numeric.go 4.0 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228
  1. package sprig
  2. import (
  3. "fmt"
  4. "math"
  5. "reflect"
  6. "strconv"
  7. "strings"
  8. )
  9. // toFloat64 converts 64-bit floats
  10. func toFloat64(v any) float64 {
  11. if str, ok := v.(string); ok {
  12. iv, err := strconv.ParseFloat(str, 64)
  13. if err != nil {
  14. return 0
  15. }
  16. return iv
  17. }
  18. val := reflect.Indirect(reflect.ValueOf(v))
  19. switch val.Kind() {
  20. case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, reflect.Int:
  21. return float64(val.Int())
  22. case reflect.Uint8, reflect.Uint16, reflect.Uint32:
  23. return float64(val.Uint())
  24. case reflect.Uint, reflect.Uint64:
  25. return float64(val.Uint())
  26. case reflect.Float32, reflect.Float64:
  27. return val.Float()
  28. case reflect.Bool:
  29. if val.Bool() {
  30. return 1
  31. }
  32. return 0
  33. default:
  34. return 0
  35. }
  36. }
  37. func toInt(v any) int {
  38. // It's not optimal. But I don't want duplicate toInt64 code.
  39. return int(toInt64(v))
  40. }
  41. // toInt64 converts integer types to 64-bit integers
  42. func toInt64(v any) int64 {
  43. if str, ok := v.(string); ok {
  44. iv, err := strconv.ParseInt(str, 10, 64)
  45. if err != nil {
  46. return 0
  47. }
  48. return iv
  49. }
  50. val := reflect.Indirect(reflect.ValueOf(v))
  51. switch val.Kind() {
  52. case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, reflect.Int:
  53. return val.Int()
  54. case reflect.Uint8, reflect.Uint16, reflect.Uint32:
  55. return int64(val.Uint())
  56. case reflect.Uint, reflect.Uint64:
  57. tv := val.Uint()
  58. if tv <= math.MaxInt64 {
  59. return int64(tv)
  60. }
  61. // TODO: What is the sensible thing to do here?
  62. return math.MaxInt64
  63. case reflect.Float32, reflect.Float64:
  64. return int64(val.Float())
  65. case reflect.Bool:
  66. if val.Bool() {
  67. return 1
  68. }
  69. return 0
  70. default:
  71. return 0
  72. }
  73. }
  74. func max(a any, i ...any) int64 {
  75. aa := toInt64(a)
  76. for _, b := range i {
  77. bb := toInt64(b)
  78. if bb > aa {
  79. aa = bb
  80. }
  81. }
  82. return aa
  83. }
  84. func maxf(a any, i ...any) float64 {
  85. aa := toFloat64(a)
  86. for _, b := range i {
  87. bb := toFloat64(b)
  88. aa = math.Max(aa, bb)
  89. }
  90. return aa
  91. }
  92. func min(a any, i ...any) int64 {
  93. aa := toInt64(a)
  94. for _, b := range i {
  95. bb := toInt64(b)
  96. if bb < aa {
  97. aa = bb
  98. }
  99. }
  100. return aa
  101. }
  102. func minf(a any, i ...any) float64 {
  103. aa := toFloat64(a)
  104. for _, b := range i {
  105. bb := toFloat64(b)
  106. aa = math.Min(aa, bb)
  107. }
  108. return aa
  109. }
  110. func until(count int) []int {
  111. step := 1
  112. if count < 0 {
  113. step = -1
  114. }
  115. return untilStep(0, count, step)
  116. }
  117. func untilStep(start, stop, step int) []int {
  118. v := []int{}
  119. if stop < start {
  120. if step >= 0 {
  121. return v
  122. }
  123. for i := start; i > stop; i += step {
  124. v = append(v, i)
  125. }
  126. return v
  127. }
  128. if step <= 0 {
  129. return v
  130. }
  131. for i := start; i < stop; i += step {
  132. v = append(v, i)
  133. }
  134. return v
  135. }
  136. func floor(a any) float64 {
  137. aa := toFloat64(a)
  138. return math.Floor(aa)
  139. }
  140. func ceil(a any) float64 {
  141. aa := toFloat64(a)
  142. return math.Ceil(aa)
  143. }
  144. func round(a any, p int, rOpt ...float64) float64 {
  145. roundOn := .5
  146. if len(rOpt) > 0 {
  147. roundOn = rOpt[0]
  148. }
  149. val := toFloat64(a)
  150. places := toFloat64(p)
  151. var round float64
  152. pow := math.Pow(10, places)
  153. digit := pow * val
  154. _, div := math.Modf(digit)
  155. if div >= roundOn {
  156. round = math.Ceil(digit)
  157. } else {
  158. round = math.Floor(digit)
  159. }
  160. return round / pow
  161. }
  162. // converts unix octal to decimal
  163. func toDecimal(v any) int64 {
  164. result, err := strconv.ParseInt(fmt.Sprint(v), 8, 64)
  165. if err != nil {
  166. return 0
  167. }
  168. return result
  169. }
  170. func seq(params ...int) string {
  171. increment := 1
  172. switch len(params) {
  173. case 0:
  174. return ""
  175. case 1:
  176. start := 1
  177. end := params[0]
  178. if end < start {
  179. increment = -1
  180. }
  181. return intArrayToString(untilStep(start, end+increment, increment), " ")
  182. case 3:
  183. start := params[0]
  184. end := params[2]
  185. step := params[1]
  186. if end < start {
  187. increment = -1
  188. if step > 0 {
  189. return ""
  190. }
  191. }
  192. return intArrayToString(untilStep(start, end+increment, step), " ")
  193. case 2:
  194. start := params[0]
  195. end := params[1]
  196. step := 1
  197. if end < start {
  198. step = -1
  199. }
  200. return intArrayToString(untilStep(start, end+step, step), " ")
  201. default:
  202. return ""
  203. }
  204. }
  205. func intArrayToString(slice []int, delimeter string) string {
  206. return strings.Trim(strings.Join(strings.Fields(fmt.Sprint(slice)), delimeter), "[]")
  207. }