blob: 1753ef8d02f17a84a7343265444b45e7bd3fe80d [file] [log] [blame]
#![allow(
dead_code,
non_snake_case,
non_camel_case_types,
non_upper_case_globals
)]
#[repr(C)]
#[derive(Copy, Clone, Debug, Default, Eq, Hash, Ord, PartialEq, PartialOrd)]
pub struct __BindgenBitfieldUnit<Storage> {
storage: Storage,
}
impl<Storage> __BindgenBitfieldUnit<Storage> {
#[inline]
pub const fn new(storage: Storage) -> Self {
Self { storage }
}
}
impl<Storage> __BindgenBitfieldUnit<Storage>
where
Storage: AsRef<[u8]> + AsMut<[u8]>,
{
#[inline]
pub fn get_bit(&self, index: usize) -> bool {
debug_assert!(index / 8 < self.storage.as_ref().len());
let byte_index = index / 8;
let byte = self.storage.as_ref()[byte_index];
let bit_index = if cfg!(target_endian = "big") {
7 - (index % 8)
} else {
index % 8
};
let mask = 1 << bit_index;
byte & mask == mask
}
#[inline]
pub fn set_bit(&mut self, index: usize, val: bool) {
debug_assert!(index / 8 < self.storage.as_ref().len());
let byte_index = index / 8;
let byte = &mut self.storage.as_mut()[byte_index];
let bit_index = if cfg!(target_endian = "big") {
7 - (index % 8)
} else {
index % 8
};
let mask = 1 << bit_index;
if val {
*byte |= mask;
} else {
*byte &= !mask;
}
}
#[inline]
pub fn get(&self, bit_offset: usize, bit_width: u8) -> u64 {
debug_assert!(bit_width <= 64);
debug_assert!(bit_offset / 8 < self.storage.as_ref().len());
debug_assert!(
(bit_offset + (bit_width as usize)) / 8 <=
self.storage.as_ref().len()
);
let mut val = 0;
for i in 0..(bit_width as usize) {
if self.get_bit(i + bit_offset) {
let index = if cfg!(target_endian = "big") {
bit_width as usize - 1 - i
} else {
i
};
val |= 1 << index;
}
}
val
}
#[inline]
pub fn set(&mut self, bit_offset: usize, bit_width: u8, val: u64) {
debug_assert!(bit_width <= 64);
debug_assert!(bit_offset / 8 < self.storage.as_ref().len());
debug_assert!(
(bit_offset + (bit_width as usize)) / 8 <=
self.storage.as_ref().len()
);
for i in 0..(bit_width as usize) {
let mask = 1 << i;
let val_bit_is_set = val & mask == mask;
let index = if cfg!(target_endian = "big") {
bit_width as usize - 1 - i
} else {
i
};
self.set_bit(index + bit_offset, val_bit_is_set);
}
}
}
pub type U8 = ::std::os::raw::c_uchar;
pub type U16 = ::std::os::raw::c_ushort;
#[repr(C)]
#[repr(align(2))]
#[derive(Debug, Default, Copy, Clone)]
pub struct V56AMDY {
pub _bitfield_align_1: [u16; 0],
pub _bitfield_1: __BindgenBitfieldUnit<[u8; 2usize]>,
pub MADK: U8,
pub MABR: U8,
pub _bitfield_align_2: [u16; 0],
pub _bitfield_2: __BindgenBitfieldUnit<[u8; 3usize]>,
pub _rB_: U8,
}
#[test]
fn bindgen_test_layout_V56AMDY() {
assert_eq!(
::std::mem::size_of::<V56AMDY>(),
8usize,
concat!("Size of: ", stringify!(V56AMDY))
);
assert_eq!(
::std::mem::align_of::<V56AMDY>(),
2usize,
concat!("Alignment of ", stringify!(V56AMDY))
);
assert_eq!(
unsafe {
&(*(::std::ptr::null::<V56AMDY>())).MADK as *const _ as usize
},
2usize,
concat!(
"Offset of field: ",
stringify!(V56AMDY),
"::",
stringify!(MADK)
)
);
assert_eq!(
unsafe {
&(*(::std::ptr::null::<V56AMDY>())).MABR as *const _ as usize
},
3usize,
concat!(
"Offset of field: ",
stringify!(V56AMDY),
"::",
stringify!(MABR)
)
);
assert_eq!(
unsafe {
&(*(::std::ptr::null::<V56AMDY>()))._rB_ as *const _ as usize
},
7usize,
concat!(
"Offset of field: ",
stringify!(V56AMDY),
"::",
stringify!(_rB_)
)
);
}
impl V56AMDY {
#[inline]
pub fn MADZ(&self) -> U16 {
unsafe {
::std::mem::transmute(self._bitfield_1.get(0usize, 10u8) as u16)
}
}
#[inline]
pub fn set_MADZ(&mut self, val: U16) {
unsafe {
let val: u16 = ::std::mem::transmute(val);
self._bitfield_1.set(0usize, 10u8, val as u64)
}
}
#[inline]
pub fn MAI0(&self) -> U16 {
unsafe {
::std::mem::transmute(self._bitfield_1.get(10usize, 2u8) as u16)
}
}
#[inline]
pub fn set_MAI0(&mut self, val: U16) {
unsafe {
let val: u16 = ::std::mem::transmute(val);
self._bitfield_1.set(10usize, 2u8, val as u64)
}
}
#[inline]
pub fn MAI1(&self) -> U16 {
unsafe {
::std::mem::transmute(self._bitfield_1.get(12usize, 2u8) as u16)
}
}
#[inline]
pub fn set_MAI1(&mut self, val: U16) {
unsafe {
let val: u16 = ::std::mem::transmute(val);
self._bitfield_1.set(12usize, 2u8, val as u64)
}
}
#[inline]
pub fn MAI2(&self) -> U16 {
unsafe {
::std::mem::transmute(self._bitfield_1.get(14usize, 2u8) as u16)
}
}
#[inline]
pub fn set_MAI2(&mut self, val: U16) {
unsafe {
let val: u16 = ::std::mem::transmute(val);
self._bitfield_1.set(14usize, 2u8, val as u64)
}
}
#[inline]
pub fn new_bitfield_1(
MADZ: U16,
MAI0: U16,
MAI1: U16,
MAI2: U16,
) -> __BindgenBitfieldUnit<[u8; 2usize]> {
let mut __bindgen_bitfield_unit: __BindgenBitfieldUnit<[u8; 2usize]> =
Default::default();
__bindgen_bitfield_unit.set(0usize, 10u8, {
let MADZ: u16 = unsafe { ::std::mem::transmute(MADZ) };
MADZ as u64
});
__bindgen_bitfield_unit.set(10usize, 2u8, {
let MAI0: u16 = unsafe { ::std::mem::transmute(MAI0) };
MAI0 as u64
});
__bindgen_bitfield_unit.set(12usize, 2u8, {
let MAI1: u16 = unsafe { ::std::mem::transmute(MAI1) };
MAI1 as u64
});
__bindgen_bitfield_unit.set(14usize, 2u8, {
let MAI2: u16 = unsafe { ::std::mem::transmute(MAI2) };
MAI2 as u64
});
__bindgen_bitfield_unit
}
#[inline]
pub fn MATH(&self) -> U16 {
unsafe {
::std::mem::transmute(self._bitfield_2.get(0usize, 10u8) as u16)
}
}
#[inline]
pub fn set_MATH(&mut self, val: U16) {
unsafe {
let val: u16 = ::std::mem::transmute(val);
self._bitfield_2.set(0usize, 10u8, val as u64)
}
}
#[inline]
pub fn MATE(&self) -> U16 {
unsafe {
::std::mem::transmute(self._bitfield_2.get(10usize, 4u8) as u16)
}
}
#[inline]
pub fn set_MATE(&mut self, val: U16) {
unsafe {
let val: u16 = ::std::mem::transmute(val);
self._bitfield_2.set(10usize, 4u8, val as u64)
}
}
#[inline]
pub fn MATW(&self) -> U16 {
unsafe {
::std::mem::transmute(self._bitfield_2.get(14usize, 2u8) as u16)
}
}
#[inline]
pub fn set_MATW(&mut self, val: U16) {
unsafe {
let val: u16 = ::std::mem::transmute(val);
self._bitfield_2.set(14usize, 2u8, val as u64)
}
}
#[inline]
pub fn MASW(&self) -> U8 {
unsafe {
::std::mem::transmute(self._bitfield_2.get(16usize, 4u8) as u8)
}
}
#[inline]
pub fn set_MASW(&mut self, val: U8) {
unsafe {
let val: u8 = ::std::mem::transmute(val);
self._bitfield_2.set(16usize, 4u8, val as u64)
}
}
#[inline]
pub fn MABW(&self) -> U8 {
unsafe {
::std::mem::transmute(self._bitfield_2.get(20usize, 3u8) as u8)
}
}
#[inline]
pub fn set_MABW(&mut self, val: U8) {
unsafe {
let val: u8 = ::std::mem::transmute(val);
self._bitfield_2.set(20usize, 3u8, val as u64)
}
}
#[inline]
pub fn MAXN(&self) -> U8 {
unsafe {
::std::mem::transmute(self._bitfield_2.get(23usize, 1u8) as u8)
}
}
#[inline]
pub fn set_MAXN(&mut self, val: U8) {
unsafe {
let val: u8 = ::std::mem::transmute(val);
self._bitfield_2.set(23usize, 1u8, val as u64)
}
}
#[inline]
pub fn new_bitfield_2(
MATH: U16,
MATE: U16,
MATW: U16,
MASW: U8,
MABW: U8,
MAXN: U8,
) -> __BindgenBitfieldUnit<[u8; 3usize]> {
let mut __bindgen_bitfield_unit: __BindgenBitfieldUnit<[u8; 3usize]> =
Default::default();
__bindgen_bitfield_unit.set(0usize, 10u8, {
let MATH: u16 = unsafe { ::std::mem::transmute(MATH) };
MATH as u64
});
__bindgen_bitfield_unit.set(10usize, 4u8, {
let MATE: u16 = unsafe { ::std::mem::transmute(MATE) };
MATE as u64
});
__bindgen_bitfield_unit.set(14usize, 2u8, {
let MATW: u16 = unsafe { ::std::mem::transmute(MATW) };
MATW as u64
});
__bindgen_bitfield_unit.set(16usize, 4u8, {
let MASW: u8 = unsafe { ::std::mem::transmute(MASW) };
MASW as u64
});
__bindgen_bitfield_unit.set(20usize, 3u8, {
let MABW: u8 = unsafe { ::std::mem::transmute(MABW) };
MABW as u64
});
__bindgen_bitfield_unit.set(23usize, 1u8, {
let MAXN: u8 = unsafe { ::std::mem::transmute(MAXN) };
MAXN as u64
});
__bindgen_bitfield_unit
}
}