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//! Standalone `python3.dll` import library generator
//! =================================================
//!
//! Generates import libraries for the Stable ABI Python DLL
//! for MinGW-w64 cross-compile targets.
//!
//! See <https://docs.python.org/3/c-api/stable.html> for details.
//!
//! This crate **does not require** Python 3 distribution files
//! to be present on the cross-compile host system.
//!
//! Example `build.rs` script
//! -------------------------
//!
//! The following script can be used to cross-compile Stable ABI
//! PyO3 extension modules for Windows (64-bit):
//!
//! ```no_run
//! fn main() {
//! if std::env::var("TARGET").unwrap() == "x86_64-pc-windows-gnu" {
//! let libdir = std::env::var("PYO3_CROSS_LIB_DIR")
//! .expect("PYO3_CROSS_LIB_DIR is not set when cross-compiling");
//! python3_dll_a::generate_implib(&libdir)
//! .expect("python3.dll import library generator failed");
//! }
//! }
//! ```
//!
//! A compatible `python3.dll` import library will be automatically created in
//! the directory pointed by `PYO3_CROSS_LIB_DIR` environment variable.
//!
//! If both 64-bit and 32-bit Windows cross-compile targets support is needed,
//! the more generic `generate_implib_for_target()` function must be used:
//!
//! ```no_run
//! fn main() {
//! if std::env::var("CARGO_CFG_TARGET_OS").unwrap() == "windows"
//! && std::env::var("CARGO_CFG_TARGET_ENV").unwrap() == "gnu"
//! {
//! let libdir = std::env::var("PYO3_CROSS_LIB_DIR")
//! .expect("PYO3_CROSS_LIB_DIR is not set when cross-compiling");
//! let arch = std::env::var("CARGO_CFG_TARGET_ARCH").unwrap();
//! python3_dll_a::generate_implib_for_target(&libdir, &arch, "gnu")
//! .expect("python3.dll import library generator failed");
//! }
//! }
//! ```
//!
//! Example `cargo build` invocation
//! --------------------------------
//!
//! ```sh
//! PYO3_CROSS_LIB_DIR=target/python3-dll cargo build --target x86_64-pc-windows-gnu
//! ```
#![deny(missing_docs)]
#![allow(clippy::needless_doctest_main)]
use std::fs::create_dir_all;
use std::fs::File;
use std::io::{BufWriter, Error, ErrorKind, Result, Write};
use std::path::PathBuf;
use std::process::Command;
/// Stable ABI Python DLL file name
const DLL_FILE: &str = "python3.dll";
/// Canonical `python3.dll` import library file name for MinGW-w64
const IMPLIB_FILE: &str = "python3.dll.a";
/// Module-Definition file name for `python3.dll`
const DEF_FILE: &str = "python3.def";
/// Canonical MinGW-w64 `dlltool` program name
const DLLTOOL: &str = "x86_64-w64-mingw32-dlltool";
/// Canonical MinGW-w64 `dlltool` program name (32-bit version)
const DLLTOOL_32: &str = "i686-w64-mingw32-dlltool";
/// Python Stable ABI symbol defs from the CPython repository
///
/// Upstream source: <https://github.com/python/cpython/blob/main/Misc/stable_abi.txt>
const STABLE_ABI_DEFS: &str = include_str!("../Misc/stable_abi.txt");
/// Generates `python3.dll` import library directly from the embedded
/// Python Stable ABI definitions data for the specified compile target.
///
/// The import library file named `python3.dll.a` is created
/// in directory `out_dir`.
///
/// The compile target architecture name (as in `CARGO_CFG_TARGET_ARCH`)
/// is passed in `arch`.
///
/// The compile target environment ABI name (as in `CARGO_CFG_TARGET_ENV`)
/// is passed in `env`.
pub fn generate_implib_for_target(out_dir: &str, arch: &str, env: &str) -> Result<()> {
create_dir_all(out_dir)?;
let mut libpath = PathBuf::from(out_dir);
let mut defpath = libpath.clone();
libpath.push(IMPLIB_FILE);
defpath.push(DEF_FILE);
let stable_abi_exports = parse_stable_abi_defs(STABLE_ABI_DEFS);
let mut writer = BufWriter::new(File::create(&defpath)?);
write_export_defs(&mut writer, DLL_FILE, &stable_abi_exports)?;
drop(writer);
// Try to guess the `dlltool` executable name from the target triple.
let dlltool = match (arch, env) {
// 64-bit MinGW-w64 (aka x86_64-pc-windows-gnu)
("x86_64", "gnu") => DLLTOOL,
// 32-bit MinGW-w64 (aka i686-pc-windows-gnu)
("x86", "gnu") => DLLTOOL_32,
_ => {
let msg = format!("Unsupported target arch '{arch}' or env ABI '{env}'");
return Err(Error::new(ErrorKind::Other, msg));
}
};
let status = Command::new(dlltool)
.arg("--input-def")
.arg(defpath)
.arg("--output-lib")
.arg(libpath)
.status()?;
if status.success() {
Ok(())
} else {
let msg = format!("{dlltool} failed with {status}");
Err(Error::new(ErrorKind::Other, msg))
}
}
/// Generates `python3.dll` import library directly from the embedded
/// Python Stable ABI definitions data for the default 64-bit MinGW-w64
/// compile target.
///
/// The import library file named `python3.dll.a` is created
/// in directory `out_dir`.
///
/// The import library is generated for the default `x86_64-pc-windows-gnu`
/// cross-compile target.
pub fn generate_implib(out_dir: &str) -> Result<()> {
generate_implib_for_target(out_dir, "x86_64", "gnu")
}
/// Exported DLL symbol definition
struct DllExport {
/// Export symbol name
symbol: String,
/// Data symbol flag
is_data: bool,
}
/// Parses 'stable_abi.txt' export symbol definitions
fn parse_stable_abi_defs(defs: &str) -> Vec<DllExport> {
// Try to estimate the number of records from the file size.
let mut exports = Vec::with_capacity(defs.len() / 32);
for line in defs.lines() {
let is_data = if line.starts_with("function") {
false
} else if line.starts_with("data") {
true
} else {
// Skip everything but "function" and "data" entries.
continue;
};
// Parse "function|data PyFoo"-like strings.
if let Some(name) = line.split_ascii_whitespace().nth(1) {
let symbol = name.to_owned();
exports.push(DllExport { symbol, is_data })
}
}
exports
}
/// Writes Module-Definition file export statements.
///
/// The library module name is passed in `dll_name`,
/// the list of exported symbols - in `exports`.
///
/// See <https://docs.microsoft.com/en-us/cpp/build/reference/module-definition-dot-def-files>.
fn write_export_defs(writer: &mut impl Write, dll_name: &str, exports: &[DllExport]) -> Result<()> {
writeln!(writer, "LIBRARY \"{dll_name}\"")?;
writeln!(writer, "EXPORTS")?;
for e in exports {
if e.is_data {
writeln!(writer, "{} DATA", e.symbol)?;
} else {
writeln!(writer, "{}", e.symbol)?;
}
}
Ok(())
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn generate() {
// FIXME: Use "target/test" dir for temporary files.
let mut dir = PathBuf::from(env!("CARGO_MANIFEST_DIR"));
dir.push("target");
dir.push("test");
let out_dir = dir.to_str().unwrap();
generate_implib(out_dir).unwrap();
}
#[test]
fn abi_defs_len() {
assert_eq!(STABLE_ABI_DEFS.len(), 48836);
}
#[test]
fn parse_stable_abi_txt() {
let stable_abi_exports = parse_stable_abi_defs(STABLE_ABI_DEFS);
assert_eq!(stable_abi_exports.len(), 857);
// assert_eq!(stable_abi_exports.capacity(), 1526);
let data_sym_num = stable_abi_exports.iter().filter(|x| x.is_data).count();
assert_eq!(data_sym_num, 143);
assert_eq!(stable_abi_exports[0].symbol, "PyType_FromSpec");
assert!(!stable_abi_exports[0].is_data);
assert_eq!(stable_abi_exports[200].symbol, "PyExc_UnicodeDecodeError");
assert!(stable_abi_exports[200].is_data);
}
#[test]
fn write_exports() {
let function = DllExport {
symbol: "foo".to_owned(),
is_data: false,
};
let data = DllExport {
symbol: "buf".to_owned(),
is_data: true,
};
let exports = vec![function, data];
let mut writer = Vec::new();
write_export_defs(&mut writer, DLL_FILE, &exports).unwrap();
assert_eq!(
String::from_utf8(writer).unwrap(),
"LIBRARY \"python3.dll\"\nEXPORTS\nfoo\nbuf DATA\n"
);
}
}