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euv_cli/build/
fn.rs

1use super::*;
2
3/// Checks whether `wasm_pack_args` already contains a build mode flag.
4///
5/// Returns `true` if any of `--dev`, `--release`, or `--profiling`
6/// is present in the arguments list.
7///
8/// # Arguments
9///
10/// - `&[String]` - The wasm-pack arguments to search.
11///
12/// # Returns
13///
14/// - `bool` - Whether a build mode flag is already present.
15pub fn has_build_mode_flag(wasm_pack_args: &[String]) -> bool {
16    wasm_pack_args
17        .iter()
18        .any(|arg: &String| arg == DEV_FLAG || arg == RELEASE_FLAG || arg == PROFILING_FLAG)
19}
20
21/// Filters out euv-specific arguments from the wasm-pack arguments.
22///
23/// First locates the genuine passthrough arguments by taking everything
24/// after the last `--` separator (or the full list if no `--` is present).
25/// Then removes all known euv-specific flags and their values so that
26/// only wasm-pack-compatible arguments remain.
27///
28/// # Arguments
29///
30/// - `&[String]` - The raw wasm-pack arguments to filter.
31///
32/// # Returns
33///
34/// - `Vec<String>` - The filtered arguments safe for wasm-pack.
35pub fn filter_euv_args(wasm_pack_args: &[String]) -> Vec<String> {
36    let raw_args: &[String] = if let Some(position) = wasm_pack_args
37        .iter()
38        .rposition(|arg: &String| arg == DOUBLE_DASH)
39    {
40        &wasm_pack_args[position + 1..]
41    } else {
42        wasm_pack_args
43    };
44    let mut filtered: Vec<String> = Vec::new();
45    let mut skip_next: bool = false;
46    for arg in raw_args {
47        if skip_next {
48            skip_next = false;
49            continue;
50        }
51        if EUV_ARGS.contains(&arg.as_str()) {
52            if arg.contains('=') {
53                continue;
54            }
55            skip_next = true;
56            continue;
57        }
58        filtered.push(arg.clone());
59    }
60    filtered
61}
62
63/// Reconciles euv-specific arguments that may have been collected into
64/// `wasm_pack_args` (e.g. when placed after `--`) back into the
65/// corresponding `ModeArgs` fields.
66///
67/// Because clap's `trailing_var_arg` collects all unrecognized arguments
68/// into `wasm_pack_args`, any euv flag placed after `--` is not parsed
69/// by clap into its dedicated field. This function scans `wasm_pack_args`
70/// for known euv flags and overwrites the `ModeArgs` fields so that the
71/// rest of the codebase can rely on the typed accessors regardless of
72/// argument order.
73///
74/// # Arguments
75///
76/// - `&mut ModeArgs` - The CLI arguments to reconcile in-place.
77pub fn reconcile_args(args: &mut ModeArgs) {
78    let wasm_pack_args: Vec<String> = args.get_wasm_pack_args().clone();
79    let mut crate_path: Option<PathBuf> = None;
80    let mut port: Option<u16> = None;
81    let mut www_dir: Option<String> = None;
82    let mut index_html: Option<Option<PathBuf>> = None;
83    let mut no_gitignore: Option<bool> = None;
84    let mut dev: Option<bool> = None;
85    let mut release: Option<bool> = None;
86    let mut profiling: Option<bool> = None;
87    let mut iter: Iter<String> = wasm_pack_args.iter();
88    while let Some(arg) = iter.next() {
89        match arg.as_str() {
90            CRATE_PATH_ARG | CRATE_PATH_ARG_SHORT => {
91                if let Some(value) = iter.next() {
92                    crate_path = Some(PathBuf::from(value));
93                }
94            }
95            PORT_ARG | PORT_ARG_SHORT => {
96                if let Some(value) = iter.next()
97                    && let Ok(parsed_port) = value.parse::<u16>()
98                {
99                    port = Some(parsed_port);
100                }
101            }
102            WWW_DIR_ARG => {
103                if let Some(value) = iter.next() {
104                    www_dir = Some(value.clone());
105                }
106            }
107            INDEX_HTML_ARG => {
108                if let Some(value) = iter.next() {
109                    index_html = Some(Some(PathBuf::from(value)));
110                }
111            }
112            NO_GITIGNORE_ARG => {
113                no_gitignore = Some(true);
114            }
115            DEV_FLAG => {
116                dev = Some(true);
117            }
118            RELEASE_FLAG => {
119                release = Some(true);
120            }
121            PROFILING_FLAG => {
122                profiling = Some(true);
123            }
124            other => {
125                if let Some(value) = other.strip_prefix(&format!("{CRATE_PATH_ARG}=")) {
126                    crate_path = Some(PathBuf::from(value));
127                } else if let Some(value) = other.strip_prefix(&format!("{PORT_ARG}=")) {
128                    if let Ok(parsed_port) = value.parse::<u16>() {
129                        port = Some(parsed_port);
130                    }
131                } else if let Some(value) = other.strip_prefix(&format!("{WWW_DIR_ARG}=")) {
132                    www_dir = Some(value.to_string());
133                } else if let Some(value) = other.strip_prefix(&format!("{INDEX_HTML_ARG}=")) {
134                    index_html = Some(Some(PathBuf::from(value)));
135                }
136            }
137        }
138    }
139    if let Some(value) = crate_path {
140        args.set_crate_path(value);
141    }
142    if let Some(value) = port {
143        args.set_port(value);
144    }
145    if let Some(value) = www_dir {
146        args.set_www_dir(value);
147    }
148    if let Some(value) = index_html {
149        args.set_index_html(value);
150    }
151    if let Some(value) = no_gitignore {
152        args.set_no_gitignore(value);
153    }
154    if let Some(value) = dev {
155        args.set_dev(value);
156    }
157    if let Some(value) = release {
158        args.set_release(value);
159    }
160    if let Some(value) = profiling {
161        args.set_profiling(value);
162    }
163}
164
165/// Resolves the build mode from CLI arguments.
166///
167/// First checks the explicit `--dev`, `--release`, and `--profiling` flags on `ModeArgs`.
168/// If none of those are set, inspects `wasm_pack_args` for any build mode flag
169/// that may have been forwarded by the user.
170/// Defaults to `BuildMode::Dev` if no build mode flag is found anywhere.
171///
172/// # Arguments
173///
174/// - `&ModeArgs` - The CLI arguments containing the build mode flags and wasm_pack_args.
175///
176/// # Returns
177///
178/// - `BuildMode` - The resolved build mode.
179pub fn resolve_build_mode(args: &ModeArgs) -> BuildMode {
180    if args.get_profiling() {
181        BuildMode::Profiling
182    } else if args.get_release() {
183        BuildMode::Release
184    } else if args.get_dev() {
185        BuildMode::Dev
186    } else if args
187        .get_wasm_pack_args()
188        .iter()
189        .any(|arg: &String| arg == PROFILING_FLAG)
190    {
191        BuildMode::Profiling
192    } else if args
193        .get_wasm_pack_args()
194        .iter()
195        .any(|arg: &String| arg == RELEASE_FLAG)
196    {
197        BuildMode::Release
198    } else {
199        BuildMode::Dev
200    }
201}
202
203/// Converts a `BuildMode` to the corresponding wasm-pack flag string.
204///
205/// # Arguments
206///
207/// - `BuildMode` - The build mode to convert.
208///
209/// # Returns
210///
211/// - `&'static str` - The wasm-pack command-line flag.
212pub fn build_mode_to_flag(build_mode: BuildMode) -> &'static str {
213    match build_mode {
214        BuildMode::Dev => DEV_FLAG,
215        BuildMode::Release => RELEASE_FLAG,
216        BuildMode::Profiling => PROFILING_FLAG,
217    }
218}
219
220/// Builds a `Gitignore` matcher from the `.gitignore` file at the given root path.
221///
222/// # Arguments
223///
224/// - `&PathBuf` - The root directory where `.gitignore` is located.
225///
226/// # Returns
227///
228/// - `Gitignore` - The compiled gitignore matcher.
229async fn build_gitignore(root: &PathBuf) -> Gitignore {
230    let gitignore_path: PathBuf = root.join(GITIGNORE_FILE_NAME);
231    let mut builder: GitignoreBuilder = GitignoreBuilder::new(root);
232    let gitignore_exists: bool = metadata(&gitignore_path).await.is_ok();
233    if gitignore_exists && let Some(error) = builder.add(&gitignore_path) {
234        log::warn!("Failed to load .gitignore: {error}");
235    }
236    match builder.build() {
237        Ok(gitignore) => {
238            if gitignore_exists {
239                log::info!("Loaded .gitignore to filter file change events");
240            }
241            gitignore
242        }
243        Err(error) => {
244            log::warn!("Failed to build gitignore matcher: {error}");
245            GitignoreBuilder::new(root)
246                .build()
247                .unwrap_or_else(|_error: ignore::Error| Gitignore::empty())
248        }
249    }
250}
251
252/// Extracts the value of `--out-name` from the wasm-pack arguments.
253///
254/// Returns `None` if `--out-name` is not specified.
255///
256/// # Arguments
257///
258/// - `&[String]` - The wasm-pack arguments to search.
259///
260/// # Returns
261///
262/// - `Option<String>` - The value of `--out-name` if found.
263fn extract_out_name(wasm_pack_args: &[String]) -> Option<String> {
264    let mut iter: Iter<'_, String> = wasm_pack_args.iter();
265    while let Some(arg) = iter.next() {
266        if arg == OUT_NAME_ARG {
267            return iter.next().cloned();
268        }
269        if let Some(value) = arg.strip_prefix(&format!("{OUT_NAME_ARG}=")) {
270            return Some(value.to_string());
271        }
272    }
273    None
274}
275
276/// Extracts the value of `--out-dir` from the wasm-pack arguments.
277///
278/// Returns `None` if `--out-dir` is not specified.
279///
280/// # Arguments
281///
282/// - `&[String]` - The wasm-pack arguments to search.
283///
284/// # Returns
285///
286/// - `Option<String>` - The value of `--out-dir` if found.
287fn extract_out_dir(wasm_pack_args: &[String]) -> Option<String> {
288    let mut iter: Iter<'_, String> = wasm_pack_args.iter();
289    while let Some(arg) = iter.next() {
290        if arg == OUT_DIR_ARG {
291            return iter.next().cloned();
292        }
293        if let Some(value) = arg.strip_prefix(&format!("{OUT_DIR_ARG}=")) {
294            return Some(value.to_string());
295        }
296    }
297    None
298}
299
300/// Resolves the output JS filename for HTML generation.
301///
302/// Uses `--out-name` from wasm-pack args if specified,
303/// otherwise reads the crate name from `Cargo.toml` `[package] name` field
304/// and replaces hyphens with underscores (matching wasm-pack behavior).
305/// Appends `.js` extension to form the complete JS filename.
306///
307/// # Arguments
308///
309/// - `&ModeArgs` - The CLI arguments containing crate_path and wasm_pack_args.
310///
311/// # Returns
312///
313/// - `String` - The resolved JS filename with `.js` extension (e.g. `euv_example.js`).
314pub fn resolve_out_name(args: &ModeArgs) -> String {
315    let name: String = if let Some(out_name) = extract_out_name(args.get_wasm_pack_args()) {
316        out_name.replace(STR_HYPHEN, STR_UNDERSCORE)
317    } else {
318        let cargo_toml_path: PathBuf = args.get_crate_path().join(CARGO_TOML_FILE_NAME);
319        read_crate_name_from_toml(&cargo_toml_path)
320            .unwrap_or_else(|| {
321                args.get_crate_path()
322                    .file_name()
323                    .unwrap_or_default()
324                    .to_string_lossy()
325                    .to_string()
326            })
327            .replace(STR_HYPHEN, STR_UNDERSCORE)
328    };
329    format!("{name}{JS_EXTENSION}")
330}
331
332/// Reads the `name` field from a Cargo.toml file.
333///
334/// Parses the file line-by-line looking for `name = "..."` within the `[package]` section.
335///
336/// # Arguments
337///
338/// - `&Path` - The path to the Cargo.toml file.
339///
340/// # Returns
341///
342/// - `Option<String>` - The crate name if found.
343fn read_crate_name_from_toml(path: &Path) -> Option<String> {
344    let content: String = std::fs::read_to_string(path).ok()?;
345    let mut in_package: bool = false;
346    for line in content.lines() {
347        let trimmed: &str = line.trim();
348        if trimmed.starts_with('[') {
349            in_package = trimmed == "[package]";
350            continue;
351        }
352        if in_package
353            && trimmed.starts_with("name")
354            && let Some(value) = trimmed.strip_prefix("name")
355        {
356            let value: &str = value.trim().strip_prefix('=')?.trim();
357            let value: &str = value.strip_prefix('"')?.strip_suffix('"')?;
358            return Some(value.to_string());
359        }
360    }
361    None
362}
363
364/// Computes the relative path from a base directory to a target directory.
365///
366/// Compares the component sequences of both paths to find the common prefix,
367/// then emits `..` for each remaining base component followed by the remaining
368/// target components.
369///
370/// # Arguments
371///
372/// - `&Path` - The base directory path.
373/// - `&Path` - The target directory path.
374///
375/// # Returns
376///
377/// - `PathBuf` - The relative path from base to target.
378fn compute_relative_path(base: &Path, target: &Path) -> PathBuf {
379    let base_components: Vec<Component> = base.components().collect();
380    let target_components: Vec<Component> = target.components().collect();
381    let common_len: usize = base_components
382        .iter()
383        .zip(target_components.iter())
384        .take_while(
385            |(base_component, target_component): &(&Component, &Component)| {
386                base_component == target_component
387            },
388        )
389        .count();
390    let mut result: PathBuf = PathBuf::new();
391    for _ in &base_components[common_len..] {
392        result.push("..");
393    }
394    for component in &target_components[common_len..] {
395        if let Component::Normal(os_str) = component {
396            result.push(os_str);
397        }
398    }
399    result
400}
401
402/// Resolves the serving root directory for the development server.
403///
404/// When the output directory is inside the www directory, returns the resolved www directory.
405/// When the output directory is outside the www directory, returns the parent of the output directory
406/// so that `index.html` and WASM artifacts are co-located under the same serving root.
407///
408/// # Arguments
409///
410/// - `&ModeArgs` - The CLI arguments containing crate_path, www_dir, wasm_pack_args.
411///
412/// # Returns
413///
414/// - `PathBuf` - The resolved serving root directory.
415pub async fn resolve_serving_root(args: &ModeArgs) -> PathBuf {
416    let www_absolute: PathBuf = args.get_crate_path().join(args.get_www_dir());
417    let out_dir_absolute: PathBuf = resolve_out_dir(args);
418    if out_dir_absolute.strip_prefix(&www_absolute).is_ok() {
419        resolve_www_dir(&www_absolute).await
420    } else {
421        out_dir_absolute
422            .parent()
423            .map(|p: &Path| p.to_path_buf())
424            .unwrap_or_else(|| www_absolute)
425    }
426}
427
428/// Resolves the serving route prefix relative to the crate path.
429///
430/// Returns the forward-slash-separated path of the serving root relative to the crate path.
431/// Used for server route registration and URL display.
432///
433/// # Arguments
434///
435/// - `&ModeArgs` - The CLI arguments containing crate_path, www_dir, wasm_pack_args.
436///
437/// # Returns
438///
439/// - `String` - The serving route prefix (e.g. `www` or `wwws`).
440pub fn resolve_serving_route_prefix(args: &ModeArgs) -> String {
441    let www_absolute: PathBuf = args.get_crate_path().join(args.get_www_dir());
442    let out_dir_absolute: PathBuf = resolve_out_dir(args);
443    let serving_root: PathBuf = if out_dir_absolute.strip_prefix(&www_absolute).is_ok() {
444        www_absolute
445    } else {
446        out_dir_absolute
447            .parent()
448            .map(|p: &Path| p.to_path_buf())
449            .unwrap_or_else(|| www_absolute)
450    };
451    serving_root
452        .strip_prefix(args.get_crate_path())
453        .map(|rel: &Path| {
454            rel.to_string_lossy()
455                .replace(CHAR_SLASH_BACK, STR_SLASH_FORWARD)
456        })
457        .unwrap_or_else(|_| {
458            args.get_www_dir()
459                .replace(CHAR_SLASH_BACK, STR_SLASH_FORWARD)
460        })
461}
462
463/// Resolves the JS import path for HTML generation.
464///
465/// Computes the relative path from the serving root to the output directory,
466/// then appends the JS filename (from `resolve_out_name`, which includes `.js`)
467/// to form the full import path (e.g. `./pkg/euv.js` or `./pksg/cc.js`).
468///
469/// # Arguments
470///
471/// - `&ModeArgs` - The CLI arguments containing crate_path, www_dir, wasm_pack_args.
472///
473/// # Returns
474///
475/// - `String` - The resolved JS import path relative to the serving root.
476pub fn resolve_import_path(args: &ModeArgs) -> String {
477    let out_name: String = resolve_out_name(args);
478    let www_absolute: PathBuf = args.get_crate_path().join(args.get_www_dir());
479    let out_dir_absolute: PathBuf = resolve_out_dir(args);
480    let serving_root: PathBuf = if out_dir_absolute.strip_prefix(&www_absolute).is_ok() {
481        www_absolute
482    } else {
483        out_dir_absolute
484            .parent()
485            .map(|p: &Path| p.to_path_buf())
486            .unwrap_or_else(|| www_absolute)
487    };
488    let relative: PathBuf = compute_relative_path(&serving_root, &out_dir_absolute);
489    let mut components: Vec<String> = relative
490        .components()
491        .filter_map(|component: Component| match component {
492            Component::Normal(os_str) => os_str.to_str().map(|text: &str| text.to_string()),
493            Component::ParentDir => Some(PARENT_DIR.to_string()),
494            _ => None,
495        })
496        .collect();
497    components.push(out_name);
498    format!("{RELATIVE_PATH_PREFIX}{}", components.join(PATH_SEPARATOR))
499}
500
501/// Resolves the output directory for wasm-pack artifacts.
502///
503/// Uses `--out-dir` from wasm-pack args if specified,
504/// otherwise defaults to `{www_dir}/pkg` so that build artifacts
505/// are placed directly inside the www directory served
506/// by the development server.
507///
508/// # Arguments
509///
510/// - `&ModeArgs` - The CLI arguments containing crate_path, www_dir, and wasm_pack_args.
511///
512/// # Returns
513///
514/// - `PathBuf` - The resolved output directory (absolute if crate_path is joined).
515pub fn resolve_out_dir(args: &ModeArgs) -> PathBuf {
516    let out_dir_path: PathBuf = PathBuf::from(
517        extract_out_dir(args.get_wasm_pack_args())
518            .unwrap_or_else(|| format!("{}/{PKG_DIR_NAME}", args.get_www_dir())),
519    );
520    if out_dir_path.is_absolute() {
521        out_dir_path
522    } else {
523        args.get_crate_path().join(&out_dir_path)
524    }
525}
526
527/// Executes a build-only pipeline: formats euv macros, cleans output directory,
528/// builds WASM, and generates HTML.
529///
530/// Unlike `run_build_pipeline`, this cleans the output directory before building
531/// and skips reload notifications — only the essential WASM build artifacts are kept.
532///
533/// # Arguments
534///
535/// - `&ModeArgs` - The CLI arguments.
536///
537/// # Returns
538///
539/// - `Result<(), EuvError>` - Indicates success or failure of the build.
540pub async fn run_build_only_pipeline(args: &ModeArgs) -> Result<(), EuvError> {
541    let src_path: PathBuf = args.get_crate_path().join(SRC_DIR_NAME);
542    if let Err(error) = format_dir(&src_path, FmtMode::Write).await {
543        log::warn!("euv fmt error: {error}");
544    }
545    let out_dir: PathBuf = resolve_out_dir(args);
546    clean_out_dir(&out_dir).await;
547    build_wasm(args).await?;
548    log::info!("WASM build completed successfully");
549    let html_config: HtmlConfig = HtmlConfig::new(
550        resolve_serving_root(args).await,
551        resolve_import_path(args),
552        resolve_build_mode(args) == BuildMode::Release,
553        args.try_get_index_html().clone(),
554        false,
555    );
556    generate_html(&html_config).await?;
557    Ok(())
558}
559
560/// Cleans the output directory before a fresh build.
561///
562/// Removes all files and subdirectories within the output directory
563/// so that stale artifacts from previous builds do not remain.
564/// The directory itself is preserved (recreated if missing).
565///
566/// # Arguments
567///
568/// - `&Path` - The output directory to clean.
569pub async fn clean_out_dir(out_dir: &Path) {
570    let mut entries: ReadDir = match read_dir(out_dir).await {
571        Ok(dir) => dir,
572        Err(_) => return,
573    };
574    while let Ok(Some(entry)) = entries.next_entry().await {
575        let path: PathBuf = entry.path();
576        if path.is_dir() {
577            if let Err(error) = remove_dir_all(&path).await {
578                log::warn!("Failed to remove directory '{}': {error}", path.display());
579            }
580        } else if let Err(error) = remove_file(&path).await {
581            log::warn!("Failed to remove file '{}': {error}", path.display());
582        }
583    }
584}
585
586/// Executes a full build pipeline: euv fmt, build wasm, generate HTML.
587/// Notifies the reload channel on build success or failure.
588///
589/// # Arguments
590///
591/// - `&ModeArgs` - The CLI arguments.
592/// - `Option<&broadcast::Sender<ReloadEvent>>` - Optional reload channel for notifying clients.
593///
594/// # Returns
595///
596/// - `Result<String, EuvError>` - The generated HTML with reload script injected on success.
597pub async fn run_build_pipeline(
598    args: &ModeArgs,
599    reload_tx: Option<&broadcast::Sender<ReloadEvent>>,
600) -> Result<String, EuvError> {
601    let src_path: PathBuf = args.get_crate_path().join(SRC_DIR_NAME);
602    if let Err(error) = format_dir(&src_path, FmtMode::Write).await {
603        log::warn!("euv fmt error: {error}");
604    }
605    match build_wasm(args).await {
606        Ok(()) => {
607            log::info!("WASM build completed successfully");
608            if let Some(sender) = reload_tx {
609                let _: Result<usize, tokio::sync::broadcast::error::SendError<ReloadEvent>> =
610                    sender.send(ReloadEvent::Reload);
611            }
612        }
613        Err(error) => {
614            log::error!("WASM build failed: {error}");
615            if let Some(sender) = reload_tx {
616                let _: Result<usize, tokio::sync::broadcast::error::SendError<ReloadEvent>> =
617                    sender.send(ReloadEvent::Error(error.to_string()));
618            }
619        }
620    }
621    let html_config: HtmlConfig = HtmlConfig::new(
622        resolve_serving_root(args).await,
623        resolve_import_path(args),
624        resolve_build_mode(args) == BuildMode::Release,
625        args.try_get_index_html().clone(),
626        true,
627    );
628    let html: String = generate_html(&html_config).await?;
629    Ok(html)
630}
631
632/// Watches source files and triggers WASM builds.
633///
634/// # Arguments
635///
636/// - `Arc<AppState>` - The shared application state.
637///
638/// # Returns
639///
640/// - `Result<(), EuvError>` - Indicates success or failure of the file watcher.
641pub(crate) async fn watch_and_build(state: Arc<AppState>) -> Result<(), EuvError> {
642    let crate_path: PathBuf = state.get_args().get_crate_path().clone();
643    let src_path: PathBuf = crate_path.join(SRC_DIR_NAME);
644    let gitignore: Gitignore = build_gitignore(&crate_path).await;
645    let (tx, mut rx): (Sender<Event>, Receiver<Event>) = channel(32);
646    let mut watcher: RecommendedWatcher = RecommendedWatcher::new(
647        move |result: Result<Event, notify::Error>| {
648            if let Ok(event) = result {
649                let _: Result<(), tokio::sync::mpsc::error::SendError<Event>> =
650                    tx.blocking_send(event);
651            }
652        },
653        Config::default(),
654    )?;
655    watcher.watch(&src_path, RecursiveMode::Recursive)?;
656    log::info!("Watching {} for changes...", src_path.display());
657    let mut debounce: Interval = interval(Duration::from_millis(500));
658    debounce.tick().await;
659    while let Some(event) = rx.recv().await {
660        let filtered_paths: Vec<String> = event
661            .paths
662            .iter()
663            .filter(|path: &&PathBuf| !gitignore.matched(*path, path.is_dir()).is_ignore())
664            .map(|path: &PathBuf| path.display().to_string())
665            .collect();
666        if filtered_paths.is_empty() {
667            continue;
668        }
669        log::warn!("File change detected: {}", filtered_paths.join(", "));
670        debounce.reset();
671        sleep(Duration::from_millis(300)).await;
672        let mut building: RwLockWriteGuard<bool> = state.get_is_building().write().await;
673        if *building {
674            continue;
675        }
676        *building = true;
677        drop(building);
678        let state_for_build: Arc<AppState> = Arc::clone(&state);
679        spawn(async move {
680            let args: ModeArgs = state_for_build.get_args().clone();
681            let reload_tx: broadcast::Sender<ReloadEvent> = state_for_build.get_reload_tx().clone();
682            match run_build_pipeline(&args, Some(&reload_tx)).await {
683                Ok(html) => {
684                    let mut content: RwLockWriteGuard<String> =
685                        state_for_build.get_html_content().write().await;
686                    *content = html;
687                }
688                Err(error) => {
689                    log::error!("Build pipeline error: {error}");
690                }
691            }
692            let mut building: RwLockWriteGuard<bool> =
693                state_for_build.get_is_building().write().await;
694            *building = false;
695        });
696    }
697    Ok(())
698}
699
700/// Runs wasm-pack build for the target crate.
701///
702/// All arguments in `args.wasm_pack_args` are transparently forwarded
703/// to `wasm-pack build`. If `--out-dir` is not specified by the user,
704/// `--out-dir {www_dir}/pkg` is automatically injected so that build artifacts
705/// are placed inside the www directory served by the development server.
706///
707/// # Arguments
708///
709/// - `&ModeArgs` - The CLI arguments containing crate_path, www_dir, and wasm_pack_args.
710///
711/// # Returns
712///
713/// - `Result<(), EuvError>` - Indicates success or failure of the wasm-pack build.
714pub async fn build_wasm(args: &ModeArgs) -> Result<(), EuvError> {
715    let build_mode: BuildMode = resolve_build_mode(args);
716    let build_mode_flag: &str = build_mode_to_flag(build_mode);
717    let filtered_args: Vec<String> = filter_euv_args(args.get_wasm_pack_args());
718    let has_existing_build_mode: bool = has_build_mode_flag(&filtered_args);
719    let default_out_dir: String = format!("{}/{PKG_DIR_NAME}", args.get_www_dir());
720    let mut command: Command = Command::new(WASM_PACK_COMMAND);
721    command.arg(WASM_PACK_BUILD_SUBCOMMAND);
722    if !has_existing_build_mode {
723        command.arg(build_mode_flag);
724    }
725    command
726        .args(&filtered_args)
727        .env(RUST_MIN_STACK_ENV, RUST_MIN_STACK_VALUE);
728    let has_out_dir: bool = extract_out_dir(&filtered_args).is_some();
729    if !has_out_dir {
730        command.arg(OUT_DIR_ARG).arg(&default_out_dir);
731    }
732    let has_target: bool = filtered_args
733        .iter()
734        .any(|arg: &String| arg == TARGET_ARG || arg.starts_with(&format!("{TARGET_ARG}=")));
735    if !has_target {
736        command.arg(TARGET_ARG).arg(TARGET_WEB);
737    }
738    command.current_dir(args.get_crate_path());
739    command.stdout(Stdio::piped()).stderr(Stdio::piped());
740    let display_args: Vec<String> = (if has_existing_build_mode {
741        filtered_args.to_vec()
742    } else {
743        std::iter::once(build_mode_flag.to_string())
744            .chain(filtered_args.iter().cloned())
745            .collect::<Vec<String>>()
746    })
747    .into_iter()
748    .chain(if has_out_dir {
749        Vec::new()
750    } else {
751        vec![OUT_DIR_ARG.to_string(), default_out_dir.clone()]
752    })
753    .chain(if has_target {
754        Vec::new()
755    } else {
756        vec![TARGET_ARG.to_string(), TARGET_WEB.to_string()]
757    })
758    .collect();
759    let out_dir_absolute: PathBuf = resolve_out_dir(args);
760    create_dir_all(&out_dir_absolute)
761        .await
762        .map_err(|error: io::Error| EuvError::IoPath {
763            message: String::from("Failed to create output directory"),
764            path: out_dir_absolute.clone(),
765            error,
766        })?;
767    log::info!(
768        "Running: {WASM_PACK_COMMAND} {WASM_PACK_BUILD_SUBCOMMAND} {} ...",
769        display_args.join(" ")
770    );
771    let output: Output = command
772        .output()
773        .await
774        .map_err(|error: io::Error| EuvError::Io {
775            message: String::from("Failed to execute wasm-pack"),
776            error,
777        })?;
778    let stdout: String = String::from_utf8_lossy(&output.stdout).to_string();
779    let stderr: String = String::from_utf8_lossy(&output.stderr).to_string();
780    if args.get_no_gitignore() {
781        let gitignore_path: PathBuf = out_dir_absolute.join(GITIGNORE_FILE_NAME);
782        if gitignore_path.exists()
783            && let Err(error) = remove_file(&gitignore_path).await
784        {
785            log::warn!("Failed to remove '{}': {error}", gitignore_path.display());
786        }
787    }
788    for line in stdout.lines().filter(|line: &&str| !line.is_empty()) {
789        log::info!("{line}");
790    }
791    if output.status.success() {
792        for line in stderr.lines().filter(|line: &&str| !line.is_empty()) {
793            log::info!("{line}");
794        }
795    } else {
796        for line in stderr.lines().filter(|line: &&str| !line.is_empty()) {
797            log::error!("{line}");
798        }
799        return Err(EuvError::Message(String::from("wasm-pack build failed")));
800    }
801    Ok(())
802}
803
804/// Prints the startup banner and command information.
805///
806/// # Arguments
807///
808/// - `Action` - The action to perform (run or build).
809pub fn print_banner(action: Action) {
810    let version: &str = env!("CARGO_PKG_VERSION");
811    if version.is_empty() {
812        log::warn!("Failed to parse version from root Cargo.toml");
813    } else {
814        log::info!("euv v{version}");
815    }
816    let action_name: &str = match action {
817        Action::Run => ACTION_RUN,
818        Action::Build => ACTION_BUILD,
819    };
820    log::info!("Mode: {action_name}");
821    log::info!(
822        "Use .gitignore to filter file change events; pass --no-gitignore to remove .gitignore from output"
823    );
824}
825
826/// Enumerates all network interface IP addresses and prints each server URL
827/// along with its corresponding QR code to the console.
828///
829/// Includes both loopback (127.0.0.1) and all private/public IPv4 addresses
830/// bound to the host's network interfaces. Each address produces one URL line
831/// followed by a Unicode QR code rendered with half-block characters,
832/// where every line carries the standard log prefix (timestamp + level).
833///
834/// # Arguments
835///
836/// - `&ServerUrlConfig` - The server URL configuration.
837pub(crate) fn print_server_urls(config: &ServerUrlConfig) {
838    let port: u16 = config.get_port();
839    let route_prefix: &str = config.get_route_prefix();
840    let index_html_file_name: &str = config.get_index_html_file_name();
841    let mut addresses: Vec<IpAddr> = Vec::new();
842    match if_addrs::get_if_addrs() {
843        Ok(interfaces) => {
844            for interface in interfaces {
845                let ip: IpAddr = interface.addr.ip();
846                if !addresses.contains(&ip) {
847                    addresses.push(ip);
848                }
849            }
850        }
851        Err(error) => {
852            log::warn!("Failed to enumerate network interfaces: {error}");
853        }
854    }
855    if addresses.is_empty() {
856        addresses.push(IpAddr::V4(Ipv4Addr::LOCALHOST));
857    }
858    for ip in addresses {
859        let host: String = match ip {
860            IpAddr::V6(_) => format!("[{ip}]"),
861            IpAddr::V4(_) => format!("{ip}"),
862        };
863        let url: String =
864            format!("{HTTP_SCHEME}://{host}:{port}/{route_prefix}/{index_html_file_name}");
865        log::info!("Server: {url}");
866        match QrCode::new(url.as_str()) {
867            Ok(code) => {
868                let string: String = code.render::<Dense1x2>().quiet_zone(false).build();
869                for line in string.lines() {
870                    log::info!("{line}");
871                }
872            }
873            Err(error) => {
874                log::warn!("Failed to generate QR code: {error}");
875            }
876        }
877    }
878}
879
880/// Reads the wasm-bindgen JS bridge produced by `wasm-pack build
881/// --target web` and returns a synchronous IIFE that inlines the bridge
882/// and its snippet modules, fetches the wasm module from `wasm_url`,
883/// then calls `main()` once the instance is ready.
884///
885/// The bridge's own top-level `import` lines (the tiny snippet helpers
886/// under `./snippets/`) are stripped and their bodies inlined, so the
887/// result is self-contained and the browser makes zero extra requests
888/// for the bridge file.
889/// # Arguments
890///
891/// - `&Path` - Directory holding the wasm-pack output.
892/// - `&str` - File name of the generated JS bridge inside it.
893/// - `&str` - URL the page will fetch the `.wasm` module from.
894///
895/// # Returns
896///
897/// - `Result<String, EuvError>` - The IIFE source, or an error if the
898///   bridge or one of its snippet imports cannot be read.
899pub(crate) async fn build_inline_bridge(
900    pkg_dir: &Path,
901    js_name: &str,
902    wasm_url: &str,
903) -> Result<String, EuvError> {
904    let js_path: std::path::PathBuf = pkg_dir.join(js_name);
905    let bridge_source: String =
906        read_to_string(&js_path)
907            .await
908            .map_err(|error: io::Error| EuvError::IoPath {
909                message: String::from("Failed to read wasm-bindgen JS bridge"),
910                path: js_path.clone(),
911                error,
912            })?;
913    let snippet_bodies: String = collect_snippet_bodies(&bridge_source, pkg_dir).await?;
914    let stripped: String = strip_module_imports(&bridge_source);
915    let js_only: String = strip_trailing_module_exports(&stripped);
916    let wasm_url_json: String = serde_json_wasm_url(wasm_url);
917    Ok(format!(
918        "(function() {{\n\
919         {snippet_bodies}\n\
920         {js_only}\n\
921         var __euv_wasm_url = {wasm_url_json};\n\
922         if (typeof __wbg_init === 'function') {{\n\
923         var __euv_base = (document.querySelector('base[href]') && document.baseURI) || location.href;\n         __wbg_init(new URL(__euv_wasm_url, __euv_base).toString()).then(function() {{\n\
924         if (typeof main === 'function') main();\n\
925         }}).catch(function(e) {{ console.error('[euv] inline bridge init failed:', e); }});\n\
926         }} else if (typeof initSync === 'function') {{\n\
927         initSync();\n\
928         if (typeof main === 'function') main();\n\
929         }} else {{\n\
930         console.error('[euv] inline bridge: no __wbg_init or initSync exported');\n\
931         }}\n\
932         }})();\n"
933    ))
934}
935
936/// Returns the inline `<script>` body to use when JS bridge inlining is
937/// disabled, restoring the classic module import as a fallback during
938/// wasm-pack output transitions.
939///
940/// # Arguments
941///
942/// - `&str` - The module import path the browser should resolve.
943///
944/// # Returns
945///
946/// - `String` - The `<script>` body, ready to be embedded in the page.
947pub(crate) fn build_module_fallback_bridge(import_path: &str) -> String {
948    format!(
949        "    import init, {{ main }} from '{import_path}';\n    \
950         await init();\n    \
951         main();\n"
952    )
953}
954
955/// Returns `true` when the inline bridge should be skipped.
956///
957/// # Returns
958///
959/// - `bool` - `true` if the env var is set to a non-empty value.
960pub(crate) fn inline_bridge_disabled() -> bool {
961    matches!(std::env::var(EUV_NO_INLINE_BRIDGE_ENV), Ok(value) if !value.is_empty())
962}
963
964/// Collects the source of every module the bridge imports, inlined in
965/// dependency order, and materialises each namespace import as a `var`
966/// object so the bridge body keeps working without the module graph.
967///
968/// # Arguments
969///
970/// - `&str` - The bridge source whose `import` lines drive the scan.
971/// - `&Path` - Directory holding the wasm-pack output, used to resolve
972///   each relative specifier.
973///
974/// # Returns
975///
976/// - `Result<String, EuvError>` - The concatenated snippet bodies, or an
977///   error if a specifier escapes the package directory.
978async fn collect_snippet_bodies(bridge_source: &str, pkg_dir: &Path) -> Result<String, EuvError> {
979    let mut bodies: String = String::new();
980    let mut namespace_imports: Vec<NamespaceImport> = Vec::new();
981    for line in bridge_source.lines() {
982        let trimmed: &str = line.trim();
983        if !trimmed.starts_with("import ") {
984            continue;
985        }
986        let rest: &str = match trimmed.strip_prefix("import ") {
987            Some(value) => value,
988            None => continue,
989        };
990        let spec: &str = match extract_import_spec(rest) {
991            Some(value) => value,
992            None => continue,
993        };
994        if is_namespace_import(rest)
995            && let Some(alias) = extract_namespace_alias(rest)
996        {
997            namespace_imports.push(NamespaceImport {
998                alias: alias.to_string(),
999                spec: spec.to_string(),
1000            });
1001        }
1002        let body: Option<String> = read_snippet_module(pkg_dir, spec).await?;
1003        if let Some(body) = body {
1004            if !bodies.is_empty() {
1005                bodies.push('\n');
1006            }
1007            bodies.push_str(&body);
1008        }
1009    }
1010    for ns in &namespace_imports {
1011        let snippet_path: std::path::PathBuf = resolve_snippet_path(pkg_dir, &ns.spec)?;
1012        let exports: Vec<String> = if snippet_path.exists() {
1013            let raw: String = read_to_string(&snippet_path)
1014                .await
1015                .map_err(|error: io::Error| EuvError::IoPath {
1016                    message: String::from(
1017                        "Failed to read wasm-pack snippet module for namespace export scan",
1018                    ),
1019                    path: snippet_path.clone(),
1020                    error,
1021                })?;
1022            extract_exported_function_names(&raw)
1023        } else {
1024            Vec::new()
1025        };
1026        if !bodies.is_empty() {
1027            bodies.push('\n');
1028        }
1029        bodies.push_str(&format!("var {} = {{", ns.alias));
1030        for (i, name) in exports.iter().enumerate() {
1031            if i > 0 {
1032                bodies.push(',');
1033            }
1034            bodies.push_str(name);
1035            bodies.push(':');
1036            bodies.push_str(name);
1037        }
1038        bodies.push_str("};\n");
1039    }
1040    Ok(bodies)
1041}
1042
1043/// Scans a snippet module for `export function NAME(` declarations and
1044/// returns their names. The IIFE relies on function declarations being
1045/// hoisted, so these names resolve to the same bindings that
1046/// wasm-bindgen's `__wbg_get_imports` expects.
1047///
1048/// # Arguments
1049///
1050/// - `&str` - The snippet module source to scan.
1051///
1052/// # Returns
1053///
1054/// - `Vec<String>` - Every exported function name, in source order.
1055pub fn extract_exported_function_names(source: &str) -> Vec<String> {
1056    let mut names: Vec<String> = Vec::new();
1057    for line in source.lines() {
1058        let trimmed: &str = line.trim();
1059        if let Some(rest) = trimmed.strip_prefix("export function ") {
1060            let name_end: usize =
1061                match rest.find(|c: char| !c.is_alphanumeric() && c != '_' && c != '$') {
1062                    Some(value) => value,
1063                    None => rest.len(),
1064                };
1065            let name: &str = &rest[..name_end];
1066            if !name.is_empty() {
1067                names.push(name.to_string());
1068            }
1069        }
1070    }
1071    names
1072}
1073
1074/// Returns `true` when the clause is a namespace import (`import * as X`).
1075///
1076/// # Arguments
1077///
1078/// - `&str` - The import clause, without its leading `import` keyword.
1079///
1080/// # Returns
1081///
1082/// - `bool` - `true` for `* as <alias>` clauses.
1083pub fn is_namespace_import(rest: &str) -> bool {
1084    rest.trim_start().starts_with('*')
1085}
1086
1087/// Extracts the local binding a namespace import introduces.
1088///
1089/// # Arguments
1090///
1091/// - `&str` - The import clause, without its leading `import` keyword.
1092///
1093/// # Returns
1094///
1095/// - `Option<&str>` - The alias, or `None` if the clause is not a
1096///   namespace import or carries no name.
1097pub fn extract_namespace_alias(rest: &str) -> Option<&str> {
1098    let rest: &str = rest.trim_end_matches(';').trim();
1099    if !rest.starts_with('*') {
1100        return None;
1101    }
1102    let rest: &str = rest.strip_prefix('*')?.trim();
1103    let rest: &str = rest.strip_prefix("as")?.trim();
1104    let end: usize = match rest.find(|c: char| !c.is_alphanumeric() && c != '_' && c != '$') {
1105        Some(value) => value,
1106        None => rest.len(),
1107    };
1108    let alias: &str = &rest[..end];
1109    if alias.is_empty() { None } else { Some(alias) }
1110}
1111
1112/// Extracts the relative specifier an import clause resolves against.
1113///
1114/// Bare specifiers are rejected: only `./` and `../` targets are inlined,
1115/// because anything else would drag in a module this code does not
1116/// control.
1117///
1118/// # Arguments
1119///
1120/// - `&str` - The import clause, without its leading `import` keyword.
1121///
1122/// # Returns
1123///
1124/// - `Option<&str>` - The specifier with its quotes stripped, or `None`
1125///   when the clause has no `from` or names a non-relative module.
1126pub fn extract_import_spec(rest: &str) -> Option<&str> {
1127    let rest: &str = rest.trim_end_matches(';').trim();
1128    let from_idx: usize = rest.find(" from ")?;
1129    let spec_part: &str = rest[from_idx + " from ".len()..].trim();
1130    let spec: &str = spec_part
1131        .trim_start_matches('\'')
1132        .trim_start_matches('"')
1133        .trim_end_matches('\'')
1134        .trim_end_matches('"');
1135    if spec.starts_with("./") || spec.starts_with("../") {
1136        Some(spec)
1137    } else {
1138        None
1139    }
1140}
1141
1142/// Reads one snippet module and returns its body with the `export` keyword
1143/// stripped, so it can be concatenated into the IIFE as a plain
1144/// declaration.
1145///
1146/// # Arguments
1147///
1148/// - `&Path` - Directory holding the wasm-pack output.
1149/// - `&str` - Relative specifier of the snippet to read.
1150///
1151/// # Returns
1152///
1153/// - `Result<Option<String>, EuvError>` - The stripped body, `None` if the
1154///   file does not exist, or an error if it cannot be read or decoded.
1155async fn read_snippet_module(pkg_dir: &Path, spec: &str) -> Result<Option<String>, EuvError> {
1156    let snippet_path: std::path::PathBuf = resolve_snippet_path(pkg_dir, spec)?;
1157    if !snippet_path.exists() {
1158        return Ok(None);
1159    }
1160    let bytes: Vec<u8> =
1161        read(&snippet_path)
1162            .await
1163            .map_err(|error: io::Error| EuvError::IoPath {
1164                message: String::from("Failed to read wasm-pack snippet module"),
1165                path: snippet_path.clone(),
1166                error,
1167            })?;
1168    let raw: String = String::from_utf8(bytes).map_err(|error: FromUtf8Error| EuvError::Utf8 {
1169        message: String::from("Snippet module is not valid UTF-8"),
1170        error,
1171    })?;
1172    Ok(Some(strip_snippet_export(&raw)))
1173}
1174
1175/// Resolves a relative specifier to a path inside `pkg_dir`.
1176///
1177/// # Arguments
1178///
1179/// - `&Path` - Directory holding the wasm-pack output.
1180/// - `&str` - Relative specifier taken from the bridge's import clause.
1181///
1182/// # Returns
1183///
1184/// - `Result<std::path::PathBuf, EuvError>` - The resolved path, or an error if the
1185///   specifier climbs above `pkg_dir`.
1186fn resolve_snippet_path(pkg_dir: &Path, spec: &str) -> Result<std::path::PathBuf, EuvError> {
1187    let base: &str = spec.trim_start_matches('.').trim_start_matches('/');
1188    let mut path: std::path::PathBuf = pkg_dir.to_path_buf();
1189    for segment in base.split('/') {
1190        if segment.is_empty() || segment == "." {
1191            continue;
1192        }
1193        if segment == ".." {
1194            return Err(EuvError::Message(String::from(
1195                "Snippet import spec escapes pkg directory",
1196            )));
1197        }
1198        path.push(segment);
1199    }
1200    Ok(path)
1201}
1202
1203/// Rewrites a snippet module's source into bare declarations by removing
1204/// the `export ` prefix from every line that carries one.
1205///
1206/// # Arguments
1207///
1208/// - `&str` - The snippet module source.
1209///
1210/// # Returns
1211///
1212/// - `String` - The same source with the `export ` keywords removed.
1213fn strip_snippet_export(raw: &str) -> String {
1214    let mut out: String = String::with_capacity(raw.len());
1215    for line in raw.lines() {
1216        let trimmed: &str = line.trim();
1217        if trimmed.starts_with("export ") {
1218            if let Some(rest) = trimmed.strip_prefix("export ") {
1219                out.push_str(rest);
1220                out.push('\n');
1221            }
1222        } else {
1223            out.push_str(line);
1224            out.push('\n');
1225        }
1226    }
1227    out
1228}
1229
1230/// Removes the bridge's own `import` lines and any line referencing
1231/// `import.meta.url`, since the inlined IIFE has neither.
1232///
1233/// # Arguments
1234///
1235/// - `&str` - The bridge source.
1236///
1237/// # Returns
1238///
1239/// - `String` - The source with those lines dropped.
1240fn strip_module_imports(source: &str) -> String {
1241    let mut out: String = String::with_capacity(source.len());
1242    for line in source.lines() {
1243        let trimmed: &str = line.trim();
1244        if trimmed.starts_with("import ") {
1245            continue;
1246        }
1247        if trimmed.contains("import.meta.url") {
1248            continue;
1249        }
1250        out.push_str(line);
1251        out.push('\n');
1252    }
1253    out
1254}
1255
1256/// Removes the bridge's trailing `export { ... }` and `export function`
1257/// lines, turning each exported alias into the assignment that keeps the
1258/// local function reachable under its exported name.
1259///
1260/// # Arguments
1261///
1262/// - `&str` - The bridge source, after [`strip_module_imports`].
1263///
1264/// # Returns
1265///
1266/// - `String` - The source with its module-level export syntax removed.
1267fn strip_trailing_module_exports(source: &str) -> String {
1268    let mut out: String = String::with_capacity(source.len());
1269    for line in source.lines() {
1270        let trimmed: &str = line.trim();
1271        if trimmed.starts_with("export ") && trimmed.contains('{') && trimmed.contains('}') {
1272            let inner: &str = &trimmed["export ".len()..];
1273            let stripped: &str = match inner.strip_prefix('{') {
1274                Some(value) => value,
1275                None => {
1276                    out.push_str(line);
1277                    out.push('\n');
1278                    continue;
1279                }
1280            };
1281            let close: usize = match stripped.rfind('}') {
1282                Some(value) => value,
1283                None => {
1284                    out.push_str(line);
1285                    out.push('\n');
1286                    continue;
1287                }
1288            };
1289            let names_block: &str = &stripped[..close];
1290            let inlined: String = inline_export_aliases(names_block.trim());
1291            if !inlined.is_empty() {
1292                out.push_str(&inlined);
1293                out.push('\n');
1294            }
1295            continue;
1296        }
1297        if trimmed.starts_with("export function ") {
1298            let rest: &str = match trimmed.strip_prefix("export function ") {
1299                Some(value) => value,
1300                None => {
1301                    out.push_str(line);
1302                    out.push('\n');
1303                    continue;
1304                }
1305            };
1306            let name_end: usize = match rest.find(|c: char| !c.is_alphanumeric() && c != '_') {
1307                Some(value) => value,
1308                None => rest.len(),
1309            };
1310            let name: &str = &rest[..name_end];
1311            if !name.is_empty() {
1312                out.push_str("function ");
1313                out.push_str(name);
1314                out.push_str(&rest[name_end..]);
1315                out.push('\n');
1316                continue;
1317            }
1318        }
1319        out.push_str(line);
1320        out.push('\n');
1321    }
1322    out
1323}
1324
1325/// Converts the body of an `export { a, b as c }` clause into the
1326/// assignments that keep each local function reachable under its
1327/// exported name. Exports of `wasm` are dropped: the IIFE is a plain
1328/// `<script>`, so there is no `wasm` binding in scope.
1329///
1330/// # Arguments
1331///
1332/// - `&str` - The comma-separated body between the export braces.
1333///
1334/// # Returns
1335///
1336/// - `String` - The assignments, one per line, or empty when every alias
1337///   is a no-op.
1338fn inline_export_aliases(block: &str) -> String {
1339    let mut out: String = String::new();
1340    for entry in block.split(',') {
1341        let entry: &str = entry.trim();
1342        if entry.is_empty() {
1343            continue;
1344        }
1345        if let Some((original, exported)) = entry.split_once(" as ") {
1346            let original: &str = original.trim();
1347            let exported: &str = exported.trim();
1348            if original == exported || exported == "default" || original == "wasm" {
1349                continue;
1350            }
1351            out.push_str(exported);
1352            out.push_str(" = ");
1353            out.push_str(original);
1354            out.push_str(";\n");
1355        }
1356    }
1357    out
1358}
1359
1360/// Encodes a URL as a JSON string literal, including the surrounding
1361/// quotes.
1362///
1363/// Hand-rolled rather than `serde_json::to_string` because the value is
1364/// interpolated into a template that is already assembling JavaScript,
1365/// and the only characters that can appear here are URL characters.
1366///
1367/// # Arguments
1368///
1369/// - `&str` - The URL to encode.
1370///
1371/// # Returns
1372///
1373/// - `String` - A quoted, escaped JSON string.
1374fn serde_json_wasm_url(url: &str) -> String {
1375    let mut out: String = String::with_capacity(url.len() + 2);
1376    out.push('"');
1377    for ch in url.chars() {
1378        match ch {
1379            '"' => out.push_str("\\\""),
1380            '\\' => out.push_str("\\\\"),
1381            '\n' => out.push_str("\\n"),
1382            '\r' => out.push_str("\\r"),
1383            '\t' => out.push_str("\\t"),
1384            '\u{08}' => out.push_str("\\b"),
1385            '\u{0C}' => out.push_str("\\f"),
1386            c if (c as u32) < 0x20 => out.push_str(&format!("\\u{:04x}", c as u32)),
1387            c => out.push(c),
1388        }
1389    }
1390    out.push('"');
1391    out
1392}