tty.go 3.1 KB

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  1. package progress
  2. import (
  3. "context"
  4. "fmt"
  5. "io"
  6. "strings"
  7. "sync"
  8. "time"
  9. "github.com/buger/goterm"
  10. "github.com/morikuni/aec"
  11. )
  12. type ttyWriter struct {
  13. out io.Writer
  14. events map[string]Event
  15. eventIDs []string
  16. repeated bool
  17. numLines int
  18. done chan bool
  19. mtx *sync.RWMutex
  20. }
  21. func (w *ttyWriter) Start(ctx context.Context) error {
  22. ticker := time.NewTicker(100 * time.Millisecond)
  23. for {
  24. select {
  25. case <-ctx.Done():
  26. w.print()
  27. return ctx.Err()
  28. case <-w.done:
  29. w.print()
  30. return nil
  31. case <-ticker.C:
  32. w.print()
  33. }
  34. }
  35. }
  36. func (w *ttyWriter) Stop() {
  37. w.done <- true
  38. }
  39. func (w *ttyWriter) Event(e Event) {
  40. w.mtx.Lock()
  41. defer w.mtx.Unlock()
  42. if !contains(w.eventIDs, e.ID) {
  43. w.eventIDs = append(w.eventIDs, e.ID)
  44. }
  45. if _, ok := w.events[e.ID]; ok {
  46. event := w.events[e.ID]
  47. if event.Status != Done && e.Status == Done {
  48. event.stop()
  49. }
  50. event.Status = e.Status
  51. event.Text = e.Text
  52. event.StatusText = e.StatusText
  53. w.events[e.ID] = event
  54. } else {
  55. e.startTime = time.Now()
  56. e.spinner = newSpinner()
  57. w.events[e.ID] = e
  58. }
  59. }
  60. func (w *ttyWriter) print() {
  61. w.mtx.Lock()
  62. defer w.mtx.Unlock()
  63. if len(w.eventIDs) == 0 {
  64. return
  65. }
  66. terminalWidth := goterm.Width()
  67. b := aec.EmptyBuilder
  68. for i := 0; i <= w.numLines; i++ {
  69. b = b.Up(1)
  70. }
  71. if !w.repeated {
  72. b = b.Down(1)
  73. }
  74. w.repeated = true
  75. fmt.Fprint(w.out, b.Column(0).ANSI)
  76. // Hide the cursor while we are printing
  77. fmt.Fprint(w.out, aec.Hide)
  78. defer fmt.Fprint(w.out, aec.Show)
  79. firstLine := fmt.Sprintf("[+] Running %d/%d", numDone(w.events), w.numLines)
  80. if w.numLines != 0 && numDone(w.events) == w.numLines {
  81. firstLine = aec.Apply(firstLine, aec.BlueF)
  82. }
  83. fmt.Fprintln(w.out, firstLine)
  84. var statusPadding int
  85. for _, v := range w.eventIDs {
  86. l := len(fmt.Sprintf("%s %s", w.events[v].ID, w.events[v].Text))
  87. if statusPadding < l {
  88. statusPadding = l
  89. }
  90. }
  91. numLines := 0
  92. for _, v := range w.eventIDs {
  93. line := lineText(w.events[v], terminalWidth, statusPadding)
  94. // nolint: errcheck
  95. fmt.Fprint(w.out, line)
  96. numLines++
  97. }
  98. w.numLines = numLines
  99. }
  100. func lineText(event Event, terminalWidth, statusPadding int) string {
  101. endTime := time.Now()
  102. if event.Status != Working {
  103. endTime = event.endTime
  104. }
  105. elapsed := endTime.Sub(event.startTime).Seconds()
  106. textLen := len(fmt.Sprintf("%s %s", event.ID, event.Text))
  107. padding := statusPadding - textLen
  108. if padding < 0 {
  109. padding = 0
  110. }
  111. text := fmt.Sprintf(" %s %s %s%s %s",
  112. event.spinner.String(),
  113. event.ID,
  114. event.Text,
  115. strings.Repeat(" ", padding),
  116. event.StatusText,
  117. )
  118. timer := fmt.Sprintf("%.1fs\n", elapsed)
  119. o := align(text, timer, terminalWidth)
  120. color := aec.WhiteF
  121. if event.Status == Done {
  122. color = aec.BlueF
  123. }
  124. if event.Status == Error {
  125. color = aec.RedF
  126. }
  127. return aec.Apply(o, color)
  128. }
  129. func numDone(events map[string]Event) int {
  130. i := 0
  131. for _, e := range events {
  132. if e.Status == Done {
  133. i++
  134. }
  135. }
  136. return i
  137. }
  138. func align(l, r string, w int) string {
  139. return fmt.Sprintf("%-[2]*[1]s %[3]s", l, w-len(r)-1, r)
  140. }
  141. func contains(ar []string, needle string) bool {
  142. for _, v := range ar {
  143. if needle == v {
  144. return true
  145. }
  146. }
  147. return false
  148. }