mirror of
https://github.com/kjanat/articulate-parser.git
synced 2026-08-05 16:04:07 +02:00
144125d355
* fix(lint): resolve golangci-lint failures and modernize string handling
CI's golangci-lint (v2.12.2) job was failing with 14 issues, which blocked
the dependent test job. This addresses all of them:
- goconst: extract repeated string literals into constants
- format aliases ("md", "word", "htm") in the exporter factory
- "section" lesson type shared by markdown and HTML exporters
- default Articulate Rise base URL and host in the parser
- reuse existing itemType* constants in the markdown switch
- staticcheck (QF1012): replace buf.WriteString(fmt.Sprintf(...)) with
fmt.Fprintf(...) in the markdown exporter
Also drop the hardcoded `go: "1.24"` from .golangci.yml so the target Go
version is autodetected from go.mod.
* ci: drop test matrix, run a single Go version from go.mod
The test job ran a 1.24.x/1.25.x matrix, but go.mod requires go 1.25.0, so the
1.24 entry just auto-downloaded the 1.25 toolchain and tested the same thing
twice. Replace the matrix with a single job that sources its Go version from
go.mod via go-version-file, and reference the resolved version through the
setup-go step output in summaries, artifact names, and Codecov flags.
* docs: remove emojis from README
* ci: pin modernize tool to gopls v0.21.x for Go 1.25 compatibility
The autofix workflow's `task modernize` step installed the modernize
analyzer from gopls@latest, which as of v0.22.0 requires Go 1.26. The
project targets Go 1.25 (go.mod) and CI runs with GOTOOLCHAIN=local, so
the install failed. Pin to the v0.21.x line, which supports Go >= 1.25.
* ci: keep modernize@latest, fetch its toolchain via GOTOOLCHAIN=auto
Replaces the earlier v0.21.0 pin. The modernize analyzer (gopls v0.22+)
requires Go 1.26, which the project doesn't target yet — and bumping the
module to 1.26 isn't viable because the current golangci-lint release is
built with Go 1.25 and refuses to lint a newer target. Instead, let the
modernize task fetch the toolchain it needs on demand via GOTOOLCHAIN=auto
(setup-go pins GOTOOLCHAIN=local in CI), so we stay on the latest analyzer
without touching the module's Go version.
Also bump golang.org/x/image v0.34.0 -> v0.42.0 via `go get -u ./...`.
* ci: set GOTOOLCHAIN=auto inline for the modernize task
A task-level env: entry does not override GOTOOLCHAIN when setup-go has
already exported GOTOOLCHAIN=local job-wide, so the autofix job still
failed. Set GOTOOLCHAIN=auto inline on the modernize command itself, which
reliably overrides the inherited value and lets Go fetch the toolchain the
modernize analyzer requires.
* ci: bump to Go 1.26 and address PR review feedback
The autofix failure is fixed properly by moving to Go 1.26 instead of the
GOTOOLCHAIN workaround. The official golangci-lint v2.12.2 binary is built
with go1.26.2 and lints a Go 1.26 target fine (the earlier "not ready"
claim was from a locally go-installed binary compiled with Go 1.25), and
the Dockerfiles already use golang:1.26-alpine, so this also aligns the
module with the images.
- go.mod: go 1.25.0 -> 1.26.0, drop the toolchain pin (keeps the lint
target at the go directive).
- Taskfile: revert modernize to plain modernize@latest; on Go 1.26 the
GOTOOLCHAIN dance and its comments are unnecessary.
- ci.yml: pass the resolved Go version through an env var (GO_VERSION)
instead of interpolating steps.setup-go.outputs.go-version directly into
shell scripts (script-injection hygiene); grant the dependency-review job
pull-requests: write so it can post its summary.
- parser.go: derive defaultBaseURL from riseHost instead of duplicating the
host string; drop the redundant per-const comments.
- .golangci.yml: remove the redundant go-version comment.
- regenerate internal/exporters/output.docx.
280 lines
8.8 KiB
Go
280 lines
8.8 KiB
Go
package exporters
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import (
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"bytes"
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"fmt"
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"os"
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"strings"
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"golang.org/x/text/cases"
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"golang.org/x/text/language"
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"github.com/kjanat/articulate-parser/internal/interfaces"
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"github.com/kjanat/articulate-parser/internal/models"
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"github.com/kjanat/articulate-parser/internal/services"
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)
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// MarkdownExporter implements the Exporter interface for Markdown format.
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// It converts Articulate Rise course data into a structured Markdown document.
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type MarkdownExporter struct {
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// htmlCleaner is used to convert HTML content to plain text
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htmlCleaner *services.HTMLCleaner
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}
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// NewMarkdownExporter creates a new MarkdownExporter instance.
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// It takes an HTMLCleaner to handle HTML content conversion.
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//
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// Parameters:
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// - htmlCleaner: Service for cleaning HTML content in course data
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//
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// Returns:
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// - An implementation of the Exporter interface for Markdown format
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func NewMarkdownExporter(htmlCleaner *services.HTMLCleaner) interfaces.Exporter {
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return &MarkdownExporter{
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htmlCleaner: htmlCleaner,
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}
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}
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// Export converts the course to Markdown format and writes it to the output path.
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func (e *MarkdownExporter) Export(course *models.Course, outputPath string) error {
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var buf bytes.Buffer
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// Write course header
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fmt.Fprintf(&buf, "# %s\n\n", course.Course.Title)
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if course.Course.Description != "" {
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fmt.Fprintf(&buf, "%s\n\n", e.htmlCleaner.CleanHTML(course.Course.Description))
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}
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// Add metadata
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buf.WriteString("## Course Information\n\n")
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fmt.Fprintf(&buf, "- **Course ID**: %s\n", course.Course.ID)
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fmt.Fprintf(&buf, "- **Share ID**: %s\n", course.ShareID)
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fmt.Fprintf(&buf, "- **Navigation Mode**: %s\n", course.Course.NavigationMode)
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if course.Course.ExportSettings != nil {
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fmt.Fprintf(&buf, "- **Export Format**: %s\n", course.Course.ExportSettings.Format)
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}
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buf.WriteString("\n---\n\n")
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// Process lessons
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lessonCounter := 0
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for _, lesson := range course.Course.Lessons {
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if lesson.Type == lessonTypeSection {
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fmt.Fprintf(&buf, "# %s\n\n", lesson.Title)
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continue
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}
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lessonCounter++
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fmt.Fprintf(&buf, "## Lesson %d: %s\n\n", lessonCounter, lesson.Title)
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if lesson.Description != "" {
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fmt.Fprintf(&buf, "%s\n\n", e.htmlCleaner.CleanHTML(lesson.Description))
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}
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// Process lesson items
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for _, item := range lesson.Items {
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e.processItemToMarkdown(&buf, item, 3)
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}
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buf.WriteString("\n---\n\n")
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}
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// #nosec G306 - 0644 is appropriate for export files that should be readable by others
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if err := os.WriteFile(outputPath, buf.Bytes(), 0o644); err != nil {
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return fmt.Errorf("failed to write markdown file: %w", err)
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}
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return nil
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}
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// SupportedFormat returns "markdown".
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func (e *MarkdownExporter) SupportedFormat() string {
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return FormatMarkdown
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}
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// processItemToMarkdown converts a course item into Markdown format.
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// The level parameter determines the heading level (number of # characters).
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func (e *MarkdownExporter) processItemToMarkdown(buf *bytes.Buffer, item models.Item, level int) {
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headingPrefix := strings.Repeat("#", level)
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// Normalize item type to lowercase for consistent matching
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itemType := strings.ToLower(item.Type)
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switch itemType {
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case itemTypeText:
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e.processTextItem(buf, item, headingPrefix)
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case itemTypeList:
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e.processListItem(buf, item)
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case itemTypeMultimedia:
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e.processMultimediaItem(buf, item, headingPrefix)
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case itemTypeImage:
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e.processImageItem(buf, item, headingPrefix)
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case itemTypeKnowledgeCheck:
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e.processKnowledgeCheckItem(buf, item, headingPrefix)
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case itemTypeInteractive:
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e.processInteractiveItem(buf, item, headingPrefix)
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case itemTypeDivider:
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e.processDividerItem(buf)
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default:
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e.processUnknownItem(buf, item, headingPrefix)
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}
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}
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// processTextItem handles text content with headings and paragraphs.
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func (e *MarkdownExporter) processTextItem(buf *bytes.Buffer, item models.Item, headingPrefix string) {
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for _, subItem := range item.Items {
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if subItem.Heading != "" {
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heading := e.htmlCleaner.CleanHTML(subItem.Heading)
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if heading != "" {
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fmt.Fprintf(buf, "%s %s\n\n", headingPrefix, heading)
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}
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}
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if subItem.Paragraph != "" {
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paragraph := e.htmlCleaner.CleanHTML(subItem.Paragraph)
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if paragraph != "" {
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fmt.Fprintf(buf, "%s\n\n", paragraph)
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}
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}
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}
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}
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// processListItem handles list items with bullet points.
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func (e *MarkdownExporter) processListItem(buf *bytes.Buffer, item models.Item) {
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for _, subItem := range item.Items {
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if subItem.Paragraph != "" {
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paragraph := e.htmlCleaner.CleanHTML(subItem.Paragraph)
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if paragraph != "" {
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fmt.Fprintf(buf, "- %s\n", paragraph)
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}
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}
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}
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buf.WriteString("\n")
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}
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// processMultimediaItem handles multimedia content including videos and images.
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func (e *MarkdownExporter) processMultimediaItem(buf *bytes.Buffer, item models.Item, headingPrefix string) {
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fmt.Fprintf(buf, "%s Media Content\n\n", headingPrefix)
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for _, subItem := range item.Items {
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e.processMediaSubItem(buf, subItem)
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}
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buf.WriteString("\n")
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}
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// processMediaSubItem processes individual media items (video/image).
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func (e *MarkdownExporter) processMediaSubItem(buf *bytes.Buffer, subItem models.SubItem) {
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if subItem.Media != nil {
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e.processVideoMedia(buf, subItem.Media)
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e.processImageMedia(buf, subItem.Media)
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}
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if subItem.Caption != "" {
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caption := e.htmlCleaner.CleanHTML(subItem.Caption)
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fmt.Fprintf(buf, "*%s*\n", caption)
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}
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}
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// processVideoMedia processes video media content.
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func (e *MarkdownExporter) processVideoMedia(buf *bytes.Buffer, media *models.Media) {
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if media.Video != nil {
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fmt.Fprintf(buf, "**Video**: %s\n", media.Video.OriginalURL)
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if media.Video.Duration > 0 {
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fmt.Fprintf(buf, "**Duration**: %d seconds\n", media.Video.Duration)
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}
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}
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}
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// processImageMedia processes image media content.
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func (e *MarkdownExporter) processImageMedia(buf *bytes.Buffer, media *models.Media) {
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if media.Image != nil {
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fmt.Fprintf(buf, "**Image**: %s\n", media.Image.OriginalURL)
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}
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}
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// processImageItem handles standalone image items.
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func (e *MarkdownExporter) processImageItem(buf *bytes.Buffer, item models.Item, headingPrefix string) {
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fmt.Fprintf(buf, "%s Image\n\n", headingPrefix)
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for _, subItem := range item.Items {
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if subItem.Media != nil && subItem.Media.Image != nil {
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fmt.Fprintf(buf, "**Image**: %s\n", subItem.Media.Image.OriginalURL)
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}
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if subItem.Caption != "" {
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caption := e.htmlCleaner.CleanHTML(subItem.Caption)
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fmt.Fprintf(buf, "*%s*\n", caption)
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}
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}
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buf.WriteString("\n")
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}
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// processKnowledgeCheckItem handles quiz questions and knowledge checks.
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func (e *MarkdownExporter) processKnowledgeCheckItem(buf *bytes.Buffer, item models.Item, headingPrefix string) {
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fmt.Fprintf(buf, "%s Knowledge Check\n\n", headingPrefix)
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for _, subItem := range item.Items {
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e.processQuestionSubItem(buf, subItem)
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}
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buf.WriteString("\n")
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}
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// processQuestionSubItem processes individual question items.
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func (e *MarkdownExporter) processQuestionSubItem(buf *bytes.Buffer, subItem models.SubItem) {
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if subItem.Title != "" {
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title := e.htmlCleaner.CleanHTML(subItem.Title)
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fmt.Fprintf(buf, "**Question**: %s\n\n", title)
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}
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e.processAnswers(buf, subItem.Answers)
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if subItem.Feedback != "" {
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feedback := e.htmlCleaner.CleanHTML(subItem.Feedback)
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fmt.Fprintf(buf, "\n**Feedback**: %s\n", feedback)
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}
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}
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// processAnswers processes answer choices for quiz questions.
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func (e *MarkdownExporter) processAnswers(buf *bytes.Buffer, answers []models.Answer) {
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buf.WriteString("**Answers**:\n")
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for i, answer := range answers {
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correctMark := ""
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if answer.Correct {
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correctMark = " ✓"
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}
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fmt.Fprintf(buf, "%d. %s%s\n", i+1, answer.Title, correctMark)
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}
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}
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// processInteractiveItem handles interactive content.
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func (e *MarkdownExporter) processInteractiveItem(buf *bytes.Buffer, item models.Item, headingPrefix string) {
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fmt.Fprintf(buf, "%s Interactive Content\n\n", headingPrefix)
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for _, subItem := range item.Items {
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if subItem.Title != "" {
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title := e.htmlCleaner.CleanHTML(subItem.Title)
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fmt.Fprintf(buf, "**%s**\n\n", title)
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}
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}
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}
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// processDividerItem handles divider elements.
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func (e *MarkdownExporter) processDividerItem(buf *bytes.Buffer) {
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buf.WriteString("---\n\n")
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}
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// processUnknownItem handles unknown or unsupported item types.
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func (e *MarkdownExporter) processUnknownItem(buf *bytes.Buffer, item models.Item, headingPrefix string) {
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if len(item.Items) > 0 {
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caser := cases.Title(language.English)
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fmt.Fprintf(buf, "%s %s Content\n\n", headingPrefix, caser.String(item.Type))
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for _, subItem := range item.Items {
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e.processGenericSubItem(buf, subItem)
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}
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}
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}
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// processGenericSubItem processes sub-items for unknown types.
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func (e *MarkdownExporter) processGenericSubItem(buf *bytes.Buffer, subItem models.SubItem) {
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if subItem.Title != "" {
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title := e.htmlCleaner.CleanHTML(subItem.Title)
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fmt.Fprintf(buf, "**%s**\n\n", title)
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}
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if subItem.Paragraph != "" {
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paragraph := e.htmlCleaner.CleanHTML(subItem.Paragraph)
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fmt.Fprintf(buf, "%s\n\n", paragraph)
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}
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}
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