use super::*;
use super::super::super::*;
use crate::msg::*;
use crate::rcl;
extern "C" {
fn std_msgs__msg__UInt32MultiArray__init(msg: *mut UInt32MultiArray) -> bool;
fn std_msgs__msg__UInt32MultiArray__fini(msg: *mut UInt32MultiArray);
fn std_msgs__msg__UInt32MultiArray__are_equal(lhs: *const UInt32MultiArray, rhs: *const UInt32MultiArray) -> bool;
fn std_msgs__msg__UInt32MultiArray__Sequence__init(msg: *mut UInt32MultiArraySeqRaw, size: usize) -> bool;
fn std_msgs__msg__UInt32MultiArray__Sequence__fini(msg: *mut UInt32MultiArraySeqRaw);
fn std_msgs__msg__UInt32MultiArray__Sequence__are_equal(lhs: *const UInt32MultiArraySeqRaw, rhs: *const UInt32MultiArraySeqRaw) -> bool;
fn rosidl_typesupport_c__get_message_type_support_handle__std_msgs__msg__UInt32MultiArray() -> *const rcl::rosidl_message_type_support_t;
}
#[repr(C)]
#[derive(Debug)]
pub struct UInt32MultiArray {
pub layout: MultiArrayLayout,
pub data: crate::msg::U32Seq<0>,
}
impl UInt32MultiArray {
pub fn new() -> Option<Self> {
let mut msg: Self = unsafe { std::mem::MaybeUninit::zeroed().assume_init() };
if unsafe { std_msgs__msg__UInt32MultiArray__init(&mut msg) } {
Some(msg)
} else {
None
}
}
}
impl Drop for UInt32MultiArray {
fn drop(&mut self) {
unsafe { std_msgs__msg__UInt32MultiArray__fini(self) };
}
}
#[repr(C)]
#[derive(Debug)]
struct UInt32MultiArraySeqRaw {
data: *mut UInt32MultiArray,
size: usize,
capacity: usize,
}
#[repr(C)]
#[derive(Debug)]
pub struct UInt32MultiArraySeq<const N: usize> {
data: *mut UInt32MultiArray,
size: usize,
capacity: usize,
}
impl<const N: usize> UInt32MultiArraySeq<N> {
pub fn new(size: usize) -> Option<Self> {
if N != 0 && size >= N {
return None;
}
let mut msg: UInt32MultiArraySeqRaw = unsafe { std::mem::MaybeUninit::zeroed().assume_init() };
if unsafe { std_msgs__msg__UInt32MultiArray__Sequence__init(&mut msg, size) } {
Some(Self {data: msg.data, size: msg.size, capacity: msg.capacity })
} else {
None
}
}
pub fn null() -> Self {
let msg: UInt32MultiArraySeqRaw = unsafe { std::mem::MaybeUninit::zeroed().assume_init() };
Self {data: msg.data, size: msg.size, capacity: msg.capacity }
}
pub fn as_slice(&self) -> &[UInt32MultiArray] {
if self.data.is_null() {
&[]
} else {
let s = unsafe { std::slice::from_raw_parts(self.data, self.size) };
s
}
}
pub fn as_slice_mut(&mut self) -> &mut [UInt32MultiArray] {
if self.data.is_null() {
&mut []
} else {
let s = unsafe { std::slice::from_raw_parts_mut(self.data, self.size) };
s
}
}
pub fn iter(&self) -> std::slice::Iter<'_, UInt32MultiArray> {
self.as_slice().iter()
}
pub fn iter_mut(&mut self) -> std::slice::IterMut<'_, UInt32MultiArray> {
self.as_slice_mut().iter_mut()
}
pub fn len(&self) -> usize {
self.as_slice().len()
}
pub fn is_empty(&self) -> bool {
self.len() == 0
}
}
impl<const N: usize> Drop for UInt32MultiArraySeq<N> {
fn drop(&mut self) {
let mut msg = UInt32MultiArraySeqRaw{data: self.data, size: self.size, capacity: self.capacity};
unsafe { std_msgs__msg__UInt32MultiArray__Sequence__fini(&mut msg) };
}
}
unsafe impl<const N: usize> Send for UInt32MultiArraySeq<N> {}
unsafe impl<const N: usize> Sync for UInt32MultiArraySeq<N> {}
impl TypeSupport for UInt32MultiArray {
fn type_support() -> *const rcl::rosidl_message_type_support_t {
unsafe {
rosidl_typesupport_c__get_message_type_support_handle__std_msgs__msg__UInt32MultiArray()
}
}
}
impl PartialEq for UInt32MultiArray {
fn eq(&self, other: &Self) -> bool {
unsafe {
std_msgs__msg__UInt32MultiArray__are_equal(self, other)
}
}
}
impl<const N: usize> PartialEq for UInt32MultiArraySeq<N> {
fn eq(&self, other: &Self) -> bool {
unsafe {
let msg1 = UInt32MultiArraySeqRaw{data: self.data, size: self.size, capacity: self.capacity};
let msg2 = UInt32MultiArraySeqRaw{data: other.data, size: other.size, capacity: other.capacity};
std_msgs__msg__UInt32MultiArray__Sequence__are_equal(&msg1, &msg2)
}
}
}