396 lines
10 KiB
Go
396 lines
10 KiB
Go
package chart
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import (
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"errors"
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"io"
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"math"
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"github.com/golang/freetype/truetype"
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)
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// Chart is what we're drawing.
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type Chart struct {
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Title string
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TitleStyle Style
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Width int
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Height int
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Background Style
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Canvas Style
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Axes Style
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FinalValueLabel Style
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XRange Range
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YRange Range
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Font *truetype.Font
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Series []Series
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}
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// GetFont returns the text font.
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func (c Chart) GetFont() (*truetype.Font, error) {
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if c.Font == nil {
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f, err := GetDefaultFont()
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if err != nil {
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return nil, err
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}
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c.Font = f
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}
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return c.Font, nil
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}
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// Render renders the chart with the given renderer to the given io.Writer.
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func (c *Chart) Render(provider RendererProvider, w io.Writer) error {
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if len(c.Series) == 0 {
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return errors.New("Please provide at least one series")
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}
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r := provider(c.Width, c.Height)
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if c.hasText() {
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font, err := c.GetFont()
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if err != nil {
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return err
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}
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r.SetFont(font)
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}
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canvasBox := c.calculateCanvasBox(r)
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xrange, yrange := c.initRanges(canvasBox)
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c.drawBackground(r)
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c.drawCanvas(r, canvasBox)
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c.drawAxes(r, canvasBox, xrange, yrange)
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for index, series := range c.Series {
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c.drawSeries(r, canvasBox, index, series, xrange, yrange)
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}
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c.drawTitle(r)
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return r.Save(w)
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}
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func (c Chart) hasText() bool {
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return c.TitleStyle.Show || c.Axes.Show || c.FinalValueLabel.Show
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}
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func (c Chart) getAxisWidth() int {
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asw := 0
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if c.Axes.Show {
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asw = int(c.Axes.GetStrokeWidth(DefaultAxisLineWidth))
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}
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return asw
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}
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func (c Chart) calculateCanvasBox(r Renderer) Box {
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dpr := DefaultBackgroundPadding.Right
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finalLabelWidth := c.calculateFinalLabelWidth(r)
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if finalLabelWidth > dpr {
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dpr = finalLabelWidth
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}
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axisBottomHeight := c.calculateBottomLabelHeight()
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dpb := DefaultBackgroundPadding.Bottom
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if dpb < axisBottomHeight {
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dpb = axisBottomHeight
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}
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cb := Box{
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Top: c.Background.Padding.GetTop(DefaultBackgroundPadding.Top),
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Left: c.Background.Padding.GetLeft(DefaultBackgroundPadding.Left),
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Right: c.Width - c.Background.Padding.GetRight(dpr),
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Bottom: c.Height - c.Background.Padding.GetBottom(dpb),
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}
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cb.Height = cb.Bottom - cb.Top
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cb.Width = cb.Right - cb.Left
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return cb
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}
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func (c Chart) calculateFinalLabelWidth(r Renderer) int {
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if !c.FinalValueLabel.Show {
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return 0
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}
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var finalLabelText string
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for _, s := range c.Series {
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_, lv := s.GetValue(s.Len() - 1)
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ll := s.GetYFormatter()(lv)
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if len(finalLabelText) < len(ll) {
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finalLabelText = ll
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}
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}
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r.SetFontSize(c.FinalValueLabel.GetFontSize(DefaultFinalLabelFontSize))
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textWidth := r.MeasureText(finalLabelText)
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asw := c.getAxisWidth()
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pl := c.FinalValueLabel.Padding.GetLeft(DefaultFinalLabelPadding.Left)
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pr := c.FinalValueLabel.Padding.GetRight(DefaultFinalLabelPadding.Right)
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lsw := int(c.FinalValueLabel.GetStrokeWidth(DefaultAxisLineWidth))
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return DefaultFinalLabelDeltaWidth +
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pl + pr +
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textWidth + asw + 2*lsw
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}
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func (c Chart) calculateBottomLabelHeight() int {
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if c.Axes.Show {
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return c.getAxisWidth() + int(math.Ceil(c.Axes.GetFontSize(DefaultAxisFontSize))) + DefaultXAxisMargin
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}
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return 0
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}
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func (c Chart) initRanges(canvasBox Box) (xrange Range, yrange Range) {
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//iterate over each series, pull out the min/max for x,y
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var didSetFirstValues bool
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var globalMinY, globalMinX float64
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var globalMaxY, globalMaxX float64
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for _, s := range c.Series {
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seriesLength := s.Len()
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for index := 0; index < seriesLength; index++ {
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vx, vy := s.GetValue(index)
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if didSetFirstValues {
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if globalMinX > vx {
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globalMinX = vx
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}
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if globalMinY > vy {
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globalMinY = vy
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}
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if globalMaxX < vx {
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globalMaxX = vx
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}
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if globalMaxY < vy {
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globalMaxY = vy
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}
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} else {
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globalMinX, globalMaxX = vx, vx
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globalMinY, globalMaxY = vy, vy
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didSetFirstValues = true
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}
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}
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xrange.Formatter = s.GetXFormatter()
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yrange.Formatter = s.GetYFormatter()
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}
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if c.XRange.IsZero() {
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xrange.Min = globalMinX
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xrange.Max = globalMaxX
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} else {
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xrange.Min = c.XRange.Min
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xrange.Max = c.XRange.Max
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}
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xrange.Domain = canvasBox.Width
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if c.YRange.IsZero() {
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yrange.Min = globalMinY
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yrange.Max = globalMaxY
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} else {
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yrange.Min = c.YRange.Min
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yrange.Max = c.YRange.Max
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}
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yrange.Domain = canvasBox.Height
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return
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}
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func (c Chart) drawBackground(r Renderer) {
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r.SetFillColor(c.Background.GetFillColor(DefaultBackgroundColor))
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r.SetStrokeColor(c.Background.GetStrokeColor(DefaultBackgroundStrokeColor))
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r.SetLineWidth(c.Background.GetStrokeWidth(DefaultStrokeWidth))
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r.MoveTo(0, 0)
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r.LineTo(c.Width, 0)
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r.LineTo(c.Width, c.Height)
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r.LineTo(0, c.Height)
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r.LineTo(0, 0)
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r.Close()
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r.FillStroke()
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}
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func (c Chart) drawCanvas(r Renderer, canvasBox Box) {
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r.SetFillColor(c.Canvas.GetFillColor(DefaultCanvasColor))
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r.SetStrokeColor(c.Canvas.GetStrokeColor(DefaultCanvasStrokColor))
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r.SetLineWidth(c.Canvas.GetStrokeWidth(DefaultStrokeWidth))
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r.MoveTo(canvasBox.Left, canvasBox.Top)
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r.LineTo(canvasBox.Right, canvasBox.Top)
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r.LineTo(canvasBox.Right, canvasBox.Bottom)
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r.LineTo(canvasBox.Left, canvasBox.Bottom)
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r.LineTo(canvasBox.Left, canvasBox.Top)
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r.Close()
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r.FillStroke()
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}
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func (c Chart) drawAxes(r Renderer, canvasBox Box, xrange, yrange Range) {
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if c.Axes.Show {
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r.SetStrokeColor(c.Axes.GetStrokeColor(DefaultAxisColor))
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r.SetLineWidth(c.Axes.GetStrokeWidth(DefaultStrokeWidth))
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r.MoveTo(canvasBox.Left, canvasBox.Bottom)
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r.LineTo(canvasBox.Right, canvasBox.Bottom)
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r.LineTo(canvasBox.Right, canvasBox.Top)
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r.Stroke()
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c.drawXAxisLabels(r, canvasBox, xrange)
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c.drawYAxisLabels(r, canvasBox, yrange)
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}
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}
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func (c Chart) drawYAxisLabels(r Renderer, canvasBox Box, yrange Range) {
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tickFontSize := c.Axes.GetFontSize(DefaultAxisFontSize)
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r.SetFontColor(c.Axes.GetFontColor(DefaultAxisColor))
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r.SetFontSize(tickFontSize)
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minimumTickHeight := tickFontSize + DefaultMinimumTickVerticalSpacing
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tickCount := int(math.Floor(float64(yrange.Domain) / float64(minimumTickHeight)))
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if tickCount > DefaultMaxTickCount {
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tickCount = DefaultMaxTickCount
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}
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rangeTicks := Slices(tickCount, yrange.Max-yrange.Min)
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domainTicks := Slices(tickCount, float64(yrange.Domain))
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asw := c.getAxisWidth()
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tx := canvasBox.Right + DefaultFinalLabelDeltaWidth + asw
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count := len(rangeTicks)
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if len(domainTicks) < count {
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count = len(domainTicks) //guard against mismatched array sizes.
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}
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for index := 0; index < count; index++ {
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v := rangeTicks[index] + yrange.Min
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y := domainTicks[index]
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ty := canvasBox.Bottom - int(y)
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r.Text(yrange.Format(v), tx, ty)
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}
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}
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func (c Chart) drawXAxisLabels(r Renderer, canvasBox Box, xrange Range) {
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tickFontSize := c.Axes.GetFontSize(DefaultAxisFontSize)
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r.SetFontColor(c.Axes.GetFontColor(DefaultAxisColor))
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r.SetFontSize(tickFontSize)
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maxLabelWidth := 60
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minimumTickWidth := maxLabelWidth + DefaultMinimumTickHorizontalSpacing
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tickCount := int(math.Floor(float64(xrange.Domain) / float64(minimumTickWidth)))
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if tickCount > DefaultMaxTickCount {
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tickCount = DefaultMaxTickCount
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}
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rangeTicks := Slices(tickCount, xrange.Max-xrange.Min)
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domainTicks := Slices(tickCount, float64(xrange.Domain))
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ty := canvasBox.Bottom + DefaultXAxisMargin + int(tickFontSize)
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count := len(rangeTicks)
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if len(domainTicks) < count {
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count = len(domainTicks) //guard against mismatched array sizes.
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}
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for index := 0; index < count; index++ {
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v := rangeTicks[index] + xrange.Min
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x := domainTicks[index]
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tx := canvasBox.Left + int(x)
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r.Text(xrange.Format(v), tx, ty)
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}
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}
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func (c Chart) drawSeries(r Renderer, canvasBox Box, index int, s Series, xrange, yrange Range) {
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r.SetStrokeColor(s.GetStyle().GetStrokeColor(GetDefaultSeriesStrokeColor(index)))
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r.SetLineWidth(s.GetStyle().GetStrokeWidth(DefaultStrokeWidth))
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if s.Len() == 0 {
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return
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}
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cx := canvasBox.Left
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cy := canvasBox.Top
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cw := canvasBox.Width
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v0x, v0y := s.GetValue(0)
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x0 := cw - xrange.Translate(v0x)
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y0 := yrange.Translate(v0y)
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r.MoveTo(x0+cx, y0+cy)
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var vx, vy float64
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var x, y int
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for i := 1; i < s.Len(); i++ {
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vx, vy = s.GetValue(i)
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x = cw - xrange.Translate(vx)
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y = yrange.Translate(vy)
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r.LineTo(x+cx, y+cy)
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}
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r.Stroke()
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c.drawFinalValueLabel(r, canvasBox, index, s, yrange)
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}
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func (c Chart) drawFinalValueLabel(r Renderer, canvasBox Box, index int, s Series, yrange Range) {
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if c.FinalValueLabel.Show {
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_, lv := s.GetValue(s.Len() - 1)
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ll := s.GetYFormatter()(lv)
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py := canvasBox.Top
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ly := yrange.Translate(lv) + py
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r.SetFontSize(c.FinalValueLabel.GetFontSize(DefaultFinalLabelFontSize))
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textWidth := r.MeasureText(ll)
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textHeight := int(math.Floor(DefaultFinalLabelFontSize))
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halfTextHeight := textHeight >> 1
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asw := 0
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if c.Axes.Show {
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asw = int(c.Axes.GetStrokeWidth(DefaultAxisLineWidth))
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}
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cx := canvasBox.Right + asw
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pt := c.FinalValueLabel.Padding.GetTop(DefaultFinalLabelPadding.Top)
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pl := c.FinalValueLabel.Padding.GetLeft(DefaultFinalLabelPadding.Left)
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pr := c.FinalValueLabel.Padding.GetRight(DefaultFinalLabelPadding.Right)
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pb := c.FinalValueLabel.Padding.GetBottom(DefaultFinalLabelPadding.Bottom)
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textX := cx + pl + DefaultFinalLabelDeltaWidth
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textY := ly + halfTextHeight
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ltlx := cx + pl + DefaultFinalLabelDeltaWidth
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ltly := ly - (pt + halfTextHeight)
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ltrx := cx + pl + pr + textWidth
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ltry := ly - (pt + halfTextHeight)
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lbrx := cx + pl + pr + textWidth
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lbry := ly + (pb + halfTextHeight)
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lblx := cx + DefaultFinalLabelDeltaWidth
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lbly := ly + (pb + halfTextHeight)
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//draw the shape...
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r.SetFillColor(c.FinalValueLabel.GetFillColor(DefaultFinalLabelBackgroundColor))
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r.SetStrokeColor(c.FinalValueLabel.GetStrokeColor(s.GetStyle().GetStrokeColor(GetDefaultSeriesStrokeColor(index))))
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r.SetLineWidth(c.FinalValueLabel.GetStrokeWidth(DefaultAxisLineWidth))
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r.MoveTo(cx, ly)
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r.LineTo(ltlx, ltly)
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r.LineTo(ltrx, ltry)
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r.LineTo(lbrx, lbry)
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r.LineTo(lblx, lbly)
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r.LineTo(cx, ly)
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r.Close()
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r.FillStroke()
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r.SetFontColor(c.FinalValueLabel.GetFontColor(DefaultTextColor))
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r.Text(ll, textX, textY)
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}
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}
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func (c Chart) drawTitle(r Renderer) error {
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if len(c.Title) > 0 && c.TitleStyle.Show {
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r.SetFontColor(c.Canvas.GetFontColor(DefaultTextColor))
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titleFontSize := c.Canvas.GetFontSize(DefaultTitleFontSize)
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r.SetFontSize(titleFontSize)
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textWidth := r.MeasureText(c.Title)
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titleX := (c.Width >> 1) - (textWidth >> 1)
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titleY := c.TitleStyle.Padding.GetTop(DefaultTitleTop) + int(titleFontSize)
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r.Text(c.Title, titleX, titleY)
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}
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return nil
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}
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