309 lines
5.8 KiB
C
309 lines
5.8 KiB
C
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#include "mystdlib.h"
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#include "stdlib.h"
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#include "bytearray.h"
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//#include "list.h"
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//#include "mystring.h"
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#include "string.h"
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#include "debug.h"
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// huffman编码的实现
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typedef struct _huff_tree{
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uint8_t data;
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uint8_t pos;// 位置,左为1,右为0
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uint16_t count;
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struct _huff_tree *parant;
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struct _huff_tree *left;
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struct _huff_tree *right;
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}huff_tree;
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typedef struct{
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huff_tree *tree;
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int index_table_index;
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huff_tree *index_table[256];
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uint16_t count_table[256];
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array_def *out;
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array_def *in;
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int in_bit_count;
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int arr_bit_index;
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}huffman_def;
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// 按出现频次排序
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static void hm_sort_index_table(huffman_def *h)
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{
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for(int i=0;i<h->index_table_index;i++)
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{
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huff_tree *item=h->index_table[i];
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for (int j=i;j<h->index_table_index;j++)
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{
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if(h->index_table[j]->count>item->count)
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{
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h->index_table[i]=h->index_table[j];
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h->index_table[j]=item;
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item=h->index_table[i];
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}
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}
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}
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}
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static void hm_calc_count(huffman_def *h,array_def *d)
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{
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int num=arr_length(d);
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memset(h->count_table,0,256);
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for(int i=0;i<num;i++)
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{
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h->count_table[arr_get(d,i)]++;
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}
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for(int i=0;i<256;i++)
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{
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if(h->count_table[i]>0){
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h->index_table[i]=calloc(1,sizeof(huff_tree));
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h->index_table[i]->count=h->count_table[i];
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h->index_table[i]->data=i;
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h->index_table_index++;
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}
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}
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hm_sort_index_table(h);
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}
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// 计算树的值
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static int hm_calc_value_of_tree(huff_tree *t)
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{
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int sum=0;
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if(t->left&&t->right)
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sum=hm_calc_value_of_tree(t->left)+hm_calc_value_of_tree(t->right);
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else
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sum=t->count;
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return sum;
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}
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// 建立huffman树
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static void hm_creat_tree(huffman_def *h)
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{
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int tail=h->index_table_index;
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huff_tree *sub=0;
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h->tree=h->index_table[tail-1];
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tail--;
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while(tail>0){
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sub=h->index_table[tail-1];
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tail--;
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// 大在左,小在右
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huff_tree *temp=h->tree;
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h->tree=calloc(1,sizeof(huff_tree));
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sub->parant=h->tree;
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temp->parant=h->tree;
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// 左为1,右为0
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if(hm_calc_value_of_tree(sub)>hm_calc_value_of_tree(h->tree)){
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h->tree->left=sub;
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sub->pos=1;
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h->tree->right=temp;
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temp->pos=0;
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}else{
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h->tree->left=temp;
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temp->pos=1;
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h->tree->right=sub;
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sub->pos=0;
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}
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}
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}
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// 删除树
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static void hm_del_tree(huff_tree *t)
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{
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if(t->left&&t->right){
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hm_del_tree(t->left);
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hm_del_tree(t->right);
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}
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free(t);
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}
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// 数据中添加一个bit
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static void hm_add_bit(array_def *d,int bit,int *index)
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{
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int len=arr_length(d);
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if(*index<len*8){
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uint8_t c=arr_get(d,-1);
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c|=bit<<(*index%8);
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arr_reset(d,c,-1);
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}else{
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arr_append(d,bit);
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}
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(*index)++;
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}
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// 根据数据添加bit
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static int hm_encode_byte(huffman_def *h,uint8_t d)
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{
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huff_tree *t=0;
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// 这里默认一定能找到对应的值
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for(int i=0;i<h->index_table_index;i++)
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{
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t=h->index_table[i];
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if(t->data==d)
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break;
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}
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while(t){
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hm_add_bit(h->out,t->pos,&h->arr_bit_index);
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t=t->parant;
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}
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return 0;
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}
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// 生成索引
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static array_def *hm_creat_index_table(huffman_def *h)
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{
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array_def *a=arr_creat();
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int temp;
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int diff;
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arr_append(a,h->index_table_index);
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for(int i=0;i<h->index_table_index;i++)
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{
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arr_append(a,h->index_table[i]->data);
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temp=h->index_table[i]->count;
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while(temp>0){
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if(temp>=255) diff=255;
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else diff=temp;
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arr_append(a,diff);
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temp-=diff;
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}
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}
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// 填充0个数
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temp=arr_length(h->out)*8-h->arr_bit_index;
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arr_append(a,temp);
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return arr_temp(a);
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}
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// huffman编码
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/*
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压缩后数据格式
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data[0]:索引表长度
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data[1~n]:索引表,每个索引由值(1byte)和频次(1byte,小于255)(2byte,大于等于255,频次由两个字节相加)
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data[n+1]:数据中填充0个数
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data[n+2~m]:压缩后的数据
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*/
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array_def *hm_encode(array_def *data)
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{
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int input_len=arr_length(data);
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huffman_def *h=calloc(1,sizeof(huffman_def));
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array_def *ret=0;
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h->out=arr_creat();
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hm_calc_count(h,data);
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hm_creat_tree(h);
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for(int i=0;i<input_len;i++)
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{
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hm_encode_byte(h,arr_get(data,i));
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}
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hm_del_tree(h->tree);
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ret=hm_creat_index_table(h);
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arr_appends_from(ret,h->out);
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arr_delete(h->out);
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free(h);
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return arr_temp(ret);
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}
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// 读取编码表,返回数据开始的位置
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static int hm_unpack_count(huffman_def *h,array_def *d)
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{
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int num=arr_get(d,0);
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int index=1;
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uint8_t temp;
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for(int i=0;i<num;i++)
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{
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h->index_table[i]=calloc(1,sizeof(huff_tree));
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h->index_table[i]->data=arr_get(d,index);index++;
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do{
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temp=arr_get(d,index);index++;
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h->index_table[i]->count+=temp;
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}while(temp==0xff);
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h->index_table_index++;
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}
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temp=arr_get(d,index);index++;
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h->in_bit_count=(arr_length(d)-index)*8-temp;
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h->in=arr_mid(d,index,arr_length(d)-index);
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return index;
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}
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// 获取指定index的bit值
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static inline int hm_get_bit(array_def *d,int index)
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{
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uint8_t t=arr_get(d,index/8);
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return t&(1<<(index%8))?1:0;
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}
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// 对比树节点,匹配返回bit数,不匹配返回0
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static inline int hm_cmp_bits(huffman_def *h,huff_tree *t)
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{
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int count=0;
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while(t){
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if(hm_get_bit(h->in,h->arr_bit_index+count)!=t->pos)
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return 0;
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else{
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count++;
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t=t->parant;
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}
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}
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h->arr_bit_index+=count;
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return count;
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}
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static uint8_t hm_decode_byte(huffman_def *h)
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{
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huff_tree *t=0;
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for(int i=0;i<h->index_table_index;i++){
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t=h->index_table[i];
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if(hm_cmp_bits(h,t)){
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return t->data;
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}
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}
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DBG_WARN("can not decode byte");
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return 0;
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}
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// huffman解码
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/*
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*/
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array_def *hm_decode(array_def *data)
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{
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huffman_def *h=calloc(1,sizeof(huffman_def));
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array_def *ret=arr_creat();
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uint8_t c;
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hm_unpack_count(h,data);
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hm_creat_tree(h);
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while(h->arr_bit_index<h->in_bit_count){
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c=hm_decode_byte(h);
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arr_append(ret,c);
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}
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hm_del_tree(h->tree);
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arr_delete(h->in);
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free(h);
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return arr_temp(ret);
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}
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