2015-12-25 13:59:02 -05:00
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#[inline]
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2018-06-04 22:14:02 +02:00
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pub fn write_to_vec(vec: &mut Vec<u8>, byte: u8) {
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vec.push(byte);
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2015-12-25 13:59:02 -05:00
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}
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2018-01-09 16:53:35 +01:00
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#[cfg(target_pointer_width = "32")]
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const USIZE_LEB128_SIZE: usize = 5;
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#[cfg(target_pointer_width = "64")]
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const USIZE_LEB128_SIZE: usize = 10;
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macro_rules! leb128_size {
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(u16) => (3);
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(u32) => (5);
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(u64) => (10);
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(u128) => (19);
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(usize) => (USIZE_LEB128_SIZE);
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}
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2015-12-25 13:59:02 -05:00
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2018-01-09 16:53:35 +01:00
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macro_rules! impl_write_unsigned_leb128 {
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($fn_name:ident, $int_ty:ident) => (
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#[inline]
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2018-06-04 22:14:02 +02:00
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pub fn $fn_name(out: &mut Vec<u8>, mut value: $int_ty) {
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2018-01-09 16:53:35 +01:00
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for _ in 0 .. leb128_size!($int_ty) {
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let mut byte = (value & 0x7F) as u8;
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value >>= 7;
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if value != 0 {
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byte |= 0x80;
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}
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2018-06-04 22:14:02 +02:00
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write_to_vec(out, byte);
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2018-01-09 16:53:35 +01:00
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if value == 0 {
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break;
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}
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}
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2015-12-25 13:59:02 -05:00
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}
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2018-01-09 16:53:35 +01:00
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)
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2016-12-14 01:45:03 +02:00
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}
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2018-01-09 16:53:35 +01:00
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impl_write_unsigned_leb128!(write_u16_leb128, u16);
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impl_write_unsigned_leb128!(write_u32_leb128, u32);
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impl_write_unsigned_leb128!(write_u64_leb128, u64);
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impl_write_unsigned_leb128!(write_u128_leb128, u128);
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impl_write_unsigned_leb128!(write_usize_leb128, usize);
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macro_rules! impl_read_unsigned_leb128 {
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($fn_name:ident, $int_ty:ident) => (
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#[inline]
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pub fn $fn_name(slice: &[u8]) -> ($int_ty, usize) {
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let mut result: $int_ty = 0;
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let mut shift = 0;
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let mut position = 0;
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for _ in 0 .. leb128_size!($int_ty) {
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let byte = unsafe {
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*slice.get_unchecked(position)
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};
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position += 1;
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result |= ((byte & 0x7F) as $int_ty) << shift;
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if (byte & 0x80) == 0 {
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break;
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}
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shift += 7;
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}
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// Do a single bounds check at the end instead of for every byte.
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assert!(position <= slice.len());
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(result, position)
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}
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)
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2015-12-25 13:59:02 -05:00
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}
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2018-01-09 16:53:35 +01:00
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impl_read_unsigned_leb128!(read_u16_leb128, u16);
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impl_read_unsigned_leb128!(read_u32_leb128, u32);
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impl_read_unsigned_leb128!(read_u64_leb128, u64);
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impl_read_unsigned_leb128!(read_u128_leb128, u128);
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impl_read_unsigned_leb128!(read_usize_leb128, usize);
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2015-12-25 13:59:02 -05:00
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2016-12-14 01:45:03 +02:00
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#[inline]
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/// encodes an integer using signed leb128 encoding and stores
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/// the result using a callback function.
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///
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/// The callback `write` is called once for each position
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/// that is to be written to with the byte to be encoded
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/// at that position.
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2018-06-04 22:14:02 +02:00
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pub fn write_signed_leb128_to<W>(mut value: i128, mut write: W)
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where W: FnMut(u8)
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2016-12-14 01:45:03 +02:00
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{
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2015-12-25 13:59:02 -05:00
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loop {
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let mut byte = (value as u8) & 0x7f;
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value >>= 7;
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2018-08-10 13:13:50 +02:00
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let more = !(((value == 0) && ((byte & 0x40) == 0)) ||
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((value == -1) && ((byte & 0x40) != 0)));
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2016-08-24 15:58:40 +03:00
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2015-12-25 13:59:02 -05:00
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if more {
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byte |= 0x80; // Mark this byte to show that more bytes will follow.
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}
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2018-06-04 22:14:02 +02:00
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write(byte);
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2016-08-24 15:58:40 +03:00
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2015-12-25 13:59:02 -05:00
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if !more {
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break;
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}
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}
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2016-12-14 01:45:03 +02:00
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}
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2018-08-15 02:54:21 -04:00
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#[inline]
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2018-06-04 22:14:02 +02:00
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pub fn write_signed_leb128(out: &mut Vec<u8>, value: i128) {
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write_signed_leb128_to(value, |v| write_to_vec(out, v))
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2015-12-25 13:59:02 -05:00
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}
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2016-10-11 12:18:28 +11:00
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#[inline]
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2016-08-23 03:56:52 +03:00
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pub fn read_signed_leb128(data: &[u8], start_position: usize) -> (i128, usize) {
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2016-08-24 15:58:40 +03:00
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let mut result = 0;
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let mut shift = 0;
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let mut position = start_position;
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let mut byte;
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loop {
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byte = data[position];
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position += 1;
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2019-06-26 14:04:37 +02:00
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result |= i128::from(byte & 0x7F) << shift;
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2016-08-24 15:58:40 +03:00
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shift += 7;
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if (byte & 0x80) == 0 {
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break;
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}
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}
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if (shift < 64) && ((byte & 0x40) != 0) {
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// sign extend
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result |= -(1 << shift);
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}
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(result, position - start_position)
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2015-12-25 13:59:02 -05:00
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}
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