2020-02-17 12:11:16 -06:00
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package common
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// CartesianProduct takes map of lists and returns list of unique tuples
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func CartesianProduct(mapOfLists map[string][]interface{}) []map[string]interface{} {
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listNames := make([]string, 0)
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lists := make([][]interface{}, 0)
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for k, v := range mapOfLists {
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listNames = append(listNames, k)
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lists = append(lists, v)
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}
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listCart := cartN(lists...)
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rtn := make([]map[string]interface{}, 0)
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for _, list := range listCart {
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vMap := make(map[string]interface{})
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for i, v := range list {
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vMap[listNames[i]] = v
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}
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rtn = append(rtn, vMap)
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}
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return rtn
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}
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func cartN(a ...[]interface{}) [][]interface{} {
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c := 1
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for _, a := range a {
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c *= len(a)
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}
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2021-01-23 16:55:54 -06:00
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if c == 0 || len(a) == 0 {
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2020-02-17 12:11:16 -06:00
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return nil
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}
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p := make([][]interface{}, c)
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b := make([]interface{}, c*len(a))
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n := make([]int, len(a))
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s := 0
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for i := range p {
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e := s + len(a)
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pi := b[s:e]
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p[i] = pi
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s = e
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for j, n := range n {
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pi[j] = a[j][n]
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}
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for j := len(n) - 1; j >= 0; j-- {
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n[j]++
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if n[j] < len(a[j]) {
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break
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}
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n[j] = 0
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}
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}
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return p
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}
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