#![allow(non_upper_case_globals)]
#![allow(non_camel_case_types)]
#![allow(non_snake_case)]
#![allow(improper_ctypes)]
include!(concat!(env!("OUT_DIR"), "/bindings.rs"));
#[non_exhaustive]
#[repr(transparent)]
#[derive(Debug)]
pub struct SEXPREC(std::ffi::c_void);
extern "C" {
pub fn TYPEOF(x: SEXP) -> SEXPTYPE;
}
#[allow(non_camel_case_types)]
pub type R_altrep_Coerce_method_t =
::std::option::Option<unsafe extern "C" fn(arg1: SEXP, arg2: SEXPTYPE) -> SEXP>;
pub unsafe fn Rf_isS4(arg1: SEXP) -> Rboolean {
unsafe {
if secret::Rf_isS4_original(arg1) == 0 {
Rboolean::FALSE
} else {
Rboolean::TRUE
}
}
}
mod secret {
use super::*;
extern "C" {
#[link_name = "Rf_isS4"]
pub fn Rf_isS4_original(arg1: SEXP) -> u32;
}
}
impl From<Rboolean> for bool {
fn from(value: Rboolean) -> Self {
match value {
Rboolean::FALSE => false,
Rboolean::TRUE => true,
}
}
}
impl From<bool> for Rboolean {
fn from(value: bool) -> Self {
match value {
true => Rboolean::TRUE,
false => Rboolean::FALSE,
}
}
}
#[cfg(test)]
mod tests {
use super::*;
use std::os::raw;
macro_rules! cstr {
($s: expr) => {
concat!($s, "\0").as_ptr() as *const raw::c_char
};
}
macro_rules! cstr_mut {
($s: expr) => {
concat!($s, "\0").as_ptr() as *mut raw::c_char
};
}
fn start_R() {
unsafe {
if std::env::var("R_HOME").is_err() {
std::env::set_var("R_HOME", env!("R_HOME"));
}
if cfg!(target_os = "windows") && cfg!(target_arch = "x86") {
Rf_initialize_R(
4,
[
cstr_mut!("R"),
cstr_mut!("--arch=i386"),
cstr_mut!("--slave"),
cstr_mut!("--no-save"),
]
.as_mut_ptr(),
);
} else {
Rf_initialize_R(
3,
[cstr_mut!("R"), cstr_mut!("--slave"), cstr_mut!("--no-save")].as_mut_ptr(),
);
}
if cfg!(not(target_os = "windows")) {
R_CStackLimit = usize::max_value();
}
setup_Rmainloop();
}
}
#[test]
fn test_eval() {
start_R();
unsafe {
let val = Rf_protect(R_ParseEvalString(cstr!("1"), R_NilValue));
Rf_PrintValue(val);
assert_eq!(TYPEOF(val), SEXPTYPE::REALSXP);
assert_eq!(*REAL(val), 1.);
Rf_unprotect(1);
}
unsafe {
let sexp = R_ParseEvalString(cstr!(r#"new("factor")"#), R_GlobalEnv);
Rf_protect(sexp);
Rf_PrintValue(sexp);
assert_eq!(
std::mem::discriminant(&Rf_isS4(sexp)),
std::mem::discriminant(&Rboolean::TRUE),
);
assert!(<Rboolean as Into<bool>>::into(Rf_isS4(sexp)));
assert!(
(Rboolean::FALSE == Rf_isS4(sexp)) || (Rboolean::TRUE == Rf_isS4(sexp)),
"PartialEq implementation is broken"
);
assert!(Rboolean::TRUE == Rf_isS4(sexp));
assert_eq!(Rf_isS4(sexp), Rboolean::TRUE);
Rf_unprotect(1);
}
}
}