timeout_system_test.go 3.5 KB

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  1. package nebula
  2. import (
  3. "net"
  4. "testing"
  5. "time"
  6. "github.com/stretchr/testify/assert"
  7. )
  8. func TestNewSystemTimerWheel(t *testing.T) {
  9. // Make sure we get an object we expect
  10. tw := NewSystemTimerWheel(time.Second, time.Second*10)
  11. assert.Equal(t, 11, tw.wheelLen)
  12. assert.Equal(t, 0, tw.current)
  13. assert.Nil(t, tw.lastTick)
  14. assert.Equal(t, time.Second*1, tw.tickDuration)
  15. assert.Equal(t, time.Second*10, tw.wheelDuration)
  16. assert.Len(t, tw.wheel, 11)
  17. // Assert the math is correct
  18. tw = NewSystemTimerWheel(time.Second*3, time.Second*10)
  19. assert.Equal(t, 4, tw.wheelLen)
  20. tw = NewSystemTimerWheel(time.Second*120, time.Minute*10)
  21. assert.Equal(t, 6, tw.wheelLen)
  22. }
  23. func TestSystemTimerWheel_findWheel(t *testing.T) {
  24. tw := NewSystemTimerWheel(time.Second, time.Second*10)
  25. assert.Len(t, tw.wheel, 11)
  26. // Current + tick + 1 since we don't know how far into current we are
  27. assert.Equal(t, 2, tw.findWheel(time.Second*1))
  28. // Scale up to min duration
  29. assert.Equal(t, 2, tw.findWheel(time.Millisecond*1))
  30. // Make sure we hit that last index
  31. assert.Equal(t, 0, tw.findWheel(time.Second*10))
  32. // Scale down to max duration
  33. assert.Equal(t, 0, tw.findWheel(time.Second*11))
  34. tw.current = 1
  35. // Make sure we account for the current position properly
  36. assert.Equal(t, 3, tw.findWheel(time.Second*1))
  37. assert.Equal(t, 1, tw.findWheel(time.Second*10))
  38. }
  39. func TestSystemTimerWheel_Add(t *testing.T) {
  40. tw := NewSystemTimerWheel(time.Second, time.Second*10)
  41. fp1 := ip2int(net.ParseIP("1.2.3.4"))
  42. tw.Add(fp1, time.Second*1)
  43. // Make sure we set head and tail properly
  44. assert.NotNil(t, tw.wheel[2])
  45. assert.Equal(t, fp1, tw.wheel[2].Head.Item)
  46. assert.Nil(t, tw.wheel[2].Head.Next)
  47. assert.Equal(t, fp1, tw.wheel[2].Tail.Item)
  48. assert.Nil(t, tw.wheel[2].Tail.Next)
  49. // Make sure we only modify head
  50. fp2 := ip2int(net.ParseIP("1.2.3.4"))
  51. tw.Add(fp2, time.Second*1)
  52. assert.Equal(t, fp2, tw.wheel[2].Head.Item)
  53. assert.Equal(t, fp1, tw.wheel[2].Head.Next.Item)
  54. assert.Equal(t, fp1, tw.wheel[2].Tail.Item)
  55. assert.Nil(t, tw.wheel[2].Tail.Next)
  56. // Make sure we use free'd items first
  57. tw.itemCache = &SystemTimeoutItem{}
  58. tw.itemsCached = 1
  59. tw.Add(fp2, time.Second*1)
  60. assert.Nil(t, tw.itemCache)
  61. assert.Equal(t, 0, tw.itemsCached)
  62. }
  63. func TestSystemTimerWheel_Purge(t *testing.T) {
  64. // First advance should set the lastTick and do nothing else
  65. tw := NewSystemTimerWheel(time.Second, time.Second*10)
  66. assert.Nil(t, tw.lastTick)
  67. tw.advance(time.Now())
  68. assert.NotNil(t, tw.lastTick)
  69. assert.Equal(t, 0, tw.current)
  70. fps := []uint32{9, 10, 11, 12}
  71. //fp1 := ip2int(net.ParseIP("1.2.3.4"))
  72. tw.Add(fps[0], time.Second*1)
  73. tw.Add(fps[1], time.Second*1)
  74. tw.Add(fps[2], time.Second*2)
  75. tw.Add(fps[3], time.Second*2)
  76. ta := time.Now().Add(time.Second * 3)
  77. lastTick := *tw.lastTick
  78. tw.advance(ta)
  79. assert.Equal(t, 3, tw.current)
  80. assert.True(t, tw.lastTick.After(lastTick))
  81. // Make sure we get all 4 packets back
  82. for i := 0; i < 4; i++ {
  83. assert.Contains(t, fps, tw.Purge())
  84. }
  85. // Make sure there aren't any leftover
  86. assert.Nil(t, tw.Purge())
  87. assert.Nil(t, tw.expired.Head)
  88. assert.Nil(t, tw.expired.Tail)
  89. // Make sure we cached the free'd items
  90. assert.Equal(t, 4, tw.itemsCached)
  91. ci := tw.itemCache
  92. for i := 0; i < 4; i++ {
  93. assert.NotNil(t, ci)
  94. ci = ci.Next
  95. }
  96. assert.Nil(t, ci)
  97. // Lets make sure we roll over properly
  98. ta = ta.Add(time.Second * 5)
  99. tw.advance(ta)
  100. assert.Equal(t, 8, tw.current)
  101. ta = ta.Add(time.Second * 2)
  102. tw.advance(ta)
  103. assert.Equal(t, 10, tw.current)
  104. ta = ta.Add(time.Second * 1)
  105. tw.advance(ta)
  106. assert.Equal(t, 0, tw.current)
  107. }