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use libc::{c_char, c_int};
use std::{ptr};
use std::ffi::{CStr, CString};
use constants;
use constants::*;
use module::{PamItem, PamResult};
#[allow(missing_copy_implementations)]
pub enum AppDataPtr {}
#[repr(C)]
struct PamMessage {
msg_style: PamMessageStyle,
msg: *const c_char,
}
#[repr(C)]
struct PamResponse {
resp: *const c_char,
resp_retcode: AlwaysZero,
}
#[repr(C)]
pub struct PamConv {
conv: extern fn(num_msg: c_int,
pam_message: &&PamMessage,
pam_response: &*mut PamResponse,
appdata_ptr: *const AppDataPtr
) -> PamResultCode,
appdata_ptr: *const AppDataPtr,
}
impl PamConv {
pub fn send(&self, style: PamMessageStyle, msg: &str) -> PamResult<Option<String>> {
let resp_ptr: *mut PamResponse = ptr::null_mut();
let msg = PamMessage {
msg_style: style,
msg: CString::new(msg).unwrap().as_ptr(),
};
let ret = (self.conv)(1, &&msg, &resp_ptr, self.appdata_ptr);
if constants::PAM_SUCCESS == ret {
let s = unsafe { resp_ptr.as_ref() }
.and_then(|r| {
if r.resp.is_null() {
None
}
else {
let bytes = unsafe { CStr::from_ptr(r.resp).to_bytes() };
String::from_utf8(bytes.to_vec()).ok()
}
});
Ok(s)
} else {
Err(ret)
}
}
}
impl PamItem for PamConv {
fn item_type(_: Option<Self>) -> PamItemType { PAM_CONV }
}