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use std::io;
const CTYPE_NONE: u16 = 0;
const CTYPE_MSZIP: u16 = 1;
const CTYPE_QUANTUM: u16 = 2;
const CTYPE_LZX: u16 = 3;
const QUANTUM_LEVEL_MIN: u16 = 1;
const QUANTUM_LEVEL_MAX: u16 = 7;
const QUANTUM_MEMORY_MIN: u16 = 10;
const QUANTUM_MEMORY_MAX: u16 = 21;
const LZX_WINDOW_MIN: u16 = 15;
const LZX_WINDOW_MAX: u16 = 21;
#[derive(Clone, Copy, Debug, Hash, Eq, PartialEq)]
pub enum CompressionType {
None,
MsZip,
Quantum(u16, u16),
Lzx(u16),
}
impl CompressionType {
pub(crate) fn from_bitfield(bits: u16) -> io::Result<CompressionType> {
let ctype = bits & 0x000f;
if ctype == CTYPE_NONE {
Ok(CompressionType::None)
} else if ctype == CTYPE_MSZIP {
Ok(CompressionType::MsZip)
} else if ctype == CTYPE_QUANTUM {
let level = (bits & 0x00f0) >> 4;
if !(QUANTUM_LEVEL_MIN..=QUANTUM_LEVEL_MAX).contains(&level) {
invalid_data!("Invalid Quantum level: 0x{:02x}", level);
}
let memory = (bits & 0x1f00) >> 8;
if !(QUANTUM_MEMORY_MIN..=QUANTUM_MEMORY_MAX).contains(&memory) {
invalid_data!("Invalid Quantum memory: 0x{:02x}", memory);
}
Ok(CompressionType::Quantum(level, memory))
} else if ctype == CTYPE_LZX {
let window = (bits & 0x1f00) >> 8;
if !(LZX_WINDOW_MIN..=LZX_WINDOW_MAX).contains(&window) {
invalid_data!("Invalid LZX window: 0x{:02x}", window);
}
Ok(CompressionType::Lzx(window))
} else {
invalid_data!("Invalid compression type: 0x{:04x}", bits);
}
}
pub(crate) fn to_bitfield(self) -> u16 {
match self {
CompressionType::None => CTYPE_NONE,
CompressionType::MsZip => CTYPE_MSZIP,
CompressionType::Quantum(level, memory) => {
CTYPE_QUANTUM
| (level.max(QUANTUM_LEVEL_MIN).min(QUANTUM_LEVEL_MAX)
<< 4)
| (memory.max(QUANTUM_MEMORY_MIN).min(QUANTUM_MEMORY_MAX)
<< 8)
}
CompressionType::Lzx(window) => {
CTYPE_LZX
| (window.max(LZX_WINDOW_MIN).min(LZX_WINDOW_MAX) << 8)
}
}
}
}
#[cfg(test)]
mod tests {
use super::CompressionType;
#[test]
fn compression_type_to_bitfield() {
assert_eq!(CompressionType::None.to_bitfield(), 0x0);
assert_eq!(CompressionType::MsZip.to_bitfield(), 0x1);
assert_eq!(CompressionType::Quantum(7, 20).to_bitfield(), 0x1472);
assert_eq!(CompressionType::Lzx(21).to_bitfield(), 0x1503);
}
#[test]
fn compression_type_from_bitfield() {
assert_eq!(
CompressionType::from_bitfield(0x0).unwrap(),
CompressionType::None
);
assert_eq!(
CompressionType::from_bitfield(0x1).unwrap(),
CompressionType::MsZip
);
assert_eq!(
CompressionType::from_bitfield(0x1472).unwrap(),
CompressionType::Quantum(7, 20)
);
assert_eq!(
CompressionType::from_bitfield(0x1503).unwrap(),
CompressionType::Lzx(21)
);
}
}