Installed status communications about closing session ("Fixating")
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193d674852
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c98dd9b0a7
@ -905,7 +905,7 @@ int Cdrtrack_get_size(struct CdrtracK *track, double *size, double *padding,
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*padding= track->padding;
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*padding= track->padding;
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#ifdef Cdrskin_allow_libburn_taO
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#ifdef Cdrskin_allow_libburn_taO
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if((flag&1) && track->libburn_track!=NULL) {
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if((flag&1) && track->libburn_track!=NULL) {
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off_t readcounter,writecounter;
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off_t readcounter= 0,writecounter= 0;
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burn_track_get_counters(track->libburn_track,&readcounter,&writecounter);
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burn_track_get_counters(track->libburn_track,&readcounter,&writecounter);
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*size= readcounter;
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*size= readcounter;
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@ -2315,7 +2315,8 @@ struct CdrskiN {
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/** Progress state info: wether libburn is actually processing payload data */
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/** Progress state info: wether libburn is actually processing payload data */
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int is_writing;
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int is_writing;
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/** Previously detected drive state */
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enum burn_drive_status previous_drive_status;
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/** abort parameters */
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/** abort parameters */
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int abort_max_wait;
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int abort_max_wait;
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@ -2398,6 +2399,7 @@ int Cdrskin_new(struct CdrskiN **skin, struct CdrpreskiN *preskin, int flag)
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o->n_drives= 0;
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o->n_drives= 0;
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o->driveno= 0;
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o->driveno= 0;
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o->is_writing= 0;
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o->is_writing= 0;
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o->previous_drive_status = BURN_DRIVE_IDLE;
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o->abort_max_wait= 74*60;
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o->abort_max_wait= 74*60;
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o->lib_is_initialized= (flag&1);
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o->lib_is_initialized= (flag&1);
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o->control_pid= getpid();
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o->control_pid= getpid();
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@ -3604,7 +3606,7 @@ int Cdrskin_wait_before_action(struct CdrskiN *skin, int flag)
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}
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}
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}
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}
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if(skin->verbosity>=Cdrskin_verbose_progresS)
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if(skin->verbosity>=Cdrskin_verbose_progresS)
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printf(" Operation starts.\n");
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{printf(" Operation starts.\n");fflush(stdout);}
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return(1);
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return(1);
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}
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}
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@ -3674,19 +3676,25 @@ int Cdrskin_blank(struct CdrskiN *skin, int flag)
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start_time= Sfile_microtime(0);
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start_time= Sfile_microtime(0);
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while(burn_drive_get_status(drive, &p) != BURN_DRIVE_IDLE) {
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while(burn_drive_get_status(drive, &p) != BURN_DRIVE_IDLE) {
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if(loop_counter>0)
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if(loop_counter>0)
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if(skin->verbosity>=Cdrskin_verbose_progresS)
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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int percent= 50;
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if(p.sectors>0) /* i want a display of 1 to 99 percent */
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percent= 1.0+((double) p.sector+1.0)/((double) p.sectors)*98.0;
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fprintf(stderr,
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fprintf(stderr,
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"\rcdrskin: blanking sector %d (%lu seconds elapsed) ",
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"\rcdrskin: blanking ( done %2d%% , %lu seconds elapsed ) ",
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p.sector,(unsigned long) (Sfile_microtime(0)-start_time));
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percent,(unsigned long) (Sfile_microtime(0)-start_time));
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sleep(2);
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}
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sleep(1);
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loop_counter++;
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loop_counter++;
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}
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}
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blanking_done:;
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blanking_done:;
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skin->drive_is_busy= 0;
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skin->drive_is_busy= 0;
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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fprintf(stderr,"\n");
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fprintf(stderr,
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"\rcdrskin: blanking done \n");
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printf("Blanking time: %.3fs\n",Sfile_microtime(0)-start_time);
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printf("Blanking time: %.3fs\n",Sfile_microtime(0)-start_time);
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fprintf(stderr,"cdrskin: blanking done\n");
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fflush(stdout);
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}
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}
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Cdrskin_release_drive(skin,0);
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Cdrskin_release_drive(skin,0);
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return(1);
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return(1);
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@ -3733,30 +3741,50 @@ int Cdrskin_burn_pacifier(struct CdrskiN *skin,
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current_time= Sfile_microtime(0);
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current_time= Sfile_microtime(0);
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elapsed_total_time= current_time-start_time;
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elapsed_total_time= current_time-start_time;
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elapsed_time= current_time-*last_time;
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elapsed_time= current_time-*last_time;
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time_to_tell= (elapsed_time>=1.0);
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time_to_tell= (elapsed_time>=1.0)&&(elapsed_total_time>=1.0);
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if(drive_status==BURN_DRIVE_WRITING) {
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if(drive_status==BURN_DRIVE_WRITING) {
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;
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;
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} else if(drive_status==BURN_DRIVE_WRITING_LEADIN) {
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} else if(drive_status==BURN_DRIVE_WRITING_LEADIN
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#ifdef Cdrskin_allow_libburn_taO
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|| drive_status==BURN_DRIVE_WRITING_PREGAP
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#endif
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) {
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if(time_to_tell || skin->is_writing) {
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if(time_to_tell || skin->is_writing) {
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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if(skin->is_writing)
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if(skin->is_writing)
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fprintf(stderr,"\n");
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fprintf(stderr,"\n");
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fprintf(stderr,
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fprintf(stderr,
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"\rcdrskin: writing lead-in since %.f seconds ",
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"\rcdrskin: working pre-track (burning since %.f seconds) ",
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elapsed_total_time);
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elapsed_total_time);
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}
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}
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skin->is_writing= 0;
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skin->is_writing= 0;
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advance_interval= 1;
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advance_interval= 1;
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}
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}
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{ret= 2; goto ex;}
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{ret= 2; goto ex;}
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} else if(drive_status==BURN_DRIVE_WRITING_LEADOUT) {
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} else if(drive_status==BURN_DRIVE_WRITING_LEADOUT
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#ifdef Cdrskin_allow_libburn_taO
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|| drive_status==BURN_DRIVE_CLOSING_TRACK
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|| drive_status==BURN_DRIVE_CLOSING_SESSION
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#endif
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) {
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#ifdef Cdrskin_allow_libburn_taO
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if(drive_status==BURN_DRIVE_CLOSING_SESSION &&
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skin->previous_drive_status!=drive_status)
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{printf("\nFixating...\n"); fflush(stdout);}
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#endif
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if(time_to_tell || skin->is_writing) {
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if(time_to_tell || skin->is_writing) {
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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if(skin->is_writing)
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if(skin->is_writing)
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fprintf(stderr,"\n");
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fprintf(stderr,"\n");
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fprintf(stderr,
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fprintf(stderr,
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"\rcdrskin: writing lead-out after %.f seconds ",
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"\rcdrskin: working post-track (burning since %.f seconds) ",
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elapsed_total_time);
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elapsed_total_time);
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}
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}
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skin->is_writing= 0;
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skin->is_writing= 0;
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@ -3802,7 +3830,7 @@ int Cdrskin_burn_pacifier(struct CdrskiN *skin,
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if(written_total_bytes<1024*1024) {
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if(written_total_bytes<1024*1024) {
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thank_you_for_patience:;
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thank_you_for_patience:;
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if(time_to_tell || skin->is_writing) {
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if(time_to_tell || (skin->is_writing && elapsed_total_time>=1.0)) {
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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if(skin->verbosity>=Cdrskin_verbose_progresS) {
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if(skin->is_writing)
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if(skin->is_writing)
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fprintf(stderr,"\n");
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fprintf(stderr,"\n");
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@ -3810,9 +3838,9 @@ thank_you_for_patience:;
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"\rcdrskin: thank you for being patient since %.f seconds ",
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"\rcdrskin: thank you for being patient since %.f seconds ",
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elapsed_total_time);
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elapsed_total_time);
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}
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}
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skin->is_writing= 0;
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advance_interval= 1;
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advance_interval= 1;
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}
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}
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skin->is_writing= 0;
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{ret= 2; goto ex;}
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{ret= 2; goto ex;}
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}
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}
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new_mb= written_total_bytes/(1024*1024);
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new_mb= written_total_bytes/(1024*1024);
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@ -3967,6 +3995,7 @@ ex:;
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*total_count= *last_count;
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*total_count= *last_count;
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*last_time= current_time;
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*last_time= current_time;
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}
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}
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skin->previous_drive_status= drive_status;
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return(ret);
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return(ret);
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}
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}
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@ -1 +1 @@
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#define Cdrskin_timestamP "2006.11.01.172004"
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#define Cdrskin_timestamP "2006.11.02.211816"
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@ -217,7 +217,16 @@ enum burn_drive_status
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/** The drive is erasing a disc */
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/** The drive is erasing a disc */
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BURN_DRIVE_ERASING,
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BURN_DRIVE_ERASING,
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/** The drive is being grabbed */
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/** The drive is being grabbed */
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BURN_DRIVE_GRABBING
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BURN_DRIVE_GRABBING,
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/* ts A61102 */
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/** The drive gets written zeroes before the track payload data */
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BURN_DRIVE_WRITING_PREGAP,
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/** The drive is told to close a track (TAO only) */
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BURN_DRIVE_CLOSING_TRACK,
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/** The drive is told to close a session (TAO only) */
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BURN_DRIVE_CLOSING_SESSION
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};
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};
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/** Information about a track on a disc - this is from the q sub channel of the
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/** Information about a track on a disc - this is from the q sub channel of the
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@ -126,14 +126,21 @@ int burn_write_close_track(struct burn_write_opts *o, int tnum)
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{
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{
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char msg[81];
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char msg[81];
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sprintf(msg, "Closing track %2.2d\n", tnum+1);
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sprintf(msg, "Closing track %2.2d", tnum+1);
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libdax_msgs_submit(libdax_messenger, o->drive->global_index,0x00020119,
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libdax_msgs_submit(libdax_messenger, o->drive->global_index,0x00020119,
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LIBDAX_MSGS_SEV_DEBUG, LIBDAX_MSGS_PRIO_HIGH, msg,0,0);
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LIBDAX_MSGS_SEV_DEBUG, LIBDAX_MSGS_PRIO_HIGH, msg,0,0);
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/* ts A61102 */
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o->drive->busy = BURN_DRIVE_CLOSING_TRACK;
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/* MMC-1 mentions track number 0xFF for "the incomplete track",
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/* MMC-1 mentions track number 0xFF for "the incomplete track",
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MMC-3 does not. I tried both. 0xFF was in effect when other
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MMC-3 does not. I tried both. 0xFF was in effect when other
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bugs finally gave up and made way for readable tracks. */
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bugs finally gave up and made way for readable tracks. */
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o->drive->close_track_session(o->drive, 0, 0xff); /* tnum+1); */
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o->drive->close_track_session(o->drive, 0, 0xff); /* tnum+1); */
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/* ts A61102 */
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o->drive->busy = BURN_DRIVE_WRITING;
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return 1;
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return 1;
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}
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}
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@ -145,7 +152,14 @@ int burn_write_close_session(struct burn_write_opts *o)
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LIBDAX_MSGS_SEV_DEBUG, LIBDAX_MSGS_PRIO_HIGH,
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LIBDAX_MSGS_SEV_DEBUG, LIBDAX_MSGS_PRIO_HIGH,
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"Closing session", 0, 0);
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"Closing session", 0, 0);
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/* ts A61102 */
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o->drive->busy = BURN_DRIVE_CLOSING_SESSION;
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o->drive->close_track_session(o->drive, 1, 0);
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o->drive->close_track_session(o->drive, 1, 0);
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/* ts A61102 */
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o->drive->busy = BURN_DRIVE_WRITING;
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return 1;
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return 1;
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}
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}
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@ -491,6 +505,10 @@ int burn_write_track(struct burn_write_opts *o, struct burn_session *s,
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/* XXX for tao, we don't want the pregaps but still want post? */
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/* XXX for tao, we don't want the pregaps but still want post? */
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if (o->write_type != BURN_WRITE_TAO) {
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if (o->write_type != BURN_WRITE_TAO) {
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/* ts A61102 */
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d->busy = BURN_DRIVE_WRITING_PREGAP;
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if (t->pregap1)
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if (t->pregap1)
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d->rlba += 75;
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d->rlba += 75;
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if (t->pregap2)
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if (t->pregap2)
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@ -519,6 +537,10 @@ int burn_write_track(struct burn_write_opts *o, struct burn_session *s,
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}
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}
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/* user data */
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/* user data */
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/* ts A61102 */
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d->busy = BURN_DRIVE_WRITING;
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sectors = burn_track_get_sectors(t);
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sectors = burn_track_get_sectors(t);
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open_ended = burn_track_is_open_ended(t);
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open_ended = burn_track_is_open_ended(t);
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@ -660,7 +682,7 @@ return crap. so we send the command, then ignore the result.
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when and why it occurs. Multi-session will hardly
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when and why it occurs. Multi-session will hardly
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work on base of flat guessing.
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work on base of flat guessing.
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*/
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*/
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sprintf(msg, "Ignored nwa: %d\n", res);
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sprintf(msg, "Ignored nwa: %d", res);
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libdax_msgs_submit(libdax_messenger, d->global_index, 0x00000002,
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libdax_msgs_submit(libdax_messenger, d->global_index, 0x00000002,
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LIBDAX_MSGS_SEV_DEBUG, LIBDAX_MSGS_PRIO_ZERO,
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LIBDAX_MSGS_SEV_DEBUG, LIBDAX_MSGS_PRIO_ZERO,
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msg, 0, 0);
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msg, 0, 0);
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