// THIS FILE IS AUTOGENERATED. // Any changes to this file will be overwritten. // For more information about how codegen works, see font-codegen/README.md #[allow(unused_imports)] use crate::codegen_prelude::*; impl<'a> MinByteRange<'a> for BasicTable<'a> { fn min_byte_range(&self) -> Range { 0..self.array_records_byte_range().end } fn min_table_bytes(&self) -> &'a [u8] { let range = self.min_byte_range(); self.data.as_bytes().get(range).unwrap_or_default() } } impl<'a> FontRead<'a> for BasicTable<'a> { fn read(data: FontData<'a>) -> Result { #[allow(clippy::absurd_extreme_comparisons)] if data.len() < Self::MIN_SIZE { return Err(ReadError::OutOfBounds); } Ok(Self { data }) } } #[derive(Clone)] pub struct BasicTable<'a> { data: FontData<'a>, } #[allow(clippy::needless_lifetimes)] impl<'a> BasicTable<'a> { pub const MIN_SIZE: usize = (u16::RAW_BYTE_LEN + u16::RAW_BYTE_LEN + u32::RAW_BYTE_LEN); basic_table_impls!(impl_the_methods); pub fn simple_count(&self) -> u16 { let range = self.simple_count_byte_range(); self.data.read_at(range.start).ok().unwrap() } pub fn simple_records(&self) -> &'a [SimpleRecord] { let range = self.simple_records_byte_range(); self.data.read_array(range).ok().unwrap_or_default() } pub fn arrays_inner_count(&self) -> u16 { let range = self.arrays_inner_count_byte_range(); self.data.read_at(range.start).ok().unwrap_or_default() } pub fn array_records_count(&self) -> u32 { let range = self.array_records_count_byte_range(); self.data.read_at(range.start).ok().unwrap_or_default() } pub fn array_records(&self) -> ComputedArray<'a, ContainsArrays<'a>> { let range = self.array_records_byte_range(); self.data .read_with_args(range, &self.arrays_inner_count()) .unwrap_or_default() } pub fn simple_count_byte_range(&self) -> Range { let start = 0; let end = start + u16::RAW_BYTE_LEN; start..end } pub fn simple_records_byte_range(&self) -> Range { let simple_count = self.simple_count(); let start = self.simple_count_byte_range().end; let end = start + (transforms::to_usize(simple_count)).saturating_mul(SimpleRecord::RAW_BYTE_LEN); start..end } pub fn arrays_inner_count_byte_range(&self) -> Range { let start = self.simple_records_byte_range().end; let end = start + u16::RAW_BYTE_LEN; start..end } pub fn array_records_count_byte_range(&self) -> Range { let start = self.arrays_inner_count_byte_range().end; let end = start + u32::RAW_BYTE_LEN; start..end } pub fn array_records_byte_range(&self) -> Range { let array_records_count = self.array_records_count(); let start = self.array_records_count_byte_range().end; let end = start + (transforms::to_usize(array_records_count)).saturating_mul( ::compute_size(&self.arrays_inner_count()) .unwrap_or(0), ); start..end } } const _: () = assert!(FontData::default_data_long_enough(BasicTable::MIN_SIZE)); impl Default for BasicTable<'_> { fn default() -> Self { Self { data: FontData::default_table_data(), } } } #[cfg(feature = "experimental_traverse")] impl<'a> SomeTable<'a> for BasicTable<'a> { fn type_name(&self) -> &str { "BasicTable" } fn get_field(&self, idx: usize) -> Option> { match idx { 0usize => Some(Field::new("simple_count", self.simple_count())), 1usize => Some(Field::new( "simple_records", traversal::FieldType::array_of_records( stringify!(SimpleRecord), self.simple_records(), self.offset_data(), ), )), 2usize => Some(Field::new("arrays_inner_count", self.arrays_inner_count())), 3usize => Some(Field::new( "array_records_count", self.array_records_count(), )), 4usize => Some(Field::new( "array_records", traversal::FieldType::computed_array( "ContainsArrays", self.array_records(), self.offset_data(), ), )), _ => None, } } } #[cfg(feature = "experimental_traverse")] #[allow(clippy::needless_lifetimes)] impl<'a> std::fmt::Debug for BasicTable<'a> { fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result { (self as &dyn SomeTable<'a>).fmt(f) } } #[derive(Clone, Debug, PartialEq, Eq, PartialOrd, Ord, Hash, Copy, bytemuck :: AnyBitPattern)] #[repr(C)] #[repr(packed)] pub struct SimpleRecord { pub val1: BigEndian, pub va2: BigEndian, } impl SimpleRecord { pub fn val1(&self) -> u16 { self.val1.get() } pub fn va2(&self) -> u32 { self.va2.get() } } impl FixedSize for SimpleRecord { const RAW_BYTE_LEN: usize = u16::RAW_BYTE_LEN + u32::RAW_BYTE_LEN; } #[cfg(feature = "experimental_traverse")] impl<'a> SomeRecord<'a> for SimpleRecord { fn traverse(self, data: FontData<'a>) -> RecordResolver<'a> { RecordResolver { name: "SimpleRecord", get_field: Box::new(move |idx, _data| match idx { 0usize => Some(Field::new("val1", self.val1())), 1usize => Some(Field::new("va2", self.va2())), _ => None, }), data, } } } #[derive(Clone, Debug, PartialEq, Eq, PartialOrd, Ord, Hash)] pub struct ContainsArrays<'a> { pub scalars: &'a [BigEndian], pub records: &'a [SimpleRecord], } impl<'a> ContainsArrays<'a> { pub fn scalars(&self) -> &'a [BigEndian] { self.scalars } pub fn records(&self) -> &'a [SimpleRecord] { self.records } } impl ReadArgs for ContainsArrays<'_> { type Args = u16; } impl ComputeSize for ContainsArrays<'_> { #[allow(clippy::needless_question_mark)] fn compute_size(args: &u16) -> Result { let array_len = *args; let mut result = 0usize; result = result .checked_add((transforms::to_usize(array_len)).saturating_mul(u16::RAW_BYTE_LEN)) .ok_or(ReadError::OutOfBounds)?; result = result .checked_add( (transforms::to_usize(array_len)).saturating_mul(SimpleRecord::RAW_BYTE_LEN), ) .ok_or(ReadError::OutOfBounds)?; Ok(result) } } impl<'a> FontReadWithArgs<'a> for ContainsArrays<'a> { fn read_with_args(data: FontData<'a>, args: &u16) -> Result { let mut cursor = data.cursor(); let array_len = *args; Ok(Self { scalars: cursor.read_array(transforms::to_usize(array_len))?, records: cursor.read_array(transforms::to_usize(array_len))?, }) } } #[allow(clippy::needless_lifetimes)] impl<'a> ContainsArrays<'a> { /// A constructor that requires additional arguments. /// /// This type requires some external state in order to be /// parsed. pub fn read(data: FontData<'a>, array_len: u16) -> Result { let args = array_len; Self::read_with_args(data, &args) } } #[cfg(feature = "experimental_traverse")] impl<'a> SomeRecord<'a> for ContainsArrays<'a> { fn traverse(self, data: FontData<'a>) -> RecordResolver<'a> { RecordResolver { name: "ContainsArrays", get_field: Box::new(move |idx, _data| match idx { 0usize => Some(Field::new("scalars", self.scalars())), 1usize => Some(Field::new( "records", traversal::FieldType::array_of_records( stringify!(SimpleRecord), self.records(), _data, ), )), _ => None, }), data, } } } #[derive(Clone, Debug, Copy, bytemuck :: AnyBitPattern)] #[repr(C)] #[repr(packed)] pub struct ContainsOffsets { pub off_array_count: BigEndian, pub array_offset: BigEndian, pub other_offset: BigEndian, } impl ContainsOffsets { pub fn off_array_count(&self) -> u16 { self.off_array_count.get() } pub fn array_offset(&self) -> Offset16 { self.array_offset.get() } /// /// The `data` argument should be retrieved from the parent table /// By calling its `offset_data` method. pub fn array<'a>(&self, data: FontData<'a>) -> Result<&'a [SimpleRecord], ReadError> { let args = self.off_array_count(); self.array_offset().resolve_with_args(data, &args) } pub fn other_offset(&self) -> Offset32 { self.other_offset.get() } /// /// The `data` argument should be retrieved from the parent table /// By calling its `offset_data` method. pub fn other<'a>(&self, data: FontData<'a>) -> Result, ReadError> { self.other_offset().resolve(data) } } impl FixedSize for ContainsOffsets { const RAW_BYTE_LEN: usize = u16::RAW_BYTE_LEN + Offset16::RAW_BYTE_LEN + Offset32::RAW_BYTE_LEN; } #[cfg(feature = "experimental_traverse")] impl<'a> SomeRecord<'a> for ContainsOffsets { fn traverse(self, data: FontData<'a>) -> RecordResolver<'a> { RecordResolver { name: "ContainsOffsets", get_field: Box::new(move |idx, _data| match idx { 0usize => Some(Field::new("off_array_count", self.off_array_count())), 1usize => Some(Field::new( "array_offset", traversal::FieldType::offset_to_array_of_records( self.array_offset(), self.array(_data), stringify!(SimpleRecord), _data, ), )), 2usize => Some(Field::new( "other_offset", FieldType::offset(self.other_offset(), self.other(_data)), )), _ => None, }), data, } } } impl<'a> MinByteRange<'a> for VarLenItem<'a> { fn min_byte_range(&self) -> Range { 0..self.data_byte_range().end } fn min_table_bytes(&self) -> &'a [u8] { let range = self.min_byte_range(); self.data.as_bytes().get(range).unwrap_or_default() } } impl<'a> FontRead<'a> for VarLenItem<'a> { fn read(data: FontData<'a>) -> Result { #[allow(clippy::absurd_extreme_comparisons)] if data.len() < Self::MIN_SIZE { return Err(ReadError::OutOfBounds); } Ok(Self { data }) } } #[derive(Clone)] pub struct VarLenItem<'a> { data: FontData<'a>, } #[allow(clippy::needless_lifetimes)] impl<'a> VarLenItem<'a> { pub const MIN_SIZE: usize = u32::RAW_BYTE_LEN; basic_table_impls!(impl_the_methods); pub fn length(&self) -> u32 { let range = self.length_byte_range(); self.data.read_at(range.start).ok().unwrap() } pub fn data(&self) -> &'a [u8] { let range = self.data_byte_range(); self.data.read_array(range).ok().unwrap_or_default() } pub fn length_byte_range(&self) -> Range { let start = 0; let end = start + u32::RAW_BYTE_LEN; start..end } pub fn data_byte_range(&self) -> Range { let start = self.length_byte_range().end; let end = start + self.data.len().saturating_sub(start) / u8::RAW_BYTE_LEN * u8::RAW_BYTE_LEN; start..end } } const _: () = assert!(FontData::default_data_long_enough(VarLenItem::MIN_SIZE)); impl Default for VarLenItem<'_> { fn default() -> Self { Self { data: FontData::default_table_data(), } } } #[cfg(feature = "experimental_traverse")] impl<'a> SomeTable<'a> for VarLenItem<'a> { fn type_name(&self) -> &str { "VarLenItem" } fn get_field(&self, idx: usize) -> Option> { match idx { 0usize => Some(Field::new("length", self.length())), 1usize => Some(Field::new("data", self.data())), _ => None, } } } #[cfg(feature = "experimental_traverse")] #[allow(clippy::needless_lifetimes)] impl<'a> std::fmt::Debug for VarLenItem<'a> { fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result { (self as &dyn SomeTable<'a>).fmt(f) } }