// 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 Dsig<'a> { fn min_byte_range(&self) -> Range { 0..self.signature_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 TopLevelTable for Dsig<'_> { /// `DSIG` const TAG: Tag = Tag::new(b"DSIG"); } impl<'a> FontRead<'a> for Dsig<'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 }) } } /// [DSIG (Digital Signature Table)](https://docs.microsoft.com/en-us/typography/opentype/spec/dsig#table-structure) table #[derive(Clone)] pub struct Dsig<'a> { data: FontData<'a>, } #[allow(clippy::needless_lifetimes)] impl<'a> Dsig<'a> { pub const MIN_SIZE: usize = (u32::RAW_BYTE_LEN + u16::RAW_BYTE_LEN + PermissionFlags::RAW_BYTE_LEN); basic_table_impls!(impl_the_methods); /// Version number of the DSIG table (0x00000001) pub fn version(&self) -> u32 { let range = self.version_byte_range(); self.data.read_at(range.start).ok().unwrap() } /// Number of signatures in the table pub fn num_signatures(&self) -> u16 { let range = self.num_signatures_byte_range(); self.data.read_at(range.start).ok().unwrap() } /// Permission flags pub fn flags(&self) -> PermissionFlags { let range = self.flags_byte_range(); self.data.read_at(range.start).ok().unwrap() } /// Array of signature records pub fn signature_records(&self) -> &'a [SignatureRecord] { let range = self.signature_records_byte_range(); self.data.read_array(range).ok().unwrap_or_default() } pub fn version_byte_range(&self) -> Range { let start = 0; let end = start + u32::RAW_BYTE_LEN; start..end } pub fn num_signatures_byte_range(&self) -> Range { let start = self.version_byte_range().end; let end = start + u16::RAW_BYTE_LEN; start..end } pub fn flags_byte_range(&self) -> Range { let start = self.num_signatures_byte_range().end; let end = start + PermissionFlags::RAW_BYTE_LEN; start..end } pub fn signature_records_byte_range(&self) -> Range { let num_signatures = self.num_signatures(); let start = self.flags_byte_range().end; let end = start + (transforms::to_usize(num_signatures)).saturating_mul(SignatureRecord::RAW_BYTE_LEN); start..end } } const _: () = assert!(FontData::default_data_long_enough(Dsig::MIN_SIZE)); impl Default for Dsig<'_> { fn default() -> Self { Self { data: FontData::default_table_data(), } } } #[cfg(feature = "experimental_traverse")] impl<'a> SomeTable<'a> for Dsig<'a> { fn type_name(&self) -> &str { "Dsig" } fn get_field(&self, idx: usize) -> Option> { match idx { 0usize => Some(Field::new("version", self.version())), 1usize => Some(Field::new("num_signatures", self.num_signatures())), 2usize => Some(Field::new("flags", self.flags())), 3usize => Some(Field::new( "signature_records", traversal::FieldType::array_of_records( stringify!(SignatureRecord), self.signature_records(), self.offset_data(), ), )), _ => None, } } } #[cfg(feature = "experimental_traverse")] #[allow(clippy::needless_lifetimes)] impl<'a> std::fmt::Debug for Dsig<'a> { fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result { (self as &dyn SomeTable<'a>).fmt(f) } } /// [Permission flags](https://learn.microsoft.com/en-us/typography/opentype/spec/dsig#table-structure) #[derive(Clone, Copy, Default, PartialEq, Eq, PartialOrd, Ord, Hash, bytemuck :: AnyBitPattern)] #[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))] #[repr(transparent)] pub struct PermissionFlags { bits: u16, } impl PermissionFlags { /// Bit 0: Cannot be resigned pub const CANNOT_BE_RESIGNED: Self = Self { bits: 0b0000_0000_0000_0001, }; } impl PermissionFlags { /// Returns an empty set of flags. #[inline] pub const fn empty() -> Self { Self { bits: 0 } } /// Returns the set containing all flags. #[inline] pub const fn all() -> Self { Self { bits: Self::CANNOT_BE_RESIGNED.bits, } } /// Returns the raw value of the flags currently stored. #[inline] pub const fn bits(&self) -> u16 { self.bits } /// Convert from underlying bit representation, unless that /// representation contains bits that do not correspond to a flag. #[inline] pub const fn from_bits(bits: u16) -> Option { if (bits & !Self::all().bits()) == 0 { Some(Self { bits }) } else { None } } /// Convert from underlying bit representation, dropping any bits /// that do not correspond to flags. #[inline] pub const fn from_bits_truncate(bits: u16) -> Self { Self { bits: bits & Self::all().bits, } } /// Returns `true` if no flags are currently stored. #[inline] pub const fn is_empty(&self) -> bool { self.bits() == Self::empty().bits() } /// Returns `true` if there are flags common to both `self` and `other`. #[inline] pub const fn intersects(&self, other: Self) -> bool { !(Self { bits: self.bits & other.bits, }) .is_empty() } /// Returns `true` if all of the flags in `other` are contained within `self`. #[inline] pub const fn contains(&self, other: Self) -> bool { (self.bits & other.bits) == other.bits } /// Inserts the specified flags in-place. #[inline] pub fn insert(&mut self, other: Self) { self.bits |= other.bits; } /// Removes the specified flags in-place. #[inline] pub fn remove(&mut self, other: Self) { self.bits &= !other.bits; } /// Toggles the specified flags in-place. #[inline] pub fn toggle(&mut self, other: Self) { self.bits ^= other.bits; } /// Returns the intersection between the flags in `self` and /// `other`. /// /// Specifically, the returned set contains only the flags which are /// present in *both* `self` *and* `other`. /// /// This is equivalent to using the `&` operator (e.g. /// [`ops::BitAnd`]), as in `flags & other`. /// /// [`ops::BitAnd`]: https://doc.rust-lang.org/std/ops/trait.BitAnd.html #[inline] #[must_use] pub const fn intersection(self, other: Self) -> Self { Self { bits: self.bits & other.bits, } } /// Returns the union of between the flags in `self` and `other`. /// /// Specifically, the returned set contains all flags which are /// present in *either* `self` *or* `other`, including any which are /// present in both. /// /// This is equivalent to using the `|` operator (e.g. /// [`ops::BitOr`]), as in `flags | other`. /// /// [`ops::BitOr`]: https://doc.rust-lang.org/std/ops/trait.BitOr.html #[inline] #[must_use] pub const fn union(self, other: Self) -> Self { Self { bits: self.bits | other.bits, } } /// Returns the difference between the flags in `self` and `other`. /// /// Specifically, the returned set contains all flags present in /// `self`, except for the ones present in `other`. /// /// It is also conceptually equivalent to the "bit-clear" operation: /// `flags & !other` (and this syntax is also supported). /// /// This is equivalent to using the `-` operator (e.g. /// [`ops::Sub`]), as in `flags - other`. /// /// [`ops::Sub`]: https://doc.rust-lang.org/std/ops/trait.Sub.html #[inline] #[must_use] pub const fn difference(self, other: Self) -> Self { Self { bits: self.bits & !other.bits, } } } impl std::ops::BitOr for PermissionFlags { type Output = Self; /// Returns the union of the two sets of flags. #[inline] fn bitor(self, other: PermissionFlags) -> Self { Self { bits: self.bits | other.bits, } } } impl std::ops::BitOrAssign for PermissionFlags { /// Adds the set of flags. #[inline] fn bitor_assign(&mut self, other: Self) { self.bits |= other.bits; } } impl std::ops::BitXor for PermissionFlags { type Output = Self; /// Returns the left flags, but with all the right flags toggled. #[inline] fn bitxor(self, other: Self) -> Self { Self { bits: self.bits ^ other.bits, } } } impl std::ops::BitXorAssign for PermissionFlags { /// Toggles the set of flags. #[inline] fn bitxor_assign(&mut self, other: Self) { self.bits ^= other.bits; } } impl std::ops::BitAnd for PermissionFlags { type Output = Self; /// Returns the intersection between the two sets of flags. #[inline] fn bitand(self, other: Self) -> Self { Self { bits: self.bits & other.bits, } } } impl std::ops::BitAndAssign for PermissionFlags { /// Disables all flags disabled in the set. #[inline] fn bitand_assign(&mut self, other: Self) { self.bits &= other.bits; } } impl std::ops::Sub for PermissionFlags { type Output = Self; /// Returns the set difference of the two sets of flags. #[inline] fn sub(self, other: Self) -> Self { Self { bits: self.bits & !other.bits, } } } impl std::ops::SubAssign for PermissionFlags { /// Disables all flags enabled in the set. #[inline] fn sub_assign(&mut self, other: Self) { self.bits &= !other.bits; } } impl std::ops::Not for PermissionFlags { type Output = Self; /// Returns the complement of this set of flags. #[inline] fn not(self) -> Self { Self { bits: !self.bits } & Self::all() } } impl std::fmt::Debug for PermissionFlags { fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result { let members: &[(&str, Self)] = &[("CANNOT_BE_RESIGNED", Self::CANNOT_BE_RESIGNED)]; let mut first = true; for (name, value) in members { if self.contains(*value) { if !first { f.write_str(" | ")?; } first = false; f.write_str(name)?; } } if first { f.write_str("(empty)")?; } Ok(()) } } impl std::fmt::Binary for PermissionFlags { fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result { std::fmt::Binary::fmt(&self.bits, f) } } impl std::fmt::Octal for PermissionFlags { fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result { std::fmt::Octal::fmt(&self.bits, f) } } impl std::fmt::LowerHex for PermissionFlags { fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result { std::fmt::LowerHex::fmt(&self.bits, f) } } impl std::fmt::UpperHex for PermissionFlags { fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result { std::fmt::UpperHex::fmt(&self.bits, f) } } impl font_types::Scalar for PermissionFlags { type Raw = ::Raw; fn to_raw(self) -> Self::Raw { self.bits().to_raw() } fn from_raw(raw: Self::Raw) -> Self { let t = ::from_raw(raw); Self::from_bits_truncate(t) } } #[cfg(feature = "experimental_traverse")] impl<'a> From for FieldType<'a> { fn from(src: PermissionFlags) -> FieldType<'a> { src.bits().into() } } /// [Signature Record](https://learn.microsoft.com/en-us/typography/opentype/spec/dsig#table-structure) #[derive(Clone, Debug, Copy, bytemuck :: AnyBitPattern)] #[repr(C)] #[repr(packed)] pub struct SignatureRecord { /// Format of the signature pub format: BigEndian, /// Length of signature in bytes pub length: BigEndian, /// Offset to the signature block from the beginning of the table pub signature_block_offset: BigEndian, } impl SignatureRecord { /// Format of the signature pub fn format(&self) -> u32 { self.format.get() } /// Length of signature in bytes pub fn length(&self) -> u32 { self.length.get() } /// Offset to the signature block from the beginning of the table pub fn signature_block_offset(&self) -> Offset32 { self.signature_block_offset.get() } } impl FixedSize for SignatureRecord { const RAW_BYTE_LEN: usize = u32::RAW_BYTE_LEN + u32::RAW_BYTE_LEN + Offset32::RAW_BYTE_LEN; } #[cfg(feature = "experimental_traverse")] impl<'a> SomeRecord<'a> for SignatureRecord { fn traverse(self, data: FontData<'a>) -> RecordResolver<'a> { RecordResolver { name: "SignatureRecord", get_field: Box::new(move |idx, _data| match idx { 0usize => Some(Field::new("format", self.format())), 1usize => Some(Field::new("length", self.length())), 2usize => Some(Field::new( "signature_block_offset", FieldType::offset(self.signature_block_offset(), self.signature_block(_data)), )), _ => None, }), data, } } } impl<'a> MinByteRange<'a> for SignatureBlockFormat1<'a> { fn min_byte_range(&self) -> Range { 0..self.signature_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 SignatureBlockFormat1<'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 }) } } /// [Signature Block Format 1](https://learn.microsoft.com/en-us/typography/opentype/spec/dsig#table-structure) #[derive(Clone)] pub struct SignatureBlockFormat1<'a> { data: FontData<'a>, } #[allow(clippy::needless_lifetimes)] impl<'a> SignatureBlockFormat1<'a> { pub const MIN_SIZE: usize = (u16::RAW_BYTE_LEN + u16::RAW_BYTE_LEN + u32::RAW_BYTE_LEN); basic_table_impls!(impl_the_methods); /// Length (in bytes) of the PKCS#7 packet in the signature field. pub fn signature_length(&self) -> u32 { let range = self.signature_length_byte_range(); self.data.read_at(range.start).ok().unwrap() } /// PKCS#7 packet pub fn signature(&self) -> &'a [u8] { let range = self.signature_byte_range(); self.data.read_array(range).ok().unwrap_or_default() } pub fn _reserved1_byte_range(&self) -> Range { let start = 0; let end = start + u16::RAW_BYTE_LEN; start..end } pub fn _reserved2_byte_range(&self) -> Range { let start = self._reserved1_byte_range().end; let end = start + u16::RAW_BYTE_LEN; start..end } pub fn signature_length_byte_range(&self) -> Range { let start = self._reserved2_byte_range().end; let end = start + u32::RAW_BYTE_LEN; start..end } pub fn signature_byte_range(&self) -> Range { let signature_length = self.signature_length(); let start = self.signature_length_byte_range().end; let end = start + (transforms::to_usize(signature_length)).saturating_mul(u8::RAW_BYTE_LEN); start..end } } const _: () = assert!(FontData::default_data_long_enough( SignatureBlockFormat1::MIN_SIZE )); impl Default for SignatureBlockFormat1<'_> { fn default() -> Self { Self { data: FontData::default_table_data(), } } } #[cfg(feature = "experimental_traverse")] impl<'a> SomeTable<'a> for SignatureBlockFormat1<'a> { fn type_name(&self) -> &str { "SignatureBlockFormat1" } fn get_field(&self, idx: usize) -> Option> { match idx { 0usize => Some(Field::new("signature_length", self.signature_length())), 1usize => Some(Field::new("signature", self.signature())), _ => None, } } } #[cfg(feature = "experimental_traverse")] #[allow(clippy::needless_lifetimes)] impl<'a> std::fmt::Debug for SignatureBlockFormat1<'a> { fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result { (self as &dyn SomeTable<'a>).fmt(f) } }