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f1f1c64a76
| Author | SHA1 | Date | |
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| f1f1c64a76 | |||
| 36cb6d77b5 | |||
| 629c5fce7d | |||
| a205473ad6 | |||
| 4903ac3786 | |||
| f817dc9254 | |||
| d93aec186c |
5
c_unpacker/.gitignore
vendored
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5
c_unpacker/.gitignore
vendored
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@@ -0,0 +1,5 @@
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unpack
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unpack_bitstream
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unpack_debug
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*.upk
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10
c_unpacker/Makefile
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10
c_unpacker/Makefile
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@@ -0,0 +1,10 @@
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all: unpack unpack_bitstream
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unpack: main.c unpack.c
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cc -O2 -o unpack main.c unpack.c
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unpack_bitstream: main.c unpack.c
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cc -O2 -D UPKR_BITSTREAM -o unpack_bitstream main.c unpack.c
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unpack_debug: main.c unpack.c
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cc -g -o unpack_debug main.c unpack.c
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25
c_unpacker/main.c
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25
c_unpacker/main.c
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@@ -0,0 +1,25 @@
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#include <stdio.h>
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#include <stdlib.h>
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int upkr_unpack(void* destination, void* compressed_data);
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int main(int argn, char** argv) {
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void* input_buffer = malloc(1024*1024);
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void* output_buffer = malloc(1024*1024);
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FILE* in_file = fopen(argv[1], "rb");
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int in_size = fread(input_buffer, 1, 1024*1024, in_file);
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fclose(in_file);
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printf("Compressed size: %d\n", in_size);
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int out_size = upkr_unpack(output_buffer, input_buffer);
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printf("Uncompressed size: %d\n", out_size);
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FILE* out_file = fopen(argv[2], "wb");
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fwrite(output_buffer, 1, out_size, out_file);
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fclose(out_file);
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return 0;
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}
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4
c_unpacker/readme.txt
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4
c_unpacker/readme.txt
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@@ -0,0 +1,4 @@
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a very simple unpacker in c, as a reference for people wanting to implement their own unpacker.
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absolutely not production ready, it makes no effort to ensure the output buffer can actually
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hold the uncompressed data.
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!!! Never run on untrusted input !!!
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98
c_unpacker/unpack.c
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98
c_unpacker/unpack.c
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@@ -0,0 +1,98 @@
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typedef unsigned char u8;
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typedef unsigned short u16;
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typedef unsigned long u32;
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u8* upkr_data_ptr;
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u8 upkr_probs[1 + 255 + 1 + 2*32 + 2*32];
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#ifdef UPKR_BITSTREAM
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u16 upkr_state;
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u8 upkr_current_byte;
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int upkr_bits_left;
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#else
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u32 upkr_state;
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#endif
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int upkr_decode_bit(int context_index) {
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#ifdef UPKR_BITSTREAM
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while(upkr_state < 32768) {
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if(upkr_bits_left == 0) {
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upkr_current_byte = *upkr_data_ptr++;
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upkr_bits_left = 8;
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}
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upkr_state = (upkr_state << 1) + (upkr_current_byte >> 7);
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upkr_current_byte <<= 1;
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--upkr_bits_left;
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}
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#else
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while(upkr_state < 4096) {
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upkr_state = (upkr_state << 8) | *upkr_data_ptr++;
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}
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#endif
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int prob = upkr_probs[context_index];
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int bit = (upkr_state & 255) >= prob ? 1 : 0;
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int prob_offset = 16;
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int state_offset = 0;
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int state_scale = prob;
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if(bit) {
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state_offset = -prob;
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state_scale = 256 - prob;
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prob_offset = 0;
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}
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upkr_state = state_offset + state_scale * (upkr_state >> 8) + (upkr_state & 255);
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upkr_probs[context_index] = prob_offset + prob - ((prob + 8) >> 4);
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return bit;
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}
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int upkr_decode_length(int context_index) {
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int length = 0;
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int bit_pos = 0;
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while(upkr_decode_bit(context_index)) {
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length |= upkr_decode_bit(context_index + 1) << bit_pos++;
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context_index += 2;
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}
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return length | (1 << bit_pos);
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}
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int upkr_unpack(void* destination, void* compressed_data) {
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upkr_data_ptr = (u8*)compressed_data;
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upkr_state = 0;
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#ifdef UPKR_BITSTREAM
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upkr_bits_left = 0;
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#endif
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for(int i = 0; i < sizeof(upkr_probs); ++i)
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upkr_probs[i] = 128;
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u8* write_ptr = (u8*)destination;
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int prev_was_match = 0;
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int offset = 0;
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for(;;) {
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if(upkr_decode_bit(0)) {
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if(prev_was_match || upkr_decode_bit(256)) {
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offset = upkr_decode_length(257) - 1;
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if(offset == 0) {
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break;
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}
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}
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int length = upkr_decode_length(257 + 64);
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while(length--) {
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*write_ptr = write_ptr[-offset];
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++write_ptr;
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}
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prev_was_match = 1;
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} else {
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int byte = 1;
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while(byte < 256) {
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int bit = upkr_decode_bit(byte);
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byte = (byte << 1) + bit;
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}
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*write_ptr++ = byte;
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prev_was_match = 0;
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}
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}
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return write_ptr - (u8*)destination;
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}
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@@ -1,8 +1,8 @@
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use crate::rans::{PROB_BITS, ONE_PROB};
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use crate::rans::{ONE_PROB, PROB_BITS};
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const INIT_PROB: u16 = 1 << (PROB_BITS - 1);
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const UPDATE_RATE: u32 = 4;
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const UPDATE_ADD: u32 = 8;
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const UPDATE_RATE: i32 = 4;
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const UPDATE_ADD: i32 = 8;
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#[derive(Clone)]
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pub struct ContextState {
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@@ -33,10 +33,13 @@ impl<'a> Context<'a> {
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pub fn update(&mut self, bit: bool) {
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let old = self.state.contexts[self.index];
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self.state.contexts[self.index] = if bit {
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old + ((ONE_PROB - old as u32 + UPDATE_ADD) >> UPDATE_RATE) as u8
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let offset = if !bit {
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ONE_PROB as i32 >> UPDATE_RATE
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} else {
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old - ((old as u32 + UPDATE_ADD) >> UPDATE_RATE) as u8
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0
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};
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self.state.contexts[self.index] =
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(offset + old as i32 - ((old as i32 + UPDATE_ADD) >> UPDATE_RATE)) as u8;
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}
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}
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@@ -21,3 +21,12 @@ pub fn pack(
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parsing_packer::pack(data, level, use_bitstream, progress_callback)
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}
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}
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pub fn compressed_size(mut data: &[u8]) -> f32 {
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let mut state = 0;
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while state < 4096 {
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state = (state << 8) | data[0] as u32;
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data = &data[1..];
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}
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data.len() as f32 + (state as f32).log2() / 8.
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}
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@@ -58,7 +58,10 @@ fn main() -> Result<()> {
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fn print_help() {
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eprintln!("Usage:");
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eprintln!(" upkr pack [-l level(0-9)] <infile> <outfile>");
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eprintln!(" upkr unpack <infile> <outfile>");
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eprintln!(" upkr pack [-b] [-l level(0-9)] <infile> <outfile>");
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eprintln!(" upkr unpack [-b] <infile> <outfile>");
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eprintln!();
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eprintln!(" -b, --bitstream bitstream mode");
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eprintln!(" -l, --level N compression level 0-9");
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std::process::exit(1);
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}
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22
src/rans.rs
22
src/rans.rs
@@ -38,15 +38,15 @@ impl RansCoder {
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let mut state = 1 << l_bits;
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let mut byte = 0u8;
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let mut bit = 8;
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let mut bit = 0;
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let mut flush_state: Box<dyn FnMut(&mut u32)> = if self.use_bitstream {
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Box::new(|state: &mut u32| {
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bit -= 1;
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byte |= ((*state & 1) as u8) << bit;
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if bit == 0 {
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bit += 1;
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if bit == 8 {
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buffer.push(byte);
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byte = 0;
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bit = 8;
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bit = 0;
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}
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*state >>= 1;
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})
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@@ -61,7 +61,7 @@ impl RansCoder {
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let max_state_factor: u32 = 1 << (l_bits + num_flush_bits - PROB_BITS);
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for step in self.bits.into_iter().rev() {
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let prob = step as u32 & 32767;
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let (start, prob) = if step & 32768 != 0 {
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let (start, prob) = if step & 32768 == 0 {
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(0, prob)
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} else {
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(prob, ONE_PROB - prob)
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@@ -118,7 +118,7 @@ impl CostCounter {
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impl EntropyCoder for CostCounter {
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fn encode_bit(&mut self, bit: bool, prob: u16) {
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let prob = if bit {
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let prob = if !bit {
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prob as u32
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} else {
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ONE_PROB - prob as u32
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@@ -163,8 +163,8 @@ impl<'a> RansDecoder<'a> {
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self.data = &self.data[1..];
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self.bits_left = 8;
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}
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self.state = (self.state << 1) | (self.byte & 1) as u32;
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self.byte >>= 1;
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self.state = (self.state << 1) | (self.byte >> 7) as u32;
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self.byte <<= 1;
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self.bits_left -= 1;
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}
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} else {
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@@ -174,12 +174,12 @@ impl<'a> RansDecoder<'a> {
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}
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}
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let bit = (self.state & PROB_MASK) < prob;
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let bit = (self.state & PROB_MASK) >= prob;
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let (start, prob) = if bit {
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(0, prob)
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} else {
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(prob, ONE_PROB - prob)
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} else {
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(0, prob)
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};
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self.state = prob * (self.state >> PROB_BITS) + (self.state & PROB_MASK) - start;
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Reference in New Issue
Block a user