use anyhow::{Context as _, Result}; use clap::Parser; use serde_json::{Value, json}; use std::fs; use std::path::{Path, PathBuf}; #[derive(Parser, Debug)] #[clap(about = "Generate HTML explorer from JSON thread files")] struct Args { /// Paths to JSON files or directories. If a directory is provided, /// it will be searched for 'last.messages.json' files up to 2 levels deep. #[clap(long, required = true, num_args = 1..)] input: Vec, /// Path where the output HTML file will be written #[clap(long)] output: PathBuf, } /// Recursively finds files with `target_filename` in `dir_path` up to `max_depth`. #[allow(dead_code)] fn find_target_files_recursive( dir_path: &Path, target_filename: &str, current_depth: u8, max_depth: u8, found_files: &mut Vec, ) -> Result<()> { if current_depth > max_depth { return Ok(()); } for entry_result in fs::read_dir(dir_path) .with_context(|| format!("Failed to read directory: {}", dir_path.display()))? { let entry = entry_result.with_context(|| { format!("Failed to read directory entry in: {}", dir_path.display()) })?; let path = entry.path(); if path.is_dir() { find_target_files_recursive( &path, target_filename, current_depth + 1, max_depth, found_files, )?; } else if path.is_file() { if let Some(filename_osstr) = path.file_name() { if let Some(filename_str) = filename_osstr.to_str() { if filename_str == target_filename { found_files.push(path); } } } } } Ok(()) } pub fn generate_explorer_html(input_paths: &[PathBuf], output_path: &PathBuf) -> Result { if let Some(parent) = output_path.parent() { if !parent.exists() { fs::create_dir_all(parent).context(format!( "Failed to create output directory: {}", parent.display() ))?; } } let template_path = PathBuf::from(env!("CARGO_MANIFEST_DIR")).join("src/explorer.html"); let template_content = fs::read_to_string(&template_path).context(format!( "Template file not found or couldn't be read: {}", template_path.display() ))?; if input_paths.is_empty() { println!( "No input JSON files found to process. Explorer will be generated with template defaults or empty data." ); } let threads = input_paths .iter() .map(|input_path| { let file_content = fs::read_to_string(input_path) .context(format!("Failed to read file: {}", input_path.display()))?; let mut thread_data: Value = file_content .parse::() .context(format!("Failed to parse JSON from file: {}", input_path.display()))?; if let Some(obj) = thread_data.as_object_mut() { obj.insert("filename".to_string(), json!(input_path.display().to_string())); } else { eprintln!("Warning: JSON data in {} is not a root object. Wrapping it to include filename.", input_path.display()); thread_data = json!({ "original_data": thread_data, "filename": input_path.display().to_string() }); } Ok(thread_data) }) .collect::>>()?; let all_threads_data = json!({ "threads": threads }); let html_content = inject_thread_data(template_content, all_threads_data)?; fs::write(&output_path, &html_content) .context(format!("Failed to write output: {}", output_path.display()))?; println!( "Saved data from {} resolved file(s) ({} threads) to {}", input_paths.len(), threads.len(), output_path.display() ); Ok(html_content) } fn inject_thread_data(template: String, threads_data: Value) -> Result { let injection_marker = "let threadsData = window.threadsData || { threads: [dummyThread] };"; if !template.contains(injection_marker) { anyhow::bail!( "Could not find the thread injection point in the template. Expected: '{}'", injection_marker ); } let threads_json_string = serde_json::to_string_pretty(&threads_data) .context("Failed to serialize threads data to JSON")? .replace("", r"<\/script>"); let script_injection = format!("let threadsData = {};", threads_json_string); let final_html = template.replacen(injection_marker, &script_injection, 1); Ok(final_html) } #[cfg(not(any(test, doctest)))] #[allow(dead_code)] fn main() -> Result<()> { let args = Args::parse(); const DEFAULT_FILENAME: &str = "last.messages.json"; const MAX_SEARCH_DEPTH: u8 = 2; let mut resolved_input_files: Vec = Vec::new(); for input_path_arg in &args.input { if !input_path_arg.exists() { eprintln!( "Warning: Input path {} does not exist. Skipping.", input_path_arg.display() ); continue; } if input_path_arg.is_dir() { find_target_files_recursive( input_path_arg, DEFAULT_FILENAME, 0, // starting depth MAX_SEARCH_DEPTH, &mut resolved_input_files, ) .with_context(|| { format!( "Error searching for '{}' files in directory: {}", DEFAULT_FILENAME, input_path_arg.display() ) })?; } else if input_path_arg.is_file() { resolved_input_files.push(input_path_arg.clone()); } } resolved_input_files.sort_unstable(); resolved_input_files.dedup(); println!("No input paths provided/found."); generate_explorer_html(&resolved_input_files, &args.output).map(|_| ()) }