package ui import ( "context" "fmt" "regexp" "strings" "github.com/derailed/k9s/internal" "github.com/derailed/k9s/internal/config" "github.com/derailed/k9s/internal/render" "github.com/rs/zerolog/log" "github.com/sahilm/fuzzy" ) const ( // DefaultColorName indicator to keep term colors. DefaultColorName = "default" // SearchFmt represents a filter view title. SearchFmt = "<[filter:bg:r]/%s[fg:bg:-]> " // NSTitleFmt represents a namespaced view title. NSTitleFmt = "[fg:bg:b] %s([hilite:bg:b]%s[fg:bg:-])[fg:bg:-][[count:bg:b]%d[fg:bg:-]][fg:bg:-] " // TitleFmt represents a standard view title. TitleFmt = "[fg:bg:b] %s[fg:bg:-][[count:bg:b]%d[fg:bg:-]][fg:bg:-] " descIndicator = "↓" ascIndicator = "↑" // FullFmat specifies a namespaced dump file name. FullFmat = "%s-%s-%d.csv" // NoNSFmat specifies a cluster wide dump file name. NoNSFmat = "%s-%d.csv" ) var ( // LableRx identifies a label query LableRx = regexp.MustCompile(`\A\-l`) fuzzyRx = regexp.MustCompile(`\A\-f`) ) func mustExtractStyles(ctx context.Context) *config.Styles { styles, ok := ctx.Value(internal.KeyStyles).(*config.Styles) if !ok { log.Fatal().Msg("Expecting valid styles") } return styles } // TrimCell removes superfluous padding. func TrimCell(tv *SelectTable, row, col int) string { c := tv.GetCell(row, col) if c == nil { log.Error().Err(fmt.Errorf("No cell at location [%d:%d]", row, col)).Msg("Trim cell failed!") return "" } return strings.TrimSpace(c.Text) } // IsLabelSelector checks if query is a label query. func IsLabelSelector(s string) bool { if s == "" { return false } return LableRx.MatchString(s) } // IsFuzzySelector checks if query is fuzzy. func IsFuzzySelector(s string) bool { if s == "" { return false } return fuzzyRx.MatchString(s) } // TrimLabelSelector extracts label query. func TrimLabelSelector(s string) string { return strings.TrimSpace(s[2:]) } // SkinTitle decorates a title. func SkinTitle(fmat string, style config.Frame) string { bgColor := style.Title.BgColor if bgColor == config.DefaultColor { bgColor = config.TransparentColor } fmat = strings.Replace(fmat, "[fg:bg", "["+style.Title.FgColor.String()+":"+bgColor.String(), -1) fmat = strings.Replace(fmat, "[hilite", "["+style.Title.HighlightColor.String(), 1) fmat = strings.Replace(fmat, "[key", "["+style.Menu.NumKeyColor.String(), 1) fmat = strings.Replace(fmat, "[filter", "["+style.Title.FilterColor.String(), 1) fmat = strings.Replace(fmat, "[count", "["+style.Title.CounterColor.String(), 1) fmat = strings.Replace(fmat, ":bg:", ":"+bgColor.String()+":", -1) return fmat } func sortIndicator(sort, asc bool, style config.Table, name string) string { if !sort { return name } order := descIndicator if asc { order = ascIndicator } return fmt.Sprintf("%s[%s::b]%s[::]", name, style.Header.SorterColor, order) } func formatCell(field string, padding int) string { if IsASCII(field) { return Pad(field, padding) } return field } func filterToast(data render.TableData) render.TableData { validX := data.Header.IndexOf("VALID", true) if validX == -1 { return data } toast := render.TableData{ Header: data.Header, RowEvents: make(render.RowEvents, 0, len(data.RowEvents)), Namespace: data.Namespace, } for _, re := range data.RowEvents { if re.Row.Fields[validX] != "" { toast.RowEvents = append(toast.RowEvents, re) } } return toast } func rxFilter(q string, data render.TableData) (render.TableData, error) { rx, err := regexp.Compile(`(?i)` + q) if err != nil { return data, err } filtered := render.TableData{ Header: data.Header, RowEvents: make(render.RowEvents, 0, len(data.RowEvents)), Namespace: data.Namespace, } for _, re := range data.RowEvents { fields := strings.Join(re.Row.Fields, " ") if rx.MatchString(fields) { filtered.RowEvents = append(filtered.RowEvents, re) } } return filtered, nil } func fuzzyFilter(q string, data render.TableData) render.TableData { q = strings.TrimSpace(q) var ss []string for _, re := range data.RowEvents { ss = append(ss, re.Row.ID) } filtered := render.TableData{ Header: data.Header, RowEvents: make(render.RowEvents, 0, len(data.RowEvents)), Namespace: data.Namespace, } mm := fuzzy.Find(q, ss) for _, m := range mm { filtered.RowEvents = append(filtered.RowEvents, data.RowEvents[m.Index]) } return filtered }