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45 Commits

Author SHA1 Message Date
Christian Schwarz e239d6f633 build: make platformtest-* usable
* use plain `go build` instead of the `go test` + `func TestMain` hack
* add target cover-platform and use that to generate coverage reports
2020-08-21 23:01:35 +02:00
InsanePrawn 0bbe2befce docs: prune: add prune interval visualisation
fixes #122

Co-Authored-By: Christian Schwarz <me@cschwarz.com>

Signed-off-by: InsanePrawn <insane.prawny@gmail.com>
2020-08-21 22:05:05 +02:00
InsanePrawn fa4e048169 readme: fix typo
Signed-off-by: InsanePrawn <insane.prawny@gmail.com>
2020-08-21 22:05:05 +02:00
Christian Schwarz 4f9f21f7f2 logger: fix go-1.15-discovered conversion from int to string
logger/datastructures.go:85:10: conversion from Level (int) to string yields a string of one rune
2020-08-12 21:44:02 +02:00
Christian Schwarz 480176ba2d rpc/dataconn: fix go1.15-discovered recursive Error() method impl
rpc/dataconn/dataconn_client.go:69:9: Sprintf format %s with arg e causes recursive Error method call
2020-08-12 21:41:31 +02:00
Christian Schwarz 1190c0f6d2 docs: supporters: update 2020-08-12 21:38:23 +02:00
Christian Schwarz 720a284db5 dist/grafana: fix endpoint abstractions cache metric panel
fixup of 30cdc14
2020-08-04 01:36:31 +02:00
Hans Schulz 83fdffbcef replication: prometheus metric for number of failed replications in last attempt
- package replication: metric
- Grafana panel
- wiring
- changelog

Signed-off-by: Christian Schwarz <me@cschwarz.com>

closes #341
2020-08-04 01:19:44 +02:00
Christian Schwarz 0ee7a49d31 [#289] zfs: workaround for OpenZFS 0.7 dry send info with zero estimated size
fixes #289
2020-07-26 20:32:35 +02:00
Christian Schwarz 02db5994fe [#345] fix broken identification of parent-fs for initial replication ordering
fixup of 02807279

fixes #345
2020-07-26 20:32:35 +02:00
Christian Schwarz 1d7a84e8ae build: extract debian binary packaging workflow trigger into a reusable script 2020-07-26 20:32:35 +02:00
Christian Schwarz a0e3dc7040 [#348] replication: add platformtest to check behavior on recv fail while still sending
Regression test for #348
2020-07-26 20:32:35 +02:00
Christian Schwarz 43495d70c7 [#348] replication: return errors if .Send rpc returns a nil SendRes
discovered while developing the next commit in this series
2020-07-26 20:32:35 +02:00
Christian Schwarz fa586b493c [#348] fix crash on early-recv error
* The SendStream.Close() was not called by dataconn.Server, which left the zfs send process dangling.
* When the source job's ctx interceptor closed the task, the dangling zfs send was detect by the trace package and panicked.

    020-07-25T19:54:41-04:00 [ERRO][latitude][rpc.data][cyZj$J3Ca$J3Ca.CJwB]: cannot write send stream err="frameconn: shutting down"
    panic: end task: 1 active child tasks: end task: task still has active child tasks

    goroutine 196966 [running]:
    github.com/zrepl/zrepl/daemon/logging/trace.WithTask.func1.1(0xc000320680, 0xcde000)
            /home/jeremy/go/src/github.com/zrepl/zrepl/daemon/logging/trace/trace.go:221 +0x2f7
    github.com/zrepl/zrepl/daemon/logging/trace.WithTask.func1()
            /home/jeremy/go/src/github.com/zrepl/zrepl/daemon/logging/trace/trace.go:237 +0x38
    github.com/zrepl/zrepl/daemon/logging/trace.WithTaskAndSpan.func1()
            /home/jeremy/go/src/github.com/zrepl/zrepl/daemon/logging/trace/trace_convenience.go:41 +0x37
    github.com/zrepl/zrepl/daemon/job.(*PassiveSide).Run.func1(0xdcf780, 0xc0000a3560, 0xdc65a0, 0xc00035e620, 0xc0000a34d0)
            /home/jeremy/go/src/github.com/zrepl/zrepl/daemon/job/passive.go:194 +0x2e7
    github.com/zrepl/zrepl/rpc.NewServer.func3(0xdcf780, 0xc0001ce4b0, 0xdc65e0, 0xc00035e600, 0xc0000a34d0)
            /home/jeremy/go/src/github.com/zrepl/zrepl/rpc/rpc_server.go:82 +0xd5
    github.com/zrepl/zrepl/rpc/dataconn.(*Server).serveConn(0xc0000a2ba0, 0xc00018eca0)
            /home/jeremy/go/src/github.com/zrepl/zrepl/rpc/dataconn/dataconn_server.go:149 +0x3be
    github.com/zrepl/zrepl/rpc/dataconn.(*Server).Serve.func3(0xc0000b8180, 0xc0000a2ba0, 0xc00018eca0)
            /home/jeremy/go/src/github.com/zrepl/zrepl/rpc/dataconn/dataconn_server.go:108 +0x5d
    created by github.com/zrepl/zrepl/rpc/dataconn.(*Server).Serve
            /home/jeremy/go/src/github.com/zrepl/zrepl/rpc/dataconn/dataconn_server.go:106 +0x24a
    2020-07-25T19:58:55-04:00 [ERRO][latitude][rpc.data][Pt4F$gCWT$gCWT.fzhc]: cannot write send stream err="frameconn: shutting down"
    panic: end task: 1 active child tasks: end task: task still has active child tasks

fixes #348
2020-07-26 20:32:35 +02:00
Christian Schwarz 30cdc1430e replication + endpoint: replication guarantees: guarantee_{resumability,incremental,nothing}
This commit

- adds a configuration in which no step holds, replication cursors, etc. are created
- removes the send.step_holds.disable_incremental setting
- creates a new config option `replication` for active-side jobs
- adds the replication.protection.{initial,incremental} settings, each
  of which can have values
    - `guarantee_resumability`
    - `guarantee_incremental`
    - `guarantee_nothing`
  (refer to docs/configuration/replication.rst for semantics)

The `replication` config from an active side is sent to both endpoint.Sender and endpoint.Receiver
for each replication step. Sender and Receiver then act accordingly.

For `guarantee_incremental`, we add the new `tentative-replication-cursor` abstraction.
The necessity for that abstraction is outlined in https://github.com/zrepl/zrepl/issues/340.

fixes https://github.com/zrepl/zrepl/issues/340
2020-07-26 20:32:35 +02:00
Christian Schwarz 27673a23e9 config: add test for fromdefaults behavior 2020-07-26 20:32:35 +02:00
Christian Schwarz 95fc299733 daemon/job: test that sample configs are buildable 2020-07-26 20:32:35 +02:00
Christian Schwarz 4e702eedc9 cmd: zfs-abstraction list --json: fix panic
(was panicking because `abstractions` is in fact a channel
2020-07-26 20:32:35 +02:00
Christian Schwarz 8ff83f2f1a [#342] endpoint: always create unencrypted placeholder filesystems
This "breaks" the use case of receiving an unencrypted send into an encrypted receiver by setting the receiver's `root_fs`'s `encryption=on`.
"breaks" in air-quotes because we have not yet released a version of
zrepl with encrypted send support.

We will bring back the featured outlined above in a future release.
See https://github.com/zrepl/zrepl/issues/342#issuecomment-657231818 and following.
2020-07-26 20:32:35 +02:00
Christian Schwarz 4b8f0ad112 docs: supporters: update 2020-06-22 13:36:00 +02:00
Brian Candler dbc8bbeb6a docs: config: prune: example: keep manual snapshots on receiver
Fixes #335
closes #336

Signed-off-by: Christian Schwarz <me@cschwarz.com>
2020-06-22 12:32:03 +02:00
Christian Schwarz b3e856f40d docs: changelog: 0.3: fix broken issue link 2020-06-22 12:30:42 +02:00
Christian Schwarz 8e1937fe75 doc: fixup 0.3 changelog 05f1237a6d 2020-06-14 18:29:37 +02:00
Christian Schwarz 073514fc21 docs/publish.sh: only render latest (patch+rc) version for each (major,minor) versio. 2020-06-14 18:24:20 +02:00
Christian Schwarz dab222d95f docs: GitHub Sponsors link 2020-06-14 15:26:05 +02:00
Christian Schwarz a827894274 docs: add backup-to-external-disk quick-start guide and convert existing tutorial to quick-start guide
refs #219
fixes #329
2020-06-14 15:26:05 +02:00
Christian Schwarz 9a8d813d14 docs: fix typo in cli help for zfs-abstraction subcommand 2020-06-14 15:26:05 +02:00
Christian Schwarz e391fa94f9 dist/grafana: update grafana dashboard
- uses version metric for 'instances up'
- displays active task count
- displays send abstractions cache entry count
- in general, graphs have a shorter y axis for better overview

fixes #332
2020-06-14 15:26:05 +02:00
Christian Schwarz 509185dfbe prometheus: expose zrepl version as const metric 2020-06-14 15:26:05 +02:00
Christian Schwarz 4b1b7a8561 envconst: queryable report of resolved variables + integration inot zrepl status --raw
fixes #299
refs #186
2020-06-14 15:26:05 +02:00
Christian Schwarz b330ccca5d transport/ssh: bump go-netssh version to fix ssh client process leaks
fixes #322
2020-06-14 15:26:05 +02:00
Christian Schwarz 05f1237a6d docs: 0.3 changelog 2020-06-14 15:26:05 +02:00
Christian Schwarz 1c270b7e39 add option to disable step holds for incremental sends
This is a stop-gap solution until we re-write the pruner to support
rules for removing step holds.

Note that disabling step holds for incremental sends does not affect
zrepl's guarantee that incremental replication is always possible:

Suppose you yank the external drive during an incremental @from -> @to step:

* restarting that step or future incrementals @from -> @to_later` will be possible
  because the replication cursor bookmark points to @from until the step is complete
* resuming @from -> @to will work as long as the pruner on your internal pool doesn't come around to destroy @to.
    * in that case, the replication algorithm should determine that the resumable state
      on the receiving side isuseless because @to no longer exists on the sending side,
      and consequently clear it, and restart an incremental step @from -> @to_later

refs #288
2020-06-14 15:26:05 +02:00
Christian Schwarz 1b39e9d03c docs: update & extend replication overview wrt step holds + bookmarks 2020-06-14 15:21:36 +02:00
Christian Schwarz 655a2e5404 docs/configuration/overview.rst: fix wrong headline hierarchy 2020-06-14 15:21:36 +02:00
Christian Schwarz 9c80eea045 docs: update supporters 2020-06-14 15:21:36 +02:00
Christian Schwarz 175ad1dd0b zfs: ZFSListFilesystemVersions: remove handling of io.ErrUnexpectedEOF
ZFSListChan returns (*DatasetDoesNotExist) for the case mentioned in the comment
2020-06-14 15:21:36 +02:00
Christian Schwarz 728e97700f zfs: fix error message formatting for send args validation 2020-06-14 15:21:36 +02:00
Christian Schwarz 94a0fbf953 [#321] platformtest: add test for zfs.ZFSHolds 2020-06-14 15:21:36 +02:00
Christian Schwarz b056e7b2b9 [#321] endpoint: ListAbstractions: acutally emit one Abstraction per matching hold 2020-06-14 15:21:36 +02:00
Christian Schwarz 6e927f20f9 [#321] platformtest: minimal integration tests for package replication
# Conflicts:
#	platformtest/tests/generated_cases.go
2020-06-14 15:21:36 +02:00
Christian Schwarz 301f163a44 [#321] platformtest: generate test case list + coverage tooling 2020-06-14 15:21:36 +02:00
Christian Schwarz 474652ea51 [#321] platformtest: fix test ListFilesystemVersionsZeroExistIsNotAnError 2020-06-14 15:21:36 +02:00
Christian Schwarz 1bc731e782 [#316] endpoint: delete unreachable code 2020-06-14 15:21:36 +02:00
Christian Schwarz 292b85b5ef [#316] endpoint / replication protocol: more robust step-holds and replication cursor management
- drop HintMostRecentCommonAncestor rpc call
    - it is wrong to put faith into the active side of the replication to always make that call
      (we might not trust it, ref pull setup)
- clean up step holds + step bookmarks + replication cursor bookmarks on
  send RPC instead
    - this makes it symmetric with Receive RPC
- use a cache (endpoint.sendAbstractionsCache) to avoid the cost of
  listing the on-disk endpoint abstractions state on every step

The "create" methods for endpoint abstractions (CreateReplicationCursor, HoldStep) are now fully
idempotent and return an Abstraction.

Notes about endpoint.sendAbstractionsCache:
- fills lazily from disk state on first `Get` operation
- fill from disk is generally only attempted once
    - unless the `ListAbstractions` fails, in which case the fill from
      disk is retried on next `Get` (the current `Get` will observe a
      subset of the actual on-disk abstractions)
    - the `Invalidate` method is called
- it is a global (zrepl process-wide) cache

fixes #316
2020-06-14 15:21:36 +02:00
100 changed files with 4379 additions and 3357 deletions
+8 -6
View File
@@ -98,14 +98,16 @@ jobs:
-X POST \
-d '{"context":"zrepl/publish-ci-artifacts", "state": "success", "description":"CI Build Artifacts for '"$JOB_NAME"'", "target_url":"https://minio.cschwarz.com/minio/zrepl-ci-artifacts/'"$COMMIT"'/"}'
# kick off binary packaging workflow
- run:
shell: /bin/bash -euo pipefail
shell: /bin/bash -eo pipefail
command: |
# Trigger Debian Package Build
curl -v -X POST https://api.github.com/repos/zrepl/debian-binary-packaging/dispatches \
-H 'Accept: application/vnd.github.v3+json' \
-H "Authorization: token $ZREPL_DEBIAN_BINARYPACKAGIN_TRIGGER_BUILD_GITHUB_TOKEN" \
--data '{"event_type": "push", "client_payload": { "zrepl_main_repo_commit": "'"$CIRCLE_SHA1"'", "go_version": "'"${CIRCLE_JOB##build-}"'" }}'
if [ -n "$CIRCLE_PR_NUMBER" ]; then # CIRCLE_PR_NUMBER is guaranteed to be only present in forked PRs (external)
echo "Forked PR detected. Sry, can't trust you with credentials."
exit 0
fi
set -u # from now on
GITHUB_ACCESS_TOKEN="$ZREPL_DEBIAN_BINARYPACKAGIN_TRIGGER_BUILD_GITHUB_TOKEN" .circleci/trigger_debian_binary_packaging_workflow.bash "$CIRCLE_SHA1" "${CIRCLE_JOB##build-}"
build-1.11:
<<: *build-latest
+10
View File
@@ -0,0 +1,10 @@
#!/usr/bin/env bash
set -euo pipefail
COMMIT="$1"
GO_VERSION="$2"
curl -v -X POST https://api.github.com/repos/zrepl/debian-binary-packaging/dispatches \
-H 'Accept: application/vnd.github.v3+json' \
-H "Authorization: token $GITHUB_ACCESS_TOKEN" \
--data '{"event_type": "push", "client_payload": { "zrepl_main_repo_commit": "'"$COMMIT"'", "go_version": "'"$GO_VERSION"'" }}'
+1
View File
@@ -1,3 +1,4 @@
github: problame
patreon: zrepl
liberapay: zrepl
custom: https://www.paypal.com/cgi-bin/webscr?cmd=_s-xclick&hosted_button_id=R5QSXJVYHGX96
+25 -9
View File
@@ -147,11 +147,26 @@ zrepl-bin:
generate-platform-test-list:
$(GO_BUILD) -o $(ARTIFACTDIR)/generate-platform-test-list ./platformtest/tests/gen
test-platform-bin:
COVER_PLATFORM_BIN_PATH := $(ARTIFACTDIR)/platformtest-cover-$(ZREPL_TARGET_TUPLE)
cover-platform-bin:
$(GO_ENV_VARS) $(GO) test $(GO_BUILDFLAGS) \
-c -o "$(ARTIFACTDIR)/platformtest-$(ZREPL_TARGET_TUPLE)" \
-c -o "$(COVER_PLATFORM_BIN_PATH)" \
-covermode=atomic -cover -coverpkg github.com/zrepl/zrepl/... \
./platformtest/harness
cover-platform:
# do not track dependency on cover-platform-bin to allow build of binary outside of test VM
export _TEST_PLATFORM_CMD="$(COVER_PLATFORM_BIN_PATH) \
-test.coverprofile \"$(ARTIFACTDIR)/platformtest.cover\" \
-test.v \
__DEVEL--i-heard-you-like-tests"; \
$(MAKE) _test-or-cover-platform-impl
TEST_PLATFORM_BIN_PATH := $(ARTIFACTDIR)/platformtest-$(ZREPL_TARGET_TUPLE)
test-platform-bin:
$(GO_BUILD) -o "$(TEST_PLATFORM_BIN_PATH)" ./platformtest/harness
test-platform:
export _TEST_PLATFORM_CMD="\"$(TEST_PLATFORM_BIN_PATH)\""; \
$(MAKE) _test-or-cover-platform-impl
ZREPL_PLATFORMTEST_POOLNAME := zreplplatformtest
ZREPL_PLATFORMTEST_IMAGEPATH := /tmp/zreplplatformtest.pool.img
@@ -159,14 +174,14 @@ ZREPL_PLATFORMTEST_MOUNTPOINT := /tmp/zreplplatformtest.pool
ZREPL_PLATFORMTEST_ZFS_LOG := /tmp/zreplplatformtest.zfs.log
# ZREPL_PLATFORMTEST_STOP_AND_KEEP := -failure.stop-and-keep-pool
ZREPL_PLATFORMTEST_ARGS :=
test-platform: $(ARTIFACTDIR) # do not track dependency on test-platform-bin to allow build of platformtest outside of test VM
_test-or-cover-platform-impl: $(ARTIFACTDIR)
ifndef _TEST_PLATFORM_CMD
$(error _TEST_PLATFORM_CMD is undefined, caller 'cover-platform' or 'test-platform' should have defined it)
endif
rm -f "$(ZREPL_PLATFORMTEST_ZFS_LOG)"
rm -f "$(ARTIFACTDIR)/platformtest.cover"
platformtest/logmockzfs/logzfsenv "$(ZREPL_PLATFORMTEST_ZFS_LOG)" `which zfs` \
"$(ARTIFACTDIR)/platformtest-$(ZREPL_TARGET_TUPLE)" \
-test.coverprofile "$(ARTIFACTDIR)/platformtest.cover" \
-test.v \
__DEVEL--i-heard-you-like-tests \
$(_TEST_PLATFORM_CMD) \
-poolname "$(ZREPL_PLATFORMTEST_POOLNAME)" \
-imagepath "$(ZREPL_PLATFORMTEST_IMAGEPATH)" \
-mountpoint "$(ZREPL_PLATFORMTEST_MOUNTPOINT)" \
@@ -178,10 +193,11 @@ cover-merge: $(ARTIFACTDIR)
cover-html: cover-merge
$(GO) tool cover -html "$(ARTIFACTDIR)/merged.cover" -o "$(ARTIFACTDIR)/merged.cover.html"
test-full:
cover-full:
test "$$(id -u)" = "0" || echo "MUST RUN AS ROOT" 1>&2
$(MAKE) test-go COVER=1
$(MAKE) test-platform
$(MAKE) cover-platform-bin
$(MAKE) cover-platform
$(MAKE) cover-html
##################### DEV TARGETS #####################
+3 -2
View File
@@ -2,7 +2,8 @@
[![Language: Go](https://img.shields.io/badge/language-Go-6ad7e5.svg)](https://golang.org/)
[![User Docs](https://img.shields.io/badge/docs-web-blue.svg)](https://zrepl.github.io)
[![Donate via Patreon](https://img.shields.io/endpoint.svg?url=https%3A%2F%2Fshieldsio-patreon.herokuapp.com%2Fzrepl%2Fpledges&style=flat&color=yellow)](https://www.patreon.com/zrepl)
[![Donate via Liberapay](https://img.shields.io/liberapay/receives/zrepl.svg?logo=liberapay)](https://liberapay.com/zrepl/donate)
[![Donate via GitHub Sponsors](https://img.shields.io/static/v1?label=Sponsor&message=%E2%9D%A4&logo=GitHub&style=flat&color=yellow)](https://github.com/sponsors/problame)
[![Donate via Liberapay](https://img.shields.io/liberapay/patrons/zrepl.svg?logo=liberapay)](https://liberapay.com/zrepl/donate)
[![Donate via PayPal](https://img.shields.io/badge/donate-paypal-yellow.svg)](https://www.paypal.com/cgi-bin/webscr?cmd=_s-xclick&hosted_button_id=R5QSXJVYHGX96)
[![Twitter](https://img.shields.io/twitter/url/https/github.com/zrepl/zrepl.svg?style=social)](https://twitter.com/intent/tweet?text=Wow:&url=https%3A%2F%2Fgithub.com%2Fzrepl%2Fzrepl)
@@ -20,7 +21,7 @@ zrepl is a one-stop ZFS backup & replication solution.
## Feature Requests
1. Does you feature request require default values / some kind of configuration?
1. Does your feature request require default values / some kind of configuration?
If so, think of an expressive configuration example.
2. Think of at least one use case that generalizes from your concrete application.
3. Open an issue on GitHub with example conf & use case attached.
+1 -1
View File
@@ -63,7 +63,7 @@ func doZabsList(ctx context.Context, sc *cli.Subcommand, args []string) error {
defer line.Lock().Unlock()
if zabsListFlags.Json {
enc.SetIndent("", " ")
if err := enc.Encode(abstractions); err != nil {
if err := enc.Encode(a); err != nil {
panic(err)
}
fmt.Println()
+27 -21
View File
@@ -52,11 +52,12 @@ func (j JobEnum) Name() string {
}
type ActiveJob struct {
Type string `yaml:"type"`
Name string `yaml:"name"`
Connect ConnectEnum `yaml:"connect"`
Pruning PruningSenderReceiver `yaml:"pruning"`
Debug JobDebugSettings `yaml:"debug,optional"`
Type string `yaml:"type"`
Name string `yaml:"name"`
Connect ConnectEnum `yaml:"connect"`
Pruning PruningSenderReceiver `yaml:"pruning"`
Debug JobDebugSettings `yaml:"debug,optional"`
Replication *Replication `yaml:"replication,optional,fromdefaults"`
}
type PassiveJob struct {
@@ -76,13 +77,7 @@ type SnapJob struct {
}
type SendOptions struct {
Encrypted bool `yaml:"encrypted"`
}
var _ yaml.Defaulter = (*SendOptions)(nil)
func (l *SendOptions) SetDefault() {
*l = SendOptions{Encrypted: false}
Encrypted bool `yaml:"encrypted,optional,default=false"`
}
type RecvOptions struct {
@@ -93,10 +88,13 @@ type RecvOptions struct {
// Reencrypt bool `yaml:"reencrypt"`
}
var _ yaml.Defaulter = (*RecvOptions)(nil)
type Replication struct {
Protection *ReplicationOptionsProtection `yaml:"protection,optional,fromdefaults"`
}
func (l *RecvOptions) SetDefault() {
*l = RecvOptions{}
type ReplicationOptionsProtection struct {
Initial string `yaml:"initial,optional,default=guarantee_resumability"`
Incremental string `yaml:"incremental,optional,default=guarantee_resumability"`
}
type PushJob struct {
@@ -106,6 +104,9 @@ type PushJob struct {
Send *SendOptions `yaml:"send,fromdefaults,optional"`
}
func (j *PushJob) GetFilesystems() FilesystemsFilter { return j.Filesystems }
func (j *PushJob) GetSendOptions() *SendOptions { return j.Send }
type PullJob struct {
ActiveJob `yaml:",inline"`
RootFS string `yaml:"root_fs"`
@@ -113,6 +114,10 @@ type PullJob struct {
Recv *RecvOptions `yaml:"recv,fromdefaults,optional"`
}
func (j *PullJob) GetRootFS() string { return j.RootFS }
func (j *PullJob) GetAppendClientIdentity() bool { return false }
func (j *PullJob) GetRecvOptions() *RecvOptions { return j.Recv }
type PositiveDurationOrManual struct {
Interval time.Duration
Manual bool
@@ -150,6 +155,10 @@ type SinkJob struct {
Recv *RecvOptions `yaml:"recv,optional,fromdefaults"`
}
func (j *SinkJob) GetRootFS() string { return j.RootFS }
func (j *SinkJob) GetAppendClientIdentity() bool { return true }
func (j *SinkJob) GetRecvOptions() *RecvOptions { return j.Recv }
type SourceJob struct {
PassiveJob `yaml:",inline"`
Snapshotting SnapshottingEnum `yaml:"snapshotting"`
@@ -157,6 +166,9 @@ type SourceJob struct {
Send *SendOptions `yaml:"send,optional,fromdefaults"`
}
func (j *SourceJob) GetFilesystems() FilesystemsFilter { return j.Filesystems }
func (j *SourceJob) GetSendOptions() *SendOptions { return j.Send }
type FilesystemsFilter map[string]bool
type SnapshottingEnum struct {
@@ -309,11 +321,6 @@ type PruneKeepNotReplicated struct {
KeepSnapshotAtCursor bool `yaml:"keep_snapshot_at_cursor,optional,default=true"`
}
type PruneKeepStepHolds struct {
Type string `yaml:"type"`
AdditionalJobIds []string `yaml:"additional_job_ids,optional"`
}
type PruneKeepLastN struct {
Type string `yaml:"type"`
Count int `yaml:"count"`
@@ -485,7 +492,6 @@ func (t *ServeEnum) UnmarshalYAML(u func(interface{}, bool) error) (err error) {
func (t *PruningEnum) UnmarshalYAML(u func(interface{}, bool) error) (err error) {
t.Ret, err = enumUnmarshal(u, map[string]interface{}{
"step_holds": &PruneKeepStepHolds{},
"not_replicated": &PruneKeepNotReplicated{},
"last_n": &PruneKeepLastN{},
"grid": &PruneGrid{},
+90
View File
@@ -0,0 +1,90 @@
package config
import (
"fmt"
"testing"
"github.com/stretchr/testify/require"
"github.com/zrepl/yaml-config"
)
type A struct {
B *B `yaml:"b,optional,fromdefaults"`
A1 string `yaml:"a1,optional"`
}
type B struct {
C *C `yaml:"c,optional,fromdefaults"`
D string `yaml:"d,default=ddd"`
E string `yaml:"e,optional"`
}
type C struct {
Q string `yaml:"q,optional"`
R string `yaml:"r,default=r"`
}
func TestDepFromDefaults(t *testing.T) {
type testcase struct {
name string
yaml string
expect *A
}
tcs := []testcase{
{
name: "empty",
yaml: `{}`,
expect: &A{
B: &B{
C: &C{
R: "r",
},
D: "ddd",
},
},
},
{
name: "a1 set",
yaml: `{"a1":"blah"}`,
expect: &A{
A1: "blah",
B: &B{
C: &C{
R: "r",
},
D: "ddd",
},
},
},
{
name: "D set",
yaml: `
b:
d: 4d
`,
expect: &A{
B: &B{
D: "4d",
C: &C{
R: "r",
},
},
},
},
}
for tci := range tcs {
t.Run(fmt.Sprintf("%d-%s", tci, tcs[tci].name), func(t *testing.T) {
tc := tcs[tci]
var a A
err := yaml.UnmarshalStrict([]byte(tc.yaml), &a)
require.NoError(t, err)
require.Equal(t, tc.expect, &a)
})
}
}
+3 -3
View File
@@ -60,9 +60,9 @@ jobs:
})
t.Run("encrypted_unspecified", func(t *testing.T) {
c, err := testConfig(t, fill(encrypted_unspecified))
assert.Error(t, err)
assert.Nil(t, c)
c = testValidConfig(t, fill(encrypted_unspecified))
encrypted := c.Jobs[0].Ret.(*PushJob).Send.Encrypted
assert.Equal(t, false, encrypted)
})
t.Run("send_not_specified", func(t *testing.T) {
@@ -0,0 +1,88 @@
# This config serves as an example for a local zrepl installation that
# backups the entire zpool `system` to `backuppool/zrepl/sink`
#
# The requirements covered by this setup are described in the zrepl documentation's
# quick start section which inlines this example.
#
# CUSTOMIZATIONS YOU WILL LIKELY WANT TO APPLY:
# - adjust the name of the production pool `system` in the `filesystems` filter of jobs `snapjob` and `push_to_derive`
# - adjust the name of the backup pool `backuppool` in the `backuppool_sink` job
# - adjust the occurences of `myhostname` to the name of the system you are backing up (cannot be easily changed once you start replicating)
# - make sure the `zrepl_` prefix is not being used by any other zfs tools you might have installed (it likely isn't)
jobs:
# this job takes care of snapshot creation + pruning
- name: snapjob
type: snap
filesystems: {
"system<": true,
}
# create snapshots with prefix `zrepl_` every 15 minutes
snapshotting:
type: periodic
interval: 15m
prefix: zrepl_
pruning:
keep:
# fade-out scheme for snapshots starting with `zrepl_`
# - keep all created in the last hour
# - then destroy snapshots such that we keep 24 each 1 hour apart
# - then destroy snapshots such that we keep 14 each 1 day apart
# - then destroy all older snapshots
- type: grid
grid: 1x1h(keep=all) | 24x1h | 14x1d
regex: "^zrepl_.*"
# keep all snapshots that don't have the `zrepl_` prefix
- type: regex
negate: true
regex: "^zrepl_.*"
# This job pushes to the local sink defined in job `backuppool_sink`.
# We trigger replication manually from the command line / udev rules using
# `zrepl signal wakeup push_to_drive`
- type: push
name: push_to_drive
connect:
type: local
listener_name: backuppool_sink
client_identity: myhostname
filesystems: {
"system<": true
}
send:
encrypted: true
replication:
protection:
initial: guarantee_resumability
# Downgrade protection to guarantee_incremental which uses zfs bookmarks instead of zfs holds.
# Thus, when we yank out the backup drive during replication
# - we might not be able to resume the interrupted replication step because the partially received `to` snapshot of a `from`->`to` step may be pruned any time
# - but in exchange we get back the disk space allocated by `to` when we prune it
# - and because we still have the bookmarks created by `guarantee_incremental`, we can still do incremental replication of `from`->`to2` in the future
incremental: guarantee_incremental
snapshotting:
type: manual
pruning:
# no-op prune rule on sender (keep all snapshots), job `snapshot` takes care of this
keep_sender:
- type: regex
regex: ".*"
# retain
keep_receiver:
# longer retention on the backup drive, we have more space there
- type: grid
grid: 1x1h(keep=all) | 24x1h | 360x1d
regex: "^zrepl_.*"
# retain all non-zrepl snapshots on the backup drive
- type: regex
negate: true
regex: "^zrepl_.*"
# This job receives from job `push_to_drive` into `backuppool/zrepl/sink/myhostname`
- type: sink
name: backuppool_sink
root_fs: "backuppool/zrepl/sink"
serve:
type: local
listener_name: backuppool_sink
@@ -0,0 +1,12 @@
jobs:
- name: sink
type: sink
serve:
type: tls
listen: ":8888"
ca: "/etc/zrepl/prod.crt"
cert: "/etc/zrepl/backups.crt"
key: "/etc/zrepl/backups.key"
client_cns:
- "prod"
root_fs: "storage/zrepl/sink"
@@ -0,0 +1,28 @@
jobs:
- name: prod_to_backups
type: push
connect:
type: tls
address: "backups.example.com:8888"
ca: /etc/zrepl/backups.crt
cert: /etc/zrepl/prod.crt
key: /etc/zrepl/prod.key
server_cn: "backups"
filesystems: {
"zroot/var/db": true,
"zroot/usr/home<": true,
"zroot/usr/home/paranoid": false
}
snapshotting:
type: periodic
prefix: zrepl_
interval: 10m
pruning:
keep_sender:
- type: not_replicated
- type: last_n
count: 10
keep_receiver:
- type: grid
grid: 1x1h(keep=all) | 24x1h | 30x1d | 6x30d
regex: "^zrepl_"
+7 -1
View File
@@ -120,7 +120,13 @@ func (j *controlJob) Run(ctx context.Context) {
jsonResponder{log, func() (interface{}, error) {
jobs := j.jobs.status()
globalZFS := zfscmd.GetReport()
s := Status{Jobs: jobs, Global: GlobalStatus{ZFSCmds: globalZFS}}
envconstReport := envconst.GetReport()
s := Status{
Jobs: jobs,
Global: GlobalStatus{
ZFSCmds: globalZFS,
Envconst: envconstReport,
}}
return s, nil
}})
+4 -1
View File
@@ -14,6 +14,7 @@ import (
"github.com/prometheus/client_golang/prometheus"
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/util/envconst"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/job"
@@ -94,6 +95,7 @@ func Run(ctx context.Context, conf *config.Config) error {
}
// register global (=non job-local) metrics
version.PrometheusRegister(prometheus.DefaultRegisterer)
zfscmd.RegisterMetrics(prometheus.DefaultRegisterer)
trace.RegisterMetrics(prometheus.DefaultRegisterer)
endpoint.RegisterMetrics(prometheus.DefaultRegisterer)
@@ -150,7 +152,8 @@ type Status struct {
}
type GlobalStatus struct {
ZFSCmds *zfscmd.Report
ZFSCmds *zfscmd.Report
Envconst *envconst.Report
}
func (s *jobs) status() map[string]*job.Status {
+35 -28
View File
@@ -12,7 +12,6 @@ import (
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/daemon/job/reset"
"github.com/zrepl/zrepl/daemon/job/wakeup"
"github.com/zrepl/zrepl/daemon/pruner"
@@ -35,9 +34,10 @@ type ActiveSide struct {
prunerFactory *pruner.PrunerFactory
promRepStateSecs *prometheus.HistogramVec // labels: state
promPruneSecs *prometheus.HistogramVec // labels: prune_side
promBytesReplicated *prometheus.CounterVec // labels: filesystem
promRepStateSecs *prometheus.HistogramVec // labels: state
promPruneSecs *prometheus.HistogramVec // labels: prune_side
promBytesReplicated *prometheus.CounterVec // labels: filesystem
promReplicationErrors prometheus.Gauge
tasksMtx sync.Mutex
tasks activeSideTasks
@@ -145,22 +145,24 @@ func (m *modePush) ResetConnectBackoff() {
func modePushFromConfig(g *config.Global, in *config.PushJob, jobID endpoint.JobID) (*modePush, error) {
m := &modePush{}
var err error
fsf, err := filters.DatasetMapFilterFromConfig(in.Filesystems)
m.senderConfig, err = buildSenderConfig(in, jobID)
if err != nil {
return nil, errors.Wrap(err, "cannot build filesystem filter")
return nil, errors.Wrap(err, "sender config")
}
m.senderConfig = &endpoint.SenderConfig{
FSF: fsf,
Encrypt: &zfs.NilBool{B: in.Send.Encrypted},
JobID: jobID,
replicationConfig, err := logic.ReplicationConfigFromConfig(in.Replication)
if err != nil {
return nil, errors.Wrap(err, "field `replication`")
}
m.plannerPolicy = &logic.PlannerPolicy{
EncryptedSend: logic.TriFromBool(in.Send.Encrypted),
EncryptedSend: logic.TriFromBool(in.Send.Encrypted),
ReplicationConfig: *replicationConfig,
}
if m.snapper, err = snapper.FromConfig(g, fsf, in.Snapshotting); err != nil {
if m.snapper, err = snapper.FromConfig(g, m.senderConfig.FSF, in.Snapshotting); err != nil {
return nil, errors.Wrap(err, "cannot build snapper")
}
@@ -172,7 +174,6 @@ type modePull struct {
receiver *endpoint.Receiver
receiverConfig endpoint.ReceiverConfig
sender *rpc.Client
rootFS *zfs.DatasetPath
plannerPolicy *logic.PlannerPolicy
interval config.PositiveDurationOrManual
}
@@ -246,26 +247,19 @@ func modePullFromConfig(g *config.Global, in *config.PullJob, jobID endpoint.Job
m = &modePull{}
m.interval = in.Interval
m.rootFS, err = zfs.NewDatasetPath(in.RootFS)
replicationConfig, err := logic.ReplicationConfigFromConfig(in.Replication)
if err != nil {
return nil, errors.New("RootFS is not a valid zfs filesystem path")
}
if m.rootFS.Length() <= 0 {
return nil, errors.New("RootFS must not be empty") // duplicates error check of receiver
return nil, errors.Wrap(err, "field `replication`")
}
m.plannerPolicy = &logic.PlannerPolicy{
EncryptedSend: logic.DontCare,
EncryptedSend: logic.DontCare,
ReplicationConfig: *replicationConfig,
}
m.receiverConfig = endpoint.ReceiverConfig{
JobID: jobID,
RootWithoutClientComponent: m.rootFS,
AppendClientIdentity: false, // !
UpdateLastReceivedHold: true,
}
if err := m.receiverConfig.Validate(); err != nil {
return nil, errors.Wrap(err, "cannot build receiver config")
m.receiverConfig, err = buildReceiverConfig(in, jobID)
if err != nil {
return nil, err
}
return m, nil
@@ -306,6 +300,14 @@ func activeSide(g *config.Global, in *config.ActiveJob, configJob interface{}) (
ConstLabels: prometheus.Labels{"zrepl_job": j.name.String()},
}, []string{"filesystem"})
j.promReplicationErrors = prometheus.NewGauge(prometheus.GaugeOpts{
Namespace: "zrepl",
Subsystem: "replication",
Name: "filesystem_errors",
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()},
})
j.connecter, err = fromconfig.ConnecterFromConfig(g, in.Connect)
if err != nil {
return nil, errors.Wrap(err, "cannot build client")
@@ -330,6 +332,7 @@ func (j *ActiveSide) RegisterMetrics(registerer prometheus.Registerer) {
registerer.MustRegister(j.promRepStateSecs)
registerer.MustRegister(j.promPruneSecs)
registerer.MustRegister(j.promBytesReplicated)
registerer.MustRegister(j.promReplicationErrors)
}
func (j *ActiveSide) Name() string { return j.name.String() }
@@ -364,7 +367,7 @@ func (j *ActiveSide) OwnedDatasetSubtreeRoot() (rfs *zfs.DatasetPath, ok bool) {
_ = j.mode.(*modePush) // make sure we didn't introduce a new job type
return nil, false
}
return pull.rootFS.Copy(), true
return pull.receiverConfig.RootWithoutClientComponent.Copy(), true
}
func (j *ActiveSide) SenderConfig() *endpoint.SenderConfig {
@@ -462,6 +465,10 @@ func (j *ActiveSide) do(ctx context.Context) {
GetLogger(ctx).Info("start replication")
repWait(true) // wait blocking
repCancel() // always cancel to free up context resources
replicationReport := j.tasks.replicationReport()
j.promReplicationErrors.Set(float64(replicationReport.GetFailedFilesystemsCountInLatestAttempt()))
endSpan()
}
+55
View File
@@ -0,0 +1,55 @@
package job
import (
"github.com/pkg/errors"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/zfs"
)
type SendingJobConfig interface {
GetFilesystems() config.FilesystemsFilter
GetSendOptions() *config.SendOptions // must not be nil
}
func buildSenderConfig(in SendingJobConfig, jobID endpoint.JobID) (*endpoint.SenderConfig, error) {
fsf, err := filters.DatasetMapFilterFromConfig(in.GetFilesystems())
if err != nil {
return nil, errors.Wrap(err, "cannot build filesystem filter")
}
return &endpoint.SenderConfig{
FSF: fsf,
Encrypt: &zfs.NilBool{B: in.GetSendOptions().Encrypted},
JobID: jobID,
}, nil
}
type ReceivingJobConfig interface {
GetRootFS() string
GetAppendClientIdentity() bool
GetRecvOptions() *config.RecvOptions
}
func buildReceiverConfig(in ReceivingJobConfig, jobID endpoint.JobID) (rc endpoint.ReceiverConfig, err error) {
rootFs, err := zfs.NewDatasetPath(in.GetRootFS())
if err != nil {
return rc, errors.New("root_fs is not a valid zfs filesystem path")
}
if rootFs.Length() <= 0 {
return rc, errors.New("root_fs must not be empty") // duplicates error check of receiver
}
rc = endpoint.ReceiverConfig{
JobID: jobID,
RootWithoutClientComponent: rootFs,
AppendClientIdentity: in.GetAppendClientIdentity(),
}
if err := rc.Validate(); err != nil {
return rc, errors.Wrap(err, "cannot build receiver config")
}
return rc, nil
}
+36
View File
@@ -2,12 +2,16 @@ package job
import (
"fmt"
"path"
"path/filepath"
"testing"
"github.com/kr/pretty"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/transport/tls"
)
func TestValidateReceivingSidesDoNotOverlap(t *testing.T) {
@@ -108,3 +112,35 @@ jobs:
}
}
func TestSampleConfigsAreBuiltWithoutErrors(t *testing.T) {
paths, err := filepath.Glob("../../config/samples/*")
if err != nil {
t.Errorf("glob failed: %+v", err)
}
for _, p := range paths {
if path.Ext(p) != ".yml" {
t.Logf("skipping file %s", p)
continue
}
t.Run(p, func(t *testing.T) {
c, err := config.ParseConfig(p)
if err != nil {
t.Errorf("error parsing %s:\n%+v", p, err)
}
t.Logf("file: %s", p)
t.Log(pretty.Sprint(c))
tls.FakeCertificateLoading(t)
jobs, err := JobsFromConfig(c)
t.Logf("jobs: %#v", jobs)
assert.NoError(t, err)
})
}
}
+6 -21
View File
@@ -9,7 +9,6 @@ import (
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/daemon/logging"
"github.com/zrepl/zrepl/daemon/snapper"
"github.com/zrepl/zrepl/endpoint"
@@ -48,19 +47,9 @@ func (m *modeSink) SnapperReport() *snapper.Report { return nil }
func modeSinkFromConfig(g *config.Global, in *config.SinkJob, jobID endpoint.JobID) (m *modeSink, err error) {
m = &modeSink{}
rootDataset, err := zfs.NewDatasetPath(in.RootFS)
m.receiverConfig, err = buildReceiverConfig(in, jobID)
if err != nil {
return nil, errors.New("root dataset is not a valid zfs filesystem path")
}
m.receiverConfig = endpoint.ReceiverConfig{
JobID: jobID,
RootWithoutClientComponent: rootDataset,
AppendClientIdentity: true, // !
UpdateLastReceivedHold: true,
}
if err := m.receiverConfig.Validate(); err != nil {
return nil, errors.Wrap(err, "cannot build receiver config")
return nil, err
}
return m, nil
@@ -74,17 +63,13 @@ type modeSource struct {
func modeSourceFromConfig(g *config.Global, in *config.SourceJob, jobID endpoint.JobID) (m *modeSource, err error) {
// FIXME exact dedup of modePush
m = &modeSource{}
fsf, err := filters.DatasetMapFilterFromConfig(in.Filesystems)
m.senderConfig, err = buildSenderConfig(in, jobID)
if err != nil {
return nil, errors.Wrap(err, "cannot build filesystem filter")
}
m.senderConfig = &endpoint.SenderConfig{
FSF: fsf,
Encrypt: &zfs.NilBool{B: in.Send.Encrypted},
JobID: jobID,
return nil, errors.Wrap(err, "send options")
}
if m.snapper, err = snapper.FromConfig(g, fsf, in.Snapshotting); err != nil {
if m.snapper, err = snapper.FromConfig(g, m.senderConfig.FSF, in.Snapshotting); err != nil {
return nil, errors.Wrap(err, "cannot build snapper")
}
-72
View File
@@ -1,72 +0,0 @@
// Code generated by "enumer -type=FSState -json"; DO NOT EDIT.
//
package pruner
import (
"encoding/json"
"fmt"
)
const _FSStateName = "FSStateInitializedFSStatePlanningFSStatePlanErrFSStateExecutingFSStateExecuteErrFSStateExecuteSuccess"
var _FSStateIndex = [...]uint8{0, 18, 33, 47, 63, 80, 101}
func (i FSState) String() string {
if i < 0 || i >= FSState(len(_FSStateIndex)-1) {
return fmt.Sprintf("FSState(%d)", i)
}
return _FSStateName[_FSStateIndex[i]:_FSStateIndex[i+1]]
}
var _FSStateValues = []FSState{0, 1, 2, 3, 4, 5}
var _FSStateNameToValueMap = map[string]FSState{
_FSStateName[0:18]: 0,
_FSStateName[18:33]: 1,
_FSStateName[33:47]: 2,
_FSStateName[47:63]: 3,
_FSStateName[63:80]: 4,
_FSStateName[80:101]: 5,
}
// FSStateString retrieves an enum value from the enum constants string name.
// Throws an error if the param is not part of the enum.
func FSStateString(s string) (FSState, error) {
if val, ok := _FSStateNameToValueMap[s]; ok {
return val, nil
}
return 0, fmt.Errorf("%s does not belong to FSState values", s)
}
// FSStateValues returns all values of the enum
func FSStateValues() []FSState {
return _FSStateValues
}
// IsAFSState returns "true" if the value is listed in the enum definition. "false" otherwise
func (i FSState) IsAFSState() bool {
for _, v := range _FSStateValues {
if i == v {
return true
}
}
return false
}
// MarshalJSON implements the json.Marshaler interface for FSState
func (i FSState) MarshalJSON() ([]byte, error) {
return json.Marshal(i.String())
}
// UnmarshalJSON implements the json.Unmarshaler interface for FSState
func (i *FSState) UnmarshalJSON(data []byte) error {
var s string
if err := json.Unmarshal(data, &s); err != nil {
return fmt.Errorf("FSState should be a string, got %s", data)
}
var err error
*i, err = FSStateString(s)
return err
}
-454
View File
@@ -1,454 +0,0 @@
package pruner
import (
"context"
"encoding/json"
"fmt"
"os"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/daemon/logging"
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/pruning"
"github.com/zrepl/zrepl/zfs"
)
type Pruner struct {
fsfilter endpoint.FSFilter
jid endpoint.JobID
side Side
keepRules []pruning.KeepRule
// all channels consumed by the run loop
reportReqs chan reportRequest
stopReqs chan stopRequest
done chan struct{}
fsListRes chan fsListRes
state State
listFilesystemsError error // only in state StateListFilesystemsError
fsPruners []*FSPruner // only in state StateFanOutFilesystems
}
//go:generate enumer -type=State -json
type State int
const (
StateInitialized State = iota
StateListFilesystems
StateListFilesystemsError
StateFanOutFilesystems
StateDone
)
type Report struct {
State State
ListFilesystemsError error // only valid in StateListFilesystemsError
Filesystems []*FSReport // valid from StateFanOutFilesystems
}
type reportRequest struct {
ctx context.Context
reply chan *Report
}
type runRequest struct {
complete chan struct{}
}
type stopRequest struct {
complete chan struct{}
}
type fsListRes struct {
filesystems []*zfs.DatasetPath
err error
}
type Side interface {
// may return both nil, indicating there is no replication position
GetReplicationPosition(ctx context.Context, fs string) (*zfs.FilesystemVersion, error)
isSide() Side
}
func NewPruner(fsfilter endpoint.FSFilter, jid endpoint.JobID, side Side, keepRules []pruning.KeepRule) *Pruner {
return &Pruner{
fsfilter,
jid,
side,
keepRules,
make(chan reportRequest),
make(chan stopRequest),
make(chan struct{}),
make(chan fsListRes),
StateInitialized,
nil,
nil,
}
}
func (p *Pruner) Run(ctx context.Context) *Report {
ctx, cancel := context.WithCancel(ctx)
defer cancel()
if p.state != StateInitialized {
panic("Run can onl[y be called once")
}
go func() {
fss, err := zfs.ZFSListMapping(ctx, p.fsfilter)
p.fsListRes <- fsListRes{fss, err}
}()
for {
select {
case res := <-p.fsListRes:
if res.err != nil {
p.state = StateListFilesystemsError
p.listFilesystemsError = res.err
close(p.done)
continue
}
p.state = StateFanOutFilesystems
p.fsPruners = make([]*FSPruner, len(res.filesystems))
_, add, end := trace.WithTaskGroup(ctx, "pruner-fan-out-fs")
for i, fs := range res.filesystems {
p.fsPruners[i] = NewFSPruner(p.jid, p.side, p.keepRules, fs)
add(func(ctx context.Context) {
p.fsPruners[i].Run(ctx)
})
}
go func() {
end()
close(p.done)
}()
case req := <-p.stopReqs:
cancel()
go func() {
<-p.done
close(req.complete)
}()
case req := <-p.reportReqs:
req.reply <- p.report(req.ctx)
case <-p.done:
p.state = StateDone
return p.report(ctx)
}
}
}
func (p *Pruner) Report(ctx context.Context) *Report {
req := reportRequest{
ctx: ctx,
reply: make(chan *Report, 1),
}
select {
case p.reportReqs <- req:
return <-req.reply
case <-ctx.Done():
return nil
case <-p.done:
return nil
}
}
func (p *Pruner) report(ctx context.Context) *Report {
fsreports := make([]*FSReport, len(p.fsPruners))
for i := range fsreports {
fsreports[i] = p.fsPruners[i].report()
}
return &Report{
State: p.state,
ListFilesystemsError: p.listFilesystemsError,
Filesystems: fsreports,
}
}
// implements pruning.Snapshot
type snapshot struct {
replicated bool
stepHolds []pruning.StepHold
zfs.FilesystemVersion
state SnapState
destroyOp *zfs.DestroySnapOp
}
//go:generate enumer -type=SnapState -json
type SnapState int
const (
SnapStateInitialized SnapState = iota
SnapStateKeeping
SnapStateDeletePending
SnapStateDeleteAttempted
)
// implements pruning.StepHold
type stepHold struct {
endpoint.Abstraction
}
func (s snapshot) Replicated() bool { return s.replicated }
func (s snapshot) StepHolds() []pruning.StepHold { return s.stepHolds }
func (s stepHold) GetJobID() endpoint.JobID { return *s.Abstraction.GetJobID() }
type FSPruner struct {
jid endpoint.JobID
side Side
keepRules []pruning.KeepRule
fsp *zfs.DatasetPath
state FSState
// all channels consumed by the run loop
planned chan fsPlanRes
executed chan fsExecuteRes
done chan struct{}
reportReqs chan fsReportReq
keepList []*snapshot // valid in FSStateExecuting and forward
destroyList []*snapshot // valid in FSStateExecuting and forward, field .destroyOp is invalid until FSStateExecuting is left
}
type fsPlanRes struct {
keepList []*snapshot
destroyList []*snapshot
err error
}
type fsExecuteRes struct {
completedDestroyOps []*zfs.DestroySnapOp // same len() as FSPruner.destroyList
}
type fsReportReq struct {
res chan *FSReport
}
type FSReport struct {
State FSState
KeepList []*SnapReport
Destroy []*SnapReport
}
type SnapReport struct {
State SnapState
Name string
Replicated bool
StepHoldCount int
DestroyError error
}
//go:generate enumer -type=FSState -json
type FSState int
const (
FSStateInitialized FSState = iota
FSStatePlanning
FSStatePlanErr
FSStateExecuting
FSStateExecuteErr
FSStateExecuteSuccess
)
func (s FSState) IsTerminal() bool {
return s == FSStatePlanErr || s == FSStateExecuteErr || s == FSStateExecuteSuccess
}
func NewFSPruner(jid endpoint.JobID, side Side, keepRules []pruning.KeepRule, fsp *zfs.DatasetPath) *FSPruner {
return &FSPruner{
jid, side, keepRules, fsp,
FSStateInitialized,
make(chan fsPlanRes),
make(chan fsExecuteRes),
make(chan struct{}),
make(chan fsReportReq),
nil, nil,
}
}
func (p *FSPruner) Run(ctx context.Context) *FSReport {
defer func() {
}()
p.state = FSStatePlanning
go func() { p.planned <- p.plan(ctx) }()
out:
for !p.state.IsTerminal() {
select {
case res := <-p.planned:
if res.err != nil {
p.state = FSStatePlanErr
continue
}
p.state = FSStateExecuting
p.keepList = res.keepList
p.destroyList = res.destroyList
go func() { p.executed <- p.execute(ctx, p.destroyList) }()
case res := <-p.executed:
if len(res.completedDestroyOps) != len(p.destroyList) {
panic("impl error: completedDestroyOps is a vector corresponding to entries in p.destroyList")
}
var erronous []*zfs.DestroySnapOp
for i, op := range res.completedDestroyOps {
if *op.ErrOut != nil {
erronous = append(erronous, op)
}
p.destroyList[i].destroyOp = op
p.destroyList[i].state = SnapStateDeleteAttempted
}
if len(erronous) > 0 {
p.state = FSStateExecuteErr
} else {
p.state = FSStateExecuteSuccess
}
close(p.done)
case <-p.reportReqs:
panic("unimp")
case <-p.done:
break out
}
}
// TODO render last FS report
return nil
}
func (p *FSPruner) plan(ctx context.Context) fsPlanRes {
fs := p.fsp.ToString()
vs, err := zfs.ZFSListFilesystemVersions(ctx, p.fsp, zfs.ListFilesystemVersionsOptions{})
if err != nil {
return fsPlanRes{err: errors.Wrap(err, "list filesystem versions")}
}
allJobsStepHolds, absErrs, err := endpoint.ListAbstractions(ctx, endpoint.ListZFSHoldsAndBookmarksQuery{
FS: endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
What: endpoint.AbstractionTypeSet{
endpoint.AbstractionStepHold: true,
},
Concurrency: 1,
})
if err != nil {
return fsPlanRes{err: errors.Wrap(err, "list abstractions")}
}
if len(absErrs) > 0 {
logging.GetLogger(ctx, logging.SubsysPruning).WithError(endpoint.ListAbstractionsErrors(absErrs)).
Error("error listing some step holds, prune attempt might fail with 'dataset is busy' errors")
}
repPos, err := p.side.GetReplicationPosition(ctx, p.fsp.ToString())
if err != nil {
return fsPlanRes{err: errors.Wrap(err, "get replication position")}
}
vsAsSnaps := make([]pruning.Snapshot, len(vs))
for i := range vs {
var repPosCreateTxgOrZero uint64
if repPos != nil {
repPosCreateTxgOrZero = repPos.GetCreateTXG()
}
s := &snapshot{
state: SnapStateInitialized,
FilesystemVersion: vs[i],
replicated: vs[i].GetCreateTXG() <= repPosCreateTxgOrZero,
}
for _, h := range allJobsStepHolds {
if zfs.FilesystemVersionEqualIdentity(vs[i], h.GetFilesystemVersion()) {
s.stepHolds = append(s.stepHolds, stepHold{h})
}
}
vsAsSnaps[i] = s
}
downcastToSnapshots := func(l []pruning.Snapshot) (r []*snapshot) {
r = make([]*snapshot, len(l))
for i, e := range l {
r[i] = e.(*snapshot)
}
return r
}
pruningResult := pruning.PruneSnapshots(vsAsSnaps, p.keepRules)
remove, keep := downcastToSnapshots(pruningResult.Remove), downcastToSnapshots(pruningResult.Keep)
if len(remove)+len(keep) != len(vsAsSnaps) {
for _, s := range vsAsSnaps {
r, _ := json.MarshalIndent(s.(*snapshot).report(), "", " ")
fmt.Fprintf(os.Stderr, "%s\n", string(r))
}
panic("indecisive")
}
for _, s := range remove {
s.state = SnapStateDeletePending
}
for _, s := range keep {
s.state = SnapStateKeeping
}
return fsPlanRes{keepList: keep, destroyList: remove, err: nil}
}
func (p *FSPruner) execute(ctx context.Context, destroyList []*snapshot) fsExecuteRes {
ops := make([]*zfs.DestroySnapOp, len(destroyList))
for i, fsv := range p.destroyList {
ops[i] = &zfs.DestroySnapOp{
Filesystem: p.fsp.ToString(),
Name: fsv.GetName(),
ErrOut: new(error),
}
}
zfs.ZFSDestroyFilesystemVersions(ctx, ops)
return fsExecuteRes{completedDestroyOps: ops}
}
func (p *FSPruner) report() *FSReport {
return &FSReport{
State: p.state,
KeepList: p.reportRenderSnapReports(p.keepList),
Destroy: p.reportRenderSnapReports(p.destroyList),
}
}
func (p *FSPruner) reportRenderSnapReports(l []*snapshot) (r []*SnapReport) {
r = make([]*SnapReport, len(l))
for i := range l {
r[i] = l[i].report()
}
return r
}
func (s *snapshot) report() *SnapReport {
var snapErr error
if s.state == SnapStateDeleteAttempted {
if *s.destroyOp.ErrOut != nil {
snapErr = (*s.destroyOp.ErrOut)
}
}
return &SnapReport{
State: s.state,
Name: s.Name,
Replicated: s.Replicated(),
StepHoldCount: len(s.stepHolds),
DestroyError: snapErr,
}
}
-27
View File
@@ -1,27 +0,0 @@
package pruner
import (
"context"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/zfs"
)
type SideSender struct {
jobID endpoint.JobID
}
func NewSideSender(jid endpoint.JobID) *SideSender {
return &SideSender{jid}
}
func (s *SideSender) isSide() Side { return nil }
var _ Side = (*SideSender)(nil)
func (s *SideSender) GetReplicationPosition(ctx context.Context, fs string) (*zfs.FilesystemVersion, error) {
if fs == "" {
panic("must not pass zero value for fs")
}
return endpoint.GetMostRecentReplicationCursorOfJob(ctx, fs, s.jobID)
}
-70
View File
@@ -1,70 +0,0 @@
// Code generated by "enumer -type=SnapState -json"; DO NOT EDIT.
//
package pruner
import (
"encoding/json"
"fmt"
)
const _SnapStateName = "SnapStateInitializedSnapStateKeepingSnapStateDeletePendingSnapStateDeleteAttempted"
var _SnapStateIndex = [...]uint8{0, 20, 36, 58, 82}
func (i SnapState) String() string {
if i < 0 || i >= SnapState(len(_SnapStateIndex)-1) {
return fmt.Sprintf("SnapState(%d)", i)
}
return _SnapStateName[_SnapStateIndex[i]:_SnapStateIndex[i+1]]
}
var _SnapStateValues = []SnapState{0, 1, 2, 3}
var _SnapStateNameToValueMap = map[string]SnapState{
_SnapStateName[0:20]: 0,
_SnapStateName[20:36]: 1,
_SnapStateName[36:58]: 2,
_SnapStateName[58:82]: 3,
}
// SnapStateString retrieves an enum value from the enum constants string name.
// Throws an error if the param is not part of the enum.
func SnapStateString(s string) (SnapState, error) {
if val, ok := _SnapStateNameToValueMap[s]; ok {
return val, nil
}
return 0, fmt.Errorf("%s does not belong to SnapState values", s)
}
// SnapStateValues returns all values of the enum
func SnapStateValues() []SnapState {
return _SnapStateValues
}
// IsASnapState returns "true" if the value is listed in the enum definition. "false" otherwise
func (i SnapState) IsASnapState() bool {
for _, v := range _SnapStateValues {
if i == v {
return true
}
}
return false
}
// MarshalJSON implements the json.Marshaler interface for SnapState
func (i SnapState) MarshalJSON() ([]byte, error) {
return json.Marshal(i.String())
}
// UnmarshalJSON implements the json.Unmarshaler interface for SnapState
func (i *SnapState) UnmarshalJSON(data []byte) error {
var s string
if err := json.Unmarshal(data, &s); err != nil {
return fmt.Errorf("SnapState should be a string, got %s", data)
}
var err error
*i, err = SnapStateString(s)
return err
}
-71
View File
@@ -1,71 +0,0 @@
// Code generated by "enumer -type=State -json"; DO NOT EDIT.
//
package pruner
import (
"encoding/json"
"fmt"
)
const _StateName = "StateInitializedStateListFilesystemsStateListFilesystemsErrorStateFanOutFilesystemsStateDone"
var _StateIndex = [...]uint8{0, 16, 36, 61, 83, 92}
func (i State) String() string {
if i < 0 || i >= State(len(_StateIndex)-1) {
return fmt.Sprintf("State(%d)", i)
}
return _StateName[_StateIndex[i]:_StateIndex[i+1]]
}
var _StateValues = []State{0, 1, 2, 3, 4}
var _StateNameToValueMap = map[string]State{
_StateName[0:16]: 0,
_StateName[16:36]: 1,
_StateName[36:61]: 2,
_StateName[61:83]: 3,
_StateName[83:92]: 4,
}
// StateString retrieves an enum value from the enum constants string name.
// Throws an error if the param is not part of the enum.
func StateString(s string) (State, error) {
if val, ok := _StateNameToValueMap[s]; ok {
return val, nil
}
return 0, fmt.Errorf("%s does not belong to State values", s)
}
// StateValues returns all values of the enum
func StateValues() []State {
return _StateValues
}
// IsAState returns "true" if the value is listed in the enum definition. "false" otherwise
func (i State) IsAState() bool {
for _, v := range _StateValues {
if i == v {
return true
}
}
return false
}
// MarshalJSON implements the json.Marshaler interface for State
func (i State) MarshalJSON() ([]byte, error) {
return json.Marshal(i.String())
}
// UnmarshalJSON implements the json.Unmarshaler interface for State
func (i *State) UnmarshalJSON(data []byte) error {
var s string
if err := json.Unmarshal(data, &s); err != nil {
return fmt.Errorf("State should be a string, got %s", data)
}
var err error
*i, err = StateString(s)
return err
}
+29 -51
View File
@@ -20,14 +20,15 @@ import (
)
// Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint
type Endpoint interface {
type History interface {
ReplicationCursor(ctx context.Context, req *pdu.ReplicationCursorReq) (*pdu.ReplicationCursorRes, error)
ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error)
ListFilesystemVersions(ctx context.Context, req *pdu.ListFilesystemVersionsReq) (*pdu.ListFilesystemVersionsRes, error)
}
// Try to keep it compatible with github.com/zrepl/zrepl/endpoint.Endpoint
type Target interface {
Endpoint
ListFilesystems(ctx context.Context, req *pdu.ListFilesystemReq) (*pdu.ListFilesystemRes, error)
ListFilesystemVersions(ctx context.Context, req *pdu.ListFilesystemVersionsReq) (*pdu.ListFilesystemVersionsRes, error)
DestroySnapshots(ctx context.Context, req *pdu.DestroySnapshotsReq) (*pdu.DestroySnapshotsRes, error)
}
@@ -45,14 +46,13 @@ func GetLogger(ctx context.Context) Logger {
}
type args struct {
ctx context.Context
target Target
sender, receiver Endpoint
rules []pruning.KeepRule
retryWait time.Duration
considerSnapAtCursorReplicated bool
convertAnyStepHoldToStepBookmark bool
promPruneSecs prometheus.Observer
ctx context.Context
target Target
receiver History
rules []pruning.KeepRule
retryWait time.Duration
considerSnapAtCursorReplicated bool
promPruneSecs prometheus.Observer
}
type Pruner struct {
@@ -70,12 +70,11 @@ type Pruner struct {
}
type PrunerFactory struct {
senderRules []pruning.KeepRule
receiverRules []pruning.KeepRule
retryWait time.Duration
considerSnapAtCursorReplicated bool
convertAnyStepHoldToStepBookmark bool
promPruneSecs *prometheus.HistogramVec
senderRules []pruning.KeepRule
receiverRules []pruning.KeepRule
retryWait time.Duration
considerSnapAtCursorReplicated bool
promPruneSecs *prometheus.HistogramVec
}
type LocalPrunerFactory struct {
@@ -123,35 +122,25 @@ func NewPrunerFactory(in config.PruningSenderReceiver, promPruneSecs *prometheus
}
considerSnapAtCursorReplicated = considerSnapAtCursorReplicated || !knr.KeepSnapshotAtCursor
}
convertAnyStepHoldToStepBookmark := false
for _, r := range in.KeepSender {
_, ok := r.Ret.(*config.PruneKeepStepHolds)
convertAnyStepHoldToStepBookmark = convertAnyStepHoldToStepBookmark || ok
}
f := &PrunerFactory{
senderRules: keepRulesSender,
receiverRules: keepRulesReceiver,
retryWait: envconst.Duration("ZREPL_PRUNER_RETRY_INTERVAL", 10*time.Second),
considerSnapAtCursorReplicated: considerSnapAtCursorReplicated,
convertAnyStepHoldToStepBookmark: convertAnyStepHoldToStepBookmark,
promPruneSecs: promPruneSecs,
senderRules: keepRulesSender,
receiverRules: keepRulesReceiver,
retryWait: envconst.Duration("ZREPL_PRUNER_RETRY_INTERVAL", 10*time.Second),
considerSnapAtCursorReplicated: considerSnapAtCursorReplicated,
promPruneSecs: promPruneSecs,
}
return f, nil
}
func (f *PrunerFactory) BuildSenderPruner(ctx context.Context, sender Target, receiver Endpoint) *Pruner {
func (f *PrunerFactory) BuildSenderPruner(ctx context.Context, target Target, receiver History) *Pruner {
p := &Pruner{
args: args{
context.WithValue(ctx, contextKeyPruneSide, "sender"),
sender,
sender,
target,
receiver,
f.senderRules,
f.retryWait,
f.considerSnapAtCursorReplicated,
f.convertAnyStepHoldToStepBookmark,
f.promPruneSecs.WithLabelValues("sender"),
},
state: Plan,
@@ -159,17 +148,15 @@ func (f *PrunerFactory) BuildSenderPruner(ctx context.Context, sender Target, re
return p
}
func (f *PrunerFactory) BuildReceiverPruner(ctx context.Context, receiver Target, sender Endpoint) *Pruner {
func (f *PrunerFactory) BuildReceiverPruner(ctx context.Context, target Target, receiver History) *Pruner {
p := &Pruner{
args: args{
context.WithValue(ctx, contextKeyPruneSide, "receiver"),
receiver,
sender,
target,
receiver,
f.receiverRules,
f.retryWait,
false, // senseless here anyways
false, // senseless here anyways
f.promPruneSecs.WithLabelValues("receiver"),
},
state: Plan,
@@ -177,17 +164,15 @@ func (f *PrunerFactory) BuildReceiverPruner(ctx context.Context, receiver Target
return p
}
func (f *LocalPrunerFactory) BuildLocalPruner(ctx context.Context, target Target) *Pruner {
func (f *LocalPrunerFactory) BuildLocalPruner(ctx context.Context, target Target, receiver History) *Pruner {
p := &Pruner{
args: args{
context.WithValue(ctx, contextKeyPruneSide, "local"),
target,
target,
target,
receiver,
f.keepRules,
f.retryWait,
false, // considerSnapAtCursorReplicated is not relevant for local pruning
false, // convertAnyStepHoldToStepBookmark is not relevant for local pruning
f.promPruneSecs.WithLabelValues("local"),
},
state: Plan,
@@ -356,13 +341,11 @@ func (s snapshot) Replicated() bool { return s.replicated }
func (s snapshot) Date() time.Time { return s.date }
func (s snapshot) CreateTXG() uint64 { return s.fsv.GetCreateTXG() }
func doOneAttempt(a *args, u updater) {
ctx, sender, receiver, target := a.ctx, a.sender, a.receiver, a.target
ctx, target, receiver := a.ctx, a.target, a.receiver
sfssres, err := sender.ListFilesystems(ctx, &pdu.ListFilesystemReq{})
sfssres, err := receiver.ListFilesystems(ctx, &pdu.ListFilesystemReq{})
if err != nil {
u(func(p *Pruner) {
p.state = PlanErr
@@ -424,10 +407,6 @@ tfss_loop:
pfs.snaps = make([]pruning.Snapshot, 0, len(tfsvs))
receiver.ListFilesystemVersions(ctx, &pdu.ListFilesystemVersionsReq{
Filesystem: tfs.Path,
})
rcReq := &pdu.ReplicationCursorReq{
Filesystem: tfs.Path,
}
@@ -436,7 +415,6 @@ tfss_loop:
pfsPlanErrAndLog(err, "cannot get replication cursor bookmark")
continue tfss_loop
}
if rc.GetNotexist() {
err := errors.New("replication cursor bookmark does not exist (one successful replication is required before pruning works)")
pfsPlanErrAndLog(err, "")
+3 -4
View File
@@ -11,7 +11,6 @@ import (
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/daemon/hooks"
"github.com/zrepl/zrepl/daemon/logging"
"github.com/zrepl/zrepl/logger"
@@ -49,7 +48,7 @@ type args struct {
ctx context.Context
prefix string
interval time.Duration
fsf *filters.DatasetMapFilter
fsf zfs.DatasetFilter
snapshotsTaken chan<- struct{}
hooks *hooks.List
dryRun bool
@@ -109,7 +108,7 @@ func getLogger(ctx context.Context) Logger {
return logging.GetLogger(ctx, logging.SubsysSnapshot)
}
func PeriodicFromConfig(g *config.Global, fsf *filters.DatasetMapFilter, in *config.SnapshottingPeriodic) (*Snapper, error) {
func PeriodicFromConfig(g *config.Global, fsf zfs.DatasetFilter, in *config.SnapshottingPeriodic) (*Snapper, error) {
if in.Prefix == "" {
return nil, errors.New("prefix must not be empty")
}
@@ -383,7 +382,7 @@ func wait(a args, u updater) state {
}
}
func listFSes(ctx context.Context, mf *filters.DatasetMapFilter) (fss []*zfs.DatasetPath, err error) {
func listFSes(ctx context.Context, mf zfs.DatasetFilter) (fss []*zfs.DatasetPath, err error) {
return zfs.ZFSListMapping(ctx, mf)
}
+2 -2
View File
@@ -5,7 +5,7 @@ import (
"fmt"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/zfs"
)
// FIXME: properly abstract snapshotting:
@@ -32,7 +32,7 @@ func (s *PeriodicOrManual) Report() *Report {
return nil
}
func FromConfig(g *config.Global, fsf *filters.DatasetMapFilter, in config.SnapshottingEnum) (*PeriodicOrManual, error) {
func FromConfig(g *config.Global, fsf zfs.DatasetFilter, in config.SnapshottingEnum) (*PeriodicOrManual, error) {
switch v := in.Ret.(type) {
case *config.SnapshottingPeriodic:
snapper, err := PeriodicFromConfig(g, fsf, v)
-595
View File
@@ -1,595 +0,0 @@
{
"annotations": {
"list": [
{
"$$hashKey": "object:3351",
"builtIn": 1,
"datasource": "-- Grafana --",
"enable": true,
"hide": true,
"iconColor": "rgba(0, 211, 255, 1)",
"name": "Annotations & Alerts",
"type": "dashboard"
}
]
},
"editable": true,
"gnetId": null,
"graphTooltip": 1,
"id": 7,
"iteration": 1552746418826,
"links": [],
"panels": [
{
"content": "# zrepl Prometheus Metrics\n\nzrepl exposes Prometheus metrics and ships with this Grafana dashboard.\nThe exported metrics are suitable for health checks:\n\n* The log should generally be warning & error-free\n * The `Log Messages that require attention` graph visualizes log message counts indicating problems.\n* The number of goroutines should not grow unboundedly over time.\n * During replication, the number of goroutines can be way higher than during idle time.\n * If the goroutine count grows with each replication, there is clearly a goroutine leak. Please open a bug report.\n* The sys memory consumption should not grow unboundedly over time.\n * Note that the Go runtime pre-allocates some of its heap from the OS.\n * zrepl actually uses much less memory than allocated from the OS.\n * Since Go 1.11, Go pre-allocates more aggressively.\n* Monitor that some data is replicated, although that metric does not guarantee that replication was successful.\n\n**In general, note that the exported metrics are not stable unless declared otherwise.**",
"gridPos": {
"h": 9,
"w": 24,
"x": 0,
"y": 0
},
"id": 35,
"mode": "markdown",
"title": "Panel Title",
"type": "text"
},
{
"aliasColors": {},
"bars": false,
"dashLength": 10,
"dashes": false,
"datasource": null,
"fill": 1,
"gridPos": {
"h": 9,
"w": 12,
"x": 0,
"y": 9
},
"id": 15,
"legend": {
"avg": false,
"current": false,
"max": false,
"min": false,
"show": true,
"total": false,
"values": false
},
"lines": true,
"linewidth": 1,
"links": [],
"nullPointMode": "null",
"percentage": false,
"pointradius": 5,
"points": false,
"renderer": "flot",
"seriesOverrides": [],
"spaceLength": 10,
"stack": true,
"steppedLine": false,
"targets": [
{
"$$hashKey": "object:3436",
"expr": "up{job='$prom_job_name'}",
"format": "time_series",
"intervalFactor": 1,
"refId": "A"
}
],
"thresholds": [],
"timeFrom": null,
"timeShift": null,
"title": "zrepl Instances Up",
"tooltip": {
"shared": true,
"sort": 0,
"value_type": "individual"
},
"type": "graph",
"xaxis": {
"buckets": null,
"mode": "time",
"name": null,
"show": true,
"values": []
},
"yaxes": [
{
"format": "short",
"label": null,
"logBase": 1,
"max": "5",
"min": "0",
"show": true
},
{
"format": "short",
"label": null,
"logBase": 1,
"max": null,
"min": null,
"show": true
}
]
},
{
"aliasColors": {},
"bars": false,
"dashLength": 10,
"dashes": false,
"datasource": null,
"fill": 1,
"gridPos": {
"h": 9,
"w": 12,
"x": 12,
"y": 9
},
"id": 22,
"legend": {
"avg": false,
"current": false,
"max": false,
"min": false,
"show": true,
"total": false,
"values": false
},
"lines": true,
"linewidth": 1,
"links": [],
"nullPointMode": "null",
"percentage": false,
"pointradius": 5,
"points": false,
"renderer": "flot",
"seriesOverrides": [],
"spaceLength": 10,
"stack": false,
"steppedLine": false,
"targets": [
{
"expr": "increase(zrepl_daemon_log_entries{job='$prom_job_name',level=~'warn|error'}[$__interval])",
"format": "time_series",
"intervalFactor": 1,
"refId": "A"
}
],
"thresholds": [],
"timeFrom": null,
"timeShift": null,
"title": "Log Messages that require attention",
"tooltip": {
"shared": true,
"sort": 0,
"value_type": "individual"
},
"type": "graph",
"xaxis": {
"buckets": null,
"mode": "time",
"name": null,
"show": true,
"values": []
},
"yaxes": [
{
"format": "short",
"label": null,
"logBase": 1,
"max": null,
"min": "0",
"show": true
},
{
"format": "short",
"label": null,
"logBase": 1,
"max": null,
"min": null,
"show": true
}
]
},
{
"aliasColors": {},
"bars": false,
"dashLength": 10,
"dashes": false,
"datasource": null,
"fill": 1,
"gridPos": {
"h": 9,
"w": 12,
"x": 0,
"y": 18
},
"id": 33,
"legend": {
"avg": false,
"current": false,
"max": false,
"min": false,
"show": true,
"total": false,
"values": false
},
"lines": true,
"linewidth": 1,
"links": [],
"nullPointMode": "null",
"percentage": false,
"pointradius": 5,
"points": false,
"renderer": "flot",
"seriesOverrides": [
{
"alias": "/replicated bytes in last.*/",
"yaxis": 2
}
],
"spaceLength": 10,
"stack": false,
"steppedLine": false,
"targets": [
{
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File diff suppressed because it is too large Load Diff
+35 -21
View File
@@ -34,38 +34,60 @@ This is a big one! Headlining features:
* **Resumable Send & Recv Support**
No knobs required, automatically used where supported.
* **Hold-Protected Send & Recv**
Automatic ZFS holds to ensure that we can always resume a replication step.
* **Encrypted Send & Recv Support** for OpenZFS native encryption.
:ref:`Configurable <job-send-options>` at the job level, i.e., for all filesystems a job is responsible for.
* **Receive-side hold on last received dataset**
The counterpart to the replication cursor bookmark on the send-side.
Ensures that incremental replication will always be possible between a sender and receiver.
* **Encrypted Send & Recv Support** for OpenZFS native encryption,
:ref:`configurable <job-send-options>` at the job level, i.e., for all filesystems a job is responsible for.
* **Replication Guarantees**
Automatic use of ZFS holds and bookmarks to protect a replicated filesystem from losing synchronization between sender and receiver.
By default, zrepl guarantees that incremental replication will always be possible and interrupted steps will always be resumable.
Actual changelog:
.. TIP::
* |break_config| **more restrictive job names than in prior zrepl versions**
Starting with this version, job names are going to be embedded into ZFS holds and bookmark names.
We highly recommend studying the updated :ref:`overview section of the configuration chapter <overview-how-replication-works>` to understand how replication works.
Quick-start guides:
* We have added :ref:`another quick-start guide for a typical workstation use case for zrepl <quickstart-backup-to-external-disk>`.
Check it out to learn how you can use zrepl to back up your workstation's OpenZFS natively-encrypted root filesystem to an external disk.
Additional changelog:
* |break| |break_config| **more restrictive job names than in prior zrepl versions**
Starting with this version, job names are going to be embedded into ZFS holds and bookmark names (see :ref:`this section for details <zrepl-zfs-abstractions>`).
Therefore you might need to adjust your job names.
**Note that jobs** cannot be renamed easily **once you start using zrepl 0.3.**
* |break| |mig| replication cursor representation changed
* zrepl now manages the :ref:`replication cursor bookmark <replication-cursor-and-last-received-hold>` per job-filesystem tuple instead of a single replication cursor per filesystem.
* zrepl now manages the :ref:`replication cursor bookmark <zrepl-zfs-abstractions>` per job-filesystem tuple instead of a single replication cursor per filesystem.
In the future, this will permit multiple sending jobs to send from the same filesystems.
* ZFS does not allow bookmark renaming, thus we cannot migrate the old replication cursors.
* zrepl 0.3 will automatically create cursors in the new format for new replications, and warn if it still finds ones in the old format.
* Run ``zrepl migrate replication-cursor:v1-v2`` to safely destroy old-format cursors.
The migration will ensure that only those old-format cursors are destroyed that have been superseeded by new-format cursors.
* |feature| New option ``listen_freebind`` (tcp, tls, prometheus listener)
* |feature| :issue:`341` Prometheus metric for failing replications + corresponding Grafana panel
* |feature| :issue:`265` transport/tcp: support for CIDR masks in client IP whitelist
* |feature| documented subcommand to generate ``bash`` and ``zsh`` completions
* |feature| :issue:`307` ``chrome://trace`` -compatible activity tracing of zrepl daemon activity
* |feature| logging: trace IDs for better log entry correlation with concurrent replication jobs
* |feature| experimental environment variable for parallel replication (see :issue:`306` )
* |bugfix| missing logger context vars in control connection handlers
* |bugfix| improved error messages on ``zfs send`` errors
* |feature| New option ``listen_freebind`` (tcp, tls, prometheus listener)
* |bugfix| |docs| snapshotting: clarify sync-up behavior and warn about filesystems
* |bugfix| transport/ssh: do not leak zombie ssh process on connection failures
that will not be snapshotted until the sync-up phase is over
* |docs| Installation: :ref:`FreeBSD jail with iocage <installation-freebsd-jail-with-iocage>`
* |docs| Document new replication features in the :ref:`config overview <overview-how-replication-works>` and :repomasterlink:`replication/design.md`.
* |feature| documented subcommand to generate ``bash`` and ``zsh`` completions
* **[MAINTAINER NOTICE]** New platform tests in this version, please make sure you run them for your distro!
* **[MAINTAINER NOTICE]** Please add the shell completions to the zrepl packages.
.. 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>`_.
0.2.1
-----
@@ -102,14 +124,6 @@ Actual changelog:
The pool name ``zreplplatformtest`` is reserved for this use case.
Only run ``make platformtest`` on test systems, e.g. a FreeBSD VM image.
.. 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 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>`_.
0.1.1
-----
+1
View File
@@ -12,6 +12,7 @@ Configuration
configuration/transports
configuration/filter_syntax
configuration/sendrecvoptions
configuration/replication
configuration/snapshotting
configuration/prune
configuration/logging
+5 -5
View File
@@ -19,7 +19,7 @@ Job Type ``push``
* - ``type``
- = ``push``
* - ``name``
- unique name of the job
- unique name of the job :issue:`(must not change)<327>`
* - ``connect``
- |connect-transport|
* - ``filesystems``
@@ -47,7 +47,7 @@ Job Type ``sink``
* - ``type``
- = ``sink``
* - ``name``
- unique name of the job
- unique name of the job :issue:`(must not change)<327>`
* - ``serve``
- |serve-transport|
* - ``root_fs``
@@ -70,7 +70,7 @@ Job Type ``pull``
* - ``type``
- = ``pull``
* - ``name``
- unique name of the job
- unique name of the job :issue:`(must not change)<327>`
* - ``connect``
- |connect-transport|
* - ``root_fs``
@@ -98,7 +98,7 @@ Job Type ``source``
* - ``type``
- = ``source``
* - ``name``
- unique name of the job
- unique name of the job :issue:`(must not change)<327>`
* - ``serve``
- |serve-transport|
* - ``filesystems``
@@ -137,7 +137,7 @@ Job type that only takes snapshots and performs pruning on the local machine.
* - ``type``
- = ``snap``
* - ``name``
- unique name of the job
- unique name of the job :issue:`(must not change)<327>`
* - ``filesystems``
- |filter-spec| for filesystems to be snapshotted
* - ``snapshotting``
+84 -19
View File
@@ -12,7 +12,7 @@ The following paths are considered:
The ``zrepl configcheck`` subcommand can be used to validate the configuration.
The command will output nothing and exit with zero status code if the configuration is valid.
The error messages vary in quality and usefulness: please report confusing config errors to the tracking :issue:`155`.
Full example configs such as in the :ref:`tutorial` or the :sampleconf:`/` directory might also be helpful.
Full example configs such as in the :ref:`quick-start guides <quickstart-toc>` or the :sampleconf:`/` directory might also be helpful.
However, copy-pasting examples is no substitute for reading documentation!
Config File Structure
@@ -39,6 +39,10 @@ A *job* is the unit of activity tracked by the zrepl daemon.
The ``type`` of a job determines its role in a replication setup and in snapshot management.
Jobs are identified by their ``name``, both in log files and the ``zrepl status`` command.
.. NOTE::
The job name is persisted in several places on disk and thus :issue:`cannot be changed easily<327>`.
Replication always happens between a pair of jobs: one is the **active side**, and one the **passive side**.
The active side connects to the passive side using a :ref:`transport <transport>` and starts executing the replication logic.
The passive side responds to requests from the active side after checking its permissions.
@@ -99,7 +103,7 @@ One of the major design goals of the replication module is to avoid any duplicat
As such, the code works on abstract senders and receiver **endpoints**, where typically one will be implemented by a local program object and the other is an RPC client instance.
Regardless of push- or pull-style setup, the logic executes on the active side, i.e. in the ``push`` or ``pull`` job.
The following steps take place during replication and can be monitored using the ``zrepl status`` subcommand:
The following high-level steps take place during replication and can be monitored using the ``zrepl status`` subcommand:
* Plan the replication:
@@ -107,9 +111,9 @@ The following steps take place during replication and can be monitored using the
* Build the **replication plan**
* Per filesystem, compute a diff between sender and receiver snapshots
* Build a list of replication steps
* Build a list of **replication steps**
* If possible, use incremental and resumable sends (``zfs send -i``)
* If possible, use incremental and resumable sends
* Otherwise, use full send of most recent snapshot on sender
* Retry on errors that are likely temporary (i.e. network failures).
@@ -128,15 +132,35 @@ The following steps take place during replication and can be monitored using the
The idea behind the execution order of replication steps is that if the sender snapshots all filesystems simultaneously at fixed intervals, the receiver will have all filesystems snapshotted at time ``T1`` before the first snapshot at ``T2 = T1 + $interval`` is replicated.
.. _replication-cursor-and-last-received-hold:
ZFS Background Knowledge
^^^^^^^^^^^^^^^^^^^^^^^^
This section gives some background knowledge about ZFS features that zrepl uses to provide guarantees for a replication filesystem.
Specifically, zrepl guarantees by default that **incremental replication is always possible and that started replication steps can always be resumed if they are interrupted.**
**Replication cursor** bookmark and **last-received-hold** are managed by zrepl to ensure that future replications can always be done incrementally:
the replication cursor is a send-side bookmark of the most recent successfully replicated snapshot,
and the last-received-hold is a hold of that snapshot on the receiving side.
The replication cursor has the format ``#zrepl_CUSOR_G_<GUID>_J_<JOBNAME>``.
The last-received-hold tag has the format ``#zrepl_last_received_J_<JOBNAME>``.
Encoding the job name in the names ensures that multiple sending jobs can replicate the same filesystem to different receivers without interference.
The ``zrepl holds list`` provides a listing of all bookmarks and holds managed by zrepl.
**ZFS Send Modes & Bookmarks**
ZFS supports full sends (``zfs send fs@to``) and incremental sends (``zfs send -i @from fs@to``).
Full sends are used to create a new filesystem on the receiver with the send-side state of ``fs@to``.
Incremental sends only transfer the delta between ``@from`` and ``@to``.
Incremental sends require that ``@from`` be present on the receiving side when receiving the incremental stream.
Incremental sends can also use a ZFS bookmark as *from* on the sending side (``zfs send -i #bm_from fs@to``), where ``#bm_from`` was created using ``zfs bookmark fs@from fs#bm_from``.
The receiving side must always have the actual snapshot ``@from``, regardless of whether the sending side uses ``@from`` or a bookmark of it.
**Resumable Send & Recv**
The ``-s`` flag for ``zfs recv`` tells zfs to save the partially received send stream in case it is interrupted.
To resume the replication, the receiving side filesystem's ``receive_resume_token`` must be passed to a new ``zfs send -t <value> | zfs recv`` command.
A full send can only be resumed if ``@to`` still exists.
An incremental send can only be resumed if ``@to`` still exists *and* either ``@from`` still exists *or* a bookmark ``#fbm`` of ``@from`` still exists.
**ZFS Holds**
ZFS holds prevent a snapshot from being deleted through ``zfs destroy``, letting the destroy fail with a ``datset is busy`` error.
Holds are created and referred to by a *tag*. They can be thought of as a named, persistent lock on the snapshot.
.. _zrepl-zfs-abstractions:
ZFS Abstractions Managed By zrepl
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
With the background knowledge from the previous paragraph, we now summarize the different on-disk ZFS objects that zrepl manages to provide its functionality.
.. _replication-placeholder-property:
@@ -148,16 +172,57 @@ Thus, zrepl creates the parent filesystems as placeholders on the receiving side
If at some point ``S/H`` and ``S`` shall be replicated, the receiving side invalidates the placeholder flag automatically.
The ``zrepl test placeholder`` command can be used to check whether a filesystem is a placeholder.
.. _replication-cursor-and-last-received-hold:
The **replication cursor** bookmark and **last-received-hold** are managed by zrepl to ensure that future replications can always be done incrementally.
The replication cursor is a send-side bookmark of the most recent successfully replicated snapshot,
and the last-received-hold is a hold of that snapshot on the receiving side.
Both are moved atomically after the receiving side has confirmed that a replication step is complete.
The replication cursor has the format ``#zrepl_CUSOR_G_<GUID>_J_<JOBNAME>``.
The last-received-hold tag has the format ``zrepl_last_received_J_<JOBNAME>``.
Encoding the job name in the names ensures that multiple sending jobs can replicate the same filesystem to different receivers without interference.
.. _tentative-replication-cursor-bookmarks:
**Tentative replication cursor bookmarks** are short-lived boomkarks that protect the atomic moving-forward of the replication cursor and last-received-hold (see :issue:`this issue <340>`).
They are only necessary if step holds are not used as per the :ref:`replication.protection <replication-option-protection>` setting.
The tentative replication cursor has the format ``#zrepl_CUSORTENTATIVE_G_<GUID>_J_<JOBNAME>``.
The ``zrepl zfs-abstraction list`` command provides a listing of all bookmarks and holds managed by zrepl.
.. _step-holds:
**Step holds** are zfs holds managed by zrepl to ensure that a replication step can always be resumed if it is interrupted, e.g., due to network outage.
zrepl creates step holds before it attempts a replication step and releases them after the receiver confirms that the replication step is complete.
For an initial replication ``full @initial_snap``, zrepl puts a zfs hold on ``@initial_snap``.
For an incremental send ``@from -> @to``, zrepl puts a zfs hold on both ``@from`` and ``@to``.
Note that ``@from`` is not strictly necessary for resumability -- a bookmark on the sending side would be sufficient --, but size-estimation in currently used OpenZFS versions only works if ``@from`` is a snapshot.
The hold tag has the format ``zrepl_STEP_J_<JOBNAME>``.
A job only ever has one active send per filesystem.
Thus, there are never more than two step holds for a given pair of ``(job,filesystem)``.
**Step bookmarks** are zrepl's equivalent for holds on bookmarks (ZFS does not support putting holds on bookmarks).
They are intended for a situation where a replication step uses a bookmark ``#bm`` as incremental ``from`` where ``#bm`` is not managed by zrepl.
To ensure resumability, zrepl copies ``#bm`` to step bookmark ``#zrepl_STEP_G_<GUID>_J_<JOBNAME>``.
If the replication is interrupted and ``#bm`` is deleted by the user, the step bookmark remains as an incremental source for the resumable send.
Note that zrepl does not yet support creating step bookmarks because the `corresponding ZFS feature for copying bookmarks <https://github.com/openzfs/zfs/pull/9571>`_ is not yet widely available .
Subscribe to zrepl :issue:`326` for details.
The ``zrepl zfs-abstraction list`` command provides a listing of all bookmarks and holds managed by zrepl.
.. NOTE::
More details can be found in the design document :repomasterlink:`replication/design.md`.
Limitations
^^^^^^^^^^^
.. ATTENTION::
Currently, zrepl does not replicate filesystem properties.
When receiving a filesystem, it is never mounted (`-u` flag) and `mountpoint=none` is set.
This is temporary and being worked on :issue:`24`.
.. NOTE::
More details can be found in the design document :repomasterlink:`replication/design.md`.
.. _jobs-multiple-jobs:
@@ -177,7 +242,7 @@ Multiple Jobs & More than 2 Machines
If you would like to see improvements to multi-job setups, please `open an issue on GitHub <https://github.com/zrepl/zrepl/issues/new>`_.
No Overlapping
~~~~~~~~~~~~~~
^^^^^^^^^^^^^^
Jobs run independently of each other.
If two jobs match the same filesystem with their ``filesystems`` filter, they will operate on that filesystem independently and potentially in parallel.
@@ -185,14 +250,14 @@ For example, if job A prunes snapshots that job B is planning to replicate, the
However, the next replication attempt will re-examine the situation from scratch and should work.
N push jobs to 1 sink
~~~~~~~~~~~~~~~~~~~~~
^^^^^^^^^^^^^^^^^^^^^
The :ref:`sink job <job-sink>` namespaces by client identity.
It is thus safe to push to one sink job with different client identities.
If the push jobs have the same client identity, the filesystems matched by the push jobs must be disjoint to avoid races.
N pull jobs from 1 source
~~~~~~~~~~~~~~~~~~~~~~~~~
^^^^^^^^^^^^^^^^^^^^^^^^^
Multiple pull jobs pulling from the same source have potential for race conditions during pruning:
each pull job prunes the source side independently, causing replication-prune and prune-prune races.
+66 -17
View File
@@ -46,6 +46,8 @@ Example Configuration:
grid: 1x1h(keep=all) | 24x1h | 35x1d | 6x30d
regex: "^zrepl_.*"
# manually created snapshots will be kept forever on receiver
- type: regex
regex: "^manual_.*"
.. DANGER::
You might have **existing snapshots** of filesystems affected by pruning which you want to keep, i.e. not be destroyed by zrepl.
@@ -82,35 +84,82 @@ Policy ``grid``
- type: grid
regex: "^zrepl_.*"
grid: 1x1h(keep=all) | 24x1h | 35x1d | 6x30d
│ │
└─ one hour interval
└─ 24 adjacent one-hour intervals
│ │
└─ 1 repetition of a one-hour interval with keep=all
└─ 24 repetitions of a one-hour interval with keep=1
└─ 6 repetitions of a 30-day interval with keep=1
...
The retention grid can be thought of as a time-based sieve:
The ``grid`` field specifies a list of adjacent time intervals:
the left edge of the leftmost (first) interval is the ``creation`` date of the youngest snapshot.
All intervals to its right describe time intervals further in the past.
Each interval carries a maximum number of snapshots to keep.
It is specified via ``(keep=N)``, where ``N`` is either ``all`` (all snapshots are kept) or a positive integer.
The default value is **keep=1**.
The retention grid can be thought of as a time-based sieve that thins out snapshots as they get older.
The ``grid`` field specifies a list of adjacent time intervals.
The following procedure happens during pruning:
#. The list of snapshots is filtered by the regular expression in ``regex``.
Only snapshots names that match the regex are considered for this rule, all others are not affected.
#. The filtered list of snapshots is sorted by ``creation``
#. The left edge of the first interval is aligned to the ``creation`` date of the youngest snapshot
#. A list of buckets is created, one for each interval
#. The list of snapshots is split up into the buckets.
#. The filtered list of snapshots is sorted by ``creation``.
#. The left edge of the first interval is aligned to the ``creation`` date of the youngest snapshot.
#. A list of buckets is created, one for each interval.
#. The snapshots are placed into the bucket that matches their ``creation`` date.
#. For each bucket
#. the contained snapshot list is sorted by creation.
#. snapshots from the list, oldest first, are destroyed until the specified ``keep`` count is reached.
#. all remaining snapshots on the list are kept.
The syntax to describe the list of time intervals ("buckets") is as follows:
::
Repeat x Duration (keep=all)
* The **duration** specifies the length of the interval.
* The **keep** count specifies the number of snapshots that fit into the bucket.
It can be either a positive integer or ``all`` (all snapshots are kept).
* The **repeat** count repeats the bucket definition for the specified number of times.
**Example**:
::
This grid spec produces the following list of adjacent buckets. For the sake of simplicity,
we subject all snapshots to the grid pruning policy by settings `regex: .*`.
`
grid: 1x1h(keep=all) | 2x2h | 1x3h
regex: .*
`
0h 1h 2h 3h 4h 5h 6h 7h 8h
| | | | | | | | |
|-Bucket 1-|------Bucket 2-------|-------Bucket 3------|------------Bucket 4------------|
| keep=all | keep=1 | keep=1 | keep=1 |
Let us consider the following set of snapshots @a-zA-C , taken at an interval of ~15min:
| 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 |
The `grid` algorithm maps them to their respective buckets:
Bucket 1: a, b, c
Bucket 2: d,e,f,g,h,i,j
Bucket 3: k,l,m,n,o,p,q,r
Bucket 4: q,r,s,t,u,v,w,x,y,z,A,B,C
It then applies the per-bucket pruning logic described above which resulting in the
following list of remaining snapshots.
| a b c d k s |
Note that it only makes sense to grow (not shorten) the interval duration for buckets
further in the past since each bucket acts like a low-pass filter for incoming snapshots
and adding a less-low-pass-filter after a low-pass one has no effect.
.. _prune-keep-last-n:
+47
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@@ -0,0 +1,47 @@
.. include:: ../global.rst.inc
Replication Options
===================
::
jobs:
- type: push
filesystems: ...
replication:
protection:
initial: guarantee_resumability # guarantee_{resumability,incremental,nothing}
incremental: guarantee_resumability # guarantee_{resumability,incremental,nothing}
...
.. _replication-option-protection:
``protection`` option
--------------------------
The ``protection`` variable controls the degree to which a replicated filesystem is protected from getting out of sync through a zrepl pruner or external tools that destroy snapshots.
zrepl can guarantee :ref:`resumability <step-holds>` or just :ref:`incremental replication <replication-cursor-and-last-received-hold>`.
``guarantee_resumability`` is the **default** value and guarantees that a replication step is always resumable and that incremental replication will always be possible.
The implementation uses replication cursors, last-received-hold and step holds.
``guarantee_incremental`` only guarantees that incremental replication will always be possible.
If a step ``from -> to`` is interrupted and its `to` snapshot is destroyed, zrepl will remove the half-received ``to``'s resume state and start a new step ``from -> to2``.
The implementation uses replication cursors, tentative replication cursors and last-received-hold.
``guarantee_nothing`` does not make any guarantees with regards to keeping sending and receiving side in sync.
No bookmarks or holds are created to protect sender and receiver from diverging.
**Tradeoffs**
Using ``guarantee_incremental`` instead of ``guarantee_resumability`` obviously removes the resumability guarantee.
This means that replication progress is no longer monotonic which might lead to a replication setup that never makes progress if mid-step interruptions are too frequent (e.g. frequent network outages).
However, the advantage and :issue:`reason for existence <288>` of the ``incremental`` mode is that it allows the pruner to delete snapshots of interrupted replication steps
which is useful if replication happens so rarely (or fails so frequently) that the amount of disk space exclusively referenced by the step's snapshots becomes intolerable.
.. NOTE::
When changing this flag, obsoleted zrepl-managed bookmarks and holds will be destroyed on the next replication step that is attempted for each filesystem.
+76
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@@ -0,0 +1,76 @@
#!/usr/bin/env python3
import subprocess
import re
output = subprocess.run(["git", "tag", "-l"], capture_output=True, check=True, text=True)
tagRE = re.compile(r"^v(?P<major>\d+)\.(?P<minor>\d+)\.(?P<patch>\d+)(-rc(?P<rc>\d+))?$")
class Tag:
orig: str
major: int
minor: int
patch: int
rc: int
def __str__(self):
return self.orig
def __repr__(self):
return self.orig
tags = []
for line in output.stdout.split("\n"):
m = tagRE.match(line)
if not m:
continue
m = m.groupdict()
t = Tag()
t.orig = line
t.major = int(m["major"])
t.minor = int(m["minor"])
t.patch = int(m["patch"])
t.rc = int(m["rc"] if m["rc"] is not None else 0)
tags.append(t)
by_major_minor = {}
for tag in tags:
key = (tag.major, tag.minor)
l = by_major_minor.get(key, [])
l.append(tag)
by_major_minor[key] = l
latest_by_major_minor = []
for (mm, l) in by_major_minor.items():
# sort ascending by patch-level (rc's weigh less)
l.sort(key=lambda tag: (tag.patch, int(tag.rc == 0), tag.rc))
latest_by_major_minor.append(l[-1])
latest_by_major_minor.sort(key=lambda tag: (tag.major, tag.minor))
# print(by_major_minor)
# print(latest_by_major_minor)
cmdline = []
for latest_patch in latest_by_major_minor:
cmdline.append("--whitelist-tags")
cmdline.append(f"^{re.escape(latest_patch.orig)}$")
# we want to render the latest non-rc version as the default page
# (latest_by_major_minor is already sorted)
default_version = latest_by_major_minor[-1]
for tag in reversed(latest_by_major_minor):
if tag.rc == 0:
default_version = tag
break
cmdline.extend(["--root-ref", f"{default_version}"])
cmdline.extend(["--banner-main-ref", f"{default_version}"])
cmdline.extend(["--show-banner"])
cmdline.extend(["--sort", "semver"])
cmdline.extend(["--whitelist-branches", "master"])
print(" ".join(cmdline))
+8 -2
View File
@@ -11,10 +11,12 @@
:target: https://zrepl.github.io
.. |Donate via PayPal| image:: https://img.shields.io/badge/donate-paypal-yellow.svg
:target: https://www.paypal.com/cgi-bin/webscr?cmd=_s-xclick&hosted_button_id=R5QSXJVYHGX96
.. |Donate via Liberapay| image:: https://img.shields.io/liberapay/receives/zrepl.svg?logo=liberapay
.. |Donate via Liberapay| image:: https://img.shields.io/liberapay/patrons/zrepl.svg?logo=liberapay
:target: https://liberapay.com/zrepl/donate
.. |Donate via Patreon| image:: https://img.shields.io/endpoint.svg?url=https%3A%2F%2Fshieldsio-patreon.herokuapp.com%2Fzrepl%2Fpledges&style=flat&color=yellow
:target: https://www.patreon.com/zrepl
.. |Donate via GitHub Sponsors| image:: https://img.shields.io/static/v1?label=Sponsor&message=%E2%9D%A4&logo=GitHub&style=flat&color=yellow
:target: https://github.com/sponsors/problame
.. |Twitter| image:: https://img.shields.io/twitter/url/https/github.com/zrepl/zrepl.svg?style=social
:target: https://twitter.com/intent/tweet?text=Wow:&url=https%3A%2F%2Fgithub.com%2Fzrepl%2Fzrepl
@@ -25,4 +27,8 @@
.. |recv-options| replace:: :ref:`recv options<job-recv-options>`
.. |snapshotting-spec| replace:: :ref:`snapshotting specification <job-snapshotting-spec>`
.. |pruning-spec| replace:: :ref:`pruning specification <prune>`
.. |filter-spec| replace:: :ref:`filter specification<pattern-filter>`
.. |filter-spec| replace:: :ref:`filter specification<pattern-filter>`
.. |br| raw:: html
<br/>
+3 -3
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@@ -5,7 +5,7 @@
.. include:: global.rst.inc
|GitHub license| |Language: Go| |Twitter| |Donate via Patreon| |Donate via Liberapay| |Donate via PayPal|
|GitHub license| |Language: Go| |Twitter| |Donate via Patreon| |Donate via GitHub Sponsors| |Donate via Liberapay| |Donate via PayPal|
zrepl - ZFS replication
@@ -44,7 +44,7 @@ zrepl - ZFS replication
Getting started
~~~~~~~~~~~~~~~
The :ref:`10 minutes tutorial setup <tutorial>` gives you a first impression.
The :ref:`10 minute quick-start guides <quickstart-toc>` give you a first impression.
Main Features
~~~~~~~~~~~~~
@@ -125,7 +125,7 @@ Table of Contents
:maxdepth: 2
:caption: Contents:
tutorial
quickstart
installation
configuration
usage
+1 -1
View File
@@ -7,7 +7,7 @@ Installation
.. TIP::
Note: check out the :ref:`tutorial` if you want a first impression of zrepl.
Note: check out the :ref:`quick-start guides <quickstart-toc>` if you want a first impression of zrepl.
.. toctree::
+1 -1
View File
@@ -42,4 +42,4 @@ Either way, all build results are located in the ``artifacts/`` directory.
.. NOTE::
It is your job to install the appropriate binary in the zrepl users's ``$PATH``, e.g. ``/usr/local/bin/zrepl``.
Otherwise, the examples in the :ref:`tutorial` may need to be adjusted.
Otherwise, the examples in the :ref:`quick-start guides <quickstart-toc>` may need to be adjusted.
@@ -126,7 +126,7 @@ Modify the ``/usr/local/etc/zrepl/zrepl.yml`` configuration file.
.. TIP::
Note: check out the :ref:`tutorial` for examples of a ``sink`` job.
Note: check out the :ref:`quick-start guides <quickstart-toc>` for examples of a ``sink`` job.
Now ``zrepl`` can be started.
+1 -1
View File
@@ -5,4 +5,4 @@ What next?
Read the :ref:`configuration chapter<configuration_toc>` and then continue with the :ref:`usage chapter<usage>`.
**Reminder**: If you want a quick introduction, please read the :ref:`tutorial`.
**Reminder**: If you want a quick introduction, please read the :ref:`quick-start guides <quickstart-toc>`.
+2 -3
View File
@@ -51,11 +51,10 @@ git rm -rf .
popd
echo "building site"
set -e
sphinx-versioning build \
--show-banner \
--whitelist-branches '^master$' \
--whitelist-tags '(v)?\d+\.[1-9][0-9]*.\d+$' \
$(python3 gen-sphinx-versioning-flags.py) \
docs ./public_git \
-- -c sphinxconf # older conf.py throw errors because they used
# version = subprocess.show_output(["git", "describe"])
+87
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@@ -0,0 +1,87 @@
.. include:: global.rst.inc
.. _quickstart-toc:
***********************
Quick Start by Use Case
***********************
The goal of this quick-start guide is to give you an impression of how zrepl can accomodate your use case.
Install zrepl
=============
Follow the :ref:`OS-specific installation instructions <installation_toc>` and come back here.
Overview Of How zrepl Works
============================
Check out the :ref:`overview section <job-overview>` to get a rough idea of what you are going to configure in the next step, then come back here.
Configuration Examples
======================
zrepl is configured through a YAML configuration file in ``/etc/zrepl/zrepl.yml``.
We have prepared example use cases that show-case typical deployments and different functionality of zrepl.
We encourage you to read through all of the examples to get an idea of what zrepl has to offer, and how you can mix-and-match configurations for your use case.
Keep the :ref:`full config documentation <configuration_toc>` handy if a config snippet is unclear.
**Example Use Cases**
.. toctree::
:titlesonly:
quickstart/continuous_server_backup
quickstart/backup_to_external_disk
Use ``zrepl configcheck`` to validate your configuration.
No output indicates that everything is fine.
.. NOTE::
Please open an issue on GitHub if your use case for zrepl is significantly different from those listed above.
Or even better, write it up in the same style as above and open a PR!
.. _quickstart-apply-config:
Apply Configuration Changes
===========================
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).
Then restart the zrepl daemon on all systems involved in the replication, likely using ``service zrepl restart`` or ``systemctl restart zrepl``.
Watch it Work
=============
Run ``zrepl status`` on the active side of the replication setup to monitor snaphotting, replication and pruning activity.
To re-trigger replication (snapshots are separate!), use ``zrepl signal wakeup JOBNAME``.
(refer to the example use case document if you are uncertain which job you want to wake up).
You can also use basic UNIX tools to inspect see what's going on.
If you like tmux, here is a handy script that works on FreeBSD: ::
pkg install gnu-watch tmux
tmux new -s zrepl -d
tmux split-window -t zrepl "tail -f /var/log/messages"
tmux split-window -t zrepl "gnu-watch 'zfs list -t snapshot -o name,creation -s creation'"
tmux split-window -t zrepl "zrepl status"
tmux select-layout -t zrepl tiled
tmux attach -t zrepl
The Linux equivalent might look like this: ::
# make sure tmux is installed & let's assume you use systemd + journald
tmux new -s zrepl -d
tmux split-window -t zrepl "journalctl -f -u zrepl.service"
tmux split-window -t zrepl "watch 'zfs list -t snapshot -o name,creation -s creation'"
tmux split-window -t zrepl "zrepl status"
tmux select-layout -t zrepl tiled
tmux attach -t zrepl
What Next?
==========
* Read more about :ref:`configuration format, options & job types <configuration_toc>`
* Configure :ref:`logging <logging>` \& :ref:`monitoring <monitoring>`.
@@ -0,0 +1,36 @@
.. include:: ../global.rst.inc
.. _quickstart-backup-to-external-disk:
Local Snapshots + Offline Backup to an External Disk
====================================================
This config example shows how we can use zrepl to make periodic snapshots of our local workstation and back it up to a zpool on an external disk which we occassionally connect.
The local snapshots should be taken every 15 minutes for pain-free recovery from CLI disasters (``rm -rf /`` and the like).
However, we do not want to keep the snapshots around for very long because our workstation is a little tight on disk space.
Thus, we only keep one hour worth of high-resolution snapshots, then fade them out to one per hour for a day (24 hours), then one per day for 14 days.
At the end of each work day, we connect our external disk that serves as our workstation's local offline backup.
We want zrepl to inspect the filesystems and snapshots on the external pool, figure out which snapshots were created since the last time we connected the external disk, and use incremental replication to efficiently mirror our workstation to our backup disk.
Afterwards, we want to clean up old snapshots on the backup pool: we want to keep all snapshots younger than one hour, 24 for each hor of the first day, then 360 daily backups.
A few additional requirements:
* Snapshot creation and pruning on our workstation should happen in the background, without interaction from our side.
* However, we want to explicitly trigger replication via the command line.
* We want to use OpenZFS native encryption to protect our data on the external disk.
It is absolutely critical that only encrypted data leaves our workstation.
**zrepl should provide an easy config knob for this and prevent replication of unencrypted datasets to the external disk.**
* We want to be able to put off the backups for more than three weeks, i.e., longer than the lifetime of the automatically created snapshots on our workstation.
**zrepl should use bookmarks and holds to achieve this goal**.
* When we yank out the drive during replication and go on a long vacation, we do *not* want the partially replicated snapshot to stick around as it would hold on to too much disk space over time.
Therefore, we want zrepl to deviate from its :ref:`default behavior <replication-option-protection>` and sacrifice resumability, but nonetheless retain the ability to do incremental replication once we return from our vacation.
**zrepl should provide an easy config knob to disable step holds for incremental replication**.
The following config snippet implements the setup described above.
You will likely want to customize some aspects mentioned in the top comment in the file.
.. literalinclude:: ../../config/samples/quickstart_backup_to_external_disk.yml
:ref:`Click here <quickstart-apply-config>` to go back to the quickstart guide.
@@ -0,0 +1,97 @@
.. include:: ../global.rst.inc
.. _quickstart-continuous-replication:
Continuous Backup of a Server
=============================
This config example shows how we can backup our ZFS-based server to another machine using a zrepl push job.
* Production server ``prod`` with filesystems to back up:
* ``zroot/var/db``
* ``zroot/usr/home`` and all its child filesystems
* **except** ``zroot/usr/home/paranoid`` belonging to a user doing backups themselves
* Backup server ``backups`` with
* Filesystem ``storage/zrepl/sink/prod`` + children dedicated to backups of ``prod``
Our backup solution should fulfill the following requirements:
* Periodically snapshot the filesystems on ``prod`` *every 10 minutes*
* Incrementally replicate these snapshots to ``storage/zrepl/sink/prod/*`` on ``backups``
* Keep only very few snapshots on ``prod`` to save disk space
* Keep a fading history (24 hourly, 30 daily, 6 monthly) of snapshots on ``backups``
* The network is untrusted - zrepl should use TLS to protect its communication and our data.
Analysis
--------
We can model this situation as two jobs:
* A **push job** on ``prod``
* Creates the snapshots
* Keeps a short history of local snapshots to enable incremental replication to ``backups``
* Connects to the ``zrepl daemon`` process on ``backups``
* Pushes snapshots ``backups``
* Prunes snapshots on ``backups`` after replication is complete
* A **sink job** on ``backups``
* Accepts connections & responds to requests from ``prod``
* Limits client ``prod`` access to filesystem sub-tree ``storage/zrepl/sink/prod``
Generate TLS Certificates
-------------------------
We use the :ref:`TLS client authentication transport <transport-tcp+tlsclientauth>` to protect our data on the wire.
To get things going quickly, we skip setting up a CA and generate two self-signed certificates as described :ref:`here <transport-tcp+tlsclientauth-2machineopenssl>`.
For convenience, we generate the key pairs on our local machine and distribute them using ssh:
.. code-block:: bash
:emphasize-lines: 6,13
openssl req -x509 -sha256 -nodes \
-newkey rsa:4096 \
-days 365 \
-keyout backups.key \
-out backups.crt
# ... and use "backups" as Common Name (CN)
openssl req -x509 -sha256 -nodes \
-newkey rsa:4096 \
-days 365 \
-keyout prod.key \
-out prod.crt
# ... and use "prod" as Common Name (CN)
ssh root@backups "mkdir /etc/zrepl"
scp backups.key backups.crt prod.crt root@backups:/etc/zrepl
ssh root@prod "mkdir /etc/zrepl"
scp prod.key prod.crt backups.crt root@prod:/etc/zrepl
Note that alternative transports exist, e.g. via :ref:`TCP without TLS <transport-tcp>` or :ref:`ssh <transport-ssh+stdinserver>`.
Configure server ``prod``
-------------------------
We define a **push job** named ``prod_to_backups`` in ``/etc/zrepl/zrepl.yml`` on host ``prod`` :
.. literalinclude:: ../../config/samples/quickstart_continuous_server_backup_sender.yml
.. _tutorial-configure-prod:
Configure server ``backups``
----------------------------
We define a corresponding **sink job** named ``sink`` in ``/etc/zrepl/zrepl.yml`` on host ``backups`` :
.. literalinclude:: ../../config/samples/quickstart_continuous_server_backup_receiver.yml
Go Back To Quickstart Guide
---------------------------
:ref:`Click here <quickstart-apply-config>` to go back to the quickstart guide.
+4 -1
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@@ -2,7 +2,7 @@
.. _supporters:
|Donate via Patreon| |Donate via Liberapay| |Donate via PayPal|
|Donate via Patreon| |Donate via GitHub Sponsors| |Donate via Liberapay| |Donate via PayPal|
zrepl is a spare-time project primarily developed by `Christian Schwarz <https://cschwarz.com>`_.
You can support maintenance and feature development through one of the services listed above.
@@ -32,6 +32,9 @@ We would like to thank the following people and organizations for supporting zre
<div class="fa fa-code" style="width: 1em;"></div>
* |supporter-std| `@jwittlincohen <https://github.com/jwittlincohen>`_
* |supporter-std| `Michael D. Schmitt <https://waterbendingscroll.dancingdragons.org>`_
* |supporter-std| `Hans Schulz <https://github.com/schulzh>`_
* |supporter-std| Henning Kessler
* |supporter-std| `John Ramsden <https://github.com/johnramsden>`_
* |supporter-std| `DrLuke <https://github.com/drluke>`_
-177
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@@ -1,177 +0,0 @@
.. include:: global.rst.inc
.. _tutorial:
Tutorial
========
This tutorial shows how zrepl can be used to implement a ZFS-based push backup.
We assume the following scenario:
* Production server ``prod`` with filesystems to back up:
* ``zroot/var/db``
* ``zroot/usr/home`` and all its child filesystems
* **except** ``zroot/usr/home/paranoid`` belonging to a user doing backups themselves
* Backup server ``backups`` with
* Filesystem ``storage/zrepl/sink/prod`` + children dedicated to backups of ``prod``
Our backup solution should fulfill the following requirements:
* Periodically snapshot the filesystems on ``prod`` *every 10 minutes*
* Incrementally replicate these snapshots to ``storage/zrepl/sink/prod/*`` on ``backups``
* Keep only very few snapshots on ``prod`` to save disk space
* Keep a fading history (24 hourly, 30 daily, 6 monthly) of snapshots on ``backups``
Analysis
--------
We can model this situation as two jobs:
* A **push job** on ``prod``
* Creates the snapshots
* Keeps a short history of local snapshots to enable incremental replication to ``backups``
* Connects to the ``zrepl daemon`` process on ``backups``
* Pushes snapshots ``backups``
* Prunes snapshots on ``backups`` after replication is complete
* A **sink job** on ``backups``
* Accepts connections & responds to requests from ``prod``
* Limits client ``prod`` access to filesystem sub-tree ``storage/zrepl/sink/prod``
Install zrepl
-------------
Follow the :ref:`OS-specific installation instructions <installation_toc>` and come back here.
Generate TLS Certificates
-------------------------
We use the :ref:`TLS client authentication transport <transport-tcp+tlsclientauth>` to protect our data on the wire.
To get things going quickly, we skip setting up a CA and generate two self-signed certificates as described :ref:`here <transport-tcp+tlsclientauth-2machineopenssl>`.
For convenience, we generate the key pairs on our local machine and distribute them using ssh:
.. code-block:: bash
:emphasize-lines: 6,13
openssl req -x509 -sha256 -nodes \
-newkey rsa:4096 \
-days 365 \
-keyout backups.key \
-out backups.crt
# ... and use "backups" as Common Name (CN)
openssl req -x509 -sha256 -nodes \
-newkey rsa:4096 \
-days 365 \
-keyout prod.key \
-out prod.crt
# ... and use "prod" as Common Name (CN)
ssh root@backups "mkdir /etc/zrepl"
scp backups.key backups.crt prod.crt root@backups:/etc/zrepl
ssh root@prod "mkdir /etc/zrepl"
scp prod.key prod.crt backups.crt root@prod:/etc/zrepl
Configure server ``prod``
-------------------------
We define a **push job** named ``prod_to_backups`` in ``/etc/zrepl/zrepl.yml`` on host ``prod`` : ::
jobs:
- name: prod_to_backups
type: push
connect:
type: tls
address: "backups.example.com:8888"
ca: /etc/zrepl/backups.crt
cert: /etc/zrepl/prod.crt
key: /etc/zrepl/prod.key
server_cn: "backups"
filesystems: {
"zroot/var/db": true,
"zroot/usr/home<": true,
"zroot/usr/home/paranoid": false
}
snapshotting:
type: periodic
prefix: zrepl_
interval: 10m
pruning:
keep_sender:
- type: not_replicated
- type: last_n
count: 10
keep_receiver:
- type: grid
grid: 1x1h(keep=all) | 24x1h | 30x1d | 6x30d
regex: "^zrepl_"
.. _tutorial-configure-prod:
Configure server ``backups``
----------------------------
We define a corresponding **sink job** named ``sink`` in ``/etc/zrepl/zrepl.yml`` on host ``backups`` : ::
jobs:
- name: sink
type: sink
serve:
type: tls
listen: ":8888"
ca: "/etc/zrepl/prod.crt"
cert: "/etc/zrepl/backups.crt"
key: "/etc/zrepl/backups.key"
client_cns:
- "prod"
root_fs: "storage/zrepl/sink"
Apply Configuration Changes
---------------------------
We use ``zrepl configcheck`` to catch any configuration errors: no output indicates that everything is fine.
If that is the case, restart the zrepl daemon on **both** ``prod`` and ``backups`` using ``service zrepl restart`` or ``systemctl restart zrepl``.
Watch it Work
-------------
Run ``zrepl status`` on ``prod`` to monitor the replication and pruning activity.
To re-trigger replication (snapshots are separate!), use ``zrepl signal wakeup prod_to_backups`` on ``prod``.
If you like tmux, here is a handy script that works on FreeBSD: ::
pkg install gnu-watch tmux
tmux new -s zrepl -d
tmux split-window -t zrepl "tail -f /var/log/messages"
tmux split-window -t zrepl "gnu-watch 'zfs list -t snapshot -o name,creation -s creation | grep zrepl_'"
tmux split-window -t zrepl "zrepl status"
tmux select-layout -t zrepl tiled
tmux attach -t zrepl
The Linux equivalent might look like this: ::
# make sure tmux is installed & let's assume you use systemd + journald
tmux new -s zrepl -d
tmux split-window -t zrepl "journalctl -f -u zrepl.service"
tmux split-window -t zrepl "watch 'zfs list -t snapshot -o name,creation -s creation | grep zrepl_'"
tmux split-window -t zrepl "zrepl status"
tmux select-layout -t zrepl tiled
tmux attach -t zrepl
Summary
-------
Congratulations, you have a working push backup. Where to go next?
* Read more about :ref:`configuration format, options & job types <configuration_toc>`
* Configure :ref:`logging <logging>` \& :ref:`monitoring <monitoring>`.
+1 -1
View File
@@ -38,7 +38,7 @@ CLI Overview
* - ``zrepl migrate``
- | perform on-disk state / ZFS property migrations
| (see :ref:`changelog <changelog>` for details)
* - ``zrepl zfs-abstractions``
* - ``zrepl zfs-abstraction``
- list and remove zrepl's abstractions on top of ZFS, e.g. holds and step bookmarks (see :ref:`overview <replication-cursor-and-last-received-hold>` )
.. _usage-zrepl-daemon:
+93 -78
View File
@@ -112,13 +112,6 @@ func (s *Sender) ListFilesystemVersions(ctx context.Context, r *pdu.ListFilesyst
for i := range fsvs {
rfsvs[i] = pdu.FilesystemVersionFromZFS(&fsvs[i])
}
sendAbstractions := sendAbstractionsCacheSingleton.GetByFS(ctx, lp.ToString())
rSabsInfo := make([]*pdu.SendAbstraction, len(sendAbstractions))
for i := range rSabsInfo {
rSabsInfo[i] = SendAbstractionToPDU(sendAbstractions[i])
}
res := &pdu.ListFilesystemVersionsRes{Versions: rfsvs}
return res, nil
@@ -215,34 +208,28 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.Rea
return res, nil, nil
}
// create a replication cursor for `From` (usually an idempotent no-op because SendCompleted already created it before)
var fromReplicationCursor Abstraction
if sendArgs.From != nil {
// For all but the first replication, this should always be a no-op because SendCompleted already moved the cursor
fromReplicationCursor, err = CreateReplicationCursor(ctx, sendArgs.FS, *sendArgs.FromVersion, s.jobId) // no shadow
if err == zfs.ErrBookmarkCloningNotSupported {
getLogger(ctx).Debug("not creating replication cursor from bookmark because ZFS does not support it")
// fallthrough
} else if err != nil {
return nil, nil, errors.Wrap(err, "cannot set replication cursor to `from` version before starting send")
}
}
var fromHold, toHold Abstraction
// make sure `From` doesn't go away in order to make this step resumable
if sendArgs.From != nil {
fromHold, err = HoldStep(ctx, sendArgs.FS, *sendArgs.FromVersion, s.jobId) // no shadow
if err == zfs.ErrBookmarkCloningNotSupported {
getLogger(ctx).Debug("not creating step bookmark because ZFS does not support it")
// fallthrough
} else if err != nil {
return nil, nil, errors.Wrapf(err, "cannot hold `from` version %q before starting send", *sendArgs.FromVersion)
}
}
// make sure `To` doesn't go away in order to make this step resumable
toHold, err = HoldStep(ctx, sendArgs.FS, sendArgs.ToVersion, s.jobId)
// create holds or bookmarks of `From` and `To` to guarantee one of the following:
// - that the replication step can always be resumed (`holds`),
// - that the replication step can be interrupted and a future replication
// step with same or different `To` but same `From` is still possible (`bookmarks`)
// - nothing (`none`)
//
// ...
//
// ... actually create the abstractions
replicationGuaranteeOptions, err := replicationGuaranteeOptionsFromPDU(r.GetReplicationConfig().Protection)
if err != nil {
return nil, nil, errors.Wrapf(err, "cannot hold `to` version %q before starting send", sendArgs.ToVersion)
return nil, nil, err
}
replicationGuaranteeStrategy := replicationGuaranteeOptions.Strategy(sendArgs.From != nil)
liveAbs, err := replicationGuaranteeStrategy.SenderPreSend(ctx, s.jobId, &sendArgs)
if err != nil {
return nil, nil, err
}
for _, a := range liveAbs {
if a != nil {
abstractionsCacheSingleton.Put(a)
}
}
// cleanup the mess that _this function_ might have created in prior failed attempts:
@@ -265,7 +252,6 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.Rea
ctx, endSpan := trace.WithSpan(ctx, "cleanup-stale-abstractions")
defer endSpan()
liveAbs := []Abstraction{fromHold, toHold, fromReplicationCursor}
keep := func(a Abstraction) (keep bool) {
keep = false
for _, k := range liveAbs {
@@ -282,23 +268,31 @@ func (s *Sender) Send(ctx context.Context, r *pdu.SendReq) (*pdu.SendRes, io.Rea
}
for _, staleVersion := range obsoleteAbs {
for _, mustLiveVersion := range mustLiveVersions {
if zfs.FilesystemVersionEqualIdentity(mustLiveVersion, staleVersion.GetFilesystemVersion()) {
isSendArg := zfs.FilesystemVersionEqualIdentity(mustLiveVersion, staleVersion.GetFilesystemVersion())
stepHoldBasedGuaranteeStrategy := false
k := replicationGuaranteeStrategy.Kind()
switch k {
case ReplicationGuaranteeKindResumability:
stepHoldBasedGuaranteeStrategy = true
case ReplicationGuaranteeKindIncremental:
case ReplicationGuaranteeKindNone:
default:
panic(fmt.Sprintf("this is supposed to be an exhaustive match, got %v", k))
}
isSnapshot := mustLiveVersion.IsSnapshot()
if isSendArg && (!isSnapshot || stepHoldBasedGuaranteeStrategy) {
panic(fmt.Sprintf("impl error: %q would be destroyed because it is considered stale but it is part of of sendArgs=%s", mustLiveVersion.String(), pretty.Sprint(sendArgs)))
}
}
}
}
sendAbstractionsCacheSingleton.TryBatchDestroy(ctx, s.jobId, sendArgs.FS, keep, check)
destroyTypes := AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionTentativeReplicationCursorBookmark: true,
}
abstractionsCacheSingleton.TryBatchDestroy(ctx, s.jobId, sendArgs.FS, destroyTypes, keep, check)
}()
if fromHold != nil {
sendAbstractionsCacheSingleton.Put(fromHold)
}
sendAbstractionsCacheSingleton.Put(toHold)
if fromReplicationCursor != nil {
sendAbstractionsCacheSingleton.Put(fromReplicationCursor)
}
sendStream, err := zfs.ZFSSend(ctx, sendArgs)
if err != nil {
// it's ok to not destroy the abstractions we just created here, a new send attempt will take care of it
@@ -331,35 +325,32 @@ func (p *Sender) SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*p
return nil, errors.Wrap(err, "validate `to` exists")
}
log := func(ctx context.Context) Logger {
log := getLogger(ctx).WithField("to_guid", to.Guid).
WithField("fs", fs).
WithField("to", to.RelName)
if from != nil {
log = log.WithField("from", from.RelName).WithField("from_guid", from.Guid)
}
return log
}
toReplicationCursor, err := CreateReplicationCursor(ctx, fs, to, p.jobId)
replicationGuaranteeOptions, err := replicationGuaranteeOptionsFromPDU(orig.GetReplicationConfig().Protection)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
log(ctx).Debug("not setting replication cursor, bookmark cloning not supported")
} else {
msg := "cannot move replication cursor, keeping hold on `to` until successful"
log(ctx).WithError(err).Error(msg)
err = errors.Wrap(err, msg)
// it is correct to not destroy from and to step holds if we can't move the cursor!
return &pdu.SendCompletedRes{}, err
return nil, err
}
liveAbs, err := replicationGuaranteeOptions.Strategy(from != nil).SenderPostRecvConfirmed(ctx, p.jobId, fs, to)
if err != nil {
return nil, err
}
for _, a := range liveAbs {
if a != nil {
abstractionsCacheSingleton.Put(a)
}
} else {
log(ctx).WithField("to_cursor", toReplicationCursor.String()).Info("successfully created `to` replication cursor")
}
keep := func(a Abstraction) bool {
return AbstractionEquals(a, toReplicationCursor)
keep := func(a Abstraction) (keep bool) {
keep = false
for _, k := range liveAbs {
keep = keep || AbstractionEquals(a, k)
}
return keep
}
sendAbstractionsCacheSingleton.TryBatchDestroy(ctx, p.jobId, fs, keep, nil)
destroyTypes := AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionTentativeReplicationCursorBookmark: true,
AbstractionReplicationCursorBookmarkV2: true,
}
abstractionsCacheSingleton.TryBatchDestroy(ctx, p.jobId, fs, destroyTypes, keep, nil)
return &pdu.SendCompletedRes{}, nil
@@ -435,8 +426,6 @@ type ReceiverConfig struct {
RootWithoutClientComponent *zfs.DatasetPath // TODO use
AppendClientIdentity bool
UpdateLastReceivedHold bool
}
func (c *ReceiverConfig) copyIn() {
@@ -677,7 +666,7 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.
f := zfs.NewDatasetPathForest()
f.Add(lp)
getLogger(ctx).Debug("begin tree-walk")
f.WalkTopDown(func(v zfs.DatasetPathVisit) (visitChildTree bool) {
f.WalkTopDown(func(v *zfs.DatasetPathVisit) (visitChildTree bool) {
if v.Path.Equal(lp) {
return false
}
@@ -705,7 +694,7 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.
}
l := getLogger(ctx).WithField("placeholder_fs", v.Path)
l.Debug("create placeholder filesystem")
err := zfs.ZFSCreatePlaceholderFilesystem(ctx, v.Path)
err := zfs.ZFSCreatePlaceholderFilesystem(ctx, v.Path, v.Parent.Path)
if err != nil {
l.WithError(err).Error("cannot create placeholder filesystem")
visitErr = err
@@ -861,12 +850,38 @@ func (s *Receiver) Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.
return nil, errors.Wrap(err, msg)
}
if s.conf.UpdateLastReceivedHold {
log.Debug("move last-received-hold")
if err := MoveLastReceivedHold(ctx, lp.ToString(), toRecvd, s.conf.JobID); err != nil {
return nil, errors.Wrap(err, "cannot move last-received-hold")
replicationGuaranteeOptions, err := replicationGuaranteeOptionsFromPDU(req.GetReplicationConfig().Protection)
if err != nil {
return nil, err
}
replicationGuaranteeStrategy := replicationGuaranteeOptions.Strategy(ph.FSExists)
liveAbs, err := replicationGuaranteeStrategy.ReceiverPostRecv(ctx, s.conf.JobID, lp.ToString(), toRecvd)
if err != nil {
return nil, err
}
for _, a := range liveAbs {
if a != nil {
abstractionsCacheSingleton.Put(a)
}
}
keep := func(a Abstraction) (keep bool) {
keep = false
for _, k := range liveAbs {
keep = keep || AbstractionEquals(a, k)
}
return keep
}
check := func(obsoleteAbs []Abstraction) {
for _, abs := range obsoleteAbs {
if zfs.FilesystemVersionEqualIdentity(abs.GetFilesystemVersion(), toRecvd) {
panic(fmt.Sprintf("would destroy endpoint abstraction around the filesystem version we just received %s", abs))
}
}
}
destroyTypes := AbstractionTypeSet{
AbstractionLastReceivedHold: true,
}
abstractionsCacheSingleton.TryBatchDestroy(ctx, s.conf.JobID, lp.ToString(), destroyTypes, keep, check)
return &pdu.ReceiveRes{}, nil
}
+208
View File
@@ -0,0 +1,208 @@
package endpoint
import (
"context"
"fmt"
"sync"
"github.com/prometheus/client_golang/prometheus"
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/util/chainlock"
)
var abstractionsCacheMetrics struct {
count prometheus.Gauge
}
func init() {
abstractionsCacheMetrics.count = prometheus.NewGauge(prometheus.GaugeOpts{
Namespace: "zrepl",
Subsystem: "endpoint",
Name: "abstractions_cache_entry_count",
Help: "number of abstractions tracked in the abstractionsCache data structure",
})
}
var abstractionsCacheSingleton = newAbstractionsCache()
func AbstractionsCacheInvalidate(fs string) {
abstractionsCacheSingleton.InvalidateFSCache(fs)
}
type abstractionsCacheDidLoadFSState int
const (
abstractionsCacheDidLoadFSStateNo abstractionsCacheDidLoadFSState = iota // 0-value has meaning
abstractionsCacheDidLoadFSStateInProgress
abstractionsCacheDidLoadFSStateDone
)
type abstractionsCache struct {
mtx chainlock.L
abstractions []Abstraction
didLoadFS map[string]abstractionsCacheDidLoadFSState
didLoadFSChanged *sync.Cond
}
func newAbstractionsCache() *abstractionsCache {
c := &abstractionsCache{
didLoadFS: make(map[string]abstractionsCacheDidLoadFSState),
}
c.didLoadFSChanged = c.mtx.NewCond()
return c
}
func (s *abstractionsCache) Put(a Abstraction) {
defer s.mtx.Lock().Unlock()
var zeroJobId JobID
if a.GetJobID() == nil {
panic("abstraction must not have nil job id")
} else if *a.GetJobID() == zeroJobId {
panic(fmt.Sprintf("abstraction must not have zero-value job id: %s", a))
}
s.abstractions = append(s.abstractions, a)
abstractionsCacheMetrics.count.Set(float64(len(s.abstractions)))
}
func (s *abstractionsCache) InvalidateFSCache(fs string) {
// FIXME: O(n)
newAbs := make([]Abstraction, 0, len(s.abstractions))
for _, a := range s.abstractions {
if a.GetFS() != fs {
newAbs = append(newAbs, a)
}
}
s.abstractions = newAbs
abstractionsCacheMetrics.count.Set(float64(len(s.abstractions)))
s.didLoadFS[fs] = abstractionsCacheDidLoadFSStateNo
s.didLoadFSChanged.Broadcast()
}
// - logs errors in getting on-disk abstractions
// - only fetches on-disk abstractions once, but every time from the in-memory store
//
// That means that for precise results, all abstractions created by the endpoint must be .Put into this cache.
func (s *abstractionsCache) GetAndDeleteByJobIDAndFS(ctx context.Context, jobID JobID, fs string, types AbstractionTypeSet, keep func(a Abstraction) bool) (ret []Abstraction) {
defer s.mtx.Lock().Unlock()
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
var zeroJobId JobID
if jobID == zeroJobId {
panic("must not pass zero-value job id")
}
if fs == "" {
panic("must not pass zero-value fs")
}
s.tryLoadOnDiskAbstractions(ctx, fs)
// FIXME O(n)
var remaining []Abstraction
for _, a := range s.abstractions {
aJobId := *a.GetJobID()
aFS := a.GetFS()
if aJobId == jobID && aFS == fs && types[a.GetType()] && !keep(a) {
ret = append(ret, a)
} else {
remaining = append(remaining, a)
}
}
s.abstractions = remaining
abstractionsCacheMetrics.count.Set(float64(len(s.abstractions)))
return ret
}
// caller must hold s.mtx
func (s *abstractionsCache) tryLoadOnDiskAbstractions(ctx context.Context, fs string) {
for s.didLoadFS[fs] != abstractionsCacheDidLoadFSStateDone {
if s.didLoadFS[fs] == abstractionsCacheDidLoadFSStateInProgress {
s.didLoadFSChanged.Wait()
continue
}
if s.didLoadFS[fs] != abstractionsCacheDidLoadFSStateNo {
panic(fmt.Sprintf("unreachable: %v", s.didLoadFS[fs]))
}
s.didLoadFS[fs] = abstractionsCacheDidLoadFSStateInProgress
defer s.didLoadFSChanged.Broadcast()
var onDiskAbs []Abstraction
var err error
s.mtx.DropWhile(func() {
onDiskAbs, err = s.tryLoadOnDiskAbstractionsImpl(ctx, fs) // no shadow
})
if err != nil {
s.didLoadFS[fs] = abstractionsCacheDidLoadFSStateNo
getLogger(ctx).WithField("fs", fs).WithError(err).Error("cannot list abstractions for filesystem")
} else {
s.didLoadFS[fs] = abstractionsCacheDidLoadFSStateDone
s.abstractions = append(s.abstractions, onDiskAbs...)
getLogger(ctx).WithField("fs", fs).WithField("abstractions", onDiskAbs).Debug("loaded step abstractions for filesystem")
}
return
}
}
// caller should _not hold s.mtx
func (s *abstractionsCache) tryLoadOnDiskAbstractionsImpl(ctx context.Context, fs string) ([]Abstraction, error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
q := ListZFSHoldsAndBookmarksQuery{
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
JobID: nil,
What: AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionTentativeReplicationCursorBookmark: true,
AbstractionReplicationCursorBookmarkV2: true,
AbstractionLastReceivedHold: true,
},
Concurrency: 1,
}
abs, absErrs, err := ListAbstractions(ctx, q)
if err != nil {
return nil, err
}
// safe to ignore absErrs here, this is best-effort cleanup
if len(absErrs) > 0 {
return nil, ListAbstractionsErrors(absErrs)
}
return abs, nil
}
func (s *abstractionsCache) TryBatchDestroy(ctx context.Context, jobId JobID, fs string, types AbstractionTypeSet, keep func(a Abstraction) bool, check func(willDestroy []Abstraction)) {
// no s.mtx, we only use the public interface in this function
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
obsoleteAbs := s.GetAndDeleteByJobIDAndFS(ctx, jobId, fs, types, keep)
if check != nil {
check(obsoleteAbs)
}
hadErr := false
for res := range BatchDestroy(ctx, obsoleteAbs) {
if res.DestroyErr != nil {
hadErr = true
getLogger(ctx).
WithField("abstraction", res.Abstraction).
WithError(res.DestroyErr).
Error("cannot destroy abstraction")
} else {
getLogger(ctx).
WithField("abstraction", res.Abstraction).
Info("destroyed abstraction")
}
}
if hadErr {
s.InvalidateFSCache(fs)
}
}
+213
View File
@@ -0,0 +1,213 @@
package endpoint
import (
"context"
"fmt"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/replication/logic/pdu"
"github.com/zrepl/zrepl/zfs"
)
type ReplicationGuaranteeOptions struct {
Initial ReplicationGuaranteeKind
Incremental ReplicationGuaranteeKind
}
func replicationGuaranteeOptionsFromPDU(in *pdu.ReplicationConfigProtection) (o ReplicationGuaranteeOptions, _ error) {
if in == nil {
return o, errors.New("pdu.ReplicationConfigProtection must not be nil")
}
initial, err := replicationGuaranteeKindFromPDU(in.GetInitial())
if err != nil {
return o, errors.Wrap(err, "pdu.ReplicationConfigProtection: field Initial")
}
incremental, err := replicationGuaranteeKindFromPDU(in.GetIncremental())
if err != nil {
return o, errors.Wrap(err, "pdu.ReplicationConfigProtection: field Incremental")
}
o = ReplicationGuaranteeOptions{
Initial: initial,
Incremental: incremental,
}
return o, nil
}
func replicationGuaranteeKindFromPDU(in pdu.ReplicationGuaranteeKind) (k ReplicationGuaranteeKind, _ error) {
switch in {
case pdu.ReplicationGuaranteeKind_GuaranteeNothing:
return ReplicationGuaranteeKindNone, nil
case pdu.ReplicationGuaranteeKind_GuaranteeIncrementalReplication:
return ReplicationGuaranteeKindIncremental, nil
case pdu.ReplicationGuaranteeKind_GuaranteeResumability:
return ReplicationGuaranteeKindResumability, nil
case pdu.ReplicationGuaranteeKind_GuaranteeInvalid:
fallthrough
default:
return k, errors.Errorf("%q", in.String())
}
}
func (o ReplicationGuaranteeOptions) Strategy(incremental bool) ReplicationGuaranteeStrategy {
g := o.Initial
if incremental {
g = o.Incremental
}
return ReplicationGuaranteeFromKind(g)
}
//go:generate enumer -type=ReplicationGuaranteeKind -json -transform=snake -trimprefix=ReplicationGuaranteeKind
type ReplicationGuaranteeKind int
const (
ReplicationGuaranteeKindResumability ReplicationGuaranteeKind = 1 << iota
ReplicationGuaranteeKindIncremental
ReplicationGuaranteeKindNone
)
type ReplicationGuaranteeStrategy interface {
Kind() ReplicationGuaranteeKind
SenderPreSend(ctx context.Context, jid JobID, sendArgs *zfs.ZFSSendArgsValidated) (keep []Abstraction, err error)
ReceiverPostRecv(ctx context.Context, jid JobID, fs string, toRecvd zfs.FilesystemVersion) (keep []Abstraction, err error)
SenderPostRecvConfirmed(ctx context.Context, jid JobID, fs string, to zfs.FilesystemVersion) (keep []Abstraction, err error)
}
func ReplicationGuaranteeFromKind(k ReplicationGuaranteeKind) ReplicationGuaranteeStrategy {
switch k {
case ReplicationGuaranteeKindNone:
return ReplicationGuaranteeNone{}
case ReplicationGuaranteeKindIncremental:
return ReplicationGuaranteeIncremental{}
case ReplicationGuaranteeKindResumability:
return ReplicationGuaranteeResumability{}
default:
panic(fmt.Sprintf("unreachable: %q %T", k, k))
}
}
type ReplicationGuaranteeNone struct{}
func (g ReplicationGuaranteeNone) Kind() ReplicationGuaranteeKind {
return ReplicationGuaranteeKindNone
}
func (g ReplicationGuaranteeNone) SenderPreSend(ctx context.Context, jid JobID, sendArgs *zfs.ZFSSendArgsValidated) (keep []Abstraction, err error) {
return nil, nil
}
func (g ReplicationGuaranteeNone) ReceiverPostRecv(ctx context.Context, jid JobID, fs string, toRecvd zfs.FilesystemVersion) (keep []Abstraction, err error) {
return nil, nil
}
func (g ReplicationGuaranteeNone) SenderPostRecvConfirmed(ctx context.Context, jid JobID, fs string, to zfs.FilesystemVersion) (keep []Abstraction, err error) {
return nil, nil
}
type ReplicationGuaranteeIncremental struct{}
func (g ReplicationGuaranteeIncremental) Kind() ReplicationGuaranteeKind {
return ReplicationGuaranteeKindIncremental
}
func (g ReplicationGuaranteeIncremental) SenderPreSend(ctx context.Context, jid JobID, sendArgs *zfs.ZFSSendArgsValidated) (keep []Abstraction, err error) {
if sendArgs.FromVersion != nil {
from, err := CreateTentativeReplicationCursor(ctx, sendArgs.FS, *sendArgs.FromVersion, jid)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
getLogger(ctx).WithField("replication_guarantee", g).
WithField("bookmark", sendArgs.From.FullPath(sendArgs.FS)).
Info("bookmark cloning is not supported, speculating that `from` will not be destroyed until step is done")
} else {
return nil, err
}
}
keep = append(keep, from)
}
to, err := CreateTentativeReplicationCursor(ctx, sendArgs.FS, sendArgs.ToVersion, jid)
if err != nil {
return nil, err
}
keep = append(keep, to)
return keep, nil
}
func (g ReplicationGuaranteeIncremental) ReceiverPostRecv(ctx context.Context, jid JobID, fs string, toRecvd zfs.FilesystemVersion) (keep []Abstraction, err error) {
return receiverPostRecvCommon(ctx, jid, fs, toRecvd)
}
func (g ReplicationGuaranteeIncremental) SenderPostRecvConfirmed(ctx context.Context, jid JobID, fs string, to zfs.FilesystemVersion) (keep []Abstraction, err error) {
return senderPostRecvConfirmedCommon(ctx, jid, fs, to)
}
type ReplicationGuaranteeResumability struct{}
func (g ReplicationGuaranteeResumability) Kind() ReplicationGuaranteeKind {
return ReplicationGuaranteeKindResumability
}
func (g ReplicationGuaranteeResumability) SenderPreSend(ctx context.Context, jid JobID, sendArgs *zfs.ZFSSendArgsValidated) (keep []Abstraction, err error) {
// try to hold the FromVersion
if sendArgs.FromVersion != nil {
if sendArgs.FromVersion.Type == zfs.Bookmark {
getLogger(ctx).WithField("replication_guarantee", g).WithField("fromVersion", sendArgs.FromVersion.FullPath(sendArgs.FS)).
Debug("cannot hold a bookmark, speculating that `from` will not be destroyed until step is done")
} else {
from, err := HoldStep(ctx, sendArgs.FS, *sendArgs.FromVersion, jid)
if err != nil {
return nil, err
}
keep = append(keep, from)
}
// fallthrough
}
to, err := HoldStep(ctx, sendArgs.FS, sendArgs.ToVersion, jid)
if err != nil {
return nil, err
}
keep = append(keep, to)
return keep, nil
}
func (g ReplicationGuaranteeResumability) ReceiverPostRecv(ctx context.Context, jid JobID, fs string, toRecvd zfs.FilesystemVersion) (keep []Abstraction, err error) {
return receiverPostRecvCommon(ctx, jid, fs, toRecvd)
}
func (g ReplicationGuaranteeResumability) SenderPostRecvConfirmed(ctx context.Context, jid JobID, fs string, to zfs.FilesystemVersion) (keep []Abstraction, err error) {
return senderPostRecvConfirmedCommon(ctx, jid, fs, to)
}
// helper function used by multiple strategies
func senderPostRecvConfirmedCommon(ctx context.Context, jid JobID, fs string, to zfs.FilesystemVersion) (keep []Abstraction, err error) {
log := getLogger(ctx).WithField("toVersion", to.FullPath(fs))
toReplicationCursor, err := CreateReplicationCursor(ctx, fs, to, jid)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
log.Debug("not setting replication cursor, bookmark cloning not supported")
} else {
msg := "cannot move replication cursor, keeping hold on `to` until successful"
log.WithError(err).Error(msg)
err = errors.Wrap(err, msg)
return nil, err
}
} else {
log.WithField("to_cursor", toReplicationCursor.String()).Info("successfully created `to` replication cursor")
}
return []Abstraction{toReplicationCursor}, nil
}
// helper function used by multiple strategies
func receiverPostRecvCommon(ctx context.Context, jid JobID, fs string, toRecvd zfs.FilesystemVersion) (keep []Abstraction, err error) {
getLogger(ctx).Debug("create new last-received-hold")
lrh, err := CreateLastReceivedHold(ctx, fs, toRecvd, jid)
if err != nil {
return nil, err
}
return []Abstraction{lrh}, nil
}
+1 -1
View File
@@ -3,5 +3,5 @@ package endpoint
import "github.com/prometheus/client_golang/prometheus"
func RegisterMetrics(r prometheus.Registerer) {
r.MustRegister(sendAbstractionsCacheMetrics.count)
r.MustRegister(abstractionsCacheMetrics.count)
}
@@ -1,232 +0,0 @@
package endpoint
import (
"context"
"fmt"
"sync"
"github.com/prometheus/client_golang/prometheus"
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/util/chainlock"
)
var sendAbstractionsCacheMetrics struct {
count prometheus.Gauge
}
func init() {
sendAbstractionsCacheMetrics.count = prometheus.NewGauge(prometheus.GaugeOpts{
Namespace: "zrepl",
Subsystem: "endpoint",
Name: "send_abstractions_cache_entry_count",
Help: "number of send abstractions tracked in the sendAbstractionsCache data structure",
})
}
var sendAbstractionsCacheSingleton = newSendAbstractionsCache()
func SendAbstractionsCacheInvalidate(fs string) {
sendAbstractionsCacheSingleton.InvalidateFSCache(fs)
}
type sendAbstractionsCacheDidLoadFSState int
const (
sendAbstractionsCacheDidLoadFSStateNo sendAbstractionsCacheDidLoadFSState = iota // 0-value has meaning
sendAbstractionsCacheDidLoadFSStateInProgress
sendAbstractionsCacheDidLoadFSStateDone
)
type sendAbstractionsCache struct {
mtx chainlock.L
abstractions []Abstraction
didLoadFS map[string]sendAbstractionsCacheDidLoadFSState
didLoadFSChanged *sync.Cond
}
func newSendAbstractionsCache() *sendAbstractionsCache {
c := &sendAbstractionsCache{
didLoadFS: make(map[string]sendAbstractionsCacheDidLoadFSState),
}
c.didLoadFSChanged = c.mtx.NewCond()
return c
}
func (s *sendAbstractionsCache) Put(a Abstraction) {
defer s.mtx.Lock().Unlock()
var zeroJobId JobID
if a.GetJobID() == nil {
panic("abstraction must not have nil job id")
} else if *a.GetJobID() == zeroJobId {
panic(fmt.Sprintf("abstraction must not have zero-value job id: %s", a))
}
s.abstractions = append(s.abstractions, a)
sendAbstractionsCacheMetrics.count.Set(float64(len(s.abstractions)))
}
func (s *sendAbstractionsCache) InvalidateFSCache(fs string) {
// FIXME: O(n)
newAbs := make([]Abstraction, 0, len(s.abstractions))
for _, a := range s.abstractions {
if a.GetFS() != fs {
newAbs = append(newAbs, a)
}
}
s.abstractions = newAbs
sendAbstractionsCacheMetrics.count.Set(float64(len(s.abstractions)))
s.didLoadFS[fs] = sendAbstractionsCacheDidLoadFSStateNo
s.didLoadFSChanged.Broadcast()
}
func (s *sendAbstractionsCache) GetByFS(ctx context.Context, fs string) (ret []Abstraction) {
defer s.mtx.Lock().Unlock()
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
if fs == "" {
panic("must not pass zero-value fs")
}
s.tryLoadOnDiskSendAbstractions(ctx, fs)
for _, a := range s.abstractions {
if a.GetFS() == fs {
ret = append(ret, a)
}
}
return ret
}
// - logs errors in getting on-disk abstractions
// - only fetches on-disk abstractions once, but every time from the in-memory store
//
// That means that for precise results, all abstractions created by the endpoint must be .Put into this cache.
func (s *sendAbstractionsCache) GetAndDeleteByJobIDAndFS(ctx context.Context, jobID JobID, fs string) (ret []Abstraction) {
defer s.mtx.Lock().Unlock()
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
var zeroJobId JobID
if jobID == zeroJobId {
panic("must not pass zero-value job id")
}
if fs == "" {
panic("must not pass zero-value fs")
}
s.tryLoadOnDiskSendAbstractions(ctx, fs)
// FIXME O(n)
var remaining []Abstraction
for _, a := range s.abstractions {
aJobId := *a.GetJobID()
aFS := a.GetFS()
if aJobId == jobID && aFS == fs {
ret = append(ret, a)
} else {
remaining = append(remaining, a)
}
}
s.abstractions = remaining
sendAbstractionsCacheMetrics.count.Set(float64(len(s.abstractions)))
return ret
}
// caller must hold s.mtx
func (s *sendAbstractionsCache) tryLoadOnDiskSendAbstractions(ctx context.Context, fs string) {
for s.didLoadFS[fs] != sendAbstractionsCacheDidLoadFSStateDone {
if s.didLoadFS[fs] == sendAbstractionsCacheDidLoadFSStateInProgress {
s.didLoadFSChanged.Wait()
continue
}
if s.didLoadFS[fs] != sendAbstractionsCacheDidLoadFSStateNo {
panic(fmt.Sprintf("unreachable: %v", s.didLoadFS[fs]))
}
s.didLoadFS[fs] = sendAbstractionsCacheDidLoadFSStateInProgress
defer s.didLoadFSChanged.Broadcast()
var onDiskAbs []Abstraction
var err error
s.mtx.DropWhile(func() {
onDiskAbs, err = s.tryLoadOnDiskSendAbstractionsImpl(ctx, fs) // no shadow
})
if err != nil {
s.didLoadFS[fs] = sendAbstractionsCacheDidLoadFSStateNo
getLogger(ctx).WithField("fs", fs).WithError(err).Error("cannot list send step abstractions for filesystem")
} else {
s.didLoadFS[fs] = sendAbstractionsCacheDidLoadFSStateDone
s.abstractions = append(s.abstractions, onDiskAbs...)
getLogger(ctx).WithField("fs", fs).WithField("abstractions", onDiskAbs).Debug("loaded step abstractions for filesystem")
}
return
}
}
// caller should _not hold s.mtx
func (s *sendAbstractionsCache) tryLoadOnDiskSendAbstractionsImpl(ctx context.Context, fs string) ([]Abstraction, error) {
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
q := ListZFSHoldsAndBookmarksQuery{
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
JobID: nil,
What: AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionStepBookmark: true,
AbstractionReplicationCursorBookmarkV2: true,
},
Concurrency: 1,
}
abs, absErrs, err := ListAbstractions(ctx, q)
if err != nil {
return nil, err
}
// safe to ignore absErrs here, this is best-effort cleanup
if len(absErrs) > 0 {
return nil, ListAbstractionsErrors(absErrs)
}
return abs, nil
}
func (s *sendAbstractionsCache) TryBatchDestroy(ctx context.Context, jobId JobID, fs string, keep func(a Abstraction) bool, check func(willDestroy []Abstraction)) {
// no s.mtx, we only use the public interface in this function
defer trace.WithSpanFromStackUpdateCtx(&ctx)()
allSendStepAbstractions := s.GetAndDeleteByJobIDAndFS(ctx, jobId, fs)
var obsoleteAbs []Abstraction
for _, a := range allSendStepAbstractions {
if !keep(a) {
obsoleteAbs = append(obsoleteAbs, a)
}
}
if check != nil {
check(obsoleteAbs)
}
hadErr := false
for res := range BatchDestroy(ctx, obsoleteAbs) {
if res.DestroyErr != nil {
hadErr = true
getLogger(ctx).
WithField("abstraction", res.Abstraction).
WithError(res.DestroyErr).
Error("cannot destroy stale send step abstraction")
} else {
getLogger(ctx).
WithField("abstraction", res.Abstraction).
Info("destroyed stale send step abstraction")
}
}
if hadErr {
s.InvalidateFSCache(fs)
}
}
+35 -22
View File
@@ -23,19 +23,19 @@ type AbstractionType string
// There are a lot of exhaustive switches on AbstractionType in the code base.
// When adding a new abstraction type, make sure to search and update them!
const (
AbstractionStepBookmark AbstractionType = "step-bookmark"
AbstractionStepHold AbstractionType = "step-hold"
AbstractionLastReceivedHold AbstractionType = "last-received-hold"
AbstractionReplicationCursorBookmarkV1 AbstractionType = "replication-cursor-bookmark-v1"
AbstractionReplicationCursorBookmarkV2 AbstractionType = "replication-cursor-bookmark-v2"
AbstractionStepHold AbstractionType = "step-hold"
AbstractionLastReceivedHold AbstractionType = "last-received-hold"
AbstractionTentativeReplicationCursorBookmark AbstractionType = "tentative-replication-cursor-bookmark-v2"
AbstractionReplicationCursorBookmarkV1 AbstractionType = "replication-cursor-bookmark-v1"
AbstractionReplicationCursorBookmarkV2 AbstractionType = "replication-cursor-bookmark-v2"
)
var AbstractionTypesAll = map[AbstractionType]bool{
AbstractionStepBookmark: true,
AbstractionStepHold: true,
AbstractionLastReceivedHold: true,
AbstractionReplicationCursorBookmarkV1: true,
AbstractionReplicationCursorBookmarkV2: true,
AbstractionStepHold: true,
AbstractionLastReceivedHold: true,
AbstractionTentativeReplicationCursorBookmark: true,
AbstractionReplicationCursorBookmarkV1: true,
AbstractionReplicationCursorBookmarkV2: true,
}
// Implementation Note:
@@ -80,12 +80,12 @@ func AbstractionEquals(a, b Abstraction) bool {
func (t AbstractionType) Validate() error {
switch t {
case AbstractionStepBookmark:
return nil
case AbstractionStepHold:
return nil
case AbstractionLastReceivedHold:
return nil
case AbstractionTentativeReplicationCursorBookmark:
return nil
case AbstractionReplicationCursorBookmarkV1:
return nil
case AbstractionReplicationCursorBookmarkV2:
@@ -185,8 +185,8 @@ type BookmarkExtractor func(fs *zfs.DatasetPath, v zfs.FilesystemVersion) Abstra
// returns nil if the abstraction type is not bookmark-based
func (t AbstractionType) BookmarkExtractor() BookmarkExtractor {
switch t {
case AbstractionStepBookmark:
return StepBookmarkExtractor
case AbstractionTentativeReplicationCursorBookmark:
return TentativeReplicationCursorExtractor
case AbstractionReplicationCursorBookmarkV1:
return ReplicationCursorV1Extractor
case AbstractionReplicationCursorBookmarkV2:
@@ -205,7 +205,7 @@ type HoldExtractor = func(fs *zfs.DatasetPath, v zfs.FilesystemVersion, tag stri
// returns nil if the abstraction type is not hold-based
func (t AbstractionType) HoldExtractor() HoldExtractor {
switch t {
case AbstractionStepBookmark:
case AbstractionTentativeReplicationCursorBookmark:
return nil
case AbstractionReplicationCursorBookmarkV1:
return nil
@@ -220,6 +220,23 @@ func (t AbstractionType) HoldExtractor() HoldExtractor {
}
}
func (t AbstractionType) BookmarkNamer() func(fs string, guid uint64, jobId JobID) (string, error) {
switch t {
case AbstractionTentativeReplicationCursorBookmark:
return TentativeReplicationCursorBookmarkName
case AbstractionReplicationCursorBookmarkV1:
panic("shouldn't be creating new ones")
case AbstractionReplicationCursorBookmarkV2:
return ReplicationCursorBookmarkName
case AbstractionStepHold:
return nil
case AbstractionLastReceivedHold:
return nil
default:
panic(fmt.Sprintf("unimpl: %q", t))
}
}
type ListZFSHoldsAndBookmarksQuery struct {
FS ListZFSHoldsAndBookmarksQueryFilesystemFilter
// What abstraction types should match (any contained in the set)
@@ -697,11 +714,9 @@ func ListStale(ctx context.Context, q ListZFSHoldsAndBookmarksQuery) (*Staleness
return nil, &ListStaleQueryError{errors.New("ListStale cannot have Until != nil set on query")}
}
// if asking for step holds, must also as for step bookmarks (same kind of abstraction)
// as well as replication cursor bookmarks (for firstNotStale)
// if asking for step holds must also ask for replication cursor bookmarks (for firstNotStale)
ifAnyThenAll := AbstractionTypeSet{
AbstractionStepHold: true,
AbstractionStepBookmark: true,
AbstractionReplicationCursorBookmarkV2: true,
}
if q.What.ContainsAnyOf(ifAnyThenAll) && !q.What.ContainsAll(ifAnyThenAll) {
@@ -730,7 +745,7 @@ type fsAjobAtype struct {
}
// For step holds and bookmarks, only those older than the most recent replication cursor
// of their (filesystem,job) is considered because younger ones cannot be stale by definition
// of their (filesystem,job) are considered because younger ones cannot be stale by definition
// (if we destroy them, we might actually lose the hold on the `To` for an ongoing incremental replication)
//
// For replication cursors and last-received-holds, only the most recent one is kept.
@@ -772,8 +787,6 @@ func listStaleFiltering(abs []Abstraction, sinceBound *CreateTXGRangeBound) *Sta
}
// stepFirstNotStaleCandidate.step
case AbstractionStepBookmark:
fallthrough
case AbstractionStepHold:
if c.step == nil || (*c.step).GetCreateTXG() < a.GetCreateTXG() {
a := a
@@ -797,7 +810,7 @@ func listStaleFiltering(abs []Abstraction, sinceBound *CreateTXGRangeBound) *Sta
for k := range by {
l := by[k]
if k.Type == AbstractionStepHold || k.Type == AbstractionStepBookmark {
if k.Type == AbstractionStepHold {
// all older than the most recent cursor are stale, others are always live
// if we don't have a replication cursor yet, use untilBound = nil
@@ -0,0 +1,91 @@
package endpoint
import (
"context"
"fmt"
"regexp"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/zfs"
)
const (
LastReceivedHoldTagNamePrefix = "zrepl_last_received_J_"
)
var lastReceivedHoldTagRE = regexp.MustCompile("^zrepl_last_received_J_(.+)$")
var _ HoldExtractor = LastReceivedHoldExtractor
func LastReceivedHoldExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion, holdTag string) Abstraction {
var err error
if v.Type != zfs.Snapshot {
panic("impl error")
}
jobID, err := ParseLastReceivedHoldTag(holdTag)
if err == nil {
return &holdBasedAbstraction{
Type: AbstractionLastReceivedHold,
FS: fs.ToString(),
FilesystemVersion: v,
Tag: holdTag,
JobID: jobID,
}
}
return nil
}
// err != nil always means that the bookmark is not a step bookmark
func ParseLastReceivedHoldTag(tag string) (JobID, error) {
match := lastReceivedHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, errors.Errorf("parse last-received-hold tag: does not match regex %s", lastReceivedHoldTagRE.String())
}
jobId, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse last-received-hold tag: invalid job id field")
}
return jobId, nil
}
func LastReceivedHoldTag(jobID JobID) (string, error) {
return lastReceivedHoldImpl(jobID.String())
}
func lastReceivedHoldImpl(jobid string) (string, error) {
tag := fmt.Sprintf("%s%s", LastReceivedHoldTagNamePrefix, jobid)
if err := zfs.ValidHoldTag(tag); err != nil {
return "", err
}
return tag, nil
}
func CreateLastReceivedHold(ctx context.Context, fs string, to zfs.FilesystemVersion, jobID JobID) (Abstraction, error) {
if !to.IsSnapshot() {
return nil, errors.Errorf("last-received-hold: target must be a snapshot: %s", to.FullPath(fs))
}
tag, err := LastReceivedHoldTag(jobID)
if err != nil {
return nil, errors.Wrap(err, "last-received-hold: hold tag")
}
// we never want to be without a hold
// => hold new one before releasing old hold
err = zfs.ZFSHold(ctx, fs, to, tag)
if err != nil {
return nil, errors.Wrap(err, "last-received-hold: hold newly received")
}
return &holdBasedAbstraction{
Type: AbstractionLastReceivedHold,
FS: fs,
FilesystemVersion: to,
JobID: jobID,
Tag: tag,
}, nil
}
-28
View File
@@ -1,28 +0,0 @@
package endpoint
import "github.com/zrepl/zrepl/replication/logic/pdu"
func SendAbstractionToPDU(a Abstraction) *pdu.SendAbstraction {
var ty pdu.SendAbstraction_SendAbstractionType
switch a.GetType() {
case AbstractionLastReceivedHold:
panic(a)
case AbstractionReplicationCursorBookmarkV1:
panic(a)
case AbstractionReplicationCursorBookmarkV2:
ty = pdu.SendAbstraction_ReplicationCursorV2
case AbstractionStepHold:
ty = pdu.SendAbstraction_StepHold
case AbstractionStepBookmark:
ty = pdu.SendAbstraction_StepBookmark
default:
panic(a)
}
version := a.GetFilesystemVersion()
return &pdu.SendAbstraction{
Type: ty,
JobID: (*a.GetJobID()).String(),
Version: pdu.FilesystemVersionFromZFS(&version),
}
}
@@ -4,12 +4,9 @@ import (
"context"
"encoding/json"
"fmt"
"regexp"
"sort"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/util/errorarray"
"github.com/zrepl/zrepl/zfs"
)
@@ -53,6 +50,28 @@ func ParseReplicationCursorBookmarkName(fullname string) (uint64, JobID, error)
return guid, jobID, err
}
const tentativeReplicationCursorBookmarkNamePrefix = "zrepl_CURSORTENTATIVE_"
// v must be validated by caller
func TentativeReplicationCursorBookmarkName(fs string, guid uint64, id JobID) (string, error) {
return tentativeReplicationCursorBookmarkNameImpl(fs, guid, id.String())
}
func tentativeReplicationCursorBookmarkNameImpl(fs string, guid uint64, jobid string) (string, error) {
return makeJobAndGuidBookmarkName(tentativeReplicationCursorBookmarkNamePrefix, fs, guid, jobid)
}
// name is the full bookmark name, including dataset path
//
// err != nil always means that the bookmark is not a step bookmark
func ParseTentativeReplicationCursorBookmarkName(fullname string) (guid uint64, jobID JobID, err error) {
guid, jobID, err = parseJobAndGuidBookmarkName(fullname, tentativeReplicationCursorBookmarkNamePrefix)
if err != nil {
err = errors.Wrap(err, "parse step bookmark name") // no shadow!
}
return guid, jobID, err
}
// may return nil for both values, indicating there is no cursor
func GetMostRecentReplicationCursorOfJob(ctx context.Context, fs string, jobID JobID) (*zfs.FilesystemVersion, error) {
fsp, err := zfs.NewDatasetPath(fs)
@@ -122,23 +141,23 @@ func GetReplicationCursors(ctx context.Context, dp *zfs.DatasetPath, jobID JobID
//
// returns ErrBookmarkCloningNotSupported if version is a bookmark and bookmarking bookmarks is not supported by ZFS
func CreateReplicationCursor(ctx context.Context, fs string, target zfs.FilesystemVersion, jobID JobID) (a Abstraction, err error) {
return createBookmarkAbstraction(ctx, AbstractionReplicationCursorBookmarkV2, fs, target, jobID)
}
bookmarkname, err := ReplicationCursorBookmarkName(fs, target.GetGuid(), jobID)
func CreateTentativeReplicationCursor(ctx context.Context, fs string, target zfs.FilesystemVersion, jobID JobID) (a Abstraction, err error) {
return createBookmarkAbstraction(ctx, AbstractionTentativeReplicationCursorBookmark, fs, target, jobID)
}
func createBookmarkAbstraction(ctx context.Context, abstractionType AbstractionType, fs string, target zfs.FilesystemVersion, jobID JobID) (a Abstraction, err error) {
bookmarkNamer := abstractionType.BookmarkNamer()
if bookmarkNamer == nil {
panic(abstractionType)
}
bookmarkname, err := bookmarkNamer(fs, target.GetGuid(), jobID)
if err != nil {
return nil, errors.Wrap(err, "determine replication cursor name")
}
if target.IsBookmark() && target.GetName() == bookmarkname {
return &bookmarkBasedAbstraction{
Type: AbstractionReplicationCursorBookmarkV2,
FS: fs,
FilesystemVersion: target,
JobID: jobID,
}, nil
}
if !target.IsSnapshot() {
return nil, zfs.ErrBookmarkCloningNotSupported
return nil, errors.Wrapf(err, "determine %s name", abstractionType)
}
// idempotently create bookmark (guid is encoded in it)
@@ -152,125 +171,13 @@ func CreateReplicationCursor(ctx context.Context, fs string, target zfs.Filesyst
}
return &bookmarkBasedAbstraction{
Type: AbstractionReplicationCursorBookmarkV2,
Type: abstractionType,
FS: fs,
FilesystemVersion: cursorBookmark,
JobID: jobID,
}, nil
}
const (
ReplicationCursorBookmarkNamePrefix = "zrepl_last_received_J_"
)
var lastReceivedHoldTagRE = regexp.MustCompile("^zrepl_last_received_J_(.+)$")
// err != nil always means that the bookmark is not a step bookmark
func ParseLastReceivedHoldTag(tag string) (JobID, error) {
match := lastReceivedHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, errors.Errorf("parse last-received-hold tag: does not match regex %s", lastReceivedHoldTagRE.String())
}
jobId, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse last-received-hold tag: invalid job id field")
}
return jobId, nil
}
func LastReceivedHoldTag(jobID JobID) (string, error) {
return lastReceivedHoldImpl(jobID.String())
}
func lastReceivedHoldImpl(jobid string) (string, error) {
tag := fmt.Sprintf("%s%s", ReplicationCursorBookmarkNamePrefix, jobid)
if err := zfs.ValidHoldTag(tag); err != nil {
return "", err
}
return tag, nil
}
func CreateLastReceivedHold(ctx context.Context, fs string, to zfs.FilesystemVersion, jobID JobID) (Abstraction, error) {
if !to.IsSnapshot() {
return nil, errors.Errorf("last-received-hold: target must be a snapshot: %s", to.FullPath(fs))
}
tag, err := LastReceivedHoldTag(jobID)
if err != nil {
return nil, errors.Wrap(err, "last-received-hold: hold tag")
}
// we never want to be without a hold
// => hold new one before releasing old hold
err = zfs.ZFSHold(ctx, fs, to, tag)
if err != nil {
return nil, errors.Wrap(err, "last-received-hold: hold newly received")
}
return &holdBasedAbstraction{
Type: AbstractionLastReceivedHold,
FS: fs,
FilesystemVersion: to,
JobID: jobID,
Tag: tag,
}, nil
}
func MoveLastReceivedHold(ctx context.Context, fs string, to zfs.FilesystemVersion, jobID JobID) error {
_, err := CreateLastReceivedHold(ctx, fs, to, jobID)
if err != nil {
return err
}
q := ListZFSHoldsAndBookmarksQuery{
What: AbstractionTypeSet{
AbstractionLastReceivedHold: true,
},
FS: ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &fs,
},
JobID: &jobID,
CreateTXG: CreateTXGRange{
Since: nil,
Until: &CreateTXGRangeBound{
CreateTXG: to.GetCreateTXG(),
Inclusive: &zfs.NilBool{B: false},
},
},
Concurrency: 1,
}
abs, absErrs, err := ListAbstractions(ctx, q)
if err != nil {
return errors.Wrap(err, "last-received-hold: list")
}
if len(absErrs) > 0 {
return errors.Wrap(ListAbstractionsErrors(absErrs), "last-received-hold: list")
}
getLogger(ctx).WithField("last-received-holds", fmt.Sprintf("%s", abs)).Debug("releasing last-received-holds")
var errs []error
for res := range BatchDestroy(ctx, abs) {
log := getLogger(ctx).
WithField("last-received-hold", res.Abstraction)
if res.DestroyErr != nil {
errs = append(errs, res.DestroyErr)
log.WithError(err).
Error("cannot release last-received-hold")
} else {
log.Info("released last-received-hold")
}
}
if len(errs) == 0 {
return nil
} else {
return errorarray.Wrap(errs, "last-received-hold: release")
}
}
func ReplicationCursorV2Extractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion) (_ Abstraction) {
if v.Type != zfs.Bookmark {
panic("impl error")
@@ -308,24 +215,28 @@ func ReplicationCursorV1Extractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion)
return nil
}
var _ HoldExtractor = LastReceivedHoldExtractor
var _ BookmarkExtractor = TentativeReplicationCursorExtractor
func LastReceivedHoldExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion, holdTag string) Abstraction {
var err error
if v.Type != zfs.Snapshot {
func TentativeReplicationCursorExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion) (_ Abstraction) {
if v.Type != zfs.Bookmark {
panic("impl error")
}
jobID, err := ParseLastReceivedHoldTag(holdTag)
fullname := v.ToAbsPath(fs)
guid, jobid, err := ParseTentativeReplicationCursorBookmarkName(fullname)
if guid != v.Guid {
// TODO log this possibly tinkered-with bookmark
return nil
}
if err == nil {
return &holdBasedAbstraction{
Type: AbstractionLastReceivedHold,
bm := &bookmarkBasedAbstraction{
Type: AbstractionTentativeReplicationCursorBookmark,
FS: fs.ToString(),
FilesystemVersion: v,
Tag: holdTag,
JobID: jobID,
JobID: jobid,
}
return bm
}
return nil
}
-159
View File
@@ -1,159 +0,0 @@
package endpoint
import (
"context"
"fmt"
"regexp"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/zfs"
)
var stepHoldTagRE = regexp.MustCompile("^zrepl_STEP_J_(.+)")
func StepHoldTag(jobid JobID) (string, error) {
return stepHoldTagImpl(jobid.String())
}
func stepHoldTagImpl(jobid string) (string, error) {
t := fmt.Sprintf("zrepl_STEP_J_%s", jobid)
if err := zfs.ValidHoldTag(t); err != nil {
return "", err
}
return t, nil
}
// err != nil always means that the bookmark is not a step bookmark
func ParseStepHoldTag(tag string) (JobID, error) {
match := stepHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, fmt.Errorf("parse hold tag: match regex %q", stepHoldTagRE)
}
jobID, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse hold tag: invalid job id field")
}
return jobID, nil
}
const stepBookmarkNamePrefix = "zrepl_STEP"
// v must be validated by caller
func StepBookmarkName(fs string, guid uint64, id JobID) (string, error) {
return stepBookmarkNameImpl(fs, guid, id.String())
}
func stepBookmarkNameImpl(fs string, guid uint64, jobid string) (string, error) {
return makeJobAndGuidBookmarkName(stepBookmarkNamePrefix, fs, guid, jobid)
}
// name is the full bookmark name, including dataset path
//
// err != nil always means that the bookmark is not a step bookmark
func ParseStepBookmarkName(fullname string) (guid uint64, jobID JobID, err error) {
guid, jobID, err = parseJobAndGuidBookmarkName(fullname, stepBookmarkNamePrefix)
if err != nil {
err = errors.Wrap(err, "parse step bookmark name") // no shadow!
}
return guid, jobID, err
}
// idempotently hold / step-bookmark `version`
//
// returns ErrBookmarkCloningNotSupported if version is a bookmark and bookmarking bookmarks is not supported by ZFS
func HoldStep(ctx context.Context, fs string, v zfs.FilesystemVersion, jobID JobID) (Abstraction, error) {
if v.IsSnapshot() {
tag, err := StepHoldTag(jobID)
if err != nil {
return nil, errors.Wrap(err, "step hold tag")
}
if err := zfs.ZFSHold(ctx, fs, v, tag); err != nil {
return nil, errors.Wrap(err, "step hold: zfs")
}
return &holdBasedAbstraction{
Type: AbstractionStepHold,
FS: fs,
Tag: tag,
JobID: jobID,
FilesystemVersion: v,
}, nil
}
if !v.IsBookmark() {
panic(fmt.Sprintf("version must bei either snapshot or bookmark, got %#v", v))
}
bmname, err := StepBookmarkName(fs, v.Guid, jobID)
if err != nil {
return nil, errors.Wrap(err, "create step bookmark: determine bookmark name")
}
// idempotently create bookmark
stepBookmark, err := zfs.ZFSBookmark(ctx, fs, v, bmname)
if err != nil {
if err == zfs.ErrBookmarkCloningNotSupported {
// TODO we could actually try to find a local snapshot that has the requested GUID
// however, the replication algorithm prefers snapshots anyways, so this quest
// is most likely not going to be successful. Also, there's the possibility that
// the caller might want to filter what snapshots are eligibile, and this would
// complicate things even further.
return nil, err // TODO go1.13 use wrapping
}
return nil, errors.Wrap(err, "create step bookmark: zfs")
}
return &bookmarkBasedAbstraction{
Type: AbstractionStepBookmark,
FS: fs,
FilesystemVersion: stepBookmark,
JobID: jobID,
}, nil
}
var _ BookmarkExtractor = StepBookmarkExtractor
func StepBookmarkExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion) (_ Abstraction) {
if v.Type != zfs.Bookmark {
panic("impl error")
}
fullname := v.ToAbsPath(fs)
guid, jobid, err := ParseStepBookmarkName(fullname)
if guid != v.Guid {
// TODO log this possibly tinkered-with bookmark
return nil
}
if err == nil {
bm := &bookmarkBasedAbstraction{
Type: AbstractionStepBookmark,
FS: fs.ToString(),
FilesystemVersion: v,
JobID: jobid,
}
return bm
}
return nil
}
var _ HoldExtractor = StepHoldExtractor
func StepHoldExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion, holdTag string) Abstraction {
if v.Type != zfs.Snapshot {
panic("impl error")
}
jobID, err := ParseStepHoldTag(holdTag)
if err == nil {
return &holdBasedAbstraction{
Type: AbstractionStepHold,
FS: fs.ToString(),
Tag: holdTag,
FilesystemVersion: v,
JobID: jobID,
}
}
return nil
}
@@ -0,0 +1,83 @@
package endpoint
import (
"context"
"fmt"
"regexp"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/zfs"
)
var stepHoldTagRE = regexp.MustCompile("^zrepl_STEP_J_(.+)")
func StepHoldTag(jobid JobID) (string, error) {
return stepHoldTagImpl(jobid.String())
}
func stepHoldTagImpl(jobid string) (string, error) {
t := fmt.Sprintf("zrepl_STEP_J_%s", jobid)
if err := zfs.ValidHoldTag(t); err != nil {
return "", err
}
return t, nil
}
// err != nil always means that the bookmark is not a step bookmark
func ParseStepHoldTag(tag string) (JobID, error) {
match := stepHoldTagRE.FindStringSubmatch(tag)
if match == nil {
return JobID{}, fmt.Errorf("parse hold tag: match regex %q", stepHoldTagRE)
}
jobID, err := MakeJobID(match[1])
if err != nil {
return JobID{}, errors.Wrap(err, "parse hold tag: invalid job id field")
}
return jobID, nil
}
// idempotently hold `version`
func HoldStep(ctx context.Context, fs string, v zfs.FilesystemVersion, jobID JobID) (Abstraction, error) {
if !v.IsSnapshot() {
panic(fmt.Sprintf("version must be a snapshot got %#v", v))
}
tag, err := StepHoldTag(jobID)
if err != nil {
return nil, errors.Wrap(err, "step hold tag")
}
if err := zfs.ZFSHold(ctx, fs, v, tag); err != nil {
return nil, errors.Wrap(err, "step hold: zfs")
}
return &holdBasedAbstraction{
Type: AbstractionStepHold,
FS: fs,
Tag: tag,
JobID: jobID,
FilesystemVersion: v,
}, nil
}
var _ HoldExtractor = StepHoldExtractor
func StepHoldExtractor(fs *zfs.DatasetPath, v zfs.FilesystemVersion, holdTag string) Abstraction {
if v.Type != zfs.Snapshot {
panic("impl error")
}
jobID, err := ParseStepHoldTag(holdTag)
if err == nil {
return &holdBasedAbstraction{
Type: AbstractionStepHold,
FS: fs.ToString(),
Tag: holdTag,
FilesystemVersion: v,
JobID: jobID,
}
}
return nil
}
+2 -2
View File
@@ -24,9 +24,9 @@ func MakeJobID(s string) (JobID, error) {
return JobID{}, errors.Wrap(err, "must be usable as a dataset path component")
}
if _, err := stepBookmarkNameImpl("pool/ds", 0xface601d, s); err != nil {
if _, err := tentativeReplicationCursorBookmarkNameImpl("pool/ds", 0xface601d, s); err != nil {
// note that this might still fail due to total maximum name length, but we can't enforce that
return JobID{}, errors.Wrap(err, "must be usable for a step bookmark")
return JobID{}, errors.Wrap(err, "must be usable for a tentative replication cursor bookmark")
}
if _, err := stepHoldTagImpl(s); err != nil {
@@ -0,0 +1,80 @@
// Code generated by "enumer -type=ReplicationGuaranteeKind -json -transform=snake -trimprefix=ReplicationGuaranteeKind"; DO NOT EDIT.
//
package endpoint
import (
"encoding/json"
"fmt"
)
const (
_ReplicationGuaranteeKindName_0 = "resumabilityincremental"
_ReplicationGuaranteeKindName_1 = "none"
)
var (
_ReplicationGuaranteeKindIndex_0 = [...]uint8{0, 12, 23}
_ReplicationGuaranteeKindIndex_1 = [...]uint8{0, 4}
)
func (i ReplicationGuaranteeKind) String() string {
switch {
case 1 <= i && i <= 2:
i -= 1
return _ReplicationGuaranteeKindName_0[_ReplicationGuaranteeKindIndex_0[i]:_ReplicationGuaranteeKindIndex_0[i+1]]
case i == 4:
return _ReplicationGuaranteeKindName_1
default:
return fmt.Sprintf("ReplicationGuaranteeKind(%d)", i)
}
}
var _ReplicationGuaranteeKindValues = []ReplicationGuaranteeKind{1, 2, 4}
var _ReplicationGuaranteeKindNameToValueMap = map[string]ReplicationGuaranteeKind{
_ReplicationGuaranteeKindName_0[0:12]: 1,
_ReplicationGuaranteeKindName_0[12:23]: 2,
_ReplicationGuaranteeKindName_1[0:4]: 4,
}
// ReplicationGuaranteeKindString retrieves an enum value from the enum constants string name.
// Throws an error if the param is not part of the enum.
func ReplicationGuaranteeKindString(s string) (ReplicationGuaranteeKind, error) {
if val, ok := _ReplicationGuaranteeKindNameToValueMap[s]; ok {
return val, nil
}
return 0, fmt.Errorf("%s does not belong to ReplicationGuaranteeKind values", s)
}
// ReplicationGuaranteeKindValues returns all values of the enum
func ReplicationGuaranteeKindValues() []ReplicationGuaranteeKind {
return _ReplicationGuaranteeKindValues
}
// IsAReplicationGuaranteeKind returns "true" if the value is listed in the enum definition. "false" otherwise
func (i ReplicationGuaranteeKind) IsAReplicationGuaranteeKind() bool {
for _, v := range _ReplicationGuaranteeKindValues {
if i == v {
return true
}
}
return false
}
// MarshalJSON implements the json.Marshaler interface for ReplicationGuaranteeKind
func (i ReplicationGuaranteeKind) MarshalJSON() ([]byte, error) {
return json.Marshal(i.String())
}
// UnmarshalJSON implements the json.Unmarshaler interface for ReplicationGuaranteeKind
func (i *ReplicationGuaranteeKind) UnmarshalJSON(data []byte) error {
var s string
if err := json.Unmarshal(data, &s); err != nil {
return fmt.Errorf("ReplicationGuaranteeKind should be a string, got %s", data)
}
var err error
*i, err = ReplicationGuaranteeKindString(s)
return err
}
+1 -1
View File
@@ -22,7 +22,7 @@ require (
github.com/onsi/gomega v1.7.0 // indirect
github.com/pkg/errors v0.8.1
github.com/pkg/profile v1.2.1
github.com/problame/go-netssh v0.0.0-20191209123953-18d8aa6923c7
github.com/problame/go-netssh v0.0.0-20200601114649-26439f9f0dc5
github.com/prometheus/client_golang v1.2.1
github.com/prometheus/common v0.7.0
github.com/sergi/go-diff v1.0.1-0.20180205163309-da645544ed44 // go1.12 thinks it needs this
+2
View File
@@ -212,6 +212,8 @@ github.com/problame/go-netssh v0.0.0-20191026123024-f34099f4f6b1 h1:HH8yzlaZq/A8
github.com/problame/go-netssh v0.0.0-20191026123024-f34099f4f6b1/go.mod h1:JRs3nyBjvOv/9YHC+Vlw9z1Jfzl5s5t0BNnTzmclj1c=
github.com/problame/go-netssh v0.0.0-20191209123953-18d8aa6923c7 h1:Oik8tLrLhoMq4fduDRuNNOAQ+q0M0dXkjAYLUf4+mAc=
github.com/problame/go-netssh v0.0.0-20191209123953-18d8aa6923c7/go.mod h1:Ba6RaFpK1+IHWs1wLZ6sCBuXkt4iAVLeOG5GinXHusM=
github.com/problame/go-netssh v0.0.0-20200601114649-26439f9f0dc5 h1:1eSrO2WAeSXjMol8WRKW9LekL1252VIMaKQwWkmEdvs=
github.com/problame/go-netssh v0.0.0-20200601114649-26439f9f0dc5/go.mod h1:Ba6RaFpK1+IHWs1wLZ6sCBuXkt4iAVLeOG5GinXHusM=
github.com/prometheus/client_golang v0.0.0-20180410130117-e11c6ff8170b/go.mod h1:7SWBe2y4D6OKWSNQJUaRYU/AaXPKyh/dDVn+NZz0KFw=
github.com/prometheus/client_golang v0.9.1/go.mod h1:7SWBe2y4D6OKWSNQJUaRYU/AaXPKyh/dDVn+NZz0KFw=
github.com/prometheus/client_golang v1.0.0/go.mod h1:db9x61etRT2tGnBNRi70OPL5FsnadC4Ky3P0J6CfImo=
+1 -1
View File
@@ -82,7 +82,7 @@ func (l Level) String() string {
case Error:
return "error"
default:
return string(l)
return fmt.Sprintf("unknown level %d", l)
}
}
+9 -28
View File
@@ -2,9 +2,8 @@ package tests
import (
"fmt"
"strings"
"github.com/kr/pretty"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/zfs"
)
@@ -18,9 +17,7 @@ func BatchDestroy(ctx *platformtest.Context) {
+ "foo bar@1"
+ "foo bar@2"
+ "foo bar@3"
+ "foo bar@4"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@2"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@4"
`)
reqs := []*zfs.DestroySnapOp{
@@ -34,40 +31,24 @@ func BatchDestroy(ctx *platformtest.Context) {
Filesystem: fmt.Sprintf("%s/foo bar", ctx.RootDataset),
Name: "2",
},
&zfs.DestroySnapOp{
ErrOut: new(error),
Filesystem: fmt.Sprintf("%s/foo bar", ctx.RootDataset),
Name: "non existent",
},
&zfs.DestroySnapOp{
ErrOut: new(error),
Filesystem: fmt.Sprintf("%s/foo bar", ctx.RootDataset),
Name: "4",
},
}
zfs.ZFSDestroyFilesystemVersions(ctx, reqs)
pretty.Println(reqs)
if *reqs[0].ErrOut != nil {
panic("expecting no error")
}
eBusy, ok := (*reqs[1].ErrOut).(*zfs.ErrDestroySnapshotDatasetIsBusy)
require.True(ctx, ok)
require.Equal(ctx, reqs[1].Name, eBusy.Name)
require.Nil(ctx, *reqs[2].ErrOut, "destroying non-existent snap is not an error (idempotence)")
eBusy, ok = (*reqs[3].ErrOut).(*zfs.ErrDestroySnapshotDatasetIsBusy)
require.True(ctx, ok)
require.Equal(ctx, reqs[3].Name, eBusy.Name)
err := (*reqs[1].ErrOut).Error()
if !strings.Contains(err, fmt.Sprintf("%s/foo bar@2", ctx.RootDataset)) {
panic(fmt.Sprintf("expecting error about being unable to destroy @2: %T\n%s", err, err))
}
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
!N "foo bar@3"
!E "foo bar@1"
!E "foo bar@2"
!E "foo bar@4"
R zfs release zrepl_platformtest "${ROOTDS}/foo bar@2"
- "foo bar@2"
- "foo bar@1"
- "foo bar"
`)
}
+8 -2
View File
@@ -14,13 +14,19 @@ var Cases = []Case{BatchDestroy,
ListFilesystemVersionsUserrefs,
ListFilesystemVersionsZeroExistIsNotAnError,
ListFilesystemsNoFilter,
Pruner2NotReplicated,
ReceiveForceIntoEncryptedErr,
ReceiveForceRollbackWorksUnencrypted,
ReplicationFailingInitialParentProhibitsChildReplication,
ReplicationIncrementalCleansUpStaleAbstractionsWithCacheOnSecondReplication,
ReplicationIncrementalCleansUpStaleAbstractionsWithoutCacheOnSecondReplication,
ReplicationIncrementalDestroysStepHoldsIffIncrementalStepHoldsAreDisabledButStepHoldsExist,
ReplicationIncrementalIsPossibleIfCommonSnapshotIsDestroyed,
ReplicationIsResumableFullSend,
ReplicationIsResumableFullSend__both_GuaranteeResumability,
ReplicationIsResumableFullSend__initial_GuaranteeIncrementalReplication_incremental_GuaranteeIncrementalReplication,
ReplicationIsResumableFullSend__initial_GuaranteeResumability_incremental_GuaranteeIncrementalReplication,
ReplicationReceiverErrorWhileStillSending,
ReplicationStepCompletedLostBehavior__GuaranteeIncrementalReplication,
ReplicationStepCompletedLostBehavior__GuaranteeResumability,
ResumableRecvAndTokenHandling,
ResumeTokenParsing,
SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden,
-331
View File
@@ -1,331 +0,0 @@
package tests
import (
"encoding/json"
"fmt"
"time"
"github.com/prometheus/client_golang/prometheus"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/daemon/pruner"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/zfs"
)
func PrunerNotReplicated(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
+ "foo bar@1"
+ "foo bar@2"
+ "foo bar@3"
+ "foo bar@4"
+ "foo bar@5"
`)
c, err := config.ParseConfigBytes([]byte(fmt.Sprintf(`
jobs:
- name: prunetest
type: push
filesystems: {
"%s/foo bar<": true
}
connect:
type: tcp
address: 255.255.255.255:255
snapshotting:
type: manual
pruning:
keep_sender:
- type: not_replicated
- type: last_n
count: 1
keep_receiver:
- type: last_n
count: 2
`, ctx.RootDataset)))
require.NoError(ctx, err)
pushJob := c.Jobs[0].Ret.(*config.PushJob)
dummyHistVec := prometheus.NewHistogramVec(prometheus.HistogramOpts{
Namespace: "foo",
Subsystem: "foo",
Name: "foo",
Help: "foo",
}, []string{"foo"})
prunerFactory, err := pruner.NewPrunerFactory(pushJob.Pruning, dummyHistVec)
require.NoError(ctx, err)
senderJid := endpoint.MustMakeJobID("sender-job")
fsfilter, err := filters.DatasetMapFilterFromConfig(pushJob.Filesystems)
require.NoError(ctx, err)
sender := endpoint.NewSender(endpoint.SenderConfig{
FSF: fsfilter,
Encrypt: &zfs.NilBool{
B: false,
},
JobID: senderJid,
})
fs := ctx.RootDataset + "/foo bar"
// create a replication cursor to make pruning work at all
_, err = endpoint.CreateReplicationCursor(ctx, fs, fsversion(ctx, fs, "@2"), senderJid)
require.NoError(ctx, err)
p := prunerFactory.BuildSenderPruner(ctx, sender, sender)
p.Prune()
report := p.Report()
reportJSON, err := json.MarshalIndent(report, "", " ")
require.NoError(ctx, err)
ctx.Logf("%s\n", string(reportJSON))
require.Equal(ctx, pruner.Done.String(), report.State)
require.Len(ctx, report.Completed, 1)
fsReport := report.Completed[0]
require.Equal(ctx, fs, fsReport.Filesystem)
require.Empty(ctx, fsReport.SkipReason)
require.Empty(ctx, fsReport.LastError)
require.Len(ctx, fsReport.DestroyList, 1)
require.Equal(ctx, fsReport.DestroyList[0], pruner.SnapshotReport{
Name: "1",
Replicated: true,
Date: fsReport.DestroyList[0].Date,
})
}
func PrunerNoKeepNotReplicatedNoKeepStepHoldConvertsAnyStepHoldToBookmark(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
+ "foo bar@1"
+ "foo bar@2"
+ "foo bar@3"
+ "foo bar@4"
+ "foo bar@5"
`)
c, err := config.ParseConfigBytes([]byte(fmt.Sprintf(`
jobs:
- name: prunetest
type: push
filesystems: {
"%s/foo bar<": true
}
connect:
type: tcp
address: 255.255.255.255:255
snapshotting:
type: manual
pruning:
keep_sender:
- type: last_n
count: 1
keep_receiver:
- type: last_n
count: 2
`, ctx.RootDataset)))
require.NoError(ctx, err)
pushJob := c.Jobs[0].Ret.(*config.PushJob)
dummyHistVec := prometheus.NewHistogramVec(prometheus.HistogramOpts{
Namespace: "foo",
Subsystem: "foo",
Name: "foo",
Help: "foo",
}, []string{"foo"})
prunerFactory, err := pruner.NewPrunerFactory(pushJob.Pruning, dummyHistVec)
require.NoError(ctx, err)
senderJid := endpoint.MustMakeJobID("sender-job")
fsfilter, err := filters.DatasetMapFilterFromConfig(pushJob.Filesystems)
require.NoError(ctx, err)
sender := endpoint.NewSender(endpoint.SenderConfig{
FSF: fsfilter,
Encrypt: &zfs.NilBool{
B: false,
},
JobID: senderJid,
})
fs := ctx.RootDataset + "/foo bar"
// create a replication cursor to make pruning work at all
_, err = endpoint.CreateReplicationCursor(ctx, fs, fsversion(ctx, fs, "@2"), senderJid)
require.NoError(ctx, err)
// create step holds for the incremental @2->@3
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@2"), senderJid)
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@3"), senderJid)
// create step holds for another job
otherJid := endpoint.MustMakeJobID("other-job")
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@2"), otherJid)
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@3"), otherJid)
p := prunerFactory.BuildSenderPruner(ctx, sender, sender)
p.Prune()
report := p.Report()
reportJSON, err := json.MarshalIndent(report, "", " ")
require.NoError(ctx, err)
ctx.Logf("%s\n", string(reportJSON))
require.Equal(ctx, pruner.Done.String(), report.State)
require.Len(ctx, report.Completed, 1)
fsReport := report.Completed[0]
require.Equal(ctx, fs, fsReport.Filesystem)
require.Empty(ctx, fsReport.SkipReason)
require.Empty(ctx, fsReport.LastError)
expectDestroyList := []pruner.SnapshotReport{
{
Name: "1",
Replicated: true,
},
{
Name: "2",
Replicated: true,
},
{
Name: "3",
Replicated: true,
},
{
Name: "4",
Replicated: true,
},
}
for _, d := range fsReport.DestroyList {
d.Date = time.Time{}
}
require.Subset(ctx, fsReport.DestroyList, expectDestroyList)
}
func PrunerNoKeepNotReplicatedButKeepStepHold(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
+ "foo bar@1"
+ "foo bar@2"
+ "foo bar@3"
+ "foo bar@4"
+ "foo bar@5"
`)
c, err := config.ParseConfigBytes([]byte(fmt.Sprintf(`
jobs:
- name: prunetest
type: push
filesystems: {
"%s/foo bar<": true
}
connect:
type: tcp
address: 255.255.255.255:255
snapshotting:
type: manual
pruning:
keep_sender:
- type: step_holds
- type: last_n
count: 1
keep_receiver:
- type: last_n
count: 2
`, ctx.RootDataset)))
require.NoError(ctx, err)
pushJob := c.Jobs[0].Ret.(*config.PushJob)
dummyHistVec := prometheus.NewHistogramVec(prometheus.HistogramOpts{
Namespace: "foo",
Subsystem: "foo",
Name: "foo",
Help: "foo",
}, []string{"foo"})
prunerFactory, err := pruner.NewPrunerFactory(pushJob.Pruning, dummyHistVec)
require.NoError(ctx, err)
senderJid := endpoint.MustMakeJobID("sender-job")
fsfilter, err := filters.DatasetMapFilterFromConfig(pushJob.Filesystems)
require.NoError(ctx, err)
sender := endpoint.NewSender(endpoint.SenderConfig{
FSF: fsfilter,
Encrypt: &zfs.NilBool{
B: false,
},
JobID: senderJid,
})
fs := ctx.RootDataset + "/foo bar"
// create a replication cursor to make pruning work at all
_, err = endpoint.CreateReplicationCursor(ctx, fs, fsversion(ctx, fs, "@2"), senderJid)
require.NoError(ctx, err)
// create step holds for the incremental @2->@3
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@2"), senderJid)
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@3"), senderJid)
// create step holds for another job
otherJid := endpoint.MustMakeJobID("other-job")
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@2"), otherJid)
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@3"), otherJid)
p := prunerFactory.BuildSenderPruner(ctx, sender, sender)
p.Prune()
report := p.Report()
reportJSON, err := json.MarshalIndent(report, "", " ")
require.NoError(ctx, err)
ctx.Logf("%s\n", string(reportJSON))
require.Equal(ctx, pruner.Done.String(), report.State)
require.Len(ctx, report.Completed, 1)
fsReport := report.Completed[0]
require.Equal(ctx, fs, fsReport.Filesystem)
require.Empty(ctx, fsReport.SkipReason)
require.Empty(ctx, fsReport.LastError)
expectDestroyList := []pruner.SnapshotReport{
{
Name: "1",
Replicated: true,
},
{
Name: "4",
Replicated: true,
},
}
for _, d := range fsReport.DestroyList {
d.Date = time.Time{}
}
require.Subset(ctx, fsReport.DestroyList, expectDestroyList)
}
-137
View File
@@ -1,137 +0,0 @@
package tests
import (
"encoding/json"
"fmt"
"time"
"github.com/kr/pretty"
"github.com/stretchr/testify/require"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/daemon/filters"
"github.com/zrepl/zrepl/daemon/pruner.v2"
"github.com/zrepl/zrepl/endpoint"
"github.com/zrepl/zrepl/platformtest"
"github.com/zrepl/zrepl/pruning"
"github.com/zrepl/zrepl/zfs"
)
func Pruner2NotReplicated(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
DESTROYROOT
CREATEROOT
+ "foo bar"
+ "foo bar@1"
+ "foo bar@2"
+ "foo bar@3"
+ "foo bar@4"
+ "foo bar@5"
`)
fs := ctx.RootDataset + "/foo bar"
senderJid := endpoint.MustMakeJobID("sender-job")
otherJid1 := endpoint.MustMakeJobID("other-job-1")
otherJid2 := endpoint.MustMakeJobID("other-job-2")
// create step holds for the incremental @2->@3
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@2"), senderJid)
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@3"), senderJid)
// create step holds for other-job-1 @2 -> @3
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@2"), otherJid1)
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@3"), otherJid1)
// create step hold for other-job-2 @1 (will be pruned)
endpoint.HoldStep(ctx, fs, fsversion(ctx, fs, "@1"), otherJid2)
c, err := config.ParseConfigBytes([]byte(fmt.Sprintf(`
jobs:
- name: prunetest
type: push
filesystems: {
"%s/foo bar": true
}
connect:
type: tcp
address: 255.255.255.255:255
snapshotting:
type: manual
pruning:
keep_sender:
#- type: not_replicated
- type: step_holds
- type: last_n
count: 1
keep_receiver:
- type: last_n
count: 2
`, ctx.RootDataset)))
require.NoError(ctx, err)
pushJob := c.Jobs[0].Ret.(*config.PushJob)
require.NoError(ctx, err)
fsfilter, err := filters.DatasetMapFilterFromConfig(pushJob.Filesystems)
require.NoError(ctx, err)
matchedFilesystems, err := zfs.ZFSListMapping(ctx, fsfilter)
ctx.Logf("%s", pretty.Sprint(matchedFilesystems))
require.NoError(ctx, err)
require.Len(ctx, matchedFilesystems, 1)
sideSender := pruner.NewSideSender(senderJid)
keepRules, err := pruning.RulesFromConfig(senderJid, pushJob.Pruning.KeepSender)
require.NoError(ctx, err)
p := pruner.NewPruner(fsfilter, senderJid, sideSender, keepRules)
runDone := make(chan *pruner.Report)
go func() {
runDone <- p.Run(ctx)
}()
var report *pruner.Report
// concurrency stress
out:
for {
select {
case <-time.After(10 * time.Millisecond):
p.Report(ctx)
case report = <-runDone:
break out
}
}
ctx.Logf("%s\n", pretty.Sprint(report))
reportJSON, err := json.MarshalIndent(report, "", " ")
require.NoError(ctx, err)
ctx.Logf("%s\n", string(reportJSON))
ctx.FailNow()
// fs := ctx.RootDataset + "/foo bar"
// // create a replication cursor to make pruning work at all
// _, err = endpoint.CreateReplicationCursor(ctx, fs, fsversion(ctx, fs, "@2"), senderJid)
// require.NoError(ctx, err)
// p := prunerFactory.BuildSenderPruner(ctx, sender, sender)
// p.Prune()
// report := p.Report()
// require.Equal(ctx, pruner.Done.String(), report.State)
// require.Len(ctx, report.Completed, 1)
// fsReport := report.Completed[0]
// require.Equal(ctx, fs, fsReport.Filesystem)
// require.Empty(ctx, fsReport.SkipReason)
// require.Empty(ctx, fsReport.LastError)
// require.Len(ctx, fsReport.DestroyList, 1)
// require.Equal(ctx, fsReport.DestroyList[0], pruner.SnapshotReport{
// Name: "1",
// Replicated: true,
// Date: fsReport.DestroyList[0].Date,
// })
}
+549 -29
View File
@@ -4,7 +4,9 @@ import (
"context"
"fmt"
"io"
"os"
"path"
"sort"
"github.com/kr/pretty"
"github.com/stretchr/testify/require"
@@ -26,10 +28,13 @@ import (
// of a new sender and receiver instance and one blocking invocation
// of the replication engine without encryption
type replicationInvocation struct {
sjid, rjid endpoint.JobID
sfs string
rfsRoot string
interceptSender func(e *endpoint.Sender) logic.Sender
sjid, rjid endpoint.JobID
sfs string
sfilter *filters.DatasetMapFilter
rfsRoot string
interceptSender func(e *endpoint.Sender) logic.Sender
interceptReceiver func(e *endpoint.Receiver) logic.Receiver
guarantee pdu.ReplicationConfigProtection
}
func (i replicationInvocation) Do(ctx *platformtest.Context) *report.Report {
@@ -37,23 +42,33 @@ func (i replicationInvocation) Do(ctx *platformtest.Context) *report.Report {
if i.interceptSender == nil {
i.interceptSender = func(e *endpoint.Sender) logic.Sender { return e }
}
if i.interceptReceiver == nil {
i.interceptReceiver = func(e *endpoint.Receiver) logic.Receiver { return e }
}
sfilter := filters.NewDatasetMapFilter(1, true)
err := sfilter.Add(i.sfs, "ok")
require.NoError(ctx, err)
if i.sfs != "" && i.sfilter != nil || i.sfs == "" && i.sfilter == nil {
panic("either sfs or sfilter must be set")
}
if i.sfilter == nil {
i.sfilter = filters.NewDatasetMapFilter(1, true)
err := i.sfilter.Add(i.sfs, "ok")
require.NoError(ctx, err)
}
sender := i.interceptSender(endpoint.NewSender(endpoint.SenderConfig{
FSF: sfilter.AsFilter(),
FSF: i.sfilter.AsFilter(),
Encrypt: &zfs.NilBool{B: false},
JobID: i.sjid,
}))
receiver := endpoint.NewReceiver(endpoint.ReceiverConfig{
receiver := i.interceptReceiver(endpoint.NewReceiver(endpoint.ReceiverConfig{
JobID: i.rjid,
AppendClientIdentity: false,
RootWithoutClientComponent: mustDatasetPath(i.rfsRoot),
UpdateLastReceivedHold: true,
})
}))
plannerPolicy := logic.PlannerPolicy{
EncryptedSend: logic.TriFromBool(false),
ReplicationConfig: pdu.ReplicationConfig{
Protection: &i.guarantee,
},
}
report, wait := replication.Do(
@@ -86,10 +101,11 @@ func ReplicationIncrementalIsPossibleIfCommonSnapshotIsDestroyed(ctx *platformte
snap1 := fsversion(ctx, sfs, "@1")
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeResumability),
}
rfs := rep.ReceiveSideFilesystem()
@@ -149,10 +165,11 @@ func implReplicationIncrementalCleansUpStaleAbstractions(ctx *platformtest.Conte
rfsRoot := ctx.RootDataset + "/receiver"
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeResumability),
}
rfs := rep.ReceiveSideFilesystem()
@@ -178,7 +195,7 @@ func implReplicationIncrementalCleansUpStaleAbstractions(ctx *platformtest.Conte
require.NoError(ctx, err)
require.Contains(ctx, holds, expectRjidHoldTag)
// create artifical stale replication cursors
// create artifical stale replication cursors & step holds
createArtificalStaleAbstractions := func(jobId endpoint.JobID) []endpoint.Abstraction {
snap2Cursor, err := endpoint.CreateReplicationCursor(ctx, sfs, snap2, jobId) // no shadow
require.NoError(ctx, err)
@@ -202,7 +219,7 @@ func implReplicationIncrementalCleansUpStaleAbstractions(ctx *platformtest.Conte
snap5 := fsversion(ctx, sfs, "@5")
if invalidateCacheBeforeSecondReplication {
endpoint.SendAbstractionsCacheInvalidate(sfs)
endpoint.AbstractionsCacheInvalidate(sfs)
}
// do another replication
@@ -322,7 +339,59 @@ func (s *PartialSender) Send(ctx context.Context, r *pdu.SendReq) (r1 *pdu.SendR
return r1, r2, r3
}
func ReplicationIsResumableFullSend(ctx *platformtest.Context) {
func ReplicationIsResumableFullSend__both_GuaranteeResumability(ctx *platformtest.Context) {
setup := replicationIsResumableFullSendSetup{
protection: pdu.ReplicationConfigProtection{
Initial: pdu.ReplicationGuaranteeKind_GuaranteeResumability,
Incremental: pdu.ReplicationGuaranteeKind_GuaranteeResumability,
},
expectDatasetIsBusyErrorWhenDestroySnapshotWhilePartiallyReplicated: true,
expectAllThreeSnapshotsToThreeBePresentAfterLoop: true,
expectNoSnapshotsOnReceiverAfterLoop: false,
}
implReplicationIsResumableFullSend(ctx, setup)
}
func ReplicationIsResumableFullSend__initial_GuaranteeResumability_incremental_GuaranteeIncrementalReplication(ctx *platformtest.Context) {
setup := replicationIsResumableFullSendSetup{
protection: pdu.ReplicationConfigProtection{
Initial: pdu.ReplicationGuaranteeKind_GuaranteeResumability,
Incremental: pdu.ReplicationGuaranteeKind_GuaranteeIncrementalReplication,
},
expectDatasetIsBusyErrorWhenDestroySnapshotWhilePartiallyReplicated: true,
expectAllThreeSnapshotsToThreeBePresentAfterLoop: true,
expectNoSnapshotsOnReceiverAfterLoop: false,
}
implReplicationIsResumableFullSend(ctx, setup)
}
func ReplicationIsResumableFullSend__initial_GuaranteeIncrementalReplication_incremental_GuaranteeIncrementalReplication(ctx *platformtest.Context) {
setup := replicationIsResumableFullSendSetup{
protection: pdu.ReplicationConfigProtection{
Initial: pdu.ReplicationGuaranteeKind_GuaranteeIncrementalReplication,
Incremental: pdu.ReplicationGuaranteeKind_GuaranteeIncrementalReplication,
},
expectDatasetIsBusyErrorWhenDestroySnapshotWhilePartiallyReplicated: false,
expectAllThreeSnapshotsToThreeBePresentAfterLoop: false,
expectNoSnapshotsOnReceiverAfterLoop: true,
}
implReplicationIsResumableFullSend(ctx, setup)
}
type replicationIsResumableFullSendSetup struct {
protection pdu.ReplicationConfigProtection
expectDatasetIsBusyErrorWhenDestroySnapshotWhilePartiallyReplicated bool
expectAllThreeSnapshotsToThreeBePresentAfterLoop bool
expectNoSnapshotsOnReceiverAfterLoop bool
}
func implReplicationIsResumableFullSend(ctx *platformtest.Context, setup replicationIsResumableFullSendSetup) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
@@ -353,7 +422,9 @@ func ReplicationIsResumableFullSend(ctx *platformtest.Context) {
interceptSender: func(e *endpoint.Sender) logic.Sender {
return &PartialSender{Sender: e, failAfterByteCount: 1 << 20}
},
guarantee: setup.protection,
}
rfs := rep.ReceiveSideFilesystem()
for i := 2; i < 10; i++ {
@@ -367,8 +438,11 @@ func ReplicationIsResumableFullSend(ctx *platformtest.Context) {
// and we wrote dummy data 1<<22 bytes, thus at least
// for the first 4 times this should not be possible
// due to step holds
require.Error(ctx, err)
require.Contains(ctx, err.Error(), "dataset is busy")
if setup.expectDatasetIsBusyErrorWhenDestroySnapshotWhilePartiallyReplicated {
ctx.Logf("i=%v", i)
require.Error(ctx, err)
require.Contains(ctx, err.Error(), "dataset is busy")
}
}
// and create some additional snapshots that could
@@ -387,10 +461,456 @@ func ReplicationIsResumableFullSend(ctx *platformtest.Context) {
}
}
// make sure all the filesystem versions we created
// were replicated by the replication loop
_ = fsversion(ctx, rfs, "@1")
_ = fsversion(ctx, rfs, "@2")
_ = fsversion(ctx, rfs, "@3")
if setup.expectAllThreeSnapshotsToThreeBePresentAfterLoop {
// make sure all the filesystem versions we created
// were replicated by the replication loop
_ = fsversion(ctx, rfs, "@1")
_ = fsversion(ctx, rfs, "@2")
_ = fsversion(ctx, rfs, "@3")
}
if setup.expectNoSnapshotsOnReceiverAfterLoop {
versions, err := zfs.ZFSListFilesystemVersions(ctx, mustDatasetPath(rfs), zfs.ListFilesystemVersionsOptions{})
require.NoError(ctx, err)
require.Empty(ctx, versions)
}
}
func ReplicationIncrementalDestroysStepHoldsIffIncrementalStepHoldsAreDisabledButStepHoldsExist(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
+ "sender"
+ "receiver"
R zfs create -p "${ROOTDS}/receiver/${ROOTDS}"
`)
sjid := endpoint.MustMakeJobID("sender-job")
rjid := endpoint.MustMakeJobID("receiver-job")
sfs := ctx.RootDataset + "/sender"
rfsRoot := ctx.RootDataset + "/receiver"
// fully replicate snapshots @1
{
mustSnapshot(ctx, sfs+"@1")
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeResumability),
}
rfs := rep.ReceiveSideFilesystem()
report := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(report))
// assert this worked (not the main subject of the test)
_ = fsversion(ctx, rfs, "@1")
}
// create a large snapshot @2
{
sfsmp, err := zfs.ZFSGetMountpoint(ctx, sfs)
require.NoError(ctx, err)
require.True(ctx, sfsmp.Mounted)
writeDummyData(path.Join(sfsmp.Mountpoint, "dummy.data"), 1<<22)
mustSnapshot(ctx, sfs+"@2")
}
snap2sfs := fsversion(ctx, sfs, "@2")
// partially replicate snapshots @2 with step holds enabled
// to effect a step-holds situation
{
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeResumability), // !
interceptSender: func(e *endpoint.Sender) logic.Sender {
return &PartialSender{Sender: e, failAfterByteCount: 1 << 20}
},
}
rfs := rep.ReceiveSideFilesystem()
report := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(report))
// assert this partial receive worked
_, err := zfs.ZFSGetFilesystemVersion(ctx, rfs+"@2")
ctx.Logf("%T %s", err, err)
_, notFullyReceived := err.(*zfs.DatasetDoesNotExist)
require.True(ctx, notFullyReceived)
// assert step holds are in place
abs, absErrs, err := endpoint.ListAbstractions(ctx, endpoint.ListZFSHoldsAndBookmarksQuery{
FS: endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &sfs,
},
Concurrency: 1,
JobID: &sjid,
What: endpoint.AbstractionTypeSet{endpoint.AbstractionStepHold: true},
})
require.NoError(ctx, err)
require.Empty(ctx, absErrs)
require.Len(ctx, abs, 2)
sort.Slice(abs, func(i, j int) bool {
return abs[i].GetCreateTXG() < abs[j].GetCreateTXG()
})
require.True(ctx, zfs.FilesystemVersionEqualIdentity(abs[0].GetFilesystemVersion(), fsversion(ctx, sfs, "@1")))
require.True(ctx, zfs.FilesystemVersionEqualIdentity(abs[1].GetFilesystemVersion(), fsversion(ctx, sfs, "@2")))
}
//
// end of test setup
//
// retry replication with incremental step holds disabled (set to bookmarks-only in this case)
// - replication should not fail due to holds-related stuff
// - replication should fail intermittently due to partial sender being fully read
// - the partial sender is 1/4th the length of the stream, thus expect
// successful replication after 5 more attempts
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeIncrementalReplication), // !
interceptSender: func(e *endpoint.Sender) logic.Sender {
return &PartialSender{Sender: e, failAfterByteCount: 1 << 20}
},
}
rfs := rep.ReceiveSideFilesystem()
for i := 0; ; i++ {
require.True(ctx, i < 5)
report := rep.Do(ctx)
ctx.Logf("retry run=%v\n%s", i, pretty.Sprint(report))
_, err := zfs.ZFSGetFilesystemVersion(ctx, rfs+"@2")
if err == nil {
break
}
}
// assert replication worked
fsversion(ctx, rfs, "@2")
// assert no step holds exist
abs, absErrs, err := endpoint.ListAbstractions(ctx, endpoint.ListZFSHoldsAndBookmarksQuery{
FS: endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &sfs,
},
Concurrency: 1,
JobID: &sjid,
What: endpoint.AbstractionTypeSet{endpoint.AbstractionStepHold: true},
})
require.NoError(ctx, err)
require.Empty(ctx, absErrs)
require.Len(ctx, abs, 0)
// assert that the replication cursor bookmark exists
abs, absErrs, err = endpoint.ListAbstractions(ctx, endpoint.ListZFSHoldsAndBookmarksQuery{
FS: endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &sfs,
},
Concurrency: 1,
JobID: &sjid,
What: endpoint.AbstractionTypeSet{endpoint.AbstractionReplicationCursorBookmarkV2: true},
})
require.NoError(ctx, err)
require.Empty(ctx, absErrs)
require.Len(ctx, abs, 1)
require.True(ctx, zfs.FilesystemVersionEqualIdentity(abs[0].GetFilesystemVersion(), snap2sfs))
}
func ReplicationStepCompletedLostBehavior__GuaranteeResumability(ctx *platformtest.Context) {
scenario := replicationStepCompletedLostBehavior_impl(ctx, pdu.ReplicationGuaranteeKind_GuaranteeResumability)
require.Error(ctx, scenario.deleteSfs1Err, "protected by holds")
require.Contains(ctx, scenario.deleteSfs1Err.Error(), "dataset is busy")
require.Error(ctx, scenario.deleteSfs2Err, "protected by holds")
require.Contains(ctx, scenario.deleteSfs2Err.Error(), "dataset is busy")
require.Nil(ctx, scenario.finalReport.Error())
_ = fsversion(ctx, scenario.rfs, "@3") // @3 ade it to the other side
}
func ReplicationStepCompletedLostBehavior__GuaranteeIncrementalReplication(ctx *platformtest.Context) {
scenario := replicationStepCompletedLostBehavior_impl(ctx, pdu.ReplicationGuaranteeKind_GuaranteeIncrementalReplication)
require.NoError(ctx, scenario.deleteSfs1Err, "not protected by holds")
require.NoError(ctx, scenario.deleteSfs2Err, "not protected by holds")
// step bookmarks should protect against loss of StepCompleted message
require.Nil(ctx, scenario.finalReport.Error())
_ = fsversion(ctx, scenario.rfs, "@3") // @3 ade it to the other side
}
type FailSendCompletedSender struct {
*endpoint.Sender
}
var _ logic.Sender = (*FailSendCompletedSender)(nil)
func (p *FailSendCompletedSender) SendCompleted(ctx context.Context, r *pdu.SendCompletedReq) (*pdu.SendCompletedRes, error) {
return nil, fmt.Errorf("[mock] SendCompleted not delivered to actual endpoint")
}
type replicationStepCompletedLost_scenario struct {
rfs string
deleteSfs1Err, deleteSfs2Err error
finalReport *report.FilesystemReport
}
func replicationStepCompletedLostBehavior_impl(ctx *platformtest.Context, guaranteeKind pdu.ReplicationGuaranteeKind) *replicationStepCompletedLost_scenario {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
+ "sender"
+ "receiver"
R zfs create -p "${ROOTDS}/receiver/${ROOTDS}"
`)
sjid := endpoint.MustMakeJobID("sender-job")
rjid := endpoint.MustMakeJobID("receiver-job")
sfs := ctx.RootDataset + "/sender"
rfsRoot := ctx.RootDataset + "/receiver"
// fully replicate snapshots @1
{
mustSnapshot(ctx, sfs+"@1")
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(guaranteeKind),
}
rfs := rep.ReceiveSideFilesystem()
report := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(report))
// assert this worked (not the main subject of the test)
_ = fsversion(ctx, rfs, "@1")
}
// create a second snapshot @2
mustSnapshot(ctx, sfs+"@2")
// fake loss of stepcompleted message
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(guaranteeKind),
interceptSender: func(e *endpoint.Sender) logic.Sender {
return &FailSendCompletedSender{e}
},
}
rfs := rep.ReceiveSideFilesystem()
report := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(report))
// assert the replication worked
_ = fsversion(ctx, rfs, "@2")
// and that we hold it using a last-received-hold
abs, absErrs, err := endpoint.ListAbstractions(ctx, endpoint.ListZFSHoldsAndBookmarksQuery{
FS: endpoint.ListZFSHoldsAndBookmarksQueryFilesystemFilter{
FS: &rfs,
},
Concurrency: 1,
JobID: &rjid,
What: endpoint.AbstractionTypeSet{endpoint.AbstractionLastReceivedHold: true},
})
require.NoError(ctx, err)
require.Empty(ctx, absErrs)
require.Len(ctx, abs, 1)
require.True(ctx, zfs.FilesystemVersionEqualIdentity(abs[0].GetFilesystemVersion(), fsversion(ctx, rfs, "@2")))
// now try to delete @2 on the sender, this should work because don't have step holds on it
deleteSfs2Err := zfs.ZFSDestroy(ctx, sfs+"@2")
// defer check to caller
// and create a new snapshot on the sender
mustSnapshot(ctx, sfs+"@3")
// now we have: sender @1, @3
// recver @1, @2
// delete @1 on both sides to demonstrate that, if we didn't have bookmarks, we would be out of sync
deleteSfs1Err := zfs.ZFSDestroy(ctx, sfs+"@1")
// defer check to caller
err = zfs.ZFSDestroy(ctx, rfs+"@1")
require.NoError(ctx, err)
// attempt replication and return the filesystem report report
{
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(guaranteeKind),
}
report := rep.Do(ctx)
ctx.Logf("expecting failure:\n%s", pretty.Sprint(report))
require.Len(ctx, report.Attempts, 1)
require.Len(ctx, report.Attempts[0].Filesystems, 1)
return &replicationStepCompletedLost_scenario{
rfs: rfs,
deleteSfs1Err: deleteSfs1Err,
deleteSfs2Err: deleteSfs2Err,
finalReport: report.Attempts[0].Filesystems[0],
}
}
}
type ErroringReceiver struct {
recvErr error
*endpoint.Receiver
}
func (r *ErroringReceiver) Receive(ctx context.Context, req *pdu.ReceiveReq, stream io.ReadCloser) (*pdu.ReceiveRes, error) {
return nil, r.recvErr
}
type NeverEndingSender struct {
*endpoint.Sender
}
func (s *NeverEndingSender) Send(ctx context.Context, req *pdu.SendReq) (r *pdu.SendRes, stream io.ReadCloser, _ error) {
stream = nil
r = &pdu.SendRes{
UsedResumeToken: false,
ExpectedSize: 1 << 30,
}
if req.DryRun {
return r, stream, nil
}
dz, err := os.Open("/dev/zero")
if err != nil {
panic(err)
}
return r, dz, nil
}
func ReplicationReceiverErrorWhileStillSending(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
+ "sender"
+ "sender@1"
+ "receiver"
R zfs create -p "${ROOTDS}/receiver/${ROOTDS}"
`)
sjid := endpoint.MustMakeJobID("sender-job")
rjid := endpoint.MustMakeJobID("receiver-job")
sfs := ctx.RootDataset + "/sender"
rfsRoot := ctx.RootDataset + "/receiver"
mockRecvErr := fmt.Errorf("YiezahK3thie8ahKiel5sah2uugei2ize1yi8feivuu7musoat")
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfs: sfs,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeNothing),
interceptReceiver: func(r *endpoint.Receiver) logic.Receiver {
return &ErroringReceiver{recvErr: mockRecvErr, Receiver: r}
},
interceptSender: func(s *endpoint.Sender) logic.Sender {
return &NeverEndingSender{s}
},
}
// first replication
report := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(report))
require.Len(ctx, report.Attempts, 1)
attempt := report.Attempts[0]
require.Nil(ctx, attempt.PlanError)
require.Len(ctx, attempt.Filesystems, 1)
afs := attempt.Filesystems[0]
require.Nil(ctx, afs.PlanError)
require.Len(ctx, afs.Steps, 1)
require.Nil(ctx, afs.PlanError)
require.NotNil(ctx, afs.StepError)
require.Contains(ctx, afs.StepError.Err, mockRecvErr.Error())
}
func ReplicationFailingInitialParentProhibitsChildReplication(ctx *platformtest.Context) {
platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
CREATEROOT
+ "sender"
+ "sender/a"
+ "sender/a/child"
+ "sender/aa"
+ "receiver"
R zfs create -p "${ROOTDS}/receiver/${ROOTDS}"
R zfs snapshot -r ${ROOTDS}/sender@initial
`)
sjid := endpoint.MustMakeJobID("sender-job")
rjid := endpoint.MustMakeJobID("receiver-job")
fsA := ctx.RootDataset + "/sender/a"
fsAChild := ctx.RootDataset + "/sender/a/child"
fsAA := ctx.RootDataset + "/sender/aa"
sfilter := filters.NewDatasetMapFilter(3, true)
mustAddToSFilter := func(fs string) {
err := sfilter.Add(fs, "ok")
require.NoError(ctx, err)
}
mustAddToSFilter(fsA)
mustAddToSFilter(fsAChild)
mustAddToSFilter(fsAA)
rfsRoot := ctx.RootDataset + "/receiver"
mockRecvErr := fmt.Errorf("yifae4ohPhaquaes0hohghiep9oufie4roo7quoWooluaj2ee8")
rep := replicationInvocation{
sjid: sjid,
rjid: rjid,
sfilter: sfilter,
rfsRoot: rfsRoot,
guarantee: *pdu.ReplicationConfigProtectionWithKind(pdu.ReplicationGuaranteeKind_GuaranteeNothing),
interceptReceiver: func(r *endpoint.Receiver) logic.Receiver {
return &ErroringReceiver{recvErr: mockRecvErr, Receiver: r}
},
}
r := rep.Do(ctx)
ctx.Logf("\n%s", pretty.Sprint(r))
require.Len(ctx, r.Attempts, 1)
attempt := r.Attempts[0]
require.Nil(ctx, attempt.PlanError)
require.Len(ctx, attempt.Filesystems, 3)
fsByName := make(map[string]*report.FilesystemReport, len(attempt.Filesystems))
for _, fs := range attempt.Filesystems {
fsByName[fs.Info.Name] = fs
}
require.Contains(ctx, fsByName, fsA)
require.Contains(ctx, fsByName, fsAA)
require.Contains(ctx, fsByName, fsAA)
checkFS := func(fs string, expectErrMsg string) {
rep := fsByName[fs]
require.Len(ctx, rep.Steps, 1)
require.Nil(ctx, rep.PlanError)
require.NotNil(ctx, rep.StepError)
require.Contains(ctx, rep.StepError.Err, expectErrMsg)
}
checkFS(fsA, mockRecvErr.Error())
checkFS(fsAChild, "parent(s) failed during initial replication")
checkFS(fsAA, mockRecvErr.Error()) // fsAA is not treated as a child of fsA
}
+6 -1
View File
@@ -22,6 +22,7 @@ func CreateReplicationCursor(ctx *platformtest.Context) {
R zfs bookmark "${ROOTDS}/foo bar@2 with space" "${ROOTDS}/foo bar#2 with space"
+ "foo bar@3 with space"
R zfs bookmark "${ROOTDS}/foo bar@3 with space" "${ROOTDS}/foo bar#3 with space"
- "foo bar@3 with space"
`)
jobid := endpoint.MustMakeJobID("zreplplatformtest")
@@ -42,6 +43,7 @@ func CreateReplicationCursor(ctx *platformtest.Context) {
snap := fsversion(ctx, fs, "@1 with space")
book := fsversion(ctx, fs, "#1 with space")
book3 := fsversion(ctx, fs, "#3 with space")
// create first cursor
cursorOfSnap, err := endpoint.CreateReplicationCursor(ctx, fs, snap, jobid)
@@ -49,8 +51,11 @@ func CreateReplicationCursor(ctx *platformtest.Context) {
// check CreateReplicationCursor is idempotent (for snapshot target)
cursorOfSnapIdemp, err := endpoint.CreateReplicationCursor(ctx, fs, snap, jobid)
checkCreateCursor(err, cursorOfSnap, snap)
// check CreateReplicationCursor is idempotent (for bookmark target of snapshot)
cursorOfBook, err := endpoint.CreateReplicationCursor(ctx, fs, book, jobid)
checkCreateCursor(err, cursorOfBook, snap)
// ... for target = non-cursor bookmark
_, err = endpoint.CreateReplicationCursor(ctx, fs, book, jobid)
_, err = endpoint.CreateReplicationCursor(ctx, fs, book3, jobid)
assert.Equal(ctx, zfs.ErrBookmarkCloningNotSupported, err)
// ... for target = replication cursor bookmark to be created
cursorOfCursor, err := endpoint.CreateReplicationCursor(ctx, fs, cursorOfSnapIdemp.GetFilesystemVersion(), jobid)
@@ -17,12 +17,10 @@ func UndestroyableSnapshotParsing(t *platformtest.Context) {
+ "foo bar@1 2 3"
+ "foo bar@4 5 6"
+ "foo bar@7 8 9"
+ "foo bar@10 11 12"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@4 5 6"
R zfs hold zrepl_platformtest "${ROOTDS}/foo bar@7 8 9"
`)
err := zfs.ZFSDestroy(t, fmt.Sprintf("%s/foo bar@1 2 3,4 5 6,7 8 9,10 11 12", t.RootDataset))
err := zfs.ZFSDestroy(t, fmt.Sprintf("%s/foo bar@1 2 3,4 5 6,7 8 9", t.RootDataset))
if err == nil {
panic("expecting destroy error due to hold")
}
@@ -32,9 +30,8 @@ func UndestroyableSnapshotParsing(t *platformtest.Context) {
if dse.Filesystem != fmt.Sprintf("%s/foo bar", t.RootDataset) {
panic(dse.Filesystem)
}
expectUndestroyable := []string{"4 5 6", "7 8 9"}
require.Len(t, dse.Undestroyable, len(expectUndestroyable))
require.Subset(t, dse.Undestroyable, expectUndestroyable)
require.Equal(t, []string{"4 5 6"}, dse.Undestroyable)
require.Equal(t, []string{"dataset is busy"}, dse.Reason)
}
}
+9 -16
View File
@@ -66,26 +66,24 @@ type retentionGridAdaptor struct {
Snapshot
}
func (a retentionGridAdaptor) Date() time.Time { return a.Snapshot.GetCreation() }
func (a retentionGridAdaptor) LessThan(b retentiongrid.Entry) bool {
return a.Date().Before(b.Date())
}
// Prune filters snapshots with the retention grid.
func (p *KeepGrid) KeepRule(snaps []Snapshot) PruneSnapshotsResult {
func (p *KeepGrid) KeepRule(snaps []Snapshot) (destroyList []Snapshot) {
reCandidates := partitionSnapList(snaps, func(snapshot Snapshot) bool {
return p.re.MatchString(snapshot.GetName())
snaps = filterSnapList(snaps, func(snapshot Snapshot) bool {
return p.re.MatchString(snapshot.Name())
})
if len(reCandidates.Remove) == 0 {
return reCandidates
if len(snaps) == 0 {
return nil
}
// Build adaptors for retention grid
adaptors := make([]retentiongrid.Entry, 0)
for i := range snaps {
adaptors = append(adaptors, retentionGridAdaptor{reCandidates.Remove[i]})
adaptors = append(adaptors, retentionGridAdaptor{snaps[i]})
}
// determine 'now' edge
@@ -95,17 +93,12 @@ func (p *KeepGrid) KeepRule(snaps []Snapshot) PruneSnapshotsResult {
now := adaptors[len(adaptors)-1].Date()
// Evaluate retention grid
keepa, removea := p.retentionGrid.FitEntries(now, adaptors)
_, removea := p.retentionGrid.FitEntries(now, adaptors)
// Revert adaptors
destroyList := make([]Snapshot, len(removea))
destroyList = make([]Snapshot, len(removea))
for i := range removea {
destroyList[i] = removea[i].(retentionGridAdaptor).Snapshot
}
for _, a := range keepa {
reCandidates.Keep = append(reCandidates.Keep, a.(retentionGridAdaptor))
}
reCandidates.Remove = destroyList
return reCandidates
return destroyList
}
+4 -7
View File
@@ -1,13 +1,10 @@
package pruning
func partitionSnapList(snaps []Snapshot, remove func(Snapshot) bool) (r PruneSnapshotsResult) {
r.Keep = make([]Snapshot, 0, len(snaps))
r.Remove = make([]Snapshot, 0, len(snaps))
func filterSnapList(snaps []Snapshot, predicate func(Snapshot) bool) []Snapshot {
r := make([]Snapshot, 0, len(snaps))
for i := range snaps {
if remove(snaps[i]) {
r.Remove = append(r.Remove, snaps[i])
} else {
r.Keep = append(r.Keep, snaps[i])
if predicate(snaps[i]) {
r = append(r, snaps[i])
}
}
return r
+4 -4
View File
@@ -17,17 +17,17 @@ func NewKeepLastN(n int) (*KeepLastN, error) {
return &KeepLastN{n}, nil
}
func (k KeepLastN) KeepRule(snaps []Snapshot) PruneSnapshotsResult {
func (k KeepLastN) KeepRule(snaps []Snapshot) (destroyList []Snapshot) {
if k.n > len(snaps) {
return PruneSnapshotsResult{Keep: snaps}
return []Snapshot{}
}
res := shallowCopySnapList(snaps)
sort.Slice(res, func(i, j int) bool {
return res[i].GetCreateTXG() > res[j].GetCreateTXG()
return res[i].Date().After(res[j].Date())
})
return PruneSnapshotsResult{Remove: res[k.n:], Keep: res[:k.n]}
return res[k.n:]
}
+2 -2
View File
@@ -2,8 +2,8 @@ package pruning
type KeepNotReplicated struct{}
func (*KeepNotReplicated) KeepRule(snaps []Snapshot) PruneSnapshotsResult {
return partitionSnapList(snaps, func(snapshot Snapshot) bool {
func (*KeepNotReplicated) KeepRule(snaps []Snapshot) (destroyList []Snapshot) {
return filterSnapList(snaps, func(snapshot Snapshot) bool {
return snapshot.Replicated()
})
}
+4 -4
View File
@@ -27,12 +27,12 @@ func MustKeepRegex(expr string, negate bool) *KeepRegex {
return k
}
func (k *KeepRegex) KeepRule(snaps []Snapshot) PruneSnapshotsResult {
return partitionSnapList(snaps, func(s Snapshot) bool {
func (k *KeepRegex) KeepRule(snaps []Snapshot) []Snapshot {
return filterSnapList(snaps, func(s Snapshot) bool {
if k.negate {
return k.expr.FindStringIndex(s.GetName()) != nil
return k.expr.FindStringIndex(s.Name()) != nil
} else {
return k.expr.FindStringIndex(s.GetName()) == nil
return k.expr.FindStringIndex(s.Name()) == nil
}
})
}
-44
View File
@@ -1,44 +0,0 @@
package pruning
import (
"github.com/pkg/errors"
"github.com/zrepl/zrepl/endpoint"
)
type KeepStepHolds struct {
keepJobIDs map[endpoint.JobID]bool
}
var _ KeepRule = (*KeepStepHolds)(nil)
func NewKeepStepHolds(mainJobId endpoint.JobID, additionalJobIdsStrings []string) (_ *KeepStepHolds, err error) {
additionalJobIds := make(map[endpoint.JobID]bool, len(additionalJobIdsStrings))
mainJobId.MustValidate()
additionalJobIds[mainJobId] = true
for i := range additionalJobIdsStrings {
ajid, err := endpoint.MakeJobID(additionalJobIdsStrings[i])
if err != nil {
return nil, errors.WithMessagef(err, "cannot parse job id %q: %s", additionalJobIdsStrings[i])
}
if additionalJobIds[ajid] == true {
return nil, errors.Errorf("duplicate job id %q", ajid)
}
}
return &KeepStepHolds{additionalJobIds}, nil
}
func (h *KeepStepHolds) KeepRule(snaps []Snapshot) PruneSnapshotsResult {
return partitionSnapList(snaps, func(s Snapshot) bool {
holdingJobIDs := make(map[endpoint.JobID]bool)
for _, h := range s.StepHolds() {
holdingJobIDs[h.GetJobID()] = true
}
oneOrMoreOfOurJobIDsHoldsSnap := false
for kjid := range h.keepJobIDs {
oneOrMoreOfOurJobIDsHoldsSnap = oneOrMoreOfOurJobIDsHoldsSnap || holdingJobIDs[kjid]
}
return !oneOrMoreOfOurJobIDsHoldsSnap
})
}
+17 -65
View File
@@ -7,93 +7,47 @@ import (
"github.com/pkg/errors"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/endpoint"
)
type KeepRule interface {
KeepRule(snaps []Snapshot) PruneSnapshotsResult
KeepRule(snaps []Snapshot) (destroyList []Snapshot)
}
type Snapshot interface {
GetName() string
Name() string
Replicated() bool
GetCreation() time.Time
GetCreateTXG() uint64
StepHolds() []StepHold
Date() time.Time
}
type StepHold interface {
GetJobID() endpoint.JobID
}
type PruneSnapshotsResult struct {
Remove, Keep []Snapshot
}
// The returned snapshot results are a partition of the snaps argument.
// That means than len(Remove) + len(Keep) == len(snaps)
func PruneSnapshots(snapsI []Snapshot, keepRules []KeepRule) PruneSnapshotsResult {
// The returned snapshot list is guaranteed to only contains elements of input parameter snaps
func PruneSnapshots(snaps []Snapshot, keepRules []KeepRule) []Snapshot {
if len(keepRules) == 0 {
return PruneSnapshotsResult{Remove: nil, Keep: snapsI}
}
type snapshot struct {
Snapshot
keepCount, removeCount int
}
// project down to snapshot
snaps := make([]Snapshot, len(snapsI))
for i := range snaps {
snaps[i] = &snapshot{snapsI[i], 0, 0}
return []Snapshot{}
}
remCount := make(map[Snapshot]int, len(snaps))
for _, r := range keepRules {
ruleImplCheckSet := make(map[Snapshot]int, len(snaps))
for _, s := range snaps {
ruleImplCheckSet[s] = ruleImplCheckSet[s] + 1
}
ruleResults := r.KeepRule(snaps)
for _, s := range snaps {
ruleImplCheckSet[s] = ruleImplCheckSet[s] - 1
}
for _, n := range ruleImplCheckSet {
if n != 0 {
panic(fmt.Sprintf("incorrect rule implementation: %T", r))
}
}
for _, s := range ruleResults.Remove {
s.(*snapshot).removeCount++
}
for _, s := range ruleResults.Keep {
s.(*snapshot).keepCount++
ruleRems := r.KeepRule(snaps)
for _, ruleRem := range ruleRems {
remCount[ruleRem]++
}
}
remove := make([]Snapshot, 0, len(snaps))
keep := make([]Snapshot, 0, len(snaps))
for _, sI := range snaps {
s := sI.(*snapshot)
if s.removeCount == len(keepRules) {
// all keep rules agree to remove the snap
remove = append(remove, s.Snapshot)
} else {
keep = append(keep, s.Snapshot)
for snap, rc := range remCount {
if rc == len(keepRules) {
remove = append(remove, snap)
}
}
return PruneSnapshotsResult{Remove: remove, Keep: keep}
return remove
}
func RulesFromConfig(mainJobId endpoint.JobID, in []config.PruningEnum) (rules []KeepRule, err error) {
func RulesFromConfig(in []config.PruningEnum) (rules []KeepRule, err error) {
rules = make([]KeepRule, len(in))
for i := range in {
rules[i], err = RuleFromConfig(mainJobId, in[i])
rules[i], err = RuleFromConfig(in[i])
if err != nil {
return nil, errors.Wrapf(err, "cannot build rule #%d", i)
}
@@ -101,7 +55,7 @@ func RulesFromConfig(mainJobId endpoint.JobID, in []config.PruningEnum) (rules [
return rules, nil
}
func RuleFromConfig(mainJobId endpoint.JobID, in config.PruningEnum) (KeepRule, error) {
func RuleFromConfig(in config.PruningEnum) (KeepRule, error) {
switch v := in.Ret.(type) {
case *config.PruneKeepNotReplicated:
return NewKeepNotReplicated(), nil
@@ -111,8 +65,6 @@ func RuleFromConfig(mainJobId endpoint.JobID, in config.PruningEnum) (KeepRule,
return NewKeepRegex(v.Regex, v.Negate)
case *config.PruneGrid:
return NewKeepGrid(v)
case *config.PruneKeepStepHolds:
return NewKeepStepHolds(mainJobId, v.AdditionalJobIds)
default:
return nil, fmt.Errorf("unknown keep rule type %T", v)
}
+22 -4
View File
@@ -2,7 +2,6 @@ package driver
import (
"context"
"errors"
"fmt"
"net"
"sort"
@@ -10,7 +9,9 @@ import (
"sync"
"time"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/daemon/logging/trace"
"github.com/zrepl/zrepl/zfs"
"google.golang.org/grpc/codes"
"google.golang.org/grpc/status"
@@ -374,11 +375,28 @@ func (a *attempt) doGlobalPlanning(ctx context.Context, prev *attempt) map[*fs]*
// invariant: prevs contains an entry for each unambiguous correspondence
// build up parent-child relationship (FIXME (O(n^2), but who's going to have that many filesystems...))
mustDatasetPathOrPlanFail := func(fs string) *zfs.DatasetPath {
dp, err := zfs.NewDatasetPath(fs)
if err != nil {
now := time.Now()
a.planErr = newTimedError(errors.Wrapf(err, "%q", fs), now)
a.fss = nil
a.finishedAt = now
return nil
}
return dp
}
for _, f1 := range a.fss {
fs1 := f1.fs.ReportInfo().Name
fs1 := mustDatasetPathOrPlanFail(f1.fs.ReportInfo().Name)
if fs1 == nil {
return nil
}
for _, f2 := range a.fss {
fs2 := f2.fs.ReportInfo().Name
if strings.HasPrefix(fs1, fs2) && fs1 != fs2 {
fs2 := mustDatasetPathOrPlanFail(f2.fs.ReportInfo().Name)
if fs2 == nil {
return nil
}
if fs1.HasPrefix(fs2) && !fs1.Equal(fs2) {
f1.initialRepOrd.parents = append(f1.initialRepOrd.parents, f2)
f2.initialRepOrd.children = append(f2.initialRepOrd.children, f1)
}
+220 -177
View File
@@ -46,36 +46,36 @@ func (x Tri) String() string {
return proto.EnumName(Tri_name, int32(x))
}
func (Tri) EnumDescriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{0}
return fileDescriptor_pdu_616c27178643eca4, []int{0}
}
type SendAbstraction_SendAbstractionType int32
type ReplicationGuaranteeKind int32
const (
SendAbstraction_Undefined SendAbstraction_SendAbstractionType = 0
SendAbstraction_ReplicationCursorV2 SendAbstraction_SendAbstractionType = 1
SendAbstraction_StepHold SendAbstraction_SendAbstractionType = 2
SendAbstraction_StepBookmark SendAbstraction_SendAbstractionType = 3
ReplicationGuaranteeKind_GuaranteeInvalid ReplicationGuaranteeKind = 0
ReplicationGuaranteeKind_GuaranteeResumability ReplicationGuaranteeKind = 1
ReplicationGuaranteeKind_GuaranteeIncrementalReplication ReplicationGuaranteeKind = 2
ReplicationGuaranteeKind_GuaranteeNothing ReplicationGuaranteeKind = 3
)
var SendAbstraction_SendAbstractionType_name = map[int32]string{
0: "Undefined",
1: "ReplicationCursorV2",
2: "StepHold",
3: "StepBookmark",
var ReplicationGuaranteeKind_name = map[int32]string{
0: "GuaranteeInvalid",
1: "GuaranteeResumability",
2: "GuaranteeIncrementalReplication",
3: "GuaranteeNothing",
}
var SendAbstraction_SendAbstractionType_value = map[string]int32{
"Undefined": 0,
"ReplicationCursorV2": 1,
"StepHold": 2,
"StepBookmark": 3,
var ReplicationGuaranteeKind_value = map[string]int32{
"GuaranteeInvalid": 0,
"GuaranteeResumability": 1,
"GuaranteeIncrementalReplication": 2,
"GuaranteeNothing": 3,
}
func (x SendAbstraction_SendAbstractionType) String() string {
return proto.EnumName(SendAbstraction_SendAbstractionType_name, int32(x))
func (x ReplicationGuaranteeKind) String() string {
return proto.EnumName(ReplicationGuaranteeKind_name, int32(x))
}
func (SendAbstraction_SendAbstractionType) EnumDescriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{5, 0}
func (ReplicationGuaranteeKind) EnumDescriptor() ([]byte, []int) {
return fileDescriptor_pdu_616c27178643eca4, []int{1}
}
type FilesystemVersion_VersionType int32
@@ -98,7 +98,7 @@ func (x FilesystemVersion_VersionType) String() string {
return proto.EnumName(FilesystemVersion_VersionType_name, int32(x))
}
func (FilesystemVersion_VersionType) EnumDescriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{6, 0}
return fileDescriptor_pdu_616c27178643eca4, []int{5, 0}
}
type ListFilesystemReq struct {
@@ -111,7 +111,7 @@ func (m *ListFilesystemReq) Reset() { *m = ListFilesystemReq{} }
func (m *ListFilesystemReq) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemReq) ProtoMessage() {}
func (*ListFilesystemReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{0}
return fileDescriptor_pdu_616c27178643eca4, []int{0}
}
func (m *ListFilesystemReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemReq.Unmarshal(m, b)
@@ -142,7 +142,7 @@ func (m *ListFilesystemRes) Reset() { *m = ListFilesystemRes{} }
func (m *ListFilesystemRes) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemRes) ProtoMessage() {}
func (*ListFilesystemRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{1}
return fileDescriptor_pdu_616c27178643eca4, []int{1}
}
func (m *ListFilesystemRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemRes.Unmarshal(m, b)
@@ -183,7 +183,7 @@ func (m *Filesystem) Reset() { *m = Filesystem{} }
func (m *Filesystem) String() string { return proto.CompactTextString(m) }
func (*Filesystem) ProtoMessage() {}
func (*Filesystem) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{2}
return fileDescriptor_pdu_616c27178643eca4, []int{2}
}
func (m *Filesystem) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_Filesystem.Unmarshal(m, b)
@@ -242,7 +242,7 @@ func (m *ListFilesystemVersionsReq) Reset() { *m = ListFilesystemVersion
func (m *ListFilesystemVersionsReq) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemVersionsReq) ProtoMessage() {}
func (*ListFilesystemVersionsReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{3}
return fileDescriptor_pdu_616c27178643eca4, []int{3}
}
func (m *ListFilesystemVersionsReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemVersionsReq.Unmarshal(m, b)
@@ -271,7 +271,6 @@ func (m *ListFilesystemVersionsReq) GetFilesystem() string {
type ListFilesystemVersionsRes struct {
Versions []*FilesystemVersion `protobuf:"bytes,1,rep,name=Versions,proto3" json:"Versions,omitempty"`
SendAbstractions []*SendAbstraction `protobuf:"bytes,2,rep,name=SendAbstractions,proto3" json:"SendAbstractions,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
@@ -281,7 +280,7 @@ func (m *ListFilesystemVersionsRes) Reset() { *m = ListFilesystemVersion
func (m *ListFilesystemVersionsRes) String() string { return proto.CompactTextString(m) }
func (*ListFilesystemVersionsRes) ProtoMessage() {}
func (*ListFilesystemVersionsRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{4}
return fileDescriptor_pdu_616c27178643eca4, []int{4}
}
func (m *ListFilesystemVersionsRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ListFilesystemVersionsRes.Unmarshal(m, b)
@@ -308,67 +307,6 @@ func (m *ListFilesystemVersionsRes) GetVersions() []*FilesystemVersion {
return nil
}
func (m *ListFilesystemVersionsRes) GetSendAbstractions() []*SendAbstraction {
if m != nil {
return m.SendAbstractions
}
return nil
}
type SendAbstraction struct {
Type SendAbstraction_SendAbstractionType `protobuf:"varint,1,opt,name=Type,proto3,enum=SendAbstraction_SendAbstractionType" json:"Type,omitempty"`
JobID string `protobuf:"bytes,2,opt,name=JobID,proto3" json:"JobID,omitempty"`
Version *FilesystemVersion `protobuf:"bytes,3,opt,name=Version,proto3" json:"Version,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
}
func (m *SendAbstraction) Reset() { *m = SendAbstraction{} }
func (m *SendAbstraction) String() string { return proto.CompactTextString(m) }
func (*SendAbstraction) ProtoMessage() {}
func (*SendAbstraction) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{5}
}
func (m *SendAbstraction) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendAbstraction.Unmarshal(m, b)
}
func (m *SendAbstraction) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) {
return xxx_messageInfo_SendAbstraction.Marshal(b, m, deterministic)
}
func (dst *SendAbstraction) XXX_Merge(src proto.Message) {
xxx_messageInfo_SendAbstraction.Merge(dst, src)
}
func (m *SendAbstraction) XXX_Size() int {
return xxx_messageInfo_SendAbstraction.Size(m)
}
func (m *SendAbstraction) XXX_DiscardUnknown() {
xxx_messageInfo_SendAbstraction.DiscardUnknown(m)
}
var xxx_messageInfo_SendAbstraction proto.InternalMessageInfo
func (m *SendAbstraction) GetType() SendAbstraction_SendAbstractionType {
if m != nil {
return m.Type
}
return SendAbstraction_Undefined
}
func (m *SendAbstraction) GetJobID() string {
if m != nil {
return m.JobID
}
return ""
}
func (m *SendAbstraction) GetVersion() *FilesystemVersion {
if m != nil {
return m.Version
}
return nil
}
type FilesystemVersion struct {
Type FilesystemVersion_VersionType `protobuf:"varint,1,opt,name=Type,proto3,enum=FilesystemVersion_VersionType" json:"Type,omitempty"`
Name string `protobuf:"bytes,2,opt,name=Name,proto3" json:"Name,omitempty"`
@@ -384,7 +322,7 @@ func (m *FilesystemVersion) Reset() { *m = FilesystemVersion{} }
func (m *FilesystemVersion) String() string { return proto.CompactTextString(m) }
func (*FilesystemVersion) ProtoMessage() {}
func (*FilesystemVersion) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{6}
return fileDescriptor_pdu_616c27178643eca4, []int{5}
}
func (m *FilesystemVersion) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_FilesystemVersion.Unmarshal(m, b)
@@ -450,19 +388,20 @@ type SendReq struct {
// SHOULD clear the resume token on their side and use From and To instead If
// ResumeToken is not empty, the GUIDs of From and To MUST correspond to those
// encoded in the ResumeToken. Otherwise, the Sender MUST return an error.
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"`
DryRun bool `protobuf:"varint,6,opt,name=DryRun,proto3" json:"DryRun,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
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"`
DryRun bool `protobuf:"varint,6,opt,name=DryRun,proto3" json:"DryRun,omitempty"`
ReplicationConfig *ReplicationConfig `protobuf:"bytes,7,opt,name=ReplicationConfig,proto3" json:"ReplicationConfig,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
}
func (m *SendReq) Reset() { *m = SendReq{} }
func (m *SendReq) String() string { return proto.CompactTextString(m) }
func (*SendReq) ProtoMessage() {}
func (*SendReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{7}
return fileDescriptor_pdu_616c27178643eca4, []int{6}
}
func (m *SendReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendReq.Unmarshal(m, b)
@@ -524,6 +463,97 @@ func (m *SendReq) GetDryRun() bool {
return false
}
func (m *SendReq) GetReplicationConfig() *ReplicationConfig {
if m != nil {
return m.ReplicationConfig
}
return nil
}
type ReplicationConfig struct {
Protection *ReplicationConfigProtection `protobuf:"bytes,1,opt,name=protection,proto3" json:"protection,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
}
func (m *ReplicationConfig) Reset() { *m = ReplicationConfig{} }
func (m *ReplicationConfig) String() string { return proto.CompactTextString(m) }
func (*ReplicationConfig) ProtoMessage() {}
func (*ReplicationConfig) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_616c27178643eca4, []int{7}
}
func (m *ReplicationConfig) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReplicationConfig.Unmarshal(m, b)
}
func (m *ReplicationConfig) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) {
return xxx_messageInfo_ReplicationConfig.Marshal(b, m, deterministic)
}
func (dst *ReplicationConfig) XXX_Merge(src proto.Message) {
xxx_messageInfo_ReplicationConfig.Merge(dst, src)
}
func (m *ReplicationConfig) XXX_Size() int {
return xxx_messageInfo_ReplicationConfig.Size(m)
}
func (m *ReplicationConfig) XXX_DiscardUnknown() {
xxx_messageInfo_ReplicationConfig.DiscardUnknown(m)
}
var xxx_messageInfo_ReplicationConfig proto.InternalMessageInfo
func (m *ReplicationConfig) GetProtection() *ReplicationConfigProtection {
if m != nil {
return m.Protection
}
return nil
}
type ReplicationConfigProtection struct {
Initial ReplicationGuaranteeKind `protobuf:"varint,1,opt,name=Initial,proto3,enum=ReplicationGuaranteeKind" json:"Initial,omitempty"`
Incremental ReplicationGuaranteeKind `protobuf:"varint,2,opt,name=Incremental,proto3,enum=ReplicationGuaranteeKind" json:"Incremental,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
}
func (m *ReplicationConfigProtection) Reset() { *m = ReplicationConfigProtection{} }
func (m *ReplicationConfigProtection) String() string { return proto.CompactTextString(m) }
func (*ReplicationConfigProtection) ProtoMessage() {}
func (*ReplicationConfigProtection) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_616c27178643eca4, []int{8}
}
func (m *ReplicationConfigProtection) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReplicationConfigProtection.Unmarshal(m, b)
}
func (m *ReplicationConfigProtection) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) {
return xxx_messageInfo_ReplicationConfigProtection.Marshal(b, m, deterministic)
}
func (dst *ReplicationConfigProtection) XXX_Merge(src proto.Message) {
xxx_messageInfo_ReplicationConfigProtection.Merge(dst, src)
}
func (m *ReplicationConfigProtection) XXX_Size() int {
return xxx_messageInfo_ReplicationConfigProtection.Size(m)
}
func (m *ReplicationConfigProtection) XXX_DiscardUnknown() {
xxx_messageInfo_ReplicationConfigProtection.DiscardUnknown(m)
}
var xxx_messageInfo_ReplicationConfigProtection proto.InternalMessageInfo
func (m *ReplicationConfigProtection) GetInitial() ReplicationGuaranteeKind {
if m != nil {
return m.Initial
}
return ReplicationGuaranteeKind_GuaranteeInvalid
}
func (m *ReplicationConfigProtection) GetIncremental() ReplicationGuaranteeKind {
if m != nil {
return m.Incremental
}
return ReplicationGuaranteeKind_GuaranteeInvalid
}
type Property struct {
Name string `protobuf:"bytes,1,opt,name=Name,proto3" json:"Name,omitempty"`
Value string `protobuf:"bytes,2,opt,name=Value,proto3" json:"Value,omitempty"`
@@ -536,7 +566,7 @@ func (m *Property) Reset() { *m = Property{} }
func (m *Property) String() string { return proto.CompactTextString(m) }
func (*Property) ProtoMessage() {}
func (*Property) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{8}
return fileDescriptor_pdu_616c27178643eca4, []int{9}
}
func (m *Property) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_Property.Unmarshal(m, b)
@@ -587,7 +617,7 @@ func (m *SendRes) Reset() { *m = SendRes{} }
func (m *SendRes) String() string { return proto.CompactTextString(m) }
func (*SendRes) ProtoMessage() {}
func (*SendRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{9}
return fileDescriptor_pdu_616c27178643eca4, []int{10}
}
func (m *SendRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendRes.Unmarshal(m, b)
@@ -639,7 +669,7 @@ func (m *SendCompletedReq) Reset() { *m = SendCompletedReq{} }
func (m *SendCompletedReq) String() string { return proto.CompactTextString(m) }
func (*SendCompletedReq) ProtoMessage() {}
func (*SendCompletedReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{10}
return fileDescriptor_pdu_616c27178643eca4, []int{11}
}
func (m *SendCompletedReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendCompletedReq.Unmarshal(m, b)
@@ -676,7 +706,7 @@ func (m *SendCompletedRes) Reset() { *m = SendCompletedRes{} }
func (m *SendCompletedRes) String() string { return proto.CompactTextString(m) }
func (*SendCompletedRes) ProtoMessage() {}
func (*SendCompletedRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{11}
return fileDescriptor_pdu_616c27178643eca4, []int{12}
}
func (m *SendCompletedRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_SendCompletedRes.Unmarshal(m, b)
@@ -701,17 +731,18 @@ type ReceiveReq struct {
To *FilesystemVersion `protobuf:"bytes,2,opt,name=To,proto3" json:"To,omitempty"`
// If true, the receiver should clear the resume token before performing the
// zfs recv of the stream in the request
ClearResumeToken bool `protobuf:"varint,3,opt,name=ClearResumeToken,proto3" json:"ClearResumeToken,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
ClearResumeToken bool `protobuf:"varint,3,opt,name=ClearResumeToken,proto3" json:"ClearResumeToken,omitempty"`
ReplicationConfig *ReplicationConfig `protobuf:"bytes,4,opt,name=ReplicationConfig,proto3" json:"ReplicationConfig,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
}
func (m *ReceiveReq) Reset() { *m = ReceiveReq{} }
func (m *ReceiveReq) String() string { return proto.CompactTextString(m) }
func (*ReceiveReq) ProtoMessage() {}
func (*ReceiveReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{12}
return fileDescriptor_pdu_616c27178643eca4, []int{13}
}
func (m *ReceiveReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReceiveReq.Unmarshal(m, b)
@@ -752,6 +783,13 @@ func (m *ReceiveReq) GetClearResumeToken() bool {
return false
}
func (m *ReceiveReq) GetReplicationConfig() *ReplicationConfig {
if m != nil {
return m.ReplicationConfig
}
return nil
}
type ReceiveRes struct {
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
@@ -762,7 +800,7 @@ func (m *ReceiveRes) Reset() { *m = ReceiveRes{} }
func (m *ReceiveRes) String() string { return proto.CompactTextString(m) }
func (*ReceiveRes) ProtoMessage() {}
func (*ReceiveRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{13}
return fileDescriptor_pdu_616c27178643eca4, []int{14}
}
func (m *ReceiveRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReceiveRes.Unmarshal(m, b)
@@ -795,7 +833,7 @@ func (m *DestroySnapshotsReq) Reset() { *m = DestroySnapshotsReq{} }
func (m *DestroySnapshotsReq) String() string { return proto.CompactTextString(m) }
func (*DestroySnapshotsReq) ProtoMessage() {}
func (*DestroySnapshotsReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{14}
return fileDescriptor_pdu_616c27178643eca4, []int{15}
}
func (m *DestroySnapshotsReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_DestroySnapshotsReq.Unmarshal(m, b)
@@ -841,7 +879,7 @@ func (m *DestroySnapshotRes) Reset() { *m = DestroySnapshotRes{} }
func (m *DestroySnapshotRes) String() string { return proto.CompactTextString(m) }
func (*DestroySnapshotRes) ProtoMessage() {}
func (*DestroySnapshotRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{15}
return fileDescriptor_pdu_616c27178643eca4, []int{16}
}
func (m *DestroySnapshotRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_DestroySnapshotRes.Unmarshal(m, b)
@@ -886,7 +924,7 @@ func (m *DestroySnapshotsRes) Reset() { *m = DestroySnapshotsRes{} }
func (m *DestroySnapshotsRes) String() string { return proto.CompactTextString(m) }
func (*DestroySnapshotsRes) ProtoMessage() {}
func (*DestroySnapshotsRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{16}
return fileDescriptor_pdu_616c27178643eca4, []int{17}
}
func (m *DestroySnapshotsRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_DestroySnapshotsRes.Unmarshal(m, b)
@@ -924,7 +962,7 @@ func (m *ReplicationCursorReq) Reset() { *m = ReplicationCursorReq{} }
func (m *ReplicationCursorReq) String() string { return proto.CompactTextString(m) }
func (*ReplicationCursorReq) ProtoMessage() {}
func (*ReplicationCursorReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{17}
return fileDescriptor_pdu_616c27178643eca4, []int{18}
}
func (m *ReplicationCursorReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReplicationCursorReq.Unmarshal(m, b)
@@ -965,7 +1003,7 @@ func (m *ReplicationCursorRes) Reset() { *m = ReplicationCursorRes{} }
func (m *ReplicationCursorRes) String() string { return proto.CompactTextString(m) }
func (*ReplicationCursorRes) ProtoMessage() {}
func (*ReplicationCursorRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{18}
return fileDescriptor_pdu_616c27178643eca4, []int{19}
}
func (m *ReplicationCursorRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_ReplicationCursorRes.Unmarshal(m, b)
@@ -1101,7 +1139,7 @@ func (m *PingReq) Reset() { *m = PingReq{} }
func (m *PingReq) String() string { return proto.CompactTextString(m) }
func (*PingReq) ProtoMessage() {}
func (*PingReq) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{19}
return fileDescriptor_pdu_616c27178643eca4, []int{20}
}
func (m *PingReq) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_PingReq.Unmarshal(m, b)
@@ -1140,7 +1178,7 @@ func (m *PingRes) Reset() { *m = PingRes{} }
func (m *PingRes) String() string { return proto.CompactTextString(m) }
func (*PingRes) ProtoMessage() {}
func (*PingRes) Descriptor() ([]byte, []int) {
return fileDescriptor_pdu_2d84e8d7d278a80d, []int{20}
return fileDescriptor_pdu_616c27178643eca4, []int{21}
}
func (m *PingRes) XXX_Unmarshal(b []byte) error {
return xxx_messageInfo_PingRes.Unmarshal(m, b)
@@ -1173,9 +1211,10 @@ func init() {
proto.RegisterType((*Filesystem)(nil), "Filesystem")
proto.RegisterType((*ListFilesystemVersionsReq)(nil), "ListFilesystemVersionsReq")
proto.RegisterType((*ListFilesystemVersionsRes)(nil), "ListFilesystemVersionsRes")
proto.RegisterType((*SendAbstraction)(nil), "SendAbstraction")
proto.RegisterType((*FilesystemVersion)(nil), "FilesystemVersion")
proto.RegisterType((*SendReq)(nil), "SendReq")
proto.RegisterType((*ReplicationConfig)(nil), "ReplicationConfig")
proto.RegisterType((*ReplicationConfigProtection)(nil), "ReplicationConfigProtection")
proto.RegisterType((*Property)(nil), "Property")
proto.RegisterType((*SendRes)(nil), "SendRes")
proto.RegisterType((*SendCompletedReq)(nil), "SendCompletedReq")
@@ -1190,7 +1229,7 @@ func init() {
proto.RegisterType((*PingReq)(nil), "PingReq")
proto.RegisterType((*PingRes)(nil), "PingRes")
proto.RegisterEnum("Tri", Tri_name, Tri_value)
proto.RegisterEnum("SendAbstraction_SendAbstractionType", SendAbstraction_SendAbstractionType_name, SendAbstraction_SendAbstractionType_value)
proto.RegisterEnum("ReplicationGuaranteeKind", ReplicationGuaranteeKind_name, ReplicationGuaranteeKind_value)
proto.RegisterEnum("FilesystemVersion_VersionType", FilesystemVersion_VersionType_name, FilesystemVersion_VersionType_value)
}
@@ -1431,67 +1470,71 @@ var _Replication_serviceDesc = grpc.ServiceDesc{
Metadata: "pdu.proto",
}
func init() { proto.RegisterFile("pdu.proto", fileDescriptor_pdu_2d84e8d7d278a80d) }
func init() { proto.RegisterFile("pdu.proto", fileDescriptor_pdu_616c27178643eca4) }
var fileDescriptor_pdu_2d84e8d7d278a80d = []byte{
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// 995 bytes of a gzipped FileDescriptorProto
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}
+26 -18
View File
@@ -25,22 +25,7 @@ message Filesystem {
message ListFilesystemVersionsReq { string Filesystem = 1; }
message ListFilesystemVersionsRes {
repeated FilesystemVersion Versions = 1;
repeated SendAbstraction SendAbstractions = 2;
}
message SendAbstraction {
enum SendAbstractionType {
Undefined = 0;
ReplicationCursorV2 = 1;
StepHold = 2;
StepBookmark = 3;
};
SendAbstractionType Type = 1;
string JobID = 2;
FilesystemVersion Version = 3;
}
message ListFilesystemVersionsRes { repeated FilesystemVersion Versions = 1; }
message FilesystemVersion {
enum VersionType {
@@ -76,6 +61,25 @@ message SendReq {
Tri Encrypted = 5;
bool DryRun = 6;
ReplicationConfig ReplicationConfig = 7;
}
message ReplicationConfig {
ReplicationConfigProtection protection = 1;
}
message ReplicationConfigProtection {
ReplicationGuaranteeKind Initial = 1;
ReplicationGuaranteeKind Incremental = 2;
}
enum ReplicationGuaranteeKind {
GuaranteeInvalid = 0;
GuaranteeResumability = 1;
GuaranteeIncrementalReplication = 2;
GuaranteeNothing = 3;
}
message Property {
@@ -95,7 +99,9 @@ message SendRes {
repeated Property Properties = 4;
}
message SendCompletedReq { SendReq OriginalReq = 2; }
message SendCompletedReq {
SendReq OriginalReq = 2;
}
message SendCompletedRes {}
@@ -106,12 +112,14 @@ message ReceiveReq {
// If true, the receiver should clear the resume token before performing the
// zfs recv of the stream in the request
bool ClearResumeToken = 3;
ReplicationConfig ReplicationConfig = 4;
}
message ReceiveRes {}
message DestroySnapshotsReq {
string Filesystem = 1;
string Filesystem = 1;
// Path to filesystem, snapshot or bookmark to be destroyed
repeated FilesystemVersion Snapshots = 2;
}
+7
View File
@@ -83,3 +83,10 @@ func (v *FilesystemVersion) ZFSFilesystemVersion() (*zfs.FilesystemVersion, erro
Creation: ct,
}, nil
}
func ReplicationConfigProtectionWithKind(both ReplicationGuaranteeKind) *ReplicationConfigProtection {
return &ReplicationConfigProtection{
Initial: both,
Incremental: both,
}
}
+22 -14
View File
@@ -52,10 +52,6 @@ type Receiver interface {
Receive(ctx context.Context, req *pdu.ReceiveReq, receive io.ReadCloser) (*pdu.ReceiveRes, error)
}
type PlannerPolicy struct {
EncryptedSend tri // all sends must be encrypted (send -w, and encryption!=off)
}
type Planner struct {
sender Sender
receiver Receiver
@@ -554,19 +550,25 @@ func (s *Step) updateSizeEstimate(ctx context.Context) error {
log.WithError(err).Error("dry run send request failed")
return err
}
s.expectedSize = sres.ExpectedSize
if sres == nil {
err := fmt.Errorf("dry run send request returned nil send result")
log.Error(err.Error())
return err
}
s.expectedSize = sres.GetExpectedSize()
return nil
}
func (s *Step) buildSendRequest(dryRun bool) (sr *pdu.SendReq) {
fs := s.parent.Path
sr = &pdu.SendReq{
Filesystem: fs,
From: s.from, // may be nil
To: s.to,
Encrypted: s.encrypt.ToPDU(),
ResumeToken: s.resumeToken,
DryRun: dryRun,
Filesystem: fs,
From: s.from, // may be nil
To: s.to,
Encrypted: s.encrypt.ToPDU(),
ResumeToken: s.resumeToken,
DryRun: dryRun,
ReplicationConfig: &s.parent.policy.ReplicationConfig,
}
return sr
}
@@ -584,6 +586,11 @@ func (s *Step) doReplication(ctx context.Context) error {
log.WithError(err).Error("send request failed")
return err
}
if sres == nil {
err := fmt.Errorf("send request returned nil send result")
log.Error(err.Error())
return err
}
if stream == nil {
err := errors.New("send request did not return a stream, broken endpoint implementation")
return err
@@ -603,9 +610,10 @@ func (s *Step) doReplication(ctx context.Context) error {
}()
rr := &pdu.ReceiveReq{
Filesystem: fs,
To: sr.GetTo(),
ClearResumeToken: !sres.UsedResumeToken,
Filesystem: fs,
To: sr.GetTo(),
ClearResumeToken: !sres.UsedResumeToken,
ReplicationConfig: &s.parent.policy.ReplicationConfig,
}
log.Debug("initiate receive request")
_, err = s.receiver.Receive(ctx, rr, byteCountingStream)
@@ -0,0 +1,42 @@
package logic
import (
"github.com/pkg/errors"
"github.com/zrepl/zrepl/config"
"github.com/zrepl/zrepl/replication/logic/pdu"
)
type PlannerPolicy struct {
EncryptedSend tri // all sends must be encrypted (send -w, and encryption!=off)
ReplicationConfig pdu.ReplicationConfig
}
func ReplicationConfigFromConfig(in *config.Replication) (*pdu.ReplicationConfig, error) {
initial, err := pduReplicationGuaranteeKindFromConfig(in.Protection.Initial)
if err != nil {
return nil, errors.Wrap(err, "field 'initial'")
}
incremental, err := pduReplicationGuaranteeKindFromConfig(in.Protection.Incremental)
if err != nil {
return nil, errors.Wrap(err, "field 'incremental'")
}
return &pdu.ReplicationConfig{
Protection: &pdu.ReplicationConfigProtection{
Initial: initial,
Incremental: incremental,
},
}, nil
}
func pduReplicationGuaranteeKindFromConfig(in string) (k pdu.ReplicationGuaranteeKind, _ error) {
switch in {
case "guarantee_nothing":
return pdu.ReplicationGuaranteeKind_GuaranteeNothing, nil
case "guarantee_incremental":
return pdu.ReplicationGuaranteeKind_GuaranteeIncrementalReplication, nil
case "guarantee_resumability":
return pdu.ReplicationGuaranteeKind_GuaranteeResumability, nil
default:
return k, errors.Errorf("%q is not in guarantee_{nothing,incremental,resumability}", in)
}
}
+27
View File
@@ -162,3 +162,30 @@ func (f *FilesystemReport) NextStep() *StepReport {
func (f *StepReport) IsIncremental() bool {
return f.Info.From != ""
}
// Returns, for the latest replication attempt,
// 0 if there have not been any replication attempts,
// -1 if the replication failed while enumerating file systems
// N if N filesystems could not not be replicated successfully
func (r *Report) GetFailedFilesystemsCountInLatestAttempt() int {
if len(r.Attempts) == 0 {
return 0
}
a := r.Attempts[len(r.Attempts)-1]
switch a.State {
case AttemptPlanningError:
return -1
case AttemptFanOutError:
var count int
for _, f := range a.Filesystems {
if f.Error() != nil {
count++
}
}
return count
default:
return 0
}
}
+1 -1
View File
@@ -66,7 +66,7 @@ type ProtocolError struct {
}
func (e *ProtocolError) Error() string {
return fmt.Sprintf("protocol error: %s", e)
return fmt.Sprintf("protocol error: %s", e.cause)
}
func (c *Client) recv(ctx context.Context, conn *stream.Conn, res proto.Message) error {
+4
View File
@@ -239,6 +239,10 @@ func (s *Server) serveConnRequest(ctx context.Context, endpoint string, c *strea
if sendStream != nil {
err := c.SendStream(ctx, sendStream, ZFSStream)
closeErr := sendStream.Close()
if closeErr != nil {
s.log.WithError(err).Error("cannot close send stream")
}
if err != nil {
s.log.WithError(err).Error("cannot write send stream")
}
+1 -1
View File
@@ -152,7 +152,7 @@ func (m *HandshakeMessage) DecodeReader(r io.Reader, maxLen int) error {
func DoHandshakeCurrentVersion(conn net.Conn, deadline time.Time) *HandshakeError {
// current protocol version is hardcoded here
return DoHandshakeVersion(conn, deadline, 4)
return DoHandshakeVersion(conn, deadline, 5)
}
const HandshakeMessageMaxLen = 16 * 4096
+4
View File
@@ -23,6 +23,10 @@ func TLSConnecterFromConfig(in *config.TLSConnect) (*TLSConnecter, error) {
Timeout: in.DialTimeout,
}
if fakeCertificateLoading {
return &TLSConnecter{in.Address, dialer, nil}, nil
}
ca, err := tlsconf.ParseCAFile(in.Ca)
if err != nil {
return nil, errors.Wrap(err, "cannot parse ca file")
+4
View File
@@ -25,6 +25,10 @@ func TLSListenerFactoryFromConfig(c *config.Global, in *config.TLSServe) (transp
return nil, errors.New("fields 'ca', 'cert' and 'key'must be specified")
}
if fakeCertificateLoading {
return func() (transport.AuthenticatedListener, error) { return nil, nil }, nil
}
clientCA, err := tlsconf.ParseCAFile(in.Ca)
if err != nil {
return nil, errors.Wrap(err, "cannot parse ca file")
+10
View File
@@ -0,0 +1,10 @@
package tls
import "testing"
var fakeCertificateLoading bool
func FakeCertificateLoading(t *testing.T) {
t.Logf("faking certificate loading")
fakeCertificateLoading = true
}
+80 -40
View File
@@ -12,84 +12,100 @@ import (
var cache sync.Map
func Duration(varname string, def time.Duration) time.Duration {
func Reset() {
cache.Range(func(key, _ interface{}) bool {
cache.Delete(key)
return true
})
}
func Duration(varname string, def time.Duration) (d time.Duration) {
var err error
if v, ok := cache.Load(varname); ok {
return v.(time.Duration)
}
e := os.Getenv(varname)
if e == "" {
return def
}
d, err := time.ParseDuration(e)
if err != nil {
panic(err)
d = def
} else {
d, err = time.ParseDuration(e)
if err != nil {
panic(err)
}
}
cache.Store(varname, d)
return d
}
func Int(varname string, def int) int {
func Int(varname string, def int) (d int) {
if v, ok := cache.Load(varname); ok {
return v.(int)
}
e := os.Getenv(varname)
if e == "" {
return def
d = def
} else {
d64, err := strconv.ParseInt(e, 10, strconv.IntSize)
if err != nil {
panic(err)
}
d = int(d64)
}
d64, err := strconv.ParseInt(e, 10, strconv.IntSize)
if err != nil {
panic(err)
}
d := int(d64)
cache.Store(varname, d)
return d
}
func Int64(varname string, def int64) int64 {
func Int64(varname string, def int64) (d int64) {
var err error
if v, ok := cache.Load(varname); ok {
return v.(int64)
}
e := os.Getenv(varname)
if e == "" {
return def
}
d, err := strconv.ParseInt(e, 10, 64)
if err != nil {
panic(err)
d = def
} else {
d, err = strconv.ParseInt(e, 10, 64)
if err != nil {
panic(err)
}
}
cache.Store(varname, d)
return d
}
func Bool(varname string, def bool) bool {
func Bool(varname string, def bool) (d bool) {
var err error
if v, ok := cache.Load(varname); ok {
return v.(bool)
}
e := os.Getenv(varname)
if e == "" {
return def
}
d, err := strconv.ParseBool(e)
if err != nil {
panic(err)
d = def
} else {
d, err = strconv.ParseBool(e)
if err != nil {
panic(err)
}
}
cache.Store(varname, d)
return d
}
func String(varname string, def string) string {
func String(varname string, def string) (d string) {
if v, ok := cache.Load(varname); ok {
return v.(string)
}
e := os.Getenv(varname)
if e == "" {
return def
d = def
} else {
d = e
}
cache.Store(varname, e)
return e
cache.Store(varname, d)
return d
}
func Var(varname string, def flag.Value) interface{} {
func Var(varname string, def flag.Value) (d interface{}) {
// use def's type to instantiate a new object of that same type
// and call flag.Value.Set() on it
@@ -100,19 +116,43 @@ func Var(varname string, def flag.Value) interface{} {
defElemType := defType.Elem()
if v, ok := cache.Load(varname); ok {
return v.(string)
return v
}
e := os.Getenv(varname)
if e == "" {
return def
d = def
} else {
newInstance := reflect.New(defElemType)
if err := newInstance.Interface().(flag.Value).Set(e); err != nil {
panic(err)
}
d = newInstance.Interface()
}
newInstance := reflect.New(defElemType)
if err := newInstance.Interface().(flag.Value).Set(e); err != nil {
panic(err)
}
res := newInstance.Interface()
cache.Store(varname, res)
return res
cache.Store(varname, d)
return d
}
type Report struct {
Entries []EntryReport
}
type EntryReport struct {
Var string
Value string
ValueGoType string
}
func GetReport() *Report {
var r Report
cache.Range(func(key, value interface{}) bool {
r.Entries = append(r.Entries, EntryReport{
Var: key.(string),
Value: fmt.Sprintf("%v", value),
ValueGoType: fmt.Sprintf("%T", value),
})
return true
})
return &r
}
+11 -3
View File
@@ -32,19 +32,27 @@ func (m *ExampleVarType) Set(s string) error {
const EnvVarName = "ZREPL_ENVCONST_UNIT_TEST_VAR"
func TestVar(t *testing.T) {
func TestVarDefaultValue(t *testing.T) {
envconst.Reset()
_, set := os.LookupEnv(EnvVarName)
require.False(t, set)
defer os.Unsetenv(EnvVarName)
val := envconst.Var(EnvVarName, &Var1)
if &Var1 != val {
t.Errorf("default value shut be same address")
t.Errorf("default value should be same address")
}
}
func TestVarOverriddenValue(t *testing.T) {
envconst.Reset()
_, set := os.LookupEnv(EnvVarName)
require.False(t, set)
defer os.Unsetenv(EnvVarName)
err := os.Setenv(EnvVarName, "var2")
require.NoError(t, err)
val = envconst.Var(EnvVarName, &Var1)
val := envconst.Var(EnvVarName, &Var1)
require.Equal(t, &Var2, val, "only structural identity is required for non-default vars")
}
+20
View File
@@ -3,6 +3,8 @@ package version
import (
"fmt"
"runtime"
"github.com/prometheus/client_golang/prometheus"
)
var (
@@ -29,3 +31,21 @@ func (i *ZreplVersionInformation) String() string {
return fmt.Sprintf("zrepl version=%s GOOS=%s GOARCH=%s Compiler=%s",
i.Version, i.RuntimeGOOS, i.RuntimeGOARCH, i.RUNTIMECompiler)
}
var prometheusMetric = prometheus.NewUntypedFunc(
prometheus.UntypedOpts{
Namespace: "zrepl",
Subsystem: "version",
Name: "daemon",
Help: "zrepl daemon version",
ConstLabels: map[string]string{
"raw": zreplVersion,
"version_info": NewZreplVersionInformation().String(),
},
},
func() float64 { return 1 },
)
func PrometheusRegister(r prometheus.Registerer) {
r.MustRegister(prometheusMetric)
}
+14 -7
View File
@@ -33,9 +33,10 @@ type DatasetPathVisit struct {
Path *DatasetPath
// If true, the dataset referenced by Path was not in the list of datasets to traverse
FilledIn bool
Parent *DatasetPathVisit
}
type DatasetPathsVisitor func(v DatasetPathVisit) (visitChildTree bool)
type DatasetPathsVisitor func(v *DatasetPathVisit) (visitChildTree bool)
// Traverse a list of DatasetPaths top down, i.e. given a set of datasets with same
// path prefix, those with shorter prefix are traversed first.
@@ -44,7 +45,11 @@ type DatasetPathsVisitor func(v DatasetPathVisit) (visitChildTree bool)
func (f *DatasetPathForest) WalkTopDown(visitor DatasetPathsVisitor) {
for _, r := range f.roots {
r.WalkTopDown([]string{}, visitor)
r.WalkTopDown(&DatasetPathVisit{
Path: &DatasetPath{nil},
FilledIn: true,
Parent: nil,
}, visitor)
}
}
@@ -88,19 +93,21 @@ func (t *datasetPathTree) Add(p []string) bool {
}
func (t *datasetPathTree) WalkTopDown(parent []string, visitor DatasetPathsVisitor) {
func (t *datasetPathTree) WalkTopDown(parent *DatasetPathVisit, visitor DatasetPathsVisitor) {
this := append(parent, t.Component)
thisVisitPath := parent.Path.Copy()
thisVisitPath.Extend(&DatasetPath{[]string{t.Component}})
thisVisit := DatasetPathVisit{
&DatasetPath{this},
thisVisit := &DatasetPathVisit{
thisVisitPath,
t.FilledIn,
parent,
}
visitChildTree := visitor(thisVisit)
if visitChildTree {
for _, c := range t.Children {
c.WalkTopDown(this, visitor)
c.WalkTopDown(thisVisit, visitor)
}
}
+27 -7
View File
@@ -28,8 +28,8 @@ func makeVisitRecorder() (v DatasetPathsVisitor, rec *visitRecorder) {
rec = &visitRecorder{
visits: make([]DatasetPathVisit, 0),
}
v = func(v DatasetPathVisit) bool {
rec.visits = append(rec.visits, v)
v = func(v *DatasetPathVisit) bool {
rec.visits = append(rec.visits, *v)
return true
}
return
@@ -43,6 +43,27 @@ func buildForest(paths []*DatasetPath) (f *DatasetPathForest) {
return
}
type expectedDatasetPathVisit struct {
expectPath *DatasetPath
expectFillIn bool
}
func (e *expectedDatasetPathVisit) AssertEqual(t *testing.T, actual DatasetPathVisit) {
assert.Equal(t, e.expectPath, actual.Path)
assert.Equal(t, e.expectFillIn, actual.FilledIn)
if actual.Parent != nil {
assert.Equal(t, actual.Parent.Path.Length()+1, e.expectPath.Length())
assert.True(t, e.expectPath.HasPrefix(actual.Parent.Path))
}
}
func expectedDatasetPathVisits(t *testing.T, expected []expectedDatasetPathVisit, actual []DatasetPathVisit) {
assert.Equal(t, len(expected), len(actual))
for i := range expected {
expected[i].AssertEqual(t, actual[i])
}
}
func TestDatasetPathForestWalkTopDown(t *testing.T) {
paths := []*DatasetPath{
@@ -56,7 +77,7 @@ func TestDatasetPathForestWalkTopDown(t *testing.T) {
buildForest(paths).WalkTopDown(v)
expectedVisits := []DatasetPathVisit{
expectedVisits := []expectedDatasetPathVisit{
{toDatasetPath("pool1"), false},
{toDatasetPath("pool1/foo"), true},
{toDatasetPath("pool1/foo/bar"), false},
@@ -65,8 +86,7 @@ func TestDatasetPathForestWalkTopDown(t *testing.T) {
{toDatasetPath("pool2/test"), true},
{toDatasetPath("pool2/test/bar"), false},
}
assert.Equal(t, expectedVisits, rec.visits)
expectedDatasetPathVisits(t, expectedVisits, rec.visits)
}
func TestDatasetPathWalkTopDownWorksUnordered(t *testing.T) {
@@ -82,7 +102,7 @@ func TestDatasetPathWalkTopDownWorksUnordered(t *testing.T) {
buildForest(paths).WalkTopDown(v)
expectedVisits := []DatasetPathVisit{
expectedVisits := []expectedDatasetPathVisit{
{toDatasetPath("pool1"), false},
{toDatasetPath("pool1/foo"), true},
{toDatasetPath("pool1/foo/bar"), false},
@@ -91,6 +111,6 @@ func TestDatasetPathWalkTopDownWorksUnordered(t *testing.T) {
{toDatasetPath("pool1/bang/baz"), false},
}
assert.Equal(t, expectedVisits, rec.visits)
expectedDatasetPathVisits(t, expectedVisits, rec.visits)
}
+15 -5
View File
@@ -6,6 +6,7 @@ import (
"encoding/hex"
"fmt"
"github.com/pkg/errors"
"github.com/zrepl/zrepl/zfs/zfscmd"
)
@@ -78,14 +79,23 @@ func ZFSGetFilesystemPlaceholderState(ctx context.Context, p *DatasetPath) (stat
return state, nil
}
func ZFSCreatePlaceholderFilesystem(ctx context.Context, p *DatasetPath) (err error) {
if p.Length() == 1 {
return fmt.Errorf("cannot create %q: pools cannot be created with zfs create", p.ToString())
func ZFSCreatePlaceholderFilesystem(ctx context.Context, fs *DatasetPath, parent *DatasetPath) (err error) {
if fs.Length() == 1 {
return fmt.Errorf("cannot create %q: pools cannot be created with zfs create", fs.ToString())
}
cmd := zfscmd.CommandContext(ctx, ZFS_BINARY, "create",
cmdline := []string{
"create",
"-o", fmt.Sprintf("%s=%s", PlaceholderPropertyName, placeholderPropertyOn),
"-o", "mountpoint=none",
p.ToString())
}
if parentEncrypted, err := ZFSGetEncryptionEnabled(ctx, parent.ToString()); err != nil {
return errors.Wrap(err, "cannot determine encryption support")
} else if parentEncrypted {
cmdline = append(cmdline, "-o", "encryption=off")
}
cmdline = append(cmdline, fs.ToString())
cmd := zfscmd.CommandContext(ctx, ZFS_BINARY, cmdline...)
stdio, err := cmd.CombinedOutput()
if err != nil {
-2
View File
@@ -115,8 +115,6 @@ func (v FilesystemVersion) RelName() string {
}
func (v FilesystemVersion) String() string { return v.RelName() }
func (v FilesystemVersion) GetCreation() time.Time { return v.Creation }
// Only takes into account those attributes of FilesystemVersion that
// are immutable over time in ZFS.
func FilesystemVersionEqualIdentity(a, b FilesystemVersion) bool {
+41 -44
View File
@@ -860,9 +860,9 @@ type DrySendInfo struct {
var (
// keep same number of capture groups for unmarshalInfoLine homogeneity
sendDryRunInfoLineRegexFull = regexp.MustCompile(`^(full)\t()([^\t]+@[^\t]+)\t([0-9]+)$`)
sendDryRunInfoLineRegexFull = regexp.MustCompile(`^(?P<type>full)\t()(?P<to>[^\t]+@[^\t]+)(\t(?P<size>[0-9]+))?$`)
// cannot enforce '[#@]' in incremental source, see test cases
sendDryRunInfoLineRegexIncremental = regexp.MustCompile(`^(incremental)\t([^\t]+)\t([^\t]+@[^\t]+)\t([0-9]+)$`)
sendDryRunInfoLineRegexIncremental = regexp.MustCompile(`^(?P<type>incremental)\t(?P<from>[^\t]+)\t(?P<to>[^\t]+@[^\t]+)(\t(?P<size>[0-9]+))?$`)
)
// see test cases for example output
@@ -890,30 +890,44 @@ func (s *DrySendInfo) unmarshalInfoLine(l string) (regexMatched bool, err error)
mFull := sendDryRunInfoLineRegexFull.FindStringSubmatch(l)
mInc := sendDryRunInfoLineRegexIncremental.FindStringSubmatch(l)
var matchingExpr *regexp.Regexp
var m []string
if mFull == nil && mInc == nil {
return false, nil
} else if mFull != nil && mInc != nil {
panic(fmt.Sprintf("ambiguous ZFS dry send output: %q", l))
} else if mFull != nil {
m = mFull
matchingExpr, m = sendDryRunInfoLineRegexFull, mFull
} else if mInc != nil {
m = mInc
matchingExpr, m = sendDryRunInfoLineRegexIncremental, mInc
}
s.Type, err = DrySendTypeFromString(m[1])
fields := make(map[string]string, matchingExpr.NumSubexp())
for i, name := range matchingExpr.SubexpNames() {
if i != 0 {
fields[name] = m[i]
}
}
s.Type, err = DrySendTypeFromString(fields["type"])
if err != nil {
return true, err
}
s.From = m[2]
s.To = m[3]
s.From = fields["from"]
s.To = fields["to"]
toFS, _, _, err := DecomposeVersionString(s.To)
if err != nil {
return true, fmt.Errorf("'to' is not a valid filesystem version: %s", err)
}
s.Filesystem = toFS
s.SizeEstimate, err = strconv.ParseInt(m[4], 10, 64)
if fields["size"] == "" {
// workaround for OpenZFS 0.7 prior to https://github.com/openzfs/zfs/commit/835db58592d7d947e5818eb7281882e2a46073e0#diff-66bd524398bcd2ac70d90925ab6d8073L1245
// see https://github.com/zrepl/zrepl/issues/289
fields["size"] = "0"
}
s.SizeEstimate, err = strconv.ParseInt(fields["size"], 10, 64)
if err != nil {
return true, fmt.Errorf("cannot not parse size: %s", err)
}
@@ -1500,30 +1514,6 @@ func tryParseDestroySnapshotsError(arg string, stderr []byte) *DestroySnapshotsE
}
}
type ErrDestroySnapshotDatasetIsBusy struct {
*DestroySnapshotsError
Name string
}
var _ error = (*ErrDestroySnapshotDatasetIsBusy)(nil)
func tryErrDestroySnapshotDatasetIsBusy(arg string, stderr []byte) *ErrDestroySnapshotDatasetIsBusy {
dsne := tryParseDestroySnapshotsError(arg, stderr)
if dsne == nil {
return nil
}
if len(dsne.Reason) != 1 {
return nil
}
if dsne.Reason[0] == "dataset is busy" {
return &ErrDestroySnapshotDatasetIsBusy{
DestroySnapshotsError: dsne,
Name: dsne.Undestroyable[0],
}
}
return nil
}
func ZFSDestroy(ctx context.Context, arg string) (err error) {
var dstype, filesystem string
@@ -1557,8 +1547,6 @@ func ZFSDestroy(ctx context.Context, arg string) (err error) {
err = &DatasetDoesNotExist{arg}
} else if dsNotExistErr := tryDatasetDoesNotExist(filesystem, stdio); dsNotExistErr != nil {
err = dsNotExistErr
} else if dsBusy := tryErrDestroySnapshotDatasetIsBusy(arg, stdio); dsBusy != nil {
err = dsBusy
} else if dserr := tryParseDestroySnapshotsError(arg, stdio); dserr != nil {
err = dserr
}
@@ -1619,9 +1607,10 @@ var ErrBookmarkCloningNotSupported = fmt.Errorf("bookmark cloning feature is not
// idempotently create bookmark of the given version v
//
// v must be validated by the caller
// if `v` is a bookmark, returns ErrBookmarkCloningNotSupported
// unless a bookmark with the name `bookmark` exists and has the same idenitty (zfs.FilesystemVersionEqualIdentity)
//
// does not destroy an existing bookmark, returns
// v must be validated by the caller
//
func ZFSBookmark(ctx context.Context, fs string, v FilesystemVersion, bookmark string) (bm FilesystemVersion, err error) {
@@ -1638,7 +1627,21 @@ func ZFSBookmark(ctx context.Context, fs string, v FilesystemVersion, bookmark s
promTimer := prometheus.NewTimer(prom.ZFSBookmarkDuration.WithLabelValues(fs))
defer promTimer.ObserveDuration()
if !v.IsSnapshot() {
bookmarkname := fmt.Sprintf("%s#%s", fs, bookmark)
if err := EntityNamecheck(bookmarkname, EntityTypeBookmark); err != nil {
return bm, err
}
if v.IsBookmark() {
existingBm, err := ZFSGetFilesystemVersion(ctx, bookmarkname)
if _, ok := err.(*DatasetDoesNotExist); ok {
return bm, ErrBookmarkCloningNotSupported
} else if err != nil {
return bm, errors.Wrap(err, "bookmark: idempotency check for bookmark cloning")
}
if FilesystemVersionEqualIdentity(bm, existingBm) {
return existingBm, nil
}
return bm, ErrBookmarkCloningNotSupported // TODO This is work in progress: https://github.com/zfsonlinux/zfs/pull/9571
}
@@ -1646,12 +1649,6 @@ func ZFSBookmark(ctx context.Context, fs string, v FilesystemVersion, bookmark s
if err := EntityNamecheck(snapname, EntityTypeSnapshot); err != nil {
return bm, err
}
bookmarkname := fmt.Sprintf("%s#%s", fs, bookmark)
if err := EntityNamecheck(bookmarkname, EntityTypeBookmark); err != nil {
return bm, err
}
debug("bookmark: %q %q", snapname, bookmarkname)
cmd := zfscmd.CommandContext(ctx, ZFS_BINARY, "bookmark", snapname, bookmarkname)
stdio, err := cmd.CombinedOutput()
@@ -1663,7 +1660,7 @@ func ZFSBookmark(ctx context.Context, fs string, v FilesystemVersion, bookmark s
// check if this was idempotent
bookGuid, err := ZFSGetGUID(ctx, fs, "#"+bookmark)
if err != nil {
return bm, errors.Wrap(err, "bookmark idempotency check") // guid error expressive enough
return bm, errors.Wrap(err, "bookmark: idempotency check for bookmark creation") // guid error expressive enough
}
if v.Guid == bookGuid {
+34 -1
View File
@@ -136,6 +136,18 @@ size 10511856
fullNoToken := `
full zroot/test/a@3 10518512
size 10518512
`
// zero-length incremental send on ZoL 0.7.12
// (it omits the size field as well as the size line if size is 0)
// see https://github.com/zrepl/zrepl/issues/289
// fixed in https://github.com/openzfs/zfs/commit/835db58592d7d947e5818eb7281882e2a46073e0#diff-66bd524398bcd2ac70d90925ab6d8073L1245
incZeroSized_0_7_12 := `
incremental p1 with/ spaces d1@1 with space p1 with/ spaces d1@2 with space
`
fullZeroSized_0_7_12 := `
full p1 with/ spaces d1@2 with space
`
fullWithSpaces := "\nfull\tpool1/otherjob/ds with spaces@blaffoo\t12912\nsize\t12912\n"
@@ -243,6 +255,25 @@ size 10518512
SizeEstimate: 624,
},
},
{
name: "incrementalZeroSizedOpenZFS_pre0.7.12", in: incZeroSized_0_7_12,
exp: &DrySendInfo{
Type: DrySendTypeIncremental,
Filesystem: "p1 with/ spaces d1",
From: "p1 with/ spaces d1@1 with space",
To: "p1 with/ spaces d1@2 with space",
SizeEstimate: 0,
},
},
{
name: "fullZeroSizedOpenZFS_pre0.7.12", in: fullZeroSized_0_7_12,
exp: &DrySendInfo{
Type: DrySendTypeFull,
Filesystem: "p1 with/ spaces d1",
To: "p1 with/ spaces d1@2 with space",
SizeEstimate: 0,
},
},
}
for _, tc := range tcs {
@@ -251,10 +282,12 @@ size 10518512
in := tc.in[1:] // strip first newline
var si DrySendInfo
err := si.unmarshalZFSOutput([]byte(in))
t.Logf("%#v", &si)
t.Logf("err=%T %s", err, err)
if tc.expErr {
assert.Error(t, err)
}
t.Logf("%#v", &si)
if tc.exp != nil {
assert.Equal(t, tc.exp, &si)
}