package analyzer import ( "encoding/json" "fmt" "strings" "github.com/pkg/errors" troubleshootv1beta2 "github.com/replicatedhq/troubleshoot/pkg/apis/troubleshoot/v1beta2" "github.com/replicatedhq/troubleshoot/pkg/collect" "k8s.io/apimachinery/pkg/api/resource" ) type AnalyzeHostMemory struct { hostAnalyzer *troubleshootv1beta2.MemoryAnalyze } func (a *AnalyzeHostMemory) Title() string { return hostAnalyzerTitleOrDefault(a.hostAnalyzer.AnalyzeMeta, "Amount of Memory") } func (a *AnalyzeHostMemory) IsExcluded() (bool, error) { return isExcluded(a.hostAnalyzer.Exclude) } func (a *AnalyzeHostMemory) Analyze( getCollectedFileContents func(string) ([]byte, error), findFiles getChildCollectedFileContents, ) ([]*AnalyzeResult, error) { result := AnalyzeResult{Title: a.Title()} // Use the generic function to collect both local and remote data collectedContents, err := retrieveCollectedContents( getCollectedFileContents, collect.HostMemoryPath, // Local path collect.NodeInfoBaseDir, // Remote base directory collect.HostMemoryFileName, // Remote file name ) if err != nil { return []*AnalyzeResult{&result}, err } results, err := analyzeHostCollectorResults(collectedContents, a.hostAnalyzer.Outcomes, a.CheckCondition, a.Title()) if err != nil { return nil, errors.Wrap(err, "failed to analyze OS version") } return results, nil } // checkCondition checks the condition of the when clause func (a *AnalyzeHostMemory) CheckCondition(when string, data []byte) (bool, error) { var memInfo collect.MemoryInfo if err := json.Unmarshal(data, &memInfo); err != nil { return false, fmt.Errorf("failed to unmarshal data into MemoryInfo: %v", err) } parts := strings.Split(when, " ") if len(parts) != 2 { return false, fmt.Errorf("Expected 2 parts in conditional, got %d", len(parts)) } operator := parts[0] desired := parts[1] quantity, err := resource.ParseQuantity(desired) if err != nil { return false, fmt.Errorf("could not parse quantity %q", desired) } desiredInt, ok := quantity.AsInt64() if !ok { return false, fmt.Errorf("could not parse quantity %q", desired) } if desiredInt < 0 { return false, fmt.Errorf("desired value must be a positive integer, got %d", desiredInt) } switch operator { case "<": return memInfo.Total < uint64(desiredInt), nil case "<=": return memInfo.Total <= uint64(desiredInt), nil case ">": return memInfo.Total > uint64(desiredInt), nil case ">=": return memInfo.Total >= uint64(desiredInt), nil case "=", "==", "===": return memInfo.Total == uint64(desiredInt), nil default: return false, fmt.Errorf("unsupported operator: %q", operator) } }