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@ -1,28 +1,25 @@ |
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package main |
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import ( |
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"fmt" |
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"math" |
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) |
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func euclideanDistance(dataset [][][]int, inputs [][]int) [][][]float64 { |
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func euclideanDistance(dataset [][][]int, inputLine []int) [][][]float64 { |
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var distances [][][]float64 |
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for _, inputLine := range inputs { |
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for _, datasetLine := range dataset { |
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datasetLineFloat := arrayIntToFloat64(datasetLine[0]) |
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inputLineFloat := arrayIntToFloat64(inputLine) |
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r := calcDistances(inputLineFloat, datasetLineFloat) |
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//fmt.Println(r)
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rArr := []float64{r} |
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var newDatasetLine [][]float64 |
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newDatasetLine = append(newDatasetLine, datasetLineFloat) |
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newDatasetLine = append(newDatasetLine, rArr) |
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distances = append(distances, newDatasetLine) |
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//passar tot els int de values a float64
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} |
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for _, datasetLine := range dataset { |
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datasetLineFloat := arrayIntToFloat64(datasetLine[0]) |
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resultDatasetLineFloat := arrayIntToFloat64(datasetLine[1]) |
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inputLineFloat := arrayIntToFloat64(inputLine) |
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r := calcDistances(inputLineFloat, datasetLineFloat) |
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distance := []float64{r} |
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var newDatasetLine [][]float64 |
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newDatasetLine = append(newDatasetLine, datasetLineFloat) |
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newDatasetLine = append(newDatasetLine, resultDatasetLineFloat) |
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newDatasetLine = append(newDatasetLine, distance) |
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distances = append(distances, newDatasetLine) |
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//distances contains: [[datasetLine], [datasetLineResult], [distanceWithInput]]
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} |
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//fmt.Println(train)
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return distances |
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} |
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@ -36,18 +33,24 @@ func calcDistances(in []float64, ds []float64) float64 { |
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return r |
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} |
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func getShortestDistance(dist [][][]float64) { |
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min := dist[0][0] |
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max := dist[0][0] |
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func getShortestDistance(dist [][][]float64) [][]float64 { |
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min := dist[0][2] |
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max := dist[0][2] |
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var datasetNearResult [][]float64 |
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for i := 0; i < len(dist); i++ { |
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if dist[i][1][0] > max[0] { |
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//fmt.Println(dist[i][1])
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if dist[i][2][0] > max[0] { |
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max = dist[i][0] |
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} |
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if dist[i][0][0] < min[0] { |
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/*fmt.Println(min[0]) |
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fmt.Println(dist[i][1][0])*/ |
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if dist[i][2][0] < min[0] { |
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min = dist[i][0] |
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datasetNearResult = dist[i] |
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} |
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//fmt.Println(dist[i][1])
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} |
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fmt.Println(min) |
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fmt.Println(max) |
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/*fmt.Println(min) |
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fmt.Println(max)*/ |
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return datasetNearResult |
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} |