258 lines
6.4 KiB
C
258 lines
6.4 KiB
C
/*
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* (c) copyright 1987 by the Vrije Universiteit, Amsterdam, The Netherlands.
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* See the copyright notice in the ACK home directory, in the file "Copyright".
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*
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*/
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#include <stdlib.h>
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#include <string.h>
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#include "ack.h"
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#include "list.h"
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#include "trans.h"
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#include "data.h"
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#ifndef NORCSID
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static char rcs_id[] = "$Id$" ;
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#endif
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enum f_path getpath(first) register trf **first ; {
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/* Try to find a transformation path */
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start_scan();
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/*
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The end result is the chaining of
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the consequtive phases with the t_next field.
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The list is scanned for possible transformations
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stopping at stopsuffix or the last transformation in the list.
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The scan flags are set by this process.
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When a transformation is found, it is compared with
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the last transformation found.
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*/
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try(l_first(tr_list),p_suffix);
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return scan_end(first);
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}
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/******************** data used only while scanning *******************/
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static int last_pcount; /* The added priority of
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the best path so far */
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static int last_ncount; /* The # of non-optimizing transformations
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in the best path sofar */
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static int last_ocount; /* The # of optimizing transformations in the
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best path sofar */
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static int suf_found; /* Was the suffix at least recognized ? */
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/******************** The hard work ********************/
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start_scan() {
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register list_elem *scan ;
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scanlist(l_first(tr_list),scan) {
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t_cont(*scan)->t_scan=NO ;
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}
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suf_found= 0 ;
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#ifdef DEBUG
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if ( debug>=3 ) vprint("Scan_start\n");
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#endif
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last_ncount= -1 ;
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last_ocount= 0 ;
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}
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try(f_scan,suffix) list_elem *f_scan; char *suffix; {
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register list_elem *scan ;
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register trf *trafo ;
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/* Try to find a transformation path starting at f_scan for a
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file with the indicated suffix.
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If the suffix is already reached or a combiner is found
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call scan_found() to OK the scan.
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If a transformation is found it calls itself recursively
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with as starting point the next transformation in the list.
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*/
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if ( stopsuffix && *stopsuffix && strcmp(stopsuffix,suffix)==0 ) {
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scan_found();
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return ;
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}
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if (! f_scan) return;
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scanlist(f_scan, scan) {
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trafo= t_cont(*scan) ;
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if ( satisfy(trafo,suffix) ) {
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/* Found a transformation */
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suf_found= 1;
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#ifdef DEBUG
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if ( debug>=4 ) {
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vprint("Found %s for %s: result %s\n",
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trafo->t_name,suffix,trafo->t_out);
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}
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#endif
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trafo->t_scan=YES ;
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if ( trafo->t_prep ) {
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if ( !cpp_trafo ) {
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find_cpp() ;
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}
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if ( stopsuffix &&
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strcmp(stopsuffix,
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cpp_trafo->t_out)==0 )
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{
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scan_found() ;
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return ;
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}
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}
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if ( trafo->t_next ) {
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/* We know what happens from this phase on,
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so take a shortcut.
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*/
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register trf *sneak ;
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sneak= trafo ;
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while( sneak=sneak->t_next ) {
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sneak->t_scan=YES ;
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}
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scan_found() ;
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sneak= trafo ;
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while( sneak=sneak->t_next ) {
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sneak->t_scan=NO ;
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}
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return ;
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}
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if ( trafo->t_linker && stopsuffix && !*stopsuffix ) {
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trafo->t_scan=NO ;
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scan_found() ;
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return ;
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}
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if (! l_next(*scan) && !stopsuffix) {
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scan_found() ;
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} else {
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try(l_next(*scan),trafo->t_out);
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}
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trafo->t_scan= NO ;
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}
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}
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}
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scan_found() {
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register list_elem *scan;
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int ncount, ocount, pcount ;
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suf_found= 1;
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#ifdef DEBUG
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if ( debug>=3 ) vprint("Scan found\n") ;
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#endif
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/* Gather data used in comparison */
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ncount=0; ocount=0; pcount=0;
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scanlist(l_first(tr_list),scan) {
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if (t_cont(*scan)->t_scan) {
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#ifdef DEBUG
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if ( debug>=4 ) vprint("%s-",t_cont(*scan)->t_name) ;
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#endif
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if( t_cont(*scan)->t_optim ) ocount++ ;else ncount++ ;
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if( t_cont(*scan)->t_optim>Optlevel ) pcount-- ;
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pcount += t_cont(*scan)->t_priority ;
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}
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}
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#ifdef DEBUG
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if ( debug>=4 ) vprint("\n");
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#endif
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/* Is this transformation better then any found yet ? */
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#ifdef DEBUG
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if ( debug>=3 ) {
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vprint("old n:%d, o:%d, p:%d - new n:%d, o:%d, p:%d\n",
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last_ncount,last_ocount,last_pcount,
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ncount,ocount,pcount) ;
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}
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#endif
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if ( last_ncount== -1 || /* None found yet */
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last_pcount<pcount || /* Better priority */
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( last_pcount==pcount && /* Same prio, and */
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( last_ncount>ncount || /* Shorter nec. path */
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(last_ncount==ncount && /* Same nec. path, optimize?*/
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(Optlevel? last_ocount<ocount : last_ocount>ocount ))))) {
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/* Yes it is */
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#ifdef DEBUG
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if ( debug>=3 ) vprint("Better\n");
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#endif
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scanlist(l_first(tr_list),scan) {
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t_cont(*scan)->t_bscan=t_cont(*scan)->t_scan;
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}
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last_ncount=ncount; last_ocount=ocount; last_pcount=pcount;
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}
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}
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int satisfy(trafo,suffix) register trf *trafo; char *suffix ; {
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register char *f_char, *l_char ;
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/* Check whether this transformation is present for
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the current machine and the parameter suffix is among
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the input suffices. If so, return 1. 0 otherwise
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*/
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if ( trafo->t_isprep ) return 0 ;
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l_char=trafo->t_in ;
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while ( l_char ) {
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f_char= l_char ;
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if ( *f_char!=SUFCHAR || ! *(f_char+1) ) {
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fuerror("Illegal input suffix entry for %s",
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trafo->t_name) ;
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}
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l_char=strchr(f_char+1,SUFCHAR);
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if ( l_char ) *l_char = 0;
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if ( strcmp(f_char,suffix)==0 ) {
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if ( l_char ) *l_char = SUFCHAR;
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return 1;
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}
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if ( l_char ) *l_char = SUFCHAR;
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}
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return 0 ;
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}
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enum f_path scan_end(first) trf **first ; { /* Finalization */
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/* Return value indicating whether a transformation was found */
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/* Set the flags for the transformation up to, but not including,
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the combiner
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*/
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register trf *prev, *curr ;
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register list_elem *scan;
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#ifdef DEBUG
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if ( debug>=3 ) vprint("End_scan\n");
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#endif
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if ( last_ncount== -1 ) return suf_found ? F_NOPATH : F_NOMATCH ;
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#ifdef DEBUG
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if ( debug>=2 ) vprint("Transformation found\n");
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#endif
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prev= (trf *)0 ; *first= prev ;
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scanlist(l_first(tr_list),scan) {
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curr= t_cont(*scan) ;
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if ( curr->t_bscan ) {
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if ( prev ) {
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prev->t_next= curr ;
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if ( curr->t_linker ) prev->t_keep=YES ;
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} else {
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*first= curr ;
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}
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if ( curr->t_next ) {
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return F_OK ;
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}
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prev=curr ;
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}
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}
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if ( cpp_trafo && stopsuffix &&
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strcmp(stopsuffix,cpp_trafo->t_out)==0 ) {
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cpp_trafo->t_keep=YES ;
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}
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if ( prev ) {
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prev->t_keep=YES ;
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}
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return F_OK ;
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}
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find_cpp() {
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register list_elem *elem ;
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scanlist( l_first(tr_list), elem ) {
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if ( t_cont(*elem)->t_isprep ) {
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if ( cpp_trafo ) fuerror("Multiple cpp's present") ;
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cpp_trafo= t_cont(*elem) ;
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}
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}
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if ( !cpp_trafo ) fuerror("No cpp present") ;
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}
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