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lib/storage: follow up after 00cbb099b6
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@ -19,6 +19,7 @@ sort: 15
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* FEATURE: vmagent: reduce CPU usage when applying `series_limit` to scrape targets with constant set of metrics. See more information about `series_limit` [here](https://docs.victoriametrics.com/vmagent.html#cardinality-limiter).
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* FEATURE: vminsert: disable rerouting by default when a few of `vmstorage` nodes start accepting data at lower speed than the rest of `vmstorage` nodes. This should improve VictoriaMetrics cluster stability during rolling restarts and during spikes in [time series churn rate](https://docs.victoriametrics.com/FAQ.html#what-is-high-churn-rate). The rerouting can be enabled by passing `-disableRerouting=false` command-line flag to `vminsert`.
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* FEATURE: vmauth: do not put invalid auth tokens into log by default due to security reasons. The logging can be returned back by passing `-logInvalidAuthTokens` command-line flag to `vmauth`. Requests with invalid auth tokens are counted at `vmagent_http_request_errors_total{reason="invalid_auth_token"}` metric exposed by `vmauth` at `/metrics` page.
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* FEATURE: optimize performance for queries with regexp filters on metric name like `{__name__=~"metric1|...|metricN"}`. See [this pull request](https://github.com/VictoriaMetrics/VictoriaMetrics/pull/1610) from @faceair.
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* BUGFIX: properly handle queries with multiple filters matching empty labels such as `metric{label1=~"foo|",label2="bar|"}`. This filter must match the following series: `metric`, `metric{label1="foo"}`, `metric{label2="bar"}` and `metric{label1="foo",label2="bar"}`. Previously it was matching only `metric{label1="foo",label2="bar"}`. See [this issue](https://github.com/VictoriaMetrics/VictoriaMetrics/issues/1601).
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* BUGFIX: vmselect: reset connection timeouts after each request to `vmstorage`. This should prevent from `cannot read data in 0.000 seconds: unexpected EOF` warning in logs. See [this issue](https://github.com/VictoriaMetrics/VictoriaMetrics/issues/1562). Thanks to @mxlxm .
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@ -21,65 +21,80 @@ import (
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func convertToCompositeTagFilterss(tfss []*TagFilters) []*TagFilters {
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tfssNew := make([]*TagFilters, 0, len(tfss))
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for _, tfs := range tfss {
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tfssNew = append(tfss, convertToCompositeTagFilters(tfs)...)
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tfssNew = append(tfssNew, convertToCompositeTagFilters(tfs)...)
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}
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return tfssNew
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}
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func convertToCompositeTagFilters(tfs *TagFilters) []*TagFilters {
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tfssCompiled := make([]*TagFilters, 0)
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var tfssCompiled []*TagFilters
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// Search for filters on metric name, which will be used for creating composite filters.
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var names [][]byte
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hasPositiveFilter := false
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for _, tf := range tfs.tfs {
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if len(tf.key) == 0 && !tf.isNegative && !tf.isRegexp {
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names = [][]byte{tf.value}
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} else if len(tf.key) == 0 && !tf.isNegative && tf.isRegexp && len(tf.orSuffixes) > 0 {
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// Split the filter {__name__=~"name1|...|nameN", other_filters}
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// into `name1{other_filters}`, ..., `nameN{other_filters}`
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// and generate composite filters for each of them
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names = names[:0]
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for _, orSuffix := range tf.orSuffixes {
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names = append(names, []byte(orSuffix))
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if len(tf.key) == 0 {
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if !tf.isNegative && !tf.isRegexp {
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names = [][]byte{tf.value}
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} else if !tf.isNegative && tf.isRegexp && len(tf.orSuffixes) > 0 {
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// Split the filter {__name__=~"name1|...|nameN", other_filters}
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// into name1{other_filters}, ..., nameN{other_filters}
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// and generate composite filters for each of them.
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names = names[:0] // override the previous filters on metric name
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for _, orSuffix := range tf.orSuffixes {
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names = append(names, []byte(orSuffix))
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}
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}
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} else if !tf.isNegative && !tf.isEmptyMatch {
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hasPositiveFilter = true
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}
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}
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if len(names) == 0 {
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tfssCompiled = append(tfssCompiled, tfs)
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atomic.AddUint64(&compositeFilterMissingConversions, 1)
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return tfssCompiled
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return []*TagFilters{tfs}
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}
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// Create composite filters for the found names.
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var compositeKey []byte
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compositeFilters := 0
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for _, name := range names {
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compositeFilters := 0
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tfsNew := make([]tagFilter, 0, len(tfs.tfs))
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for _, tf := range tfs.tfs {
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if len(tf.key) == 0 {
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sameOrSuffixes := true
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if len(names) != len(tf.orSuffixes) {
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sameOrSuffixes = false
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} else {
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for i, orSuffix := range tf.orSuffixes {
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if string(names[i]) != orSuffix {
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sameOrSuffixes = false
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if !hasPositiveFilter || tf.isNegative {
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// Negative filters on metric name cannot be used for building composite filter, so leave them as is.
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tfsNew = append(tfsNew, tf)
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continue
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}
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if tf.isRegexp {
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matchName := false
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for _, orSuffix := range tf.orSuffixes {
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if orSuffix == string(name) {
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matchName = true
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break
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}
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}
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if !matchName {
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// Leave as is the regexp filter on metric name if it doesn't match the current name.
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tfsNew = append(tfsNew, tf)
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continue
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}
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// Skip the tf, since its part (name) is used as a prefix in composite filter.
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continue
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}
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if !hasPositiveFilter || tf.isNegative || tf.isRegexp && !sameOrSuffixes || !tf.isRegexp && string(tf.value) != string(name) {
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if string(tf.value) != string(name) {
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// Leave as is the filter on another metric name.
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tfsNew = append(tfsNew, tf)
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continue
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}
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// Skip the tf, since it is used as a prefix in composite filter.
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continue
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}
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if string(tf.key) == "__graphite__" || bytes.Equal(tf.key, graphiteReverseTagKey) {
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// Leave as is __graphite__ filters, since they cannot be used for building composite filter.
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tfsNew = append(tfsNew, tf)
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continue
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}
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// Create composite filter on (name, tf)
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compositeKey = marshalCompositeTagKey(compositeKey[:0], name, tf.key)
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var tfNew tagFilter
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if err := tfNew.Init(tfs.commonPrefix, compositeKey, tf.value, tf.isNegative, tf.isRegexp); err != nil {
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@ -88,15 +103,16 @@ func convertToCompositeTagFilters(tfs *TagFilters) []*TagFilters {
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tfsNew = append(tfsNew, tfNew)
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compositeFilters++
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}
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if compositeFilters == 0 {
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// Cannot use tfsNew, since it doesn't contain composite filters, e.g. it may match broader set of series.
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// Fall back to the original tfs.
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atomic.AddUint64(&compositeFilterMissingConversions, 1)
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return []*TagFilters{tfs}
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}
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tfsCompiled := NewTagFilters(tfs.accountID, tfs.projectID)
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tfsCompiled.tfs = tfsNew
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tfssCompiled = append(tfssCompiled, tfsCompiled)
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}
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if compositeFilters == 0 {
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tfssCompiled = append(tfssCompiled[:0], tfs)
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atomic.AddUint64(&compositeFilterMissingConversions, 1)
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return tfssCompiled
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}
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atomic.AddUint64(&compositeFilterSuccessConversions, 1)
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return tfssCompiled
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}
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@ -17,9 +17,9 @@ func TestConvertToCompositeTagFilters(t *testing.T) {
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t.Fatalf("cannot add tf=%s: %s", tf.String(), err)
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}
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}
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resultCompileds := convertToCompositeTagFilters(tfsCompiled)
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result := make([][]TagFilter, len(resultCompileds))
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for i, resultCompiled := range resultCompileds {
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resultsCompiled := convertToCompositeTagFilterss([]*TagFilters{tfsCompiled})
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result := make([][]TagFilter, len(resultsCompiled))
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for i, resultCompiled := range resultsCompiled {
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if resultCompiled.accountID != accountID {
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t.Fatalf("unexpected accountID; got %d; want %d", resultCompiled.accountID, accountID)
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}
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