]> git.llucax.com Git - z.facultad/75.06/jacu.git/blobdiff - src/jacu.c
Se quita repeticion de pagesize en cada bloque comprimido, grabandose una sola vez...
[z.facultad/75.06/jacu.git] / src / jacu.c
index 5add536bdca619bef27d773bc85a548264341a05..ab4c79d7e8330f74df6d111f0cb728bdb59d7732 100644 (file)
@@ -1,4 +1,5 @@
 
+/* Jacu Team - GPL */
 #include "blocksorting/bs.h"
 #include "mtf/mtf.h"
 #include "zerogrouping/zerogrouping.h"
@@ -99,22 +100,25 @@ int main(int argc, char* argv[])
                /* Comprimo */          
                FILE *fp;
                Uint32 i, j, total, k;
-               char *mtf;
-               char *salida, *data;
-               char *z;
+               unsigned char *mtf;
+               unsigned char *salida, *data;
+               unsigned char *z;
                int z_len;
                
                /* Preparo el compresor huffman */
-               if ((shuff = shuff_init_encoder_bychunk(argv[optind+1],volumesize*1024)) == NULL) return 0;
+               if ((shuff = shuff_init_encoder_bychunk(argv[optind+1],volumesize*1024)) == NULL) return 1;
                if (mflag == 1) shuff_loadmodel(shuff,staticmodel);
                
-               /* Preparo el BS alocando mem para el K, el Block y su Size */
-               data = malloc(sizeof(char)*pagesize);
-               salida = malloc(sizeof(char)*pagesize+sizeof(Uint32)*2);
+               /* Preparo el BS alocando mem para la Salida: V(vector) + K(colnum) */
+               data = malloc(sizeof(unsigned char)*pagesize);
+               salida = malloc(sizeof(unsigned char)*pagesize+sizeof(Uint32));
                bs = bs_create(pagesize);
 
                /* Abrimos el archivo a comprimir y encodeamos bloques */
-               fp = fopen(argv[optind], "rb");                                         
+               fp = fopen(argv[optind], "rb");
+
+               /* Guardamos el pagesize como header (huffencoded) */
+               shuff_scanfreq_chunk(shuff,(char*)&pagesize,sizeof(size_t));
 
                total = 0;
                while (!feof(fp)) {
@@ -127,31 +131,12 @@ int main(int argc, char* argv[])
                        /* Saco un EOF que lee de mas */
                        if (i<pagesize) i--;
 
-                       /* Aplico el BlockSorting */
+                       /* Aplico BS guardando su resultado + el K en salida */
                        bs_solve(data, salida, bs, &k, i);
 
-                       /*printf("BS k=%ld\n", *(Uint32 *)(salida+sizeof(Uint32)));
-                       printf("PageSize = %ld\n", *(Uint32 *)salida);
-
-                       printf("Antes de MTF = %ld [", i);
-                       {
-                               int ii;
-                               for(ii=0; ii<(i+sizeof(Uint32)); ii++)
-                                       printf("(%c)", salida[ii+sizeof(Uint32)]);
-                               printf("]\n");
-                       }*/
+                       /* Le aplico el MTF a salida */
+                       mtf = jacu_mtf(salida, i+sizeof(Uint32), &z, &z_len);
                        
-                       /* Le aplico el MTF, salteo el tamaƱo del bloque para que no se pierda. */
-                       mtf = jacu_mtf(salida+sizeof(Uint32), i+sizeof(Uint32), &z, &z_len);
-/*
-                       printf("MTF Z (len=%d) = [", z_len);
-                       {
-                               int ii;
-                               for(ii=0; ii<z_len; ii++)
-                                       printf("(%c)", z[ii]);
-                               printf("]\n");
-
-                       }*/
                        /* Si me lo piden, aplico ZG. */
                        if (zflag) {
                                size_t len;
@@ -161,15 +146,12 @@ int main(int argc, char* argv[])
                                /* TODO HACER LO MISMO QUE EN EL ELSE XXX */
                                for (j = 0; j < i; ++j)
                                        if ((len = zg_group(&zg, buff, mtf[j]))) shuff_scanfreq_chunk(shuff,buff,len);
-                       } else {
-                               /* Guardo el PageSize */
-                               shuff_scanfreq_chunk(shuff,salida,sizeof(Uint32));
-                               
-                               /* Guardo el Z len y el Z */
+                       } else {                        
+                               /* Comprimo el Z len y el Z */
                                shuff_scanfreq_chunk(shuff,(char*)&z_len,sizeof(int));
                                shuff_scanfreq_chunk(shuff,z,z_len);                                                            
 
-                               /* Guardo la salida del MTF */                          
+                               /* Comprimo la salida del MTF */                                
                                shuff_scanfreq_chunk(shuff,mtf,i+sizeof(Uint32));                               
                        }
                        free(mtf);
@@ -195,10 +177,10 @@ int main(int argc, char* argv[])
        if (dflag == 1) { 
                /* Descomprimo */
                FILE *fp_out;
-               FILE *fp_in;
-               Uint32 block_size, k;
-               char *block, *mtf, *orig;
-               char *z;
+               /*FILE *fp_in;*/
+               Uint32 block_size = 0, k;
+               unsigned char *block, *mtf, *orig;
+               unsigned char *z;
                int z_len,moredata = 0,decoded = 0;
 
                /* Inicializo el descompresor */
@@ -206,63 +188,41 @@ int main(int argc, char* argv[])
                                
                /* Abrimos el archivo de salida */
                fp_out = fopen(argv[optind+1], "wb");
+               
+               /* Descomprimo primero que nada el pagesize utilizado para comprimir */
+               if (!(moredata = shuff_decode_chunk(shuff,(char*)&block_size,sizeof(Uint32),&decoded))) return 1;
+               block = malloc(block_size*sizeof(unsigned char)+sizeof(Uint32));
+               orig = malloc(block_size*sizeof(unsigned char));
 
                /* Descomprimimos de a chunks segun convenga */
-               do {
-                       block_size = 0;                                         
-                       moredata = shuff_decode_chunk(shuff,(char*)&block_size,sizeof(Uint32),&decoded);
+               do {                    
                        if (block_size > 0) {
+                               /* Descomprimo el Zlen y el Z del MTF */
                                moredata = shuff_decode_chunk(shuff,(char*)&z_len,sizeof(int),&decoded);                                
-                               z = malloc(sizeof(char)*z_len);
-                               moredata = shuff_decode_chunk(shuff,z,z_len,&decoded);                          
-
-                               /*printf("MTF Z (len=%d) = [", z_len);
-                               {
-                                       int ii;
-                                       for(ii=0; ii<z_len; ii++)
-                                               printf("(%c)", z[ii]);
-                                       printf("]\n");
-       
-                               }*/
+                               z = malloc(sizeof(unsigned char)*z_len);
+                               moredata = shuff_decode_chunk(shuff,z,z_len,&decoded);
                                
-                               block = malloc(block_size*sizeof(char)+sizeof(Uint32));
-                               orig = malloc(block_size*sizeof(char));
+                               /* Levanto una salida de MTF y le aplico MTF Inverso */
                                moredata = shuff_decode_chunk(shuff,block,block_size+sizeof(Uint32),&decoded);                          
+                               mtf = jacu_mtf_inv(z, block, decoded);
 
-                               /*printf("Antes MTF_inv = [");
-                               {
-                                       int ii;
-                                       for(ii=0; ii<block_size+sizeof(Uint32); ii++)
-                                               printf("(%c)", block[ii]);
-                                       printf("]\n");
-                               }*/
-                               /* Hago el MTF inverso */
-                               mtf = jacu_mtf_inv(z, block, block_size*sizeof(char)+sizeof(Uint32));
-
-                               /*printf("Luego de MTF Inv= [");
-                               {
-                                       int ii;
-                                       for(ii=0; ii<block_size+sizeof(Uint32); ii++)
-                                               printf("(%c)", mtf[ii]);
-                                       printf("]\n");
-                               }*/
-
-                               /* Luego de hacer el MTF inverso ya puedo recuperar el k */
+                               /* Ya tengo la salida del BS, tonces levanto su K */
                                memcpy(&k, mtf, sizeof(Uint32));
 
-                               /*printf("Restored : k=%ld\n", k);*/
-                               bs_restore(orig, mtf+sizeof(Uint32), k, block_size);
+                               /* Obtengo el chunk original aplicando BS Inverso */
+                               bs_restore(orig, mtf+sizeof(Uint32), k, decoded - sizeof(Uint32));
 
-                               fwrite(orig, block_size, sizeof(char), fp_out);
-                               free(block);
-                               free(orig);
+                               fwrite(orig, decoded - sizeof(Uint32), sizeof(unsigned char), fp_out);
                                free(mtf);
                                free(z);
                        }
+                       else return 1;
                } while (moredata);             
                
-               /* Close up files */
+               /* Close up files and free mem */
                fclose(fp_out);
+               free(block);
+               free(orig);
                
                /* Shutdown Huffman */
                shuff_deinit_decoder(shuff);