Files
rxing/port_src/output/zxing/common/bit_source.rs
2022-08-12 16:58:30 -05:00

111 lines
3.7 KiB
Rust

/*
* Copyright 2007 ZXing authors
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
// package com::google::zxing::common;
/**
* <p>This provides an easy abstraction to read bits at a time from a sequence of bytes, where the
* number of bits read is not often a multiple of 8.</p>
*
* <p>This class is thread-safe but not reentrant -- unless the caller modifies the bytes array
* it passed in, in which case all bets are off.</p>
*
* @author Sean Owen
*/
pub struct BitSource {
let bytes: Vec<i8>;
let byte_offset: i32;
let bit_offset: i32;
}
impl BitSource {
/**
* @param bytes bytes from which this will read bits. Bits will be read from the first byte first.
* Bits are read within a byte from most-significant to least-significant bit.
*/
pub fn new( bytes: &Vec<i8>) -> BitSource {
let .bytes = bytes;
}
/**
* @return index of next bit in current byte which would be read by the next call to {@link #readBits(int)}.
*/
pub fn get_bit_offset(&self) -> i32 {
return self.bit_offset;
}
/**
* @return index of next byte in input byte array which would be read by the next call to {@link #readBits(int)}.
*/
pub fn get_byte_offset(&self) -> i32 {
return self.byte_offset;
}
/**
* @param numBits number of bits to read
* @return int representing the bits read. The bits will appear as the least-significant
* bits of the int
* @throws IllegalArgumentException if numBits isn't in [1,32] or more than is available
*/
pub fn read_bits(&self, num_bits: i32) -> i32 {
if num_bits < 1 || num_bits > 32 || num_bits > self.available() {
throw IllegalArgumentException::new(&String::value_of(num_bits));
}
let mut result: i32 = 0;
// First, read remainder from current byte
if self.bit_offset > 0 {
let bits_left: i32 = 8 - self.bit_offset;
let to_read: i32 = Math::min(num_bits, bits_left);
let bits_to_not_read: i32 = bits_left - to_read;
let mask: i32 = (0xFF >> (8 - to_read)) << bits_to_not_read;
result = (self.bytes[self.byte_offset] & mask) >> bits_to_not_read;
num_bits -= to_read;
self.bit_offset += to_read;
if self.bit_offset == 8 {
self.bit_offset = 0;
self.byte_offset += 1;
}
}
// Next read whole bytes
if num_bits > 0 {
while num_bits >= 8 {
result = (result << 8) | (self.bytes[self.byte_offset] & 0xFF);
self.byte_offset += 1;
num_bits -= 8;
}
// Finally read a partial byte
if num_bits > 0 {
let bits_to_not_read: i32 = 8 - num_bits;
let mask: i32 = (0xFF >> bits_to_not_read) << bits_to_not_read;
result = (result << num_bits) | ((self.bytes[self.byte_offset] & mask) >> bits_to_not_read);
self.bit_offset += num_bits;
}
}
return result;
}
/**
* @return number of bits that can be read successfully
*/
pub fn available(&self) -> i32 {
return 8 * (self.bytes.len() - self.byte_offset) - self.bit_offset;
}
}