/* $Id: p_block.h,v 1.2 2005/01/05 04:16:11 rocky Exp $ Copyright (C) 2004, 2005 Rocky Bernstein Copyright (C) by Monty (xiphmont@mit.edu) This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */ #ifndef _P_BLOCK_H_ #define _P_BLOCK_H_ #include #include #define MIN_WORDS_OVERLAP 64 /* 16 bit words */ #define MIN_WORDS_SEARCH 64 /* 16 bit words */ #define MIN_WORDS_RIFT 16 /* 16 bit words */ #define MAX_SECTOR_OVERLAP 32 /* sectors */ #define MIN_SECTOR_EPSILON 128 /* words */ #define MIN_SECTOR_BACKUP 16 /* sectors */ #define JIGGLE_MODULO 15 /* sectors */ #define MIN_SILENCE_BOUNDARY 1024 /* 16 bit words */ #define min(x,y) ((x)>(y)?(y):(x)) #define max(x,y) ((x)<(y)?(y):(x)) #include "isort.h" typedef struct linked_list{ /* linked list */ struct linked_element *head; struct linked_element *tail; void *(*new_poly)(); void (*free_poly)(void *poly); long current; long active; } linked_list; typedef struct linked_element{ void *ptr; struct linked_element *prev; struct linked_element *next; struct linked_list *list; int stamp; } linked_element; extern linked_list *new_list(void *(*new)(void),void (*free)(void *)); extern linked_element *new_elem(linked_list *list); extern linked_element *add_elem(linked_list *list,void *elem); extern void free_list(linked_list *list,int free_ptr); /* unlink or free */ extern void free_elem(linked_element *e,int free_ptr); /* unlink or free */ extern void *get_elem(linked_element *e); extern linked_list *copy_list(linked_list *list); /* shallow; doesn't copy contained structures */ typedef struct c_block{ /* The buffer */ int16_t *vector; long begin; long size; /* auxiliary support structures */ unsigned char *flags; /* 1 known boundaries in read data 2 known blanked data 4 matched sample 8 reserved 16 reserved 32 reserved 64 reserved 128 reserved */ /* end of session cases */ long lastsector; cdrom_paranoia_t *p; struct linked_element *e; } c_block; extern void free_c_block(c_block *c); extern void i_cblock_destructor(c_block *c); extern c_block *new_c_block(cdrom_paranoia_t *p); typedef struct v_fragment{ c_block *one; long begin; long size; int16_t *vector; /* end of session cases */ long lastsector; /* linked list */ cdrom_paranoia_t *p; struct linked_element *e; } v_fragment; extern void free_v_fragment(v_fragment *c); extern v_fragment *new_v_fragment(cdrom_paranoia_t *p, c_block *one, long int begin, long int end, int lastsector); extern int16_t *v_buffer(v_fragment *v); extern c_block *c_first(cdrom_paranoia_t *p); extern c_block *c_last(cdrom_paranoia_t *p); extern c_block *c_next(c_block *c); extern c_block *c_prev(c_block *c); extern v_fragment *v_first(cdrom_paranoia_t *p); extern v_fragment *v_last(cdrom_paranoia_t *p); extern v_fragment *v_next(v_fragment *v); extern v_fragment *v_prev(v_fragment *v); typedef struct root_block{ long returnedlimit; long lastsector; cdrom_paranoia_t *p; c_block *vector; /* doesn't use any sorting */ int silenceflag; long silencebegin; } root_block; typedef struct offsets{ long offpoints; long newpoints; long offaccum; long offdiff; long offmin; long offmax; } offsets; struct cdrom_paranoia_s { cdrom_drive_t *d; root_block root; /* verified/reconstructed cached data */ linked_list *cache; /* our data as read from the cdrom */ long int cache_limit; linked_list *fragments; /* fragments of blocks that have been 'verified' */ sort_info *sortcache; int readahead; /* sectors of readahead in each readop */ int jitter; long lastread; paranoia_cb_mode_t enable; long int cursor; long int current_lastsector; long int current_firstsector; /* statistics for drift/overlap */ struct offsets stage1; struct offsets stage2; long dynoverlap; long dyndrift; /* statistics for verification */ }; extern c_block *c_alloc(int16_t *vector,long begin,long size); extern void c_set(c_block *v,long begin); extern void c_insert(c_block *v,long pos,int16_t *b,long size); extern void c_remove(c_block *v,long cutpos,long cutsize); extern void c_overwrite(c_block *v,long pos,int16_t *b,long size); extern void c_append(c_block *v, int16_t *vector, long size); extern void c_removef(c_block *v, long cut); #define ce(v) (v->begin+v->size) #define cb(v) (v->begin) #define cs(v) (v->size) /* pos here is vector position from zero */ extern void recover_cache(cdrom_paranoia_t *p); extern void i_paranoia_firstlast(cdrom_paranoia_t *p); #define cv(c) (c->vector) #define fe(f) (f->begin+f->size) #define fb(f) (f->begin) #define fs(f) (f->size) #define fv(f) (v_buffer(f)) #define CDP_COMPILE #endif /*_P_BLOCK_H_*/