//! Build script for bundling ripgrep for the xai-grok-tools crate. //! //! - If `GROK_TOOLS_BUNDLE_RG_PATH` is set, always bundle it //! - Otherwise, only bundle in release builds use std::env; use std::fs; use std::io; use std::path::PathBuf; const RG_VER: &str = "15.0.0"; const BFS_VER: &str = "4.1"; const UGREP_VER: &str = "7.7.0"; fn main() -> Result<(), Box> { bundle_rg()?; // bfs/ugrep back the bash-harness find/grep shadows (embedded_search_tools). bundle_search_tool("bfs", "BFS", BFS_VER)?; bundle_search_tool("ugrep", "UGREP", UGREP_VER)?; Ok(()) } /// Bundle a prebuilt **static** search-tool binary (`bfs`/`ugrep`) when /// `GROK_TOOLS_BUNDLE__PATH` points at one (supplied by the release /// pipeline). Emits /// `cfg(bundle_)` so the crate's `include_bytes!` + self-extract engages. /// /// No auto-download (unlike ripgrep): bfs/ugrep publish no prebuilt static /// release assets, so the release pipeline supplies the path. Unset → not /// bundled (the runtime resolver falls back to `~/.grok/vendor` / `$PATH`); /// never a hard failure, so an un-wired build still succeeds. fn bundle_search_tool( name: &str, name_uc: &str, ver: &str, ) -> Result<(), Box> { let override_env = format!("GROK_TOOLS_BUNDLE_{name_uc}_PATH"); println!("cargo:rerun-if-env-changed={override_env}"); // Always declare the cfg so `#[cfg(bundle_)]` is lint-clean when unset. println!("cargo:rustc-check-cfg=cfg(bundle_{name})"); // The consumer (`embedded_search_tools`) is `#[cfg(unix)]`, so embedding on a // Windows target is dead weight — skip (mirrors the ripgrep Windows skip). if env::var("CARGO_CFG_TARGET_OS").as_deref() == Ok("windows") { return Ok(()); } let Some(src) = env::var(&override_env).ok().filter(|s| !s.is_empty()) else { return Ok(()); }; let gen_dir = PathBuf::from(env::var("OUT_DIR")?).join(format!("bundle-{name}")); fs::create_dir_all(&gen_dir)?; let dest = gen_dir.join(format!("{name}-{ver}-override.bin")); let _ = fs::remove_file(&dest); fs::copy(&src, &dest) .map_err(|e| format!("copy {override_env} from {src} to {}: {e}", dest.display()))?; println!("cargo:rustc-cfg=bundle_{name}"); println!("cargo:rustc-env=GROK_TOOLS_{name_uc}_VER={ver}"); println!("cargo:rustc-env=GROK_TOOLS_{name_uc}_TARGET=override"); Ok(()) } /// Download + embed ripgrep. Unchanged behavior; split out of `main` so the new /// search-tool bundling runs regardless of ripgrep's early returns. fn bundle_rg() -> Result<(), Box> { // Only bundle in release builds to avoid slowing down cargo check. println!("cargo:rerun-if-env-changed=GROK_TOOLS_BUNDLE_RG_PATH"); // Declare our custom cfg to the compiler so cfg(bundle_rg) is recognized by lints println!("cargo:rustc-check-cfg=cfg(bundle_rg)"); let gen_dir = PathBuf::from(env::var("OUT_DIR")?).join("bundle-rg"); fs::create_dir_all(&gen_dir)?; // Decide whether to bundle: path override OR release build let path_override = env::var("GROK_TOOLS_BUNDLE_RG_PATH").ok(); let is_release = env::var("PROFILE").as_deref() == Ok("release"); if path_override.is_none() && !is_release { return Ok(()); } // Skip auto-bundling on Windows: ripgrep ships .zip on Windows (not // .tar.gz) and we have no zip-extraction path. Returning here BEFORE // emitting `cargo:rustc-cfg=bundle_rg` keeps include_bytes! macros gated // on cfg(bundle_rg) compiled-out, so the runtime falls back to `rg` on // PATH. Users install ripgrep separately (winget / scoop). An explicit // GROK_TOOLS_BUNDLE_RG_PATH still bundles regardless of target. let target_os = env::var("CARGO_CFG_TARGET_OS").unwrap_or_default(); if target_os == "windows" && path_override.is_none() { return Ok(()); } // Expose cfg so the crate can include the bundled bytes. println!("cargo:rustc-cfg=bundle_rg"); println!("cargo:rustc-env=GROK_TOOLS_RG_VER={}", RG_VER); // If a local rg binary is provided, copy it directly (skips target check). if let Some(path) = path_override { let dest = gen_dir.join(format!("rg-{}-override.bin", RG_VER)); println!("cargo:rustc-env=GROK_TOOLS_RG_TARGET=override"); let _ = fs::remove_file(&dest); fs::copy(PathBuf::from(path.clone()), &dest).map_err(|e| { format!( "Failed copying GROK_TOOLS_BUNDLE_RG_PATH: {e} from path {path} to dest {}", dest.display() ) })?; return Ok(()); } // Determine supported ripgrep asset triple for auto-download. let target_arch = env::var("CARGO_CFG_TARGET_ARCH").unwrap_or_default(); let asset_triple = match (target_os.as_str(), target_arch.as_str()) { ("macos", "aarch64") => "aarch64-apple-darwin", ("macos", "x86_64") => "x86_64-apple-darwin", ("linux", "x86_64") => "x86_64-unknown-linux-musl", ("linux", "aarch64") => "aarch64-unknown-linux-gnu", _ => { return Err(format!( "Unsupported target for ripgrep bundling: {os}-{arch}. Set GROK_TOOLS_BUNDLE_RG_PATH to a local rg binary for offline or unsupported builds.", os = target_os, arch = target_arch ).into()); } }; println!("cargo:rustc-env=GROK_TOOLS_RG_TARGET={}", asset_triple); let dest = gen_dir.join(format!("rg-{}-{}.bin", RG_VER, asset_triple)); let _ = fs::remove_file(&dest); let url = format!( "https://github.com/BurntSushi/ripgrep/releases/download/{v}/ripgrep-{v}-{t}.tar.gz", v = RG_VER, t = asset_triple ); let bytes: Vec = { let resp = reqwest::blocking::get(&url).map_err(|e| { format!( "Failed to download ripgrep: {}\nSet GROK_TOOLS_BUNDLE_RG_PATH to a local rg for offline builds.", e ) })?; if !resp.status().is_success() { return Err(format!( "HTTP {} downloading ripgrep. Set GROK_TOOLS_BUNDLE_RG_PATH for offline builds.", resp.status() ) .into()); } resp.bytes()?.to_vec() }; let gz = flate2::read::GzDecoder::new(&bytes[..]); let mut ar = tar::Archive::new(gz); let mut found = false; for entry in ar.entries()? { let mut e = entry?; let p = e.path()?; if p.file_name().is_some_and(|n| n == "rg") { let data: Vec = { let mut v = Vec::new(); io::copy(&mut e, &mut v)?; v }; fs::write(&dest, &data)?; found = true; break; } } if !found { return Err(format!( "Could not find 'rg' in ripgrep archive {}. Set GROK_TOOLS_BUNDLE_RG_PATH for offline builds.", url ) .into()); } Ok(()) }