Files
ofdgo/ofdgo_renderer.go
T

1576 lines
44 KiB
Go

// Copyright 2025-2026 肖其顿 (XIAO QI DUN)
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package ofdgo
import (
"bytes"
"fmt"
"image"
"image/color"
"io"
"io/fs"
"math"
"path/filepath"
"runtime"
"strconv"
"strings"
"github.com/tdewolff/canvas"
"github.com/tdewolff/canvas/renderers"
"github.com/tdewolff/canvas/renderers/pdf"
"github.com/tdewolff/canvas/renderers/rasterizer"
_ "github.com/xiaoqidun/jbig2"
)
// Renderer 渲染器实现
type Renderer struct {
Reader *Reader
DPI float64
RenderAnnotations bool
fontFamily *canvas.FontFamily
defaultFontLoaded bool
DrawParams map[string]*DrawParam
CompositeGraphicUnits map[string]*CompositeGraphicUnit
FontMap map[string]*canvas.FontFamily
FontGIDMap map[string]map[uint16]rune
FontCIDMap map[string]map[uint16]rune
fontDirs []string
fontFS []fs.FS
}
// RendererOption 渲染器配置选项
type RendererOption func(*Renderer)
// RenderPage 渲染特定页面内容
// 入参: page 页面内容
// 返回: *canvas.Canvas 画布实例, error 错误信息
func (r *Renderer) RenderPage(page *PageContent) (*canvas.Canvas, error) {
box, err := r.GetPageBox(page)
if err != nil {
return nil, err
}
width, height := box.W, box.H
c := canvas.New(width, height)
ctx := canvas.NewContext(c)
if err := r.RenderPageToContext(ctx, page); err != nil {
return nil, err
}
return c, nil
}
// GetPageBox 获取页面物理区域
// 入参: page 页面内容
// 返回: Box 区域, error 错误信息
func (r *Renderer) GetPageBox(page *PageContent) (Box, error) {
boxStr := page.Area.PhysicalBox
if boxStr == "" {
boxStr = page.Area.ApplicationBox
}
if boxStr == "" {
boxStr = page.Area.ContentBox
}
if boxStr == "" && r.Reader.doc != nil {
boxStr = r.Reader.doc.CommonData.PageArea.PhysicalBox
}
if boxStr == "" {
boxStr = "0 0 210 297"
}
return ParseBox(boxStr)
}
// RenderPageToContext 渲染页面到指定上下文
// 入参: ctx 画布上下文, page 页面内容
// 返回: error 错误信息
func (r *Renderer) RenderPageToContext(ctx *canvas.Context, page *PageContent) error {
return r.renderPageToContext(ctx, page, true)
}
// renderPageToContext 渲染页面到指定上下文
// 入参: ctx 画布上下文, page 页面内容, drawBackground 是否绘制页面背景
// 返回: error 错误信息
func (r *Renderer) renderPageToContext(ctx *canvas.Context, page *PageContent, drawBackground bool) error {
box, err := r.GetPageBox(page)
if err != nil {
return err
}
pageH := box.H
if drawBackground {
ctx.SetFillColor(canvas.White)
ctx.DrawPath(0, 0, canvas.Rectangle(box.W, box.H))
}
if len(page.Template) > 0 && r.Reader.doc != nil {
for _, tplRef := range page.Template {
if tplRef.ZOrder != "Foreground" {
r.renderTemplate(ctx, tplRef.TemplateID, pageH)
}
}
}
if page.Content.Layer != nil {
for _, layer := range page.Content.Layer {
r.renderLayer(ctx, layer, pageH, nil, nil, 0, nil)
}
}
if len(page.Template) > 0 && r.Reader.doc != nil {
for _, tplRef := range page.Template {
if tplRef.ZOrder == "Foreground" {
r.renderTemplate(ctx, tplRef.TemplateID, pageH)
}
}
}
if r.RenderAnnotations {
r.renderAnnotations(ctx, page.ID, pageH)
}
if stamps, ok := r.Reader.Stamps[page.ID]; ok {
for _, stamp := range stamps {
r.renderStamp(ctx, stamp, pageH)
}
}
return nil
}
// RenderPageByIndex 按索引渲染页面
// 入参: index 页面索引
// 返回: *canvas.Canvas 画布实例, error 错误信息
func (r *Renderer) RenderPageByIndex(index int) (*canvas.Canvas, error) {
doc, err := r.Reader.Doc()
if err != nil {
return nil, err
}
if index < 0 || index >= len(doc.Pages.Page) {
return nil, fmt.Errorf("page index %d out of range", index)
}
page, err := r.Reader.PageContent(doc.Pages.Page[index])
if err != nil {
return nil, err
}
return r.RenderPage(page)
}
// RenderToImage 渲染为光栅图
// 入参: page 页面内容
// 返回: image.Image 图像对象, error 错误信息
func (r *Renderer) RenderToImage(page *PageContent) (image.Image, error) {
c, err := r.RenderPage(page)
if err != nil {
return nil, err
}
dpmm := r.DPI / 25.4
return rasterizer.Draw(c, canvas.DPMM(dpmm), canvas.DefaultColorSpace), nil
}
// RenderToSVG 渲染为SVG
// 入参: page 页面内容, writer 输出流
// 返回: error 错误信息
func (r *Renderer) RenderToSVG(page *PageContent, writer io.Writer) error {
c, err := r.RenderPage(page)
if err != nil {
return err
}
return c.Write(writer, renderers.SVG())
}
// RenderToPDF 渲染为PDF
// 入参: page 页面内容, writer 输出流
// 返回: error 错误信息
func (r *Renderer) RenderToPDF(page *PageContent, writer io.Writer) error {
c, err := r.RenderPage(page)
if err != nil {
return err
}
return c.Write(writer, renderers.PDF())
}
// RenderToEPS 渲染为EPS
// 入参: page 页面内容, writer 输出流
// 返回: error 错误信息
func (r *Renderer) RenderToEPS(page *PageContent, writer io.Writer) error {
c, err := r.RenderPage(page)
if err != nil {
return err
}
return c.Write(writer, renderers.EPS())
}
// RenderToMultiPagePDF 将整个文档导出为多页PDF
// 入参: writer 输出流
// 返回: error 错误信息
func (r *Renderer) RenderToMultiPagePDF(writer io.Writer) error {
doc, err := r.Reader.Doc()
if err != nil {
return err
}
if len(doc.Pages.Page) == 0 {
return fmt.Errorf("no pages found")
}
var p *pdf.PDF
for i, pgRef := range doc.Pages.Page {
page, err := r.Reader.PageContent(pgRef)
if err != nil {
continue
}
c, err := r.RenderPage(page)
if err != nil {
continue
}
if i == 0 {
p = pdf.New(writer, c.W, c.H, nil)
} else {
p.NewPage(c.W, c.H)
}
c.RenderTo(p)
}
if p == nil {
return fmt.Errorf("failed to render any page")
}
return p.Close()
}
// renderAnnotations 渲染页面注释外观
// 入参: ctx 画布上下文, pageID 页面ID, pageH 页面高度
func (r *Renderer) renderAnnotations(ctx *canvas.Context, pageID string, pageH float64) {
for _, annot := range r.Reader.Annots[pageID] {
if len(annot.Appearance.Objects) == 0 {
continue
}
box, _ := ParseBox(annot.Appearance.Boundary)
ctm := Matrix{a: 1, d: 1, e: box.X, f: box.Y}
for _, obj := range annot.Appearance.Objects {
r.renderObject(ctx, obj, pageH, nil, nil, 0, &ctm, false)
}
}
}
// renderTemplate 渲染模板
// 入参: ctx 画布上下文, templateID 模板ID, pageH 页面高度
func (r *Renderer) renderTemplate(ctx *canvas.Context, templateID string, pageH float64) {
var tplPage *TemplatePage
for _, tp := range r.Reader.doc.CommonData.TemplatePage {
if tp.ID == templateID {
tplPage = &tp
break
}
}
if tplPage == nil {
return
}
tplContent, err := r.Reader.PageContent(Page{BaseLoc: tplPage.BaseLoc})
if err != nil {
return
}
if tplContent.Content.Layer != nil {
for _, layer := range tplContent.Content.Layer {
r.renderLayer(ctx, layer, pageH, nil, nil, 0, nil)
}
}
}
// renderLayer 渲染图层
// 入参: ctx 画布上下文, layer 图层对象, pageH 页面高度, defaultFill 默认填充色, defaultStroke 默认描边色, defaultLW 默认线宽, parentCTM 父级CTM
func (r *Renderer) renderLayer(ctx *canvas.Context, layer Layer, pageH float64, defaultFill, defaultStroke color.Color, defaultLW float64, parentCTM *Matrix) {
if layer.DrawParam != "" {
if dp := r.getDrawParam(layer.DrawParam, nil); dp != nil {
if dp.LineWidth > 0 {
defaultLW = dp.LineWidth
}
if dp.FillColor != nil {
defaultFill = parseFillColor(dp.FillColor)
}
if dp.StrokeColor != nil {
defaultStroke = parseStrokeColor(dp.StrokeColor)
}
}
}
if len(layer.Objects) > 0 {
for _, obj := range layer.Objects {
r.renderObject(ctx, obj, pageH, defaultFill, defaultStroke, defaultLW, parentCTM, false)
}
return
}
for _, textObj := range layer.TextObject {
r.renderText(ctx, textObj, pageH, defaultFill, defaultStroke, parentCTM)
}
for _, pathObj := range layer.PathObject {
r.renderPath(ctx, pathObj, pageH, defaultFill, defaultStroke, defaultLW, parentCTM, false)
}
for _, imgObj := range layer.ImageObject {
r.renderImage(ctx, imgObj, pageH, parentCTM)
}
for _, cgu := range layer.CompositeGraphicUnit {
r.renderCompositeGraphicUnit(ctx, cgu, pageH, defaultFill, defaultStroke, defaultLW, parentCTM, false)
}
}
// renderCompositeGraphicUnit 渲染复合图元
// 入参: ctx 画布上下文, cgu 复合图元对象, pageH 页面高度, defaultFill 默认填充色, defaultStroke 默认描边色, defaultLW 默认线宽, parentCTM 父级CTM, boundaryInCTM 边界是否参与CTM变换
func (r *Renderer) renderCompositeGraphicUnit(ctx *canvas.Context, cgu CompositeGraphicUnit, pageH float64, defaultFill, defaultStroke color.Color, defaultLW float64, parentCTM *Matrix, boundaryInCTM bool) {
if cgu.Visible != nil && !*cgu.Visible {
return
}
ctx.Push()
currentCTM := NewMatrix(cgu.CTM)
if parentCTM != nil {
currentCTM = parentCTM.Multiply(currentCTM)
}
if cgu.ResourceID != "" {
if ref, ok := r.CompositeGraphicUnits[cgu.ResourceID]; ok {
refCopy := *ref
refCopy.Alpha = mergeAlpha(refCopy.Alpha, cgu.Alpha)
r.renderCompositeGraphicUnit(ctx, refCopy, pageH, defaultFill, defaultStroke, defaultLW, &currentCTM, true)
}
}
if cgu.DrawParam != "" {
if dp := r.getDrawParam(cgu.DrawParam, nil); dp != nil {
if dp.LineWidth > 0 {
defaultLW = dp.LineWidth
}
if dp.FillColor != nil {
defaultFill = parseFillColor(dp.FillColor)
}
if dp.StrokeColor != nil {
defaultStroke = parseStrokeColor(dp.StrokeColor)
}
}
}
if len(cgu.Objects) > 0 {
for _, obj := range cgu.Objects {
obj = mergeGraphicObjectAlpha(obj, cgu.Alpha)
r.renderObject(ctx, obj, pageH, defaultFill, defaultStroke, defaultLW, &currentCTM, boundaryInCTM)
}
ctx.Pop()
return
}
for _, imgObj := range cgu.ImageObject {
imgObj.Alpha = mergeAlpha(imgObj.Alpha, cgu.Alpha)
r.renderImage(ctx, imgObj, pageH, &currentCTM)
}
for _, pathObj := range cgu.PathObject {
pathObj.Alpha = mergeAlpha(pathObj.Alpha, cgu.Alpha)
r.renderPath(ctx, pathObj, pageH, defaultFill, defaultStroke, defaultLW, &currentCTM, boundaryInCTM)
}
for _, textObj := range cgu.TextObject {
textObj.Alpha = mergeAlpha(textObj.Alpha, cgu.Alpha)
r.renderText(ctx, textObj, pageH, defaultFill, defaultStroke, &currentCTM)
}
for _, subCgu := range cgu.CompositeGraphicUnit {
subCgu.Alpha = mergeAlpha(subCgu.Alpha, cgu.Alpha)
r.renderCompositeGraphicUnit(ctx, subCgu, pageH, defaultFill, defaultStroke, defaultLW, &currentCTM, boundaryInCTM)
}
ctx.Pop()
}
// renderObject 渲染图形对象
// 入参: ctx 画布上下文, obj 图形对象, pageH 页面高度, defaultFill 默认填充色, defaultStroke 默认描边色, defaultLW 默认线宽, parentCTM 父级CTM, boundaryInCTM 边界是否参与CTM变换
func (r *Renderer) renderObject(ctx *canvas.Context, obj GraphicObject, pageH float64, defaultFill, defaultStroke color.Color, defaultLW float64, parentCTM *Matrix, boundaryInCTM bool) {
switch obj.Type {
case "TextObject":
r.renderText(ctx, obj.TextObject, pageH, defaultFill, defaultStroke, parentCTM)
case "PathObject":
r.renderPath(ctx, obj.PathObject, pageH, defaultFill, defaultStroke, defaultLW, parentCTM, boundaryInCTM)
case "ImageObject":
r.renderImage(ctx, obj.ImageObject, pageH, parentCTM)
case "CompositeGraphicUnit", "CompositeObject":
r.renderCompositeGraphicUnit(ctx, obj.CompositeGraphicUnit, pageH, defaultFill, defaultStroke, defaultLW, parentCTM, boundaryInCTM)
}
}
// mergeGraphicObjectAlpha 合并图形对象透明度
// 入参: obj 图形对象, alpha 父级透明度
// 返回: GraphicObject 合并后的图形对象
func mergeGraphicObjectAlpha(obj GraphicObject, alpha *int) GraphicObject {
if alpha == nil {
return obj
}
switch obj.Type {
case "TextObject":
obj.TextObject.Alpha = mergeAlpha(obj.TextObject.Alpha, alpha)
case "PathObject":
obj.PathObject.Alpha = mergeAlpha(obj.PathObject.Alpha, alpha)
case "ImageObject":
obj.ImageObject.Alpha = mergeAlpha(obj.ImageObject.Alpha, alpha)
case "CompositeGraphicUnit", "CompositeObject":
obj.CompositeGraphicUnit.Alpha = mergeAlpha(obj.CompositeGraphicUnit.Alpha, alpha)
}
return obj
}
// getDrawParam 获取绘制参数逻辑
// 入参: id 参数ID, visited 访问记录
// 返回: *DrawParam 绘制参数
func (r *Renderer) getDrawParam(id string, visited map[string]bool) *DrawParam {
if visited == nil {
visited = make(map[string]bool)
}
if visited[id] {
return nil
}
visited[id] = true
if dp, ok := r.DrawParams[id]; ok {
if dp.Relative != "" {
base := r.getDrawParam(dp.Relative, visited)
if base == nil {
return dp
}
merged := *base
if dp.LineWidth > 0 {
merged.LineWidth = dp.LineWidth
}
if dp.Join != "" {
merged.Join = dp.Join
}
if dp.Cap != "" {
merged.Cap = dp.Cap
}
if dp.DashPattern != "" {
merged.DashPattern = dp.DashPattern
merged.DashOffset = dp.DashOffset
}
if dp.MiterLimit > 0 {
merged.MiterLimit = dp.MiterLimit
}
if dp.FillColor != nil {
merged.FillColor = dp.FillColor
}
if dp.StrokeColor != nil {
merged.StrokeColor = dp.StrokeColor
}
if dp.Font != "" {
merged.Font = dp.Font
}
if dp.Size > 0 {
merged.Size = dp.Size
}
if dp.Weight > 0 {
merged.Weight = dp.Weight
}
if dp.Italic {
merged.Italic = dp.Italic
}
return &merged
}
return dp
}
return nil
}
// initCommon 初始化公共资源
func (r *Renderer) initCommon() {
r.fontFamily = canvas.NewFontFamily("default")
r.defaultFontLoaded = r.loadDefaultFonts()
}
// renderImage 渲染图片
// 入参: ctx 画布上下文, obj 图片对象, pageH 页面高度, parentCTM 父级CTM
func (r *Renderer) renderImage(ctx *canvas.Context, obj ImageObject, pageH float64, parentCTM *Matrix) {
if obj.Visible != nil && !*obj.Visible {
return
}
resPath, ok := r.Reader.ResMap[obj.ResourceID]
if !ok {
return
}
imgData, err := r.Reader.ResData(resPath)
if err != nil {
return
}
img, _, err := image.Decode(bytes.NewReader(imgData))
if err != nil {
return
}
box, _ := ParseBox(obj.Boundary)
imgBounds := img.Bounds()
imgW, imgH := float64(imgBounds.Dx()), float64(imgBounds.Dy())
if imgW <= 0 || imgH <= 0 {
return
}
img = imageWithAlpha(img, obj.Alpha)
pad := 0
img, pad = imageWithTransparentEdge(img)
ctm := NewMatrix(obj.CTM)
if obj.CTM == "" {
ctm = Matrix{a: box.W, d: box.H}
}
if parentCTM != nil {
ctm = parentCTM.Multiply(ctm)
}
m := canvas.Matrix{
{ctm.a / imgW, -ctm.c / imgH, box.X + ctm.c + ctm.e},
{-ctm.b / imgW, ctm.d / imgH, pageH - box.Y - ctm.d - ctm.f},
}
if pad > 0 {
p := float64(pad)
m[0][2] -= m[0][0]*p + m[0][1]*p
m[1][2] -= m[1][0]*p + m[1][1]*p
}
ctx.RenderImage(img, ctx.CoordSystemView().Mul(ctx.View()).Mul(m))
}
// imageWithAlpha 合并图片透明度
// 入参: img 图片对象, alpha 对象透明度
// 返回: image.Image 合并后的图片对象
func imageWithAlpha(img image.Image, alpha *int) image.Image {
if img == nil || alpha == nil {
return img
}
a := clampColor(*alpha)
bounds := img.Bounds()
out := image.NewNRGBA(bounds)
for y := bounds.Min.Y; y < bounds.Max.Y; y++ {
for x := bounds.Min.X; x < bounds.Max.X; x++ {
c := color.NRGBAModel.Convert(img.At(x, y)).(color.NRGBA)
c.A = uint8(int(c.A) * a / 255)
out.SetNRGBA(x, y, c)
}
}
return out
}
// imageWithTransparentEdge 补齐透明图片边缘颜色
// 入参: img 图片对象
// 返回: image.Image 补齐后的图片对象, int 补齐像素数
func imageWithTransparentEdge(img image.Image) (image.Image, int) {
if img == nil {
return img, 0
}
bounds := img.Bounds()
w, h := bounds.Dx(), bounds.Dy()
if w == 0 || h == 0 {
return img, 0
}
src := image.NewNRGBA(image.Rect(0, 0, w, h))
hasZero, hasVisible := false, false
for y := 0; y < h; y++ {
for x := 0; x < w; x++ {
c := color.NRGBAModel.Convert(img.At(bounds.Min.X+x, bounds.Min.Y+y)).(color.NRGBA)
src.SetNRGBA(x, y, c)
if c.A == 0 {
hasZero = true
} else {
hasVisible = true
}
}
}
if !hasZero || !hasVisible {
return img, 0
}
out := image.NewNRGBA(image.Rect(0, 0, w+2, h+2))
for y := 0; y < h; y++ {
for x := 0; x < w; x++ {
c := src.NRGBAAt(x, y)
if c.A == 0 {
if edge, ok := transparentEdgeColor(src, x, y); ok {
c = edge
}
}
out.SetNRGBA(x+1, y+1, c)
}
}
for x := 0; x < w; x++ {
out.SetNRGBA(x+1, 0, transparentPaddingColor(out.NRGBAAt(x+1, 1)))
out.SetNRGBA(x+1, h+1, transparentPaddingColor(out.NRGBAAt(x+1, h)))
}
for y := 0; y < h; y++ {
out.SetNRGBA(0, y+1, transparentPaddingColor(out.NRGBAAt(1, y+1)))
out.SetNRGBA(w+1, y+1, transparentPaddingColor(out.NRGBAAt(w, y+1)))
}
out.SetNRGBA(0, 0, transparentPaddingColor(out.NRGBAAt(1, 1)))
out.SetNRGBA(w+1, 0, transparentPaddingColor(out.NRGBAAt(w, 1)))
out.SetNRGBA(0, h+1, transparentPaddingColor(out.NRGBAAt(1, h)))
out.SetNRGBA(w+1, h+1, transparentPaddingColor(out.NRGBAAt(w, h)))
return out, 1
}
// transparentEdgeColor 获取透明像素相邻的可见颜色
// 入参: img 图片对象, x X坐标, y Y坐标
// 返回: color.NRGBA 颜色, bool 是否存在
func transparentEdgeColor(img *image.NRGBA, x, y int) (color.NRGBA, bool) {
bounds := img.Bounds()
var best color.NRGBA
for dy := -1; dy <= 1; dy++ {
for dx := -1; dx <= 1; dx++ {
if dx == 0 && dy == 0 {
continue
}
nx, ny := x+dx, y+dy
if nx < bounds.Min.X || nx >= bounds.Max.X || ny < bounds.Min.Y || ny >= bounds.Max.Y {
continue
}
c := img.NRGBAAt(nx, ny)
if c.A > best.A {
best = c
}
}
}
if best.A == 0 {
return color.NRGBA{}, false
}
best.A = 1
return best, true
}
// transparentPaddingColor 获取透明补齐颜色
// 入参: c 边缘颜色
// 返回: color.NRGBA 补齐颜色
func transparentPaddingColor(c color.NRGBA) color.NRGBA {
c.A = 1
return c
}
// renderPath 渲染路径
// 入参: ctx 画布上下文, obj 路径对象, pageH 页面高度, defaultFill 默认填充色, defaultStroke 默认描边色, defaultLW 默认线宽, parentCTM 父级CTM, boundaryInCTM 边界是否参与CTM变换
func (r *Renderer) renderPath(ctx *canvas.Context, obj PathObject, pageH float64, defaultFill, defaultStroke color.Color, defaultLW float64, parentCTM *Matrix, boundaryInCTM bool) {
if obj.Visible != nil && !*obj.Visible {
return
}
ctx.Push()
bx, by := 0.0, 0.0
if obj.Boundary != "" {
if box, err := ParseBox(obj.Boundary); err == nil {
bx, by = box.X, box.Y
}
}
ctm := NewMatrix(obj.CTM)
if parentCTM != nil {
ctm = parentCTM.Multiply(ctm)
}
fillColor, strokeColor := colorWithAlpha(defaultFill, obj.Alpha), colorWithAlpha(defaultStroke, obj.Alpha)
var fillPaint any = fillColor
var strokePaint any = strokeColor
var fillPattern *Pattern
var fillPatternColor color.Color
lineWidth := defaultLW
if lineWidth == 0 {
lineWidth = 0.353
}
lineCap := canvas.ButtCap
lineJoin := canvas.MiterJoin
dashOffset := 0.0
var dashPattern []float64
if obj.DrawParam != "" {
if dp := r.getDrawParam(obj.DrawParam, nil); dp != nil {
if dp.LineWidth > 0 {
lineWidth = dp.LineWidth
}
if dp.FillColor != nil {
fillColorNode := withFillAlpha(dp.FillColor, obj.Alpha)
fillPattern = fillColorNode.Pattern
fillPatternColor = patternColor(fillColorNode)
fillColor = parseFillColor(fillColorNode)
fillPaint = parseFillPaint(fillColorNode, bx, by, pageH, 0, 0)
}
if dp.StrokeColor != nil {
strokeColorNode := withStrokeAlpha(dp.StrokeColor, obj.Alpha)
strokeColor = parseStrokeColor(strokeColorNode)
strokePaint = parseStrokePaint(strokeColorNode, bx, by, pageH, 0, 0)
}
if dp.Cap == "Round" {
lineCap = canvas.RoundCap
} else if dp.Cap == "Square" {
lineCap = canvas.SquareCap
}
if dp.Join == "Round" {
lineJoin = canvas.RoundJoin
} else if dp.Join == "Bevel" {
lineJoin = canvas.BevelJoin
}
if dp.DashPattern != "" {
dashPattern = parseFloats(dp.DashPattern)
dashOffset = dp.DashOffset
}
}
}
if obj.LineWidth > 0 {
lineWidth = obj.LineWidth
}
if obj.FillColor != nil {
fillColorNode := withFillAlpha(obj.FillColor, obj.Alpha)
fillPattern = fillColorNode.Pattern
fillPatternColor = patternColor(fillColorNode)
fillColor = parseFillColor(fillColorNode)
fillPaint = parseFillPaint(fillColorNode, bx, by, pageH, 0, 0)
}
if obj.StrokeColor != nil {
strokeColorNode := withStrokeAlpha(obj.StrokeColor, obj.Alpha)
strokeColor = parseStrokeColor(strokeColorNode)
strokePaint = parseStrokePaint(strokeColorNode, bx, by, pageH, 0, 0)
}
if obj.Cap != "" {
if obj.Cap == "Round" {
lineCap = canvas.RoundCap
} else if obj.Cap == "Square" {
lineCap = canvas.SquareCap
} else {
lineCap = canvas.ButtCap
}
}
if obj.Join != "" {
if obj.Join == "Round" {
lineJoin = canvas.RoundJoin
} else if obj.Join == "Bevel" {
lineJoin = canvas.BevelJoin
} else {
lineJoin = canvas.MiterJoin
}
}
if obj.DashPattern != "" {
dashPattern = parseFloats(obj.DashPattern)
dashOffset = obj.DashOffset
}
if scale := math.Sqrt(math.Abs(ctm.a*ctm.d - ctm.b*ctm.c)); scale > 0 {
lineWidth *= scale
dashOffset *= scale
for i := range dashPattern {
dashPattern[i] *= scale
}
}
p := r.buildPath(obj, pageH, ctm, boundaryInCTM)
if rectPath := r.buildTinyFillRectPath(obj, pageH, ctm, bx, by); rectPath != nil {
p = rectPath
}
clipPath := r.buildClipPath(obj.Clips, pageH, bx, by, ctm)
shouldFill := false
if obj.Fill != nil {
shouldFill = *obj.Fill
}
if fillPaint == nil {
fillPaint = fillColor
}
if shouldFill && fillPattern != nil {
fp := p
if clipPath != nil {
fp = p.Copy()
fp.Close()
fp = fp.And(clipPath)
}
r.renderPattern(ctx, fillPattern, fillPatternColor, pageH, fp, ctm, bx, by)
} else if shouldFill && fillPaint != nil {
ctx.SetFill(fillPaint)
ctx.SetStrokeColor(canvas.Transparent)
fp := p
if clipPath != nil {
fp = p.Copy()
fp.Close()
fp = fp.And(clipPath)
}
ctx.DrawPath(0, 0, fp)
}
shouldStroke := true
if obj.Stroke != nil {
shouldStroke = *obj.Stroke
}
if shouldStroke {
if strokePaint == nil {
strokePaint = strokeColor
}
if strokePaint == nil {
strokePaint = colorWithAlpha(canvas.Black, obj.Alpha)
}
ctx.SetFillColor(canvas.Transparent)
ctx.SetStroke(strokePaint)
ctx.SetStrokeWidth(lineWidth)
ctx.SetStrokeCapper(lineCap)
ctx.SetStrokeJoiner(lineJoin)
if len(dashPattern) > 0 {
ctx.SetDashes(dashOffset, dashPattern...)
}
if clipPath != nil {
sp := p.Copy()
if len(dashPattern) > 0 {
sp = sp.Dash(dashOffset, dashPattern...)
}
sp = sp.Stroke(lineWidth, lineCap, lineJoin, canvas.Tolerance)
sp = sp.And(clipPath)
ctx.SetFill(strokePaint)
ctx.SetStrokeColor(canvas.Transparent)
ctx.DrawPath(0, 0, sp)
} else {
ctx.DrawPath(0, 0, p)
}
}
ctx.Pop()
}
// renderPattern 渲染图案填充
// 入参: ctx 画布上下文, pattern 图案对象, defaultColor 默认颜色, pageH 页面高度, clip 填充区域, parentCTM 父级CTM, bx 边界X坐标, by 边界Y坐标
func (r *Renderer) renderPattern(ctx *canvas.Context, pattern *Pattern, defaultColor color.Color, pageH float64, clip *canvas.Path, parentCTM Matrix, bx, by float64) {
if pattern == nil || clip == nil || len(pattern.CellContent.Objects) == 0 {
return
}
xStep, yStep := pattern.XStep, pattern.YStep
if xStep == 0 {
xStep = pattern.Width
}
if yStep == 0 {
yStep = pattern.Height
}
if xStep <= 0 || yStep <= 0 {
return
}
patternCTM := TranslationMatrix(bx, by).Multiply(parentCTM).Multiply(NewMatrix(pattern.CTM))
invCTM, ok := patternCTM.Invert()
if !ok {
return
}
bounds := clip.FastBounds()
points := [][2]float64{
{bounds.X0, pageH - bounds.Y0},
{bounds.X1, pageH - bounds.Y0},
{bounds.X1, pageH - bounds.Y1},
{bounds.X0, pageH - bounds.Y1},
}
minX, maxX := 0.0, 0.0
minY, maxY := 0.0, 0.0
for i, point := range points {
x, y := invCTM.Transform(point[0], point[1])
if i == 0 {
minX, maxX = x, x
minY, maxY = y, y
continue
}
minX = math.Min(minX, x)
maxX = math.Max(maxX, x)
minY = math.Min(minY, y)
maxY = math.Max(maxY, y)
}
startX := int(math.Floor(minX/xStep)) - 1
endX := int(math.Ceil(maxX/xStep)) + 1
startY := int(math.Floor(minY/yStep)) - 1
endY := int(math.Ceil(maxY/yStep)) + 1
for ix := startX; ix <= endX; ix++ {
for iy := startY; iy <= endY; iy++ {
tileCTM := patternCTM.Multiply(TranslationMatrix(float64(ix)*xStep, float64(iy)*yStep))
for _, obj := range pattern.CellContent.Objects {
r.renderObject(ctx, obj, pageH, defaultColor, defaultColor, 0, &tileCTM, false)
}
}
}
}
// patternColor 获取图案单元默认颜色
// 入参: fillColor 填充颜色节点
// 返回: color.Color 默认颜色
func patternColor(fillColor *FillColor) color.Color {
if fillColor == nil || strings.TrimSpace(fillColor.Value) == "" {
return nil
}
return parseColorWithAlpha(fillColor.Value, fillColor.Alpha)
}
// renderText 渲染文本
// 入参: ctx 画布上下文, obj 文本对象, pageH 页面高度, defaultFill 默认填充色, defaultStroke 默认描边色, parentCTM 父级CTM
func (r *Renderer) renderText(ctx *canvas.Context, obj TextObject, pageH float64, defaultFill, defaultStroke color.Color, parentCTM *Matrix) {
if obj.Visible != nil && !*obj.Visible {
return
}
ctx.Push()
bx, by := 0.0, 0.0
if obj.Boundary != "" {
if box, err := ParseBox(obj.Boundary); err == nil {
bx, by = box.X, box.Y
}
}
ctm := NewMatrix(obj.CTM)
if parentCTM != nil {
ctm = parentCTM.Multiply(ctm)
}
var dp *DrawParam
if obj.DrawParam != "" {
dp = r.getDrawParam(obj.DrawParam, nil)
}
sizeMM := obj.Size
if sizeMM == 0 && dp != nil && dp.Size > 0 {
sizeMM = dp.Size
}
if sizeMM == 0 {
sizeMM = 3.5
}
if obj.VScale != 0 {
sizeMM *= obj.VScale
}
hScale := obj.HScale
if hScale == 0 {
hScale = 1
}
useTextMatrix := hasTextMatrix(ctm)
if scale := ctm.YScale(); scale > 0 && !useTextMatrix {
sizeMM *= scale
}
sizePt := sizeMM * 2.83465
fillColor := colorWithAlpha(defaultFill, obj.Alpha)
if fillColor == nil {
fillColor = colorWithAlpha(canvas.Black, obj.Alpha)
}
var fillPaint any = fillColor
var fillColorNode *FillColor
if dp != nil && dp.FillColor != nil {
fillColorNode = withFillAlpha(dp.FillColor, obj.Alpha)
fillColor = parseFillColor(fillColorNode)
fillPaint = parseFillPaint(fillColorNode, bx, by, pageH, 0, 0)
}
if obj.FillColor != nil {
fillColorNode = withFillAlpha(obj.FillColor, obj.Alpha)
fillColor = parseFillColor(fillColorNode)
fillPaint = parseFillPaint(fillColorNode, bx, by, pageH, 0, 0)
}
if fillPaint == nil {
fillPaint = fillColor
}
fontStyle := canvas.FontRegular
weight := obj.Weight
if weight == 0 && dp != nil && dp.Weight > 0 {
weight = dp.Weight
}
syntheticBold := weight >= 700
italic := obj.Italic
if !italic && dp != nil && dp.Italic {
italic = true
}
if italic {
fontStyle |= canvas.FontItalic
}
fontID := r.textObjectFontID(obj)
embeddedFont := false
if of, ok := r.Reader.fontCache[fontID]; ok {
embeddedFont = of.FontFile != ""
if !embeddedFont && fontNoSyntheticBold(of.FontName, of.FamilyName) {
syntheticBold = false
}
if of.Bold {
fontStyle |= canvas.FontBold
}
if of.Italic {
fontStyle |= canvas.FontItalic
}
}
if syntheticBold {
fontStyle |= canvas.FontBold
}
ff := r.loadFont(fontID)
if ff == nil {
return
}
face := ff.Face(sizePt, fillPaint, fontStyle, canvas.FontNormal)
glyphRunes := r.textObjectGlyphRunes(fontID, obj)
codePos := 0
for _, tc := range obj.TextCode {
var runes []rune
if tc.Index != "" {
runes = r.parseIndexRunes(tc.Index, fontID)
} else {
runes = []rune(tc.Value)
}
dxs, dys := parseFloats(tc.DeltaX), parseFloats(tc.DeltaY)
xs, ys := parseFloats(tc.X), parseFloats(tc.Y)
cx, cy := 0.0, 0.0
if len(xs) > 0 {
cx = xs[0]
}
if len(ys) > 0 {
cy = ys[0]
}
for i, run := range runes {
str := string(run)
if embeddedFont && tc.Index == "" && glyphRunes != nil {
if mapped, ok := glyphRunes[codePos+i]; ok {
str = string(mapped)
}
}
if i < len(xs) {
cx = xs[i]
} else if i > 0 {
if dx, ok := textDelta(dxs, i-1); ok {
cx += dx
} else if len(dys) == 0 {
cx += face.TextWidth(str) * hScale
}
}
if i < len(ys) {
cy = ys[i]
} else if i > 0 {
if dy, ok := textDelta(dys, i-1); ok {
cy += dy
}
}
tx, ty := ctm.Transform(cx, cy)
canvasX, canvasY := tx+bx, pageH-(ty+by)
textWidth := face.TextWidth(str) * hScale
glyphFillPaint := fillPaint
if fillColorNode != nil && fillColorNode.AxialShd != nil {
glyphFillPaint = parseFillPaint(fillColorNode, bx, by, pageH, canvasX, canvasY)
}
if glyphFillPaint != nil {
ctx.SetFill(glyphFillPaint)
drawGlyph := func(x, y float64) {
if hScale != 1 {
ctx.Push()
ctx.Translate(x, y)
ctx.Scale(hScale, 1)
x, y = 0, 0
defer ctx.Pop()
}
if embeddedFont {
path, width := face.ToPath(str)
textWidth = width * hScale
ctx.DrawPath(x, y, path)
} else {
textFace := face
if fillColorNode != nil && fillColorNode.AxialShd != nil {
textFace = ff.Face(sizePt, glyphFillPaint, fontStyle, canvas.FontNormal)
}
text := canvas.NewTextLine(textFace, str, canvas.Left)
ctx.DrawText(x, y, text)
}
}
if useTextMatrix {
ctx.Push()
ctx.Translate(canvasX, canvasY)
ctx.ComposeView(textMatrix(ctm))
drawGlyph(0, 0)
if strings.Contains(obj.Decoration, "Underline") {
uw := sizeMM * 0.05
ctx.SetStrokeWidth(uw)
ctx.SetStrokeColor(fillColor)
off := sizeMM * 0.1
ctx.MoveTo(0, -off)
ctx.LineTo(textWidth, -off)
ctx.Stroke()
}
ctx.Pop()
continue
}
drawGlyph(canvasX, canvasY)
}
if strings.Contains(obj.Decoration, "Underline") {
uw := sizeMM * 0.05
ctx.SetStrokeWidth(uw)
ctx.SetStrokeColor(fillColor)
off := sizeMM * 0.1
ctx.MoveTo(canvasX, canvasY-off)
ctx.LineTo(canvasX+textWidth, canvasY-off)
ctx.Stroke()
}
}
codePos += len(runes)
}
ctx.Pop()
}
// textDelta 获取文本偏移量
// 入参: deltas 偏移量数组, index 偏移量索引
// 返回: float64 偏移量, bool 是否存在
func textDelta(deltas []float64, index int) (float64, bool) {
if len(deltas) == 0 {
return 0, false
}
if index < len(deltas) {
return deltas[index], true
}
return deltas[len(deltas)-1], true
}
// hasTextMatrix 判断文本是否需要应用字形变换
// 入参: ctm 变换矩阵
// 返回: bool 是否需要变换
func hasTextMatrix(ctm Matrix) bool {
const eps = 1e-9
return math.Abs(ctm.a-1) > eps || math.Abs(ctm.b) > eps || math.Abs(ctm.c) > eps || math.Abs(ctm.d-1) > eps
}
// textMatrix 获取文本字形变换矩阵
// 入参: ctm OFD变换矩阵
// 返回: canvas.Matrix 画布变换矩阵
func textMatrix(ctm Matrix) canvas.Matrix {
return canvas.Matrix{
{ctm.a, -ctm.c, 0},
{-ctm.b, ctm.d, 0},
}
}
// loadFont 加载字体
// 入参: fontID 字体ID
// 返回: *canvas.FontFamily 字体族
func (r *Renderer) loadFont(fontID string) *canvas.FontFamily {
if ff, ok := r.FontMap[fontID]; ok {
return ff
}
var defaultFont *canvas.FontFamily
if r.defaultFontLoaded {
defaultFont = r.fontFamily
}
of, ok := r.Reader.fontCache[fontID]
if !ok {
return defaultFont
}
ff := canvas.NewFontFamily(of.FontName)
if of.FontFile != "" {
if fontData, err := r.Reader.ResData(of.FontFile); err == nil {
if cidMap := getCFFCIDRuneMap(fontData); len(cidMap) > 0 {
if r.FontCIDMap == nil {
r.FontCIDMap = make(map[string]map[uint16]rune)
}
r.FontCIDMap[fontID] = cidMap
}
if _, fixedData, mapping, _, err := FixFontDataAggressive(fontData, true, true); err == nil {
fontData = fixedData
if mapping != nil {
if r.FontGIDMap == nil {
r.FontGIDMap = make(map[string]map[uint16]rune)
}
inv := make(map[uint16]rune)
for k, v := range mapping {
if k == packedGlyphRune(v) {
inv[v] = k
}
}
for k, v := range mapping {
if _, ok := inv[v]; !ok {
inv[v] = k
}
}
r.FontGIDMap[fontID] = inv
}
}
var fontStyle canvas.FontStyle
if of.Bold {
fontStyle |= canvas.FontBold
}
if of.Italic {
fontStyle |= canvas.FontItalic
}
if err := ff.LoadFont(fontData, 0, fontStyle); err == nil {
r.FontMap[fontID] = ff
return ff
}
return nil
}
return nil
}
var fontStyle canvas.FontStyle
if of.Bold {
fontStyle |= canvas.FontBold
}
if of.Italic {
fontStyle |= canvas.FontItalic
}
for _, dir := range r.fontDirs {
for _, pattern := range fontFilePatterns(of.FontName, of.FamilyName) {
matches := r.globFontFiles(dir, pattern)
for _, m := range matches {
if err := ff.LoadFontFile(m, fontStyle); err == nil {
r.FontMap[fontID] = ff
return ff
}
}
}
}
for _, fsys := range r.fontFS {
for _, pattern := range fontFilePatterns(of.FontName, of.FamilyName) {
if matches, err := fs.Glob(fsys, pattern); err == nil {
for _, m := range matches {
resData, err := fs.ReadFile(fsys, m)
if err == nil {
if err := ff.LoadFont(resData, 0, fontStyle); err == nil {
r.FontMap[fontID] = ff
return ff
}
}
}
}
}
}
if !canLoadSystemFonts() {
for _, fsys := range r.fontFS {
if matches, err := fs.Glob(fsys, "*"); err == nil {
for _, m := range matches {
resData, err := fs.ReadFile(fsys, m)
if err == nil {
if err := ff.LoadFont(resData, 0, fontStyle); err == nil {
r.FontMap[fontID] = ff
return ff
}
}
}
}
}
r.FontMap[fontID] = defaultFont
return defaultFont
}
names := []string{of.FamilyName, of.FontName}
for _, name := range names {
if name == "" {
continue
}
for _, targetName := range fontSystemNames(name) {
if err := ff.LoadSystemFont(targetName, fontStyle); err == nil {
r.FontMap[fontID] = ff
return ff
}
}
var sysFontDir string
switch runtime.GOOS {
case "linux":
sysFontDir = `/usr/share/fonts`
case "darwin":
sysFontDir = `/Library/Fonts`
default:
sysFontDir = `C:\Windows\Fonts`
}
for _, pattern := range fontFilePatterns(name) {
matches := r.globFontFiles(sysFontDir, pattern)
for _, m := range matches {
if err := ff.LoadFontFile(m, fontStyle); err == nil {
r.FontMap[fontID] = ff
return ff
}
}
}
}
r.FontMap[fontID] = defaultFont
return defaultFont
}
// globFontFiles 查找字体文件
// 入参: dir 目录, pattern 模式
// 返回: []string 文件列表
func (r *Renderer) globFontFiles(dir, pattern string) []string {
matches, _ := filepath.Glob(filepath.Join(dir, pattern))
var result []string
for _, m := range matches {
ext := strings.ToLower(filepath.Ext(m))
if ext == ".ttf" || ext == ".otf" || ext == ".ttc" {
result = append(result, m)
}
}
return result
}
// textObjectFontID 获取文本对象字体ID
// 入参: text 文本对象
// 返回: string 字体ID
func (r *Renderer) textObjectFontID(text TextObject) string {
fontID := text.Font
if fontID == "" && text.DrawParam != "" {
if dp := r.getDrawParam(text.DrawParam, nil); dp != nil && dp.Font != "" {
fontID = dp.Font
}
}
return fontID
}
// textObjectGlyphRunes 获取文本对象的字形映射
// 入参: fontID 字体ID, text 文本对象
// 返回: map[int]rune 文本位置到包装字体字符的映射
func (r *Renderer) textObjectGlyphRunes(fontID string, text TextObject) map[int]rune {
if fontID == "" || len(text.CGTransform) == 0 {
return nil
}
result := make(map[int]rune)
for _, transform := range text.CGTransform {
glyphs := parseInts(transform.Glyphs)
count := len(glyphs)
if transform.GlyphCount > 0 && transform.GlyphCount < count {
count = transform.GlyphCount
}
if transform.CodeCount > 0 && transform.CodeCount < count {
count = transform.CodeCount
}
if count == 0 {
continue
}
if transform.CodeCount > 0 && transform.GlyphCount > 0 && transform.CodeCount != transform.GlyphCount {
continue
}
for i := 0; i < count; i++ {
if mapped, ok := r.fontGlyphRune(fontID, glyphs[i]); ok {
result[transform.CodePosition+i] = mapped
}
}
}
if len(result) == 0 {
return nil
}
return result
}
// fontGlyphRune 获取字形ID对应的包装字体字符
// 入参: fontID 字体ID, glyphID 字形ID或CID
// 返回: rune 包装字体字符, bool 是否存在
func (r *Renderer) fontGlyphRune(fontID string, glyphID int) (rune, bool) {
if glyphID < 0 || glyphID > 0xFFFF {
return 0, false
}
id := uint16(glyphID)
if r.FontCIDMap != nil {
if mapping := r.FontCIDMap[fontID]; mapping != nil {
if mapped, ok := mapping[id]; ok {
return mapped, true
}
}
}
if r.FontGIDMap != nil {
if mapping := r.FontGIDMap[fontID]; mapping != nil {
if mapped, ok := mapping[id]; ok {
return mapped, true
}
}
}
return 0, false
}
// renderStamp 渲染印章
// 入参: ctx 画布上下文, s 印章对象, pageH 页面高度
func (r *Renderer) renderStamp(ctx *canvas.Context, s Stamp, pageH float64) {
x, y, w, h := s.Box.X, s.Box.Y, s.Box.W, s.Box.H
screenY := pageH - (y + h)
if s.Type == "ofd" && len(s.Data) > 0 {
reader, err := NewReader(bytes.NewReader(s.Data), int64(len(s.Data)))
if err == nil {
defer reader.Close()
doc, err := reader.Doc()
if err == nil {
renderer := NewRenderer(reader)
for _, pageRef := range doc.Pages.Page {
content, err := reader.PageContent(pageRef)
if err != nil {
continue
}
sealBox, err := renderer.GetPageBox(content)
if err != nil {
continue
}
ctx.Push()
ctx.Translate(x, screenY)
ctx.Scale(w/sealBox.W, h/sealBox.H)
renderer.renderPageToContext(ctx, content, false)
ctx.Pop()
}
return
}
}
}
if len(s.Data) > 0 {
img, _, err := image.Decode(bytes.NewReader(s.Data))
if err == nil {
ctx.Push()
ctx.Translate(x, screenY)
ctx.Scale(w/float64(img.Bounds().Dx()), h/float64(img.Bounds().Dy()))
ctx.DrawImage(0, 0, img, canvas.DPMM(1.0))
ctx.Pop()
return
}
}
}
// buildPath 解析路径并返回Canvas Path
// 入参: obj 路径对象, pageH 页面高度, ctm 变换矩阵, boundaryInCTM 边界是否参与CTM变换
// 返回: *canvas.Path 路径对象
func (r *Renderer) buildPath(obj PathObject, pageH float64, ctm Matrix, boundaryInCTM bool) *canvas.Path {
bx, by := 0.0, 0.0
if obj.Boundary != "" {
if box, err := ParseBox(obj.Boundary); err == nil {
bx, by = box.X, box.Y
}
}
point := func(x, y float64) (float64, float64) {
if boundaryInCTM {
tx, ty := ctm.Transform(x+bx, y+by)
return tx, pageH - ty
}
tx, ty := ctm.Transform(x, y)
return tx + bx, pageH - (ty + by)
}
p := &canvas.Path{}
tokens := strings.Fields(obj.AbbreviatedData)
for i := 0; i < len(tokens); {
cmd := tokens[i]
i++
switch cmd {
case "M", "S":
if i+1 < len(tokens) {
x, _ := strconv.ParseFloat(tokens[i], 64)
y, _ := strconv.ParseFloat(tokens[i+1], 64)
tx, ty := point(x, y)
p.MoveTo(tx, ty)
i += 2
}
case "L":
if i+1 < len(tokens) {
x, _ := strconv.ParseFloat(tokens[i], 64)
y, _ := strconv.ParseFloat(tokens[i+1], 64)
tx, ty := point(x, y)
p.LineTo(tx, ty)
i += 2
}
case "B":
if i+5 < len(tokens) {
x1, _ := strconv.ParseFloat(tokens[i], 64)
y1, _ := strconv.ParseFloat(tokens[i+1], 64)
x2, _ := strconv.ParseFloat(tokens[i+2], 64)
y2, _ := strconv.ParseFloat(tokens[i+3], 64)
x3, _ := strconv.ParseFloat(tokens[i+4], 64)
y3, _ := strconv.ParseFloat(tokens[i+5], 64)
tx1, ty1 := point(x1, y1)
tx2, ty2 := point(x2, y2)
tx3, ty3 := point(x3, y3)
p.CubeTo(tx1, ty1, tx2, ty2, tx3, ty3)
i += 6
}
case "Q":
if i+3 < len(tokens) {
x1, _ := strconv.ParseFloat(tokens[i], 64)
y1, _ := strconv.ParseFloat(tokens[i+1], 64)
x2, _ := strconv.ParseFloat(tokens[i+2], 64)
y2, _ := strconv.ParseFloat(tokens[i+3], 64)
tx1, ty1 := point(x1, y1)
tx2, ty2 := point(x2, y2)
p.QuadTo(tx1, ty1, tx2, ty2)
i += 4
}
case "A":
if i+6 < len(tokens) {
rx, _ := strconv.ParseFloat(tokens[i], 64)
ry, _ := strconv.ParseFloat(tokens[i+1], 64)
rot, _ := strconv.ParseFloat(tokens[i+2], 64)
large, _ := strconv.ParseBool(tokens[i+3])
sweep, _ := strconv.ParseBool(tokens[i+4])
x, _ := strconv.ParseFloat(tokens[i+5], 64)
y, _ := strconv.ParseFloat(tokens[i+6], 64)
sx := math.Hypot(ctm.a, ctm.c)
sy := math.Hypot(ctm.b, ctm.d)
ctmRot := math.Atan2(ctm.b, ctm.a) * 180 / math.Pi
tx, ty := point(x, y)
sweep = !sweep
p.ArcTo(rx*sx, ry*sy, -(rot + ctmRot), large, sweep, tx, ty)
i += 7
}
case "C":
p.Close()
}
}
return p
}
// buildClipPath 构建裁剪路径
// 入参: clips 裁剪对象, pageH 页面高度, bx 边界X坐标, by 边界Y坐标, objectCTM 对象CTM
// 返回: *canvas.Path 路径对象
func (r *Renderer) buildClipPath(clips *Clips, pageH float64, bx, by float64, objectCTM Matrix) *canvas.Path {
if clips == nil {
return nil
}
var p *canvas.Path
for _, clip := range clips.Clip {
var clipPath *canvas.Path
for _, area := range clip.Area {
areaCTM := NewMatrix(area.CTM)
if clips.TransFlag {
areaCTM = objectCTM.Multiply(areaCTM)
}
for _, pathObj := range area.Path {
ctm := areaCTM.Multiply(NewMatrix(pathObj.CTM))
cp := r.buildPath(pathObj, pageH, ctm, true)
cp.Translate(bx, -by)
cp.Close()
if clipPath == nil {
clipPath = cp
} else {
clipPath = clipPath.Or(cp)
}
}
}
if clipPath != nil {
if p == nil {
p = clipPath
} else {
p = p.And(clipPath)
}
}
}
return p
}
// buildTinyFillRectPath 构建微小填充矩形路径
// 入参: obj 路径对象, pageH 页面高度, ctm 变换矩阵, bx 边界X坐标, by 边界Y坐标
// 返回: *canvas.Path 路径对象
func (r *Renderer) buildTinyFillRectPath(obj PathObject, pageH float64, ctm Matrix, bx, by float64) *canvas.Path {
if obj.Fill == nil || !*obj.Fill || obj.Stroke == nil || *obj.Stroke {
return nil
}
box, err := ParseBox(obj.Boundary)
if err != nil || box.W <= 0 || box.H <= 0 || box.W > 0.6 || box.H > 0.6 {
return nil
}
tokens := strings.Fields(obj.AbbreviatedData)
if len(tokens) != 11 || tokens[0] != "M" || tokens[3] != "L" || tokens[6] != "L" || tokens[9] != "L" || tokens[10] != "C" {
return nil
}
points := make([][2]float64, 0, 4)
for i := 1; i < 10; i += 3 {
x, errX := strconv.ParseFloat(tokens[i], 64)
y, errY := strconv.ParseFloat(tokens[i+1], 64)
if errX != nil || errY != nil {
return nil
}
tx, ty := ctm.Transform(x, y)
points = append(points, [2]float64{tx + bx, pageH - (ty + by)})
}
minX, maxX := points[0][0], points[0][0]
minY, maxY := points[0][1], points[0][1]
for _, point := range points[1:] {
minX = math.Min(minX, point[0])
maxX = math.Max(maxX, point[0])
minY = math.Min(minY, point[1])
maxY = math.Max(maxY, point[1])
}
expand := math.Min(box.W, box.H) * 0.08
p := &canvas.Path{}
p.MoveTo(minX-expand, minY-expand)
p.LineTo(maxX+expand, minY-expand)
p.LineTo(maxX+expand, maxY+expand)
p.LineTo(minX-expand, maxY+expand)
p.Close()
return p
}
// parseIndexRunes 解析索引字形
// 入参: indexStr 索引字符串, fontID 字体ID
// 返回: []rune 字形列表
func (r *Renderer) parseIndexRunes(indexStr string, fontID string) []rune {
var gids []int
parts := strings.Fields(indexStr)
for _, p := range parts {
if strings.Contains(p, "-") {
sub := strings.Split(p, "-")
if len(sub) == 2 {
start, _ := strconv.Atoi(sub[0])
end, _ := strconv.Atoi(sub[1])
for k := start; k <= end; k++ {
gids = append(gids, k)
}
}
} else {
val, _ := strconv.Atoi(p)
gids = append(gids, val)
}
}
var res []rune
for _, gid := range gids {
if rVal, ok := r.fontGlyphRune(fontID, gid); ok {
res = append(res, rVal)
continue
}
res = append(res, rune(gid))
}
return res
}