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30 Commits

Author SHA1 Message Date
Christian Schwarz 12503dc55a rpc/dataconn/timeoutconn: disable TestPartialWriteMockConn in CircleCI 2021-12-18 18:02:34 +01:00
Christian Schwarz 7d10a71cc0 0.5 changelog + front page update 2021-12-18 17:36:54 +01:00
Christian Schwarz 3d3d1b5679 quickstart: sample config uses placeholders, so provide sample value for recv.placeholder.encryption 2021-12-18 17:18:58 +01:00
Christian Schwarz 5240ab4949 docs: quickstart: make users aware that the example rules apply to all snaps, not just zrepl's
fixes https://github.com/zrepl/zrepl/issues/540
2021-12-18 16:30:15 +01:00
Christian Schwarz 19aebd399f docs: add a note that FreeBSD jail zfs userland needs to be kept in sync with kernel module
fixes https://github.com/zrepl/zrepl/issues/500
2021-12-18 16:06:26 +01:00
Christian Schwarz 04e03f4d06 platformtest: retry zpool export if 'pool is busy'
On Ubuntu, something seems to be holding on to the pool for too long.
2021-12-18 15:58:24 +01:00
Christian Schwarz 2e2a8a1d5d docs: add docs on how to run platform tests
fixes https://github.com/zrepl/zrepl/issues/478
2021-12-18 15:55:22 +01:00
Christian Schwarz a2b2e0fe34 daemon/control: make http server {Read,Write}Timeout envconst-configurable
refs https://github.com/zrepl/zrepl/issues/379
2021-12-18 15:14:33 +01:00
Christian Schwarz af2905d245 docs: apt repo: deploy gpg to /usr/share/keyrings and use 'signed-by' in repo definition
gpg --dearmor because of note in https://wiki.debian.org/DebianRepository/UseThirdParty

fixes https://github.com/zrepl/zrepl/issues/529
2021-12-18 15:14:33 +01:00
Christian Schwarz c3f0041efd zrepl test placeholder: fix panic if dataset does not exist
fixes https://github.com/zrepl/zrepl/issues/406
2021-12-18 15:14:33 +01:00
Christian Schwarz 083f6001eb build: freebsd armv7 and arm64 binaries
fixes https://github.com/zrepl/zrepl/issues/539
2021-12-18 15:14:33 +01:00
Christian Schwarz 2d57ec6ee0 docs: changelog: mention upstream ashift 9 => 12 send/recv bug 2021-12-18 15:14:33 +01:00
Christian Schwarz fb6a9be954 fix encrypt-on-receive with placeholders
fixes https://github.com/zrepl/zrepl/issues/504

Problem:
  plain send + recv with root_fs encrypted + placeholders causes plain recvs
  whereas user would expect encrypt-on-recv
Reason:
  We create placeholder filesytems with -o encryption=off.
  Thus, children received below those placeholders won't inherit
  encryption of root_fs.
Fix:
  We'll have three values for `recv.placeholders.encryption: unspecified (default) | off | inherit`.
  When we create a placeholder, we will fail the operation if  `recv.placeholders.encryption = unspecified`.
  The exception is if the placeholder filesystem is to encode the client identity ($root_fs/$client_identity) in a pull job.
  Those are created in `inherit` mode if the config field is `unspecified` so that users who don't need
  placeholders are not bothered by these details.

Future Work:
  Automatically warn existing users of encrypt-on-recv about the problem
  if they are affected.
  The problem that I hit during implementation of this is that the
  `encryption` prop's `source` doesn't quite behave like other props:
  `source` is `default` for `encryption=off` and `-` when `encryption=on`.
  Hence, we can't use `source` to distinguish the following 2x2 cases:
  (1) placeholder created with explicit -o encryption=off
  (2) placeholder created without specifying -o encryption
  with
  (A) an encrypted parent at creation time
  (B) an unencrypted parent at creation time
2021-12-18 15:12:47 +01:00
Christian Schwarz c1e2c9826f trace: hint debug env var in error when crashing due to active child tasks
refs https://github.com/zrepl/zrepl/issues/542
2021-12-05 18:57:43 +01:00
Christian Schwarz b00b61e967 status: user-visible replication step number should start at 1
fixes https://github.com/zrepl/zrepl/issues/538
2021-11-21 15:32:18 +01:00
Christian Schwarz ac147b5a6f replication: report a filesystem is active vs. blocked on something
- `BlockedOn` prop in JSON report
- Bring back the `*` in front of the filesystem report as an activity indicator.

fixes https://github.com/zrepl/zrepl/issues/505
2021-11-14 17:34:32 +01:00
Samy Mahmoudi 1850a332ed docs: prune: improve docs for 'grid' rule
- Substitute full words for both string name 'gridspec' and short form 'grid spec'
- Fix alignment and make spacing more consistent
- Fix fall of snapshots into buckets for the example to really reflect right-exclusiveness

closes https://github.com/zrepl/zrepl/pull/535
2021-11-14 17:34:32 +01:00
Christian Schwarz 20ff9717bc fix mis-spelled send option for embedded data
fixes https://github.com/zrepl/zrepl/issues/522
2021-11-14 17:34:32 +01:00
Christian Schwarz c2fbf93365 daemon: provide os.Environ() in zrepl status
Useful for debugging.

fixes https://github.com/zrepl/zrepl/issues/534
2021-11-14 17:34:32 +01:00
Christian Schwarz cf5e8e8f26 docs: add runbook on how to migrate sending side to new zpool
fixes https://github.com/zrepl/zrepl/issues/525
2021-11-14 17:34:32 +01:00
Christian Schwarz c600cc1f60 skip timing-sensitive tests on CircleCI
We had too many spurious test failures in the past.
But on a developer machine, the tests don't usually fail because the
system isn't loaded as much.
So, only disable test on CircleCI.
2021-11-14 17:34:32 +01:00
Lapo Luchini c6a9ebc71c job/active: add "last completed" metric for error reporting
use case:

    So that I can use a more resilient alerting such as "last complete was sent more than 24h ago".

fixes https://github.com/zrepl/zrepl/issues/516
closes https://github.com/zrepl/zrepl/pull/530
2021-11-10 17:35:12 +01:00
Christian Schwarz 1f0f2f8569 pruner + docs: less confusing type names, some comments, better docs for keep: not_replicated
fixes https://github.com/zrepl/zrepl/issues/524
2021-10-10 21:11:38 +02:00
Christian Schwarz 5104ad3d0b build: use go 1.17 for testing & release builds 2021-10-09 16:51:08 +02:00
Christian Schwarz a6dbda1ea8 go1.17: run goimports to supports the new //go:build lines 2021-10-09 16:51:08 +02:00
Christian Schwarz 1edb8014bc build: circleci: stop storing artifacts
When we need artifacts, we use MinIO anyways.
And we have accumulated about 1TiB of (free) CircleCI artifact storage.
Don't need to waste space unnecessarily.
2021-10-09 16:13:58 +02:00
Christian Schwarz 845195b7ed bandwidth limiting: fix crash with SnapJob
zrepl daemon panics when the snap job triggers

fixup for f5f269bfd5 (bandwidth limiting)
fixes #521

Oct 01 16:14:56 cstp zrepl[56563]: panic: invalid config`BandwidthLimit` field invalid: BucketCapacity must not be zero
Oct 01 16:14:56 cstp zrepl[56563]:         panic: end span: span still has active child spans
Oct 01 16:14:56 cstp zrepl[56563]: goroutine 38 [running]:
Oct 01 16:14:56 cstp zrepl[56563]: github.com/zrepl/zrepl/daemon/logging/trace.WithSpan.func2()
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/zrepl/zrepl/daemon/logging/trace/trace.go:341 +0x2ea
Oct 01 16:14:56 cstp zrepl[56563]: github.com/zrepl/zrepl/daemon/logging/trace.WithTaskAndSpan.func1()
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/zrepl/zrepl/daemon/logging/trace/trace_convenience.go:40 +0x2e
Oct 01 16:14:56 cstp zrepl[56563]: panic(0xcee9c0, 0xc000676730)
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/go1.16.6/src/runtime/panic.go:965 +0x1b9
Oct 01 16:14:56 cstp zrepl[56563]: github.com/zrepl/zrepl/endpoint.NewSender(0xf5bbc0, 0xc0003840c0, 0xc0000b2c90, 0x4, 0xc0002c5958, 0x0, 0x0, 0x0, 0xc000068cf8)
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/zrepl/zrepl/endpoint/endpoint.go:68 +0x1ec
Oct 01 16:14:56 cstp zrepl[56563]: github.com/zrepl/zrepl/daemon/job.(*SnapJob).doPrune(0xc00039e000, 0xf6e3b8, 0xc0006541b0)
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/zrepl/zrepl/daemon/job/snapjob.go:179 +0x198
Oct 01 16:14:56 cstp zrepl[56563]: github.com/zrepl/zrepl/daemon/job.(*SnapJob).Run(0xc00039e000, 0xf6e3b8, 0xc0001d83c0)
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/zrepl/zrepl/daemon/job/snapjob.go:127 +0x329
Oct 01 16:14:56 cstp zrepl[56563]: github.com/zrepl/zrepl/daemon.(*jobs).start.func1(0xc0006a4100, 0xf6e3b8, 0xc00022a0f0, 0xf72d18, 0xc00039e000)
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/zrepl/zrepl/daemon/daemon.go:255 +0x15b
Oct 01 16:14:56 cstp zrepl[56563]: created by github.com/zrepl/zrepl/daemon.(*jobs).start
Oct 01 16:14:56 cstp zrepl[56563]:         /home/cs/zrepl/zrepl/daemon/daemon.go:251 +0x425
Oct 01 16:14:56 cstp systemd[1]: zrepl.service: Main process exited, code=exited, status=2/INVALIDARGUMENT
Oct 01 16:14:56 cstp systemd[1]: zrepl.service: Failed with result 'exit-code'.
2021-10-09 15:52:38 +02:00
Christian Schwarz 2c9fcd7c14 rpc/dataconn: always close send stream returned from Sender.Send()
discovered while debugging #457
2021-10-09 15:43:31 +02:00
Christian Schwarz 4f9b63aa09 rework size estimation & dry sends
- use control connection (gRPC)
- use uint64 everywhere => fixes https://github.com/zrepl/zrepl/issues/463
- [BREAK] bump protocol version

closes https://github.com/zrepl/zrepl/pull/518
fixes https://github.com/zrepl/zrepl/issues/463
2021-10-09 15:43:27 +02:00
Christian Schwarz a8e92971d0 zfs: rewrite SendStream, fix bug in Close() on FreeBSD, add platformtests
This commit was motivated by https://github.com/zrepl/zrepl/issues/495
where, on FreeBSD with OpenZFS 2.0, a SendStream.Close() call might wait indefinitely for `zfs send` to exit.
The reason is that, due to the refactoring done for redacted send & recv
(https://github.com/openzfs/zfs/commit/30af21b02569ac192f52ce6e6511015f8a8d5729),
the `dump_bytes` function, which writes to the pipe, executes in a separate thread (synctask taskq) iff not `HAVE_LARGE_STACKS`.
The `zfs send` process/thread waits for that taskq thread using an uninterruptible primitive.
So when we SIGKILL `zfs send`, that signal doesn't reach the right thread to interrupt the pipe write.

Theoretically this affects both Linux and FreeBSD, but most Linux users `HAVE_LARGE_STACKS` and since https://github.com/penzfs/zfs/pull/12350/files OpenZFS on FreeBSD `HAVE_LARGE_STACKS` as well.
However, at least until FreeBSD 13.1, possibly for the entire 13 lifecycle, we're going to have to live with that oddity.

Measures taken in this commit:
- Report the behavior as an upstream bug https://github.com/openzfs/zfs/issues/12500
- Change SendStream code so that it closes zrepl's read-end of the pipe (see comment in code)
- Clean up and make explicit SendStream's state handling
- Write extensive platformtests for SendStream
    - They pass on my Linux install and on FreeBSD 12
    - FreeBSD 13 still needs testing.

fixes https://github.com/zrepl/zrepl/issues/495
2021-09-19 20:11:31 +02:00
62 changed files with 1600 additions and 444 deletions
+4 -6
View File
@@ -150,7 +150,7 @@ parameters:
release_docker_baseimage_tag: release_docker_baseimage_tag:
type: string type: string
default: "1.16" default: "1.17"
workflows: workflows:
version: 2 version: 2
@@ -160,15 +160,15 @@ workflows:
jobs: jobs:
- quickcheck-docs - quickcheck-docs
- quickcheck-go: &quickcheck-go-smoketest - quickcheck-go: &quickcheck-go-smoketest
name: quickcheck-go-amd64-linux-1.16 name: quickcheck-go-amd64-linux-1.17
goversion: &latest-go-release "1.16" goversion: &latest-go-release "1.17"
goos: linux goos: linux
goarch: amd64 goarch: amd64
- test-go-on-latest-go-release: - test-go-on-latest-go-release:
goversion: *latest-go-release goversion: *latest-go-release
- quickcheck-go: - quickcheck-go:
requires: requires:
- quickcheck-go-amd64-linux-1.16 #quickcheck-go-smoketest.name - quickcheck-go-amd64-linux-1.17 #quickcheck-go-smoketest.name
matrix: &quickcheck-go-matrix matrix: &quickcheck-go-matrix
alias: quickcheck-go-matrix alias: quickcheck-go-matrix
parameters: parameters:
@@ -231,8 +231,6 @@ jobs:
- install-docdep - install-docdep
- run: make docs - run: make docs
- store_artifacts:
path: artifacts
- download-and-install-minio-client - download-and-install-minio-client
- upload-minio: - upload-minio:
src: artifacts src: artifacts
+3 -1
View File
@@ -28,7 +28,7 @@ GO_BUILDFLAGS := $(GO_MOD_READONLY) $(GO_EXTRA_BUILDFLAGS)
GO_BUILD := $(GO_ENV_VARS) $(GO) build $(GO_BUILDFLAGS) -ldflags $(GO_LDFLAGS) GO_BUILD := $(GO_ENV_VARS) $(GO) build $(GO_BUILDFLAGS) -ldflags $(GO_LDFLAGS)
GOLANGCI_LINT := golangci-lint GOLANGCI_LINT := golangci-lint
GOCOVMERGE := gocovmerge GOCOVMERGE := gocovmerge
RELEASE_DOCKER_BASEIMAGE_TAG ?= 1.16 RELEASE_DOCKER_BASEIMAGE_TAG ?= 1.17
RELEASE_DOCKER_BASEIMAGE ?= golang:$(RELEASE_DOCKER_BASEIMAGE_TAG) RELEASE_DOCKER_BASEIMAGE ?= golang:$(RELEASE_DOCKER_BASEIMAGE_TAG)
ifneq ($(GOARM),) ifneq ($(GOARM),)
@@ -189,6 +189,8 @@ GO_SUPPORTS_ILLUMOS := $(shell $(GO) version | gawk -F '.' '/^go version /{split
bins-all: bins-all:
$(MAKE) $(BINS_ALL_TARGETS) GOOS=freebsd GOARCH=amd64 $(MAKE) $(BINS_ALL_TARGETS) GOOS=freebsd GOARCH=amd64
$(MAKE) $(BINS_ALL_TARGETS) GOOS=freebsd GOARCH=386 $(MAKE) $(BINS_ALL_TARGETS) GOOS=freebsd GOARCH=386
$(MAKE) $(BINS_ALL_TARGETS) GOOS=freebsd GOARCH=arm GOARM=7
$(MAKE) $(BINS_ALL_TARGETS) GOOS=freebsd GOARCH=arm64
$(MAKE) $(BINS_ALL_TARGETS) GOOS=linux GOARCH=amd64 $(MAKE) $(BINS_ALL_TARGETS) GOOS=linux GOARCH=amd64
$(MAKE) $(BINS_ALL_TARGETS) GOOS=linux GOARCH=arm64 $(MAKE) $(BINS_ALL_TARGETS) GOOS=linux GOARCH=arm64
$(MAKE) $(BINS_ALL_TARGETS) GOOS=linux GOARCH=arm GOARM=7 $(MAKE) $(BINS_ALL_TARGETS) GOOS=linux GOARCH=arm GOARM=7
+1 -1
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@@ -95,7 +95,7 @@ Downstream packagers can read the changelog to determine whether they want to pu
### Additional Notes to Distro Package Maintainers ### Additional Notes to Distro Package Maintainers
* Use `sudo make test-platform-bin && sudo make test-platform` **on a test system** to validate that zrepl's abstractions on top of ZFS work with the system ZFS. * Run the platform tests (Docs -> Usage -> Platform Tests) **on a test system** to validate that zrepl's abstractions on top of ZFS work with the system ZFS.
* Ship a default config that adheres to your distro's `hier` and logging system. * Ship a default config that adheres to your distro's `hier` and logging system.
* Ship a service manager file and _please_ try to upstream it to this repository. * Ship a service manager file and _please_ try to upstream it to this repository.
* `dist/systemd` contains a Systemd unit template. * `dist/systemd` contains a Systemd unit template.
+1
View File
@@ -1,3 +1,4 @@
//go:build tools
// +build tools // +build tools
package main package main
+9 -1
View File
@@ -2,14 +2,22 @@ package viewmodel
import ( import (
"fmt" "fmt"
"math"
) )
func ByteCountBinaryUint(b uint64) string {
if b > math.MaxInt64 {
panic(b)
}
return ByteCountBinary(int64(b))
}
func ByteCountBinary(b int64) string { func ByteCountBinary(b int64) string {
const unit = 1024 const unit = 1024
if b < unit { if b < unit {
return fmt.Sprintf("%d B", b) return fmt.Sprintf("%d B", b)
} }
div, exp := int64(unit), 0 div, exp := unit, 0
for n := b / unit; n >= unit; n /= unit { for n := b / unit; n >= unit; n /= unit {
div *= unit div *= unit
exp++ exp++
@@ -4,7 +4,7 @@ import "time"
type byteProgressMeasurement struct { type byteProgressMeasurement struct {
time time.Time time time.Time
val int64 val uint64
} }
type bytesProgressHistory struct { type bytesProgressHistory struct {
@@ -13,7 +13,7 @@ type bytesProgressHistory struct {
lastChange time.Time lastChange time.Time
} }
func (p *bytesProgressHistory) Update(currentVal int64) (bytesPerSecondAvg int64, changeCount int) { func (p *bytesProgressHistory) Update(currentVal uint64) (bytesPerSecondAvg int64, changeCount int) {
if p.last == nil { if p.last == nil {
p.last = &byteProgressMeasurement{ p.last = &byteProgressMeasurement{
@@ -33,7 +33,12 @@ func (p *bytesProgressHistory) Update(currentVal int64) (bytesPerSecondAvg int64
return 0, 0 return 0, 0
} }
deltaV := currentVal - p.last.val var deltaV int64
if currentVal >= p.last.val {
deltaV = int64(currentVal - p.last.val)
} else {
deltaV = -int64(p.last.val - currentVal)
}
deltaT := time.Since(p.last.time) deltaT := time.Since(p.last.time)
rate := float64(deltaV) / deltaT.Seconds() rate := float64(deltaV) / deltaT.Seconds()
+12 -7
View File
@@ -216,7 +216,7 @@ func drawJob(t *stringbuilder.B, name string, v *job.Status, history *bytesProgr
} }
} }
func printFilesystemStatus(t *stringbuilder.B, rep *report.FilesystemReport, active bool, maxFS int) { func printFilesystemStatus(t *stringbuilder.B, rep *report.FilesystemReport, maxFS int) {
expected, replicated, containsInvalidSizeEstimates := rep.BytesSum() expected, replicated, containsInvalidSizeEstimates := rep.BytesSum()
sizeEstimationImpreciseNotice := "" sizeEstimationImpreciseNotice := ""
@@ -227,15 +227,20 @@ func printFilesystemStatus(t *stringbuilder.B, rep *report.FilesystemReport, act
sizeEstimationImpreciseNotice = " (step lacks size estimation)" sizeEstimationImpreciseNotice = " (step lacks size estimation)"
} }
userVisisbleCurrentStep, userVisibleTotalSteps := rep.CurrentStep, len(rep.Steps)
if len(rep.Steps) > 0 {
userVisisbleCurrentStep = rep.CurrentStep + 1 // CurrentStep is an index that starts at 0
}
status := fmt.Sprintf("%s (step %d/%d, %s/%s)%s", status := fmt.Sprintf("%s (step %d/%d, %s/%s)%s",
strings.ToUpper(string(rep.State)), strings.ToUpper(string(rep.State)),
rep.CurrentStep, len(rep.Steps), userVisisbleCurrentStep, userVisibleTotalSteps,
ByteCountBinary(replicated), ByteCountBinary(expected), ByteCountBinaryUint(replicated), ByteCountBinaryUint(expected),
sizeEstimationImpreciseNotice, sizeEstimationImpreciseNotice,
) )
activeIndicator := " " activeIndicator := " "
if active { if rep.BlockedOn == report.FsBlockedOnNothing &&
(rep.State == report.FilesystemPlanning || rep.State == report.FilesystemStepping) {
activeIndicator = "*" activeIndicator = "*"
} }
t.AddIndent(1) t.AddIndent(1)
@@ -358,12 +363,12 @@ func renderReplicationReport(t *stringbuilder.B, rep *report.Report, history *by
rate, changeCount := history.Update(replicated) rate, changeCount := history.Update(replicated)
eta := time.Duration(0) eta := time.Duration(0)
if rate > 0 { if rate > 0 {
eta = time.Duration((expected-replicated)/rate) * time.Second eta = time.Duration((float64(expected)-float64(replicated))/float64(rate)) * time.Second
} }
t.Write("Progress: ") t.Write("Progress: ")
t.DrawBar(50, replicated, expected, changeCount) t.DrawBar(50, replicated, expected, changeCount)
t.Write(fmt.Sprintf(" %s / %s @ %s/s", ByteCountBinary(replicated), ByteCountBinary(expected), ByteCountBinary(rate))) t.Write(fmt.Sprintf(" %s / %s @ %s/s", ByteCountBinaryUint(replicated), ByteCountBinaryUint(expected), ByteCountBinary(rate)))
if eta != 0 { if eta != 0 {
t.Write(fmt.Sprintf(" (%s remaining)", humanizeDuration(eta))) t.Write(fmt.Sprintf(" (%s remaining)", humanizeDuration(eta)))
} }
@@ -385,7 +390,7 @@ func renderReplicationReport(t *stringbuilder.B, rep *report.Report, history *by
} }
} }
for _, fs := range latest.Filesystems { for _, fs := range latest.Filesystems {
printFilesystemStatus(t, fs, false, maxFSLen) // FIXME bring 'active' flag back printFilesystemStatus(t, fs, maxFSLen)
} }
} }
@@ -99,11 +99,11 @@ func RightPad(str string, length int, pad string) string {
} }
// changeCount = 0 indicates stall / no progress // changeCount = 0 indicates stall / no progress
func (w *B) DrawBar(length int, bytes, totalBytes int64, changeCount int) { func (w *B) DrawBar(length int, bytes, totalBytes uint64, changeCount int) {
const arrowPositions = `>\|/` const arrowPositions = `>\|/`
var completedLength int var completedLength int
if totalBytes > 0 { if totalBytes > 0 {
completedLength = int(int64(length) * bytes / totalBytes) completedLength = int(uint64(length) * bytes / totalBytes)
if completedLength > length { if completedLength > length {
completedLength = length completedLength = length
} }
+9 -1
View File
@@ -139,9 +139,11 @@ var testPlaceholder = &cli.Subcommand{
func runTestPlaceholder(ctx context.Context, subcommand *cli.Subcommand, args []string) error { func runTestPlaceholder(ctx context.Context, subcommand *cli.Subcommand, args []string) error {
var checkDPs []*zfs.DatasetPath var checkDPs []*zfs.DatasetPath
var datasetWasExplicitArgument bool
// all actions first // all actions first
if testPlaceholderArgs.all { if testPlaceholderArgs.all {
datasetWasExplicitArgument = false
out, err := zfs.ZFSList(ctx, []string{"name"}) out, err := zfs.ZFSList(ctx, []string{"name"})
if err != nil { if err != nil {
return errors.Wrap(err, "could not list ZFS filesystems") return errors.Wrap(err, "could not list ZFS filesystems")
@@ -154,6 +156,7 @@ func runTestPlaceholder(ctx context.Context, subcommand *cli.Subcommand, args []
checkDPs = append(checkDPs, dp) checkDPs = append(checkDPs, dp)
} }
} else { } else {
datasetWasExplicitArgument = true
dp, err := zfs.NewDatasetPath(testPlaceholderArgs.ds) dp, err := zfs.NewDatasetPath(testPlaceholderArgs.ds)
if err != nil { if err != nil {
return err return err
@@ -171,7 +174,12 @@ func runTestPlaceholder(ctx context.Context, subcommand *cli.Subcommand, args []
return errors.Wrap(err, "cannot get placeholder state") return errors.Wrap(err, "cannot get placeholder state")
} }
if !ph.FSExists { if !ph.FSExists {
panic("placeholder state inconsistent: filesystem " + ph.FS + " must exist in this context") if datasetWasExplicitArgument {
return errors.Errorf("filesystem %q does not exist", ph.FS)
} else {
// got deleted between ZFSList and ZFSGetFilesystemPlaceholderState
continue
}
} }
is := "yes" is := "yes"
if !ph.IsPlaceholder { if !ph.IsPlaceholder {
+7 -1
View File
@@ -86,7 +86,7 @@ type SendOptions struct {
BackupProperties bool `yaml:"backup_properties,optional,default=false"` BackupProperties bool `yaml:"backup_properties,optional,default=false"`
LargeBlocks bool `yaml:"large_blocks,optional,default=false"` LargeBlocks bool `yaml:"large_blocks,optional,default=false"`
Compressed bool `yaml:"compressed,optional,default=false"` Compressed bool `yaml:"compressed,optional,default=false"`
EmbeddedData bool `yaml:"embbeded_data,optional,default=false"` EmbeddedData bool `yaml:"embedded_data,optional,default=false"`
Saved bool `yaml:"saved,optional,default=false"` Saved bool `yaml:"saved,optional,default=false"`
BandwidthLimit *BandwidthLimit `yaml:"bandwidth_limit,optional,fromdefaults"` BandwidthLimit *BandwidthLimit `yaml:"bandwidth_limit,optional,fromdefaults"`
@@ -101,6 +101,8 @@ type RecvOptions struct {
Properties *PropertyRecvOptions `yaml:"properties,fromdefaults"` Properties *PropertyRecvOptions `yaml:"properties,fromdefaults"`
BandwidthLimit *BandwidthLimit `yaml:"bandwidth_limit,optional,fromdefaults"` BandwidthLimit *BandwidthLimit `yaml:"bandwidth_limit,optional,fromdefaults"`
Placeholder *PlaceholderRecvOptions `yaml:"placeholder,fromdefaults"`
} }
var _ yaml.Unmarshaler = &datasizeunit.Bits{} var _ yaml.Unmarshaler = &datasizeunit.Bits{}
@@ -130,6 +132,10 @@ type PropertyRecvOptions struct {
Override map[zfsprop.Property]string `yaml:"override,optional"` Override map[zfsprop.Property]string `yaml:"override,optional"`
} }
type PlaceholderRecvOptions struct {
Encryption string `yaml:"encryption,default=unspecified"`
}
type PushJob struct { type PushJob struct {
ActiveJob `yaml:",inline"` ActiveJob `yaml:",inline"`
Snapshotting SnapshottingEnum `yaml:"snapshotting"` Snapshotting SnapshottingEnum `yaml:"snapshotting"`
@@ -9,4 +9,7 @@ jobs:
key: "/etc/zrepl/backups.key" key: "/etc/zrepl/backups.key"
client_cns: client_cns:
- "prod" - "prod"
recv:
placeholder:
encryption: inherit # use 'off' if sender uses send.encrypted
root_fs: "storage/zrepl/sink" root_fs: "storage/zrepl/sink"
+6 -4
View File
@@ -8,6 +8,7 @@ import (
"io" "io"
"net" "net"
"net/http" "net/http"
"os"
"time" "time"
"github.com/pkg/errors" "github.com/pkg/errors"
@@ -124,8 +125,9 @@ func (j *controlJob) Run(ctx context.Context) {
s := Status{ s := Status{
Jobs: jobs, Jobs: jobs,
Global: GlobalStatus{ Global: GlobalStatus{
ZFSCmds: globalZFS, ZFSCmds: globalZFS,
Envconst: envconstReport, Envconst: envconstReport,
OsEnviron: os.Environ(),
}} }}
return s, nil return s, nil
}}) }})
@@ -156,8 +158,8 @@ func (j *controlJob) Run(ctx context.Context) {
server := http.Server{ server := http.Server{
Handler: mux, Handler: mux,
// control socket is local, 1s timeout should be more than sufficient, even on a loaded system // control socket is local, 1s timeout should be more than sufficient, even on a loaded system
WriteTimeout: 1 * time.Second, WriteTimeout: envconst.Duration("ZREPL_DAEMON_CONTROL_SERVER_WRITE_TIMEOUT", 1*time.Second),
ReadTimeout: 1 * time.Second, ReadTimeout: envconst.Duration("ZREPL_DAEMON_CONTROL_SERVER_READ_TIMEOUT", 1*time.Second),
} }
outer: outer:
+3 -2
View File
@@ -160,8 +160,9 @@ type Status struct {
} }
type GlobalStatus struct { type GlobalStatus struct {
ZFSCmds *zfscmd.Report ZFSCmds *zfscmd.Report
Envconst *envconst.Report Envconst *envconst.Report
OsEnviron []string
} }
func (s *jobs) status() map[string]*job.Status { func (s *jobs) status() map[string]*job.Status {
+14 -2
View File
@@ -42,6 +42,7 @@ type ActiveSide struct {
promPruneSecs *prometheus.HistogramVec // labels: prune_side promPruneSecs *prometheus.HistogramVec // labels: prune_side
promBytesReplicated *prometheus.CounterVec // labels: filesystem promBytesReplicated *prometheus.CounterVec // labels: filesystem
promReplicationErrors prometheus.Gauge promReplicationErrors prometheus.Gauge
promLastSuccessful prometheus.Gauge
tasksMtx sync.Mutex tasksMtx sync.Mutex
tasks activeSideTasks tasks activeSideTasks
@@ -321,7 +322,6 @@ func activeSide(g *config.Global, in *config.ActiveJob, configJob interface{}) (
Help: "number of bytes replicated from sender to receiver per filesystem", Help: "number of bytes replicated from sender to receiver per filesystem",
ConstLabels: prometheus.Labels{"zrepl_job": j.name.String()}, ConstLabels: prometheus.Labels{"zrepl_job": j.name.String()},
}, []string{"filesystem"}) }, []string{"filesystem"})
j.promReplicationErrors = prometheus.NewGauge(prometheus.GaugeOpts{ j.promReplicationErrors = prometheus.NewGauge(prometheus.GaugeOpts{
Namespace: "zrepl", Namespace: "zrepl",
Subsystem: "replication", Subsystem: "replication",
@@ -329,6 +329,13 @@ func activeSide(g *config.Global, in *config.ActiveJob, configJob interface{}) (
Help: "number of filesystems that failed replication in the latest replication attempt, or -1 if the job failed before enumerating the filesystems", Help: "number of filesystems that failed replication in the latest replication attempt, or -1 if the job failed before enumerating the filesystems",
ConstLabels: prometheus.Labels{"zrepl_job": j.name.String()}, ConstLabels: prometheus.Labels{"zrepl_job": j.name.String()},
}) })
j.promLastSuccessful = prometheus.NewGauge(prometheus.GaugeOpts{
Namespace: "zrepl",
Subsystem: "replication",
Name: "last_successful",
Help: "timestamp of last successful replication",
ConstLabels: prometheus.Labels{"zrepl_job": j.name.String()},
})
j.connecter, err = fromconfig.ConnecterFromConfig(g, in.Connect) j.connecter, err = fromconfig.ConnecterFromConfig(g, in.Connect)
if err != nil { if err != nil {
@@ -360,6 +367,7 @@ func (j *ActiveSide) RegisterMetrics(registerer prometheus.Registerer) {
registerer.MustRegister(j.promPruneSecs) registerer.MustRegister(j.promPruneSecs)
registerer.MustRegister(j.promBytesReplicated) registerer.MustRegister(j.promBytesReplicated)
registerer.MustRegister(j.promReplicationErrors) registerer.MustRegister(j.promReplicationErrors)
registerer.MustRegister(j.promLastSuccessful)
} }
func (j *ActiveSide) Name() string { return j.name.String() } func (j *ActiveSide) Name() string { return j.name.String() }
@@ -494,7 +502,11 @@ func (j *ActiveSide) do(ctx context.Context) {
repCancel() // always cancel to free up context resources repCancel() // always cancel to free up context resources
replicationReport := j.tasks.replicationReport() replicationReport := j.tasks.replicationReport()
j.promReplicationErrors.Set(float64(replicationReport.GetFailedFilesystemsCountInLatestAttempt())) var numErrors = replicationReport.GetFailedFilesystemsCountInLatestAttempt()
j.promReplicationErrors.Set(float64(numErrors))
if numErrors == 0 {
j.promLastSuccessful.SetToCurrentTime()
}
endSpan() endSpan()
} }
+12
View File
@@ -72,6 +72,16 @@ func buildReceiverConfig(in ReceivingJobConfig, jobID endpoint.JobID) (rc endpoi
return rc, errors.Wrap(err, "cannot build bandwith limit config") return rc, errors.Wrap(err, "cannot build bandwith limit config")
} }
placeholderEncryption, err := endpoint.PlaceholderCreationEncryptionPropertyString(recvOpts.Placeholder.Encryption)
if err != nil {
options := []string{}
for _, v := range endpoint.PlaceholderCreationEncryptionPropertyValues() {
options = append(options, endpoint.PlaceholderCreationEncryptionProperty(v).String())
}
return rc, errors.Errorf("placeholder encryption value %q is invalid, must be one of %s",
recvOpts.Placeholder.Encryption, options)
}
rc = endpoint.ReceiverConfig{ rc = endpoint.ReceiverConfig{
JobID: jobID, JobID: jobID,
RootWithoutClientComponent: rootFs, RootWithoutClientComponent: rootFs,
@@ -81,6 +91,8 @@ func buildReceiverConfig(in ReceivingJobConfig, jobID endpoint.JobID) (rc endpoi
OverrideProperties: recvOpts.Properties.Override, OverrideProperties: recvOpts.Properties.Override,
BandwidthLimit: bwlim, BandwidthLimit: bwlim,
PlaceholderEncryption: placeholderEncryption,
} }
if err := rc.Validate(); err != nil { if err := rc.Validate(); err != nil {
return rc, errors.Wrap(err, "cannot build receiver config") return rc, errors.Wrap(err, "cannot build receiver config")
+7 -3
View File
@@ -10,6 +10,7 @@ import (
"github.com/prometheus/client_golang/prometheus" "github.com/prometheus/client_golang/prometheus"
"github.com/zrepl/zrepl/daemon/logging/trace" "github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/util/bandwidthlimit"
"github.com/zrepl/zrepl/util/nodefault" "github.com/zrepl/zrepl/util/nodefault"
"github.com/zrepl/zrepl/config" "github.com/zrepl/zrepl/config"
@@ -146,7 +147,7 @@ type alwaysUpToDateReplicationCursorHistory struct {
target pruner.Target target pruner.Target
} }
var _ pruner.History = (*alwaysUpToDateReplicationCursorHistory)(nil) var _ pruner.Sender = (*alwaysUpToDateReplicationCursorHistory)(nil)
func (h alwaysUpToDateReplicationCursorHistory) ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error) { func (h alwaysUpToDateReplicationCursorHistory) ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error) {
fsvReq := &pdu.ListFilesystemVersionsReq{ fsvReq := &pdu.ListFilesystemVersionsReq{
@@ -179,8 +180,11 @@ func (j *SnapJob) doPrune(ctx context.Context) {
sender := endpoint.NewSender(endpoint.SenderConfig{ sender := endpoint.NewSender(endpoint.SenderConfig{
JobID: j.name, JobID: j.name,
FSF: j.fsfilter, FSF: j.fsfilter,
// FIXME encryption setting is irrelevant for SnapJob because the endpoint is only used as pruner.Target // FIXME the following config fields are irrelevant for SnapJob
Encrypt: &nodefault.Bool{B: true}, // because the endpoint is only used as pruner.Target.
// However, the implementation requires them to be set.
Encrypt: &nodefault.Bool{B: true},
BandwidthLimit: bandwidthlimit.NoLimitConfig(),
}) })
j.prunerMtx.Lock() j.prunerMtx.Lock()
j.pruner = j.prunerFactory.BuildLocalPruner(ctx, sender, alwaysUpToDateReplicationCursorHistory{sender}) j.pruner = j.prunerFactory.BuildLocalPruner(ctx, sender, alwaysUpToDateReplicationCursorHistory{sender})
+1 -1
View File
@@ -246,7 +246,7 @@ func WithTask(ctx context.Context, taskName string) (context.Context, DoneFunc)
// the debugString can be quite long and panic won't print it completely // the debugString can be quite long and panic won't print it completely
fmt.Fprintf(os.Stderr, "going to panic due to activeChildTasks:\n%s\n", this.debugString()) fmt.Fprintf(os.Stderr, "going to panic due to activeChildTasks:\n%s\n", this.debugString())
} }
panic(errors.WithMessagef(ErrTaskStillHasActiveChildTasks, "end task: %v active child tasks\n", this.activeChildTasks)) panic(errors.WithMessagef(ErrTaskStillHasActiveChildTasks, "end task: %v active child tasks (run daemon with env var %s=1 for more details)\n", this.activeChildTasks, debugEnabledEnvVar))
} }
// support idempotent task ends // support idempotent task ends
+3 -1
View File
@@ -7,7 +7,9 @@ import (
"github.com/zrepl/zrepl/util/envconst" "github.com/zrepl/zrepl/util/envconst"
) )
var debugEnabled = envconst.Bool("ZREPL_TRACE_DEBUG_ENABLED", false) const debugEnabledEnvVar = "ZREPL_TRACE_DEBUG_ENABLED"
var debugEnabled = envconst.Bool(debugEnabledEnvVar, false)
func debug(format string, args ...interface{}) { func debug(format string, args ...interface{}) {
if !debugEnabled { if !debugEnabled {
+20 -12
View File
@@ -19,12 +19,20 @@ import (
"github.com/zrepl/zrepl/util/envconst" "github.com/zrepl/zrepl/util/envconst"
) )
// The sender in the replication setup.
// The pruner uses the Sender to determine which of the Target's filesystems need to be pruned.
// Also, it asks the Sender about the replication cursor of each filesystem
// to enable the 'not_replicated' pruning rule.
//
// Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint // Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint
type History interface { type Sender interface {
ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error) ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error)
ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error) ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error)
} }
// The pruning target, i.e., on which snapshots are destroyed.
// This can be a replication sender or receiver.
//
// Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint // Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint
type Target interface { type Target interface {
ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error) ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error)
@@ -48,7 +56,7 @@ func GetLogger(ctx context.Context) Logger {
type args struct { type args struct {
ctx context.Context ctx context.Context
target Target target Target
receiver History sender Sender
rules []pruning.KeepRule rules []pruning.KeepRule
retryWait time.Duration retryWait time.Duration
considerSnapAtCursorReplicated bool considerSnapAtCursorReplicated bool
@@ -132,12 +140,12 @@ func NewPrunerFactory(in config.PruningSenderReceiver, promPruneSecs *prometheus
return f, nil return f, nil
} }
func (f *PrunerFactory) BuildSenderPruner(ctx context.Context, target Target, receiver History) *Pruner { func (f *PrunerFactory) BuildSenderPruner(ctx context.Context, target Target, sender Sender) *Pruner {
p := &Pruner{ p := &Pruner{
args: args{ args: args{
context.WithValue(ctx, contextKeyPruneSide, "sender"), context.WithValue(ctx, contextKeyPruneSide, "sender"),
target, target,
receiver, sender,
f.senderRules, f.senderRules,
f.retryWait, f.retryWait,
f.considerSnapAtCursorReplicated, f.considerSnapAtCursorReplicated,
@@ -148,12 +156,12 @@ func (f *PrunerFactory) BuildSenderPruner(ctx context.Context, target Target, re
return p return p
} }
func (f *PrunerFactory) BuildReceiverPruner(ctx context.Context, target Target, receiver History) *Pruner { func (f *PrunerFactory) BuildReceiverPruner(ctx context.Context, target Target, sender Sender) *Pruner {
p := &Pruner{ p := &Pruner{
args: args{ args: args{
context.WithValue(ctx, contextKeyPruneSide, "receiver"), context.WithValue(ctx, contextKeyPruneSide, "receiver"),
target, target,
receiver, sender,
f.receiverRules, f.receiverRules,
f.retryWait, f.retryWait,
false, // senseless here anyways false, // senseless here anyways
@@ -164,12 +172,12 @@ func (f *PrunerFactory) BuildReceiverPruner(ctx context.Context, target Target,
return p return p
} }
func (f *LocalPrunerFactory) BuildLocalPruner(ctx context.Context, target Target, receiver History) *Pruner { func (f *LocalPrunerFactory) BuildLocalPruner(ctx context.Context, target Target, history Sender) *Pruner {
p := &Pruner{ p := &Pruner{
args: args{ args: args{
context.WithValue(ctx, contextKeyPruneSide, "local"), context.WithValue(ctx, contextKeyPruneSide, "local"),
target, target,
receiver, history,
f.keepRules, f.keepRules,
f.retryWait, f.retryWait,
false, // considerSnapAtCursorReplicated is not relevant for local pruning false, // considerSnapAtCursorReplicated is not relevant for local pruning
@@ -343,9 +351,9 @@ func (s snapshot) Date() time.Time { return s.date }
func doOneAttempt(a *args, u updater) { func doOneAttempt(a *args, u updater) {
ctx, target, receiver := a.ctx, a.target, a.receiver ctx, target, sender := a.ctx, a.target, a.sender
sfssres, err := receiver.ListFilesystems(ctx, &pdu.ListFilesystemReq{}) sfssres, err := sender.ListFilesystems(ctx, &pdu.ListFilesystemReq{})
if err != nil { if err != nil {
u(func(p *Pruner) { u(func(p *Pruner) {
p.state = PlanErr p.state = PlanErr
@@ -410,7 +418,7 @@ tfss_loop:
rcReq := &pdu.ReplicationCursorReq{ rcReq := &pdu.ReplicationCursorReq{
Filesystem: tfs.Path, Filesystem: tfs.Path,
} }
rc, err := receiver.ReplicationCursor(ctx, rcReq) rc, err := sender.ReplicationCursor(ctx, rcReq)
if err != nil { if err != nil {
pfsPlanErrAndLog(err, "cannot get replication cursor bookmark") pfsPlanErrAndLog(err, "cannot get replication cursor bookmark")
continue tfss_loop continue tfss_loop
@@ -456,7 +464,7 @@ tfss_loop:
}) })
} }
if preCursor { if preCursor {
pfsPlanErrAndLog(fmt.Errorf("replication cursor not found in prune target filesystem versions"), "") pfsPlanErrAndLog(fmt.Errorf("prune target has no snapshot that corresponds to sender replication cursor bookmark"), "")
continue tfss_loop continue tfss_loop
} }
+37 -18
View File
@@ -16,18 +16,44 @@ Changelog
The changelog summarizes bugfixes that are deemed relevant for users and package maintainers. The changelog summarizes bugfixes that are deemed relevant for users and package maintainers.
Developers should consult the git commit log or GitHub issue tracker. Developers should consult the git commit log or GitHub issue tracker.
We use the following annotations for classifying changes: 0.5
---
* |feature| :ref:`Bandwidth limiting <job-send-recv-options--bandwidth-limit>` (Thanks, Prominic.NET, Inc.)
* |feature| zrepl status: use a ``*`` to indicate which filesystem is currently replicating
* |feature| include daemon environment variables in zrepl status (currently only in ``--raw``)
* |bugfix| **fix encrypt-on-receive + placeholders use case** (:issue:`504`)
* Before this fix, **plain sends** to a receiver with an encrypted ``root_fs`` **could be received unencrypted** if zrepl needed to create placeholders on the receiver.
* Existing zrepl users should :ref:`read the docs <job-recv-options--placeholder>` and check ``zfs get -r encryption,zrepl:placeholder PATH_TO_ROOTFS`` on the receiver.
* Thanks to `@mologie <https://github.com/mologie>`_ and `@razielgn <https://github.com/razielgn>`_ for reporting and testing!
* |bugfix| Rename mis-spelled :ref:`send option <job-send-options>` ``embbeded_data`` to ``embedded_data``.
* |bugfix| zrepl status: replication step numbers should start at 1
* |bugfix| incorrect bandwidth averaging in ``zrepl status``.
* |bugfix| FreeBSD with OpenZFS 2.0: zrepl would wait indefinitely for zfs send to exit on timeouts.
* |bugfix| fix ``strconv.ParseInt: value out of range`` bug (and use the control RPCs).
* |docs| improve description of multiple pruning rules.
* |docs| document :ref:`platform tests <usage-platform-tests>`.
* |docs| quickstart: make users aware that prune rules apply to all snapshots.
* |maint| some platformtests were broken.
* |maint| FreeBSD: release armv7 and arm64 binaries.
* |maint| apt repo: update instructions due to ``apt-key`` deprecation.
Note to all users: please read up on the following OpenZFS bugs, as you might be affected:
* `ZFS send/recv with ashift 9->12 leads to data corruption <https://github.com/openzfs/zfs/issues/12762>`_.
* Various bugs with encrypted send/recv (`Leadership meeting notes <https://openzfs.topicbox.com/groups/developer/T24bdaa2886c6cbf5-Mc039a11c3f1507ea0664817b/december-openzfs-leadership-meeting>`_)
Finally, I'd like to point you to the `GitHub discussion <https://github.com/zrepl/zrepl/discussions/547>`_ about which bugfixes and features should be prioritized in zrepl 0.6 and beyond!
.. NOTE::
| 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 following services:
| |Donate via Patreon| |Donate via GitHub Sponsors| |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>`_.
* |break_config| Change that breaks the config.
As a package maintainer, make sure to warn your users about config breakage somehow.
* |break| Change that breaks interoperability or persistent state representation with previous releases.
As a package maintainer, make sure to warn your users about config breakage somehow.
Note that even updating the package on both sides might not be sufficient, e.g. if persistent state needs to be migrated to a new format.
* |mig| Migration that must be run by the user.
* |feature| Change that introduces new functionality.
* |bugfix| Change that fixes a bug, no regressions or incompatibilities expected.
* |docs| Change to the documentation.
* |maint| Maintenance changes.
0.4.0 0.4.0
----- -----
@@ -53,13 +79,6 @@ The following bugfix in 0.3.1 :issue:`caused problems for some users <400>`:
* |bugfix| pruning: ``grid``: add all snapshots that do not match the regex to the rule's destroy list. * |bugfix| pruning: ``grid``: add all snapshots that do not match the regex to the rule's destroy list.
.. NOTE::
| 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 following services:
| |Donate via Patreon| |Donate via GitHub Sponsors| |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>`_.
0.3.1 0.3.1
----- -----
+12 -11
View File
@@ -67,8 +67,9 @@ Policy ``not_replicated``
... ...
``not_replicated`` keeps all snapshots that have not been replicated to the receiving side. ``not_replicated`` keeps all snapshots that have not been replicated to the receiving side.
It only makes sense to specify this rule on a sender (source or push job). It only makes sense to specify this rule for the ``keep_sender``.
The state required to evaluate this rule is stored in the :ref:`replication cursor bookmark <replication-cursor-and-last-received-hold>` on the sending side. The reason is that, by definition, all snapshots on the receiver have already been replicated to there from the sender.
To determine whether a sender-side snapshot has already been replicated, zrepl uses the :ref:`replication cursor bookmark <replication-cursor-and-last-received-hold>` which corresponds to the most recent successfully replicated snapshot.
.. _prune-keep-retention-grid: .. _prune-keep-retention-grid:
@@ -106,7 +107,7 @@ The following procedure happens during pruning:
#. All subsequent buckets are placed adjacent to their predecessor bucket. #. All subsequent buckets are placed adjacent to their predecessor bucket.
#. Now each snapshot on the axis either falls into one bucket or it is older than our rightmost bucket. #. Now each snapshot on the axis either falls into one bucket or it is older than our rightmost bucket.
Buckets are left-inclusive and right-exclusive which means that a snapshot on the edge of bucket will always 'fall into the right one'. Buckets are left-inclusive and right-exclusive which means that a snapshot on the edge of bucket will always 'fall into the right one'.
#. Snapshots older than the rightmost bucket **not kept** by this gridspec. #. Snapshots older than the rightmost bucket are **not kept** by the grid specification.
#. For each bucket, we only keep the ``keep`` oldest snapshots. #. For each bucket, we only keep the ``keep`` oldest snapshots.
The syntax to describe the bucket list is as follows: The syntax to describe the bucket list is as follows:
@@ -124,11 +125,11 @@ The syntax to describe the bucket list is as follows:
:: ::
Assume the following grid spec: Assume the following grid specification:
grid: 1x1h(keep=all) | 2x2h | 1x3h grid: 1x1h(keep=all) | 2x2h | 1x3h
This grid spec produces the following constellation of buckets: This grid specification produces the following constellation of buckets:
0h 1h 2h 3h 4h 5h 6h 7h 8h 9h 0h 1h 2h 3h 4h 5h 6h 7h 8h 9h
| | | | | | | | | | | | | | | | | | | |
@@ -148,13 +149,13 @@ The syntax to describe the bucket list is as follows:
|-Bucket1-|-----Bucket2-------|------Bucket3------|-----------Bucket4-----------| |-Bucket1-|-----Bucket2-------|------Bucket3------|-----------Bucket4-----------|
| keep=all| keep=1 | keep=1 | keep=1 | | keep=all| keep=1 | keep=1 | keep=1 |
| | | | | | | | | |
| a b c| d e f g h i j k l m n o p |q r s t u v w x y z |A B C D | a b c | d e f g h i j k l m n o p |q r s t u v w x y z |A B C D
The result is the following mapping of snapshots to buckets: We obtain the following mapping of snapshots to buckets:
Bucket1: a, b, c Bucket1: a,b,c
Bucket2: d,e,f,g,h,i,j Bucket2: d,e,f,g,h,i
Bucket3: k,l,m,n,o,p Bucket3: j,k,l,m,n,o,p
Bucket4: q,r,s,t,u,v,w,x,y,z Bucket4: q,r,s,t,u,v,w,x,y,z
No bucket: A,B,C,D No bucket: A,B,C,D
@@ -168,7 +169,7 @@ The syntax to describe the bucket list is as follows:
| | | | | | | | | | | | | | | | | | | |
|-Bucket1-|-----Bucket2-------|------Bucket3------|-----------Bucket4-----------| |-Bucket1-|-----Bucket2-------|------Bucket3------|-----------Bucket4-----------|
| | | | | | | | | |
| a b c| j p | z | | a b c | i | p | z |
.. _prune-keep-last-n: .. _prune-keep-last-n:
+42 -5
View File
@@ -38,10 +38,10 @@ See the `upstream man page <https://openzfs.github.io/openzfs-docs/man/8/zfs-sen
- Specific to zrepl, :ref:`see below <job-send-options-encrypted>`. - Specific to zrepl, :ref:`see below <job-send-options-encrypted>`.
* - ``bandwidth_limit`` * - ``bandwidth_limit``
- -
- Specific to zrepl, :ref:`see below <job-send-recv-options-bandwidth-limit>`. - Specific to zrepl, :ref:`see below <job-send-recv-options--bandwidth-limit>`.
* - ``raw`` * - ``raw``
- ``-w`` - ``-w``
- Use ``encrypted`` to only allow encrypted sends. - Use ``encrypted`` to only allow encrypted sends. Mixed sends are not supported.
* - ``send_properties`` * - ``send_properties``
- ``-p`` - ``-p``
- **Be careful**, read the :ref:`note on property replication below <job-note-property-replication>`. - **Be careful**, read the :ref:`note on property replication below <job-note-property-replication>`.
@@ -54,7 +54,7 @@ See the `upstream man page <https://openzfs.github.io/openzfs-docs/man/8/zfs-sen
* - ``compressed`` * - ``compressed``
- ``-c`` - ``-c``
- -
* - ``embbeded_data`` * - ``embedded_data``
- ``-e`` - ``-e``
- -
* - ``saved`` * - ``saved``
@@ -141,9 +141,16 @@ Recv Options
override: { override: {
"org.openzfs.systemd:ignore": "on" "org.openzfs.systemd:ignore": "on"
} }
bandwidth_limit: ... # see below bandwidth_limit: ...
placeholder:
encryption: unspecified | off | inherit
... ...
Jump to
:ref:`properties <job-recv-options--inherit-and-override>` ,
:ref:`bandwidth_limit <job-send-recv-options--bandwidth-limit>` , and
:ref:`bandwidth_limit <job-recv-options--placeholder>`.
.. _job-recv-options--inherit-and-override: .. _job-recv-options--inherit-and-override:
``properties`` ``properties``
@@ -217,10 +224,40 @@ and property replication is enabled, the receiver must :ref:`inherit the followi
* ``keyformat`` * ``keyformat``
* ``encryption`` * ``encryption``
.. _job-recv-options--placeholder:
Placeholders
------------
During replication, zrepl :ref:`creates placeholder datasets <replication-placeholder-property>` on the receiving side if the sending side's ``filesystems`` filter creates gaps in the dataset hierarchy.
This is generally fully transparent to the user.
However, with OpenZFS Native Encryption, placeholders require zrepl user attention.
Specifically, the problem is that, when zrepl attempts to create the placeholder dataset on the receiver, and that placeholder's parent dataset is encrypted, ZFS wants to inherit encryption to the placeholder.
This is relevant to two use cases that zrepl supports:
1. **encrypted-send-to-untrusted-receiver** In this use case, the sender sends an :ref:`encrypted send stream <job-send-options-encrypted>` and the receiver doesn't have the key loaded.
2. **send-plain-encrypt-on-receive** The receive-side ``root_fs`` dataset is encrypted, and the senders are unencrypted.
The key of ``root_fs`` is loaded, and the goal is that the plain sends (e.g., from production) are encrypted on-the-fly during receive, with ``root_fs``'s key.
For **encrypted-send-to-untrusted-receiver**, the placeholder datasets need to be created with ``-o encryption=off``.
Without it, creation would fail with an error, indicating that the placeholder's parent dataset's key needs to be loaded.
But we don't trust the receiver, so we can't expect that to ever happen.
However, for **send-plain-encrypt-on-receive**, we cannot set ``-o encryption=off``.
The reason is that if we did, any of the (non-placeholder) child datasets below the placeholder would inherit ``encryption=off``, thereby silently breaking our encrypt-on-receive use case.
So, to cover this use case, we need to create placeholders without specifying ``-o encryption``.
This will make ``zfs create`` inherit the encryption mode from the parent dataset, and thereby transitively from ``root_fs``.
The zrepl config provides the `recv.placeholder.encryption` knob to control this behavior.
In ``undefined`` mode (default), placeholder creation bails out and asks the user to configure a behavior.
In ``off`` mode, the placeholder is created with ``encryption=off``, i.e., **encrypted-send-to-untrusted-rceiver** use case.
In ``inherit`` mode, the placeholder is created without specifying ``-o encryption`` at all, i.e., the **send-plain-encrypt-on-receive** use case.
Common Options Common Options
~~~~~~~~~~~~~~ ~~~~~~~~~~~~~~
.. _job-send-recv-options-bandwidth-limit: .. _job-send-recv-options--bandwidth-limit:
Bandwidth Limit (send & recv) Bandwidth Limit (send & recv)
----------------------------- -----------------------------
+3 -2
View File
@@ -25,10 +25,10 @@ zrepl - ZFS replication
Progress: [=========================\----] 246.7 MiB / 264.7 MiB @ 11.5 MiB/s Progress: [=========================\----] 246.7 MiB / 264.7 MiB @ 11.5 MiB/s
zroot STEPPING (step 1/2, 624 B/1.2 KiB) next: @a => @b zroot STEPPING (step 1/2, 624 B/1.2 KiB) next: @a => @b
zroot/ROOT DONE (step 2/2, 1.2 KiB/1.2 KiB) zroot/ROOT DONE (step 2/2, 1.2 KiB/1.2 KiB)
zroot/ROOT/default STEPPING (step 1/2, 123.4 MiB/129.3 MiB) next: @a => @b * zroot/ROOT/default STEPPING (step 1/2, 123.4 MiB/129.3 MiB) next: @a => @b
zroot/tmp STEPPING (step 1/2, 29.9 KiB/44.2 KiB) next: @a => @b zroot/tmp STEPPING (step 1/2, 29.9 KiB/44.2 KiB) next: @a => @b
zroot/usr STEPPING (step 1/2, 624 B/1.2 KiB) next: @a => @b zroot/usr STEPPING (step 1/2, 624 B/1.2 KiB) next: @a => @b
zroot/usr/home STEPPING (step 1/2, 123.3 MiB/135.3 MiB) next: @a => @b * zroot/usr/home STEPPING (step 1/2, 123.3 MiB/135.3 MiB) next: @a => @b
zroot/var STEPPING (step 1/2, 624 B/1.2 KiB) next: @a => @b zroot/var STEPPING (step 1/2, 624 B/1.2 KiB) next: @a => @b
zroot/var/audit DONE (step 2/2, 1.2 KiB/1.2 KiB) zroot/var/audit DONE (step 2/2, 1.2 KiB/1.2 KiB)
zroot/var/crash DONE (step 2/2, 1.2 KiB/1.2 KiB) zroot/var/crash DONE (step 2/2, 1.2 KiB/1.2 KiB)
@@ -66,6 +66,7 @@ Main Features
* [x] Large blocks send & receive * [x] Large blocks send & receive
* [x] Embedded data send & receive * [x] Embedded data send & receive
* [x] Resume state send & receive * [x] Resume state send & receive
* [x] Bandwidth limiting
* **Automatic snapshot management** * **Automatic snapshot management**
+20 -9
View File
@@ -9,18 +9,29 @@ The fingerprint of the signing key is ``E101 418F D3D6 FBCB 9D65 A62D 7086 99FC
It is available at `<https://zrepl.cschwarz.com/apt/apt-key.asc>`_ . It is available at `<https://zrepl.cschwarz.com/apt/apt-key.asc>`_ .
Please open an issue in on GitHub if you encounter any issues with the repository. Please open an issue in on GitHub if you encounter any issues with the repository.
The following snippet configure the repository for your Debian or Ubuntu release:
:: ::
sudo apt update && sudo apt install curl gnupg lsb-release; \ (
ARCH="$(dpkg --print-architecture)"; \ set -ex
CODENAME="$(lsb_release -i -s | tr '[:upper:]' '[:lower:]') $(lsb_release -c -s | tr '[:upper:]' '[:lower:]')"; \ zrepl_apt_key_url=https://zrepl.cschwarz.com/apt/apt-key.asc
echo "Using Distro and Codename: $CODENAME"; \ zrepl_apt_key_dst=/usr/share/keyrings/zrepl.gpg
(curl https://zrepl.cschwarz.com/apt/apt-key.asc | sudo apt-key add -) && \ zrepl_apt_repo_file=/etc/apt/sources.list.d/zrepl.list
(echo "deb [arch=$ARCH] https://zrepl.cschwarz.com/apt/$CODENAME main" | sudo tee /etc/apt/sources.list.d/zrepl.list) && \
sudo apt update
# Install dependencies for subsequent commands
sudo apt update && sudo apt install curl gnupg lsb-release
# Deploy the zrepl apt key.
curl -fsSL "$zrepl_apt_key_url" | tee | gpg --dearmor | sudo tee "$zrepl_apt_key_dst" > /dev/null
# Add the zrepl apt repo.
ARCH="$(dpkg --print-architecture)"
CODENAME="$(lsb_release -i -s | tr '[:upper:]' '[:lower:]') $(lsb_release -c -s | tr '[:upper:]' '[:lower:]')"
echo "Using Distro and Codename: $CODENAME"
echo "deb [arch=$ARCH signed-by=$zrepl_apt_key_dst] https://zrepl.cschwarz.com/apt/$CODENAME main" | sudo tee /etc/apt/sources.list.d/zrepl.list
# Update apt repos.
sudo apt update
)
.. NOTE:: .. NOTE::
@@ -93,6 +93,7 @@ Enable the zrepl daemon to start automatically at boot:
sysrc zrepl_enable="YES" sysrc zrepl_enable="YES"
Now jump to :ref:`the summary <installation-freebsd-jail-summary>` below.
Plugin Plugin
###### ######
@@ -134,7 +135,18 @@ Now ``zrepl`` can be started.
service zrepl start service zrepl start
Now jump to :ref:`the summary <installation-freebsd-jail-summary>` below.
.. _installation-freebsd-jail-summary:
Summary Summary
------- -------
Congratulations, you have a working jail! Congratulations, you have a working jail!
.. NOTE::
With FreeBSD 13's transition to OpenZFS 2.0, please ensure that your jail's FreeBSD version matches the one in the kernel module.
If you are getting cryptic errors such as
``cannot receive new filesystem stream: invalid backup stream``
the instructions posted `here <https://github.com/zrepl/zrepl/issues/500#issuecomment-966215205>`_ might help.
+13
View File
@@ -51,6 +51,19 @@ We hope that you have found a configuration that fits your use case.
Use ``zrepl configcheck`` once again to make sure the config is correct (output indicates that everything is fine). Use ``zrepl configcheck`` once again to make sure the config is correct (output indicates that everything is fine).
Then restart the zrepl daemon on all systems involved in the replication, likely using ``service zrepl restart`` or ``systemctl restart zrepl``. Then restart the zrepl daemon on all systems involved in the replication, likely using ``service zrepl restart`` or ``systemctl restart zrepl``.
.. WARNING::
Please :ref:`read up carefully <prune>` on the pruning rules before applying the config.
In particular, note that most example configs apply to all snapshots, not just zrepl-created snapshots.
Use the following keep rule on sender and receiver to prevent this:
::
- type: regex
negate: true
regex: "^zrepl_.*" # <- the 'prefix' specified in snapshotting.prefix
Watch it Work Watch it Work
============= =============
+71 -1
View File
@@ -77,4 +77,74 @@ Systemd Unit File
A systemd service definition template is available in :repomasterlink:`dist/systemd`. A systemd service definition template is available in :repomasterlink:`dist/systemd`.
Note that some of the options only work on recent versions of systemd. Note that some of the options only work on recent versions of systemd.
Any help & improvements are very welcome, see :issue:`145`. Any help & improvements are very welcome, see :issue:`145`.
============
Ops Runbooks
============
.. toctree::
usage/runbooks/migrating_sending_side_to_new_zpool.rst
.. _usage-platform-tests:
==============
Platform Tests
==============
Along with the main ``zrepl`` binary, we release the ``platformtest`` binaries.
The zrepl platform tests are an integration test suite that is complementary to the pure Go unit tests.
Any test that needs to interact with ZFS is a platform test.
The platform need to run as root.
For each test, we create a fresh dummy zpool backed by a file-based vdev.
The file path, and a root mountpoint for the dummy zpool, must be specified on the command line:
::
mkdir -p /tmp/zreplplatformtest
./platformtest \
-poolname 'zreplplatformtest' \ # <- name must contain zreplplatformtest
-imagepath /tmp/zreplplatformtest.img \ # <- zrepl will create the file
-mountpoint /tmp/zreplplatformtest # <- must exist
.. WARNING::
``platformtest`` will unconditionally overwrite the file at `imagepath`
and unconditionally ``zpool destroy $poolname``.
So, don't use a production poolname, and consider running the test in a VM.
It'll be a lot faster as well because the underlying operations, ``zfs list`` in particular, will be faster.
While the platformtests are running, there will be a log of log output.
After all tests have run, it prints a summary with a list of tests, grouped by result type (success, failure, skipped):
::
PASSING TESTS:
github.com/zrepl/zrepl/platformtest/tests.BatchDestroy
github.com/zrepl/zrepl/platformtest/tests.CreateReplicationCursor
github.com/zrepl/zrepl/platformtest/tests.GetNonexistent
github.com/zrepl/zrepl/platformtest/tests.HoldsWork
...
github.com/zrepl/zrepl/platformtest/tests.SendStreamNonEOFReadErrorHandling
github.com/zrepl/zrepl/platformtest/tests.UndestroyableSnapshotParsing
SKIPPED TESTS:
github.com/zrepl/zrepl/platformtest/tests.SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden__EncryptionSupported_false
FAILED TESTS: []
If there is a failure, or a skipped test that you believe should be passing, re-run the test suite, capture stderr & stdout to a text file, and create an issue on GitHub.
To run a specific test case, or a subset of tests matched by regex, use the ``-run REGEX`` command line flag.
To stop test execution at the first failing test, and prevent cleanup of the dummy zpool, use the ``-failure.stop-and-keep-pool`` flag.
To build the platformtests yourself, use ``make test-platform-bin``.
There's also the ``make test-platform`` target to run the platform tests with a default command line.
@@ -0,0 +1,36 @@
Migrating Sending Side
~~~~~~~~~~~~~~~~~~~~~~
**Objective**:
Move sending-side zpool to new hardware.
Make the move fully transparent to the sending-side jobs.
After the move is done, all sending-side zrepl jobs should continue to work as if the move had not happened.
In particular, incremental replication should be able to pick up where it left before the move.
Suppose we want to migrate all data from one zpool ``oldpool`` to another zpool ``newpool``.
A possible reason might be that we want to change RAID levels, ``ashift``, or just migrate over to next-gen hardware.
If the pool names are different, zrepl's matching between sender and receiver dataset will break becase the receive-side dataset names contain ``oldpool``.
To avoid this, we will need the name of the new pool to match that of the old pool.
The following steps will accomplish this:
1. Stop zrepl.
2. Create the new pool: ``zpool create newpool ...``
3. Take a snapshot of the old pool so that you have something that you can ``zfs send``.
For example, run ``zfs snapshot -r oldpool@migration_oldpool_newpool``.
4. Send all of the oldpool's datasets to the new pool:
``zfs send -R oldpool@migration_oldpool_newpool | zfs recv -F newpool``
5. Export the old pool: ``zpool export oldpool``
6. Export the new pool: ``zpool export newpool``
7. (Optional) Change the name of the old pool to something that does not conflict with the new pool.
We are going to use the name ``oldoldpool`` in this example.
Use ``zpool import`` with no arguments to see the pool id.
Then ``zpool import <id> oldoldpool && zpool export oldoldpool``.
8. Import the new pool, while changing the name to match the old pool: ``zpool import newpool oldpool``
9. Start zrepl again and wake up the relevant jobs.
10. Use ``zrepl status`` or you monitoring to ensure that replication works.
The best test is an end-to-end test where you write some junk data on a sender dataset and wait until a snapshot with that data appears on the receiving side.
11. Once you are confident that replication is working, you may dispose of the old pool.
Note that, depending on pruning rules, it will not be possible to switch back to the old pool seamlessly, i.e., without a full re-replication.
+132 -43
View File
@@ -159,12 +159,11 @@ func sendArgsFromPDUAndValidateExistsAndGetVersion(ctx context.Context, fs strin
return version, nil return version, nil
} }
func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.ReadCloser, error) { func (s *Sender) sendMakeArgs(ctx context.Context, r *pdu.SendReq) (sendArgs zfs.ZFSSendArgsValidated, _ error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
_, err := s.filterCheckFS(r.Filesystem) _, err := s.filterCheckFS(r.Filesystem)
if err != nil { if err != nil {
return nil, nil, err return sendArgs, err
} }
switch r.Encrypted { switch r.Encrypted {
case pdu.Tri_DontCare: case pdu.Tri_DontCare:
@@ -172,16 +171,16 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.Rea
// ok, fallthrough outer // ok, fallthrough outer
case pdu.Tri_False: case pdu.Tri_False:
if s.config.Encrypt.B { if s.config.Encrypt.B {
return nil, nil, errors.New("only encrypted sends allowed (send -w + encryption!= off), but unencrypted send requested") return sendArgs, errors.New("only encrypted sends allowed (send -w + encryption!= off), but unencrypted send requested")
} }
// fallthrough outer // fallthrough outer
case pdu.Tri_True: case pdu.Tri_True:
if !s.config.Encrypt.B { if !s.config.Encrypt.B {
return nil, nil, errors.New("only unencrypted sends allowed, but encrypted send requested") return sendArgs, errors.New("only unencrypted sends allowed, but encrypted send requested")
} }
// fallthrough outer // fallthrough outer
default: default:
return nil, nil, fmt.Errorf("unknown pdu.Tri variant %q", r.Encrypted) return sendArgs, fmt.Errorf("unknown pdu.Tri variant %q", r.Encrypted)
} }
sendArgsUnvalidated := zfs.ZFSSendArgsUnvalidated{ sendArgsUnvalidated := zfs.ZFSSendArgsUnvalidated{
@@ -201,30 +200,19 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.Rea
}, },
} }
sendArgs, err := sendArgsUnvalidated.Validate(ctx) sendArgs, err = sendArgsUnvalidated.Validate(ctx)
if err != nil { if err != nil {
return nil, nil, errors.Wrap(err, "validate send arguments") return sendArgs, errors.Wrap(err, "validate send arguments")
} }
return sendArgs, nil
}
si, err := zfs.ZFSSendDry(ctx, sendArgs) func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.ReadCloser, error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
sendArgs, err := s.sendMakeArgs(ctx, r)
if err != nil { if err != nil {
return nil, nil, errors.Wrap(err, "zfs send dry failed") return nil, nil, err
}
// From now on, assume that sendArgs has been validated by ZFSSendDry
// (because validation involves 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
expSize = si.SizeEstimate
}
res := &pdu.SendRes{
ExpectedSize: expSize,
UsedResumeToken: r.ResumeToken != "",
}
if r.DryRun {
return res, nil, nil
} }
// create holds or bookmarks of `From` and `To` to guarantee one of the following: // create holds or bookmarks of `From` and `To` to guarantee one of the following:
@@ -322,9 +310,37 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.Rea
// apply rate limit // apply rate limit
sendStream = s.bwLimit.WrapReadCloser(sendStream) sendStream = s.bwLimit.WrapReadCloser(sendStream)
res := &pdu.SendRes{
ExpectedSize: 0,
UsedResumeToken: r.ResumeToken != "",
}
return res, sendStream, nil return res, sendStream, nil
} }
func (s *Sender) SendDry(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
sendArgs, err := s.sendMakeArgs(ctx, r)
if err != nil {
return nil, err
}
si, err := zfs.ZFSSendDry(ctx, sendArgs)
if err != nil {
return nil, errors.Wrap(err, "zfs send dry failed")
}
// From now on, assume that sendArgs has been validated by ZFSSendDry
// (because validation involves shelling out, it's actually a little expensive)
res := &pdu.SendRes{
ExpectedSize: si.SizeEstimate,
UsedResumeToken: r.ResumeToken != "",
}
return res, nil
}
func (p *Sender) SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*pdu.SendCompletedRes, error) { func (p *Sender) SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*pdu.SendCompletedRes, error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)() defer trace.WithSpanFromStackUpdateCtx(&ctx)()
@@ -456,8 +472,20 @@ type ReceiverConfig struct {
OverrideProperties map[zfsprop.Property]string OverrideProperties map[zfsprop.Property]string
BandwidthLimit bandwidthlimit.Config BandwidthLimit bandwidthlimit.Config
PlaceholderEncryption PlaceholderCreationEncryptionProperty
} }
//go:generate enumer -type=PlaceholderCreationEncryptionProperty -transform=kebab -trimprefix=PlaceholderCreationEncryptionProperty
type PlaceholderCreationEncryptionProperty int
// Note: the constant names, transformed through enumer, are part of the config format!
const (
PlaceholderCreationEncryptionPropertyUnspecified PlaceholderCreationEncryptionProperty = 1 << iota
PlaceholderCreationEncryptionPropertyInherit
PlaceholderCreationEncryptionPropertyOff
)
func (c *ReceiverConfig) copyIn() { func (c *ReceiverConfig) copyIn() {
c.RootWithoutClientComponent = c.RootWithoutClientComponent.Copy() c.RootWithoutClientComponent = c.RootWithoutClientComponent.Copy()
@@ -497,6 +525,10 @@ func (c *ReceiverConfig) Validate() error {
return errors.Wrap(err, "`BandwidthLimit` field invalid") return errors.Wrap(err, "`BandwidthLimit` field invalid")
} }
if !c.PlaceholderEncryption.IsAPlaceholderCreationEncryptionProperty() {
return errors.Errorf("`PlaceholderEncryption` field is invalid")
}
return nil return nil
} }
@@ -509,6 +541,8 @@ type Receiver struct {
bwLimit bandwidthlimit.Wrapper bwLimit bandwidthlimit.Wrapper
recvParentCreationMtx *chainlock.L recvParentCreationMtx *chainlock.L
Test_OverrideClientIdentityFunc func() string // for use by platformtest
} }
func NewReceiver(config ReceiverConfig) *Receiver { func NewReceiver(config ReceiverConfig) *Receiver {
@@ -546,9 +580,15 @@ func (s *Receiver) clientRootFromCtx(ctx context.Context) *zfs.DatasetPath {
return s.conf.RootWithoutClientComponent.Copy() return s.conf.RootWithoutClientComponent.Copy()
} }
clientIdentity, ok := ctx.Value(ClientIdentityKey).(string) var clientIdentity string
if !ok { if s.Test_OverrideClientIdentityFunc != nil {
panic("ClientIdentityKey context value must be set") clientIdentity = s.Test_OverrideClientIdentityFunc()
} else {
var ok bool
clientIdentity, ok = ctx.Value(ClientIdentityKey).(string) // no shadow
if !ok {
panic("ClientIdentityKey context value must be set")
}
} }
clientRoot, err := clientRoot(s.conf.RootWithoutClientComponent, clientIdentity) clientRoot, err := clientRoot(s.conf.RootWithoutClientComponent, clientIdentity)
@@ -589,7 +629,8 @@ func (s *Receiver) ListFilesystems(ctx context.Context, req *pdu.ListFilesystemR
if rphs, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, s.conf.RootWithoutClientComponent); err != nil { if rphs, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, s.conf.RootWithoutClientComponent); err != nil {
return nil, errors.Wrap(err, "cannot determine whether root_fs exists") return nil, errors.Wrap(err, "cannot determine whether root_fs exists")
} else if !rphs.FSExists { } else if !rphs.FSExists {
return nil, errors.New("root_fs does not exist") getLogger(ctx).WithField("root_fs", s.conf.RootWithoutClientComponent).Error("root_fs does not exist")
return nil, errors.Errorf("root_fs does not exist")
} }
root := s.clientRootFromCtx(ctx) root := s.clientRootFromCtx(ctx)
@@ -693,6 +734,38 @@ func (s *Receiver) Send(ctx context.Context, req *pdu.SendReq) (*pdu.SendRes, io
return nil, nil, fmt.Errorf("receiver does not implement Send()") return nil, nil, fmt.Errorf("receiver does not implement Send()")
} }
func (s *Receiver) SendDry(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
return nil, fmt.Errorf("receiver does not implement SendDry()")
}
func (s *Receiver) receive_GetPlaceholderCreationEncryptionValue(client_root, path *zfs.DatasetPath) (zfs.FilesystemPlaceholderCreateEncryptionValue, error) {
if !s.conf.PlaceholderEncryption.IsAPlaceholderCreationEncryptionProperty() {
panic(s.conf.PlaceholderEncryption)
}
if client_root.Equal(path) && s.conf.PlaceholderEncryption == PlaceholderCreationEncryptionPropertyUnspecified {
// If our Receiver is configured to append a client component to s.conf.RootWithoutClientComponent
// then that dataset is always going to be a placeholder.
// We don't want to burden users with the concept of placeholders if their `filesystems` filter on the sender
// doesn't introduce any gaps.
// Since the dataset hierarchy up to and including that client component dataset is still fully controlled by us,
// using `inherit` is going to make it work in all expected use cases.
return zfs.FilesystemPlaceholderCreateEncryptionInherit, nil
}
switch s.conf.PlaceholderEncryption {
case PlaceholderCreationEncryptionPropertyUnspecified:
return 0, fmt.Errorf("placeholder filesystem encryption handling is unspecified in receiver config")
case PlaceholderCreationEncryptionPropertyInherit:
return zfs.FilesystemPlaceholderCreateEncryptionInherit, nil
case PlaceholderCreationEncryptionPropertyOff:
return zfs.FilesystemPlaceholderCreateEncryptionOff, nil
default:
panic(s.conf.PlaceholderEncryption)
}
}
func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.ReadCloser) (*pdu.ReceiveRes, error) { func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.ReadCloser) (*pdu.ReceiveRes, error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)() defer trace.WithSpanFromStackUpdateCtx(&ctx)()
@@ -733,15 +806,18 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.
if v.Path.Equal(lp) { if v.Path.Equal(lp) {
return false return false
} }
l := getLogger(ctx).
WithField("placeholder_fs", v.Path.ToString()).
WithField("receive_fs", lp.ToString())
ph, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, v.Path) ph, err := zfs.ZFSGetFilesystemPlaceholderState(ctx, v.Path)
getLogger(ctx). l.WithField("placeholder_state", fmt.Sprintf("%#v", ph)).
WithField("fs", v.Path.ToString()).
WithField("placeholder_state", fmt.Sprintf("%#v", ph)).
WithField("err", fmt.Sprintf("%s", err)). WithField("err", fmt.Sprintf("%s", err)).
WithField("errType", fmt.Sprintf("%T", err)). WithField("errType", fmt.Sprintf("%T", err)).
Debug("placeholder state for filesystem") Debug("get placeholder state for filesystem")
if err != nil { if err != nil {
visitErr = err visitErr = errors.Wrapf(err, "cannot get placeholder state of %s", v.Path.ToString())
return false return false
} }
@@ -752,21 +828,34 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.
} else { } else {
visitErr = fmt.Errorf("root_fs %q does not exist", s.conf.RootWithoutClientComponent.ToString()) visitErr = fmt.Errorf("root_fs %q does not exist", s.conf.RootWithoutClientComponent.ToString())
} }
getLogger(ctx).WithError(visitErr).Error("placeholders are only created automatically below root_fs") l.WithError(visitErr).Error("placeholders are only created automatically below root_fs")
return false return false
} }
l := getLogger(ctx).WithField("placeholder_fs", v.Path)
l.Debug("create placeholder filesystem") // compute the value lazily so that users who don't rely on
err := zfs.ZFSCreatePlaceholderFilesystem(ctx, v.Path, v.Parent.Path) // placeholders can use the default value PlaceholderCreationEncryptionPropertyUnspecified
placeholderEncryption, err := s.receive_GetPlaceholderCreationEncryptionValue(root, v.Path)
if err != nil { if err != nil {
l.WithError(err).Error("cannot create placeholder filesystem") l.WithError(err).Error("cannot create placeholder filesystem") // logger already contains path
visitErr = err visitErr = errors.Wrapf(err, "cannot create placeholder filesystem %s", v.Path.ToString())
return false return false
} }
l := l.WithField("encryption", placeholderEncryption)
l.Debug("creating placeholder filesystem")
err = zfs.ZFSCreatePlaceholderFilesystem(ctx, v.Path, v.Parent.Path, placeholderEncryption)
if err != nil {
l.WithError(err).Error("cannot create placeholder filesystem") // logger already contains path
visitErr = errors.Wrapf(err, "cannot create placeholder filesystem %s", v.Path.ToString())
return false
}
l.Info("created placeholder filesystem")
return true return true
} else {
l.Debug("filesystem exists")
return true // leave this fs as is
} }
getLogger(ctx).WithField("filesystem", v.Path.ToString()).Debug("exists")
return true // leave this fs as is
}) })
}() }()
getLogger(ctx).WithField("visitErr", visitErr).Debug("complete tree-walk") getLogger(ctx).WithField("visitErr", visitErr).Debug("complete tree-walk")
@@ -0,0 +1,62 @@
// Code generated by "enumer -type=PlaceholderCreationEncryptionProperty -transform=kebab -trimprefix=PlaceholderCreationEncryptionProperty"; DO NOT EDIT.
//
package endpoint
import (
"fmt"
)
const (
_PlaceholderCreationEncryptionPropertyName_0 = "unspecifiedinherit"
_PlaceholderCreationEncryptionPropertyName_1 = "off"
)
var (
_PlaceholderCreationEncryptionPropertyIndex_0 = [...]uint8{0, 11, 18}
_PlaceholderCreationEncryptionPropertyIndex_1 = [...]uint8{0, 3}
)
func (i PlaceholderCreationEncryptionProperty) String() string {
switch {
case 1 <= i && i <= 2:
i -= 1
return _PlaceholderCreationEncryptionPropertyName_0[_PlaceholderCreationEncryptionPropertyIndex_0[i]:_PlaceholderCreationEncryptionPropertyIndex_0[i+1]]
case i == 4:
return _PlaceholderCreationEncryptionPropertyName_1
default:
return fmt.Sprintf("PlaceholderCreationEncryptionProperty(%d)", i)
}
}
var _PlaceholderCreationEncryptionPropertyValues = []PlaceholderCreationEncryptionProperty{1, 2, 4}
var _PlaceholderCreationEncryptionPropertyNameToValueMap = map[string]PlaceholderCreationEncryptionProperty{
_PlaceholderCreationEncryptionPropertyName_0[0:11]: 1,
_PlaceholderCreationEncryptionPropertyName_0[11:18]: 2,
_PlaceholderCreationEncryptionPropertyName_1[0:3]: 4,
}
// PlaceholderCreationEncryptionPropertyString retrieves an enum value from the enum constants string name.
// Throws an error if the param is not part of the enum.
func PlaceholderCreationEncryptionPropertyString(s string) (PlaceholderCreationEncryptionProperty, error) {
if val, ok := _PlaceholderCreationEncryptionPropertyNameToValueMap[s]; ok {
return val, nil
}
return 0, fmt.Errorf("%s does not belong to PlaceholderCreationEncryptionProperty values", s)
}
// PlaceholderCreationEncryptionPropertyValues returns all values of the enum
func PlaceholderCreationEncryptionPropertyValues() []PlaceholderCreationEncryptionProperty {
return _PlaceholderCreationEncryptionPropertyValues
}
// IsAPlaceholderCreationEncryptionProperty returns "true" if the value is listed in the enum definition. "false" otherwise
func (i PlaceholderCreationEncryptionProperty) IsAPlaceholderCreationEncryptionProperty() bool {
for _, v := range _PlaceholderCreationEncryptionPropertyValues {
if i == v {
return true
}
}
return false
}
-2
View File
@@ -8,7 +8,6 @@ require (
github.com/gdamore/tcell/v2 v2.2.0 github.com/gdamore/tcell/v2 v2.2.0
github.com/gitchander/permutation v0.0.0-20181107151852-9e56b92e9909 github.com/gitchander/permutation v0.0.0-20181107151852-9e56b92e9909
github.com/go-logfmt/logfmt v0.4.0 github.com/go-logfmt/logfmt v0.4.0
github.com/go-playground/universal-translator v0.17.0 // indirect
github.com/go-playground/validator v9.31.0+incompatible github.com/go-playground/validator v9.31.0+incompatible
github.com/go-playground/validator/v10 v10.4.1 github.com/go-playground/validator/v10 v10.4.1
github.com/go-sql-driver/mysql v1.4.1-0.20190907122137-b2c03bcae3d4 github.com/go-sql-driver/mysql v1.4.1-0.20190907122137-b2c03bcae3d4
@@ -44,7 +43,6 @@ require (
golang.org/x/net v0.0.0-20210119194325-5f4716e94777 golang.org/x/net v0.0.0-20210119194325-5f4716e94777
golang.org/x/sync v0.0.0-20190423024810-112230192c58 golang.org/x/sync v0.0.0-20190423024810-112230192c58
golang.org/x/sys v0.0.0-20210124154548-22da62e12c0c golang.org/x/sys v0.0.0-20210124154548-22da62e12c0c
golang.org/x/text v0.3.5 // indirect
golang.org/x/tools v0.0.0-20190524140312-2c0ae7006135 golang.org/x/tools v0.0.0-20190524140312-2c0ae7006135
gonum.org/v1/gonum v0.7.0 // indirect gonum.org/v1/gonum v0.7.0 // indirect
google.golang.org/genproto v0.0.0-20210122163508-8081c04a3579 // indirect google.golang.org/genproto v0.0.0-20210122163508-8081c04a3579 // indirect
+1
View File
@@ -37,6 +37,7 @@ func main() {
flag.StringVar(&args.CreateArgs.Mountpoint, "mountpoint", "", "") flag.StringVar(&args.CreateArgs.Mountpoint, "mountpoint", "", "")
flag.BoolVar(&args.StopAndKeepPoolOnFail, "failure.stop-and-keep-pool", false, "if a test case fails, stop test execution and keep pool as it was when the test failed") flag.BoolVar(&args.StopAndKeepPoolOnFail, "failure.stop-and-keep-pool", false, "if a test case fails, stop test execution and keep pool as it was when the test failed")
flag.StringVar(&args.Run, "run", "", "") flag.StringVar(&args.Run, "run", "", "")
flag.DurationVar(&platformtest.ZpoolExportTimeout, "zfs.zpool-export-timeout", platformtest.ZpoolExportTimeout, "")
flag.Parse() flag.Parse()
if err := HarnessRun(args); err != nil { if err := HarnessRun(args); err != nil {
+22 -2
View File
@@ -5,12 +5,17 @@ import (
"fmt" "fmt"
"os" "os"
"path/filepath" "path/filepath"
"runtime"
"strings"
"time"
"github.com/pkg/errors" "github.com/pkg/errors"
"github.com/zrepl/zrepl/zfs" "github.com/zrepl/zrepl/zfs"
) )
var ZpoolExportTimeout time.Duration = 500 * time.Millisecond
type Zpool struct { type Zpool struct {
args ZpoolCreateArgs args ZpoolCreateArgs
} }
@@ -93,8 +98,23 @@ func (p *Zpool) Name() string { return p.args.PoolName }
func (p *Zpool) Destroy(ctx context.Context, e Execer) error { func (p *Zpool) Destroy(ctx context.Context, e Execer) error {
if err := e.RunExpectSuccessNoOutput(ctx, "zpool", "export", p.args.PoolName); err != nil { exportDeadline := time.Now().Add(ZpoolExportTimeout)
return errors.Wrapf(err, "export pool %q", p.args.PoolName)
for {
if time.Now().After(exportDeadline) {
return errors.Errorf("could not zpool export (got 'pool is busy'): %s", p.args.PoolName)
}
err := e.RunExpectSuccessNoOutput(ctx, "zpool", "export", p.args.PoolName)
if err == nil {
break
}
if strings.Contains(err.Error(), "pool is busy") {
runtime.Gosched()
continue
}
if err != nil {
return errors.Wrapf(err, "export pool %q", p.args.PoolName)
}
} }
if err := os.Remove(p.args.ImagePath); err != nil { if err := os.Remove(p.args.ImagePath); err != nil {
+8
View File
@@ -24,6 +24,9 @@ var Cases = []Case{BatchDestroy,
ReplicationIsResumableFullSend__both_GuaranteeResumability, ReplicationIsResumableFullSend__both_GuaranteeResumability,
ReplicationIsResumableFullSend__initial_GuaranteeIncrementalReplication_incremental_GuaranteeIncrementalReplication, ReplicationIsResumableFullSend__initial_GuaranteeIncrementalReplication_incremental_GuaranteeIncrementalReplication,
ReplicationIsResumableFullSend__initial_GuaranteeResumability_incremental_GuaranteeIncrementalReplication, ReplicationIsResumableFullSend__initial_GuaranteeResumability_incremental_GuaranteeIncrementalReplication,
ReplicationPlaceholderEncryption__EncryptOnReceiverUseCase__WorksIfConfiguredWithInherit,
ReplicationPlaceholderEncryption__UnspecifiedIsOkForClientIdentityPlaceholder,
ReplicationPlaceholderEncryption__UnspecifiedLeadsToFailureAtRuntimeWhenCreatingPlaceholders,
ReplicationPropertyReplicationWorks, ReplicationPropertyReplicationWorks,
ReplicationReceiverErrorWhileStillSending, ReplicationReceiverErrorWhileStillSending,
ReplicationStepCompletedLostBehavior__GuaranteeIncrementalReplication, ReplicationStepCompletedLostBehavior__GuaranteeIncrementalReplication,
@@ -34,5 +37,10 @@ var Cases = []Case{BatchDestroy,
SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden__EncryptionSupported_true, SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden__EncryptionSupported_true,
SendArgsValidationResumeTokenDifferentFilesystemForbidden, SendArgsValidationResumeTokenDifferentFilesystemForbidden,
SendArgsValidationResumeTokenEncryptionMismatchForbidden, SendArgsValidationResumeTokenEncryptionMismatchForbidden,
SendStreamCloseAfterBlockedOnPipeWrite,
SendStreamCloseAfterEOFRead,
SendStreamMultipleCloseAfterEOF,
SendStreamMultipleCloseBeforeEOF,
SendStreamNonEOFReadErrorHandling,
UndestroyableSnapshotParsing, UndestroyableSnapshotParsing,
} }
+6
View File
@@ -10,6 +10,7 @@ import (
"github.com/stretchr/testify/require" "github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/platformtest" "github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/util/limitio" "github.com/zrepl/zrepl/util/limitio"
"github.com/zrepl/zrepl/zfs" "github.com/zrepl/zrepl/zfs"
@@ -174,3 +175,8 @@ func datasetToStringSortedTrimPrefix(prefix *zfs.DatasetPath, paths []*zfs.Datas
sort.Strings(pstrs) sort.Strings(pstrs)
return pstrs return pstrs
} }
func mustAddToSFilter(ctx *platformtest.Context, f *filters.DatasetMapFilter, fs string) {
err := f.Add(fs, "ok")
require.NoError(ctx, err)
}
+222 -14
View File
@@ -79,6 +79,7 @@ func (i replicationInvocation) Do(ctx *platformtest.Context) *report.Report {
AppendClientIdentity: false, AppendClientIdentity: false,
RootWithoutClientComponent: mustDatasetPath(i.rfsRoot), RootWithoutClientComponent: mustDatasetPath(i.rfsRoot),
BandwidthLimit: bandwidthlimit.NoLimitConfig(), BandwidthLimit: bandwidthlimit.NoLimitConfig(),
PlaceholderEncryption: endpoint.PlaceholderCreationEncryptionPropertyUnspecified,
} }
if i.receiverConfigHook != nil { if i.receiverConfigHook != nil {
i.receiverConfigHook(&receiverConfig) i.receiverConfigHook(&receiverConfig)
@@ -809,13 +810,22 @@ type NeverEndingSender struct {
*endpoint.Sender *endpoint.Sender
} }
func (s *NeverEndingSender) SendDry(ctx context.Context, req *pdu.SendReq) (r *pdu.SendRes, err error) {
r, _, err = s.sendImpl(ctx, req, true)
return r, err
}
func (s *NeverEndingSender) Send(ctx context.Context, req *pdu.SendReq) (r *pdu.SendRes, stream io.ReadCloser, _ error) { func (s *NeverEndingSender) Send(ctx context.Context, req *pdu.SendReq) (r *pdu.SendRes, stream io.ReadCloser, _ error) {
return s.sendImpl(ctx, req, false)
}
func (s *NeverEndingSender) sendImpl(ctx context.Context, req *pdu.SendReq, dry bool) (r *pdu.SendRes, stream io.ReadCloser, _ error) {
stream = nil stream = nil
r = &pdu.SendRes{ r = &pdu.SendRes{
UsedResumeToken: false, UsedResumeToken: false,
ExpectedSize: 1 << 30, ExpectedSize: 1 << 30,
} }
if req.DryRun { if dry {
return r, stream, nil return r, stream, nil
} }
dz, err := os.Open("/dev/zero") dz, err := os.Open("/dev/zero")
@@ -894,13 +904,9 @@ func ReplicationFailingInitialParentProhibitsChildReplication(ctx *platformtest.
fsAA := ctx.RootDataset + "/sender/aa" fsAA := ctx.RootDataset + "/sender/aa"
sfilter := filters.NewDatasetMapFilter(3, true) sfilter := filters.NewDatasetMapFilter(3, true)
mustAddToSFilter := func(fs string) { mustAddToSFilter(ctx, sfilter, fsA)
err := sfilter.Add(fs, "ok") mustAddToSFilter(ctx, sfilter, fsAChild)
require.NoError(ctx, err) mustAddToSFilter(ctx, sfilter, fsAA)
}
mustAddToSFilter(fsA)
mustAddToSFilter(fsAChild)
mustAddToSFilter(fsAA)
rfsRoot := ctx.RootDataset + "/receiver" rfsRoot := ctx.RootDataset + "/receiver"
mockRecvErr := fmt.Errorf("yifae4ohPhaquaes0hohghiep9oufie4roo7quoWooluaj2ee8") mockRecvErr := fmt.Errorf("yifae4ohPhaquaes0hohghiep9oufie4roo7quoWooluaj2ee8")
@@ -956,6 +962,7 @@ func ReplicationPropertyReplicationWorks(ctx *platformtest.Context) {
+ "sender/a/child" + "sender/a/child"
+ "sender/a/child@1" + "sender/a/child@1"
+ "receiver" + "receiver"
R zfs create -p "${ROOTDS}/receiver/${ROOTDS}/sender"
`) `)
sjid := endpoint.MustMakeJobID("sender-job") sjid := endpoint.MustMakeJobID("sender-job")
@@ -965,12 +972,8 @@ func ReplicationPropertyReplicationWorks(ctx *platformtest.Context) {
fsAChild := ctx.RootDataset + "/sender/a/child" fsAChild := ctx.RootDataset + "/sender/a/child"
sfilter := filters.NewDatasetMapFilter(2, true) sfilter := filters.NewDatasetMapFilter(2, true)
mustAddToSFilter := func(fs string) { mustAddToSFilter(ctx, sfilter, fsA)
err := sfilter.Add(fs, "ok") mustAddToSFilter(ctx, sfilter, fsAChild)
require.NoError(ctx, err)
}
mustAddToSFilter(fsA)
mustAddToSFilter(fsAChild)
rfsRoot := ctx.RootDataset + "/receiver" rfsRoot := ctx.RootDataset + "/receiver"
type testPropExpectation struct { type testPropExpectation struct {
@@ -1098,3 +1101,208 @@ func ReplicationPropertyReplicationWorks(ctx *platformtest.Context) {
} }
} }
} }
func ReplicationPlaceholderEncryption__UnspecifiedLeadsToFailureAtRuntimeWhenCreatingPlaceholders(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
+ "sender"
+ "sender/a"
+ "sender/a/child"
+ "receiver"
R zfs snapshot -r ${ROOTDS}/sender@initial
`)
sjid := endpoint.MustMakeJobID("sender-job")
rjid := endpoint.MustMakeJobID("receiver-job")
childfs := ctx.RootDataset + "/sender/a/child"
sfilter := filters.NewDatasetMapFilter(3, true)
mustAddToSFilter(ctx, sfilter, childfs)
rfsRoot := ctx.RootDataset + "/receiver"
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfilter: sfilter,
rfsRoot: rfsRoot,
guarantee: pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeResumability),
receiverConfigHook: func(rc *endpoint.ReceiverConfig) {
rc.PlaceholderEncryption = endpoint.PlaceholderCreationEncryptionPropertyUnspecified
},
}
r := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(r))
require.Len(ctx, r.Attempts, 1)
attempt := r.Attempts[0]
require.Nil(ctx, attempt.PlanError)
require.Len(ctx, attempt.Filesystems, 1)
afs := attempt.Filesystems[0]
require.Equal(ctx, childfs, afs.Info.Name)
require.Equal(ctx, 1, len(afs.Steps))
require.Equal(ctx, 0, afs.CurrentStep)
require.Equal(ctx, report.FilesystemSteppingErrored, afs.State)
childfsFirstComponent := strings.Split(childfs, "/")[0]
require.Contains(ctx, afs.StepError.Err, "cannot create placeholder filesystem "+rfsRoot+"/"+childfsFirstComponent+": placeholder filesystem encryption handling is unspecified in receiver config")
}
type ClientIdentityReceiver struct {
clientIdentity string
*endpoint.Receiver
}
func (r *ClientIdentityReceiver) Receive(ctx context.Context, req *pdu.ReceiveReq, stream io.ReadCloser) (*pdu.ReceiveRes, error) {
ctx = context.WithValue(ctx, endpoint.ClientIdentityKey, r.clientIdentity)
return r.Receiver.Receive(ctx, req, stream)
}
func ReplicationPlaceholderEncryption__UnspecifiedIsOkForClientIdentityPlaceholder(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
+ "receiver"
`)
sjid := endpoint.MustMakeJobID("sender-job")
rjid := endpoint.MustMakeJobID("receiver-job")
sfilter := filters.NewDatasetMapFilter(1, true)
// hacky...
comps := strings.Split(ctx.RootDataset, "/")
require.GreaterOrEqual(ctx, len(comps), 2)
pool := comps[0]
require.Contains(ctx, pool, "zreplplatformtest", "don't want to cause accidents")
poolchild := pool + "/" + comps[1]
err := zfs.ZFSSnapshot(ctx, mustDatasetPath(pool), "testsnap", false)
require.NoError(ctx, err)
err = zfs.ZFSSnapshot(ctx, mustDatasetPath(poolchild), "testsnap", false)
require.NoError(ctx, err)
mustAddToSFilter(ctx, sfilter, pool)
mustAddToSFilter(ctx, sfilter, poolchild)
clientIdentity := "testclientid"
rfsRoot := ctx.RootDataset + "/receiver"
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfilter: sfilter,
rfsRoot: rfsRoot,
guarantee: pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeResumability),
receiverConfigHook: func(rc *endpoint.ReceiverConfig) {
rc.PlaceholderEncryption = endpoint.PlaceholderCreationEncryptionPropertyUnspecified
rc.AppendClientIdentity = true
},
interceptReceiver: func(r *endpoint.Receiver) logic.Receiver {
r.Test_OverrideClientIdentityFunc = func() string { return clientIdentity }
return r
},
}
r := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(r))
require.Len(ctx, r.Attempts, 1)
attempt := r.Attempts[0]
require.Nil(ctx, attempt.PlanError)
require.Len(ctx, attempt.Filesystems, 2)
filesystemsByName := make(map[string]*report.FilesystemReport)
for _, fs := range attempt.Filesystems {
filesystemsByName[fs.Info.Name] = fs
}
require.Len(ctx, filesystemsByName, len(attempt.Filesystems))
afs, ok := filesystemsByName[pool]
require.True(ctx, ok)
require.Nil(ctx, afs.PlanError)
require.Nil(ctx, afs.StepError)
require.Equal(ctx, report.FilesystemDone, afs.State)
afs, ok = filesystemsByName[poolchild]
require.True(ctx, ok)
require.Nil(ctx, afs.PlanError)
require.Nil(ctx, afs.StepError)
require.Equal(ctx, report.FilesystemDone, afs.State)
mustGetFilesystemVersion(ctx, rfsRoot+"/"+clientIdentity+"/"+pool+"@testsnap")
mustGetFilesystemVersion(ctx, rfsRoot+"/"+clientIdentity+"/"+poolchild+"@testsnap")
}
func replicationPlaceholderEncryption__EncryptOnReceiverUseCase__impl(ctx *platformtest.Context, placeholderEncryption endpoint.PlaceholderCreationEncryptionProperty) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
+ "sender"
+ "sender/a"
+ "sender/a/child"
+ "receiver" encrypted
R zfs snapshot -r ${ROOTDS}/sender@initial
`)
sjid := endpoint.MustMakeJobID("sender-job")
rjid := endpoint.MustMakeJobID("receiver-job")
childfs := ctx.RootDataset + "/sender/a/child"
sfilter := filters.NewDatasetMapFilter(3, true)
mustAddToSFilter(ctx, sfilter, childfs)
rfsRoot := ctx.RootDataset + "/receiver"
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfilter: sfilter,
rfsRoot: rfsRoot,
guarantee: pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeResumability),
receiverConfigHook: func(rc *endpoint.ReceiverConfig) {
rc.PlaceholderEncryption = placeholderEncryption
rc.AppendClientIdentity = false
},
}
r := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(r))
require.Len(ctx, r.Attempts, 1)
attempt := r.Attempts[0]
require.Equal(ctx, report.AttemptDone, attempt.State)
require.Len(ctx, attempt.Filesystems, 1)
afs := attempt.Filesystems[0]
require.Equal(ctx, childfs, afs.Info.Name)
require.Equal(ctx, 1, len(afs.Steps))
rfs := mustDatasetPath(rfsRoot + "/" + childfs)
mustGetFilesystemVersion(ctx, rfs.ToString()+"@initial")
}
func ReplicationPlaceholderEncryption__EncryptOnReceiverUseCase__WorksIfConfiguredWithInherit(ctx *platformtest.Context) {
placeholderEncryption := endpoint.PlaceholderCreationEncryptionPropertyInherit
replicationPlaceholderEncryption__EncryptOnReceiverUseCase__impl(ctx, placeholderEncryption)
childfs := ctx.RootDataset + "/sender/a/child"
rfsRoot := ctx.RootDataset + "/receiver"
rfs := mustDatasetPath(rfsRoot + "/" + childfs)
// The leaf child dataset should be inhering from rfsRoot.
// If we had replicated with PlaceholderCreationEncryptionPropertyOff
// then it would be unencrypted and inherit from the placeholder.
props, err := zfs.ZFSGet(ctx, rfs, []string{"encryptionroot"})
require.NoError(ctx, err)
require.Equal(ctx, rfsRoot, props.Get("encryptionroot"))
}
+186
View File
@@ -0,0 +1,186 @@
package tests
import (
"fmt"
"io"
"io/ioutil"
"os"
"os/exec"
"path"
"syscall"
"time"
"github.com/stretchr/testify/require"
"golang.org/x/sys/unix"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/util/nodefault"
"github.com/zrepl/zrepl/zfs"
)
func sendStreamTest(ctx *platformtest.Context) *zfs.SendStream {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
DESTROYROOT
CREATEROOT
+ "sender"
`)
fs := fmt.Sprintf("%s/sender", ctx.RootDataset)
fsmpo, err := zfs.ZFSGetMountpoint(ctx, fs)
require.NoError(ctx, err)
writeDummyData(path.Join(fsmpo.Mountpoint, "dummy.data"), 1<<26)
mustSnapshot(ctx, fs+"@1")
snap := fsversion(ctx, fs, "@1")
snapSendArg := snap.ToSendArgVersion()
sendArgs, err := zfs.ZFSSendArgsUnvalidated{
FS: fs,
From: nil,
To: &snapSendArg,
ZFSSendFlags: zfs.ZFSSendFlags{
Encrypted: &nodefault.Bool{B: false},
},
}.Validate(ctx)
require.NoError(ctx, err)
sendStream, err := zfs.ZFSSend(ctx, sendArgs)
require.NoError(ctx, err)
return sendStream
}
func SendStreamCloseAfterBlockedOnPipeWrite(ctx *platformtest.Context) {
sendStream := sendStreamTest(ctx)
// let the pipe buffer fill and the zfs process block uninterruptibly
ctx.Logf("waiting for pipe write to block")
time.Sleep(5 * time.Second) // XXX need a platform-neutral way to detect that the pipe is full and the writer is blocked
ctx.Logf("closing send stream")
err := sendStream.Close() // this is what this test case is about
ctx.Logf("close error: %T %s", err, err)
require.NoError(ctx, err)
exitErrZfsError := sendStream.TestOnly_ExitErr()
require.Contains(ctx, exitErrZfsError.Error(), "signal")
require.Error(ctx, exitErrZfsError)
exitErr, ok := exitErrZfsError.WaitErr.(*exec.ExitError)
require.True(ctx, ok)
if exitErr.Exited() {
// some ZFS impls (FreeBSD 12) behaves that way
return
}
// ProcessState is only available after exit
// => use as proxy that the process was wait()ed upon and is gone
ctx.Logf("%#v", exitErr.ProcessState)
require.NotNil(ctx, exitErr.ProcessState)
// and let's verify that the process got killed, so that we know it was the call to .Close() above
waitStatus := exitErr.ProcessState.Sys().(syscall.WaitStatus)
ctx.Logf("wait status: %#v", waitStatus)
ctx.Logf("exit status: %v", waitStatus.ExitStatus())
require.True(ctx, waitStatus.Signaled())
switch waitStatus.Signal() {
case unix.SIGKILL:
fallthrough
case unix.SIGPIPE:
// ok
default:
ctx.Errorf("%T %s\n%v", waitStatus.Signal(), waitStatus.Signal(), waitStatus.Signal())
ctx.FailNow()
}
}
func SendStreamCloseAfterEOFRead(ctx *platformtest.Context) {
sendStream := sendStreamTest(ctx)
_, err := io.Copy(ioutil.Discard, sendStream)
require.NoError(ctx, err)
var buf [128]byte
n, err := sendStream.Read(buf[:])
require.Zero(ctx, n)
require.Equal(ctx, io.EOF, err)
err = sendStream.Close()
require.NoError(ctx, err)
n, err = sendStream.Read(buf[:])
require.Zero(ctx, n)
require.Equal(ctx, os.ErrClosed, err, "same read error should be returned")
}
func SendStreamMultipleCloseAfterEOF(ctx *platformtest.Context) {
sendStream := sendStreamTest(ctx)
_, err := io.Copy(ioutil.Discard, sendStream)
require.NoError(ctx, err)
var buf [128]byte
n, err := sendStream.Read(buf[:])
require.Zero(ctx, n)
require.Equal(ctx, io.EOF, err)
err = sendStream.Close()
require.NoError(ctx, err)
err = sendStream.Close()
require.Equal(ctx, os.ErrClosed, err)
}
func SendStreamMultipleCloseBeforeEOF(ctx *platformtest.Context) {
sendStream := sendStreamTest(ctx)
err := sendStream.Close()
require.NoError(ctx, err)
err = sendStream.Close()
require.Equal(ctx, os.ErrClosed, err)
}
type failingReadCloser struct {
err error
}
var _ io.ReadCloser = &failingReadCloser{}
func (c *failingReadCloser) Read(p []byte) (int, error) { return 0, c.err }
func (c *failingReadCloser) Close() error { return c.err }
func SendStreamNonEOFReadErrorHandling(ctx *platformtest.Context) {
sendStream := sendStreamTest(ctx)
var buf [128]byte
n, err := sendStream.Read(buf[:])
require.Equal(ctx, len(buf), n)
require.NoError(ctx, err)
var mockError = fmt.Errorf("taeghaefow4piesahwahjocu7ul5tiachaiLipheijae8ooZ8Pies8shohGee9feeTeirai5aiFeiyaecai4kiaLoh4azeih0tea")
mock := &failingReadCloser{err: mockError}
orig := sendStream.TestOnly_ReplaceStdoutReader(mock)
n, err = sendStream.Read(buf[:])
require.Equal(ctx, 0, n)
require.Equal(ctx, mockError, err)
if sendStream.TestOnly_ReplaceStdoutReader(orig) != mock {
panic("incorrect test impl")
}
err = sendStream.Close()
require.NoError(ctx, err) // if we can't kill the child then this will be a flaky test, but let's assume we can kill the child
err = sendStream.Close()
require.Equal(ctx, os.ErrClosed, err)
}
+21 -5
View File
@@ -151,6 +151,8 @@ type fs struct {
l *chainlock.L l *chainlock.L
blockedOn report.FsBlockedOn
// ordering relationship that must be maintained for initial replication // ordering relationship that must be maintained for initial replication
initialRepOrd struct { initialRepOrd struct {
parents, children []*fs parents, children []*fs
@@ -158,8 +160,9 @@ type fs struct {
} }
planning struct { planning struct {
done bool waitingForStepQueue bool
err *timedError done bool
err *timedError
} }
// valid iff planning.done && planning.err == nil // valid iff planning.done && planning.err == nil
@@ -337,8 +340,9 @@ func (a *attempt) doGlobalPlanning(ctx context.Context, prev *attempt) map[*fs]*
for _, pfs := range pfss { for _, pfs := range pfss {
fs := &fs{ fs := &fs{
fs: pfs, fs: pfs,
l: a.l, l: a.l,
blockedOn: report.FsBlockedOnNothing,
} }
fs.initialRepOrd.parentDidUpdate = make(chan struct{}, 1) fs.initialRepOrd.parentDidUpdate = make(chan struct{}, 1)
a.fss = append(a.fss, fs) a.fss = append(a.fss, fs)
@@ -448,6 +452,10 @@ func (a *attempt) doFilesystems(ctx context.Context, prevs map[*fs]*fs) {
ctx, endTask := trace.WithTaskAndSpan(ctx, "repl-fs", f.report().Info.Name) ctx, endTask := trace.WithTaskAndSpan(ctx, "repl-fs", f.report().Info.Name)
defer endTask() defer endTask()
f.do(ctx, stepQueue, prevs[f]) f.do(ctx, stepQueue, prevs[f])
f.l.HoldWhile(func() {
// every return from f means it's unblocked...
f.blockedOn = report.FsBlockedOnNothing
})
}(f) }(f)
} }
a.l.DropWhile(func() { a.l.DropWhile(func() {
@@ -486,11 +494,16 @@ func (f *fs) do(ctx context.Context, pq *stepQueue, prev *fs) {
var psteps []Step var psteps []Step
var errTime time.Time var errTime time.Time
var err error var err error
f.blockedOn = report.FsBlockedOnPlanningStepQueue
f.l.DropWhile(func() { f.l.DropWhile(func() {
// TODO hacky // TODO hacky
// choose target time that is earlier than any snapshot, so fs planning is always prioritized // choose target time that is earlier than any snapshot, so fs planning is always prioritized
targetDate := time.Unix(0, 0) targetDate := time.Unix(0, 0)
defer pq.WaitReady(ctx, f, targetDate)() defer pq.WaitReady(ctx, f, targetDate)()
f.l.HoldWhile(func() {
// transition before we call PlanFS
f.blockedOn = report.FsBlockedOnNothing
})
psteps, err = f.fs.PlanFS(ctx) // no shadow psteps, err = f.fs.PlanFS(ctx) // no shadow
errTime = time.Now() // no shadow errTime = time.Now() // no shadow
}) })
@@ -545,6 +558,7 @@ func (f *fs) do(ctx context.Context, pq *stepQueue, prev *fs) {
f.planning.done = true f.planning.done = true
// wait for parents' initial replication // wait for parents' initial replication
f.blockedOn = report.FsBlockedOnParentInitialRepl
var parents []string var parents []string
for _, p := range f.initialRepOrd.parents { for _, p := range f.initialRepOrd.parents {
parents = append(parents, p.fs.ReportInfo().Name) parents = append(parents, p.fs.ReportInfo().Name)
@@ -613,7 +627,6 @@ func (f *fs) do(ctx context.Context, pq *stepQueue, prev *fs) {
select { select {
case <-ctx.Done(): case <-ctx.Done():
f.planned.stepErr = newTimedError(ctx.Err(), time.Now()) f.planned.stepErr = newTimedError(ctx.Err(), time.Now())
return
case <-f.initialRepOrd.parentDidUpdate: case <-f.initialRepOrd.parentDidUpdate:
// loop // loop
} }
@@ -631,7 +644,9 @@ func (f *fs) do(ctx context.Context, pq *stepQueue, prev *fs) {
f.l.DropWhile(func() { f.l.DropWhile(func() {
// wait for parallel replication // wait for parallel replication
targetDate := s.step.TargetDate() targetDate := s.step.TargetDate()
f.l.HoldWhile(func() { f.blockedOn = report.FsBlockedOnReplStepQueue })
defer pq.WaitReady(ctx, f, targetDate)() defer pq.WaitReady(ctx, f, targetDate)()
f.l.HoldWhile(func() { f.blockedOn = report.FsBlockedOnNothing })
// do the step // do the step
ctx, endSpan := trace.WithSpan(ctx, fmt.Sprintf("%#v", s.step.ReportInfo())) ctx, endSpan := trace.WithSpan(ctx, fmt.Sprintf("%#v", s.step.ReportInfo()))
defer endSpan() defer endSpan()
@@ -725,6 +740,7 @@ func (f *fs) report() *report.FilesystemReport {
r := &report.FilesystemReport{ r := &report.FilesystemReport{
Info: f.fs.ReportInfo(), Info: f.fs.ReportInfo(),
State: state, State: state,
BlockedOn: f.blockedOn,
PlanError: f.planning.err.IntoReportError(), PlanError: f.planning.err.IntoReportError(),
StepError: f.planned.stepErr.IntoReportError(), StepError: f.planned.stepErr.IntoReportError(),
Steps: make([]*report.StepReport, len(f.planned.steps)), Steps: make([]*report.StepReport, len(f.planned.steps)),
@@ -14,11 +14,12 @@ import (
"github.com/stretchr/testify/assert" "github.com/stretchr/testify/assert"
"github.com/zrepl/zrepl/daemon/logging/trace" "github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/util/zreplcircleci"
) )
// FIXME: this test relies on timing and is thus rather flaky
// (relies on scheduler responsiveness of < 500ms)
func TestPqNotconcurrent(t *testing.T) { func TestPqNotconcurrent(t *testing.T) {
zreplcircleci.SkipOnCircleCI(t, "because it relies on scheduler responsiveness < 500ms")
ctx, end := trace.WithTaskFromStack(context.Background()) ctx, end := trace.WithTaskFromStack(context.Background())
defer end() defer end()
var ctr uint32 var ctr uint32
@@ -90,6 +91,8 @@ func (r record) String() string {
// Hence, perform some statistics on the wakeup times and assert that the mean wakeup // Hence, perform some statistics on the wakeup times and assert that the mean wakeup
// times for each step are close together. // times for each step are close together.
func TestPqConcurrent(t *testing.T) { func TestPqConcurrent(t *testing.T) {
zreplcircleci.SkipOnCircleCI(t, "because it relies on scheduler responsiveness < 500ms")
ctx, end := trace.WithTaskFromStack(context.Background()) ctx, end := trace.WithTaskFromStack(context.Background())
defer end() defer end()
+134 -152
View File
@@ -518,8 +518,7 @@ type SendReq struct {
// encoded in the ResumeToken. Otherwise, the Sender MUST return an error. // encoded in the ResumeToken. Otherwise, the Sender MUST return an error.
ResumeToken string `protobuf:"bytes,4,opt,name=ResumeToken,proto3" json:"ResumeToken,omitempty"` ResumeToken string `protobuf:"bytes,4,opt,name=ResumeToken,proto3" json:"ResumeToken,omitempty"`
Encrypted Tri `protobuf:"varint,5,opt,name=Encrypted,proto3,enum=Tri" json:"Encrypted,omitempty"` Encrypted Tri `protobuf:"varint,5,opt,name=Encrypted,proto3,enum=Tri" json:"Encrypted,omitempty"`
DryRun bool `protobuf:"varint,6,opt,name=DryRun,proto3" json:"DryRun,omitempty"` ReplicationConfig *ReplicationConfig `protobuf:"bytes,6,opt,name=ReplicationConfig,proto3" json:"ReplicationConfig,omitempty"`
ReplicationConfig *ReplicationConfig `protobuf:"bytes,7,opt,name=ReplicationConfig,proto3" json:"ReplicationConfig,omitempty"`
} }
func (x *SendReq) Reset() { func (x *SendReq) Reset() {
@@ -589,13 +588,6 @@ func (x *SendReq) GetEncrypted() Tri {
return Tri_DontCare return Tri_DontCare
} }
func (x *SendReq) GetDryRun() bool {
if x != nil {
return x.DryRun
}
return false
}
func (x *SendReq) GetReplicationConfig() *ReplicationConfig { func (x *SendReq) GetReplicationConfig() *ReplicationConfig {
if x != nil { if x != nil {
return x.ReplicationConfig return x.ReplicationConfig
@@ -766,12 +758,11 @@ type SendRes struct {
unknownFields protoimpl.UnknownFields unknownFields protoimpl.UnknownFields
// Whether the resume token provided in the request has been used or not. // Whether the resume token provided in the request has been used or not.
// If the SendReq.ResumeToken == "", this field has no meaning. // If the SendReq.ResumeToken == "", this field MUST be false.
UsedResumeToken bool `protobuf:"varint,2,opt,name=UsedResumeToken,proto3" json:"UsedResumeToken,omitempty"` UsedResumeToken bool `protobuf:"varint,1,opt,name=UsedResumeToken,proto3" json:"UsedResumeToken,omitempty"`
// Expected stream size determined by dry run, not exact. // Expected stream size determined by dry run, not exact.
// 0 indicates that for the given SendReq, no size estimate could be made. // 0 indicates that for the given SendReq, no size estimate could be made.
ExpectedSize int64 `protobuf:"varint,3,opt,name=ExpectedSize,proto3" json:"ExpectedSize,omitempty"` ExpectedSize uint64 `protobuf:"varint,2,opt,name=ExpectedSize,proto3" json:"ExpectedSize,omitempty"`
Properties []*Property `protobuf:"bytes,4,rep,name=Properties,proto3" json:"Properties,omitempty"`
} }
func (x *SendRes) Reset() { func (x *SendRes) Reset() {
@@ -813,20 +804,13 @@ func (x *SendRes) GetUsedResumeToken() bool {
return false return false
} }
func (x *SendRes) GetExpectedSize() int64 { func (x *SendRes) GetExpectedSize() uint64 {
if x != nil { if x != nil {
return x.ExpectedSize return x.ExpectedSize
} }
return 0 return 0
} }
func (x *SendRes) GetProperties() []*Property {
if x != nil {
return x.Properties
}
return nil
}
type SendCompletedReq struct { type SendCompletedReq struct {
state protoimpl.MessageState state protoimpl.MessageState
sizeCache protoimpl.SizeCache sizeCache protoimpl.SizeCache
@@ -1443,7 +1427,7 @@ var file_pdu_proto_rawDesc = []byte{
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} }
var ( var (
@@ -1625,30 +1606,31 @@ var file_pdu_proto_depIdxs = []int32{
11, // 7: ReplicationConfig.protection:type_name -> ReplicationConfigProtection 11, // 7: ReplicationConfig.protection:type_name -> ReplicationConfigProtection
1, // 8: ReplicationConfigProtection.Initial:type_name -> ReplicationGuaranteeKind 1, // 8: ReplicationConfigProtection.Initial:type_name -> ReplicationGuaranteeKind
1, // 9: ReplicationConfigProtection.Incremental:type_name -> ReplicationGuaranteeKind 1, // 9: ReplicationConfigProtection.Incremental:type_name -> ReplicationGuaranteeKind
12, // 10: SendRes.Properties:type_name -> Property 9, // 10: SendCompletedReq.OriginalReq:type_name -> SendReq
9, // 11: SendCompletedReq.OriginalReq:type_name -> SendReq 8, // 11: ReceiveReq.To:type_name -> FilesystemVersion
8, // 12: ReceiveReq.To:type_name -> FilesystemVersion 10, // 12: ReceiveReq.ReplicationConfig:type_name -> ReplicationConfig
10, // 13: ReceiveReq.ReplicationConfig:type_name -> ReplicationConfig 8, // 13: DestroySnapshotsReq.Snapshots:type_name -> FilesystemVersion
8, // 14: DestroySnapshotsReq.Snapshots:type_name -> FilesystemVersion 8, // 14: DestroySnapshotRes.Snapshot:type_name -> FilesystemVersion
8, // 15: DestroySnapshotRes.Snapshot:type_name -> FilesystemVersion 19, // 15: DestroySnapshotsRes.Results:type_name -> DestroySnapshotRes
19, // 16: DestroySnapshotsRes.Results:type_name -> DestroySnapshotRes 23, // 16: Replication.Ping:input_type -> PingReq
23, // 17: Replication.Ping:input_type -> PingReq 3, // 17: Replication.ListFilesystems:input_type -> ListFilesystemReq
3, // 18: Replication.ListFilesystems:input_type -> ListFilesystemReq 6, // 18: Replication.ListFilesystemVersions:input_type -> ListFilesystemVersionsReq
6, // 19: Replication.ListFilesystemVersions:input_type -> ListFilesystemVersionsReq 18, // 19: Replication.DestroySnapshots:input_type -> DestroySnapshotsReq
18, // 20: Replication.DestroySnapshots:input_type -> DestroySnapshotsReq 21, // 20: Replication.ReplicationCursor:input_type -> ReplicationCursorReq
21, // 21: Replication.ReplicationCursor:input_type -> ReplicationCursorReq 9, // 21: Replication.SendDry:input_type -> SendReq
14, // 22: Replication.SendCompleted:input_type -> SendCompletedReq 14, // 22: Replication.SendCompleted:input_type -> SendCompletedReq
24, // 23: Replication.Ping:output_type -> PingRes 24, // 23: Replication.Ping:output_type -> PingRes
4, // 24: Replication.ListFilesystems:output_type -> ListFilesystemRes 4, // 24: Replication.ListFilesystems:output_type -> ListFilesystemRes
7, // 25: Replication.ListFilesystemVersions:output_type -> ListFilesystemVersionsRes 7, // 25: Replication.ListFilesystemVersions:output_type -> ListFilesystemVersionsRes
20, // 26: Replication.DestroySnapshots:output_type -> DestroySnapshotsRes 20, // 26: Replication.DestroySnapshots:output_type -> DestroySnapshotsRes
22, // 27: Replication.ReplicationCursor:output_type -> ReplicationCursorRes 22, // 27: Replication.ReplicationCursor:output_type -> ReplicationCursorRes
15, // 28: Replication.SendCompleted:output_type -> SendCompletedRes 13, // 28: Replication.SendDry:output_type -> SendRes
23, // [23:29] is the sub-list for method output_type 15, // 29: Replication.SendCompleted:output_type -> SendCompletedRes
17, // [17:23] is the sub-list for method input_type 23, // [23:30] is the sub-list for method output_type
17, // [17:17] is the sub-list for extension type_name 16, // [16:23] is the sub-list for method input_type
17, // [17:17] is the sub-list for extension extendee 16, // [16:16] is the sub-list for extension type_name
0, // [0:17] is the sub-list for field type_name 16, // [16:16] is the sub-list for extension extendee
0, // [0:16] is the sub-list for field type_name
} }
func init() { file_pdu_proto_init() } func init() { file_pdu_proto_init() }
+5 -8
View File
@@ -8,6 +8,7 @@ service Replication {
returns (ListFilesystemVersionsRes); returns (ListFilesystemVersionsRes);
rpc DestroySnapshots(DestroySnapshotsReq) returns (DestroySnapshotsRes); rpc DestroySnapshots(DestroySnapshotsReq) returns (DestroySnapshotsRes);
rpc ReplicationCursor(ReplicationCursorReq) returns (ReplicationCursorRes); rpc ReplicationCursor(ReplicationCursorReq) returns (ReplicationCursorRes);
rpc SendDry(SendReq) returns (SendRes);
rpc SendCompleted(SendCompletedReq) returns (SendCompletedRes); rpc SendCompleted(SendCompletedReq) returns (SendCompletedRes);
// for Send and Recv, see package rpc // for Send and Recv, see package rpc
} }
@@ -60,9 +61,7 @@ message SendReq {
string ResumeToken = 4; string ResumeToken = 4;
Tri Encrypted = 5; Tri Encrypted = 5;
bool DryRun = 6; ReplicationConfig ReplicationConfig = 6;
ReplicationConfig ReplicationConfig = 7;
} }
message ReplicationConfig { message ReplicationConfig {
@@ -89,14 +88,12 @@ message Property {
message SendRes { message SendRes {
// Whether the resume token provided in the request has been used or not. // Whether the resume token provided in the request has been used or not.
// If the SendReq.ResumeToken == "", this field has no meaning. // If the SendReq.ResumeToken == "", this field MUST be false.
bool UsedResumeToken = 2; bool UsedResumeToken = 1;
// Expected stream size determined by dry run, not exact. // Expected stream size determined by dry run, not exact.
// 0 indicates that for the given SendReq, no size estimate could be made. // 0 indicates that for the given SendReq, no size estimate could be made.
int64 ExpectedSize = 3; uint64 ExpectedSize = 2;
repeated Property Properties = 4;
} }
message SendCompletedReq { message SendCompletedReq {
+36
View File
@@ -23,6 +23,7 @@ type ReplicationClient interface {
ListFilesystemVersions(ctx context.Context, in *ListFilesystemVersionsReq, opts ...grpc.CallOption) (*ListFilesystemVersionsRes, error) ListFilesystemVersions(ctx context.Context, in *ListFilesystemVersionsReq, opts ...grpc.CallOption) (*ListFilesystemVersionsRes, error)
DestroySnapshots(ctx context.Context, in *DestroySnapshotsReq, opts ...grpc.CallOption) (*DestroySnapshotsRes, error) DestroySnapshots(ctx context.Context, in *DestroySnapshotsReq, opts ...grpc.CallOption) (*DestroySnapshotsRes, error)
ReplicationCursor(ctx context.Context, in *ReplicationCursorReq, opts ...grpc.CallOption) (*ReplicationCursorRes, error) ReplicationCursor(ctx context.Context, in *ReplicationCursorReq, opts ...grpc.CallOption) (*ReplicationCursorRes, error)
SendDry(ctx context.Context, in *SendReq, opts ...grpc.CallOption) (*SendRes, error)
SendCompleted(ctx context.Context, in *SendCompletedReq, opts ...grpc.CallOption) (*SendCompletedRes, error) SendCompleted(ctx context.Context, in *SendCompletedReq, opts ...grpc.CallOption) (*SendCompletedRes, error)
} }
@@ -79,6 +80,15 @@ func (c *replicationClient) ReplicationCursor(ctx context.Context, in *Replicati
return out, nil return out, nil
} }
func (c *replicationClient) SendDry(ctx context.Context, in *SendReq, opts ...grpc.CallOption) (*SendRes, error) {
out := new(SendRes)
err := c.cc.Invoke(ctx, "/Replication/SendDry", in, out, opts...)
if err != nil {
return nil, err
}
return out, nil
}
func (c *replicationClient) SendCompleted(ctx context.Context, in *SendCompletedReq, opts ...grpc.CallOption) (*SendCompletedRes, error) { func (c *replicationClient) SendCompleted(ctx context.Context, in *SendCompletedReq, opts ...grpc.CallOption) (*SendCompletedRes, error) {
out := new(SendCompletedRes) out := new(SendCompletedRes)
err := c.cc.Invoke(ctx, "/Replication/SendCompleted", in, out, opts...) err := c.cc.Invoke(ctx, "/Replication/SendCompleted", in, out, opts...)
@@ -97,6 +107,7 @@ type ReplicationServer interface {
ListFilesystemVersions(context.Context, *ListFilesystemVersionsReq) (*ListFilesystemVersionsRes, error) ListFilesystemVersions(context.Context, *ListFilesystemVersionsReq) (*ListFilesystemVersionsRes, error)
DestroySnapshots(context.Context, *DestroySnapshotsReq) (*DestroySnapshotsRes, error) DestroySnapshots(context.Context, *DestroySnapshotsReq) (*DestroySnapshotsRes, error)
ReplicationCursor(context.Context, *ReplicationCursorReq) (*ReplicationCursorRes, error) ReplicationCursor(context.Context, *ReplicationCursorReq) (*ReplicationCursorRes, error)
SendDry(context.Context, *SendReq) (*SendRes, error)
SendCompleted(context.Context, *SendCompletedReq) (*SendCompletedRes, error) SendCompleted(context.Context, *SendCompletedReq) (*SendCompletedRes, error)
mustEmbedUnimplementedReplicationServer() mustEmbedUnimplementedReplicationServer()
} }
@@ -120,6 +131,9 @@ func (UnimplementedReplicationServer) DestroySnapshots(context.Context, *Destroy
func (UnimplementedReplicationServer) ReplicationCursor(context.Context, *ReplicationCursorReq) (*ReplicationCursorRes, error) { func (UnimplementedReplicationServer) ReplicationCursor(context.Context, *ReplicationCursorReq) (*ReplicationCursorRes, error) {
return nil, status.Errorf(codes.Unimplemented, "method ReplicationCursor not implemented") return nil, status.Errorf(codes.Unimplemented, "method ReplicationCursor not implemented")
} }
func (UnimplementedReplicationServer) SendDry(context.Context, *SendReq) (*SendRes, error) {
return nil, status.Errorf(codes.Unimplemented, "method SendDry not implemented")
}
func (UnimplementedReplicationServer) SendCompleted(context.Context, *SendCompletedReq) (*SendCompletedRes, error) { func (UnimplementedReplicationServer) SendCompleted(context.Context, *SendCompletedReq) (*SendCompletedRes, error) {
return nil, status.Errorf(codes.Unimplemented, "method SendCompleted not implemented") return nil, status.Errorf(codes.Unimplemented, "method SendCompleted not implemented")
} }
@@ -226,6 +240,24 @@ func _Replication_ReplicationCursor_Handler(srv interface{}, ctx context.Context
return interceptor(ctx, in, info, handler) return interceptor(ctx, in, info, handler)
} }
func _Replication_SendDry_Handler(srv interface{}, ctx context.Context, dec func(interface{}) error, interceptor grpc.UnaryServerInterceptor) (interface{}, error) {
in := new(SendReq)
if err := dec(in); err != nil {
return nil, err
}
if interceptor == nil {
return srv.(ReplicationServer).SendDry(ctx, in)
}
info := &grpc.UnaryServerInfo{
Server: srv,
FullMethod: "/Replication/SendDry",
}
handler := func(ctx context.Context, req interface{}) (interface{}, error) {
return srv.(ReplicationServer).SendDry(ctx, req.(*SendReq))
}
return interceptor(ctx, in, info, handler)
}
func _Replication_SendCompleted_Handler(srv interface{}, ctx context.Context, dec func(interface{}) error, interceptor grpc.UnaryServerInterceptor) (interface{}, error) { func _Replication_SendCompleted_Handler(srv interface{}, ctx context.Context, dec func(interface{}) error, interceptor grpc.UnaryServerInterceptor) (interface{}, error) {
in := new(SendCompletedReq) in := new(SendCompletedReq)
if err := dec(in); err != nil { if err := dec(in); err != nil {
@@ -271,6 +303,10 @@ var Replication_ServiceDesc = grpc.ServiceDesc{
MethodName: "ReplicationCursor", MethodName: "ReplicationCursor",
Handler: _Replication_ReplicationCursor_Handler, Handler: _Replication_ReplicationCursor_Handler,
}, },
{
MethodName: "SendDry",
Handler: _Replication_SendDry_Handler,
},
{ {
MethodName: "SendCompleted", MethodName: "SendCompleted",
Handler: _Replication_SendCompleted_Handler, Handler: _Replication_SendCompleted_Handler,
+7 -7
View File
@@ -41,6 +41,7 @@ type Sender interface {
// any next call to the parent github.com/zrepl/zrepl/replication.Endpoint. // any next call to the parent github.com/zrepl/zrepl/replication.Endpoint.
// If the send request is for dry run the io.ReadCloser will be nil // If the send request is for dry run the io.ReadCloser will be nil
Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.ReadCloser, error) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.ReadCloser, error)
SendDry(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, error)
SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*pdu.SendCompletedRes, error) SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*pdu.SendCompletedRes, error)
ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error) ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error)
} }
@@ -158,7 +159,7 @@ type Step struct {
encrypt tri encrypt tri
resumeToken string // empty means no resume token shall be used resumeToken string // empty means no resume token shall be used
expectedSize int64 // 0 means no size estimate present / possible expectedSize uint64 // 0 means no size estimate present / possible
// byteCounter is nil initially, and set later in Step.doReplication // byteCounter is nil initially, and set later in Step.doReplication
// => concurrent read of that pointer from Step.ReportInfo must be protected // => concurrent read of that pointer from Step.ReportInfo must be protected
@@ -189,7 +190,7 @@ func (s *Step) Step(ctx context.Context) error {
func (s *Step) ReportInfo() *report.StepInfo { func (s *Step) ReportInfo() *report.StepInfo {
// get current byteCounter value // get current byteCounter value
var byteCounter int64 var byteCounter uint64
s.byteCounterMtx.Lock() s.byteCounterMtx.Lock()
if s.byteCounter != nil { if s.byteCounter != nil {
byteCounter = s.byteCounter.Count() byteCounter = s.byteCounter.Count()
@@ -546,10 +547,10 @@ func (s *Step) updateSizeEstimate(ctx context.Context) error {
log := getLogger(ctx) log := getLogger(ctx)
sr := s.buildSendRequest(true) sr := s.buildSendRequest()
log.Debug("initiate dry run send request") log.Debug("initiate dry run send request")
sres, _, err := s.sender.Send(ctx, sr) sres, err := s.sender.SendDry(ctx, sr)
if err != nil { if err != nil {
log.WithError(err).Error("dry run send request failed") log.WithError(err).Error("dry run send request failed")
return err return err
@@ -563,7 +564,7 @@ func (s *Step) updateSizeEstimate(ctx context.Context) error {
return nil return nil
} }
func (s *Step) buildSendRequest(dryRun bool) (sr *pdu.SendReq) { func (s *Step) buildSendRequest() (sr *pdu.SendReq) {
fs := s.parent.Path fs := s.parent.Path
sr = &pdu.SendReq{ sr = &pdu.SendReq{
Filesystem: fs, Filesystem: fs,
@@ -571,7 +572,6 @@ func (s *Step) buildSendRequest(dryRun bool) (sr *pdu.SendReq) {
To: s.to, To: s.to,
Encrypted: s.encrypt.ToPDU(), Encrypted: s.encrypt.ToPDU(),
ResumeToken: s.resumeToken, ResumeToken: s.resumeToken,
DryRun: dryRun,
ReplicationConfig: s.parent.policy.ReplicationConfig, ReplicationConfig: s.parent.policy.ReplicationConfig,
} }
return sr return sr
@@ -582,7 +582,7 @@ func (s *Step) doReplication(ctx context.Context) error {
fs := s.parent.Path fs := s.parent.Path
log := getLogger(ctx).WithField("filesystem", fs) log := getLogger(ctx).WithField("filesystem", fs)
sr := s.buildSendRequest(false) sr := s.buildSendRequest()
log.Debug("initiate send request") log.Debug("initiate send request")
sres, stream, err := s.sender.Send(ctx, sr) sres, stream, err := s.sender.Send(ctx, sr)
+16 -4
View File
@@ -62,11 +62,23 @@ const (
FilesystemDone FilesystemState = "done" FilesystemDone FilesystemState = "done"
) )
type FsBlockedOn string
const (
FsBlockedOnNothing FsBlockedOn = "nothing"
FsBlockedOnPlanningStepQueue FsBlockedOn = "plan-queue"
FsBlockedOnParentInitialRepl FsBlockedOn = "parent-initial-repl"
FsBlockedOnReplStepQueue FsBlockedOn = "repl-queue"
)
type FilesystemReport struct { type FilesystemReport struct {
Info *FilesystemInfo Info *FilesystemInfo
State FilesystemState State FilesystemState
// Always valid.
BlockedOn FsBlockedOn
// Valid in State = FilesystemPlanningErrored // Valid in State = FilesystemPlanningErrored
PlanError *TimedError PlanError *TimedError
// Valid in State = FilesystemSteppingErrored // Valid in State = FilesystemSteppingErrored
@@ -97,11 +109,11 @@ type StepInfo struct {
From, To string From, To string
Resumed bool Resumed bool
Encrypted EncryptedEnum Encrypted EncryptedEnum
BytesExpected int64 BytesExpected uint64
BytesReplicated int64 BytesReplicated uint64
} }
func (a *AttemptReport) BytesSum() (expected, replicated int64, containsInvalidSizeEstimates bool) { func (a *AttemptReport) BytesSum() (expected, replicated uint64, containsInvalidSizeEstimates bool) {
for _, fs := range a.Filesystems { for _, fs := range a.Filesystems {
e, r, fsContainsInvalidEstimate := fs.BytesSum() e, r, fsContainsInvalidEstimate := fs.BytesSum()
containsInvalidSizeEstimates = containsInvalidSizeEstimates || fsContainsInvalidEstimate containsInvalidSizeEstimates = containsInvalidSizeEstimates || fsContainsInvalidEstimate
@@ -111,7 +123,7 @@ func (a *AttemptReport) BytesSum() (expected, replicated int64, containsInvalidS
return expected, replicated, containsInvalidSizeEstimates return expected, replicated, containsInvalidSizeEstimates
} }
func (f *FilesystemReport) BytesSum() (expected, replicated int64, containsInvalidSizeEstimates bool) { func (f *FilesystemReport) BytesSum() (expected, replicated uint64, containsInvalidSizeEstimates bool) {
for _, step := range f.Steps { for _, step := range f.Steps {
expected += step.Info.BytesExpected expected += step.Info.BytesExpected
replicated += step.Info.BytesReplicated replicated += step.Info.BytesReplicated
+3 -13
View File
@@ -114,12 +114,6 @@ func (c *Client) ReqSend(ctx context.Context, req *pdu.SendReq) (*pdu.SendRes, i
if err != nil { if err != nil {
return nil, nil, err return nil, nil, err
} }
putWireOnReturn := true
defer func() {
if putWireOnReturn {
c.putWire(conn)
}
}()
if err := c.send(ctx, conn, EndpointSend, req, nil); err != nil { if err := c.send(ctx, conn, EndpointSend, req, nil); err != nil {
return nil, nil, err return nil, nil, err
@@ -131,14 +125,10 @@ func (c *Client) ReqSend(ctx context.Context, req *pdu.SendReq) (*pdu.SendRes, i
} }
var stream io.ReadCloser var stream io.ReadCloser
if !req.DryRun { stream, err = conn.ReadStream(ZFSStream, true) // no shadow
putWireOnReturn = false if err != nil {
stream, err = conn.ReadStream(ZFSStream, true) // no shadow return nil, nil, err
if err != nil {
return nil, nil, err
}
} }
return &res, stream, nil return &res, stream, nil
} }
+10 -4
View File
@@ -172,6 +172,15 @@ func (s *Server) serveConnRequest(ctx context.Context, endpoint string, c *strea
return return
} }
res, sendStream, handlerErr = s.h.Send(ctx, &req) // SHADOWING res, sendStream, handlerErr = s.h.Send(ctx, &req) // SHADOWING
// ensure that we always close the sendStream
if sendStream != nil {
defer func() {
err := sendStream.Close()
if err != nil {
s.log.WithError(err).Error("cannot close send stream")
}
}()
}
case EndpointRecv: case EndpointRecv:
var req pdu.ReceiveReq var req pdu.ReceiveReq
if err := proto.Unmarshal(reqStructured, &req); err != nil { if err := proto.Unmarshal(reqStructured, &req); err != nil {
@@ -239,12 +248,9 @@ func (s *Server) serveConnRequest(ctx context.Context, endpoint string, c *strea
if sendStream != nil { if sendStream != nil {
err := c.SendStream(ctx, sendStream, ZFSStream) err := c.SendStream(ctx, sendStream, ZFSStream)
closeErr := sendStream.Close()
if closeErr != nil {
s.log.WithError(closeErr).Error("cannot close send stream")
}
if err != nil { if err != nil {
s.log.WithError(err).Error("cannot write send stream") s.log.WithError(err).Error("cannot write send stream")
} }
// sendStream.Close() done via defer above
} }
} }
@@ -1,3 +1,4 @@
//go:build illumos || solaris
// +build illumos solaris // +build illumos solaris
package timeoutconn package timeoutconn
@@ -14,6 +14,7 @@ import (
"github.com/stretchr/testify/require" "github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/util/socketpair" "github.com/zrepl/zrepl/util/socketpair"
"github.com/zrepl/zrepl/util/zreplcircleci"
) )
func TestReadTimeout(t *testing.T) { func TestReadTimeout(t *testing.T) {
@@ -81,6 +82,8 @@ func TestWriteTimeout(t *testing.T) {
} }
func TestNoPartialReadsDueToDeadline(t *testing.T) { func TestNoPartialReadsDueToDeadline(t *testing.T) {
zreplcircleci.SkipOnCircleCI(t, "needs predictable low scheduling latency")
a, b, err := socketpair.SocketPair() a, b, err := socketpair.SocketPair()
require.NoError(t, err) require.NoError(t, err)
defer a.Close() defer a.Close()
@@ -151,6 +154,7 @@ func (c *partialWriteMockConn) Write(p []byte) (int, error) {
} }
func TestPartialWriteMockConn(t *testing.T) { func TestPartialWriteMockConn(t *testing.T) {
zreplcircleci.SkipOnCircleCI(t, "because it relies on scheduler responsiveness < 50ms")
mc := newPartialWriteMockConn(100*time.Millisecond, 5) mc := newPartialWriteMockConn(100*time.Millisecond, 5)
buf := []byte{1, 2, 3, 4, 5, 6, 7, 8, 9, 10} buf := []byte{1, 2, 3, 4, 5, 6, 7, 8, 9, 10}
begin := time.Now() begin := time.Now()
+2 -2
View File
@@ -1,5 +1,5 @@
// +build !illumos //go:build !illumos && !solaris
// +build !solaris // +build !illumos,!solaris
package timeoutconn package timeoutconn
+7
View File
@@ -108,6 +108,13 @@ func (c *Client) Receive(ctx context.Context, req *pdu.ReceiveReq, stream io.Rea
return c.dataClient.ReqRecv(ctx, req, stream) return c.dataClient.ReqRecv(ctx, req, stream)
} }
func (c *Client) SendDry(ctx context.Context, in *pdu.SendReq) (*pdu.SendRes, error) {
ctx, endSpan := trace.WithSpan(ctx, "rpc.client.SendDry")
defer endSpan()
return c.controlClient.SendDry(ctx, in)
}
func (c *Client) ListFilesystems(ctx context.Context, in *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error) { func (c *Client) ListFilesystems(ctx context.Context, in *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error) {
ctx, endSpan := trace.WithSpan(ctx, "rpc.client.ListFilesystems") ctx, endSpan := trace.WithSpan(ctx, "rpc.client.ListFilesystems")
defer endSpan() defer endSpan()
+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 { func DoHandshakeCurrentVersion(conn net.Conn, deadline time.Time) *HandshakeError {
// current protocol version is hardcoded here // current protocol version is hardcoded here
return DoHandshakeVersion(conn, deadline, 5) return DoHandshakeVersion(conn, deadline, 6)
} }
const HandshakeMessageMaxLen = 16 * 4096 const HandshakeMessageMaxLen = 16 * 4096
+8 -5
View File
@@ -9,7 +9,7 @@ import (
// its interface and counting the bytes written to during copying. // its interface and counting the bytes written to during copying.
type ReadCloser interface { type ReadCloser interface {
io.ReadCloser io.ReadCloser
Count() int64 Count() uint64
} }
// NewReadCloser wraps rc. // NewReadCloser wraps rc.
@@ -19,11 +19,11 @@ func NewReadCloser(rc io.ReadCloser) ReadCloser {
type readCloser struct { type readCloser struct {
rc io.ReadCloser rc io.ReadCloser
count int64 count uint64
} }
func (r *readCloser) Count() int64 { func (r *readCloser) Count() uint64 {
return atomic.LoadInt64(&r.count) return atomic.LoadUint64(&r.count)
} }
var _ io.ReadCloser = &readCloser{} var _ io.ReadCloser = &readCloser{}
@@ -34,6 +34,9 @@ func (r *readCloser) Close() error {
func (r *readCloser) Read(p []byte) (int, error) { func (r *readCloser) Read(p []byte) (int, error) {
n, err := r.rc.Read(p) n, err := r.rc.Read(p)
atomic.AddInt64(&r.count, int64(n)) if n < 0 {
panic("expecting n >= 0")
}
atomic.AddUint64(&r.count, uint64(n))
return n, err return n, err
} }
+18
View File
@@ -73,6 +73,24 @@ func Int64(varname string, def int64) (d int64) {
return d return d
} }
func Uint64(varname string, def uint64) (d uint64) {
var err error
if v, ok := cache.Load(varname); ok {
return v.(uint64)
}
e := os.Getenv(varname)
if e == "" {
d = def
} else {
d, err = strconv.ParseUint(e, 10, 64)
if err != nil {
panic(err)
}
}
cache.Store(varname, d)
return d
}
func Bool(varname string, def bool) (d bool) { func Bool(varname string, def bool) (d bool) {
var err error var err error
if v, ok := cache.Load(varname); ok { if v, ok := cache.Load(varname); ok {
+1
View File
@@ -1,3 +1,4 @@
//go:build freebsd
// +build freebsd // +build freebsd
package tcpsock package tcpsock
+1
View File
@@ -1,3 +1,4 @@
//go:build linux
// +build linux // +build linux
package tcpsock package tcpsock
@@ -1,3 +1,4 @@
//go:build !linux && !freebsd
// +build !linux,!freebsd // +build !linux,!freebsd
package tcpsock package tcpsock
+13
View File
@@ -0,0 +1,13 @@
package zreplcircleci
import (
"fmt"
"os"
"testing"
)
func SkipOnCircleCI(t *testing.T, reasonFmt string, args ...interface{}) {
if os.Getenv("CIRCLECI") != "" {
t.Skipf("This test is skipped in CircleCI. Reason: %s", fmt.Sprintf(reasonFmt, args...))
}
}
@@ -0,0 +1,51 @@
// Code generated by "enumer -type=FilesystemPlaceholderCreateEncryptionValue -trimprefix=FilesystemPlaceholderCreateEncryption"; DO NOT EDIT.
//
package zfs
import (
"fmt"
)
const _FilesystemPlaceholderCreateEncryptionValueName = "InheritOff"
var _FilesystemPlaceholderCreateEncryptionValueIndex = [...]uint8{0, 7, 10}
func (i FilesystemPlaceholderCreateEncryptionValue) String() string {
i -= 1
if i < 0 || i >= FilesystemPlaceholderCreateEncryptionValue(len(_FilesystemPlaceholderCreateEncryptionValueIndex)-1) {
return fmt.Sprintf("FilesystemPlaceholderCreateEncryptionValue(%d)", i+1)
}
return _FilesystemPlaceholderCreateEncryptionValueName[_FilesystemPlaceholderCreateEncryptionValueIndex[i]:_FilesystemPlaceholderCreateEncryptionValueIndex[i+1]]
}
var _FilesystemPlaceholderCreateEncryptionValueValues = []FilesystemPlaceholderCreateEncryptionValue{1, 2}
var _FilesystemPlaceholderCreateEncryptionValueNameToValueMap = map[string]FilesystemPlaceholderCreateEncryptionValue{
_FilesystemPlaceholderCreateEncryptionValueName[0:7]: 1,
_FilesystemPlaceholderCreateEncryptionValueName[7:10]: 2,
}
// FilesystemPlaceholderCreateEncryptionValueString retrieves an enum value from the enum constants string name.
// Throws an error if the param is not part of the enum.
func FilesystemPlaceholderCreateEncryptionValueString(s string) (FilesystemPlaceholderCreateEncryptionValue, error) {
if val, ok := _FilesystemPlaceholderCreateEncryptionValueNameToValueMap[s]; ok {
return val, nil
}
return 0, fmt.Errorf("%s does not belong to FilesystemPlaceholderCreateEncryptionValue values", s)
}
// FilesystemPlaceholderCreateEncryptionValueValues returns all values of the enum
func FilesystemPlaceholderCreateEncryptionValueValues() []FilesystemPlaceholderCreateEncryptionValue {
return _FilesystemPlaceholderCreateEncryptionValueValues
}
// IsAFilesystemPlaceholderCreateEncryptionValue returns "true" if the value is listed in the enum definition. "false" otherwise
func (i FilesystemPlaceholderCreateEncryptionValue) IsAFilesystemPlaceholderCreateEncryptionValue() bool {
for _, v := range _FilesystemPlaceholderCreateEncryptionValueValues {
if i == v {
return true
}
}
return false
}
+52 -5
View File
@@ -80,7 +80,15 @@ func ZFSGetFilesystemPlaceholderState(ctx context.Context, p *DatasetPath) (stat
return state, nil return state, nil
} }
func ZFSCreatePlaceholderFilesystem(ctx context.Context, fs *DatasetPath, parent *DatasetPath) (err error) { //go:generate enumer -type=FilesystemPlaceholderCreateEncryptionValue -trimprefix=FilesystemPlaceholderCreateEncryption
type FilesystemPlaceholderCreateEncryptionValue int
const (
FilesystemPlaceholderCreateEncryptionInherit FilesystemPlaceholderCreateEncryptionValue = 1 << iota
FilesystemPlaceholderCreateEncryptionOff
)
func ZFSCreatePlaceholderFilesystem(ctx context.Context, fs *DatasetPath, parent *DatasetPath, encryption FilesystemPlaceholderCreateEncryptionValue) (err error) {
if fs.Length() == 1 { if fs.Length() == 1 {
return fmt.Errorf("cannot create %q: pools cannot be created with zfs create", fs.ToString()) return fmt.Errorf("cannot create %q: pools cannot be created with zfs create", fs.ToString())
} }
@@ -90,11 +98,19 @@ func ZFSCreatePlaceholderFilesystem(ctx context.Context, fs *DatasetPath, parent
"-o", fmt.Sprintf("%s=%s", PlaceholderPropertyName, placeholderPropertyOn), "-o", fmt.Sprintf("%s=%s", PlaceholderPropertyName, placeholderPropertyOn),
"-o", "mountpoint=none", "-o", "mountpoint=none",
} }
if parentEncrypted, err := ZFSGetEncryptionEnabled(ctx, parent.ToString()); err != nil {
return errors.Wrap(err, "cannot determine encryption support") if !encryption.IsAFilesystemPlaceholderCreateEncryptionValue() {
} else if parentEncrypted { panic(encryption)
cmdline = append(cmdline, "-o", "encryption=off")
} }
switch encryption {
case FilesystemPlaceholderCreateEncryptionInherit:
// no-op
case FilesystemPlaceholderCreateEncryptionOff:
cmdline = append(cmdline, "-o", "encryption=off")
default:
panic(encryption)
}
cmdline = append(cmdline, fs.ToString()) cmdline = append(cmdline, fs.ToString())
cmd := zfscmd.CommandContext(ctx, ZFS_BINARY, cmdline...) cmd := zfscmd.CommandContext(ctx, ZFS_BINARY, cmdline...)
@@ -148,3 +164,34 @@ func ZFSMigrateHashBasedPlaceholderToCurrent(ctx context.Context, fs *DatasetPat
} }
return &report, nil return &report, nil
} }
func ZFSListPlaceholderFilesystemsWithAdditionalProps(ctx context.Context, root string, additionalProps []string) (map[string]*ZFSProperties, error) {
props := []string{PlaceholderPropertyName}
if len(additionalProps) > 0 {
props = append(props, additionalProps...)
}
propsByFS, err := zfsGetRecursive(ctx, root, -1, []string{"filesystem", "volume"}, props, SourceAny)
if err != nil {
return nil, errors.Wrapf(err, "cannot get placeholder filesystems under %q", root)
}
filtered := make(map[string]*ZFSProperties)
for fs, props := range propsByFS {
details := props.GetDetails(PlaceholderPropertyName)
if details.Source != SourceLocal {
continue
}
fsp, err := NewDatasetPath(fs)
if err != nil {
return nil, errors.Wrapf(err, "zfs get returned invalid dataset path %q", fs)
}
if !isLocalPlaceholderPropertyValuePlaceholder(fsp, details.Value) {
continue
}
filtered[fs] = props
}
return filtered, nil
}
+188 -81
View File
@@ -7,6 +7,7 @@ import (
"encoding/json" "encoding/json"
"fmt" "fmt"
"io" "io"
"math"
"os" "os"
"os/exec" "os/exec"
"regexp" "regexp"
@@ -14,7 +15,6 @@ import (
"strconv" "strconv"
"strings" "strings"
"sync" "sync"
"time"
"github.com/pkg/errors" "github.com/pkg/errors"
"github.com/prometheus/client_golang/prometheus" "github.com/prometheus/client_golang/prometheus"
@@ -334,60 +334,122 @@ func pipeWithCapacityHint(capacity int) (r, w *os.File, err error) {
return stdoutReader, stdoutWriter, nil return stdoutReader, stdoutWriter, nil
} }
type SendStream struct { type sendStreamState int
cmd *zfscmd.Cmd
kill context.CancelFunc
closeMtx sync.Mutex const (
stdoutReader *os.File sendStreamOpen sendStreamState = iota
sendStreamClosed
)
type SendStream struct {
cmd *zfscmd.Cmd
kill context.CancelFunc
stdoutReader io.ReadCloser // not *os.File for mocking during platformtest
stderrBuf *circlog.CircularLog stderrBuf *circlog.CircularLog
opErr error
mtx sync.Mutex
state sendStreamState
exitErr *ZFSError
} }
func (s *SendStream) Read(p []byte) (n int, err error) { func (s *SendStream) Read(p []byte) (n int, _ error) {
s.closeMtx.Lock() s.mtx.Lock()
opErr := s.opErr defer s.mtx.Unlock()
s.closeMtx.Unlock()
if opErr != nil {
return 0, opErr
}
n, err = s.stdoutReader.Read(p) switch s.state {
if err != nil { case sendStreamClosed:
debug("sendStream: read err: %T %s", err, err) return 0, os.ErrClosed
// TODO we assume here that any read error is permanent
// which is most likely the case for a local zfs send case sendStreamOpen:
kwerr := s.killAndWait(err) n, readErr := s.stdoutReader.Read(p)
debug("sendStream: killAndWait n=%v err= %T %s", n, kwerr, kwerr) if readErr != nil {
// TODO we assume here that any read error is permanent debug("sendStream: read: readErr=%T %s", readErr, readErr)
return n, kwerr if readErr == io.EOF {
// io.EOF must be bubbled up as is so that consumers can handle it properly.
return n, readErr
}
// Assume that the error is not retryable.
// Try to kill now so that we can return a nice *ZFSError with captured stderr.
// If the kill doesn't work, it doesn't matter because the caller must by contract call Close() anyways.
killErr := s.killAndWait()
debug("sendStream: read: killErr=%T %s", killErr, killErr)
if killErr == nil {
s.state = sendStreamClosed
return n, s.exitErr // return the nice error
} else {
// we remain open so that we retry
return n, readErr // return the normal error
}
}
return n, readErr
default:
panic("unreachable")
} }
return n, err
} }
func (s *SendStream) Close() error { func (s *SendStream) Close() error {
debug("sendStream: close called") debug("sendStream: close called")
return s.killAndWait(nil) s.mtx.Lock()
defer s.mtx.Unlock()
switch s.state {
case sendStreamOpen:
err := s.killAndWait()
if err != nil {
return err
} else {
s.state = sendStreamClosed
return nil
}
case sendStreamClosed:
return os.ErrClosed
default:
panic("unreachable")
}
} }
func (s *SendStream) killAndWait(precedingReadErr error) error { // returns nil iff the child process is gone (has been successfully waited upon)
// in that case, s.exitErr is set
func (s *SendStream) killAndWait() error {
debug("sendStream: killAndWait enter") debug("sendStream: killAndWait enter")
defer debug("sendStream: killAndWait leave") defer debug("sendStream: killAndWait leave")
if precedingReadErr == io.EOF {
// give the zfs process a little bit of time to terminate itself
// if it holds this deadline, exitErr will be nil
time.AfterFunc(200*time.Millisecond, s.kill)
} else {
s.kill()
}
// allow async kills from Close(), that's why we only take the mutex here // send SIGKILL
s.closeMtx.Lock() s.kill()
defer s.closeMtx.Unlock()
if s.opErr != nil { // Close our read-end of the pipe.
return s.opErr //
// We must do this before .Wait() because in some (not all) versions/build configs of ZFS,
// `zfs send` uses a separate kernel thread (taskq) to write the send stream (function `dump_bytes`).
// The `zfs send` thread then waits uinterruptably for the taskq thread to finish the write.
// And signalling the `zfs send` thread doesn't propagate to the taskq thread.
// So we end up in a state where we .Wait() forever.
// (See https://github.com/openzfs/zfs/issues/12500 and
// https://github.com/zrepl/zrepl/issues/495#issuecomment-902530043)
//
// By closing our read end of the pipe before .Wait(), we unblock the taskq thread if there is any.
// If there is no separate taskq thread, the SIGKILL to `zfs end` would suffice and be most precise,
// but due to the circumstances above, there is no other portable & robust way.
//
// However, the fallout from closing the pipe is that (in non-taskq builds) `zfs sends` will get a SIGPIPE.
// And on Linux, that SIGPIPE appears to win over the previously issued SIGKILL.
// And thus, on Linux, the `zfs send` will be killed by the default SIGPIPE handler.
// We can observe this in the WaitStatus below.
// This behavior is slightly annoying because the *exec.ExitError's message ("signal: broken pipe")
// isn't as clear as ("signal: killed").
// However, it seems like we just have to live with that. (covered by platformtest)
var closePipeErr error
if s.stdoutReader != nil {
closePipeErr = s.stdoutReader.Close()
if closePipeErr == nil {
// avoid double-closes in case waiting below doesn't work
// and someone attempts Close again
s.stdoutReader = nil
} else {
return closePipeErr
}
} }
waitErr := s.cmd.Wait() waitErr := s.cmd.Wait()
@@ -402,39 +464,30 @@ func (s *SendStream) killAndWait(precedingReadErr error) error {
} }
} }
// now, after we know the program exited do we close the pipe // invariant: at this point, the child is gone and we cleaned up everything related to the SendStream
var closePipeErr error
if s.stdoutReader != nil {
closePipeErr = s.stdoutReader.Close()
if closePipeErr == nil {
// avoid double-closes in case anything below doesn't work
// and someone calls Close again
s.stdoutReader = nil
} else {
return closePipeErr
}
}
// we managed to tear things down, no let's give the user some pretty *ZFSError
if exitErr != nil { if exitErr != nil {
s.opErr = &ZFSError{ // zfs send exited with an error or was killed by a signal.
s.exitErr = &ZFSError{
Stderr: []byte(s.stderrBuf.String()), Stderr: []byte(s.stderrBuf.String()),
WaitErr: exitErr, WaitErr: exitErr,
} }
} else { } else {
s.opErr = precedingReadErr // zfs send exited successfully (we know that since waitErr was either nil or wasn't an *exec.ExitError)
s.exitErr = nil
} }
// detect the edge where we're called from s.Read return nil
// after the pipe EOFed and zfs send exited without errors
// this is actually the "hot" / nice path
if exitErr == nil && precedingReadErr == io.EOF {
return precedingReadErr
}
return s.opErr
} }
func (s *SendStream) TestOnly_ReplaceStdoutReader(f io.ReadCloser) (prev io.ReadCloser) {
prev = s.stdoutReader
s.stdoutReader = f
return prev
}
func (s *SendStream) TestOnly_ExitErr() *ZFSError { return s.exitErr }
// NOTE: When updating this struct, make sure to update funcs Validate ValidateCorrespondsToResumeToken // NOTE: When updating this struct, make sure to update funcs Validate ValidateCorrespondsToResumeToken
type ZFSSendArgVersion struct { type ZFSSendArgVersion struct {
RelName string RelName string
@@ -908,7 +961,7 @@ type DrySendInfo struct {
Type DrySendType Type DrySendType
Filesystem string // parsed from To field Filesystem string // parsed from To field
From, To string // direct copy from ZFS output From, To string // direct copy from ZFS output
SizeEstimate int64 // -1 if size estimate is not possible SizeEstimate uint64 // 0 if size estimate is not possible
} }
var ( var (
@@ -981,11 +1034,10 @@ func (s *DrySendInfo) unmarshalInfoLine(l string) (regexMatched bool, err error)
// see https://github.com/zrepl/zrepl/issues/289 // see https://github.com/zrepl/zrepl/issues/289
fields["size"] = "0" fields["size"] = "0"
} }
s.SizeEstimate, err = strconv.ParseInt(fields["size"], 10, 64) s.SizeEstimate, err = strconv.ParseUint(fields["size"], 10, 64)
if err != nil { if err != nil {
return true, fmt.Errorf("cannot not parse size: %s", err) return true, fmt.Errorf("cannot not parse size: %s", err)
} }
return true, nil return true, nil
} }
@@ -995,6 +1047,7 @@ func ZFSSendDry(ctx context.Context, sendArgs ZFSSendArgsValidated) (_ *DrySendI
if sendArgs.From != nil && strings.Contains(sendArgs.From.RelName, "#") { if sendArgs.From != nil && strings.Contains(sendArgs.From.RelName, "#") {
/* TODO: /* TODO:
* XXX feature check & support this as well
* ZFS at the time of writing does not support dry-run send because size-estimation * ZFS at the time of writing does not support dry-run send because size-estimation
* uses fromSnap's deadlist. However, for a bookmark, that deadlist no longer exists. * uses fromSnap's deadlist. However, for a bookmark, that deadlist no longer exists.
* Redacted send & recv will bring this functionality, see * Redacted send & recv will bring this functionality, see
@@ -1013,7 +1066,7 @@ func ZFSSendDry(ctx context.Context, sendArgs ZFSSendArgsValidated) (_ *DrySendI
Filesystem: sendArgs.FS, Filesystem: sendArgs.FS,
From: fromAbs, From: fromAbs,
To: toAbs, To: toAbs,
SizeEstimate: -1}, nil SizeEstimate: 0}, nil
} }
args := make([]string, 0) args := make([]string, 0)
@@ -1033,6 +1086,19 @@ func ZFSSendDry(ctx context.Context, sendArgs ZFSSendArgsValidated) (_ *DrySendI
if err := si.unmarshalZFSOutput(output); err != nil { if err := si.unmarshalZFSOutput(output); err != nil {
return nil, fmt.Errorf("could not parse zfs send -n output: %s", err) return nil, fmt.Errorf("could not parse zfs send -n output: %s", err)
} }
// There is a bug in OpenZFS where it estimates the size incorrectly.
// - zrepl: https://github.com/zrepl/zrepl/issues/463
// - resulting upstream bug: https://github.com/openzfs/zfs/issues/12265
//
// The wrong estimates are easy to detect because they are absurdly large.
// NB: we're doing the workaround for this late so that the test cases are not affected.
sizeEstimateThreshold := envconst.Uint64("ZREPL_ZFS_SEND_SIZE_ESTIMATE_INCORRECT_THRESHOLD", math.MaxInt64)
if sizeEstimateThreshold != 0 && si.SizeEstimate >= sizeEstimateThreshold {
debug("size estimate exceeds threshold %v, working around it: %#v %q", sizeEstimateThreshold, si, args)
si.SizeEstimate = 0
}
return &si, nil return &si, nil
} }
@@ -1501,8 +1567,18 @@ func (s PropertySource) zfsGetSourceFieldPrefixes() []string {
return prefixes return prefixes
} }
func zfsGet(ctx context.Context, path string, props []string, allowedSources PropertySource) (*ZFSProperties, error) { func zfsGetRecursive(ctx context.Context, path string, depth int, dstypes []string, props []string, allowedSources PropertySource) (map[string]*ZFSProperties, error) {
args := []string{"get", "-Hp", "-o", "property,value,source", strings.Join(props, ","), path} args := []string{"get", "-Hp", "-o", "name,property,value,source"}
if depth != 0 {
args = append(args, "-r")
if depth != -1 {
args = append(args, "-d", fmt.Sprintf("%d", depth))
}
}
if len(dstypes) > 0 {
args = append(args, "-t", strings.Join(dstypes, ","))
}
args = append(args, strings.Join(props, ","), path)
cmd := zfscmd.CommandContext(ctx, ZFS_BINARY, args...) cmd := zfscmd.CommandContext(ctx, ZFS_BINARY, args...)
stdout, err := cmd.Output() stdout, err := cmd.Output()
if err != nil { if err != nil {
@@ -1522,36 +1598,67 @@ func zfsGet(ctx context.Context, path string, props []string, allowedSources Pro
} }
o := string(stdout) o := string(stdout)
lines := strings.Split(o, "\n") lines := strings.Split(o, "\n")
if len(lines) < 1 || // account for newlines propsByFS := make(map[string]*ZFSProperties)
len(lines)-1 != len(props) {
return nil, fmt.Errorf("zfs get did not return the number of expected property values")
}
res := &ZFSProperties{
make(map[string]PropertyValue, len(lines)),
}
allowedPrefixes := allowedSources.zfsGetSourceFieldPrefixes() allowedPrefixes := allowedSources.zfsGetSourceFieldPrefixes()
for _, line := range lines[:len(lines)-1] { for _, line := range lines[:len(lines)-1] { // last line is an empty line due to how strings.Split works
fields := strings.FieldsFunc(line, func(r rune) bool { fields := strings.FieldsFunc(line, func(r rune) bool {
return r == '\t' return r == '\t'
}) })
if len(fields) != 3 { if len(fields) != 4 {
return nil, fmt.Errorf("zfs get did not return property,value,source tuples") return nil, fmt.Errorf("zfs get did not return name,property,value,source tuples")
} }
for _, p := range allowedPrefixes { for _, p := range allowedPrefixes {
// prefix-match so that SourceAny (= "") works // prefix-match so that SourceAny (= "") works
if strings.HasPrefix(fields[2], p) { if strings.HasPrefix(fields[3], p) {
source, err := parsePropertySource(fields[2]) source, err := parsePropertySource(fields[3])
if err != nil { if err != nil {
return nil, errors.Wrap(err, "parse property source") return nil, errors.Wrap(err, "parse property source")
} }
res.m[fields[0]] = PropertyValue{ fsProps, ok := propsByFS[fields[0]]
Value: fields[1], if !ok {
fsProps = &ZFSProperties{
make(map[string]PropertyValue),
}
}
if _, ok := fsProps.m[fields[1]]; ok {
return nil, errors.Errorf("duplicate property %q for dataset %q", fields[1], fields[0])
}
fsProps.m[fields[1]] = PropertyValue{
Value: fields[2],
Source: source, Source: source,
} }
propsByFS[fields[0]] = fsProps
break break
} }
} }
} }
// validate we got expected output
for fs, fsProps := range propsByFS {
if len(fsProps.m) != len(props) {
return nil, errors.Errorf("zfs get did not return all requested values for dataset %q\noutput was:\n%s", fs, o)
}
}
return propsByFS, nil
}
func zfsGet(ctx context.Context, path string, props []string, allowedSources PropertySource) (*ZFSProperties, error) {
propMap, err := zfsGetRecursive(ctx, path, 0, nil, props, allowedSources)
if err != nil {
return nil, err
}
if len(propMap) == 0 {
// XXX callers expect to always get a result here
// They will observe props.Get("propname") == ""
// We should change .Get to return a tuple, or an error, or whatever.
return &ZFSProperties{make(map[string]PropertyValue)}, nil
}
if len(propMap) != 1 {
return nil, errors.Errorf("zfs get unexpectedly returned properties for multiple datasets")
}
res, ok := propMap[path]
if !ok {
return nil, errors.Errorf("zfs get returned properties for a different dataset that requested")
}
return res, nil return res, nil
} }
+1
View File
@@ -1,3 +1,4 @@
//go:build !linux
// +build !linux // +build !linux
package zfs package zfs
+4
View File
@@ -209,3 +209,7 @@ func (c *Cmd) Runtime() time.Duration {
} }
return c.waitReturnedAt.Sub(c.startedAt) return c.waitReturnedAt.Sub(c.startedAt)
} }
func (c *Cmd) TestOnly_ExecCmd() *exec.Cmd {
return c.cmd
}