mirror of
https://github.com/kubernetes-sigs/node-feature-discovery.git
synced 2025-03-09 18:27:01 +00:00
This commits extends NFD master code to support adding node taints from NodeFeatureRule CR. We also introduce a new annotation for taints which helps to identify if the taint set on node is owned by NFD or not. When user deletes the taint entry from NodeFeatureRule CR, NFD will remove the taint from the node. But to avoid accidental deletion of taints not owned by the NFD, it needs to know the owner. Keeping track of NFD set taints in the annotation can be used during the filtering of the owner. Also enable-taints flag is added to allow users opt in/out for node tainting feature. The flag takes precedence over taints defined in NodeFeatureRule CR. In other words, if enbale-taints is set to false(disabled) and user still defines taints on the CR, NFD will ignore those taints and skip them from setting on the node. Signed-off-by: Feruzjon Muyassarov <feruzjon.muyassarov@intel.com>
262 lines
6.9 KiB
Go
262 lines
6.9 KiB
Go
/*
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Copyright 2021 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package v1alpha1
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import (
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"bytes"
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"fmt"
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"strings"
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"text/template"
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corev1 "k8s.io/api/core/v1"
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"k8s.io/klog/v2"
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"sigs.k8s.io/node-feature-discovery/pkg/utils"
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)
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// RuleOutput contains the output out rule execution.
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// +k8s:deepcopy-gen=false
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type RuleOutput struct {
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Labels map[string]string
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Vars map[string]string
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Taints []corev1.Taint
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}
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// Execute the rule against a set of input features.
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func (r *Rule) Execute(features *Features) (RuleOutput, error) {
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labels := make(map[string]string)
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vars := make(map[string]string)
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if len(r.MatchAny) > 0 {
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// Logical OR over the matchAny matchers
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matched := false
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for _, matcher := range r.MatchAny {
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if isMatch, matches, err := matcher.match(features); err != nil {
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return RuleOutput{}, err
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} else if isMatch {
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matched = true
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utils.KlogDump(4, "matches for matchAny "+r.Name, " ", matches)
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if r.LabelsTemplate == "" && r.VarsTemplate == "" {
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// there's no need to evaluate other matchers in MatchAny
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// if there are no templates to be executed on them - so
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// short-circuit and stop on first match here
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break
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}
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if err := r.executeLabelsTemplate(matches, labels); err != nil {
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return RuleOutput{}, err
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}
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if err := r.executeVarsTemplate(matches, vars); err != nil {
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return RuleOutput{}, err
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}
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}
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}
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if !matched {
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klog.V(2).Infof("rule %q did not match", r.Name)
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return RuleOutput{}, nil
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}
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}
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if len(r.MatchFeatures) > 0 {
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if isMatch, matches, err := r.MatchFeatures.match(features); err != nil {
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return RuleOutput{}, err
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} else if !isMatch {
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klog.V(2).Infof("rule %q did not match", r.Name)
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return RuleOutput{}, nil
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} else {
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utils.KlogDump(4, "matches for matchFeatures "+r.Name, " ", matches)
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if err := r.executeLabelsTemplate(matches, labels); err != nil {
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return RuleOutput{}, err
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}
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if err := r.executeVarsTemplate(matches, vars); err != nil {
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return RuleOutput{}, err
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}
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}
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}
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for k, v := range r.Labels {
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labels[k] = v
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}
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for k, v := range r.Vars {
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vars[k] = v
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}
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ret := RuleOutput{Labels: labels, Vars: vars, Taints: r.Taints}
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utils.KlogDump(2, fmt.Sprintf("rule %q matched with: ", r.Name), " ", ret)
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return ret, nil
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}
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func (r *Rule) executeLabelsTemplate(in matchedFeatures, out map[string]string) error {
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if r.LabelsTemplate == "" {
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return nil
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}
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if r.labelsTemplate == nil {
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t, err := newTemplateHelper(r.LabelsTemplate)
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if err != nil {
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return fmt.Errorf("failed to parse LabelsTemplate: %w", err)
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}
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r.labelsTemplate = t
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}
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labels, err := r.labelsTemplate.expandMap(in)
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if err != nil {
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return fmt.Errorf("failed to expand LabelsTemplate: %w", err)
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}
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for k, v := range labels {
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out[k] = v
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}
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return nil
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}
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func (r *Rule) executeVarsTemplate(in matchedFeatures, out map[string]string) error {
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if r.VarsTemplate == "" {
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return nil
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}
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if r.varsTemplate == nil {
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t, err := newTemplateHelper(r.VarsTemplate)
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if err != nil {
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return err
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}
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r.varsTemplate = t
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}
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vars, err := r.varsTemplate.expandMap(in)
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if err != nil {
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return err
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}
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for k, v := range vars {
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out[k] = v
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}
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return nil
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}
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type matchedFeatures map[string]domainMatchedFeatures
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type domainMatchedFeatures map[string]interface{}
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func (e *MatchAnyElem) match(features *Features) (bool, matchedFeatures, error) {
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return e.MatchFeatures.match(features)
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}
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func (m *FeatureMatcher) match(features *Features) (bool, matchedFeatures, error) {
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matches := make(matchedFeatures, len(*m))
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// Logical AND over the terms
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for _, term := range *m {
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// Ignore case
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featureName := strings.ToLower(term.Feature)
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nameSplit := strings.SplitN(term.Feature, ".", 2)
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if len(nameSplit) != 2 {
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klog.Warning("feature %q not of format <domain>.<feature>, cannot be used for templating", term.Feature)
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nameSplit = []string{featureName, ""}
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}
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if _, ok := matches[nameSplit[0]]; !ok {
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matches[nameSplit[0]] = make(domainMatchedFeatures)
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}
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var isMatch bool
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var err error
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if f, ok := features.Flags[featureName]; ok {
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m, v, e := term.MatchExpressions.MatchGetKeys(f.Elements)
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isMatch = m
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err = e
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matches[nameSplit[0]][nameSplit[1]] = v
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} else if f, ok := features.Attributes[featureName]; ok {
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m, v, e := term.MatchExpressions.MatchGetValues(f.Elements)
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isMatch = m
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err = e
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matches[nameSplit[0]][nameSplit[1]] = v
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} else if f, ok := features.Instances[featureName]; ok {
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v, e := term.MatchExpressions.MatchGetInstances(f.Elements)
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isMatch = len(v) > 0
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err = e
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matches[nameSplit[0]][nameSplit[1]] = v
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} else {
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return false, nil, fmt.Errorf("feature %q not available", featureName)
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}
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if err != nil {
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return false, nil, err
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} else if !isMatch {
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return false, nil, nil
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}
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}
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return true, matches, nil
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}
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type templateHelper struct {
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template *template.Template
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}
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func newTemplateHelper(name string) (*templateHelper, error) {
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tmpl, err := template.New("").Option("missingkey=error").Parse(name)
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if err != nil {
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return nil, fmt.Errorf("invalid template: %w", err)
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}
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return &templateHelper{template: tmpl}, nil
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}
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// DeepCopy is a stub to augment the auto-generated code
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func (h *templateHelper) DeepCopy() *templateHelper {
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if h == nil {
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return nil
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}
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out := new(templateHelper)
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h.DeepCopyInto(out)
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return out
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}
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// DeepCopyInto is a stub to augment the auto-generated code
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func (h *templateHelper) DeepCopyInto(out *templateHelper) {
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// HACK: just re-use the template
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out.template = h.template
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}
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func (h *templateHelper) execute(data interface{}) (string, error) {
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var tmp bytes.Buffer
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if err := h.template.Execute(&tmp, data); err != nil {
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return "", err
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}
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return tmp.String(), nil
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}
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// expandMap is a helper for expanding a template in to a map of strings. Data
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// after executing the template is expexted to be key=value pairs separated by
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// newlines.
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func (h *templateHelper) expandMap(data interface{}) (map[string]string, error) {
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expanded, err := h.execute(data)
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if err != nil {
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return nil, err
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}
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// Split out individual key-value pairs
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out := make(map[string]string)
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for _, item := range strings.Split(expanded, "\n") {
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// Remove leading/trailing whitespace and skip empty lines
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if trimmed := strings.TrimSpace(item); trimmed != "" {
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split := strings.SplitN(trimmed, "=", 2)
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if len(split) == 1 {
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return nil, fmt.Errorf("missing value in expanded template line %q, (format must be '<key>=<value>')", trimmed)
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}
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out[split[0]] = split[1]
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}
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}
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return out, nil
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}
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