switch a.GetType() {
// stepFirstNotStaleCandidate.cursor
case AbstractionReplicationCursorBookmarkV2:
if c.cursor == nil || (*c.cursor).GetCreateTXG() < a.GetCreateTXG() {
a := a
c.cursor = &a
}
// stepFirstNotStaleCandidate.step
case AbstractionStepBookmark:
fallthrough
case AbstractionStepHold:
if c.step == nil || (*c.step).GetCreateTXG() < a.GetCreateTXG() {
a := a
c.step = &a
}
// not interested in the others
default:
continue // not relevant
}
stepFirstNotStaleCandidates[key] = c
}
ret := &StalenessInfo{
Live: noJobId,
Stale: []Abstraction{},
}
for k := range by {
l := by[k]
if k.Type == AbstractionStepHold || k.Type == AbstractionStepBookmark {
// all older than the most recent cursor are stale, others are always live
// if we don't have a replication cursor yet, use untilBound = nil
// to consider all steps stale (...at first)
var untilBound *CreateTXGRangeBound
{
sfnsc := stepFirstNotStaleCandidates[k.fsAndJobId]
// if there's a replication cursor, use it as a cutoff between live and stale
// if there's none, we are in initial replication and only need to keep
// the most recent step hold live, since that's what our initial replication strategy
// uses (both initially and on resume)
// (FIXME hardcoded replication strategy)
if sfnsc.cursor != nil {
untilBound = &CreateTXGRangeBound{
CreateTXG: (*sfnsc.cursor).GetCreateTXG(),
// if we have a cursor, can throw away step hold on both From and To
Inclusive: &zfs.NilBool{B: true},
}
} else if sfnsc.step != nil {
untilBound = &CreateTXGRangeBound{
CreateTXG: (*sfnsc.step).GetCreateTXG(),
// if we don't have a cursor, the step most recent step hold is our
// initial replication cursor and it's possibly still live (interrupted initial replication)
Inclusive: &zfs.NilBool{B: false},
}
} else {
untilBound = nil // consider everything stale
}
}
staleRange := CreateTXGRange{
Since: sinceBound,
Until: untilBound,
}
// partition by staleRange
for _, a := range l {
if staleRange.Contains(a.GetCreateTXG()) {
ret.Stale = append(ret.Stale, a)
} else {
ret.Live = append(ret.Live, a)
}
}
} else if k.Type == AbstractionReplicationCursorBookmarkV2 || k.Type == AbstractionLastReceivedHold {
// all but the most recent are stale by definition (we always _move_ them)
// NOTE: must not use firstNotStale in this branch, not computed for these types
// sort descending (highest createtxg first), then cut off
sort.Slice(l, func(i, j int) bool {
return l[i].GetCreateTXG() > l[j].GetCreateTXG()
})
if len(l) > 0 {
ret.Live = append(ret.Live, l[0])
ret.Stale = append(ret.Stale, l[1:]...)
}
} else {
ret.Live = append(ret.Live, l...)
}
}
return ret
}
@@ -1,386 +0,0 @@
package endpoint
import (
"context"
"encoding/json"
"fmt"
"regexp"
"sort"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/util/errorarray"
"github.com/zrepl/zrepl/zfs"
)
const replicationCursorBookmarkNamePrefix = "zrepl_CURSOR"
func ReplicationCursorBookmarkName(fs string, guid uint64, id JobID) (string, error) {
return replicationCursorBookmarkNameImpl(fs, guid, id.String())
}
func replicationCursorBookmarkNameImpl(fs string, guid uint64, jobid string) (string, error) {
return makeJobAndGuidBookmarkName(replicationCursorBookmarkNamePrefix, fs, guid, jobid)
}
var ErrV1ReplicationCursor = fmt.Errorf("bookmark name is a v1-replication cursor")
//err != nil always means that the bookmark is not a valid replication bookmark
//
// Returns ErrV1ReplicationCursor as error if the bookmark is a v1 replication cursor
func ParseReplicationCursorBookmarkName(fullname string) (uint64, JobID, error) {
// check for legacy cursors
{
if err := zfs.EntityNamecheck(fullname, zfs.EntityTypeBookmark); err != nil {
return 0, JobID{}, errors.Wrap(err, "parse replication cursor bookmark name")
}
_, _, name, err := zfs.DecomposeVersionString(fullname)
if err != nil {
return 0, JobID{}, errors.Wrap(err, "parse replication cursor bookmark name: decompose version string")
}
const V1ReplicationCursorBookmarkName = "zrepl_replication_cursor"
if name == V1ReplicationCursorBookmarkName {
return 0, JobID{}, ErrV1ReplicationCursor
}
// fallthrough to main parser
}
guid, jobID, err := parseJobAndGuidBookmarkName(fullname, replicationCursorBookmarkNamePrefix)
if err != nil {
err = errors.Wrap(err, "parse replication cursor bookmark name") // no shadow
}
return guid, jobID, err
}
// may return nil for both values, indicating there is no cursor
func GetMostRecentReplicationCursorOfJob(ctx context.Context, fs string, jobID JobID) (*zfs.FilesystemVersion, error) {
fsp, err := zfs.NewDatasetPath(fs)
if err != nil {
return nil, err
}
candidates, err := GetReplicationCursors(ctx, fsp, jobID)
if err != nil || len(candidates) == 0 {
return nil, err
}
sort.Slice(candidates, func(i, j int) bool {
return candidates[i].CreateTXG < candidates[j].CreateTXG
})
mostRecent := candidates[len(candidates)-1]
return &mostRecent, nil
}
func GetReplicationCursors(ctx context.Context, dp *zfs.DatasetPath, jobID JobID) ([]zfs.FilesystemVersion, error) {
fs := dp.ToString()
q := ListZFSHoldsAndBookmarksQuery{
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{FS: &fs},
What: map[AbstractionType]bool{
AbstractionReplicationCursorBookmarkV1: true,
AbstractionReplicationCursorBookmarkV2: true,
},
JobID: &jobID,
CreateTXG: CreateTXGRange{},
Concurrency: 1,
}
abs, absErr, err := ListAbstractions(ctx, q)
if err != nil {
return nil, errors.Wrap(err, "get replication cursor: list bookmarks and holds")
}
if len(absErr) > 0 {
return nil, ListAbstractionsErrors(absErr)
}
var v1, v2 []Abstraction
for _, a := range abs {
switch a.GetType() {
case AbstractionReplicationCursorBookmarkV1:
v1 = append(v1, a)
case AbstractionReplicationCursorBookmarkV2:
v2 = append(v2, a)
default:
panic("unexpected abstraction: " + a.GetType())
}
}
if len(v1) > 0 {
getLogger(ctx).WithField("bookmark", v1).
Warn("found v1-replication cursor bookmarks, consider running migration 'replication-cursor:v1-v2' after successful replication with this zrepl version")
}
candidates := make([]zfs.FilesystemVersion, 0)
for _, v := range v2 {
candidates = append(candidates, v.GetFilesystemVersion())
}
return candidates, nil
}
type ReplicationCursorTarget interface {
IsSnapshot() bool
GetGuid() uint64
GetCreateTXG() uint64
ToSendArgVersion() zfs.ZFSSendArgVersion
}
// `target` is validated before replication cursor is set. if validation fails, the cursor is not moved.
//
// returns ErrBookmarkCloningNotSupported if version is a bookmark and bookmarking bookmarks is not supported by ZFS
func MoveReplicationCursor(ctx context.Context, fs string, target ReplicationCursorTarget, jobID JobID) (destroyedCursors []Abstraction, err error) {
if !target.IsSnapshot() {
return nil, zfs.ErrBookmarkCloningNotSupported
}
bookmarkname, err := ReplicationCursorBookmarkName(fs, target.GetGuid(), jobID)
if err != nil {
return nil, errors.Wrap(err, "determine replication cursor name")
}
// idempotently create bookmark (guid is encoded in it, hence we'll most likely add a new one
// cleanup the old one afterwards
err = zfs.ZFSBookmark(ctx, fs, target.ToSendArgVersion(), bookmarkname)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
return nil, err // TODO go1.13 use wrapping
}
return nil, errors.Wrapf(err, "cannot create bookmark")
}
destroyedCursors, err = DestroyObsoleteReplicationCursors(ctx, fs, target, jobID)
if err != nil {
return nil, errors.Wrap(err, "destroy obsolete replication cursors")
}
return destroyedCursors, nil
}
type ReplicationCursor interface {
GetCreateTXG() uint64
}
func DestroyObsoleteReplicationCursors(ctx context.Context, fs string, current ReplicationCursor, jobID JobID) (_ []Abstraction, err error) {
q := ListZFSHoldsAndBookmarksQuery{
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
What: AbstractionTypeSet{
AbstractionReplicationCursorBookmarkV2: true,
},
JobID: &jobID,
CreateTXG: CreateTXGRange{
Since: nil,
Until: &CreateTXGRangeBound{
CreateTXG: current.GetCreateTXG(),
Inclusive: &zfs.NilBool{B: false},
},
},
Concurrency: 1,
}
abs, absErr, err := ListAbstractions(ctx, q)
if err != nil {
return nil, errors.Wrap(err, "list abstractions")
}
if len(absErr) > 0 {
return nil, errors.Wrap(ListAbstractionsErrors(absErr), "list abstractions")
}
var destroyed []Abstraction
var errs []error
for res := range BatchDestroy(ctx, abs) {
log := getLogger(ctx).
WithField("replication_cursor_bookmark", res.Abstraction)
if res.DestroyErr != nil {
errs = append(errs, res.DestroyErr)
log.WithError(err).
Error("cannot destroy obsolete replication cursor bookmark")
} else {
destroyed = append(destroyed, res.Abstraction)
log.Info("destroyed obsolete replication cursor bookmark")
}
}
if len(errs) == 0 {
return destroyed, nil
} else {
return destroyed, errorarray.Wrap(errs, "destroy obsolete replication cursor")
}
}
var lastReceivedHoldTagRE = regexp.MustCompile("^zrepl_last_received_J_(.+)$")
// err != nil always means that the bookmark is not a step bookmark
func ParseLastReceivedHoldTag(tag string) (JobID, error) {
match := lastReceivedHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, errors.Errorf("parse last-received-hold tag: does not match regex %s", lastReceivedHoldTagRE.String())
}
jobId, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse last-received-hold tag: invalid job id field")
}
return jobId, nil
}
func LastReceivedHoldTag(jobID JobID) (string, error) {
return lastReceivedHoldImpl(jobID.String())
}
func lastReceivedHoldImpl(jobid string) (string, error) {
tag := fmt.Sprintf("zrepl_last_received_J_%s", jobid)
if err := zfs.ValidHoldTag(tag); err != nil {
return "", err
}
return tag, nil
}
func MoveLastReceivedHold(ctx context.Context, fs string, to zfs.FilesystemVersion, jobID JobID) error {
if !to.IsSnapshot() {
return errors.Errorf("last-received-hold: target must be a snapshot: %s", to.FullPath(fs))
}
tag, err := LastReceivedHoldTag(jobID)
if err != nil {
return errors.Wrap(err, "last-received-hold: hold tag")
}
// we never want to be without a hold
// => hold new one before releasing old hold
err = zfs.ZFSHold(ctx, fs, to, tag)
if err != nil {
return errors.Wrap(err, "last-received-hold: hold newly received")
}
q := ListZFSHoldsAndBookmarksQuery{
What: AbstractionTypeSet{
AbstractionLastReceivedHold: true,
},
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
JobID: &jobID,
CreateTXG: CreateTXGRange{
Since: nil,
Until: &CreateTXGRangeBound{
CreateTXG: to.GetCreateTXG(),
Inclusive: &zfs.NilBool{B: false},
},
},
Concurrency: 1,
}
abs, absErrs, err := ListAbstractions(ctx, q)
if err != nil {
return errors.Wrap(err, "last-received-hold: list")
}
if len(absErrs) > 0 {
return errors.Wrap(ListAbstractionsErrors(absErrs), "last-received-hold: list")
}
getLogger(ctx).WithField("last-received-holds", fmt.Sprintf("%s", abs)).Debug("releasing last-received-holds")
var errs []error
for res := range BatchDestroy(ctx, abs) {
log := getLogger(ctx).
WithField("last-received-hold", res.Abstraction)
if res.DestroyErr != nil {
errs = append(errs, res.DestroyErr)
log.WithError(err).
Error("cannot release last-received-hold")
} else {
log.Info("released last-received-hold")
}
}
if len(errs) == 0 {
return nil
} else {
return errorarray.Wrap(errs, "last-received-hold: release")
}
}
func ReplicationCursorV2Extractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion) (_ Abstraction) {
if v.Type != zfs.Bookmark {
panic("impl error")
}
fullname := v.ToAbsPath(fs)
guid, jobid, err := ParseReplicationCursorBookmarkName(fullname)
if err == nil {
if guid != v.Guid {
// TODO log this possibly tinkered-with bookmark
return nil
}
return &bookmarkBasedAbstraction{
Type: AbstractionReplicationCursorBookmarkV2,
FS: fs.ToString(),
FilesystemVersion: v,
JobID: jobid,
}
}
return nil
}
func ReplicationCursorV1Extractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion) (_ Abstraction) {
if v.Type != zfs.Bookmark {
panic("impl error")
}
fullname := v.ToAbsPath(fs)
_, _, err := ParseReplicationCursorBookmarkName(fullname)
if err == ErrV1ReplicationCursor {
return &ReplicationCursorV1{
Type: AbstractionReplicationCursorBookmarkV1,
FS: fs.ToString(),
FilesystemVersion: v,
}
}
return nil
}
var _ HoldExtractor = LastReceivedHoldExtractor
func LastReceivedHoldExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion, holdTag string) Abstraction {
var err error
if v.Type != zfs.Snapshot {
panic("impl error")
}
jobID, err := ParseLastReceivedHoldTag(holdTag)
if err == nil {
return &holdBasedAbstraction{
Type: AbstractionLastReceivedHold,
FS: fs.ToString(),
FilesystemVersion: v,
Tag: holdTag,
JobID: jobID,
}
}
return nil
}
type ReplicationCursorV1 struct {
Type AbstractionType
FS string
zfs.FilesystemVersion
}
func (c ReplicationCursorV1) GetType() AbstractionType { return c.Type }
func (c ReplicationCursorV1) GetFS() string { return c.FS }
func (c ReplicationCursorV1) GetFullPath() string { return fmt.Sprintf("%s#%s", c.FS, c.GetName()) }
func (c ReplicationCursorV1) GetJobID() *JobID { return nil }
func (c ReplicationCursorV1) GetFilesystemVersion() zfs.FilesystemVersion { return c.FilesystemVersion }
func (c ReplicationCursorV1) MarshalJSON() ([]byte, error) {
return json.Marshal(AbstractionJSON{c})
}
func (c ReplicationCursorV1) String() string {
return fmt.Sprintf("%s %s", c.Type, c.GetFullPath())
}
func (c ReplicationCursorV1) Destroy(ctx context.Context) error {
if err := zfs.ZFSDestroyIdempotent(ctx, c.GetFullPath()); err != nil {
return errors.Wrapf(err, "destroy %s %s: zfs", c.Type, c.GetFullPath())
}
return nil
}
-286
View File
@@ -1,286 +0,0 @@
package endpoint
import (
"context"
"fmt"
"regexp"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/util/errorarray"
"github.com/zrepl/zrepl/zfs"
)
var stepHoldTagRE = regexp.MustCompile("^zrepl_STEP_J_(.+)")
func StepHoldTag(jobid JobID) (string, error) {
return stepHoldTagImpl(jobid.String())
}
func stepHoldTagImpl(jobid string) (string, error) {
t := fmt.Sprintf("zrepl_STEP_J_%s", jobid)
if err := zfs.ValidHoldTag(t); err != nil {
return "", err
}
return t, nil
}
// err != nil always means that the bookmark is not a step bookmark
func ParseStepHoldTag(tag string) (JobID, error) {
match := stepHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, fmt.Errorf("parse hold tag: match regex %q", stepHoldTagRE)
}
jobID, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse hold tag: invalid job id field")
}
return jobID, nil
}
const stepBookmarkNamePrefix = "zrepl_STEP"
// v must be validated by caller
func StepBookmarkName(fs string, guid uint64, id JobID) (string, error) {
return stepBookmarkNameImpl(fs, guid, id.String())
}
func stepBookmarkNameImpl(fs string, guid uint64, jobid string) (string, error) {
return makeJobAndGuidBookmarkName(stepBookmarkNamePrefix, fs, guid, jobid)
}
// name is the full bookmark name, including dataset path
//
// err != nil always means that the bookmark is not a step bookmark
func ParseStepBookmarkName(fullname string) (guid uint64, jobID JobID, err error) {
guid, jobID, err = parseJobAndGuidBookmarkName(fullname, stepBookmarkNamePrefix)
if err != nil {
err = errors.Wrap(err, "parse step bookmark name") // no shadow!
}
return guid, jobID, err
}
// idempotently hold / step-bookmark `version`
//
// returns ErrBookmarkCloningNotSupported if version is a bookmark and bookmarking bookmarks is not supported by ZFS
func HoldStep(ctx context.Context, fs string, v zfs.FilesystemVersion, jobID JobID) (Abstraction, error) {
if v.IsSnapshot() {
tag, err := StepHoldTag(jobID)
if err != nil {
return nil, errors.Wrap(err, "step hold tag")
}
if err := zfs.ZFSHold(ctx, fs, v, tag); err != nil {
return nil, errors.Wrap(err, "step hold: zfs")
}
return &holdBasedAbstraction{
Type: AbstractionStepHold,
FS: fs,
Tag: tag,
JobID: jobID,
FilesystemVersion: v,
}, nil
}
if !v.IsBookmark() {
panic(fmt.Sprintf("version must bei either snapshot or bookmark, got %#v", v))
}
bmname, err := StepBookmarkName(fs, v.Guid, jobID)
if err != nil {
return nil, errors.Wrap(err, "create step bookmark: determine bookmark name")
}
// idempotently create bookmark
err = zfs.ZFSBookmark(ctx, fs, v.ToSendArgVersion(), bmname)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
// TODO we could actually try to find a local snapshot that has the requested GUID
// however, the replication algorithm prefers snapshots anyways, so this quest
// is most likely not going to be successful. Also, there's the possibility that
// the caller might want to filter what snapshots are eligibile, and this would
// complicate things even further.
return nil, err // TODO go1.13 use wrapping
}
return nil, errors.Wrap(err, "create step bookmark: zfs")
}
return &bookmarkBasedAbstraction{
Type: AbstractionStepBookmark,
FS: fs,
FilesystemVersion: v,
JobID: jobID,
}, nil
}
// idempotently release the step-hold on v if v is a snapshot
// or idempotently destroy the step-bookmark of v if v is a bookmark
//
// note that this operation leaves v itself untouched, unless v is the step-bookmark itself, in which case v is destroyed
//
// returns an instance of *zfs.DatasetDoesNotExist if `v` does not exist
func ReleaseStep(ctx context.Context, fs string, v zfs.FilesystemVersion, jobID JobID) error {
if v.IsSnapshot() {
tag, err := StepHoldTag(jobID)
if err != nil {
return errors.Wrap(err, "step release tag")
}
if err := zfs.ZFSRelease(ctx, tag, v.FullPath(fs)); err != nil {
return errors.Wrap(err, "step release: zfs")
}
return nil
}
if !v.IsBookmark() {
panic(fmt.Sprintf("impl error: expecting version to be a bookmark, got %#v", v))
}
bmname, err := StepBookmarkName(fs, v.Guid, jobID)
if err != nil {
return errors.Wrap(err, "step release: determine bookmark name")
}
// idempotently destroy bookmark
if err := zfs.ZFSDestroyIdempotent(ctx, bmname); err != nil {
return errors.Wrap(err, "step release: bookmark destroy: zfs")
}
return nil
}
// release {step holds, step bookmarks} earlier and including `mostRecent`
func ReleaseStepCummulativeInclusive(ctx context.Context, fs string, since *CreateTXGRangeBound, mostRecent zfs.FilesystemVersion, jobID JobID) error {
q := ListZFSHoldsAndBookmarksQuery{
What: AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionStepBookmark: true,
},
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
JobID: &jobID,
CreateTXG: CreateTXGRange{
Since: since,
Until: &CreateTXGRangeBound{
CreateTXG: mostRecent.CreateTXG,
Inclusive: &zfs.NilBool{B: true},
},
},
Concurrency: 1,
}
abs, absErrs, err := ListAbstractions(ctx, q)
if err != nil {
return errors.Wrap(err, "step release cummulative: list")
}
if len(absErrs) > 0 {
return errors.Wrap(ListAbstractionsErrors(absErrs), "step release cummulative: list")
}
getLogger(ctx).WithField("step_holds_and_bookmarks", fmt.Sprintf("%s", abs)).Debug("releasing step holds and bookmarks")
var errs []error
for res := range BatchDestroy(ctx, abs) {
log := getLogger(ctx).
WithField("step_hold_or_bookmark", res.Abstraction)
if res.DestroyErr != nil {
errs = append(errs, res.DestroyErr)
log.WithError(err).
Error("cannot release step hold or bookmark")
} else {
log.Info("released step hold or bookmark")
}
}
if len(errs) == 0 {
return nil
} else {
return errorarray.Wrap(errs, "step release cummulative: release")
}
}
func TryReleaseStepStaleFS(ctx context.Context, fs string, jobID JobID) {
q := ListZFSHoldsAndBookmarksQuery{
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
JobID: &jobID,
What: AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionStepBookmark: true,
AbstractionReplicationCursorBookmarkV2: true,
},
Concurrency: 1,
}
staleness, err := ListStale(ctx, q)
if _, ok := err.(*ListStaleQueryError); ok {
panic(err)
} else if err != nil {
getLogger(ctx).WithError(err).Error("cannot list stale step holds and bookmarks")
return
}
for _, s := range staleness.Stale {
getLogger(ctx).WithField("stale_step_hold_or_bookmark", s).Info("batch-destroying stale step hold or bookmark")
}
for res := range BatchDestroy(ctx, staleness.Stale) {
if res.DestroyErr != nil {
getLogger(ctx).
WithField("stale_step_hold_or_bookmark", res.Abstraction).
WithError(res.DestroyErr).
Error("cannot destroy stale step-hold or bookmark")
} else {
getLogger(ctx).
WithField("stale_step_hold_or_bookmark", res.Abstraction).
WithError(res.DestroyErr).
Info("destroyed stale step-hold or bookmark")
}
}
}
var _ BookmarkExtractor = StepBookmarkExtractor
func StepBookmarkExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion) (_ Abstraction) {
if v.Type != zfs.Bookmark {
panic("impl error")
}
fullname := v.ToAbsPath(fs)
guid, jobid, err := ParseStepBookmarkName(fullname)
if guid != v.Guid {
// TODO log this possibly tinkered-with bookmark
return nil
}
if err == nil {
bm := &bookmarkBasedAbstraction{
Type: AbstractionStepBookmark,
FS: fs.ToString(),
FilesystemVersion: v,
JobID: jobid,
}
return bm
}
return nil
}
var _ HoldExtractor = StepHoldExtractor
func StepHoldExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion, holdTag string) Abstraction {
if v.Type != zfs.Snapshot {
panic("impl error")
}
jobID, err := ParseStepHoldTag(holdTag)
if err == nil {
return &holdBasedAbstraction{
Type: AbstractionStepHold,
FS: fs.ToString(),
Tag: holdTag,
FilesystemVersion: v,
JobID: jobID,
}
}
return nil
}
-234
View File
@@ -1,234 +0,0 @@
package endpoint
import (
"fmt"
"math"
"runtime/debug"
"testing"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/zfs"
)
func TestCreateTXGRange(t *testing.T) {
type testCaseExpectation struct {
input uint64
expect bool
}
type testCase struct {
name string
config *CreateTXGRange
configAllowZeroCreateTXG bool
expectInvalid bool
expectString string
expect []testCaseExpectation
}
tcs := []testCase{
{
name: "unbounded",
expectInvalid: false,
config: &CreateTXGRange{
Since: nil,
Until: nil,
},
expectString: "~,~",
expect: []testCaseExpectation{
{0, true},
{math.MaxUint64, true},
{1, true},
{math.MaxUint64 - 1, true},
},
},
{
name: "wrong order obvious",
expectInvalid: true,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{23, &zfs.NilBool{B: true}},
Until: &CreateTXGRangeBound{20, &zfs.NilBool{B: true}},
},
expectString: "[23,20]",
},
{
name: "wrong order edge-case could also be empty",
expectInvalid: true,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{23, &zfs.NilBool{B: false}},
Until: &CreateTXGRangeBound{22, &zfs.NilBool{B: true}},
},
expectString: "(23,22]",
},
{
name: "empty",
expectInvalid: true,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{2, &zfs.NilBool{B: false}},
Until: &CreateTXGRangeBound{2, &zfs.NilBool{B: false}},
},
expectString: "(2,2)",
},
{
name: "inclusive-since-exclusive-until",
expectInvalid: false,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{2, &zfs.NilBool{B: true}},
Until: &CreateTXGRangeBound{5, &zfs.NilBool{B: false}},
},
expectString: "[2,5)",
expect: []testCaseExpectation{
{0, false},
{1, false},
{2, true},
{3, true},
{4, true},
{5, false},
{6, false},
},
},
{
name: "exclusive-since-inclusive-until",
expectInvalid: false,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{2, &zfs.NilBool{B: false}},
Until: &CreateTXGRangeBound{5, &zfs.NilBool{B: true}},
},
expectString: "(2,5]",
expect: []testCaseExpectation{
{0, false},
{1, false},
{2, false},
{3, true},
{4, true},
{5, true},
{6, false},
},
},
{
name: "zero-createtxg-not-allowed-because-likely-programmer-error",
expectInvalid: true,
config: &CreateTXGRange{
Since: nil,
Until: &CreateTXGRangeBound{0, &zfs.NilBool{B: true}},
},
expectString: "~,0]",
},
{
name: "half-open-no-until",
expectInvalid: false,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{2, &zfs.NilBool{B: false}},
Until: nil,
},
expectString: "(2,~",
expect: []testCaseExpectation{
{0, false},
{1, false},
{2, false},
{3, true},
{4, true},
{5, true},
{6, true},
},
},
{
name: "half-open-no-since",
expectInvalid: false,
config: &CreateTXGRange{
Since: nil,
Until: &CreateTXGRangeBound{4, &zfs.NilBool{B: true}},
},
expectString: "~,4]",
expect: []testCaseExpectation{
{0, true},
{1, true},
{2, true},
{3, true},
{4, true},
{5, false},
},
},
{
name: "edgeSince",
expectInvalid: false,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{math.MaxUint64, &zfs.NilBool{B: true}},
Until: nil,
},
expectString: "[18446744073709551615,~",
expect: []testCaseExpectation{
{math.MaxUint64, true},
{math.MaxUint64 - 1, false},
{0, false},
{1, false},
},
},
{
name: "edgeSinceNegative",
expectInvalid: true,
config: &CreateTXGRange{
Since: &CreateTXGRangeBound{math.MaxUint64, &zfs.NilBool{B: false}},
Until: nil,
},
expectString: "(18446744073709551615,~",
},
{
name: "edgeUntil",
expectInvalid: false,
config: &CreateTXGRange{
Until: &CreateTXGRangeBound{0, &zfs.NilBool{B: true}},
},
configAllowZeroCreateTXG: true,
expectString: "~,0]",
expect: []testCaseExpectation{
{0, true},
{math.MaxUint64, false},
{1, false},
},
},
{
name: "edgeUntilNegative",
expectInvalid: true,
configAllowZeroCreateTXG: true,
config: &CreateTXGRange{
Until: &CreateTXGRangeBound{0, &zfs.NilBool{B: false}},
},
expectString: "~,0)",
},
}
for _, tc := range tcs {
t.Run(tc.name, func(t *testing.T) {
require.True(t, tc.expectInvalid != (len(tc.expect) > 0), "invalid test config: must either expect invalid or have expectations: %s", tc.name)
require.NotEmpty(t, tc.expectString)
assert.Equal(t, tc.expectString, tc.config.String())
save := createTXGRangeBoundAllowCreateTXG0
createTXGRangeBoundAllowCreateTXG0 = tc.configAllowZeroCreateTXG
defer func() {
createTXGRangeBoundAllowCreateTXG0 = save
}()
if tc.expectInvalid {
t.Run(tc.name, func(t *testing.T) {
assert.Error(t, tc.config.Validate())
})
} else {
for i, e := range tc.expect {
t.Run(fmt.Sprint(i), func(t *testing.T) {
defer func() {
v := recover()
if v != nil {
t.Fatalf("should not panic: %T %v\n%s", v, v, debug.Stack())
}
}()
assert.Equal(t, e.expect, tc.config.Contains(e.input))
})
}
}
})
}
}
@@ -1,6 +1,7 @@
package endpoint
import (
"context"
"fmt"
"regexp"
"strconv"
@@ -56,3 +57,53 @@ func parseJobAndGuidBookmarkName(fullname string, prefix string) (guid uint64, j
return guid, jobID, nil
}
func destroyBookmarksOlderThan(ctx context.Context, fs string, mostRecent *zfs.ZFSSendArgVersion, jobID JobID, filter func(shortname string) (accept bool)) (destroyed []zfs.FilesystemVersion, err error) {
if filter == nil {
panic(filter)
}
fsp, err := zfs.NewDatasetPath(fs)
if err != nil {
return nil, errors.Wrap(err, "invalid filesystem path")
}
mostRecentProps, err := mostRecent.ValidateExistsAndGetCheckedProps(ctx, fs)
if err != nil {
return nil, errors.Wrap(err, "validate most recent version argument")
}
stepBookmarks, err := zfs.ZFSListFilesystemVersions(fsp, zfs.FilterFromClosure(
func(t zfs.VersionType, name string) (accept bool, err error) {
if t != zfs.Bookmark {
return false, nil
}
return filter(name), nil
}))
if err != nil {
return nil, errors.Wrap(err, "list bookmarks")
}
// cut off all bookmarks prior to mostRecent's CreateTXG
var destroy []zfs.FilesystemVersion
for _, v := range stepBookmarks {
if v.Type != zfs.Bookmark {
panic("implementation error")
}
if !filter(v.Name) {
panic("inconsistent filter result")
}
if v.CreateTXG < mostRecentProps.CreateTXG {
destroy = append(destroy, v)
}
}
// FIXME use batch destroy, must adopt code to handle bookmarks
for _, v := range destroy {
if err := zfs.ZFSDestroyIdempotent(v.ToAbsPath(fsp)); err != nil {
return nil, errors.Wrap(err, "destroy bookmark")
}
}
return destroy, nil
}
-74
View File
@@ -1,74 +0,0 @@
package endpoint
import (
"context"
"encoding/json"
"fmt"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/zfs"
)
type bookmarkBasedAbstraction struct {
Type AbstractionType
FS string
zfs.FilesystemVersion
JobID JobID
}
func (b bookmarkBasedAbstraction) GetType() AbstractionType { return b.Type }
func (b bookmarkBasedAbstraction) GetFS() string { return b.FS }
func (b bookmarkBasedAbstraction) GetJobID() *JobID { return &b.JobID }
func (b bookmarkBasedAbstraction) GetFullPath() string {
return fmt.Sprintf("%s#%s", b.FS, b.Name) // TODO use zfs.FilesystemVersion.ToAbsPath
}
func (b bookmarkBasedAbstraction) MarshalJSON() ([]byte, error) {
return json.Marshal(AbstractionJSON{b})
}
func (b bookmarkBasedAbstraction) String() string {
return fmt.Sprintf("%s %s", b.Type, b.GetFullPath())
}
func (b bookmarkBasedAbstraction) GetFilesystemVersion() zfs.FilesystemVersion {
return b.FilesystemVersion
}
func (b bookmarkBasedAbstraction) Destroy(ctx context.Context) error {
if err := zfs.ZFSDestroyIdempotent(ctx, b.GetFullPath()); err != nil {
return errors.Wrapf(err, "destroy %s: zfs", b)
}
return nil
}
type holdBasedAbstraction struct {
Type AbstractionType
FS string
zfs.FilesystemVersion
Tag string
JobID JobID
}
func (h holdBasedAbstraction) GetType() AbstractionType { return h.Type }
func (h holdBasedAbstraction) GetFS() string { return h.FS }
func (h holdBasedAbstraction) GetJobID() *JobID { return &h.JobID }
func (h holdBasedAbstraction) GetFullPath() string {
return fmt.Sprintf("%s@%s", h.FS, h.GetName()) // TODO use zfs.FilesystemVersion.ToAbsPath
}
func (h holdBasedAbstraction) MarshalJSON() ([]byte, error) {
return json.Marshal(AbstractionJSON{h})
}
func (h holdBasedAbstraction) String() string {
return fmt.Sprintf("%s %q on %s", h.Type, h.Tag, h.GetFullPath())
}
func (h holdBasedAbstraction) GetFilesystemVersion() zfs.FilesystemVersion {
return h.FilesystemVersion
}
func (h holdBasedAbstraction) Destroy(ctx context.Context) error {
if err := zfs.ZFSRelease(ctx, h.Tag, h.GetFullPath()); err != nil {
return errors.Wrapf(err, "release %s: zfs", h)
}
return nil
}
+5 -5
View File
@@ -9,8 +9,8 @@ import (
"github.com/zrepl/zrepl/zfs"
)
// JobID instances returned by MakeJobID() guarantee their JobID.String()
// can be used in ZFS dataset names and hold tags.
// An instance of this type returned by MakeJobID guarantees
// that that instance's JobID.String() can be used in a ZFS dataset name and hold tag.
type JobID struct {
jid string
}
@@ -21,7 +21,7 @@ func MakeJobID(s string) (JobID, error) {
}
if err := zfs.ComponentNamecheck(s); err != nil {
return JobID{}, errors.Wrap(err, "must be usable as a dataset path component")
return JobID{}, errors.Wrap(err, "muse be usable as a dataset path component")
}
if _, err := stepBookmarkNameImpl("pool/ds", 0xface601d, s); err != nil {
@@ -34,7 +34,7 @@ func MakeJobID(s string) (JobID, error) {
}
if _, err := lastReceivedHoldImpl(s); err != nil {
return JobID{}, errors.Wrap(err, "must be usable as a last-received-hold tag")
return JobID{}, errors.Wrap(err, "must be usabel as a last-recieved-hold tag")
}
// FIXME replication cursor bookmark name
@@ -57,7 +57,7 @@ func MustMakeJobID(s string) JobID {
func (j JobID) expectInitialized() {
if j.jid == "" {
panic("use of uninitialized JobID")
panic("use of unitialized JobID")
}
}
+1 -2
View File
@@ -21,7 +21,7 @@ require (
github.com/onsi/gomega v1.7.0 // indirect
github.com/pkg/errors v0.8.1
github.com/pkg/profile v1.2.1
github.com/problame/go-netssh v0.0.0-20200601114649-26439f9f0dc5
github.com/problame/go-netssh v0.0.0-20191209123953-18d8aa6923c7
github.com/prometheus/client_golang v1.2.1
github.com/sergi/go-diff v1.0.1-0.20180205163309-da645544ed44 // go1.12 thinks it needs this
github.com/spf13/cobra v0.0.2
@@ -33,6 +33,5 @@ require (
golang.org/x/net v0.0.0-20190613194153-d28f0bde5980
golang.org/x/sync v0.0.0-20190423024810-112230192c58
golang.org/x/sys v0.0.0-20191026070338-33540a1f6037
gonum.org/v1/gonum v0.7.0 // indirect
google.golang.org/grpc v1.17.0
)
-21
View File
@@ -5,7 +5,6 @@ github.com/DATA-DOG/go-sqlmock v1.3.3/go.mod h1:f/Ixk793poVmq4qj/V1dPUg2JEAKC73Q
github.com/OpenPeeDeeP/depguard v0.0.0-20180806142446-a69c782687b2/go.mod h1:7/4sitnI9YlQgTLLk734QlzXT8DuHVnAyztLplQjk+o=
github.com/OpenPeeDeeP/depguard v0.0.0-20181229194401-1f388ab2d810/go.mod h1:7/4sitnI9YlQgTLLk734QlzXT8DuHVnAyztLplQjk+o=
github.com/StackExchange/wmi v0.0.0-20180116203802-5d049714c4a6/go.mod h1:3eOhrUMpNV+6aFIbp5/iudMxNCF27Vw2OZgy4xEx0Fg=
github.com/ajstarks/svgo v0.0.0-20180226025133-644b8db467af/go.mod h1:K08gAheRH3/J6wwsYMMT4xOr94bZjxIelGM0+d/wbFw=
github.com/alecthomas/template v0.0.0-20160405071501-a0175ee3bccc/go.mod h1:LOuyumcjzFXgccqObfd/Ljyb9UuFJ6TxHnclSeseNhc=
github.com/alecthomas/template v0.0.0-20190718012654-fb15b899a751/go.mod h1:LOuyumcjzFXgccqObfd/Ljyb9UuFJ6TxHnclSeseNhc=
github.com/alecthomas/units v0.0.0-20151022065526-2efee857e7cf/go.mod h1:ybxpYRFXyAe+OPACYpWeL0wqObRcbAqCMya13uyzqw0=
@@ -29,7 +28,6 @@ github.com/davecgh/go-spew v1.1.1/go.mod h1:J7Y8YcW2NihsgmVo/mv3lAwl/skON4iLHjSs
github.com/fatih/color v1.6.0/go.mod h1:Zm6kSWBoL9eyXnKyktHP6abPY2pDugNf5KwzbycvMj4=
github.com/fatih/color v1.7.0 h1:DkWD4oS2D8LGGgTQ6IvwJJXSL5Vp2ffcQg58nFV38Ys=
github.com/fatih/color v1.7.0/go.mod h1:Zm6kSWBoL9eyXnKyktHP6abPY2pDugNf5KwzbycvMj4=
github.com/fogleman/gg v1.2.1-0.20190220221249-0403632d5b90/go.mod h1:R/bRT+9gY/C5z7JzPU0zXsXHKM4/ayA+zqcVNZzPa1k=
github.com/fsnotify/fsnotify v1.4.7 h1:IXs+QLmnXW2CcXuY+8Mzv/fWEsPGWxqefPtCP5CnV9I=
github.com/fsnotify/fsnotify v1.4.7/go.mod h1:jwhsz4b93w/PPRr/qN1Yymfu8t87LnFCMoQvtojpjFo=
github.com/ftrvxmtrx/fd v0.0.0-20150925145434-c6d800382fff h1:zk1wwii7uXmI0znwU+lqg+wFL9G5+vm5I+9rv2let60=
@@ -72,7 +70,6 @@ github.com/go-toolsmith/typep v1.0.0/go.mod h1:JSQCQMUPdRlMZFswiq3TGpNp1GMktqkR2
github.com/gobwas/glob v0.2.3/go.mod h1:d3Ez4x06l9bZtSvzIay5+Yzi0fmZzPgnTbPcKjJAkT8=
github.com/gogo/protobuf v1.1.1/go.mod h1:r8qH/GZQm5c6nD/R0oafs1akxWv10x8SbQlK7atdtwQ=
github.com/gogo/protobuf v1.2.1/go.mod h1:hp+jE20tsWTFYpLwKvXlhS1hjn+gTNwPg2I6zVXpSg4=
github.com/golang/freetype v0.0.0-20170609003504-e2365dfdc4a0/go.mod h1:E/TSTwGwJL78qG/PmXZO1EjYhfJinVAhrmmHX6Z8B9k=
github.com/golang/glog v0.0.0-20160126235308-23def4e6c14b h1:VKtxabqXZkF25pY9ekfRL6a582T4P37/31XEstQ5p58=
github.com/golang/glog v0.0.0-20160126235308-23def4e6c14b/go.mod h1:SBH7ygxi8pfUlaOkMMuAQtPIUF8ecWP5IEl/CR7VP2Q=
github.com/golang/lint v0.0.0-20180702182130-06c8688daad7/go.mod h1:tluoj9z5200jBnyusfRPU2LqT6J+DAorxEvtC7LHB+E=
@@ -125,7 +122,6 @@ github.com/jinzhu/copier v0.0.0-20170922082739-db4671f3a9b8/go.mod h1:yL958EeXv8
github.com/json-iterator/go v1.1.6/go.mod h1:+SdeFBvtyEkXs7REEP0seUULqWtbJapLOCVDaaPEHmU=
github.com/json-iterator/go v1.1.7/go.mod h1:KdQUCv79m/52Kvf8AW2vK1V8akMuk1QjK/uOdHXbAo4=
github.com/julienschmidt/httprouter v1.2.0/go.mod h1:SYymIcj16QtmaHHD7aYtjjsJG7VTCxuUUipMqKk8s4w=
github.com/jung-kurt/gofpdf v1.0.3-0.20190309125859-24315acbbda5/go.mod h1:7Id9E/uU8ce6rXgefFLlgrJj/GYY22cpxn+r32jIOes=
github.com/k0kubun/colorstring v0.0.0-20150214042306-9440f1994b88 h1:uC1QfSlInpQF+M0ao65imhwqKnz3Q2z/d8PWZRMQvDM=
github.com/k0kubun/colorstring v0.0.0-20150214042306-9440f1994b88/go.mod h1:3w7q1U84EfirKl04SVQ/s7nPm1ZPhiXd34z40TNz36k=
github.com/kisielk/errcheck v1.1.0/go.mod h1:EZBBE59ingxPouuu3KfxchcWSUPOHkagtvWXihfKN4Q=
@@ -208,8 +204,6 @@ github.com/problame/go-netssh v0.0.0-20191026123024-f34099f4f6b1 h1:HH8yzlaZq/A8
github.com/problame/go-netssh v0.0.0-20191026123024-f34099f4f6b1/go.mod h1:JRs3nyBjvOv/9YHC+Vlw9z1Jfzl5s5t0BNnTzmclj1c=
github.com/problame/go-netssh v0.0.0-20191209123953-18d8aa6923c7 h1:Oik8tLrLhoMq4fduDRuNNOAQ+q0M0dXkjAYLUf4+mAc=
github.com/problame/go-netssh v0.0.0-20191209123953-18d8aa6923c7/go.mod h1:Ba6RaFpK1+IHWs1wLZ6sCBuXkt4iAVLeOG5GinXHusM=
github.com/problame/go-netssh v0.0.0-20200601114649-26439f9f0dc5 h1:1eSrO2WAeSXjMol8WRKW9LekL1252VIMaKQwWkmEdvs=
github.com/problame/go-netssh v0.0.0-20200601114649-26439f9f0dc5/go.mod h1:Ba6RaFpK1+IHWs1wLZ6sCBuXkt4iAVLeOG5GinXHusM=
github.com/prometheus/client_golang v0.0.0-20180410130117-e11c6ff8170b/go.mod h1:7SWBe2y4D6OKWSNQJUaRYU/AaXPKyh/dDVn+NZz0KFw=
github.com/prometheus/client_golang v0.9.1/go.mod h1:7SWBe2y4D6OKWSNQJUaRYU/AaXPKyh/dDVn+NZz0KFw=
github.com/prometheus/client_golang v1.0.0/go.mod h1:db9x61etRT2tGnBNRi70OPL5FsnadC4Ky3P0J6CfImo=
@@ -265,7 +259,6 @@ github.com/spf13/viper v1.0.2/go.mod h1:A8kyI5cUJhb8N+3pkfONlcEcZbueH6nhAm0Fq7Sr
github.com/spf13/viper v1.3.2/go.mod h1:ZiWeW+zYFKm7srdB9IoDzzZXaJaI5eL9QjNiN/DMA2s=
github.com/stretchr/objx v0.1.0/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+wExME=
github.com/stretchr/objx v0.1.1/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+wExME=
github.com/stretchr/testify v1.2.1/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w=
github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs=
github.com/stretchr/testify v1.3.0/go.mod h1:M5WIy9Dh21IEIfnGCwXGc5bZfKNJtfHm1UVUgZn+9EI=
@@ -296,11 +289,6 @@ golang.org/x/crypto v0.0.0-20181203042331-505ab145d0a9/go.mod h1:6SG95UA2DQfeDnf
golang.org/x/crypto v0.0.0-20190308221718-c2843e01d9a2/go.mod h1:djNgcEr1/C05ACkg1iLfiJU5Ep61QUkGW8qpdssI0+w=
golang.org/x/crypto v0.0.0-20190313024323-a1f597ede03a/go.mod h1:djNgcEr1/C05ACkg1iLfiJU5Ep61QUkGW8qpdssI0+w=
golang.org/x/crypto v0.0.0-20190325154230-a5d413f7728c/go.mod h1:djNgcEr1/C05ACkg1iLfiJU5Ep61QUkGW8qpdssI0+w=
golang.org/x/exp v0.0.0-20180321215751-8460e604b9de/go.mod h1:CJ0aWSM057203Lf6IL+f9T1iT9GByDxfZKAQTCR3kQA=
golang.org/x/exp v0.0.0-20180807140117-3d87b88a115f/go.mod h1:CJ0aWSM057203Lf6IL+f9T1iT9GByDxfZKAQTCR3kQA=
golang.org/x/exp v0.0.0-20190125153040-c74c464bbbf2 h1:y102fOLFqhV41b+4GPiJoa0k/x+pJcEi2/HB1Y5T6fU=
golang.org/x/exp v0.0.0-20190125153040-c74c464bbbf2/go.mod h1:CJ0aWSM057203Lf6IL+f9T1iT9GByDxfZKAQTCR3kQA=
golang.org/x/image v0.0.0-20180708004352-c73c2afc3b81/go.mod h1:ux5Hcp/YLpHSI86hEcLt0YII63i6oz57MZXIpbrjZUs=
golang.org/x/lint v0.0.0-20180702182130-06c8688daad7/go.mod h1:UVdnD1Gm6xHRNCYTkRU2/jEulfH38KcIWyp/GAMgvoE=
golang.org/x/lint v0.0.0-20181026193005-c67002cb31c3/go.mod h1:UVdnD1Gm6xHRNCYTkRU2/jEulfH38KcIWyp/GAMgvoE=
golang.org/x/net v0.0.0-20170915142106-8351a756f30f/go.mod h1:mL1N/T3taQHkDXs73rZJwtUhF3w3ftmwwsq0BUmARs4=
@@ -340,24 +328,17 @@ golang.org/x/text v0.3.0 h1:g61tztE5qeGQ89tm6NTjjM9VPIm088od1l6aSorWRWg=
golang.org/x/text v0.3.0/go.mod h1:NqM8EUOU14njkJ3fqMW+pc6Ldnwhi/IjpwHt7yyuwOQ=
golang.org/x/tools v0.0.0-20170915040203-e531a2a1c15f/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20180221164845-07fd8470d635/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20180525024113-a5b4c53f6e8b/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20180828015842-6cd1fcedba52/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20181117154741-2ddaf7f79a09/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20181205014116-22934f0fdb62/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20190110163146-51295c7ec13a/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20190121143147-24cd39ecf745/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20190206041539-40960b6deb8e/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20190213192042-740235f6c0d8/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ=
golang.org/x/tools v0.0.0-20190311212946-11955173bddd/go.mod h1:LCzVGOaR6xXOjkQ3onu1FJEFr0SW1gC7cKk1uF8kGRs=
golang.org/x/tools v0.0.0-20190311215038-5c2858a9cfe5/go.mod h1:LCzVGOaR6xXOjkQ3onu1FJEFr0SW1gC7cKk1uF8kGRs=
golang.org/x/tools v0.0.0-20190322203728-c1a832b0ad89/go.mod h1:LCzVGOaR6xXOjkQ3onu1FJEFr0SW1gC7cKk1uF8kGRs=
golang.org/x/tools v0.0.0-20190521203540-521d6ed310dd/go.mod h1:RgjU9mgBXZiqYHBnxXauZ1Gv1EHHAz9KjViQ78xBX0Q=
golang.org/x/tools v0.0.0-20190524210228-3d17549cdc6b/go.mod h1:RgjU9mgBXZiqYHBnxXauZ1Gv1EHHAz9KjViQ78xBX0Q=
gonum.org/v1/gonum v0.0.0-20180816165407-929014505bf4/go.mod h1:Y+Yx5eoAFn32cQvJDxZx5Dpnq+c3wtXuadVZAcxbbBo=
gonum.org/v1/gonum v0.7.0 h1:Hdks0L0hgznZLG9nzXb8vZ0rRvqNvAcgAp84y7Mwkgw=
gonum.org/v1/gonum v0.7.0/go.mod h1:L02bwd0sqlsvRv41G7wGWFCsVNZFv/k1xzGIxeANHGM=
gonum.org/v1/netlib v0.0.0-20190313105609-8cb42192e0e0/go.mod h1:wa6Ws7BG/ESfp6dHfk7C6KdzKA7wR7u/rKwOGE66zvw=
gonum.org/v1/plot v0.0.0-20190515093506-e2840ee46a6b/go.mod h1:Wt8AAjI+ypCyYX3nZBvf6cAIx93T+c/OS2HFAYskSZc=
google.golang.org/appengine v1.1.0 h1:igQkv0AAhEIvTEpD5LIpAfav2eeVO9HBTjvKHVJPRSs=
google.golang.org/appengine v1.1.0/go.mod h1:EbEs0AVv82hx2wNQdGPgUI5lhzA/G0D9YwlJXL52JkM=
google.golang.org/genproto v0.0.0-20180817151627-c66870c02cf8 h1:Nw54tB0rB7hY/N0NQvRW8DG4Yk3Q6T9cu9RcFQDu1tc=
@@ -369,7 +350,6 @@ google.golang.org/grpc v1.17.0 h1:TRJYBgMclJvGYn2rIMjj+h9KtMt5r1Ij7ODVRIZkwhk=
google.golang.org/grpc v1.17.0/go.mod h1:6QZJwpn2B+Zp71q/5VxRsJ6NXXVCE5NRUHRo+f3cWCs=
gopkg.in/airbrake/gobrake.v2 v2.0.9/go.mod h1:/h5ZAUhDkGaJfjzjKLSjv6zCL6O0LLBxU4K+aSYdM/U=
gopkg.in/alecthomas/kingpin.v2 v2.2.6/go.mod h1:FMv+mEhP44yOT+4EoQTLFTRgOQ1FBLkstjWtayDeSgw=
gopkg.in/check.v1 v0.0.0-20161208181325-20d25e280405 h1:yhCVgyC4o1eVCa2tZl7eS0r+SDo693bJlVdllGtEeKM=
gopkg.in/check.v1 v0.0.0-20161208181325-20d25e280405/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
gopkg.in/check.v1 v1.0.0-20180628173108-788fd7840127 h1:qIbj1fsPNlZgppZ+VLlY7N33q108Sa+fhmuc+sWQYwY=
gopkg.in/check.v1 v1.0.0-20180628173108-788fd7840127/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
@@ -388,6 +368,5 @@ mvdan.cc/interfacer v0.0.0-20180901003855-c20040233aed/go.mod h1:Xkxe497xwlCKkIa
mvdan.cc/lint v0.0.0-20170908181259-adc824a0674b/go.mod h1:2odslEg/xrtNQqCYg2/jCoyKnw3vv5biOc3JnIcYfL4=
mvdan.cc/unparam v0.0.0-20190209190245-fbb59629db34/go.mod h1:H6SUd1XjIs+qQCyskXg5OFSrilMRUkD8ePJpHKDPaeY=
mvdan.cc/unparam v0.0.0-20190310220240-1b9ccfa71afe/go.mod h1:BnhuWBAqxH3+J5bDybdxgw5ZfS+DsVd4iylsKQePN8o=
rsc.io/pdf v0.1.1/go.mod h1:n8OzWcQ6Sp37PL01nO98y4iUCRdTGarVfzxY20ICaU4=
sourcegraph.com/sqs/pbtypes v0.0.0-20180604144634-d3ebe8f20ae4/go.mod h1:ketZ/q3QxT9HOBeFhu6RdvsftgpsbFHBF5Cas6cDKZ0=
sourcegraph.com/sqs/pbtypes v1.0.0/go.mod h1:3AciMUv4qUuRHRHhOG4TZOB+72GdPVz5k+c648qsFS4=
+1 -1
View File
@@ -17,7 +17,7 @@ func init() {
cli.AddSubcommand(client.PprofCmd)
cli.AddSubcommand(client.TestCmd)
cli.AddSubcommand(client.MigrateCmd)
cli.AddSubcommand(client.ZFSAbstractionsCmd)
cli.AddSubcommand(client.HoldsCmd)
}
func main() {
+3 -3
View File
@@ -172,21 +172,21 @@ type testCaseResult struct {
func runTestCase(ctx *platformtest.Context, ex platformtest.Execer, c tests.Case) *testCaseResult {
// run case
var panicked = false
var paniced = false
var panicValue interface{} = nil
var panicStack error
func() {
defer func() {
if item := recover(); item != nil {
panicValue = item
panicked = true
paniced = true
panicStack = errors.Errorf("panic while running test: %v", panicValue)
}
}()
c(ctx)
}()
if panicked {
if paniced {
switch panicValue {
case platformtest.SkipNowSentinel:
return &testCaseResult{skipped: true}
-1
View File
@@ -27,7 +27,6 @@ func (c *Context) Logf(format string, args ...interface{}) {
func (c *Context) Errorf(format string, args ...interface{}) {
GetLog(c).Printf(format, args...)
c.FailNow()
}
func (c *Context) FailNow() {
+3 -34
View File
@@ -24,7 +24,6 @@ type Stmt interface {
type Op string
const (
Comment Op = "#"
AssertExists Op = "!E"
AssertNotExists Op = "!N"
Add Op = "+"
@@ -103,26 +102,6 @@ func (o *SnapOp) Run(ctx context.Context, e Execer) error {
}
}
type BookmarkOp struct {
Op Op
Existing string
Bookmark string
}
func (o *BookmarkOp) Run(ctx context.Context, e Execer) error {
switch o.Op {
case Add:
return e.RunExpectSuccessNoOutput(ctx, "zfs", "bookmark", o.Existing, o.Bookmark)
case Del:
if o.Existing != "" {
panic("existing must be empty for destroy, got " + o.Existing)
}
return e.RunExpectSuccessNoOutput(ctx, "zfs", "destroy", o.Bookmark)
default:
panic(o.Op)
}
}
type RunOp struct {
RootDS string
Script string
@@ -201,8 +180,8 @@ func splitQuotedWords(data []byte, atEOF bool) (advance int, token []byte, err e
// unescaped quote, end of this string
// remove backslash-escapes
withBackslash := data[begin+1 : end]
withoutBackslash := bytes.Replace(withBackslash, []byte("\\\""), []byte("\""), -1)
return end + 1, withoutBackslash, nil
withoutBaskslash := bytes.Replace(withBackslash, []byte("\\\""), []byte("\""), -1)
return end + 1, withoutBaskslash, nil
} else {
// continue to next quote
end += 1
@@ -276,26 +255,16 @@ nextLine:
op = AssertExists
case string(AssertNotExists):
op = AssertNotExists
case string(Comment):
op = Comment
continue
default:
return nil, &LineError{scan.Text(), fmt.Sprintf("invalid op %q", comps.Text())}
}
// FS / SNAP / BOOKMARK
// FS / SNAP
if err := expectMoreTokens(); err != nil {
return nil, err
}
if strings.ContainsAny(comps.Text(), "@") {
stmts = append(stmts, &SnapOp{Op: op, Path: fmt.Sprintf("%s/%s", rootds, comps.Text())})
} else if strings.ContainsAny(comps.Text(), "#") {
bookmark := fmt.Sprintf("%s/%s", rootds, comps.Text())
if err := expectMoreTokens(); err != nil {
return nil, err
}
existing := fmt.Sprintf("%s/%s", rootds, comps.Text())
stmts = append(stmts, &BookmarkOp{Op: op, Existing: existing, Bookmark: bookmark})
} else {
// FS
fs := comps.Text()
+2 -2
View File
@@ -34,7 +34,7 @@ func (a ZpoolCreateArgs) Validate() error {
return errors.Errorf("Mountpoint must be an absolute path to a directory")
}
if a.PoolName == "" {
return errors.Errorf("PoolName must not be empty")
return errors.Errorf("PoolName must not be emtpy")
}
return nil
}
@@ -45,7 +45,7 @@ func CreateOrReplaceZpool(ctx context.Context, e Execer, args ZpoolCreateArgs) (
}
// export pool if it already exists (idempotence)
if _, err := zfs.ZFSGetRawAnySource(ctx, args.PoolName, []string{"name"}); err != nil {
if _, err := zfs.ZFSGetRawAnySource(args.PoolName, []string{"name"}); err != nil {
if _, ok := err.(*zfs.DatasetDoesNotExist); ok {
// we'll create it shortly
} else {
+154
View File
@@ -0,0 +1,154 @@
package tests
import (
"fmt"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/zfs"
)
type rollupReleaseExpectTags struct {
Snap string
Holds map[string]bool
}
func rollupReleaseTest(ctx *platformtest.Context, cb func(fs string) []rollupReleaseExpectTags) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
+ "foo bar@1"
+ "foo bar@2"
+ "foo bar@3"
+ "foo bar@4"
+ "foo bar@5"
+ "foo bar@6"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@1"
R zfs hold zrepl_platformtest_2 "${ROOTDS}/foo bar@2"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@3"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@5"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@6"
R zfs bookmark "${ROOTDS}/foo bar@5" "${ROOTDS}/foo bar#5"
`)
fs := fmt.Sprintf("%s/foo bar", ctx.RootDataset)
expTags := cb(fs)
for _, exp := range expTags {
holds, err := zfs.ZFSHolds(ctx, fs, exp.Snap)
if err != nil {
panic(err)
}
for _, h := range holds {
if e, ok := exp.Holds[h]; !ok || !e {
panic(fmt.Sprintf("tag %q on snap %q not expected", h, exp.Snap))
}
}
}
}
func RollupReleaseIncluding(ctx *platformtest.Context) {
rollupReleaseTest(ctx, func(fs string) []rollupReleaseExpectTags {
guid5, err := zfs.ZFSGetGUID(fs, "@5")
require.NoError(ctx, err)
err = zfs.ZFSReleaseAllOlderAndIncludingGUID(ctx, fs, guid5, "zrepl_platformtest")
require.NoError(ctx, err)
return []rollupReleaseExpectTags{
{"1", map[string]bool{}},
{"2", map[string]bool{"zrepl_platformtest_2": true}},
{"3", map[string]bool{}},
{"4", map[string]bool{}},
{"5", map[string]bool{}},
{"6", map[string]bool{"zrepl_platformtest": true}},
}
})
}
func RollupReleaseExcluding(ctx *platformtest.Context) {
rollupReleaseTest(ctx, func(fs string) []rollupReleaseExpectTags {
guid5, err := zfs.ZFSGetGUID(fs, "@5")
require.NoError(ctx, err)
err = zfs.ZFSReleaseAllOlderThanGUID(ctx, fs, guid5, "zrepl_platformtest")
require.NoError(ctx, err)
return []rollupReleaseExpectTags{
{"1", map[string]bool{}},
{"2", map[string]bool{"zrepl_platformtest_2": true}},
{"3", map[string]bool{}},
{"4", map[string]bool{}},
{"5", map[string]bool{"zrepl_platformtest": true}},
{"6", map[string]bool{"zrepl_platformtest": true}},
}
})
}
func RollupReleaseMostRecentIsBookmarkWithoutSnapshot(ctx *platformtest.Context) {
rollupReleaseTest(ctx, func(fs string) []rollupReleaseExpectTags {
guid5, err := zfs.ZFSGetGUID(fs, "#5")
require.NoError(ctx, err)
err = zfs.ZFSRelease(ctx, "zrepl_platformtest", fs+"@5")
require.NoError(ctx, err)
err = zfs.ZFSDestroy(fs + "@5")
require.NoError(ctx, err)
err = zfs.ZFSReleaseAllOlderAndIncludingGUID(ctx, fs, guid5, "zrepl_platformtest")
require.NoError(ctx, err)
return []rollupReleaseExpectTags{
{"1", map[string]bool{}},
{"2", map[string]bool{"zrepl_platformtest_2": true}},
{"3", map[string]bool{}},
{"4", map[string]bool{}},
// {"5", map[string]bool{}}, doesn't exist
{"6", map[string]bool{"zrepl_platformtest": true}},
}
})
}
func RollupReleaseMostRecentIsBookmarkAndSnapshotStillExists(ctx *platformtest.Context) {
rollupReleaseTest(ctx, func(fs string) []rollupReleaseExpectTags {
guid5, err := zfs.ZFSGetGUID(fs, "#5")
require.NoError(ctx, err)
err = zfs.ZFSReleaseAllOlderAndIncludingGUID(ctx, fs, guid5, "zrepl_platformtest")
require.NoError(ctx, err)
return []rollupReleaseExpectTags{
{"1", map[string]bool{}},
{"2", map[string]bool{"zrepl_platformtest_2": true}},
{"3", map[string]bool{}},
{"4", map[string]bool{}},
{"5", map[string]bool{}},
{"6", map[string]bool{"zrepl_platformtest": true}},
}
})
}
func RollupReleaseMostRecentDoesntExist(ctx *platformtest.Context) {
rollupReleaseTest(ctx, func(fs string) []rollupReleaseExpectTags {
const nonexistentGuid = 0 // let's take our chances...
err := zfs.ZFSReleaseAllOlderAndIncludingGUID(ctx, fs, nonexistentGuid, "zrepl_platformtest")
require.Error(ctx, err)
require.Contains(ctx, err.Error(), "cannot find snapshot or bookmark with guid 0")
return []rollupReleaseExpectTags{
{"1", map[string]bool{"zrepl_platformtest": true}},
{"2", map[string]bool{"zrepl_platformtest_2": true}},
{"3", map[string]bool{"zrepl_platformtest": true}},
{"4", map[string]bool{"zrepl_platformtest": true}},
{"5", map[string]bool{"zrepl_platformtest": true}},
{"6", map[string]bool{"zrepl_platformtest": true}},
}
})
}
+4 -4
View File
@@ -17,14 +17,14 @@ func GetNonexistent(ctx *platformtest.Context) {
`)
// test raw
_, err := zfs.ZFSGetRawAnySource(ctx, fmt.Sprintf("%s/foo bar", ctx.RootDataset), []string{"name"})
_, err := zfs.ZFSGetRawAnySource(fmt.Sprintf("%s/foo bar", ctx.RootDataset), []string{"name"})
if err != nil {
panic(err)
}
// test nonexistent filesystem
nonexistent := fmt.Sprintf("%s/nonexistent filesystem", ctx.RootDataset)
props, err := zfs.ZFSGetRawAnySource(ctx, nonexistent, []string{"name"})
props, err := zfs.ZFSGetRawAnySource(nonexistent, []string{"name"})
if err == nil {
panic(props)
}
@@ -37,7 +37,7 @@ func GetNonexistent(ctx *platformtest.Context) {
// test nonexistent snapshot
nonexistent = fmt.Sprintf("%s/foo bar@non existent", ctx.RootDataset)
props, err = zfs.ZFSGetRawAnySource(ctx, nonexistent, []string{"name"})
props, err = zfs.ZFSGetRawAnySource(nonexistent, []string{"name"})
if err == nil {
panic(props)
}
@@ -50,7 +50,7 @@ func GetNonexistent(ctx *platformtest.Context) {
// test nonexistent bookmark
nonexistent = fmt.Sprintf("%s/foo bar#non existent", ctx.RootDataset)
props, err = zfs.ZFSGetRawAnySource(ctx, nonexistent, []string{"name"})
props, err = zfs.ZFSGetRawAnySource(nonexistent, []string{"name"})
if err == nil {
panic(props)
}
+16 -53
View File
@@ -5,7 +5,6 @@ import (
"math/rand"
"os"
"path"
"sort"
"strings"
"github.com/stretchr/testify/require"
@@ -15,8 +14,8 @@ import (
"github.com/zrepl/zrepl/zfs"
)
func sendArgVersion(ctx *platformtest.Context, fs, relName string) zfs.ZFSSendArgVersion {
guid, err := zfs.ZFSGetGUID(ctx, fs, relName)
func sendArgVersion(fs, relName string) zfs.ZFSSendArgVersion {
guid, err := zfs.ZFSGetGUID(fs, relName)
if err != nil {
panic(err)
}
@@ -26,14 +25,6 @@ func sendArgVersion(ctx *platformtest.Context, fs, relName string) zfs.ZFSSendAr
}
}
func fsversion(ctx *platformtest.Context, fs, relname string) zfs.FilesystemVersion {
v, err := zfs.ZFSGetFilesystemVersion(ctx, fs+relname)
if err != nil {
panic(err)
}
return v
}
func mustDatasetPath(fs string) *zfs.DatasetPath {
p, err := zfs.NewDatasetPath(fs)
if err != nil {
@@ -42,7 +33,7 @@ func mustDatasetPath(fs string) *zfs.DatasetPath {
return p
}
func mustSnapshot(ctx *platformtest.Context, snap string) {
func mustSnapshot(snap string) {
if err := zfs.EntityNamecheck(snap, zfs.EntityTypeSnapshot); err != nil {
panic(err)
}
@@ -50,16 +41,16 @@ func mustSnapshot(ctx *platformtest.Context, snap string) {
if len(comps) != 2 {
panic(comps)
}
err := zfs.ZFSSnapshot(ctx, mustDatasetPath(comps[0]), comps[1], false)
err := zfs.ZFSSnapshot(mustDatasetPath(comps[0]), comps[1], false)
if err != nil {
panic(err)
}
}
func mustGetFilesystemVersion(ctx *platformtest.Context, snapOrBookmark string) zfs.FilesystemVersion {
v, err := zfs.ZFSGetFilesystemVersion(ctx, snapOrBookmark)
func mustGetProps(entity string) zfs.ZFSPropCreateTxgAndGuidProps {
props, err := zfs.ZFSGetCreateTXGAndGuid(entity)
check(err)
return v
return props
}
func check(err error) {
@@ -87,7 +78,7 @@ type dummySnapshotSituation struct {
}
type resumeSituation struct {
sendArgs zfs.ZFSSendArgsUnvalidated
sendArgs zfs.ZFSSendArgs
recvOpts zfs.RecvOptions
sendErr, recvErr error
recvErrDecoded *zfs.RecvFailedWithResumeTokenErr
@@ -96,7 +87,7 @@ type resumeSituation struct {
func makeDummyDataSnapshots(ctx *platformtest.Context, sendFS string) (situation dummySnapshotSituation) {
situation.sendFS = sendFS
sendFSMount, err := zfs.ZFSGetMountpoint(ctx, sendFS)
sendFSMount, err := zfs.ZFSGetMountpoint(sendFS)
require.NoError(ctx, err)
require.True(ctx, sendFSMount.Mounted)
@@ -104,33 +95,28 @@ func makeDummyDataSnapshots(ctx *platformtest.Context, sendFS string) (situation
situation.dummyDataLen = dummyLen
writeDummyData(path.Join(sendFSMount.Mountpoint, "dummy_data"), dummyLen)
mustSnapshot(ctx, sendFS+"@a snapshot")
snapA := sendArgVersion(ctx, sendFS, "@a snapshot")
mustSnapshot(sendFS + "@a snapshot")
snapA := sendArgVersion(sendFS, "@a snapshot")
situation.snapA = &snapA
writeDummyData(path.Join(sendFSMount.Mountpoint, "dummy_data"), dummyLen)
mustSnapshot(ctx, sendFS+"@b snapshot")
snapB := sendArgVersion(ctx, sendFS, "@b snapshot")
mustSnapshot(sendFS + "@b snapshot")
snapB := sendArgVersion(sendFS, "@b snapshot")
situation.snapB = &snapB
return situation
}
func makeResumeSituation(ctx *platformtest.Context, src dummySnapshotSituation, recvFS string, sendArgs zfs.ZFSSendArgsUnvalidated, recvOptions zfs.RecvOptions) *resumeSituation {
func makeResumeSituation(ctx *platformtest.Context, src dummySnapshotSituation, recvFS string, sendArgs zfs.ZFSSendArgs, recvOptions zfs.RecvOptions) *resumeSituation {
situation := &resumeSituation{}
situation.sendArgs = sendArgs
situation.recvOpts = recvOptions
require.True(ctx, recvOptions.SavePartialRecvState, "this method would be pointless otherwise")
require.True(ctx, recvOptions.SavePartialRecvState, "this method would be pointeless otherwise")
require.Equal(ctx, sendArgs.FS, src.sendFS)
sendArgsValidated, err := sendArgs.Validate(ctx)
situation.sendErr = err
if err != nil {
return situation
}
copier, err := zfs.ZFSSend(ctx, sendArgsValidated)
copier, err := zfs.ZFSSend(ctx, sendArgs)
situation.sendErr = err
if err != nil {
return situation
@@ -151,26 +137,3 @@ func makeResumeSituation(ctx *platformtest.Context, src dummySnapshotSituation,
return situation
}
func versionRelnamesSorted(versions []zfs.FilesystemVersion) []string {
var vstrs []string
for _, v := range versions {
vstrs = append(vstrs, v.RelName())
}
sort.Strings(vstrs)
return vstrs
}
func datasetToStringSortedTrimPrefix(prefix *zfs.DatasetPath, paths []*zfs.DatasetPath) []string {
var pstrs []string
for _, p := range paths {
trimmed := p.Copy()
trimmed.TrimPrefix(prefix)
if trimmed.Length() == 0 {
continue
}
pstrs = append(pstrs, trimmed.ToString())
}
sort.Strings(pstrs)
return pstrs
}
+7 -7
View File
@@ -19,22 +19,22 @@ func IdempotentBookmark(ctx *platformtest.Context) {
fs := fmt.Sprintf("%s/foo bar", ctx.RootDataset)
asnap := sendArgVersion(ctx, fs, "@a snap")
anotherSnap := sendArgVersion(ctx, fs, "@another snap")
asnap := sendArgVersion(fs, "@a snap")
anotherSnap := sendArgVersion(fs, "@another snap")
err := zfs.ZFSBookmark(ctx, fs, asnap, "a bookmark")
err := zfs.ZFSBookmark(fs, asnap, "a bookmark")
if err != nil {
panic(err)
}
// do it again, should be idempotent
err = zfs.ZFSBookmark(ctx, fs, asnap, "a bookmark")
err = zfs.ZFSBookmark(fs, asnap, "a bookmark")
if err != nil {
panic(err)
}
// should fail for another snapshot
err = zfs.ZFSBookmark(ctx, fs, anotherSnap, "a bookmark")
err = zfs.ZFSBookmark(fs, anotherSnap, "a bookmark")
if err == nil {
panic(err)
}
@@ -43,12 +43,12 @@ func IdempotentBookmark(ctx *platformtest.Context) {
}
// destroy the snapshot
if err := zfs.ZFSDestroy(ctx, fmt.Sprintf("%s@a snap", fs)); err != nil {
if err := zfs.ZFSDestroy(fmt.Sprintf("%s@a snap", fs)); err != nil {
panic(err)
}
// do it again, should fail with special error type
err = zfs.ZFSBookmark(ctx, fs, asnap, "a bookmark")
err = zfs.ZFSBookmark(fs, asnap, "a bookmark")
if err == nil {
panic(err)
}
+7 -7
View File
@@ -18,8 +18,8 @@ func IdempotentDestroy(ctx *platformtest.Context) {
`)
fs := fmt.Sprintf("%s/foo bar", ctx.RootDataset)
asnap := sendArgVersion(ctx, fs, "@a snap")
err := zfs.ZFSBookmark(ctx, fs, asnap, "a bookmark")
asnap := sendArgVersion(fs, "@a snap")
err := zfs.ZFSBookmark(fs, asnap, "a bookmark")
if err != nil {
panic(err)
}
@@ -41,17 +41,17 @@ func IdempotentDestroy(ctx *platformtest.Context) {
log.Printf("SUBBEGIN testing idempotent destroy %q for path %q", c.description, c.path)
log.Println("destroy existing")
err = zfs.ZFSDestroy(ctx, c.path)
err = zfs.ZFSDestroy(c.path)
if err != nil {
panic(err)
}
log.Println("destroy again, non-idempotently, must error")
err = zfs.ZFSDestroy(ctx, c.path)
err = zfs.ZFSDestroy(c.path)
if _, ok := err.(*zfs.DatasetDoesNotExist); !ok {
panic(fmt.Sprintf("%T: %s", err, err))
}
log.Println("destroy again, idempotently, must not error")
err = zfs.ZFSDestroyIdempotent(ctx, c.path)
err = zfs.ZFSDestroyIdempotent(c.path)
if err != nil {
panic(err)
}
@@ -62,12 +62,12 @@ func IdempotentDestroy(ctx *platformtest.Context) {
}
// also test idempotent destroy for cases where the parent dataset does not exist
err = zfs.ZFSDestroyIdempotent(ctx, fmt.Sprintf("%s/not foo bar@nonexistent snapshot", ctx.RootDataset))
err = zfs.ZFSDestroyIdempotent(fmt.Sprintf("%s/not foo bar@nonexistent snapshot", ctx.RootDataset))
if err != nil {
panic(err)
}
err = zfs.ZFSDestroyIdempotent(ctx, fmt.Sprintf("%s/not foo bar#nonexistent bookmark", ctx.RootDataset))
err = zfs.ZFSDestroyIdempotent(fmt.Sprintf("%s/not foo bar#nonexistent bookmark", ctx.RootDataset))
if err != nil {
panic(err)
}
+11 -1
View File
@@ -22,7 +22,7 @@ func IdempotentHold(ctx *platformtest.Context) {
`)
fs := fmt.Sprintf("%s/foo bar", ctx.RootDataset)
v1 := fsversion(ctx, fs, "@1")
v1 := sendArgVersion(fs, "@1")
tag := "zrepl_platformtest"
err := zfs.ZFSHold(ctx, fs, v1, tag)
@@ -34,4 +34,14 @@ func IdempotentHold(ctx *platformtest.Context) {
if err != nil {
panic(err)
}
vnonexistent := zfs.ZFSSendArgVersion{
RelName: "@nonexistent",
GUID: 0xbadf00d,
}
err = zfs.ZFSHold(ctx, fs, vnonexistent, tag)
if err == nil {
panic("still expecting error for nonexistent snapshot")
}
}
@@ -1,179 +0,0 @@
package tests
import (
"fmt"
"sort"
"strings"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/zfs"
)
func ListFilesystemVersionsTypeFilteringAndPrefix(t *platformtest.Context) {
platformtest.Run(t, platformtest.PanicErr, t.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
+ "foo bar@foo 1"
+ "foo bar#foo 1" "foo bar@foo 1"
+ "foo bar#bookfoo 1" "foo bar@foo 1"
+ "foo bar@foo 2"
+ "foo bar#foo 2" "foo bar@foo 2"
+ "foo bar#bookfoo 2" "foo bar@foo 2"
+ "foo bar@blup 1"
+ "foo bar#blup 1" "foo bar@blup 1"
+ "foo bar@ foo with leading whitespace"
# repeat the whole thing for a child dataset to make sure we disable recursion
+ "foo bar/child dataset"
+ "foo bar/child dataset@foo 1"
+ "foo bar/child dataset#foo 1" "foo bar/child dataset@foo 1"
+ "foo bar/child dataset#bookfoo 1" "foo bar/child dataset@foo 1"
+ "foo bar/child dataset@foo 2"
+ "foo bar/child dataset#foo 2" "foo bar/child dataset@foo 2"
+ "foo bar/child dataset#bookfoo 2" "foo bar/child dataset@foo 2"
+ "foo bar/child dataset@blup 1"
+ "foo bar/child dataset#blup 1" "foo bar/child dataset@blup 1"
+ "foo bar/child dataset@ foo with leading whitespace"
`)
fs := fmt.Sprintf("%s/foo bar", t.RootDataset)
// no options := all types
vs, err := zfs.ZFSListFilesystemVersions(t, mustDatasetPath(fs), zfs.ListFilesystemVersionsOptions{})
require.NoError(t, err)
require.Equal(t, []string{
"#blup 1", "#bookfoo 1", "#bookfoo 2", "#foo 1", "#foo 2",
"@ foo with leading whitespace", "@blup 1", "@foo 1", "@foo 2",
}, versionRelnamesSorted(vs))
// just snapshots
vs, err = zfs.ZFSListFilesystemVersions(t, mustDatasetPath(fs), zfs.ListFilesystemVersionsOptions{
Types: zfs.Snapshots,
})
require.NoError(t, err)
require.Equal(t, []string{"@ foo with leading whitespace", "@blup 1", "@foo 1", "@foo 2"}, versionRelnamesSorted(vs))
// just bookmarks
vs, err = zfs.ZFSListFilesystemVersions(t, mustDatasetPath(fs), zfs.ListFilesystemVersionsOptions{
Types: zfs.Bookmarks,
})
require.NoError(t, err)
require.Equal(t, []string{"#blup 1", "#bookfoo 1", "#bookfoo 2", "#foo 1", "#foo 2"}, versionRelnamesSorted(vs))
// just with prefix foo
vs, err = zfs.ZFSListFilesystemVersions(t, mustDatasetPath(fs), zfs.ListFilesystemVersionsOptions{
ShortnamePrefix: "foo",
})
require.NoError(t, err)
require.Equal(t, []string{"#foo 1", "#foo 2", "@foo 1", "@foo 2"}, versionRelnamesSorted(vs))
}
func ListFilesystemVersionsZeroExistIsNotAnError(t *platformtest.Context) {
platformtest.Run(t, platformtest.PanicErr, t.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
`)
fs := fmt.Sprintf("%s/foo bar", t.RootDataset)
vs, err := zfs.ZFSListFilesystemVersions(t, mustDatasetPath(fs), zfs.ListFilesystemVersionsOptions{})
require.Empty(t, vs)
require.NoError(t, err)
dsne, ok := err.(*zfs.DatasetDoesNotExist)
require.True(t, ok)
require.Equal(t, fs, dsne.Path)
}
func ListFilesystemVersionsFilesystemNotExist(t *platformtest.Context) {
platformtest.Run(t, platformtest.PanicErr, t.RootDataset, `
DESTROYROOT
CREATEROOT
`)
nonexistentFS := fmt.Sprintf("%s/not existent", t.RootDataset)
vs, err := zfs.ZFSListFilesystemVersions(t, mustDatasetPath(nonexistentFS), zfs.ListFilesystemVersionsOptions{})
require.Empty(t, vs)
require.Error(t, err)
t.Logf("err = %T\n%s", err, err)
dsne, ok := err.(*zfs.DatasetDoesNotExist)
require.True(t, ok)
require.Equal(t, nonexistentFS, dsne.Path)
}
func ListFilesystemVersionsUserrefs(t *platformtest.Context) {
platformtest.Run(t, platformtest.PanicErr, t.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
+ "foo bar@snap 1"
+ "foo bar#snap 1" "foo bar@snap 1"
+ "foo bar@snap 2"
+ "foo bar#snap 2" "foo bar@snap 2"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@snap 2"
+ "foo bar@snap 3"
+ "foo bar#snap 3" "foo bar@snap 3"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@snap 3"
R zfs hold zrepl_platformtest_second_hold "${ROOTDS}/foo bar@snap 3"
+ "foo bar@snap 4"
+ "foo bar#snap 4" "foo bar@snap 4"
+ "foo bar/child datset"
+ "foo bar/child datset@snap 1"
+ "foo bar/child datset#snap 1" "foo bar/child datset@snap 1"
+ "foo bar/child datset@snap 2"
+ "foo bar/child datset#snap 2" "foo bar/child datset@snap 2"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar/child datset@snap 2"
+ "foo bar/child datset@snap 3"
+ "foo bar/child datset#snap 3" "foo bar/child datset@snap 3"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar/child datset@snap 3"
R zfs hold zrepl_platformtest_second_hold "${ROOTDS}/foo bar/child datset@snap 3"
+ "foo bar/child datset@snap 4"
+ "foo bar/child datset#snap 4" "foo bar/child datset@snap 4"
`)
fs := fmt.Sprintf("%s/foo bar", t.RootDataset)
vs, err := zfs.ZFSListFilesystemVersions(t, mustDatasetPath(fs), zfs.ListFilesystemVersionsOptions{})
require.NoError(t, err)
type expectation struct {
relName string
userrefs zfs.OptionUint64
}
expect := []expectation{
{"#snap 1", zfs.OptionUint64{Valid: false}},
{"#snap 2", zfs.OptionUint64{Valid: false}},
{"#snap 3", zfs.OptionUint64{Valid: false}},
{"#snap 4", zfs.OptionUint64{Valid: false}},
{"@snap 1", zfs.OptionUint64{Value: 0, Valid: true}},
{"@snap 2", zfs.OptionUint64{Value: 1, Valid: true}},
{"@snap 3", zfs.OptionUint64{Value: 2, Valid: true}},
{"@snap 4", zfs.OptionUint64{Value: 0, Valid: true}},
}
sort.Slice(vs, func(i, j int) bool {
return strings.Compare(vs[i].RelName(), vs[j].RelName()) < 0
})
var expectRelNames []string
for _, e := range expect {
expectRelNames = append(expectRelNames, e.relName)
}
require.Equal(t, expectRelNames, versionRelnamesSorted(vs))
for i, e := range expect {
require.Equal(t, e.relName, vs[i].RelName())
require.Equal(t, e.userrefs, vs[i].UserRefs)
}
}
-34
View File
@@ -1,34 +0,0 @@
package tests
import (
"strings"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/zfs"
)
func ListFilesystemsNoFilter(t *platformtest.Context) {
platformtest.Run(t, platformtest.PanicErr, t.RootDataset, `
DESTROYROOT
CREATEROOT
R zfs create -V 10M "${ROOTDS}/bar baz"
+ "foo bar"
+ "foo bar/bar blup"
+ "foo bar/blah"
R zfs create -V 10M "${ROOTDS}/foo bar/blah/a volume"
`)
fss, err := zfs.ZFSListMapping(t, zfs.NoFilter())
require.NoError(t, err)
var onlyTestPool []*zfs.DatasetPath
for _, fs := range fss {
if strings.HasPrefix(fs.ToString(), t.RootDataset) {
onlyTestPool = append(onlyTestPool, fs)
}
}
onlyTestPoolStr := datasetToStringSortedTrimPrefix(mustDatasetPath(t.RootDataset), onlyTestPool)
require.Equal(t, []string{"bar baz", "foo bar", "foo bar/bar blup", "foo bar/blah", "foo bar/blah/a volume"}, onlyTestPoolStr)
}
+6 -7
View File
@@ -5,7 +5,6 @@ import (
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/zfs"
@@ -32,7 +31,7 @@ func ReplicationCursor(ctx *platformtest.Context) {
}
fs := ds.ToString()
snap := fsversion(ctx, fs, "@1 with space")
snap := sendArgVersion(fs, "@1 with space")
destroyed, err := endpoint.MoveReplicationCursor(ctx, fs, &snap, jobid)
if err != nil {
@@ -40,7 +39,7 @@ func ReplicationCursor(ctx *platformtest.Context) {
}
assert.Empty(ctx, destroyed)
snapProps, err := zfs.ZFSGetFilesystemVersion(ctx, snap.FullPath(fs))
snapProps, err := zfs.ZFSGetCreateTXGAndGuid(snap.FullPath(fs))
if err != nil {
panic(err)
}
@@ -57,13 +56,13 @@ func ReplicationCursor(ctx *platformtest.Context) {
}
// try moving
cursor1BookmarkName, err := endpoint.ReplicationCursorBookmarkName(fs, snap.Guid, jobid)
cursor1BookmarkName, err := endpoint.ReplicationCursorBookmarkName(fs, snap.GUID, jobid)
require.NoError(ctx, err)
snap2 := fsversion(ctx, fs, "@2 with space")
snap2 := sendArgVersion(fs, "@2 with space")
destroyed, err = endpoint.MoveReplicationCursor(ctx, fs, &snap2, jobid)
require.NoError(ctx, err)
require.Equal(ctx, 1, len(destroyed))
require.Equal(ctx, endpoint.AbstractionReplicationCursorBookmarkV2, destroyed[0].GetType())
require.Equal(ctx, cursor1BookmarkName, destroyed[0].GetName())
require.Equal(ctx, zfs.Bookmark, destroyed[0].Type)
require.Equal(ctx, cursor1BookmarkName, destroyed[0].Name)
}
@@ -25,7 +25,7 @@ func ResumableRecvAndTokenHandling(ctx *platformtest.Context) {
src := makeDummyDataSnapshots(ctx, sendFS)
s := makeResumeSituation(ctx, src, recvFS, zfs.ZFSSendArgsUnvalidated{
s := makeResumeSituation(ctx, src, recvFS, zfs.ZFSSendArgs{
FS: sendFS,
To: src.snapA,
Encrypted: &zfs.NilBool{B: false},
@@ -40,7 +40,7 @@ func ResumableRecvAndTokenHandling(ctx *platformtest.Context) {
require.True(ctx, ok)
// we know that support on sendFS implies support on recvFS
// => assert that if we don't support resumed recv, the method returns ""
// => asser that if we don't support resumed recv, the method returns ""
tok, err := zfs.ZFSGetReceiveResumeTokenOrEmptyStringIfNotSupported(ctx, mustDatasetPath(recvFS))
check(err)
require.Equal(ctx, "", tok)
+1 -1
View File
@@ -16,7 +16,7 @@ type resumeTokenTest struct {
func (rtt *resumeTokenTest) Test(t *platformtest.Context) {
resumeSendSupported, err := zfs.ResumeSendSupported(t)
resumeSendSupported, err := zfs.ResumeSendSupported()
if err != nil {
t.Errorf("cannot determine whether resume supported: %T %s", err, err)
t.FailNow()
+32 -22
View File
@@ -23,9 +23,9 @@ func SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden(ctx *platformt
`)
fs := fmt.Sprintf("%s/send er", ctx.RootDataset)
props := mustGetFilesystemVersion(ctx, fs+"@a snap")
props := mustGetProps(fs + "@a snap")
sendArgs, err := zfs.ZFSSendArgsUnvalidated{
sendArgs := zfs.ZFSSendArgs{
FS: fs,
To: &zfs.ZFSSendArgVersion{
RelName: "@a snap",
@@ -33,15 +33,10 @@ func SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden(ctx *platformt
},
Encrypted: &zfs.NilBool{B: true},
ResumeToken: "",
}.Validate(ctx)
var stream *zfs.ReadCloserCopier
}
stream, err := zfs.ZFSSend(ctx, sendArgs)
if err == nil {
stream, err = zfs.ZFSSend(ctx, sendArgs) // no shadow
if err == nil {
defer stream.Close()
}
// fallthrough
defer stream.Close()
}
if expectNotSupportedErr {
@@ -63,7 +58,7 @@ func SendArgsValidationResumeTokenEncryptionMismatchForbidden(ctx *platformtest.
if !supported {
ctx.SkipNow()
}
supported, err = zfs.ResumeSendSupported(ctx)
supported, err = zfs.ResumeSendSupported()
check(err)
if !supported {
ctx.SkipNow()
@@ -81,7 +76,7 @@ func SendArgsValidationResumeTokenEncryptionMismatchForbidden(ctx *platformtest.
src := makeDummyDataSnapshots(ctx, sendFS)
unencS := makeResumeSituation(ctx, src, unencRecvFS, zfs.ZFSSendArgsUnvalidated{
unencS := makeResumeSituation(ctx, src, unencRecvFS, zfs.ZFSSendArgs{
FS: sendFS,
To: src.snapA,
Encrypted: &zfs.NilBool{B: false}, // !
@@ -90,7 +85,7 @@ func SendArgsValidationResumeTokenEncryptionMismatchForbidden(ctx *platformtest.
SavePartialRecvState: true,
})
encS := makeResumeSituation(ctx, src, encRecvFS, zfs.ZFSSendArgsUnvalidated{
encS := makeResumeSituation(ctx, src, encRecvFS, zfs.ZFSSendArgs{
FS: sendFS,
To: src.snapA,
Encrypted: &zfs.NilBool{B: true}, // !
@@ -102,10 +97,16 @@ func SendArgsValidationResumeTokenEncryptionMismatchForbidden(ctx *platformtest.
// threat model: use of a crafted resume token that requests an unencrypted send
// but send args require encrypted send
{
var maliciousSend zfs.ZFSSendArgsUnvalidated = encS.sendArgs
var maliciousSend zfs.ZFSSendArgs = encS.sendArgs
maliciousSend.ResumeToken = unencS.recvErrDecoded.ResumeTokenRaw
_, err := maliciousSend.Validate(ctx)
stream, err := zfs.ZFSSend(ctx, maliciousSend)
if err == nil {
defer stream.Close()
}
require.Nil(ctx, stream)
require.Error(ctx, err)
ctx.Logf("send err: %T %s", err, err)
validationErr, ok := err.(*zfs.ZFSSendArgsValidationError)
require.True(ctx, ok)
require.Equal(ctx, validationErr.What, zfs.ZFSSendArgsResumeTokenMismatch)
@@ -116,13 +117,17 @@ func SendArgsValidationResumeTokenEncryptionMismatchForbidden(ctx *platformtest.
require.Equal(ctx, mismatchError.What, zfs.ZFSSendArgsResumeTokenMismatchEncryptionNotSet)
}
// threat model: use of a crafted resume token that requests an encrypted send
// threat model: use of a crafted resume token that requests an encryped send
// but send args require unencrypted send
{
var maliciousSend zfs.ZFSSendArgsUnvalidated = unencS.sendArgs
var maliciousSend zfs.ZFSSendArgs = unencS.sendArgs
maliciousSend.ResumeToken = encS.recvErrDecoded.ResumeTokenRaw
_, err := maliciousSend.Validate(ctx)
stream, err := zfs.ZFSSend(ctx, maliciousSend)
if err == nil {
defer stream.Close()
}
require.Nil(ctx, stream)
require.Error(ctx, err)
ctx.Logf("send err: %T %s", err, err)
validationErr, ok := err.(*zfs.ZFSSendArgsValidationError)
@@ -144,7 +149,7 @@ func SendArgsValidationResumeTokenDifferentFilesystemForbidden(ctx *platformtest
if !supported {
ctx.SkipNow()
}
supported, err = zfs.ResumeSendSupported(ctx)
supported, err = zfs.ResumeSendSupported()
check(err)
if !supported {
ctx.SkipNow()
@@ -164,7 +169,7 @@ func SendArgsValidationResumeTokenDifferentFilesystemForbidden(ctx *platformtest
src1 := makeDummyDataSnapshots(ctx, sendFS1)
src2 := makeDummyDataSnapshots(ctx, sendFS2)
rs := makeResumeSituation(ctx, src1, recvFS, zfs.ZFSSendArgsUnvalidated{
rs := makeResumeSituation(ctx, src1, recvFS, zfs.ZFSSendArgs{
FS: sendFS1,
To: src1.snapA,
Encrypted: &zfs.NilBool{B: false},
@@ -175,7 +180,7 @@ func SendArgsValidationResumeTokenDifferentFilesystemForbidden(ctx *platformtest
// threat model: forged resume token tries to steal a full send of snapA on fs2 by
// presenting a resume token for full send of snapA on fs1
var maliciousSend zfs.ZFSSendArgsUnvalidated = zfs.ZFSSendArgsUnvalidated{
var maliciousSend zfs.ZFSSendArgs = zfs.ZFSSendArgs{
FS: sendFS2,
To: &zfs.ZFSSendArgVersion{
RelName: src2.snapA.RelName,
@@ -184,7 +189,12 @@ func SendArgsValidationResumeTokenDifferentFilesystemForbidden(ctx *platformtest
Encrypted: &zfs.NilBool{B: false},
ResumeToken: rs.recvErrDecoded.ResumeTokenRaw,
}
_, err = maliciousSend.Validate(ctx)
stream, err := zfs.ZFSSend(ctx, maliciousSend)
if err == nil {
defer stream.Close()
}
require.Nil(ctx, stream)
require.Error(ctx, err)
ctx.Logf("send err: %T %s", err, err)
validationErr, ok := err.(*zfs.ZFSSendArgsValidationError)
+5 -5
View File
@@ -18,6 +18,11 @@ var Cases = []Case{
UndestroyableSnapshotParsing,
GetNonexistent,
ReplicationCursor,
RollupReleaseIncluding,
RollupReleaseExcluding,
RollupReleaseMostRecentIsBookmarkWithoutSnapshot,
RollupReleaseMostRecentIsBookmarkAndSnapshotStillExists,
RollupReleaseMostRecentDoesntExist,
IdempotentHold,
IdempotentBookmark,
IdempotentDestroy,
@@ -26,9 +31,4 @@ var Cases = []Case{
SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden,
SendArgsValidationResumeTokenEncryptionMismatchForbidden,
SendArgsValidationResumeTokenDifferentFilesystemForbidden,
ListFilesystemVersionsTypeFilteringAndPrefix,
ListFilesystemVersionsFilesystemNotExist,
ListFilesystemVersionsFilesystemNotExist,
ListFilesystemVersionsUserrefs,
ListFilesystemsNoFilter,
}
@@ -20,7 +20,7 @@ func UndestroyableSnapshotParsing(t *platformtest.Context) {
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@4 5 6"
`)
err := zfs.ZFSDestroy(t, fmt.Sprintf("%s/foo bar@1 2 3,4 5 6,7 8 9", t.RootDataset))
err := zfs.ZFSDestroy(fmt.Sprintf("%s/foo bar@1 2 3,4 5 6,7 8 9", t.RootDataset))
if err == nil {
panic("expecting destroy error due to hold")
}
+10 -35
View File
@@ -18,32 +18,7 @@ Hence, when trying to map algorithm to implementation, use the code in package `
* the recv-side fs doesn't get newer snapshots than `to` in the meantime
* guaranteed because the zrepl model of the receiver assumes ownership of the filesystems it receives into
* if that assumption is broken, future replication attempts will fail with a conflict
* The [Algorithm for Planning and Executing Replication of an Filesystems](#zrepl-algo-filesystem) is a design draft and not used.
However, there were some noteworthy lessons learned when implementing the algorithm for a single step:
* In order to avoid leaking `step-hold`s and `step-bookmarks`, if the replication planner is invoked a second time after a replication step (either initial or incremental) has been attempted but failed to completed, the replication planner must
* A) either guarantee that it will resume that replication step, and continue as if nothing happened or
* B) release the step holds and bookmarks and clear the partially received state on the sending side.
* Option A is what we want to do: we use the step algorithm to achieve resumability in the first place!
* Option B is not done by zrepl except if the sending side doesn't support resuming.
In that case however, we need not release any holds since the behavior is to re-start the send
from the beginning.
* However, there is one **edge-case to Option A for initial replication**:
* If initial replication "`full a`" fails without leaving resumable state, the step holds on the sending side are still present, which makes sense because
* a) we want resumability and
* b) **the sending side cannot immediately be informed post-failure whether the initial replication left any state that would mandate keeping the step hold**, because the network connection might have failed.
* Thus, the sending side must keep the step hold for "`full a`" until it knows more.
* In the current implementation, it knows more when the next replication attempt is made, the planner is invoked, the diffing algorithm run, and the `HintMostRecentCommonAncestor` RPC is sent by the active side, communicating the most recent common version shared betwen sender and receiver.
* At this point, the sender can safely throw away any step holds with CreateTXG's older than that version.
* **The `step-hold`, `step-bookmark`, `last-received-hold` and `replication-cursor` abstractions are currently local concepts of package `endpoint` and not part of the replication protocol**
* This is not necessarilty the best design decision and should be revisited some point:
* The (quite expensive) `HintMostRecentCommonAncestor` RPC impl on the sender would not be necessary if step holds were part of the replication protocol:
* We only need the `HintMostRecentCommonAncestor` info for the aforementioned edge-case during initial replication, where the receive is aborted without any partial received state being stored on the receiver (due to network failure, wrong zfs invocation, bad permissions, etc):
* **The replication planner does not know about the step holds, thus it cannot deterministically pick up where it left of (right at the start of the last failing initial replication).**
* Instead, it will seem like no prior invocation happened at all, and it will apply its policy for initial replication to pick a new `full b != full a`, **thereby leaking the step holds of `full a`**.
* In contrast, if the replication planner created the step holds and knew about them, it could use the step holds as an indicator where it left off and re-start from there (of course asserting that the thereby inferred step is compatible with the state of the receiving side).
* (What we do in zrepl right now is to hard-code the initial replication policy, and hard-code that assumption in `endpoint.ListStale` as well.)
* The cummulative cleanup done in `HintMostRecentCommonAncestor` provides a nice self-healing aspect, though.
* The [Algorithm for Planning and Executing Replication of an Filesystems](#zrepl-algo-filesystem) is a design draft and not used
* We also have [Notes on Planning and Executing Replication of Multiple Filesystems](#zrepl-algo-multiple-filesystems-notes)
---
@@ -60,7 +35,7 @@ The algorithm **ensures resumability** of the replication step in presence of
* network failures at any time
* other instances of this algorithm executing the same step in parallel (e.g. concurrent replication to different destinations)
To accomplish this goal, the algorithm **assumes ownership of parts of the ZFS hold tag namespace and the bookmark namespace**:
To accomplish this goal, the algorithm **assumes ownersip of parts of the ZFS hold tag namespace and the bookmark namespace**:
* holds with prefix `zrepl_STEP` on any snapshot are reserved for zrepl
* bookmarks with prefix `zrepl_STEP` are reserved for zrepl
@@ -80,7 +55,7 @@ The replication step (full `to` send or `from => to` send) is *complete* iff the
Specifically, the algorithm may be invoked with the same `from` and `to` arguments, and potentially a `resume_token`, after a temporary (like network-related) failure:
**Unless permanent errors occur, repeated invocations of the algorithm with updated resume token will converge monotonically (but not strictly monotonically) toward completion.**
Note that the mere existence of `to` on the receiving side does not constitute completion, since there may still be post-recv actions to be performed on sender and receiver.
Note that the mere existence of `to` on the receiving side does not constitue completion, since there may still be post-recv actions to be performed on sender and receiver.
#### Job and Job ID
This algorithm supports that *multiple* instance of it run in parallel on the *same* step (full `to` / `from => to` pair).
@@ -142,7 +117,7 @@ Recv-side: no-op
# => doesn't work, because zfs recv is implemented as a `clone` internally, that's exactly what we want
```
- if recv-side `to` exists, goto cleanup-phase (no replication to do)
- if recv-side `to` exists, goto cleaup-phase (no replication to do)
- `to` cannot be destroyed while being received, because it isn't visible as a snapshot yet (it isn't yet one after all)
@@ -167,7 +142,7 @@ Network failures during replication can be recovered from using resumable send &
- Network failure during the replication
- send-side `from` and `to` are still present due to zfs holds
- recv-side `from` is still present because the partial receive state prevents its destruction (see prepare-phase)
- if recv-side has a resume token, the resume token will continue to work on the sender because `from`s and `to` are still present
- if recv-side hasa resume token, the resume token will continue to work on the sender because `from`s and `to` are still present
- Network failure at the end of the replication step stream transmission
- Variant A: failure from the sender's perspective, success from the receiver's perspective
- receive-side `to` doesn't have a hold and could be destroyed anytime
@@ -246,7 +221,7 @@ It builds a diff between the sender and receiver filesystem bookmarks+snapshots
In case of conflict, the algorithm errors out with a conflict description that can be used to manually or automatically resolve the conflict.
Otherwise, the algorithm builds a list of replication steps that are then worked on sequentially by the "Algorithm for a Single Replication Step".
The algorithm ensures that a plan can be executed exactly as planned by acquiring appropriate zfs holds.
The algorithm ensures that a plan can be executed exactly as planned by aquiring appropriate zfs holds.
The algorithm can be configured to retry a plan when encountering non-permanent errors (e.g. network errors).
However, permanent errors result in the plan being cancelled.
@@ -287,22 +262,22 @@ If fast-forward is not possible, produce a conflict description and ERROR OUT.<b
TODOs:
- make it configurable what snapshots are included in the list (i.e. every one we see, only most recent, at least one every X hours, ...)
**Ensure that we will be able to carry out all steps** by acquiring holds or fsstep bookmarks on the sending side
**Ensure that we will be able to carry out all steps** by aquiring holds or fsstep bookmarks on the sending side
- `idempotent_hold([s.to for s in STEPS], zrepl_FS_J_${jobid})`
- `if STEPS[0].from != nil: idempotent_FSSTEP_bookmark(STEPS[0].from, zrepl_FSSTEP_bm_G_${STEPS[0].from.guid}_J_${jobid})`
**Determine which steps have not been completed (`uncompleted_steps`)** (we might be in an second invocation of this algorithm after a network failure and some steps might already be done):
- `res_tok := receiver.ResumeToken(fs)`
- `rmrfsv := receiver.MostRecentFilesystemVersion(fs)`
- if `res_tok != nil`: ensure that `res_tok` has a corresponding step in `STEPS`, otherwise ERROR OUT
- if `rmrfsv != nil`: ensure that `res_tok` has a corresponding step in `STEPS`, otherwise ERROR OUT
- if `res_tok != nil`: ensure that `res_tok` has a correspondinng step in `STEPS`, otherwise ERROR OUT
- if `rmrfsv != nil`: ensure that `res_tok` has a correspondinng step in `STEPS`, otherwise ERROR OUT
- if `(res_token != nil && rmrfsv != nil)`: ensure that `res_tok` is the subsequent step to the one we found for `rmrfsv`
- if both are nil, we are at the beginning, `uncompleted_steps = STEPS` and goto next block
- `rstep := if res_tok != nil { res_tok } else { rmrfsv }`
- `uncompleted_steps := STEPS[find_step_idx(STEPS, rstep).expect("must exist, checked above"):]`
- Note that we do not explicitly check for the completion of prior replication steps.
All we care about is what needs to be done from `rstep`.
- This is intentional and necessary because we cumulatively release all holds and step bookmarks made for steps that precede a just-completed step (see next paragraph)
- This is intentional and necessary because we cummutatively release all holds and step bookmarks made for steps that preceed a just-completed step (see next paragraph)
**Execute uncompleted steps**<br/>
Invoke the "Algorithm for a Single Replication Step" for each step in `uncompleted_steps`.
+32 -35
View File
@@ -352,10 +352,10 @@ func (a *attempt) do(ctx context.Context, prev *attempt) {
}
}
}
// invariant: prevs contains an entry for each unambiguous correspondence
// invariant: prevs contains an entry for each unambigious correspondence
stepQueue := newStepQueue()
defer stepQueue.Start(envconst.Int("ZREPL_REPLICATION_EXPERIMENTAL_REPLICATION_CONCURRENCY", 1))() // TODO parallel replication
defer stepQueue.Start(1)() // TODO parallel replication
var fssesDone sync.WaitGroup
for _, f := range a.fss {
fssesDone.Add(1)
@@ -370,57 +370,54 @@ func (a *attempt) do(ctx context.Context, prev *attempt) {
a.finishedAt = time.Now()
}
func (f *fs) debug(format string, args ...interface{}) {
debugPrefix("fs=%s", f.fs.ReportInfo().Name)(format, args...)
}
func (fs *fs) do(ctx context.Context, pq *stepQueue, prev *fs) {
func (f *fs) do(ctx context.Context, pq *stepQueue, prev *fs) {
defer f.l.Lock().Unlock()
defer fs.l.Lock().Unlock()
// get planned steps from replication logic
var psteps []Step
var errTime time.Time
var err error
f.l.DropWhile(func() {
fs.l.DropWhile(func() {
// TODO hacky
// choose target time that is earlier than any snapshot, so fs planning is always prioritized
targetDate := time.Unix(0, 0)
defer pq.WaitReady(f, targetDate)()
psteps, err = f.fs.PlanFS(ctx) // no shadow
errTime = time.Now() // no shadow
defer pq.WaitReady(fs, targetDate)()
psteps, err = fs.fs.PlanFS(ctx) // no shadow
errTime = time.Now() // no shadow
})
f.planning.done = true
debug := debugPrefix("fs=%s", fs.fs.ReportInfo().Name)
fs.planning.done = true
if err != nil {
f.planning.err = newTimedError(err, errTime)
fs.planning.err = newTimedError(err, errTime)
return
}
for _, pstep := range psteps {
step := &step{
l: f.l,
l: fs.l,
step: pstep,
}
f.planned.steps = append(f.planned.steps, step)
fs.planned.steps = append(fs.planned.steps, step)
}
f.debug("initial len(fs.planned.steps) = %d", len(f.planned.steps))
debug("iniital len(fs.planned.steps) = %d", len(fs.planned.steps))
// for not-first attempts, only allow fs.planned.steps
// up to including the originally planned target snapshot
if prev != nil && prev.planning.done && prev.planning.err == nil {
prevUncompleted := prev.planned.steps[prev.planned.step:]
if len(prevUncompleted) == 0 {
f.debug("prevUncompleted is empty")
debug("prevUncompleted is empty")
return
}
if len(f.planned.steps) == 0 {
f.debug("fs.planned.steps is empty")
if len(fs.planned.steps) == 0 {
debug("fs.planned.steps is empty")
return
}
prevFailed := prevUncompleted[0]
curFirst := f.planned.steps[0]
curFirst := fs.planned.steps[0]
// we assume that PlanFS retries prevFailed (using curFirst)
if !prevFailed.step.TargetEquals(curFirst.step) {
f.debug("Targets don't match")
debug("Targets don't match")
// Two options:
// A: planning algorithm is broken
// B: manual user intervention inbetween
@@ -436,43 +433,43 @@ func (f *fs) do(ctx context.Context, pq *stepQueue, prev *fs) {
}
msg := fmt.Sprintf("last attempt's uncompleted step %s does not correspond to this attempt's first planned step %s",
stepFmt(prevFailed), stepFmt(curFirst))
f.planned.stepErr = newTimedError(errors.New(msg), time.Now())
fs.planned.stepErr = newTimedError(errors.New(msg), time.Now())
return
}
// only allow until step targets diverge
min := len(prevUncompleted)
if min > len(f.planned.steps) {
min = len(f.planned.steps)
if min > len(fs.planned.steps) {
min = len(fs.planned.steps)
}
diverge := 0
for ; diverge < min; diverge++ {
f.debug("diverge compare iteration %d", diverge)
if !f.planned.steps[diverge].step.TargetEquals(prevUncompleted[diverge].step) {
debug("diverge compare iteration %d", diverge)
if !fs.planned.steps[diverge].step.TargetEquals(prevUncompleted[diverge].step) {
break
}
}
f.debug("diverge is %d", diverge)
f.planned.steps = f.planned.steps[0:diverge]
debug("diverge is %d", diverge)
fs.planned.steps = fs.planned.steps[0:diverge]
}
f.debug("post-prev-merge len(fs.planned.steps) = %d", len(f.planned.steps))
debug("post-prev-merge len(fs.planned.steps) = %d", len(fs.planned.steps))
for i, s := range f.planned.steps {
for i, s := range fs.planned.steps {
var (
err error
errTime time.Time
)
// lock must not be held while executing step in order for reporting to work
f.l.DropWhile(func() {
fs.l.DropWhile(func() {
targetDate := s.step.TargetDate()
defer pq.WaitReady(f, targetDate)()
defer pq.WaitReady(fs, targetDate)()
err = s.step.Step(ctx) // no shadow
errTime = time.Now() // no shadow
})
if err != nil {
f.planned.stepErr = newTimedError(err, errTime)
fs.planned.stepErr = newTimedError(err, errTime)
break
}
f.planned.step = i + 1 // fs.planned.step must be == len(fs.planned.steps) if all went OK
fs.planned.step = i + 1 // fs.planned.step must be == len(fs.planned.steps) if all went OK
}
}
@@ -8,12 +8,12 @@ import (
type Logger = logger.Logger
type contextKey int
type contexKey int
const contextKeyLogger contextKey = iota + 1
const contexKeyLogger contexKey = iota + 1
func getLog(ctx context.Context) Logger {
l, ok := ctx.Value(contextKeyLogger).(Logger)
l, ok := ctx.Value(contexKeyLogger).(Logger)
if !ok {
l = logger.NewNullLogger()
}
@@ -21,5 +21,5 @@ func getLog(ctx context.Context) Logger {
}
func WithLogger(ctx context.Context, log Logger) context.Context {
return context.WithValue(ctx, contextKeyLogger, log)
return context.WithValue(ctx, contexKeyLogger, log)
}
@@ -174,7 +174,7 @@ func TestReplication(t *testing.T) {
waitBegin := time.Now()
wait(true)
waitDuration := time.Since(waitBegin)
assert.True(t, waitDuration < 10*time.Millisecond, "%v", waitDuration) // and that's gracious
assert.True(t, waitDuration < 10*time.Millisecond, "%v", waitDuration) // and that's gratious
prev, err := json.Marshal(reports[0])
require.NoError(t, err)
@@ -14,7 +14,7 @@ import (
)
// FIXME: this test relies on timing and is thus rather flaky
// (relies on scheduler responsiveness of < 500ms)
// (relies on scheduler responsivity of < 500ms)
func TestPqNotconcurrent(t *testing.T) {
var ctr uint32
q := newStepQueue()
+2 -2
View File
@@ -17,7 +17,7 @@ func fsvlist(fsv ...string) (r []*FilesystemVersion) {
r = make([]*FilesystemVersion, len(fsv))
for i, f := range fsv {
// parse the id from fsvlist. it is used to derive Guid,CreateTXG and Creation attrs
// parse the id from fsvlist. it is used to derivce Guid,CreateTXG and Creation attrs
split := strings.Split(f, ",")
if len(split) != 2 {
panic("invalid fsv spec")
@@ -114,7 +114,7 @@ func TestIncrementalPath_BookmarkSupport(t *testing.T) {
assert.Equal(t, l("#a,1", "@b,2"), path)
})
// bookmarks are stripped from IncrementalPath (cannot send incrementally)
// boomarks are stripped from IncrementalPath (cannot send incrementally)
doTest(l("@a,1"), l("#a,1", "#b,2", "@c,3"), func(path []*FilesystemVersion, conflict error) {
assert.Equal(t, l("#a,1", "@c,3"), path)
})
+28 -37
View File
@@ -46,7 +46,7 @@ func (x Tri) String() string {
return proto.EnumName(Tri_name, int32(x))
}
func (Tri) EnumDescriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{0}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{0}
}
type FilesystemVersion_VersionType int32
@@ -69,7 +69,7 @@ func (x FilesystemVersion_VersionType) String() string {
return proto.EnumName(FilesystemVersion_VersionType_name, int32(x))
}
func (FilesystemVersion_VersionType) EnumDescriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{5, 0}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{5, 0}
}
type ListFilesystemReq struct {
@@ -82,7 +82,7 @@ func (m *ListFilesystemReq) Reset() { *m = ListFilesystemReq{} }
func (m *ListFilesystemReq) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemReq) ProtoMessage() {}
func (*ListFilesystemReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{0}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{0}
}
func (m *ListFilesystemReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemReq.Unmarshal(m, b)
@@ -113,7 +113,7 @@ func (m *ListFilesystemRes) Reset() { *m = ListFilesystemRes{} }
func (m *ListFilesystemRes) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemRes) ProtoMessage() {}
func (*ListFilesystemRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{1}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{1}
}
func (m *ListFilesystemRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemRes.Unmarshal(m, b)
@@ -154,7 +154,7 @@ func (m *Filesystem) Reset() { *m = Filesystem{} }
func (m *Filesystem) String() string { return proto.CompactTextString(m) }
func (*Filesystem) ProtoMessage() {}
func (*Filesystem) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{2}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{2}
}
func (m *Filesystem) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_Filesystem.Unmarshal(m, b)
@@ -213,7 +213,7 @@ func (m *ListFilesystemVersionsReq) Reset() { *m = ListFilesystemVersion
func (m *ListFilesystemVersionsReq) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemVersionsReq) ProtoMessage() {}
func (*ListFilesystemVersionsReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{3}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{3}
}
func (m *ListFilesystemVersionsReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemVersionsReq.Unmarshal(m, b)
@@ -251,7 +251,7 @@ func (m *ListFilesystemVersionsRes) Reset() { *m = ListFilesystemVersion
func (m *ListFilesystemVersionsRes) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemVersionsRes) ProtoMessage() {}
func (*ListFilesystemVersionsRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{4}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{4}
}
func (m *ListFilesystemVersionsRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemVersionsRes.Unmarshal(m, b)
@@ -293,7 +293,7 @@ func (m *FilesystemVersion) Reset() { *m = FilesystemVersion{} }
func (m *FilesystemVersion) String() string { return proto.CompactTextString(m) }
func (*FilesystemVersion) ProtoMessage() {}
func (*FilesystemVersion) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{5}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{5}
}
func (m *FilesystemVersion) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_FilesystemVersion.Unmarshal(m, b)
@@ -371,7 +371,7 @@ func (m *SendReq) Reset() { *m = SendReq{} }
func (m *SendReq) String() string { return proto.CompactTextString(m) }
func (*SendReq) ProtoMessage() {}
func (*SendReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{6}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{6}
}
func (m *SendReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendReq.Unmarshal(m, b)
@@ -445,7 +445,7 @@ func (m *Property) Reset() { *m = Property{} }
func (m *Property) String() string { return proto.CompactTextString(m) }
func (*Property) ProtoMessage() {}
func (*Property) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{7}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{7}
}
func (m *Property) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_Property.Unmarshal(m, b)
@@ -496,7 +496,7 @@ func (m *SendRes) Reset() { *m = SendRes{} }
func (m *SendRes) String() string { return proto.CompactTextString(m) }
func (*SendRes) ProtoMessage() {}
func (*SendRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{8}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{8}
}
func (m *SendRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendRes.Unmarshal(m, b)
@@ -548,7 +548,7 @@ func (m *SendCompletedReq) Reset() { *m = SendCompletedReq{} }
func (m *SendCompletedReq) String() string { return proto.CompactTextString(m) }
func (*SendCompletedReq) ProtoMessage() {}
func (*SendCompletedReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{9}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{9}
}
func (m *SendCompletedReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendCompletedReq.Unmarshal(m, b)
@@ -585,7 +585,7 @@ func (m *SendCompletedRes) Reset() { *m = SendCompletedRes{} }
func (m *SendCompletedRes) String() string { return proto.CompactTextString(m) }
func (*SendCompletedRes) ProtoMessage() {}
func (*SendCompletedRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{10}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{10}
}
func (m *SendCompletedRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendCompletedRes.Unmarshal(m, b)
@@ -608,7 +608,7 @@ var xxx_messageInfo_SendCompletedRes proto.InternalMessageInfo
type ReceiveReq struct {
Filesystem string `protobuf:"bytes,1,opt,name=Filesystem,proto3" json:"Filesystem,omitempty"`
To *FilesystemVersion `protobuf:"bytes,2,opt,name=To,proto3" json:"To,omitempty"`
// If true, the receiver should clear the resume token before performing the
// If true, the receiver should clear the resume token before perfoming the
// zfs recv of the stream in the request
ClearResumeToken bool `protobuf:"varint,3,opt,name=ClearResumeToken,proto3" json:"ClearResumeToken,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
@@ -620,7 +620,7 @@ func (m *ReceiveReq) Reset() { *m = ReceiveReq{} }
func (m *ReceiveReq) String() string { return proto.CompactTextString(m) }
func (*ReceiveReq) ProtoMessage() {}
func (*ReceiveReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{11}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{11}
}
func (m *ReceiveReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReceiveReq.Unmarshal(m, b)
@@ -671,7 +671,7 @@ func (m *ReceiveRes) Reset() { *m = ReceiveRes{} }
func (m *ReceiveRes) String() string { return proto.CompactTextString(m) }
func (*ReceiveRes) ProtoMessage() {}
func (*ReceiveRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{12}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{12}
}
func (m *ReceiveRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReceiveRes.Unmarshal(m, b)
@@ -704,7 +704,7 @@ func (m *DestroySnapshotsReq) Reset() { *m = DestroySnapshotsReq{} }
func (m *DestroySnapshotsReq) String() string { return proto.CompactTextString(m) }
func (*DestroySnapshotsReq) ProtoMessage() {}
func (*DestroySnapshotsReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{13}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{13}
}
func (m *DestroySnapshotsReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_DestroySnapshotsReq.Unmarshal(m, b)
@@ -750,7 +750,7 @@ func (m *DestroySnapshotRes) Reset() { *m = DestroySnapshotRes{} }
func (m *DestroySnapshotRes) String() string { return proto.CompactTextString(m) }
func (*DestroySnapshotRes) ProtoMessage() {}
func (*DestroySnapshotRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{14}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{14}
}
func (m *DestroySnapshotRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_DestroySnapshotRes.Unmarshal(m, b)
@@ -795,7 +795,7 @@ func (m *DestroySnapshotsRes) Reset() { *m = DestroySnapshotsRes{} }
func (m *DestroySnapshotsRes) String() string { return proto.CompactTextString(m) }
func (*DestroySnapshotsRes) ProtoMessage() {}
func (*DestroySnapshotsRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{15}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{15}
}
func (m *DestroySnapshotsRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_DestroySnapshotsRes.Unmarshal(m, b)
@@ -833,7 +833,7 @@ func (m *ReplicationCursorReq) Reset() { *m = ReplicationCursorReq{} }
func (m *ReplicationCursorReq) String() string { return proto.CompactTextString(m) }
func (*ReplicationCursorReq) ProtoMessage() {}
func (*ReplicationCursorReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{16}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{16}
}
func (m *ReplicationCursorReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReplicationCursorReq.Unmarshal(m, b)
@@ -874,7 +874,7 @@ func (m *ReplicationCursorRes) Reset() { *m = ReplicationCursorRes{} }
func (m *ReplicationCursorRes) String() string { return proto.CompactTextString(m) }
func (*ReplicationCursorRes) ProtoMessage() {}
func (*ReplicationCursorRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{17}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{17}
}
func (m *ReplicationCursorRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReplicationCursorRes.Unmarshal(m, b)
@@ -1010,7 +1010,7 @@ func (m *PingReq) Reset() { *m = PingReq{} }
func (m *PingReq) String() string { return proto.CompactTextString(m) }
func (*PingReq) ProtoMessage() {}
func (*PingReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{18}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{18}
}
func (m *PingReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_PingReq.Unmarshal(m, b)
@@ -1049,7 +1049,7 @@ func (m *PingRes) Reset() { *m = PingRes{} }
func (m *PingRes) String() string { return proto.CompactTextString(m) }
func (*PingRes) ProtoMessage() {}
func (*PingRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{19}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{19}
}
func (m *PingRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_PingRes.Unmarshal(m, b)
@@ -1077,16 +1077,7 @@ func (m *PingRes) GetEcho() string {
}
type HintMostRecentCommonAncestorReq struct {
Filesystem string `protobuf:"bytes,1,opt,name=Filesystem,proto3" json:"Filesystem,omitempty"`
// A copy of the FilesystemVersion on the sending side that the replication
// algorithm identified as a shared most recent common version between sending
// and receiving side.
//
// If nil, this is an indication that the replication algorithm could not
// find a common ancestor between the two sides.
// NOTE: nilness does not mean that replication never happened - there could
// as well be a replication conflict. thus, dont' jump to conclusions too
// rapidly here.
Filesystem string `protobuf:"bytes,1,opt,name=Filesystem,proto3" json:"Filesystem,omitempty"`
SenderVersion *FilesystemVersion `protobuf:"bytes,2,opt,name=SenderVersion,proto3" json:"SenderVersion,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
@@ -1097,7 +1088,7 @@ func (m *HintMostRecentCommonAncestorReq) Reset() { *m = HintMostRecentC
func (m *HintMostRecentCommonAncestorReq) String() string { return proto.CompactTextString(m) }
func (*HintMostRecentCommonAncestorReq) ProtoMessage() {}
func (*HintMostRecentCommonAncestorReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{20}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{20}
}
func (m *HintMostRecentCommonAncestorReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_HintMostRecentCommonAncestorReq.Unmarshal(m, b)
@@ -1141,7 +1132,7 @@ func (m *HintMostRecentCommonAncestorRes) Reset() { *m = HintMostRecentC
func (m *HintMostRecentCommonAncestorRes) String() string { return proto.CompactTextString(m) }
func (*HintMostRecentCommonAncestorRes) ProtoMessage() {}
func (*HintMostRecentCommonAncestorRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_e59763dc61674a79, []int{21}
return fileDescriptor_pdu_0f43b713cd3bf056, []int{21}
}
func (m *HintMostRecentCommonAncestorRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_HintMostRecentCommonAncestorRes.Unmarshal(m, b)
@@ -1458,9 +1449,9 @@ var _Replication_serviceDesc = grpc.ServiceDesc{
Metadata: "pdu.proto",
}
func init() { proto.RegisterFile("pdu.proto", fileDescriptor_pdu_e59763dc61674a79) }
func init() { proto.RegisterFile("pdu.proto", fileDescriptor_pdu_0f43b713cd3bf056) }
var fileDescriptor_pdu_e59763dc61674a79 = []byte{
var fileDescriptor_pdu_0f43b713cd3bf056 = []byte{
// 892 bytes of a gzipped FileDescriptorProto
0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0x8c, 0x56, 0xdf, 0x6f, 0xdb, 0x36,
0x10, 0x8e, 0x6c, 0x39, 0x91, 0xcf, 0xe9, 0xea, 0x5c, 0xb2, 0x42, 0x13, 0xba, 0xce, 0xe3, 0x86,
+3 -13
View File
@@ -91,7 +91,7 @@ message ReceiveReq {
string Filesystem = 1;
FilesystemVersion To = 2;
// If true, the receiver should clear the resume token before performing the
// If true, the receiver should clear the resume token before perfoming the
// zfs recv of the stream in the request
bool ClearResumeToken = 3;
}
@@ -128,17 +128,7 @@ message PingRes {
}
message HintMostRecentCommonAncestorReq {
string Filesystem = 1;
// A copy of the FilesystemVersion on the sending side that the replication
// algorithm identified as a shared most recent common version between sending
// and receiving side.
//
// If nil, this is an indication that the replication algorithm could not
// find a common ancestor between the two sides.
// NOTE: nilness does not mean that replication never happened - there could
// as well be a replication conflict. thus, dont' jump to conclusions too
// rapidly here.
FilesystemVersion SenderVersion = 2;
string Filesystem = 1;
FilesystemVersion SenderVersion = 2;
}
message HintMostRecentCommonAncestorRes {}
+7 -6
View File
@@ -234,7 +234,6 @@ func resolveConflict(conflict error) (path []*pdu.FilesystemVersion, msg string)
if noCommonAncestor, ok := conflict.(*ConflictNoCommonAncestor); ok {
if len(noCommonAncestor.SortedReceiverVersions) == 0 {
// TODO this is hard-coded replication policy: most recent snapshot as source
// NOTE: Keep in sync with listStaleFiltering, it depends on this hard-coded assumption
var mostRecentSnap *pdu.FilesystemVersion
for n := len(noCommonAncestor.SortedSenderVersions) - 1; n >= 0; n-- {
if noCommonAncestor.SortedSenderVersions[n].Type == pdu.FilesystemVersion_Snapshot {
@@ -263,6 +262,7 @@ func (p *Planner) doPlanning(ctx context.Context) ([]*Filesystem, error) {
return nil, err
}
sfss := slfssres.GetFilesystems()
// no progress here since we could run in a live-lock on connectivity issues
rlfssres, err := p.receiver.ListFilesystems(ctx, &pdu.ListFilesystemReq{})
if err != nil {
@@ -352,19 +352,18 @@ func (fs *Filesystem) doPlanning(ctx context.Context) ([]*Step, error) {
log.WithField("token", resumeToken).Debug("decode resume token")
}
// give both sides a hint about how far prior replication attempts got
// give both sides a hint about how far the replication got
// This serves as a cummulative variant of SendCompleted and can be useful
// for example to release stale holds from an earlier (interrupted) replication.
// TODO FIXME: enqueue this as a replication step instead of doing it here during planning
// then again, the step should run regardless of planning success
// so maybe a separate phase before PLANNING, then?
path, conflict := IncrementalPath(rfsvs, sfsvs)
var sender_mrca *pdu.FilesystemVersion
var sender_mrca *pdu.FilesystemVersion // from sfsvs
if conflict == nil && len(path) > 0 {
sender_mrca = path[0] // shadow
}
// yes, sender_mrca may be nil, indicating that we do not have an mrca
{
if sender_mrca != nil {
var wg sync.WaitGroup
doHint := func(ep Endpoint, name string) {
defer wg.Done()
@@ -384,6 +383,8 @@ func (fs *Filesystem) doPlanning(ctx context.Context) ([]*Step, error) {
go doHint(fs.sender, "sender")
go doHint(fs.receiver, "receiver")
wg.Wait()
} else {
log.Debug("cannot identify most recent common ancestor, skipping hint")
}
var steps []*Step
@@ -602,7 +603,7 @@ func (s *Step) doReplication(ctx context.Context) error {
fs := s.parent.Path
log := getLogger(ctx).WithField("filesystem", fs)
log := getLogger(ctx)
sr := s.buildSendRequest(false)
log.Debug("initiate send request")
+1 -1
View File
@@ -52,7 +52,7 @@ func (s *streamCopier) WriteStreamTo(w io.Writer) zfs.StreamCopierError {
s.mtx.Lock()
defer s.mtx.Unlock()
if s.used {
panic("streamCopier used multiple times")
panic("streamCopier used mulitple times")
}
s.used = true
return s.streamConn.ReadStreamInto(w, ZFSStream)
+6 -6
View File
@@ -100,7 +100,7 @@ func (c *Conn) ReadFrame() (Frame, error) {
return Frame{}, ErrShutdown
}
// only acquire readMtx now to prioritize the draining in Shutdown()
// only aquire readMtx now to prioritize the draining in Shutdown()
// over external callers (= drain public callers)
c.readMtx.Lock()
@@ -148,7 +148,7 @@ func (c *Conn) readFrame() (Frame, error) {
// | | | |
// | | | F3
// | | |
// | F2 |significant time between frames because
// | F2 |signficant time between frames because
// F1 the peer has nothing to say to us
//
// Assume we're at the point were F2's header is in c.readNext.
@@ -246,7 +246,7 @@ func (c *Conn) Shutdown(deadline time.Time) error {
//
// 1. Naive Option: We just call Close() right after CloseWrite.
// This yields the same race condition as explained above (DIF, first
// paragraph): The situation just became a little more unlikely because
// paragraph): The situation just becomae a little more unlikely because
// our rstFrameType + CloseWrite dance gave the client a full RTT worth of
// time to read the data from its TCP recv buffer.
//
@@ -295,7 +295,7 @@ func (c *Conn) Shutdown(deadline time.Time) error {
defer prometheus.NewTimer(prom.ShutdownSeconds).ObserveDuration()
closeWire := func(step string) error {
// TODO SetLinger(0) or similar (we want RST frames here, not FINS)
// TODO SetLinger(0) or similiar (we want RST frames here, not FINS)
closeErr := c.nc.Close()
if closeErr == nil {
return nil
@@ -321,10 +321,10 @@ func (c *Conn) Shutdown(deadline time.Time) error {
c.shutdown.Begin()
// new calls to c.ReadFrame and c.WriteFrame will now return ErrShutdown
// Acquiring writeMtx and readMtx afterwards ensures that already-running calls exit successfully
// Aquiring writeMtx and readMtx afterwards ensures that already-running calls exit successfully
// disable renewing timeouts now, enforce the requested deadline instead
// we need to do this before acquiring locks to enforce the timeout on slow
// we need to do this before aquiring locks to enforce the timeout on slow
// clients / if something hangs (DoS mitigation)
if err := c.nc.DisableTimeouts(); err != nil {
return hardclose(err, "disable_timeouts")
@@ -1,4 +1,4 @@
// microbenchmark to manually test rpc/dataconn performance
// microbenchmark to manually test rpc/dataconn perforamnce
//
// With stdin / stdout on client and server, simulating zfs send|recv piping
//
@@ -6,7 +6,7 @@
// ./microbenchmark -appmode client -direction recv < /dev/zero
//
//
// Without the overhead of pipes (just protocol performance, mostly useful with perf bc no bw measurement)
// Without the overhead of pipes (just protocol perforamnce, mostly useful with perf bc no bw measurement)
//
// ./microbenchmark -appmode client -direction recv -devnoopWriter -devnoopReader
// ./microbenchmark -appmode server -devnoopReader -devnoopWriter
+4 -4
View File
@@ -49,7 +49,7 @@ type Wire interface {
// No data that could otherwise be Read is lost as a consequence of this call.
// The use case for this API is abortive connection shutdown.
// To provide any value over draining Wire using io.Read, an implementation
// will likely use out-of-band messaging mechanisms.
// will likely use out-of-bounds messaging mechanisms.
// TODO WaitForPeerClose() (supported bool, err error)
}
@@ -119,7 +119,7 @@ restart:
return n, err
}
// Writes the given buffers to Conn, following the semantics of io.Copy,
// Writes the given buffers to Conn, following the sematincs of io.Copy,
// but is guaranteed to use the writev system call if the wrapped Wire
// support it.
// Note the Conn does not support writev through io.Copy(aConn, aNetBuffers).
@@ -158,9 +158,9 @@ var _ SyscallConner = (*net.TCPConn)(nil)
// Think of io.ReadvFull, but for net.Buffers + using the readv syscall.
//
// If the underlying Wire is not a SyscallConner, a fallback
// implementation based on repeated Conn.Read invocations is used.
// ipmlementation based on repeated Conn.Read invocations is used.
//
// If the connection returned io.EOF, the number of bytes written until
// If the connection returned io.EOF, the number of bytes up ritten until
// then + io.EOF is returned. This behavior is different to io.ReadFull
// which returns io.ErrUnexpectedEOF.
func (c Conn) ReadvFull(buffers net.Buffers) (n int64, err error) {
+1 -1
View File
@@ -99,7 +99,7 @@ func (c Conn) doOneReadv(rawConn syscall.RawConn, iovecs *[]syscall.Iovec) (n in
// Update left, cannot go below 0 due to
// a) definition of thisIovecConsumedCompletely
// b) left > 0 due to loop invariant
// Converting .Len to int64 is thus also safe now, because it is < left < INT_MAX
// Convertion .Len to int64 is thus also safe now, because it is < left < INT_MAX
left -= int((*iovecs)[0].Len)
*iovecs = (*iovecs)[1:]
} else {
+1 -1
View File
@@ -152,7 +152,7 @@ func (m *HandshakeMessage) DecodeReader(r io.Reader, maxLen int) error {
func DoHandshakeCurrentVersion(conn net.Conn, deadline time.Time) *HandshakeError {
// current protocol version is hardcoded here
return DoHandshakeVersion(conn, deadline, 3)
return DoHandshakeVersion(conn, deadline, 2)
}
const HandshakeMessageMaxLen = 16 * 4096
+2 -1
View File
@@ -56,7 +56,7 @@ func NewClientAuthListener(
}
// Accept() accepts a connection from the *net.TCPListener passed to the constructor
// and sets up the TLS connection, including handshake and peer CommonName validation
// and sets up the TLS connection, including handshake and peer CommmonName validation
// within the specified handshakeTimeout.
//
// It returns both the raw TCP connection (tcpConn) and the TLS connection (tlsConn) on top of it.
@@ -121,6 +121,7 @@ func ClientAuthClient(serverName string, rootCA *x509.CertPool, clientCert tls.C
ServerName: serverName,
KeyLogWriter: keylogFromEnv(),
}
tlsConfig.BuildNameToCertificate()
return tlsConfig, nil
}
+2 -2
View File
@@ -100,7 +100,7 @@ func (l *LocalListener) Accept(ctx context.Context) (*transport.AuthConn, error)
WithField("res.conn", res.conn).WithField("res.err", res.err).
Debug("responding to client request")
// contract between Connect and Accept is that Connect sends a req.callback
// contract bewteen Connect and Accept is that Connect sends a req.callback
// into which we can send one result non-blockingly.
// We want to panic if that contract is violated (impl error)
//
@@ -112,7 +112,7 @@ func (l *LocalListener) Accept(ctx context.Context) (*transport.AuthConn, error)
defer func() {
errv := recover()
if errv == clientCallbackBlocked {
// this would be a violation of contract between Connect and Accept, see above
// this would be a violation of contract betwee Connect and Accept, see above
panic(clientCallbackBlocked)
} else {
transport.GetLogger(ctx).WithField("recover_err", errv).
+1 -1
View File
@@ -116,7 +116,7 @@ func (m *MultiStdinserverListener) Close() error {
return oneErr
}
// a single stdinserverListener (part of multiStdinserverListener)
// a single stdinserverListener (part of multiStinserverListener)
type stdinserverListener struct {
l *netssh.Listener
clientIdentity string
+36 -6
View File
@@ -11,6 +11,39 @@ import (
"github.com/zrepl/zrepl/util/tcpsock"
)
type ipMapEntry struct {
ip net.IP
ident string
}
type ipMap struct {
entries []ipMapEntry
}
func ipMapFromConfig(clients map[string]string) (*ipMap, error) {
entries := make([]ipMapEntry, 0, len(clients))
for clientIPString, clientIdent := range clients {
clientIP := net.ParseIP(clientIPString)
if clientIP == nil {
return nil, errors.Errorf("cannot parse client IP %q", clientIPString)
}
if err := transport.ValidateClientIdentity(clientIdent); err != nil {
return nil, errors.Wrapf(err, "invalid client identity for IP %q", clientIPString)
}
entries = append(entries, ipMapEntry{clientIP, clientIdent})
}
return &ipMap{entries: entries}, nil
}
func (m *ipMap) Get(ip net.IP) (string, error) {
for _, e := range m.entries {
if e.ip.Equal(ip) {
return e.ident, nil
}
}
return "", errors.Errorf("no identity mapping for client IP %s", ip)
}
func TCPListenerFactoryFromConfig(c *config.Global, in *config.TCPServe) (transport.AuthenticatedListenerFactory, error) {
clientMap, err := ipMapFromConfig(in.Clients)
if err != nil {
@@ -36,13 +69,10 @@ func (f *TCPAuthListener) Accept(ctx context.Context) (*transport.AuthConn, erro
if err != nil {
return nil, err
}
clientAddr := &net.IPAddr{
IP: nc.RemoteAddr().(*net.TCPAddr).IP,
Zone: nc.RemoteAddr().(*net.TCPAddr).Zone,
}
clientIdent, err := f.clientMap.Get(clientAddr)
clientIP := nc.RemoteAddr().(*net.TCPAddr).IP
clientIdent, err := f.clientMap.Get(clientIP)
if err != nil {
transport.GetLogger(ctx).WithField("ipaddr", clientAddr).Error("client IP not in client map")
transport.GetLogger(ctx).WithField("ip", clientIP).Error("client IP not in client map")
nc.Close()
return nil, err
}
-166
View File
@@ -1,166 +0,0 @@
package tcp
import (
"bytes"
"fmt"
"net"
"sort"
"strings"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/transport"
"golang.org/x/sys/unix"
)
type ipMapEntry struct {
subnet *net.IPNet
// ident is always not empty
ident string
// zone may be empty (e.g. for IPv4)
zone string
}
type ipMap struct {
entries []*ipMapEntry
}
func ipMapFromConfig(clients map[string]string) (*ipMap, error) {
entries := make([]*ipMapEntry, 0, len(clients))
for clientInput, clientIdent := range clients {
userIPMapEntry, err := newIPMapEntry(clientInput, clientIdent)
if err != nil {
return nil, errors.Wrapf(err, "cannot not parse %q:%q", clientInput, clientIdent)
}
entries = append(entries, userIPMapEntry)
}
sort.Sort(byPrefixlen(entries))
return &ipMap{entries: entries}, nil
}
func (m *ipMap) Get(ipAddr *net.IPAddr) (string, error) {
for _, e := range m.entries {
if e.zone != ipAddr.Zone {
continue
}
if e.subnet.Contains(ipAddr.IP) {
return zfsDatasetPathComponentCompatibleRepresentation(e.ident, ipAddr), nil
}
}
return "", errors.Errorf("no identity mapping for client IP: %s%%%s", ipAddr.IP, ipAddr.Zone)
}
var ipv6FullySpecifiedMask = bytes.Repeat([]byte{0xff}, net.IPv6len)
func newIPMapEntry(input string, ident string) (*ipMapEntry, error) {
ip := input
var zone string
ipZoneSplit := strings.SplitN(input, "%", 2)
if len(ipZoneSplit) > 1 {
ip = ipZoneSplit[0]
zone = ipZoneSplit[1]
}
_, subnet, err := net.ParseCIDR(ip)
if err != nil {
// expect full IP, no '*' placeholder expansion
if strings.Count(ident, "*") != 0 {
return nil, fmt.Errorf("non-CIDR matches must not contain '*' placeholder")
}
if err := transport.ValidateClientIdentity(ident); err != nil {
return nil, errors.Wrapf(err, "invalid client identity %q for IP %q", ident, ip)
}
parsedIP := net.ParseIP(ip)
if parsedIP == nil {
return nil, errors.Wrapf(err, "invalid client address %q", ip)
}
parsedIP = parsedIP.To16()
return &ipMapEntry{
subnet: &net.IPNet{
IP: parsedIP,
Mask: ipv6FullySpecifiedMask,
},
zone: zone,
ident: ident,
}, nil
}
// expect CIDR and '*' placeholder expansion
if strings.Count(ident, "*") != 1 {
err = fmt.Errorf("CIDRs require 1 IP placeholder")
return nil, errors.Wrapf(err, "invalid client identity %q for IP %q", ident, ip)
}
longestIPAddr := net.IPAddr{
IP: net.IP(bytes.Repeat([]byte{0xff}, net.IPv6len)),
Zone: strings.Repeat("i", unix.IFNAMSIZ),
}
longestIdent := zfsDatasetPathComponentCompatibleRepresentation(ident, &longestIPAddr)
if err := transport.ValidateClientIdentity(longestIdent); err != nil {
return nil, errors.Wrapf(err, "invalid client identity for IP %q", ip)
}
ones, _ := subnet.Mask.Size()
preExpansionAddrlen := len(subnet.IP) * 8
expanded := subnet.IP.To16()
postExpansionAddrlen := len(expanded) * 8
return &ipMapEntry{
subnet: &net.IPNet{
IP: expanded,
Mask: net.CIDRMask(postExpansionAddrlen-preExpansionAddrlen+ones, postExpansionAddrlen),
},
zone: zone,
ident: ident,
}, nil
}
func zfsDatasetPathComponentCompatibleRepresentation(identityWithWildcard string, addr *net.IPAddr) string {
// If a Zone exists we append it after the IP using a "-" because "%"
// is a zfs dataset forbidden char.
if addr.Zone != "" {
return strings.Replace(identityWithWildcard, "*", addr.IP.String()+"-"+addr.Zone, 1)
}
// newIPMapEntry validates that the line contains exactly one "*"
return strings.Replace(identityWithWildcard, "*", addr.IP.String(), 1)
}
func (e *ipMapEntry) String() string {
return fmt.Sprintf("&ipMapEntry{subnet=%q, ident=%q, zone=%q}", e.subnet.String(), e.ident, e.zone)
}
func (e *ipMapEntry) PrefixLen() int {
ones, bits := e.subnet.Mask.Size()
if bits != net.IPv6len*8 {
panic(fmt.Sprintf("impl error: we represent all addresses as 16byte internally ones=%v bits=%v: %s", ones, bits, e))
}
return ones
}
// newtype to support sorting by prefixlength
type byPrefixlen []*ipMapEntry
func (m byPrefixlen) Len() int { return len(m) }
func (m byPrefixlen) Less(i, j int) bool {
if m[i].PrefixLen() != m[j].PrefixLen() {
return m[i].PrefixLen() > m[j].PrefixLen()
}
addrCmp := bytes.Compare(m[i].subnet.IP.To16(), m[j].subnet.IP.To16())
if addrCmp != 0 {
return addrCmp < 0
}
return strings.Compare(m[i].zone, m[j].zone) < 0
}
func (m byPrefixlen) Swap(i, j int) { m[i], m[j] = m[j], m[i] }
-204
View File
@@ -1,204 +0,0 @@
package tcp
import (
"net"
"os"
"testing"
"github.com/kr/pretty"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
func TestIPMap(t *testing.T) {
type testCaseExpect struct {
expectNoMapping bool
expectIdent string
}
type testCase struct {
name string
config map[string]string
expectInitErr bool
expect map[string]testCaseExpect
}
cases := []testCase{
{
name: "regular ips",
expectInitErr: false,
config: map[string]string{
"192.168.123.234": "ident1",
"192.168.20.23": "ident2",
},
expect: map[string]testCaseExpect{
"192.168.123.234": {expectIdent: "ident1"},
"192.168.20.23": {expectIdent: "ident2"},
"192.168.20.10": {expectNoMapping: true},
},
},
{
name: "full wildcard",
expectInitErr: false,
config: map[string]string{
"0.0.0.0/0": "*",
"0::/0": "*",
},
expect: map[string]testCaseExpect{
"10.123.234.24": {expectIdent: "10.123.234.24"},
// '[' and ']' are forbiddenin dataset names
"fe80::23:42": {expectIdent: "fe80::23:42"},
},
},
{
name: "longest prefix matching",
expectInitErr: false,
config: map[string]string{
"10.1.2.3": "specific-host",
"10.1.2.0/24": "subnet-one-two-*",
"10.1.1.0/24": "subnet-one-one-*",
"10.1.0.0/24": "subnet-one-zero-*",
"10.1.0.0/16": "subnet-one-*",
"fde4:8dba:82e1:1::1": "v6-48-1-specialhost",
"fde4:8dba:82e1::/48": "v6-48-*",
"fde4:8dba:82e1:1::/64": "v6-64-1-*",
"fde4:8dba:82e1:2::/64": "v6-64-2-*",
},
expect: map[string]testCaseExpect{
"10.1.2.3": {expectIdent: "specific-host"},
"10.1.2.1": {expectIdent: "subnet-one-two-10.1.2.1"},
"10.1.1.1": {expectIdent: "subnet-one-one-10.1.1.1"},
"10.1.0.23": {expectIdent: "subnet-one-zero-10.1.0.23"},
"10.1.3.1": {expectIdent: "subnet-one-10.1.3.1"},
"10.2.1.1": {expectNoMapping: true},
"fde4:8dba:82e1:1::1": {expectIdent: "v6-48-1-specialhost"},
"fde4:8dba:82e1:23::1": {expectIdent: "v6-48-fde4:8dba:82e1:23::1"},
"fde4:8dba:82e1:1::2": {expectIdent: "v6-64-1-fde4:8dba:82e1:1::2"},
"fde4:8dba:82e1:2::1": {expectIdent: "v6-64-2-fde4:8dba:82e1:2::1"},
"fde4:8dba:82e2::1": {expectNoMapping: true},
},
},
{
name: "different prefixes, mixed ipv4 ipv6, with interface ids",
expectInitErr: false,
config: map[string]string{
"192.168.23.0/24": "db-*",
"192.168.23.23": "db-twentythree",
"192.168.42.0/24": "web-*",
"10.1.4.0/24": "my-*-server",
"2001:0db8:85a3:0000:0000:8a2e:0370:7334": "aspecifichost",
"2001:0db8:85a3:0000:0000:8a2e:0370:7334%eth1": "aspecifichost",
"fe80::/16%eth1": "san-*",
"fde4:8dba:82e1::/64": "sub64-*",
},
expect: map[string]testCaseExpect{
"10.1.2.3": {expectNoMapping: true},
"192.168.23.1": {expectIdent: "db-192.168.23.1"},
"192.168.23.23": {expectIdent: "db-twentythree"},
"192.168.023.001": {expectIdent: "db-192.168.23.1"},
"10.1.4.5": {expectIdent: "my-10.1.4.5-server"},
// normalization
"192.168.42.1": {expectIdent: "web-192.168.42.1"},
"192.168.042.001": {expectIdent: "web-192.168.42.1"},
// v6 matching
"fe80::23:42%eth1": {expectIdent: "san-fe80::23:42-eth1"},
"fe80::23:42%eth2": {expectNoMapping: true},
// v6 subnet matching
"fde4:8dba:82e1::1": {expectIdent: "sub64-fde4:8dba:82e1::1"},
// v6 subnet matching with suffix that matches another allowed IPv4
"fde4:8dba:82e1::c0a8:1717": {expectIdent: "sub64-fde4:8dba:82e1::c0a8:1717"},
"2001:0db8:85a3:0000:0000:8a2e:0370:7334": {expectIdent: "aspecifichost"},
"2001:0db8:85a3:0000:0000:8a2e:0370:7334%eth1": {expectIdent: "aspecifichost"},
"2001:0db8:85a3:0000:0000:8a2e:0370:7334%eth2": {expectNoMapping: true},
},
},
{
name: "invalid user input: non ip or cidr",
expectInitErr: true,
config: map[string]string{
"jimmy": "db",
},
},
{
name: "invalid user input: v4 ip with an identity containing *",
expectInitErr: true,
config: map[string]string{
"192.168.1.2": "db-*",
},
},
{
name: "invalid user input: v4 subnet without an identity containing *",
expectInitErr: true,
config: map[string]string{
"192.168.1.0/24": "db-",
},
},
{
name: "invalid user input: v6 ip with an identity containing *",
expectInitErr: true,
config: map[string]string{
"2001:0db8:85a3:0000:0000:8a2e:0370:7334": "aspecifichost*",
},
},
{
name: "invalid user input: v6 subnet without identity containing *",
expectInitErr: true,
config: map[string]string{
"fe80::/16%eth1": "db-",
},
},
{
name: "invalid user input with subnet match: client identity with forbidden zfs dataset name char @",
expectInitErr: true,
config: map[string]string{
"fe80::/16": "db@-*",
},
},
{
name: "invalid user input with IP match: client identity with forbidden zfs dataset name char @",
expectInitErr: true,
config: map[string]string{
"fe80::1": "db@foo",
},
},
}
for i := range cases {
c := cases[i]
t.Run(c.name, func(t *testing.T) {
pretty.Fprintf(os.Stderr, "running %#v\n", c)
m, err := ipMapFromConfig(c.config)
if c.expectInitErr {
require.Error(t, err)
} else {
require.NoError(t, err)
require.NotNil(t, m)
}
for input, expect := range c.expect {
// reuse newIPMapEntry to parse test case input
// "test" is not used during testing but must not be empty.
ipMapEntry, _ := newIPMapEntry(input, "test")
ones, bits := ipMapEntry.subnet.Mask.Size()
require.Equal(t, bits, net.IPv6len*8, "and we know ipMapEntry always expands its IPs to 16bytes")
require.Equal(t, ones, net.IPv6len*8, "test case addresses must be fully specified")
require.NotNil(t, ipMapEntry)
ident, err := m.Get(&net.IPAddr{
IP: ipMapEntry.subnet.IP,
Zone: ipMapEntry.zone,
})
if expect.expectNoMapping {
assert.Empty(t, ident)
} else {
assert.NoError(t, err)
assert.Equal(t, expect.expectIdent, ident)
}
}
})
}
}
func TestPackageNetAssumptions(t *testing.T) {
}
+1 -1
View File
@@ -32,7 +32,7 @@ func TLSListenerFactoryFromConfig(c *config.Global, in *config.TLSServe) (transp
serverCert, err := tls.LoadX509KeyPair(in.Cert, in.Key)
if err != nil {
return nil, errors.Wrap(err, "cannot parse cert/key pair")
return nil, errors.Wrap(err, "cannot parse cer/key pair")
}
clientCNs := make(map[string]struct{}, len(in.ClientCNs))

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