mirror of
https://github.com/lukaszraczylo/filepuff-mcp.git
synced 2026-06-10 22:59:01 +00:00
272 lines
8.2 KiB
Go
272 lines
8.2 KiB
Go
// Package server implements the MCP server for file operations.
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package server
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import (
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"bufio"
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"context"
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"fmt"
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"os"
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"strings"
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"time"
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xxhash "github.com/cespare/xxhash/v2"
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"github.com/lukaszraczylo/mcp-filepuff/internal/parser"
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"github.com/lukaszraczylo/mcp-filepuff/internal/search"
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"github.com/lukaszraczylo/mcp-filepuff/pkg/errors"
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"github.com/lukaszraczylo/mcp-filepuff/pkg/protocol"
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"github.com/mark3labs/mcp-go/mcp"
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)
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// handleFileSearch handles the file_search tool.
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func (s *Server) handleFileSearch(ctx context.Context, request mcp.CallToolRequest) (*mcp.CallToolResult, error) {
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start := time.Now()
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defer func() {
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s.logger.Debug("file_search completed",
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"duration_ms", time.Since(start).Milliseconds(),
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)
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}()
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if s.searcher == nil {
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return mcp.NewToolResultError("ripgrep (rg) is not available. Please install it: https://github.com/BurntSushi/ripgrep#installation"), nil
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}
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pattern, err := request.RequireString("pattern")
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if err != nil {
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return mcp.NewToolResultError("pattern is required"), nil
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}
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req := &search.Request{
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Pattern: pattern,
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Paths: request.GetStringSlice("paths", nil),
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FileTypes: request.GetStringSlice("file_types", nil),
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IgnoreCase: request.GetBool("ignore_case", false),
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Regex: request.GetBool("regex", true),
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ContextLines: request.GetInt("context_lines", 2),
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MaxResults: request.GetInt("max_results", 0),
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}
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results, err := s.searcher.Search(ctx, req)
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if err != nil {
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s.logger.Warn("search error", "error", err)
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return mcp.NewToolResultError(fmt.Sprintf("search error: %s", errors.SanitizeError(err))), nil
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}
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s.logger.Info("search completed",
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"pattern", pattern,
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"results_count", len(results.Results),
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"truncated", results.Truncated,
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)
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output := s.searcher.FormatResults(results)
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return mcp.NewToolResultText(output), nil
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}
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// handleFileRead handles the file_read tool.
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func (s *Server) handleFileRead(ctx context.Context, request mcp.CallToolRequest) (*mcp.CallToolResult, error) {
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select {
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case s.readSem <- struct{}{}:
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defer func() { <-s.readSem }()
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case <-ctx.Done():
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return mcp.NewToolResultError("request cancelled"), nil
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}
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// Batch mode: paths[] takes precedence over path
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if paths := request.GetStringSlice("paths", nil); len(paths) > 0 {
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var output strings.Builder
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for i, p := range paths {
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if i > 0 {
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output.WriteString("\n")
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}
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result, err := s.readOneFile(ctx, request, p)
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if err != nil {
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output.WriteString(fmt.Sprintf("--- %s ---\n[error: %s]\n", p, errors.SanitizeError(err)))
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continue
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}
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output.WriteString(fmt.Sprintf("--- %s ---\n%s", p, result))
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}
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return mcp.NewToolResultText(output.String()), nil
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}
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path := request.GetString("path", "")
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if path == "" {
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return mcp.NewToolResultError("path or paths is required"), nil
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}
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result, err := s.readOneFile(ctx, request, path)
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if err != nil {
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return mcp.NewToolResultError(errors.SanitizeError(err)), nil
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}
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return mcp.NewToolResultText(result), nil
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}
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// readOneFile reads a single file applying all formatting options from the request.
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func (s *Server) readOneFile(ctx context.Context, request mcp.CallToolRequest, path string) (string, error) {
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if !s.cfg.IsPathAllowed(path) {
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return "", fmt.Errorf("path is outside workspace root")
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}
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info, err := os.Stat(path)
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if err != nil {
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if os.IsNotExist(err) {
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return "", fmt.Errorf("file not found: %s", path)
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}
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if os.IsPermission(err) {
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return "", fmt.Errorf("permission denied: %s", path)
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}
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s.logger.Warn("file stat error", "path", path, "error", err)
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return "", fmt.Errorf("error accessing file")
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}
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if info.Size() > s.cfg.MaxFileSize {
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return "", fmt.Errorf("file too large (%d bytes, max %d)", info.Size(), s.cfg.MaxFileSize)
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}
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content, err := os.ReadFile(path)
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if err != nil {
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if os.IsPermission(err) {
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return "", fmt.Errorf("permission denied: %s", path)
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}
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s.logger.Warn("file read error", "path", path, "error", err)
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return "", fmt.Errorf("error reading file")
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}
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// Compute etag from content hash
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etag := fmt.Sprintf("%016x", xxhash.Sum64(content))
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// Short-circuit if caller has the current version
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if prev := request.GetString("previous_etag", ""); prev != "" && prev == etag {
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return fmt.Sprintf("[unchanged, etag: %s]\n", etag), nil
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}
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// Parse request options
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includeAST := request.GetBool("include_ast", false)
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symbolsOnly := request.GetBool("symbols_only", false)
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symbolName := request.GetString("symbol_name", "")
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noLineNumbers := request.GetBool("no_line_numbers", false)
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lineInterval := request.GetInt("line_number_interval", 1)
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collapseBlank := request.GetBool("collapse_blank_lines", false)
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maxLines := request.GetInt("max_lines", 0)
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if lineInterval == 0 {
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noLineNumbers = true
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}
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if symbolsOnly && !includeAST {
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return "", fmt.Errorf("symbols_only requires include_ast=true")
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}
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lines := splitLines(string(content))
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lineStart := request.GetInt("line_start", 1)
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lineEnd := request.GetInt("line_end", len(lines))
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// Symbol-based line range: find the symbol and use its exact bounds
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if symbolName != "" {
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symbolKind := protocol.SymbolKind(request.GetString("symbol_kind", ""))
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start, end, found := s.resolveSymbolLines(ctx, path, content, symbolName, symbolKind)
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if !found {
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return "", fmt.Errorf("symbol %q not found in %s", symbolName, path)
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}
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lineStart = start
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lineEnd = end
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}
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// Clamp to valid range
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if lineStart < 1 {
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lineStart = 1
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}
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if lineEnd > len(lines) {
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lineEnd = len(lines)
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}
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if lineStart > lineEnd {
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lineStart = lineEnd
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}
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var output strings.Builder
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if includeAST {
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if summary := s.generateASTSummary(ctx, path, content); summary != "" {
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output.WriteString(summary)
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if !symbolsOnly {
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output.WriteString("\n---\n\n")
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}
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}
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}
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if symbolsOnly {
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output.WriteString(fmt.Sprintf("[etag: %s]\n", etag))
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return output.String(), nil
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}
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writeLines(&output, lines, lineStart, lineEnd, maxLines, noLineNumbers, lineInterval, collapseBlank)
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output.WriteString(fmt.Sprintf("[etag: %s]\n", etag))
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return output.String(), nil
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}
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// resolveSymbolLines parses the AST and returns the line range of the named symbol.
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// symbolKind optionally filters by kind (empty = any).
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func (s *Server) resolveSymbolLines(ctx context.Context, path string, content []byte, symbolName string, symbolKind protocol.SymbolKind) (startLine, endLine int, found bool) {
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result, err := s.parser.Parse(ctx, path, content)
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if err != nil {
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return
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}
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return parser.FindSymbolRange(result.Tree, content, path, symbolName, symbolKind)
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}
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// writeLines writes the selected line range into output, applying all formatting options.
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func writeLines(output *strings.Builder, lines []string, lineStart, lineEnd, maxLines int, noLineNumbers bool, lineInterval int, collapseBlank bool) {
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effectiveEnd := lineEnd
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truncatedCount := 0
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if maxLines > 0 && (lineEnd-lineStart+1) > maxLines {
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effectiveEnd = lineStart + maxLines - 1
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truncatedCount = lineEnd - effectiveEnd
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}
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prevBlank := false
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for i := lineStart - 1; i < effectiveEnd && i < len(lines); i++ {
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line := lines[i]
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isBlank := strings.TrimSpace(line) == ""
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if collapseBlank && isBlank && prevBlank {
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continue
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}
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prevBlank = isBlank
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lineNum := i + 1
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switch {
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case noLineNumbers:
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output.WriteString(line + "\n")
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case lineInterval <= 1 || lineNum%lineInterval == 0 || i == lineStart-1 || i == effectiveEnd-1:
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fmt.Fprintf(output, "%4d│ %s\n", lineNum, line)
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default:
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fmt.Fprintf(output, " │ %s\n", line)
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}
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}
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if truncatedCount > 0 {
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fmt.Fprintf(output, "\n[... %d more lines omitted. Use line_start/line_end or increase max_lines to see more]\n", truncatedCount)
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}
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}
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// splitLines splits a string into lines.
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// For large files (> 1MB), uses bufio.Scanner which is more memory efficient.
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// For smaller files, uses simple string split which is faster.
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func splitLines(s string) []string {
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const largeSizeThreshold = 1024 * 1024 // 1MB
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if len(s) > largeSizeThreshold {
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scanner := bufio.NewScanner(strings.NewReader(s))
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scanner.Buffer(make([]byte, 0, bufio.MaxScanTokenSize), 1024*1024)
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var lines []string
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for scanner.Scan() {
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lines = append(lines, scanner.Text())
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}
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if err := scanner.Err(); err != nil {
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return strings.Split(s, "\n")
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}
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if len(s) > 0 && s[len(s)-1] == '\n' {
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lines = append(lines, "")
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}
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return lines
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}
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return strings.Split(s, "\n")
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}
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