#![deny(missing_docs)]
#![deny(warnings)]
#![deny(unused_extern_crates)]
#![allow(deprecated)]
#![allow(non_upper_case_globals)]
#[macro_use]
#[allow(unused_extern_crates)]
extern crate cfg_if;
extern crate cexpr;
extern crate syntex_syntax as syntax;
extern crate aster;
extern crate quasi;
extern crate clang_sys;
extern crate peeking_take_while;
extern crate regex;
#[macro_use]
extern crate lazy_static;
#[cfg(feature = "logging")]
#[macro_use]
extern crate log;
#[cfg(not(feature = "logging"))]
#[macro_use]
mod log_stubs;
#[macro_use]
mod extra_assertions;
macro_rules! doc_mod {
($m:ident, $doc_mod_name:ident) => {
cfg_if! {
if #[cfg(feature = "testing_only_docs")] {
pub mod $doc_mod_name {
pub use super::$m::*;
}
} else {
}
}
};
}
mod clang;
mod ir;
mod parse;
mod regex_set;
mod uses;
pub mod callbacks;
#[cfg(rustfmt)]
mod codegen;
doc_mod!(clang, clang_docs);
doc_mod!(ir, ir_docs);
doc_mod!(parse, parse_docs);
doc_mod!(regex_set, regex_set_docs);
doc_mod!(uses, uses_docs);
mod codegen {
include!(concat!(env!("OUT_DIR"), "/codegen.rs"));
}
use ir::context::{BindgenContext, ItemId};
use ir::item::Item;
use parse::{ClangItemParser, ParseError};
use regex_set::RegexSet;
use std::fs::{File, OpenOptions};
use std::iter;
use std::io::{self, Write};
use std::path::{Path, PathBuf};
use std::process::{Command, Stdio};
use std::sync::Arc;
use syntax::ast;
use syntax::codemap::{DUMMY_SP, Span};
use syntax::print::pp::eof;
use syntax::print::pprust;
use syntax::ptr::P;
#[derive(Debug, Clone)]
pub struct CodegenConfig {
pub functions: bool,
pub types: bool,
pub vars: bool,
pub methods: bool,
pub constructors: bool,
pub destructors: bool,
}
impl CodegenConfig {
pub fn all() -> Self {
CodegenConfig {
functions: true,
types: true,
vars: true,
methods: true,
constructors: true,
destructors: true,
}
}
pub fn nothing() -> Self {
CodegenConfig {
functions: false,
types: false,
vars: false,
methods: false,
constructors: false,
destructors: false,
}
}
}
impl Default for CodegenConfig {
fn default() -> Self {
CodegenConfig::all()
}
}
#[derive(Debug, Default)]
pub struct Builder {
options: BindgenOptions,
input_headers: Vec<String>,
input_header_contents: Vec<(String, String)>,
}
pub fn builder() -> Builder {
Default::default()
}
impl Builder {
pub fn command_line_flags(&self) -> Vec<String> {
let mut output_vector: Vec<String> = Vec::new();
if let Some(header) = self.input_headers.last().cloned() {
output_vector.push(header);
}
self.options
.bitfield_enums
.get_items()
.iter()
.map(|item| {
output_vector.push("--bitfield-enum".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
self.options
.constified_enums
.get_items()
.iter()
.map(|item| {
output_vector.push("--constified-enum".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
self.options
.constified_enum_modules
.get_items()
.iter()
.map(|item| {
output_vector.push("--constified-enum-module".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
self.options
.hidden_types
.get_items()
.iter()
.map(|item| {
output_vector.push("--blacklist-type".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
if !self.options.layout_tests {
output_vector.push("--no-layout-tests".into());
}
if !self.options.derive_debug {
output_vector.push("--no-derive-debug".into());
}
if !self.options.derive_default {
output_vector.push("--no-derive-default".into());
} else {
output_vector.push("--with-derive-default".into());
}
if !self.options.generate_comments {
output_vector.push("--no-doc-comments".into());
}
if !self.options.whitelist_recursively {
output_vector.push("--no-recursive-whitelist".into());
}
if self.options.objc_extern_crate {
output_vector.push("--objc-extern-crate".into());
}
if self.options.builtins {
output_vector.push("--builtins".into());
}
if let Some(ref prefix) = self.options.ctypes_prefix {
output_vector.push("--ctypes-prefix".into());
output_vector.push(prefix.clone());
}
if let Some(ref dummy) = self.options.dummy_uses {
output_vector.push("--dummy-uses".into());
output_vector.push(dummy.clone());
}
if self.options.emit_ast {
output_vector.push("--emit-clang-ast".into());
}
if self.options.emit_ir {
output_vector.push("--emit-ir".into());
}
if let Some(ref graph) = self.options.emit_ir_graphviz {
output_vector.push("--emit-ir-graphviz".into());
output_vector.push(graph.clone())
}
if self.options.enable_cxx_namespaces {
output_vector.push("--enable-cxx-namespaces".into());
}
if self.options.disable_name_namespacing {
output_vector.push("--disable-name-namespacing".into());
}
self.options
.links
.iter()
.map(|&(ref item, _)| {
output_vector.push("--framework".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
if !self.options.codegen_config.functions {
output_vector.push("--ignore-functions".into());
}
output_vector.push("--generate".into());
let mut options:Vec<String> = Vec::new();
if self.options.codegen_config.functions {
options.push("function".into());
}
if self.options.codegen_config.types {
options.push("types".into());
}
if self.options.codegen_config.vars {
options.push("vars".into());
}
if self.options.codegen_config.methods {
options.push("methods".into());
}
if self.options.codegen_config.constructors {
options.push("constructors".into());
}
if self.options.codegen_config.destructors {
options.push("destructors".into());
}
output_vector.push(options.join(","));
if !self.options.codegen_config.methods {
output_vector.push("--ignore-methods".into());
}
self.options
.links
.iter()
.map(|&(ref item, _)| {
output_vector.push("--clang-args".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
if !self.options.convert_floats {
output_vector.push("--no-convert-floats".into());
}
if !self.options.prepend_enum_name {
output_vector.push("--no-prepend-enum-name".into());
}
if !self.options.unstable_rust {
output_vector.push("--unstable-rust".into());
}
self.options
.opaque_types
.get_items()
.iter()
.map(|item| {
output_vector.push("--opaque-type".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
self.options
.raw_lines
.iter()
.map(|item| {
output_vector.push("--raw-line".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
self.options
.links
.iter()
.map(|&(ref item, _)| {
output_vector.push("--static".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
if self.options.use_core {
output_vector.push("--use-core".into());
}
if self.options.conservative_inline_namespaces {
output_vector.push("--conservative-inline-namespaces".into());
}
self.options
.whitelisted_functions
.get_items()
.iter()
.map(|item| {
output_vector.push("--whitelist-function".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
self.options
.whitelisted_types
.get_items()
.iter()
.map(|item| {
output_vector.push("--whitelist-type".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
self.options
.whitelisted_vars
.get_items()
.iter()
.map(|item| {
output_vector.push("--whitelist-var".into());
output_vector.push(item.trim_left_matches("^").trim_right_matches("$").into());
})
.count();
output_vector.push("--".into());
if !self.options.clang_args.is_empty() {
output_vector.extend(
self.options
.clang_args
.iter()
.cloned()
);
}
if self.input_headers.len() > 1 {
output_vector.extend(self.input_headers[..self.input_headers.len() - 1].iter().cloned());
}
output_vector
}
pub fn header<T: Into<String>>(mut self, header: T) -> Builder {
self.input_headers.push(header.into());
self
}
pub fn header_contents(mut self, name: &str, contents: &str) -> Builder {
self.input_header_contents.push((name.into(), contents.into()));
self
}
pub fn emit_ir_graphviz<T: Into<String>>(mut self, path: T) -> Builder {
let path = path.into();
self.options.emit_ir_graphviz = Some(path);
self
}
pub fn generate_comments(mut self, doit: bool) -> Self {
self.options.generate_comments = doit;
self
}
pub fn whitelist_recursively(mut self, doit: bool) -> Self {
self.options.whitelist_recursively = doit;
self
}
pub fn objc_extern_crate(mut self, doit: bool) -> Self {
self.options.objc_extern_crate = doit;
self
}
pub fn trust_clang_mangling(mut self, doit: bool) -> Self {
self.options.enable_mangling = doit;
self
}
pub fn dummy_uses<T: Into<String>>(mut self, dummy_uses: T) -> Builder {
self.options.dummy_uses = Some(dummy_uses.into());
self
}
pub fn hide_type<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.hidden_types.insert(arg);
self
}
pub fn opaque_type<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.opaque_types.insert(arg);
self
}
pub fn whitelisted_type<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.whitelisted_types.insert(arg);
self
}
pub fn whitelisted_function<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.whitelisted_functions.insert(arg);
self
}
pub fn whitelisted_var<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.whitelisted_vars.insert(arg);
self
}
pub fn bitfield_enum<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.bitfield_enums.insert(arg);
self
}
pub fn constified_enum<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.constified_enums.insert(arg);
self
}
pub fn constified_enum_module<T: AsRef<str>>(mut self, arg: T) -> Builder {
self.options.constified_enum_modules.insert(arg);
self
}
pub fn raw_line<T: Into<String>>(mut self, arg: T) -> Builder {
self.options.raw_lines.push(arg.into());
self
}
pub fn clang_arg<T: Into<String>>(mut self, arg: T) -> Builder {
self.options.clang_args.push(arg.into());
self
}
pub fn clang_args<I>(mut self, iter: I) -> Builder
where I: IntoIterator,
I::Item: AsRef<str> {
for arg in iter {
self = self.clang_arg(arg.as_ref())
}
self
}
pub fn link<T: Into<String>>(mut self, library: T) -> Builder {
self.options.links.push((library.into(), LinkType::Default));
self
}
pub fn link_static<T: Into<String>>(mut self, library: T) -> Builder {
self.options.links.push((library.into(), LinkType::Static));
self
}
pub fn link_framework<T: Into<String>>(mut self, library: T) -> Builder {
self.options.links.push((library.into(), LinkType::Framework));
self
}
pub fn emit_builtins(mut self) -> Builder {
self.options.builtins = true;
self
}
pub fn no_convert_floats(mut self) -> Self {
self.options.convert_floats = false;
self
}
pub fn layout_tests(mut self, doit: bool) -> Self {
self.options.layout_tests = doit;
self
}
pub fn derive_debug(mut self, doit: bool) -> Self {
self.options.derive_debug = doit;
self
}
pub fn derive_default(mut self, doit: bool) -> Self {
self.options.derive_default = doit;
self
}
pub fn emit_clang_ast(mut self) -> Builder {
self.options.emit_ast = true;
self
}
pub fn emit_ir(mut self) -> Builder {
self.options.emit_ir = true;
self
}
pub fn enable_cxx_namespaces(mut self) -> Builder {
self.options.enable_cxx_namespaces = true;
self
}
pub fn disable_name_namespacing(mut self) -> Builder {
self.options.disable_name_namespacing = true;
self
}
pub fn conservative_inline_namespaces(mut self) -> Builder {
self.options.conservative_inline_namespaces = true;
self
}
pub fn generate_inline_functions(mut self, doit: bool) -> Self {
self.options.generate_inline_functions = doit;
self
}
pub fn ignore_functions(mut self) -> Builder {
self.options.codegen_config.functions = false;
self
}
pub fn ignore_methods(mut self) -> Builder {
self.options.codegen_config.methods = false;
self
}
pub fn unstable_rust(mut self, doit: bool) -> Self {
self.options.unstable_rust = doit;
self
}
pub fn use_core(mut self) -> Builder {
self.options.use_core = true;
self
}
pub fn ctypes_prefix<T: Into<String>>(mut self, prefix: T) -> Builder {
self.options.ctypes_prefix = Some(prefix.into());
self
}
pub fn parse_callbacks(mut self, cb: Box<callbacks::ParseCallbacks>) -> Self {
self.options.parse_callbacks = Some(cb);
self
}
pub fn with_codegen_config(mut self, config: CodegenConfig) -> Self {
self.options.codegen_config = config;
self
}
pub fn prepend_enum_name(mut self, doit: bool) -> Self {
self.options.prepend_enum_name = doit;
self
}
pub fn generate<'ctx>(mut self) -> Result<Bindings<'ctx>, ()> {
self.options.input_header = self.input_headers.pop();
self.options.clang_args.extend(
self.input_headers
.drain(..)
.flat_map(|header| {
iter::once("-include".into())
.chain(iter::once(header))
})
);
self.options.input_unsaved_files.extend(
self.input_header_contents
.drain(..)
.map(|(name, contents)| clang::UnsavedFile::new(&name, &contents))
);
Bindings::generate(self.options, None)
}
pub fn dump_preprocessed_input(&self) -> io::Result<()> {
let clang = clang_sys::support::Clang::find(None, &[])
.ok_or_else(|| io::Error::new(io::ErrorKind::Other,
"Cannot find clang executable"))?;
let mut wrapper_contents = String::new();
let mut is_cpp = false;
for header in &self.input_headers {
is_cpp |= header.ends_with(".hpp");
wrapper_contents.push_str("#include \"");
wrapper_contents.push_str(header);
wrapper_contents.push_str("\"\n");
}
for &(ref name, ref contents) in &self.input_header_contents {
is_cpp |= name.ends_with(".hpp");
wrapper_contents.push_str("#line 0 \"");
wrapper_contents.push_str(name);
wrapper_contents.push_str("\"\n");
wrapper_contents.push_str(contents);
}
is_cpp |= self.options.clang_args.windows(2).any(|w| {
w[0] == "-x=c++" || w[1] == "-x=c++" || w == &["-x", "c++"]
});
let wrapper_path = PathBuf::from(if is_cpp {
"__bindgen.cpp"
} else {
"__bindgen.c"
});
{
let mut wrapper_file = File::create(&wrapper_path)?;
wrapper_file.write(wrapper_contents.as_bytes())?;
}
let mut cmd = Command::new(&clang.path);
cmd.arg("-save-temps")
.arg("-E")
.arg("-C")
.arg("-c")
.arg(&wrapper_path)
.stdout(Stdio::piped());
for a in &self.options.clang_args {
cmd.arg(a);
}
let mut child = cmd.spawn()?;
let mut preprocessed = child.stdout.take().unwrap();
let mut file = File::create(if is_cpp {
"__bindgen.ii"
} else {
"__bindgen.i"
})?;
io::copy(&mut preprocessed, &mut file)?;
if child.wait()?.success() {
Ok(())
} else {
Err(io::Error::new(io::ErrorKind::Other,
"clang exited with non-zero status"))
}
}
}
#[derive(Debug)]
#[deprecated]
pub struct BindgenOptions {
pub hidden_types: RegexSet,
pub opaque_types: RegexSet,
pub whitelisted_types: RegexSet,
pub whitelisted_functions: RegexSet,
pub whitelisted_vars: RegexSet,
pub bitfield_enums: RegexSet,
pub constified_enums: RegexSet,
pub constified_enum_modules: RegexSet,
pub builtins: bool,
pub links: Vec<(String, LinkType)>,
pub emit_ast: bool,
pub emit_ir: bool,
pub emit_ir_graphviz: Option<String>,
pub enable_cxx_namespaces: bool,
pub disable_name_namespacing: bool,
pub layout_tests: bool,
pub derive_debug: bool,
pub derive_default: bool,
pub unstable_rust: bool,
pub use_core: bool,
pub ctypes_prefix: Option<String>,
pub namespaced_constants: bool,
pub msvc_mangling: bool,
pub convert_floats: bool,
pub raw_lines: Vec<String>,
pub clang_args: Vec<String>,
pub input_header: Option<String>,
pub input_unsaved_files: Vec<clang::UnsavedFile>,
pub dummy_uses: Option<String>,
pub parse_callbacks: Option<Box<callbacks::ParseCallbacks>>,
pub codegen_config: CodegenConfig,
pub conservative_inline_namespaces: bool,
pub generate_comments: bool,
pub generate_inline_functions: bool,
pub whitelist_recursively: bool,
pub objc_extern_crate: bool,
pub enable_mangling: bool,
pub prepend_enum_name: bool,
}
impl ::std::panic::UnwindSafe for BindgenOptions {}
impl BindgenOptions {
fn build(&mut self) {
self.whitelisted_vars.build();
self.whitelisted_types.build();
self.whitelisted_functions.build();
self.hidden_types.build();
self.opaque_types.build();
self.bitfield_enums.build();
self.constified_enum_modules.build();
self.constified_enums.build();
}
}
impl Default for BindgenOptions {
fn default() -> BindgenOptions {
BindgenOptions {
hidden_types: Default::default(),
opaque_types: Default::default(),
whitelisted_types: Default::default(),
whitelisted_functions: Default::default(),
whitelisted_vars: Default::default(),
bitfield_enums: Default::default(),
constified_enums: Default::default(),
constified_enum_modules: Default::default(),
builtins: false,
links: vec![],
emit_ast: false,
emit_ir: false,
emit_ir_graphviz: None,
layout_tests: true,
derive_debug: true,
derive_default: false,
enable_cxx_namespaces: false,
disable_name_namespacing: false,
unstable_rust: false,
use_core: false,
ctypes_prefix: None,
namespaced_constants: true,
msvc_mangling: false,
convert_floats: true,
raw_lines: vec![],
clang_args: vec![],
input_header: None,
input_unsaved_files: vec![],
dummy_uses: None,
parse_callbacks: None,
codegen_config: CodegenConfig::all(),
conservative_inline_namespaces: false,
generate_comments: true,
generate_inline_functions: false,
whitelist_recursively: true,
objc_extern_crate: false,
enable_mangling: true,
prepend_enum_name: true,
}
}
}
#[derive(Debug, Copy, Clone, PartialEq, Eq, PartialOrd, Ord)]
pub enum LinkType {
Default,
Static,
Framework,
}
fn ensure_libclang_is_loaded() {
if clang_sys::is_loaded() {
return;
}
lazy_static! {
static ref LIBCLANG: Arc<clang_sys::SharedLibrary> = {
clang_sys::load().expect("Unable to find libclang");
clang_sys::get_library()
.expect("We just loaded libclang and it had better still be \
here!")
};
}
clang_sys::set_library(Some(LIBCLANG.clone()));
}
#[derive(Debug)]
pub struct Bindings<'ctx> {
context: BindgenContext<'ctx>,
module: ast::Mod,
}
impl<'ctx> Bindings<'ctx> {
#[deprecated]
pub fn generate(mut options: BindgenOptions,
span: Option<Span>)
-> Result<Bindings<'ctx>, ()> {
let span = span.unwrap_or(DUMMY_SP);
ensure_libclang_is_loaded();
options.build();
let clang_args_for_clang_sys = {
let mut last_was_include_prefix = false;
options.clang_args.iter().filter(|arg| {
if last_was_include_prefix {
last_was_include_prefix = false;
return false;
}
let arg = &**arg;
if arg == "-I" || arg == "--include-directory" {
last_was_include_prefix = true;
return false;
}
if arg.starts_with("-I") || arg.starts_with("--include-directory=") {
return false;
}
true
}).cloned().collect::<Vec<_>>()
};
if let Some(clang) = clang_sys::support::Clang::find(None, &clang_args_for_clang_sys) {
let has_target_arg = options.clang_args
.iter()
.rposition(|arg| arg.starts_with("--target"))
.is_some();
if !has_target_arg {
if let Some(cpp_search_paths) = clang.cpp_search_paths {
for path in cpp_search_paths.into_iter() {
if let Ok(path) = path.into_os_string().into_string() {
options.clang_args.push("-isystem".to_owned());
options.clang_args.push(path);
}
}
}
}
}
if let Some(h) = options.input_header.as_ref() {
options.clang_args.push(h.clone())
}
for f in options.input_unsaved_files.iter() {
options.clang_args.push(f.name.to_str().unwrap().to_owned())
}
let mut context = BindgenContext::new(options);
try!(parse(&mut context));
let module = ast::Mod {
inner: span,
items: codegen::codegen(&mut context),
};
Ok(Bindings {
context: context,
module: module,
})
}
pub fn into_ast(self) -> Vec<P<ast::Item>> {
self.module.items
}
pub fn to_string(&self) -> String {
let mut mod_str = vec![];
{
let ref_writer = Box::new(mod_str.by_ref()) as Box<Write>;
self.write(ref_writer).expect("Could not write bindings to string");
}
String::from_utf8(mod_str).unwrap()
}
pub fn write_to_file<P: AsRef<Path>>(&self, path: P) -> io::Result<()> {
let file = try!(OpenOptions::new()
.write(true)
.truncate(true)
.create(true)
.open(path));
self.write(Box::new(file))
}
pub fn write<'a>(&self, mut writer: Box<Write + 'a>) -> io::Result<()> {
try!(writer.write("/* automatically generated by rust-bindgen */\n\n"
.as_bytes()));
for line in self.context.options().raw_lines.iter() {
try!(writer.write(line.as_bytes()));
try!(writer.write("\n".as_bytes()));
}
if !self.context.options().raw_lines.is_empty() {
try!(writer.write("\n".as_bytes()));
}
let mut ps = pprust::rust_printer(writer);
try!(ps.print_mod(&self.module, &[]));
try!(ps.print_remaining_comments());
try!(eof(&mut ps.s));
ps.s.out.flush()
}
pub fn write_dummy_uses(&mut self) -> io::Result<()> {
let file = if let Some(ref dummy_path) =
self.context.options().dummy_uses {
Some(try!(OpenOptions::new()
.write(true)
.truncate(true)
.create(true)
.open(dummy_path)))
} else {
None
};
if let Some(file) = file {
try!(uses::generate_dummy_uses(&mut self.context, file));
}
Ok(())
}
}
fn filter_builtins(ctx: &BindgenContext, cursor: &clang::Cursor) -> bool {
ctx.options().builtins || !cursor.is_builtin()
}
pub fn parse_one(ctx: &mut BindgenContext,
cursor: clang::Cursor,
parent: Option<ItemId>)
-> clang_sys::CXChildVisitResult {
if !filter_builtins(ctx, &cursor) {
return CXChildVisit_Continue;
}
use clang_sys::CXChildVisit_Continue;
match Item::parse(cursor, parent, ctx) {
Ok(..) => {}
Err(ParseError::Continue) => {}
Err(ParseError::Recurse) => {
cursor.visit(|child| parse_one(ctx, child, parent));
}
}
CXChildVisit_Continue
}
fn parse(context: &mut BindgenContext) -> Result<(), ()> {
use clang_sys::*;
let mut any_error = false;
for d in context.translation_unit().diags().iter() {
let msg = d.format();
let is_err = d.severity() >= CXDiagnostic_Error;
println!("{}, err: {}", msg, is_err);
any_error |= is_err;
}
if any_error {
return Err(());
}
let cursor = context.translation_unit().cursor();
if context.options().emit_ast {
fn dump_if_not_builtin(cur: &clang::Cursor) -> CXChildVisitResult {
if !cur.is_builtin() {
clang::ast_dump(&cur, 0)
} else {
CXChildVisit_Continue
}
}
cursor.visit(|cur| dump_if_not_builtin(&cur));
}
let root = context.root_module();
context.with_module(root, |context| {
cursor.visit(|cursor| parse_one(context, cursor, None))
});
assert!(context.current_module() == context.root_module(),
"How did this happen?");
Ok(())
}
#[derive(Debug)]
pub struct ClangVersion {
pub parsed: Option<(u32, u32)>,
pub full: String,
}
pub fn clang_version() -> ClangVersion {
if !clang_sys::is_loaded() {
clang_sys::load().expect("Unable to find libclang");
}
let raw_v: String = clang::extract_clang_version();
let split_v: Option<Vec<&str>> = raw_v.split_whitespace()
.nth(2)
.map(|v| v.split('.').collect());
match split_v {
Some(v) => {
if v.len() >= 2 {
let maybe_major = v[0].parse::<u32>();
let maybe_minor = v[1].parse::<u32>();
match (maybe_major, maybe_minor) {
(Ok(major), Ok(minor)) => {
return ClangVersion {
parsed: Some((major, minor)),
full: raw_v.clone(),
}
}
_ => {}
}
}
}
None => {}
};
ClangVersion {
parsed: None,
full: raw_v.clone(),
}
}
#[test]
fn commandline_flag_unit_test_function() {
let bindings = ::builder();
let command_line_flags = bindings.command_line_flags();
let test_cases = vec!["--no-derive-default",
"--generate", "function,types,vars,methods,constructors,destructors"]
.iter()
.map(|&x| x.into())
.collect::<Vec<String>>();
assert!(test_cases.iter().all(|ref x| command_line_flags.contains(x)) );
let bindings = ::builder().header("input_header")
.whitelisted_type("Distinct_Type")
.whitelisted_function("safe_function");
let command_line_flags = bindings.command_line_flags();
let test_cases = vec!["input_header",
"--no-derive-default",
"--generate", "function,types,vars,methods,constructors,destructors",
"--whitelist-type", "Distinct_Type",
"--whitelist-function", "safe_function"]
.iter()
.map(|&x| x.into())
.collect::<Vec<String>>();
println!("{:?}", command_line_flags);
assert!(test_cases.iter().all(|ref x| command_line_flags.contains(x)) );
}