// automatically generated by the FlatBuffers compiler, do not modify // @generated extern crate alloc; extern crate flatbuffers; use alloc::boxed::Box; use alloc::string::{String, ToString}; use alloc::vec::Vec; use core::mem; use core::cmp::Ordering; use self::flatbuffers::{EndianScalar, Follow}; use super::*; pub enum TableInCOffset {} #[derive(Copy, Clone, PartialEq)] pub struct TableInC<'a> { pub _tab: flatbuffers::Table<'a>, } impl<'a> flatbuffers::Follow<'a> for TableInC<'a> { type Inner = TableInC<'a>; #[inline] unsafe fn follow(buf: &'a [u8], loc: usize) -> Self::Inner { Self { _tab: flatbuffers::Table::new(buf, loc) } } } impl<'a> TableInC<'a> { pub const VT_REFER_TO_A1: flatbuffers::VOffsetT = 4; pub const VT_REFER_TO_A2: flatbuffers::VOffsetT = 6; pub const fn get_fully_qualified_name() -> &'static str { "NamespaceC.TableInC" } #[inline] pub unsafe fn init_from_table(table: flatbuffers::Table<'a>) -> Self { TableInC { _tab: table } } #[allow(unused_mut)] pub fn create<'bldr: 'args, 'args: 'mut_bldr, 'mut_bldr>( _fbb: &'mut_bldr mut flatbuffers::FlatBufferBuilder<'bldr>, args: &'args TableInCArgs<'args> ) -> flatbuffers::WIPOffset> { let mut builder = TableInCBuilder::new(_fbb); if let Some(x) = args.refer_to_a2 { builder.add_refer_to_a2(x); } if let Some(x) = args.refer_to_a1 { builder.add_refer_to_a1(x); } builder.finish() } pub fn unpack(&self) -> TableInCT { let refer_to_a1 = self.refer_to_a1().map(|x| { Box::new(x.unpack()) }); let refer_to_a2 = self.refer_to_a2().map(|x| { Box::new(x.unpack()) }); TableInCT { refer_to_a1, refer_to_a2, } } #[inline] pub fn refer_to_a1(&self) -> Option> { // Safety: // Created from valid Table for this object // which contains a valid value in this slot unsafe { self._tab.get::>(TableInC::VT_REFER_TO_A1, None)} } #[inline] pub fn refer_to_a2(&self) -> Option> { // Safety: // Created from valid Table for this object // which contains a valid value in this slot unsafe { self._tab.get::>(TableInC::VT_REFER_TO_A2, None)} } } impl flatbuffers::Verifiable for TableInC<'_> { #[inline] fn run_verifier( v: &mut flatbuffers::Verifier, pos: usize ) -> Result<(), flatbuffers::InvalidFlatbuffer> { use self::flatbuffers::Verifiable; v.visit_table(pos)? .visit_field::>("refer_to_a1", Self::VT_REFER_TO_A1, false)? .visit_field::>("refer_to_a2", Self::VT_REFER_TO_A2, false)? .finish(); Ok(()) } } pub struct TableInCArgs<'a> { pub refer_to_a1: Option>>, pub refer_to_a2: Option>>, } impl<'a> Default for TableInCArgs<'a> { #[inline] fn default() -> Self { TableInCArgs { refer_to_a1: None, refer_to_a2: None, } } } pub struct TableInCBuilder<'a: 'b, 'b> { fbb_: &'b mut flatbuffers::FlatBufferBuilder<'a>, start_: flatbuffers::WIPOffset, } impl<'a: 'b, 'b> TableInCBuilder<'a, 'b> { #[inline] pub fn add_refer_to_a1(&mut self, refer_to_a1: flatbuffers::WIPOffset>) { self.fbb_.push_slot_always::>(TableInC::VT_REFER_TO_A1, refer_to_a1); } #[inline] pub fn add_refer_to_a2(&mut self, refer_to_a2: flatbuffers::WIPOffset>) { self.fbb_.push_slot_always::>(TableInC::VT_REFER_TO_A2, refer_to_a2); } #[inline] pub fn new(_fbb: &'b mut flatbuffers::FlatBufferBuilder<'a>) -> TableInCBuilder<'a, 'b> { let start = _fbb.start_table(); TableInCBuilder { fbb_: _fbb, start_: start, } } #[inline] pub fn finish(self) -> flatbuffers::WIPOffset> { let o = self.fbb_.end_table(self.start_); flatbuffers::WIPOffset::new(o.value()) } } impl core::fmt::Debug for TableInC<'_> { fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result { let mut ds = f.debug_struct("TableInC"); ds.field("refer_to_a1", &self.refer_to_a1()); ds.field("refer_to_a2", &self.refer_to_a2()); ds.finish() } } #[non_exhaustive] #[derive(Debug, Clone, PartialEq)] pub struct TableInCT { pub refer_to_a1: Option>, pub refer_to_a2: Option>, } impl Default for TableInCT { fn default() -> Self { Self { refer_to_a1: None, refer_to_a2: None, } } } impl TableInCT { pub fn pack<'b>( &self, _fbb: &mut flatbuffers::FlatBufferBuilder<'b> ) -> flatbuffers::WIPOffset> { let refer_to_a1 = self.refer_to_a1.as_ref().map(|x|{ x.pack(_fbb) }); let refer_to_a2 = self.refer_to_a2.as_ref().map(|x|{ x.pack(_fbb) }); TableInC::create(_fbb, &TableInCArgs{ refer_to_a1, refer_to_a2, }) } }