gitea

Development moved to Codeberg

  1. 1
  2. 2
  3. 3
  4. 4
  5. 5
  6. 6
  7. 7
  8. 8
  9. 9
  10. 10
  11. 11
  12. 12
  13. 13
  14. 14
  15. 15
  16. 16
  17. 17
  18. 18
  19. 19
  20. 20
  21. 21
  22. 22
  23. 23
  24. 24
  25. 25
  26. 26
  27. 27
  28. 28
  29. 29
  30. 30
  31. 31
  32. 32
  33. 33
  34. 34
  35. 35
  36. 36
  37. 37
  38. 38
  39. 39
  40. 40
  41. 41
  42. 42
  43. 43
  44. 44
  45. 45
  46. 46
  47. 47
  48. 48
  49. 49
  50. 50
  51. 51
  52. 52
  53. 53
  54. 54
  55. 55
  56. 56
  57. 57
  58. 58
  59. 59
  60. 60
  61. 61
  62. 62
  63. 63
  64. 64
  65. 65
  66. 66
  67. 67
  68. 68
  69. 69
  70. 70
  71. 71
  72. 72
  73. 73
  74. 74
  75. 75
  76. 76
  77. 77
  78. 78
  79. 79
  80. 80
  81. 81
  82. 82
  83. 83
  84. 84
  85. 85
  86. 86
  87. 87
  88. 88
  89. 89
  90. 90
  91. 91
  92. 92
  93. 93
  94. 94
  95. 95
  96. 96
  97. 97
  98. 98
  99. 99
  100. 100
  101. 101
  102. 102
  103. 103
  104. 104
  105. 105
  106. 106
  107. 107
  108. 108
  109. 109
  110. 110
  111. 111
  112. 112
  113. 113
  114. 114
  115. 115
  116. 116
  117. 117
  118. 118
  119. 119
  120. 120
  121. 121
  122. 122
  123. 123
  124. 124
  125. 125
  126. 126
  127. 127
  128. 128
  129. 129
  130. 130
  131. 131
  132. 132
  133. 133
  134. 134
  135. 135
  136. 136
  137. 137
  138. 138
  139. 139
  140. 140
  141. 141
  142. 142
  143. 143
  144. 144
  145. 145
  146. 146
  147. 147
  148. 148
  149. 149
  150. 150
  151. 151
  152. 152
  153. 153
  154. 154
  155. 155
  156. 156
  157. 157
  158. 158
package pflag

import (
	"fmt"
	"strconv"
	"strings"
)

// -- intSlice Value
type intSliceValue struct {
	value   *[]int
	changed bool
}

func newIntSliceValue(val []int, p *[]int) *intSliceValue {
	isv := new(intSliceValue)
	isv.value = p
	*isv.value = val
	return isv
}

func (s *intSliceValue) Set(val string) error {
	ss := strings.Split(val, ",")
	out := make([]int, len(ss))
	for i, d := range ss {
		var err error
		out[i], err = strconv.Atoi(d)
		if err != nil {
			return err
		}

	}
	if !s.changed {
		*s.value = out
	} else {
		*s.value = append(*s.value, out...)
	}
	s.changed = true
	return nil
}

func (s *intSliceValue) Type() string {
	return "intSlice"
}

func (s *intSliceValue) String() string {
	out := make([]string, len(*s.value))
	for i, d := range *s.value {
		out[i] = fmt.Sprintf("%d", d)
	}
	return "[" + strings.Join(out, ",") + "]"
}

func (s *intSliceValue) Append(val string) error {
	i, err := strconv.Atoi(val)
	if err != nil {
		return err
	}
	*s.value = append(*s.value, i)
	return nil
}

func (s *intSliceValue) Replace(val []string) error {
	out := make([]int, len(val))
	for i, d := range val {
		var err error
		out[i], err = strconv.Atoi(d)
		if err != nil {
			return err
		}
	}
	*s.value = out
	return nil
}

func (s *intSliceValue) GetSlice() []string {
	out := make([]string, len(*s.value))
	for i, d := range *s.value {
		out[i] = strconv.Itoa(d)
	}
	return out
}

func intSliceConv(val string) (interface{}, error) {
	val = strings.Trim(val, "[]")
	// Empty string would cause a slice with one (empty) entry
	if len(val) == 0 {
		return []int{}, nil
	}
	ss := strings.Split(val, ",")
	out := make([]int, len(ss))
	for i, d := range ss {
		var err error
		out[i], err = strconv.Atoi(d)
		if err != nil {
			return nil, err
		}

	}
	return out, nil
}

// GetIntSlice return the []int value of a flag with the given name
func (f *FlagSet) GetIntSlice(name string) ([]int, error) {
	val, err := f.getFlagType(name, "intSlice", intSliceConv)
	if err != nil {
		return []int{}, err
	}
	return val.([]int), nil
}

// IntSliceVar defines a intSlice flag with specified name, default value, and usage string.
// The argument p points to a []int variable in which to store the value of the flag.
func (f *FlagSet) IntSliceVar(p *[]int, name string, value []int, usage string) {
	f.VarP(newIntSliceValue(value, p), name, "", usage)
}

// IntSliceVarP is like IntSliceVar, but accepts a shorthand letter that can be used after a single dash.
func (f *FlagSet) IntSliceVarP(p *[]int, name, shorthand string, value []int, usage string) {
	f.VarP(newIntSliceValue(value, p), name, shorthand, usage)
}

// IntSliceVar defines a int[] flag with specified name, default value, and usage string.
// The argument p points to a int[] variable in which to store the value of the flag.
func IntSliceVar(p *[]int, name string, value []int, usage string) {
	CommandLine.VarP(newIntSliceValue(value, p), name, "", usage)
}

// IntSliceVarP is like IntSliceVar, but accepts a shorthand letter that can be used after a single dash.
func IntSliceVarP(p *[]int, name, shorthand string, value []int, usage string) {
	CommandLine.VarP(newIntSliceValue(value, p), name, shorthand, usage)
}

// IntSlice defines a []int flag with specified name, default value, and usage string.
// The return value is the address of a []int variable that stores the value of the flag.
func (f *FlagSet) IntSlice(name string, value []int, usage string) *[]int {
	p := []int{}
	f.IntSliceVarP(&p, name, "", value, usage)
	return &p
}

// IntSliceP is like IntSlice, but accepts a shorthand letter that can be used after a single dash.
func (f *FlagSet) IntSliceP(name, shorthand string, value []int, usage string) *[]int {
	p := []int{}
	f.IntSliceVarP(&p, name, shorthand, value, usage)
	return &p
}

// IntSlice defines a []int flag with specified name, default value, and usage string.
// The return value is the address of a []int variable that stores the value of the flag.
func IntSlice(name string, value []int, usage string) *[]int {
	return CommandLine.IntSliceP(name, "", value, usage)
}

// IntSliceP is like IntSlice, but accepts a shorthand letter that can be used after a single dash.
func IntSliceP(name, shorthand string, value []int, usage string) *[]int {
	return CommandLine.IntSliceP(name, shorthand, value, usage)
}