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@@ -16,6 +16,7 @@ import (
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"errors"
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"io"
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"log"
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+ "reflect"
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"strconv"
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"strings"
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)
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@@ -66,6 +67,8 @@ const (
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Line = "line"
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Pie = "pie"
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Pie3D = "pie3D"
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+ PieOfPieChart = "pieOfPie"
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+ BarOfPieChart = "barOfPie"
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Radar = "radar"
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Scatter = "scatter"
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Surface3D = "surface3D"
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@@ -123,6 +126,8 @@ var (
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Line: 0,
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Pie: 0,
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Pie3D: 30,
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+ PieOfPieChart: 0,
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+ BarOfPieChart: 0,
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Radar: 0,
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Scatter: 0,
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Surface3D: 15,
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@@ -175,6 +180,8 @@ var (
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Line: 0,
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Pie: 0,
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Pie3D: 0,
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+ PieOfPieChart: 0,
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+ BarOfPieChart: 0,
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Radar: 0,
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Scatter: 0,
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Surface3D: 20,
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@@ -237,6 +244,8 @@ var (
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Line: 0,
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Pie: 0,
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Pie3D: 0,
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+ PieOfPieChart: 0,
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+ BarOfPieChart: 0,
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Radar: 0,
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Scatter: 0,
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Surface3D: 0,
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@@ -297,6 +306,8 @@ var (
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Line: "General",
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Pie: "General",
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Pie3D: "General",
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+ PieOfPieChart: "General",
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+ BarOfPieChart: "General",
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Radar: "General",
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Scatter: "General",
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Surface3D: "General",
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@@ -351,6 +362,8 @@ var (
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Line: "between",
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Pie: "between",
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Pie3D: "between",
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+ PieOfPieChart: "between",
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+ BarOfPieChart: "between",
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Radar: "between",
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Scatter: "between",
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Surface3D: "midCat",
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@@ -491,7 +504,7 @@ func parseFormatChartSet(formatSet string) (*formatChart, error) {
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// AddChart provides the method to add chart in a sheet by given chart format
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// set (such as offset, scale, aspect ratio setting and print settings) and
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// properties set. For example, create 3D clustered column chart with data
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-// Sheet1!$A$29:$D$32:
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+// Sheet1!$E$1:$L$15:
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//
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// package main
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//
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@@ -507,12 +520,12 @@ func parseFormatChartSet(formatSet string) (*formatChart, error) {
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// for k, v := range values {
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// f.SetCellValue("Sheet1", k, v)
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// }
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-// if err := f.AddChart("Sheet1", "E1", `{"type":"col3DClustered","dimension":{"width":640,"height":480},"series":[{"name":"Sheet1!$A$2","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$2:$D$2"},{"name":"Sheet1!$A$3","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$3:$D$3"},{"name":"Sheet1!$A$4","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$4:$D$4"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"bottom","show_legend_key":false},"title":{"name":"Fruit 3D Clustered Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero","x_axis":{"reverse_order":true},"y_axis":{"maximum":7.5,"minimum":0.5}}`); err != nil {
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+// if err := f.AddChart("Sheet1", "E1", `{"type":"col3DClustered","series":[{"name":"Sheet1!$A$2","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$2:$D$2"},{"name":"Sheet1!$A$3","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$3:$D$3"},{"name":"Sheet1!$A$4","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$4:$D$4"}],"title":{"name":"Fruit 3D Clustered Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero","x_axis":{"reverse_order":true},"y_axis":{"maximum":7.5,"minimum":0.5}}`); err != nil {
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// println(err.Error())
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// return
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// }
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// // Save xlsx file by the given path.
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-// if err := xlsx.SaveAs("Book1.xlsx"); err != nil {
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+// if err := f.SaveAs("Book1.xlsx"); err != nil {
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// println(err.Error())
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// }
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// }
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@@ -565,6 +578,8 @@ func parseFormatChartSet(formatSet string) (*formatChart, error) {
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// line | line chart
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// pie | pie chart
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// pie3D | 3D pie chart
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+// pieOfPie | pie of pie chart
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+// barOfPie | bar of pie chart
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// radar | radar chart
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// scatter | scatter chart
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// surface3D | 3D surface chart
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@@ -681,6 +696,34 @@ func parseFormatChartSet(formatSet string) (*formatChart, error) {
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//
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// Set chart size by dimension property. The dimension property is optional. The default width is 480, and height is 290.
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//
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+// combo: Specifies tha create a chart that combines two art types in a single
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+// chart. For example, create a clustered column - line chart with data
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+// Sheet1!$E$1:$L$15:
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+//
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+// package main
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+//
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+// import "github.com/360EntSecGroup-Skylar/excelize"
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+//
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+// func main() {
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+// categories := map[string]string{"A2": "Small", "A3": "Normal", "A4": "Large", "B1": "Apple", "C1": "Orange", "D1": "Pear"}
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+// values := map[string]int{"B2": 2, "C2": 3, "D2": 3, "B3": 5, "C3": 2, "D3": 4, "B4": 6, "C4": 7, "D4": 8}
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+// f := excelize.NewFile()
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+// for k, v := range categories {
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+// f.SetCellValue("Sheet1", k, v)
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+// }
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+// for k, v := range values {
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+// f.SetCellValue("Sheet1", k, v)
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+// }
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+// if err := f.AddChart("Sheet1", "E1", `{"type":"col","series":[{"name":"Sheet1!$A$2","categories":"","values":"Sheet1!$B$2:$D$2"},{"name":"Sheet1!$A$3","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$3:$D$3"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Clustered Column - Line Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"combo":{"type":"line","series":[{"name":"Sheet1!$A$4","categories":"Sheet1!$B$1:$D$1","values":"Sheet1!$B$4:$D$4"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true}}}`); err != nil {
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+// println(err.Error())
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+// return
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+// }
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+// // Save xlsx file by the given path.
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+// if err := f.SaveAs("Book1.xlsx"); err != nil {
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+// println(err.Error())
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+// }
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+// }
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+//
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func (f *File) AddChart(sheet, cell, format string) error {
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formatSet, err := parseFormatChartSet(format)
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if err != nil {
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@@ -915,6 +958,8 @@ func (f *File) addChart(formatSet *formatChart) {
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Line: f.drawLineChart,
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Pie3D: f.drawPie3DChart,
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Pie: f.drawPieChart,
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+ PieOfPieChart: f.drawPieOfPieChart,
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+ BarOfPieChart: f.drawBarOfPieChart,
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Radar: f.drawRadarChart,
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Scatter: f.drawScatterChart,
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Surface3D: f.drawSurface3DChart,
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@@ -924,8 +969,20 @@ func (f *File) addChart(formatSet *formatChart) {
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Bubble: f.drawBaseChart,
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Bubble3D: f.drawBaseChart,
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}
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- xlsxChartSpace.Chart.PlotArea = plotAreaFunc[formatSet.Type](formatSet)
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-
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+ addChart := func(c, p *cPlotArea) {
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+ immutable, mutable := reflect.ValueOf(c).Elem(), reflect.ValueOf(p).Elem()
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+ for i := 0; i < mutable.NumField(); i++ {
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+ field := mutable.Field(i)
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+ if field.IsNil() {
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+ continue
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+ }
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+ immutable.FieldByName(mutable.Type().Field(i).Name).Set(field)
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+ }
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+ }
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+ addChart(xlsxChartSpace.Chart.PlotArea, plotAreaFunc[formatSet.Type](formatSet))
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+ if formatSet.Combo != nil {
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+ addChart(xlsxChartSpace.Chart.PlotArea, plotAreaFunc[formatSet.Combo.Type](formatSet.Combo))
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+ }
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chart, _ := xml.Marshal(xlsxChartSpace)
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media := "xl/charts/chart" + strconv.Itoa(count+1) + ".xml"
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f.saveFileList(media, chart)
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@@ -1246,6 +1303,40 @@ func (f *File) drawPie3DChart(formatSet *formatChart) *cPlotArea {
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}
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}
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+// drawPieOfPieChart provides a function to draw the c:plotArea element for
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+// pie chart by given format sets.
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+func (f *File) drawPieOfPieChart(formatSet *formatChart) *cPlotArea {
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+ return &cPlotArea{
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+ PieChart: &cCharts{
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+ OfPieType: &attrValString{
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+ Val: stringPtr("pie"),
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+ },
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+ VaryColors: &attrValBool{
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+ Val: boolPtr(true),
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+ },
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+ Ser: f.drawChartSeries(formatSet),
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+ SerLines: &attrValString{},
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+ },
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+ }
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+}
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+
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+// drawBarOfPieChart provides a function to draw the c:plotArea element for
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+// pie chart by given format sets.
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+func (f *File) drawBarOfPieChart(formatSet *formatChart) *cPlotArea {
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+ return &cPlotArea{
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+ PieChart: &cCharts{
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+ OfPieType: &attrValString{
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+ Val: stringPtr("bar"),
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+ },
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+ VaryColors: &attrValBool{
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+ Val: boolPtr(true),
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+ },
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+ Ser: f.drawChartSeries(formatSet),
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+ SerLines: &attrValString{},
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+ },
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+ }
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+}
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+
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// drawRadarChart provides a function to draw the c:plotArea element for radar
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// chart by given format sets.
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func (f *File) drawRadarChart(formatSet *formatChart) *cPlotArea {
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@@ -1371,11 +1462,15 @@ func (f *File) drawChartShape(formatSet *formatChart) *attrValString {
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// drawChartSeries provides a function to draw the c:ser element by given
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// format sets.
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func (f *File) drawChartSeries(formatSet *formatChart) *[]cSer {
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+ var baseIdx int
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+ if formatSet.Combo != nil {
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+ baseIdx = len(formatSet.Combo.Series)
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+ }
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ser := []cSer{}
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for k := range formatSet.Series {
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ser = append(ser, cSer{
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- IDx: &attrValInt{Val: intPtr(k)},
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- Order: &attrValInt{Val: intPtr(k)},
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+ IDx: &attrValInt{Val: intPtr(k + baseIdx)},
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+ Order: &attrValInt{Val: intPtr(k + baseIdx)},
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Tx: &cTx{
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StrRef: &cStrRef{
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F: formatSet.Series[k].Name,
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