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suff.c revision 1.143
      1 /*	$NetBSD: suff.c,v 1.143 2020/09/05 06:46:12 rillig Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 1988, 1989, 1990, 1993
      5  *	The Regents of the University of California.  All rights reserved.
      6  *
      7  * This code is derived from software contributed to Berkeley by
      8  * Adam de Boor.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  * 3. Neither the name of the University nor the names of its contributors
     19  *    may be used to endorse or promote products derived from this software
     20  *    without specific prior written permission.
     21  *
     22  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32  * SUCH DAMAGE.
     33  */
     34 
     35 /*
     36  * Copyright (c) 1989 by Berkeley Softworks
     37  * All rights reserved.
     38  *
     39  * This code is derived from software contributed to Berkeley by
     40  * Adam de Boor.
     41  *
     42  * Redistribution and use in source and binary forms, with or without
     43  * modification, are permitted provided that the following conditions
     44  * are met:
     45  * 1. Redistributions of source code must retain the above copyright
     46  *    notice, this list of conditions and the following disclaimer.
     47  * 2. Redistributions in binary form must reproduce the above copyright
     48  *    notice, this list of conditions and the following disclaimer in the
     49  *    documentation and/or other materials provided with the distribution.
     50  * 3. All advertising materials mentioning features or use of this software
     51  *    must display the following acknowledgement:
     52  *	This product includes software developed by the University of
     53  *	California, Berkeley and its contributors.
     54  * 4. Neither the name of the University nor the names of its contributors
     55  *    may be used to endorse or promote products derived from this software
     56  *    without specific prior written permission.
     57  *
     58  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     59  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     60  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     61  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     62  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     63  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     64  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     65  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     66  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     67  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     68  * SUCH DAMAGE.
     69  */
     70 
     71 #ifndef MAKE_NATIVE
     72 static char rcsid[] = "$NetBSD: suff.c,v 1.143 2020/09/05 06:46:12 rillig Exp $";
     73 #else
     74 #include <sys/cdefs.h>
     75 #ifndef lint
     76 #if 0
     77 static char sccsid[] = "@(#)suff.c	8.4 (Berkeley) 3/21/94";
     78 #else
     79 __RCSID("$NetBSD: suff.c,v 1.143 2020/09/05 06:46:12 rillig Exp $");
     80 #endif
     81 #endif /* not lint */
     82 #endif
     83 
     84 /*-
     85  * suff.c --
     86  *	Functions to maintain suffix lists and find implicit dependents
     87  *	using suffix transformation rules
     88  *
     89  * Interface:
     90  *	Suff_Init 	    	Initialize all things to do with suffixes.
     91  *
     92  *	Suff_End 	    	Cleanup the module
     93  *
     94  *	Suff_DoPaths	    	This function is used to make life easier
     95  *	    	  	    	when searching for a file according to its
     96  *	    	  	    	suffix. It takes the global search path,
     97  *	    	  	    	as defined using the .PATH: target, and appends
     98  *	    	  	    	its directories to the path of each of the
     99  *	    	  	    	defined suffixes, as specified using
    100  *	    	  	    	.PATH<suffix>: targets. In addition, all
    101  *	    	  	    	directories given for suffixes labeled as
    102  *	    	  	    	include files or libraries, using the .INCLUDES
    103  *	    	  	    	or .LIBS targets, are played with using
    104  *	    	  	    	Dir_MakeFlags to create the .INCLUDES and
    105  *	    	  	    	.LIBS global variables.
    106  *
    107  *	Suff_ClearSuffixes  	Clear out all the suffixes and defined
    108  *	    	  	    	transformations.
    109  *
    110  *	Suff_IsTransform    	Return TRUE if the passed string is the lhs
    111  *	    	  	    	of a transformation rule.
    112  *
    113  *	Suff_AddSuffix	    	Add the passed string as another known suffix.
    114  *
    115  *	Suff_GetPath	    	Return the search path for the given suffix.
    116  *
    117  *	Suff_AddInclude	    	Mark the given suffix as denoting an include
    118  *	    	  	    	file.
    119  *
    120  *	Suff_AddLib	    	Mark the given suffix as denoting a library.
    121  *
    122  *	Suff_AddTransform   	Add another transformation to the suffix
    123  *	    	  	    	graph. Returns  GNode suitable for framing, I
    124  *	    	  	    	mean, tacking commands, attributes, etc. on.
    125  *
    126  *	Suff_SetNull	    	Define the suffix to consider the suffix of
    127  *	    	  	    	any file that doesn't have a known one.
    128  *
    129  *	Suff_FindDeps	    	Find implicit sources for and the location of
    130  *	    	  	    	a target based on its suffix. Returns the
    131  *	    	  	    	bottom-most node added to the graph or NULL
    132  *	    	  	    	if the target had no implicit sources.
    133  *
    134  *	Suff_FindPath	    	Return the appropriate path to search in
    135  *				order to find the node.
    136  */
    137 
    138 #include	  "make.h"
    139 #include	  "dir.h"
    140 
    141 #define SUFF_DEBUG0(fmt) \
    142     if (!DEBUG(SUFF)) (void) 0; else fprintf(debug_file, fmt)
    143 
    144 #define SUFF_DEBUG1(fmt, arg1) \
    145     if (!DEBUG(SUFF)) (void) 0; else fprintf(debug_file, fmt, arg1)
    146 
    147 #define SUFF_DEBUG2(fmt, arg1, arg2) \
    148     if (!DEBUG(SUFF)) (void) 0; else fprintf(debug_file, fmt, arg1, arg2)
    149 
    150 #define SUFF_DEBUG3(fmt, arg1, arg2, arg3) \
    151     if (!DEBUG(SUFF)) (void) 0; else fprintf(debug_file, fmt, arg1, arg2, arg3)
    152 
    153 static Lst       sufflist;	/* Lst of suffixes */
    154 #ifdef CLEANUP
    155 static Lst	 suffClean;	/* Lst of suffixes to be cleaned */
    156 #endif
    157 static Lst	 srclist;	/* Lst of sources */
    158 static Lst       transforms;	/* Lst of transformation rules */
    159 
    160 static int        sNum = 0;	/* Counter for assigning suffix numbers */
    161 
    162 typedef enum {
    163     SUFF_INCLUDE	= 0x01,	/* One which is #include'd */
    164     SUFF_LIBRARY	= 0x02,	/* One which contains a library */
    165     SUFF_NULL		= 0x04	/* The empty suffix */
    166     /* XXX: Why is SUFF_NULL needed? Wouldn't nameLen == 0 mean the same? */
    167 } SuffFlags;
    168 
    169 ENUM_FLAGS_RTTI_3(SuffFlags,
    170 		  SUFF_INCLUDE, SUFF_LIBRARY, SUFF_NULL);
    171 
    172 /*
    173  * Structure describing an individual suffix.
    174  */
    175 typedef struct Suff {
    176     char         *name;	    	/* The suffix itself, such as ".c" */
    177     int		 nameLen;	/* Length of the name, to avoid strlen calls */
    178     SuffFlags	 flags;      	/* Type of suffix */
    179     Lst    	 searchPath;	/* The path along which files of this suffix
    180 				 * may be found */
    181     int          sNum;	      	/* The suffix number */
    182     int		 refCount;	/* Reference count of list membership */
    183     Lst          parents;	/* Suffixes we have a transformation to */
    184     Lst          children;	/* Suffixes we have a transformation from */
    185     Lst		 ref;		/* List of lists this suffix is referenced */
    186 } Suff;
    187 
    188 /*
    189  * Structure used in the search for implied sources.
    190  */
    191 typedef struct _Src {
    192     char            *file;	/* The file to look for */
    193     char    	    *pref;  	/* Prefix from which file was formed */
    194     Suff            *suff;	/* The suffix on the file */
    195     struct _Src     *parent;	/* The Src for which this is a source */
    196     GNode           *node;	/* The node describing the file */
    197     int	    	    children;	/* Count of existing children (so we don't free
    198 				 * this thing too early or never nuke it) */
    199 #ifdef DEBUG_SRC
    200     Lst		    cp;		/* Debug; children list */
    201 #endif
    202 } Src;
    203 
    204 /*
    205  * A structure for passing more than one argument to the Lst-library-invoked
    206  * function...
    207  */
    208 typedef struct {
    209     Lst            l;
    210     Src            *s;
    211 } LstSrc;
    212 
    213 typedef struct {
    214     GNode	  **gn;
    215     Suff	   *s;
    216     Boolean	    r;
    217 } GNodeSuff;
    218 
    219 static Suff 	    *suffNull;	/* The NULL suffix for this run */
    220 static Suff 	    *emptySuff;	/* The empty suffix required for POSIX
    221 				 * single-suffix transformation rules */
    222 
    223 
    224 static void SuffUnRef(void *, void *);
    225 static void SuffFree(void *);
    226 static void SuffInsert(Lst, Suff *);
    227 static void SuffRemove(Lst, Suff *);
    228 static Boolean SuffParseTransform(char *, Suff **, Suff **);
    229 static int SuffRebuildGraph(void *, void *);
    230 static int SuffScanTargets(void *, void *);
    231 static int SuffAddSrc(void *, void *);
    232 static void SuffAddLevel(Lst, Src *);
    233 static void SuffExpandChildren(LstNode, GNode *);
    234 static void SuffExpandWildcards(LstNode, GNode *);
    235 static Boolean SuffApplyTransform(GNode *, GNode *, Suff *, Suff *);
    236 static void SuffFindDeps(GNode *, Lst);
    237 static void SuffFindArchiveDeps(GNode *, Lst);
    238 static void SuffFindNormalDeps(GNode *, Lst);
    239 static int SuffPrintName(void *, void *);
    240 static int SuffPrintSuff(void *, void *);
    241 static int SuffPrintTrans(void *, void *);
    242 
    243 	/*************** Lst Predicates ****************/
    244 /*-
    245  *-----------------------------------------------------------------------
    246  * SuffStrIsPrefix  --
    247  *	See if pref is a prefix of str.
    248  *
    249  * Input:
    250  *	pref		possible prefix
    251  *	str		string to check
    252  *
    253  * Results:
    254  *	NULL if it ain't, pointer to character in str after prefix if so
    255  *
    256  * Side Effects:
    257  *	None
    258  *-----------------------------------------------------------------------
    259  */
    260 static const char *
    261 SuffStrIsPrefix(const char *pref, const char *str)
    262 {
    263     while (*str && *pref == *str) {
    264 	pref++;
    265 	str++;
    266     }
    267 
    268     return *pref ? NULL : str;
    269 }
    270 
    271 typedef struct {
    272     char	*ename;		/* The end of the name */
    273     int		 len;		/* Length of the name */
    274 } SuffSuffGetSuffixArgs;
    275 
    276 /* See if suff is a suffix of str. str->ename should point to THE END
    277  * of the string to check. (THE END == the null byte)
    278  *
    279  * Input:
    280  *	s		possible suffix
    281  *	str		string to examine
    282  *
    283  * Results:
    284  *	NULL if it ain't, pointer to character in str before suffix if
    285  *	it is.
    286  */
    287 static char *
    288 SuffSuffGetSuffix(const Suff *s, const SuffSuffGetSuffixArgs *str)
    289 {
    290     char  *p1;	    	/* Pointer into suffix name */
    291     char  *p2;	    	/* Pointer into string being examined */
    292 
    293     if (str->len < s->nameLen)
    294 	return NULL;		/* this string is shorter than the suffix */
    295 
    296     p1 = s->name + s->nameLen;
    297     p2 = str->ename;
    298 
    299     while (p1 >= s->name && *p1 == *p2) {
    300 	p1--;
    301 	p2--;
    302     }
    303 
    304     return p1 == s->name - 1 ? p2 : NULL;
    305 }
    306 
    307 /* Predicate form of SuffSuffGetSuffix, for Lst_Find. */
    308 static Boolean
    309 SuffSuffIsSuffix(const void *s, const void *sd)
    310 {
    311     return SuffSuffGetSuffix(s, sd) != NULL;
    312 }
    313 
    314 /* See if the suffix has the desired name. */
    315 static Boolean
    316 SuffSuffHasName(const void *s, const void *desiredName)
    317 {
    318     return strcmp(((const Suff *)s)->name, desiredName) == 0;
    319 }
    320 
    321 /* See if the suffix name is a prefix of the string. Care must be taken when
    322  * using this to search for transformations and what-not, since there could
    323  * well be two suffixes, one of which is a prefix of the other... */
    324 static Boolean
    325 SuffSuffIsPrefix(const void *s, const void *str)
    326 {
    327     return SuffStrIsPrefix(((const Suff *)s)->name, str) != NULL;
    328 }
    329 
    330 /* See if the graph node has the desired name. */
    331 static Boolean
    332 SuffGNHasName(const void *gn, const void *desiredName)
    333 {
    334     return strcmp(((const GNode *)gn)->name, desiredName) == 0;
    335 }
    336 
    337 	    /*********** Maintenance Functions ************/
    338 
    339 static void
    340 SuffUnRef(void *lp, void *sp)
    341 {
    342     Lst l = (Lst) lp;
    343 
    344     LstNode ln = Lst_FindDatum(l, sp);
    345     if (ln != NULL) {
    346 	Lst_Remove(l, ln);
    347 	((Suff *)sp)->refCount--;
    348     }
    349 }
    350 
    351 /* Free up all memory associated with the given suffix structure. */
    352 static void
    353 SuffFree(void *sp)
    354 {
    355     Suff *s = (Suff *)sp;
    356 
    357     if (s == suffNull)
    358 	suffNull = NULL;
    359 
    360     if (s == emptySuff)
    361 	emptySuff = NULL;
    362 
    363 #ifdef notdef
    364     /* We don't delete suffixes in order, so we cannot use this */
    365     if (s->refCount)
    366 	Punt("Internal error deleting suffix `%s' with refcount = %d", s->name,
    367 	    s->refCount);
    368 #endif
    369 
    370     Lst_Free(s->ref);
    371     Lst_Free(s->children);
    372     Lst_Free(s->parents);
    373     Lst_Destroy(s->searchPath, Dir_Destroy);
    374 
    375     free(s->name);
    376     free(s);
    377 }
    378 
    379 /* Remove the suffix from the list, and free if it is otherwise unused. */
    380 static void
    381 SuffRemove(Lst l, Suff *s)
    382 {
    383     SuffUnRef(l, s);
    384     if (s->refCount == 0) {
    385 	SuffUnRef(sufflist, s);
    386 	SuffFree(s);
    387     }
    388 }
    389 
    390 /* Insert the suffix into the list keeping the list ordered by suffix numbers.
    391  *
    392  * Input:
    393  *	l		the list where in s should be inserted
    394  *	s		the suffix to insert
    395  */
    396 static void
    397 SuffInsert(Lst l, Suff *s)
    398 {
    399     LstNode 	  ln;		/* current element in l we're examining */
    400     Suff          *s2 = NULL;	/* the suffix descriptor in this element */
    401 
    402     Lst_Open(l);
    403     while ((ln = Lst_Next(l)) != NULL) {
    404 	s2 = LstNode_Datum(ln);
    405 	if (s2->sNum >= s->sNum) {
    406 	    break;
    407 	}
    408     }
    409     Lst_Close(l);
    410 
    411     SUFF_DEBUG2("inserting %s(%d)...", s->name, s->sNum);
    412 
    413     if (ln == NULL) {
    414 	SUFF_DEBUG0("at end of list\n");
    415 	Lst_Append(l, s);
    416 	s->refCount++;
    417 	Lst_Append(s->ref, l);
    418     } else if (s2->sNum != s->sNum) {
    419 	SUFF_DEBUG2("before %s(%d)\n", s2->name, s2->sNum);
    420 	Lst_InsertBefore(l, ln, s);
    421 	s->refCount++;
    422 	Lst_Append(s->ref, l);
    423     } else {
    424 	SUFF_DEBUG0("already there\n");
    425     }
    426 }
    427 
    428 static Suff *
    429 SuffNew(const char *name)
    430 {
    431     Suff *s = bmake_malloc(sizeof(Suff));
    432 
    433     s->name =   	bmake_strdup(name);
    434     s->nameLen = 	strlen(s->name);
    435     s->searchPath = Lst_Init();
    436     s->children = 	Lst_Init();
    437     s->parents = 	Lst_Init();
    438     s->ref = 	Lst_Init();
    439     s->sNum =   	sNum++;
    440     s->flags =  	0;
    441     s->refCount =	1;
    442 
    443     return s;
    444 }
    445 
    446 /* This is gross. Nuke the list of suffixes but keep all transformation
    447  * rules around. The transformation graph is destroyed in this process, but
    448  * we leave the list of rules so when a new graph is formed the rules will
    449  * remain. This function is called from the parse module when a .SUFFIXES:\n
    450  * line is encountered. */
    451 void
    452 Suff_ClearSuffixes(void)
    453 {
    454 #ifdef CLEANUP
    455     Lst_MoveAll(suffClean, sufflist);
    456 #endif
    457     sufflist = Lst_Init();
    458     sNum = 0;
    459     if (suffNull)
    460 	SuffFree(suffNull);
    461     emptySuff = suffNull = SuffNew("");
    462 
    463     Dir_Concat(suffNull->searchPath, dirSearchPath);
    464     suffNull->flags =  	    SUFF_NULL;
    465 }
    466 
    467 /* Parse a transformation string to find its two component suffixes.
    468  *
    469  * Input:
    470  *	str		String being parsed
    471  *	out_src		Place to store source of trans.
    472  *	out_targ	Place to store target of trans.
    473  *
    474  * Results:
    475  *	TRUE if the string is a valid transformation, FALSE otherwise.
    476  */
    477 static Boolean
    478 SuffParseTransform(char *str, Suff **out_src, Suff **out_targ)
    479 {
    480     LstNode		srcLn;	    /* element in suffix list of trans source*/
    481     Suff		*src;	    /* Source of transformation */
    482     LstNode		targLn;	    /* element in suffix list of trans target*/
    483     char		*str2;	    /* Extra pointer (maybe target suffix) */
    484     LstNode 	    	singleLn;   /* element in suffix list of any suffix
    485 				     * that exactly matches str */
    486     Suff    	    	*single = NULL;/* Source of possible transformation to
    487 				     * null suffix */
    488 
    489     srcLn = NULL;
    490     singleLn = NULL;
    491 
    492     /*
    493      * Loop looking first for a suffix that matches the start of the
    494      * string and then for one that exactly matches the rest of it. If
    495      * we can find two that meet these criteria, we've successfully
    496      * parsed the string.
    497      */
    498     for (;;) {
    499 	if (srcLn == NULL) {
    500 	    srcLn = Lst_Find(sufflist, SuffSuffIsPrefix, str);
    501 	} else {
    502 	    srcLn = Lst_FindFrom(sufflist, LstNode_Next(srcLn),
    503 				  SuffSuffIsPrefix, str);
    504 	}
    505 	if (srcLn == NULL) {
    506 	    /*
    507 	     * Ran out of source suffixes -- no such rule
    508 	     */
    509 	    if (singleLn != NULL) {
    510 		/*
    511 		 * Not so fast Mr. Smith! There was a suffix that encompassed
    512 		 * the entire string, so we assume it was a transformation
    513 		 * to the null suffix (thank you POSIX). We still prefer to
    514 		 * find a double rule over a singleton, hence we leave this
    515 		 * check until the end.
    516 		 *
    517 		 * XXX: Use emptySuff over suffNull?
    518 		 */
    519 		*out_src = single;
    520 		*out_targ = suffNull;
    521 		return TRUE;
    522 	    }
    523 	    return FALSE;
    524 	}
    525 	src = LstNode_Datum(srcLn);
    526 	str2 = str + src->nameLen;
    527 	if (*str2 == '\0') {
    528 	    single = src;
    529 	    singleLn = srcLn;
    530 	} else {
    531 	    targLn = Lst_Find(sufflist, SuffSuffHasName, str2);
    532 	    if (targLn != NULL) {
    533 		*out_src = src;
    534 		*out_targ = LstNode_Datum(targLn);
    535 		return TRUE;
    536 	    }
    537 	}
    538     }
    539 }
    540 
    541 /* Return TRUE if the given string is a transformation rule, that is, a
    542  * concatenation of two known suffixes. */
    543 Boolean
    544 Suff_IsTransform(char *str)
    545 {
    546     Suff    	  *src, *targ;
    547 
    548     return SuffParseTransform(str, &src, &targ);
    549 }
    550 
    551 /* Add the transformation rule described by the line to the list of rules
    552  * and place the transformation itself in the graph.
    553  *
    554  * The node is placed on the end of the transforms Lst and links are made
    555  * between the two suffixes mentioned in the target name.
    556 
    557  * Input:
    558  *	line		name of transformation to add
    559  *
    560  * Results:
    561  *	The node created for the transformation in the transforms list
    562  */
    563 GNode *
    564 Suff_AddTransform(char *line)
    565 {
    566     GNode         *gn;		/* GNode of transformation rule */
    567     Suff          *s,		/* source suffix */
    568 		  *t;		/* target suffix */
    569     LstNode 	  ln;	    	/* Node for existing transformation */
    570     Boolean ok;
    571 
    572     ln = Lst_Find(transforms, SuffGNHasName, line);
    573     if (ln == NULL) {
    574 	/*
    575 	 * Make a new graph node for the transformation. It will be filled in
    576 	 * by the Parse module.
    577 	 */
    578 	gn = Targ_NewGN(line);
    579 	Lst_Append(transforms, gn);
    580     } else {
    581 	/*
    582 	 * New specification for transformation rule. Just nuke the old list
    583 	 * of commands so they can be filled in again... We don't actually
    584 	 * free the commands themselves, because a given command can be
    585 	 * attached to several different transformations.
    586 	 */
    587 	gn = LstNode_Datum(ln);
    588 	Lst_Free(gn->commands);
    589 	Lst_Free(gn->children);
    590 	gn->commands = Lst_Init();
    591 	gn->children = Lst_Init();
    592     }
    593 
    594     gn->type = OP_TRANSFORM;
    595 
    596     ok = SuffParseTransform(line, &s, &t);
    597     assert(ok);
    598     (void)ok;
    599 
    600     /*
    601      * link the two together in the proper relationship and order
    602      */
    603     SUFF_DEBUG2("defining transformation from `%s' to `%s'\n",
    604 		s->name, t->name);
    605     SuffInsert(t->children, s);
    606     SuffInsert(s->parents, t);
    607 
    608     return gn;
    609 }
    610 
    611 /* Handle the finish of a transformation definition, removing the
    612  * transformation from the graph if it has neither commands nor sources.
    613  * This is a callback procedure for the Parse module via Lst_ForEach.
    614  *
    615  * If the node has no commands or children, the children and parents lists
    616  * of the affected suffixes are altered.
    617  *
    618  * Input:
    619  *	gnp		Node for transformation
    620  *
    621  * Results:
    622  *	0, so that Lst_ForEach continues
    623  */
    624 int
    625 Suff_EndTransform(void *gnp, void *dummy MAKE_ATTR_UNUSED)
    626 {
    627     GNode *gn = (GNode *)gnp;
    628 
    629     if ((gn->type & OP_DOUBLEDEP) && !Lst_IsEmpty(gn->cohorts))
    630 	gn = LstNode_Datum(Lst_Last(gn->cohorts));
    631     if ((gn->type & OP_TRANSFORM) && Lst_IsEmpty(gn->commands) &&
    632 	Lst_IsEmpty(gn->children))
    633     {
    634 	Suff	*s, *t;
    635 
    636 	/*
    637 	 * SuffParseTransform() may fail for special rules which are not
    638 	 * actual transformation rules. (e.g. .DEFAULT)
    639 	 */
    640 	if (SuffParseTransform(gn->name, &s, &t)) {
    641 	    Lst	 p;
    642 
    643 	    SUFF_DEBUG2("deleting transformation from `%s' to `%s'\n",
    644 			s->name, t->name);
    645 
    646 	    /*
    647 	     * Store s->parents because s could be deleted in SuffRemove
    648 	     */
    649 	    p = s->parents;
    650 
    651 	    /*
    652 	     * Remove the source from the target's children list. We check for a
    653 	     * nil return to handle a beanhead saying something like
    654 	     *  .c.o .c.o:
    655 	     *
    656 	     * We'll be called twice when the next target is seen, but .c and .o
    657 	     * are only linked once...
    658 	     */
    659 	    SuffRemove(t->children, s);
    660 
    661 	    /*
    662 	     * Remove the target from the source's parents list
    663 	     */
    664 	    SuffRemove(p, t);
    665 	}
    666     } else if (gn->type & OP_TRANSFORM) {
    667         SUFF_DEBUG1("transformation %s complete\n", gn->name);
    668     }
    669 
    670     return 0;
    671 }
    672 
    673 /* Called from Suff_AddSuffix via Lst_ForEach to search through the list of
    674  * existing transformation rules and rebuild the transformation graph when
    675  * it has been destroyed by Suff_ClearSuffixes. If the given rule is a
    676  * transformation involving this suffix and another, existing suffix, the
    677  * proper relationship is established between the two.
    678  *
    679  * The appropriate links will be made between this suffix and others if
    680  * transformation rules exist for it.
    681  *
    682  * Input:
    683  *	transformp	Transformation to test
    684  *	sp		Suffix to rebuild
    685  *
    686  * Results:
    687  *	0, so that Lst_ForEach continues
    688  */
    689 static int
    690 SuffRebuildGraph(void *transformp, void *sp)
    691 {
    692     GNode   	*transform = (GNode *)transformp;
    693     Suff    	*s = (Suff *)sp;
    694     char 	*cp;
    695     LstNode	ln;
    696     Suff  	*s2;
    697     SuffSuffGetSuffixArgs sd;
    698 
    699     /*
    700      * First see if it is a transformation from this suffix.
    701      */
    702     cp = UNCONST(SuffStrIsPrefix(s->name, transform->name));
    703     if (cp != NULL) {
    704 	ln = Lst_Find(sufflist, SuffSuffHasName, cp);
    705 	if (ln != NULL) {
    706 	    /*
    707 	     * Found target. Link in and return, since it can't be anything
    708 	     * else.
    709 	     */
    710 	    s2 = LstNode_Datum(ln);
    711 	    SuffInsert(s2->children, s);
    712 	    SuffInsert(s->parents, s2);
    713 	    return 0;
    714 	}
    715     }
    716 
    717     /*
    718      * Not from, maybe to?
    719      */
    720     sd.len = strlen(transform->name);
    721     sd.ename = transform->name + sd.len;
    722     cp = SuffSuffGetSuffix(s, &sd);
    723     if (cp != NULL) {
    724 	/*
    725 	 * Null-terminate the source suffix in order to find it.
    726 	 */
    727 	cp[1] = '\0';
    728 	ln = Lst_Find(sufflist, SuffSuffHasName, transform->name);
    729 	/*
    730 	 * Replace the start of the target suffix
    731 	 */
    732 	cp[1] = s->name[0];
    733 	if (ln != NULL) {
    734 	    /*
    735 	     * Found it -- establish the proper relationship
    736 	     */
    737 	    s2 = LstNode_Datum(ln);
    738 	    SuffInsert(s->children, s2);
    739 	    SuffInsert(s2->parents, s);
    740 	}
    741     }
    742     return 0;
    743 }
    744 
    745 /* Called from Suff_AddSuffix via Lst_ForEach to search through the list of
    746  * existing targets and find if any of the existing targets can be turned
    747  * into a transformation rule.
    748  *
    749  * If such a target is found and the target is the current main target, the
    750  * main target is set to NULL and the next target examined (if that exists)
    751  * becomes the main target.
    752  *
    753  * Results:
    754  *	1 if a new main target has been selected, 0 otherwise.
    755  */
    756 static int
    757 SuffScanTargets(void *targetp, void *gsp)
    758 {
    759     GNode   	*target = (GNode *)targetp;
    760     GNodeSuff	*gs = (GNodeSuff *)gsp;
    761     Suff	*s, *t;
    762     char 	*ptr;
    763 
    764     if (*gs->gn == NULL && gs->r && (target->type & OP_NOTARGET) == 0) {
    765 	*gs->gn = target;
    766 	Targ_SetMain(target);
    767 	return 1;
    768     }
    769 
    770     if (target->type == OP_TRANSFORM)
    771 	return 0;
    772 
    773     if ((ptr = strstr(target->name, gs->s->name)) == NULL ||
    774 	ptr == target->name)
    775 	return 0;
    776 
    777     if (SuffParseTransform(target->name, &s, &t)) {
    778 	if (*gs->gn == target) {
    779 	    gs->r = TRUE;
    780 	    *gs->gn = NULL;
    781 	    Targ_SetMain(NULL);
    782 	}
    783 	Lst_Free(target->children);
    784 	target->children = Lst_Init();
    785 	target->type = OP_TRANSFORM;
    786 	/*
    787 	 * link the two together in the proper relationship and order
    788 	 */
    789 	SUFF_DEBUG2("defining transformation from `%s' to `%s'\n",
    790 		    s->name, t->name);
    791 	SuffInsert(t->children, s);
    792 	SuffInsert(s->parents, t);
    793     }
    794     return 0;
    795 }
    796 
    797 /* Add the suffix to the end of the list of known suffixes.
    798  * Should we restructure the suffix graph? Make doesn't...
    799  *
    800  * A GNode is created for the suffix and a Suff structure is created and
    801  * added to the suffixes list unless the suffix was already known.
    802  * The mainNode passed can be modified if a target mutated into a
    803  * transform and that target happened to be the main target.
    804  *
    805  * Input:
    806  *	name		the name of the suffix to add
    807  */
    808 void
    809 Suff_AddSuffix(const char *name, GNode **gn)
    810 {
    811     Suff          *s;	    /* new suffix descriptor */
    812     LstNode 	  ln;
    813     GNodeSuff	  gs;
    814 
    815     ln = Lst_Find(sufflist, SuffSuffHasName, name);
    816     if (ln == NULL) {
    817         s = SuffNew(name);
    818 
    819 	Lst_Append(sufflist, s);
    820 	/*
    821 	 * We also look at our existing targets list to see if adding
    822 	 * this suffix will make one of our current targets mutate into
    823 	 * a suffix rule. This is ugly, but other makes treat all targets
    824 	 * that start with a . as suffix rules.
    825 	 */
    826 	gs.gn = gn;
    827 	gs.s  = s;
    828 	gs.r  = FALSE;
    829 	Lst_ForEach(Targ_List(), SuffScanTargets, &gs);
    830 	/*
    831 	 * Look for any existing transformations from or to this suffix.
    832 	 * XXX: Only do this after a Suff_ClearSuffixes?
    833 	 */
    834 	Lst_ForEach(transforms, SuffRebuildGraph, s);
    835     }
    836 }
    837 
    838 /* Return the search path for the given suffix, or NULL. */
    839 Lst
    840 Suff_GetPath(char *sname)
    841 {
    842     LstNode   	  ln;
    843     Suff    	  *s;
    844 
    845     ln = Lst_Find(sufflist, SuffSuffHasName, sname);
    846     if (ln == NULL) {
    847 	return NULL;
    848     } else {
    849 	s = LstNode_Datum(ln);
    850 	return s->searchPath;
    851     }
    852 }
    853 
    854 /* Extend the search paths for all suffixes to include the default search
    855  * path.
    856  *
    857  * The searchPath field of all the suffixes is extended by the directories
    858  * in dirSearchPath. If paths were specified for the ".h" suffix, the
    859  * directories are stuffed into a global variable called ".INCLUDES" with
    860  * each directory preceded by a -I. The same is done for the ".a" suffix,
    861  * except the variable is called ".LIBS" and the flag is -L.
    862  */
    863 void
    864 Suff_DoPaths(void)
    865 {
    866     Suff	   	*s;
    867     LstNode  		ln;
    868     char		*ptr;
    869     Lst	    	    	inIncludes; /* Cumulative .INCLUDES path */
    870     Lst	    	    	inLibs;	    /* Cumulative .LIBS path */
    871 
    872 
    873     inIncludes = Lst_Init();
    874     inLibs = Lst_Init();
    875 
    876     Lst_Open(sufflist);
    877     while ((ln = Lst_Next(sufflist)) != NULL) {
    878 	s = LstNode_Datum(ln);
    879 	if (!Lst_IsEmpty(s->searchPath)) {
    880 #ifdef INCLUDES
    881 	    if (s->flags & SUFF_INCLUDE) {
    882 		Dir_Concat(inIncludes, s->searchPath);
    883 	    }
    884 #endif /* INCLUDES */
    885 #ifdef LIBRARIES
    886 	    if (s->flags & SUFF_LIBRARY) {
    887 		Dir_Concat(inLibs, s->searchPath);
    888 	    }
    889 #endif /* LIBRARIES */
    890 	    Dir_Concat(s->searchPath, dirSearchPath);
    891 	} else {
    892 	    Lst_Destroy(s->searchPath, Dir_Destroy);
    893 	    s->searchPath = Lst_Copy(dirSearchPath, Dir_CopyDir);
    894 	}
    895     }
    896     Lst_Close(sufflist);
    897 
    898     Var_Set(".INCLUDES", ptr = Dir_MakeFlags("-I", inIncludes), VAR_GLOBAL);
    899     free(ptr);
    900     Var_Set(".LIBS", ptr = Dir_MakeFlags("-L", inLibs), VAR_GLOBAL);
    901     free(ptr);
    902 
    903     Lst_Destroy(inIncludes, Dir_Destroy);
    904     Lst_Destroy(inLibs, Dir_Destroy);
    905 }
    906 
    907 /* Add the given suffix as a type of file which gets included.
    908  * Called from the parse module when a .INCLUDES line is parsed.
    909  * The suffix must have already been defined.
    910  * The SUFF_INCLUDE bit is set in the suffix's flags field.
    911  *
    912  * Input:
    913  *	sname		Name of the suffix to mark
    914  */
    915 void
    916 Suff_AddInclude(char *sname)
    917 {
    918     LstNode	  ln;
    919     Suff	  *s;
    920 
    921     ln = Lst_Find(sufflist, SuffSuffHasName, sname);
    922     if (ln != NULL) {
    923 	s = LstNode_Datum(ln);
    924 	s->flags |= SUFF_INCLUDE;
    925     }
    926 }
    927 
    928 /* Add the given suffix as a type of file which is a library.
    929  * Called from the parse module when parsing a .LIBS line.
    930  * The suffix must have been defined via .SUFFIXES before this is called.
    931  * The SUFF_LIBRARY bit is set in the suffix's flags field.
    932  *
    933  * Input:
    934  *	sname		Name of the suffix to mark
    935  */
    936 void
    937 Suff_AddLib(const char *sname)
    938 {
    939     LstNode	  ln;
    940     Suff	  *s;
    941 
    942     ln = Lst_Find(sufflist, SuffSuffHasName, sname);
    943     if (ln != NULL) {
    944 	s = LstNode_Datum(ln);
    945 	s->flags |= SUFF_LIBRARY;
    946     }
    947 }
    948 
    949 	  /********** Implicit Source Search Functions *********/
    950 
    951 /* Add a suffix as a Src structure to the given list with its parent
    952  * being the given Src structure. If the suffix is the null suffix,
    953  * the prefix is used unaltered as the file name in the Src structure.
    954  *
    955  * Input:
    956  *	sp		suffix for which to create a Src structure
    957  *	lsp		list and parent for the new Src
    958  *
    959  * Results:
    960  *	0, so that Lst_ForEach continues
    961  */
    962 static int
    963 SuffAddSrc(void *sp, void *lsp)
    964 {
    965     Suff	*s = (Suff *)sp;
    966     LstSrc      *ls = (LstSrc *)lsp;
    967     Src         *s2;	    /* new Src structure */
    968     Src    	*targ; 	    /* Target structure */
    969 
    970     targ = ls->s;
    971 
    972     if ((s->flags & SUFF_NULL) && (*s->name != '\0')) {
    973 	/*
    974 	 * If the suffix has been marked as the NULL suffix, also create a Src
    975 	 * structure for a file with no suffix attached. Two birds, and all
    976 	 * that...
    977 	 */
    978 	s2 = bmake_malloc(sizeof(Src));
    979 	s2->file =  	bmake_strdup(targ->pref);
    980 	s2->pref =  	targ->pref;
    981 	s2->parent = 	targ;
    982 	s2->node =  	NULL;
    983 	s2->suff =  	s;
    984 	s->refCount++;
    985 	s2->children =	0;
    986 	targ->children += 1;
    987 	Lst_Append(ls->l, s2);
    988 #ifdef DEBUG_SRC
    989 	s2->cp = Lst_Init();
    990 	Lst_Append(targ->cp, s2);
    991 	fprintf(debug_file, "1 add %p %p to %p:", targ, s2, ls->l);
    992 	Lst_ForEach(ls->l, PrintAddr, NULL);
    993 	fprintf(debug_file, "\n");
    994 #endif
    995     }
    996     s2 = bmake_malloc(sizeof(Src));
    997     s2->file = 	    str_concat2(targ->pref, s->name);
    998     s2->pref =	    targ->pref;
    999     s2->parent =    targ;
   1000     s2->node = 	    NULL;
   1001     s2->suff = 	    s;
   1002     s->refCount++;
   1003     s2->children =  0;
   1004     targ->children += 1;
   1005     Lst_Append(ls->l, s2);
   1006 #ifdef DEBUG_SRC
   1007     s2->cp = Lst_Init();
   1008     Lst_Append(targ->cp, s2);
   1009     fprintf(debug_file, "2 add %p %p to %p:", targ, s2, ls->l);
   1010     Lst_ForEach(ls->l, PrintAddr, NULL);
   1011     fprintf(debug_file, "\n");
   1012 #endif
   1013 
   1014     return 0;
   1015 }
   1016 
   1017 /* Add all the children of targ as Src structures to the given list.
   1018  *
   1019  * Input:
   1020  *	l		list to which to add the new level
   1021  *	targ		Src structure to use as the parent
   1022  */
   1023 static void
   1024 SuffAddLevel(Lst l, Src *targ)
   1025 {
   1026     LstSrc         ls;
   1027 
   1028     ls.s = targ;
   1029     ls.l = l;
   1030 
   1031     Lst_ForEach(targ->suff->children, SuffAddSrc, &ls);
   1032 }
   1033 
   1034 /* Free the first Src in the list that doesn't have a reference count.
   1035  * Return whether a Src was removed. */
   1036 static Boolean
   1037 SuffRemoveSrc(Lst l)
   1038 {
   1039     LstNode ln;
   1040     Src *s;
   1041 
   1042     Lst_Open(l);
   1043 
   1044 #ifdef DEBUG_SRC
   1045     fprintf(debug_file, "cleaning %lx: ", (unsigned long) l);
   1046     Lst_ForEach(l, PrintAddr, NULL);
   1047     fprintf(debug_file, "\n");
   1048 #endif
   1049 
   1050     while ((ln = Lst_Next(l)) != NULL) {
   1051 	s = LstNode_Datum(ln);
   1052 	if (s->children == 0) {
   1053 	    free(s->file);
   1054 	    if (!s->parent)
   1055 		free(s->pref);
   1056 	    else {
   1057 #ifdef DEBUG_SRC
   1058 		LstNode ln2 = Lst_FindDatum(s->parent->cp, s);
   1059 		if (ln2 != NULL)
   1060 		    Lst_Remove(s->parent->cp, ln2);
   1061 #endif
   1062 		--s->parent->children;
   1063 	    }
   1064 #ifdef DEBUG_SRC
   1065 	    fprintf(debug_file, "free: [l=%p] p=%p %d\n", l, s, s->children);
   1066 	    Lst_Free(s->cp);
   1067 #endif
   1068 	    Lst_Remove(l, ln);
   1069 	    free(s);
   1070 	    Lst_Close(l);
   1071 	    return TRUE;
   1072 	}
   1073 #ifdef DEBUG_SRC
   1074 	else {
   1075 	    fprintf(debug_file, "keep: [l=%p] p=%p %d: ", l, s, s->children);
   1076 	    Lst_ForEach(s->cp, PrintAddr, NULL);
   1077 	    fprintf(debug_file, "\n");
   1078 	}
   1079 #endif
   1080     }
   1081 
   1082     Lst_Close(l);
   1083 
   1084     return FALSE;
   1085 }
   1086 
   1087 /* Find the first existing file/target in the list srcs.
   1088  *
   1089  * Input:
   1090  *	srcs		list of Src structures to search through
   1091  *
   1092  * Results:
   1093  *	The lowest structure in the chain of transformations, or NULL.
   1094  */
   1095 static Src *
   1096 SuffFindThem(Lst srcs, Lst slst)
   1097 {
   1098     Src            *s;		/* current Src */
   1099     Src		   *rs;		/* returned Src */
   1100     char	   *ptr;
   1101 
   1102     rs = NULL;
   1103 
   1104     while (!Lst_IsEmpty(srcs)) {
   1105 	s = Lst_Dequeue(srcs);
   1106 
   1107 	SUFF_DEBUG1("\ttrying %s...", s->file);
   1108 
   1109 	/*
   1110 	 * A file is considered to exist if either a node exists in the
   1111 	 * graph for it or the file actually exists.
   1112 	 */
   1113 	if (Targ_FindNode(s->file, TARG_NOCREATE) != NULL) {
   1114 #ifdef DEBUG_SRC
   1115 	    fprintf(debug_file, "remove %p from %p\n", s, srcs);
   1116 #endif
   1117 	    rs = s;
   1118 	    break;
   1119 	}
   1120 
   1121 	if ((ptr = Dir_FindFile(s->file, s->suff->searchPath)) != NULL) {
   1122 	    rs = s;
   1123 #ifdef DEBUG_SRC
   1124 	    fprintf(debug_file, "remove %p from %p\n", s, srcs);
   1125 #endif
   1126 	    free(ptr);
   1127 	    break;
   1128 	}
   1129 
   1130 	SUFF_DEBUG0("not there\n");
   1131 
   1132 	SuffAddLevel(srcs, s);
   1133 	Lst_Append(slst, s);
   1134     }
   1135 
   1136     if (rs) {
   1137 	SUFF_DEBUG0("got it\n");
   1138     }
   1139     return rs;
   1140 }
   1141 
   1142 /* See if any of the children of the target in the Src structure is one from
   1143  * which the target can be transformed. If there is one, a Src structure is
   1144  * put together for it and returned.
   1145  *
   1146  * Input:
   1147  *	targ		Src to play with
   1148  *
   1149  * Results:
   1150  *	The Src of the "winning" child, or NULL.
   1151  */
   1152 static Src *
   1153 SuffFindCmds(Src *targ, Lst slst)
   1154 {
   1155     LstNode 	  	ln; 	/* General-purpose list node */
   1156     GNode		*t, 	/* Target GNode */
   1157 			*s; 	/* Source GNode */
   1158     int	    	  	prefLen;/* The length of the defined prefix */
   1159     Suff    	  	*suff;	/* Suffix on matching beastie */
   1160     Src	    	  	*ret;	/* Return value */
   1161     char    	  	*cp;
   1162 
   1163     t = targ->node;
   1164     Lst_Open(t->children);
   1165     prefLen = strlen(targ->pref);
   1166 
   1167     for (;;) {
   1168 	ln = Lst_Next(t->children);
   1169 	if (ln == NULL) {
   1170 	    Lst_Close(t->children);
   1171 	    return NULL;
   1172 	}
   1173 	s = LstNode_Datum(ln);
   1174 
   1175 	if (s->type & OP_OPTIONAL && Lst_IsEmpty(t->commands)) {
   1176 	    /*
   1177 	     * We haven't looked to see if .OPTIONAL files exist yet, so
   1178 	     * don't use one as the implicit source.
   1179 	     * This allows us to use .OPTIONAL in .depend files so make won't
   1180 	     * complain "don't know how to make xxx.h' when a dependent file
   1181 	     * has been moved/deleted.
   1182 	     */
   1183 	    continue;
   1184 	}
   1185 
   1186 	cp = strrchr(s->name, '/');
   1187 	if (cp == NULL) {
   1188 	    cp = s->name;
   1189 	} else {
   1190 	    cp++;
   1191 	}
   1192 	if (strncmp(cp, targ->pref, prefLen) != 0)
   1193 	    continue;
   1194 	/*
   1195 	 * The node matches the prefix ok, see if it has a known
   1196 	 * suffix.
   1197 	 */
   1198 	ln = Lst_Find(sufflist, SuffSuffHasName, &cp[prefLen]);
   1199 	if (ln == NULL)
   1200 	    continue;
   1201 	/*
   1202 	 * It even has a known suffix, see if there's a transformation
   1203 	 * defined between the node's suffix and the target's suffix.
   1204 	 *
   1205 	 * XXX: Handle multi-stage transformations here, too.
   1206 	 */
   1207 	suff = LstNode_Datum(ln);
   1208 
   1209 	/* XXX: Can targ->suff be NULL here? */
   1210 	if (targ->suff != NULL &&
   1211 	    Lst_FindDatum(suff->parents, targ->suff) != NULL)
   1212 	    break;
   1213     }
   1214 
   1215     /*
   1216      * Hot Damn! Create a new Src structure to describe
   1217      * this transformation (making sure to duplicate the
   1218      * source node's name so Suff_FindDeps can free it
   1219      * again (ick)), and return the new structure.
   1220      */
   1221     ret = bmake_malloc(sizeof(Src));
   1222     ret->file = bmake_strdup(s->name);
   1223     ret->pref = targ->pref;
   1224     ret->suff = suff;
   1225     suff->refCount++;
   1226     ret->parent = targ;
   1227     ret->node = s;
   1228     ret->children = 0;
   1229     targ->children += 1;
   1230 #ifdef DEBUG_SRC
   1231     ret->cp = Lst_Init();
   1232     fprintf(debug_file, "3 add %p %p\n", targ, ret);
   1233     Lst_Append(targ->cp, ret);
   1234 #endif
   1235     Lst_Append(slst, ret);
   1236     SUFF_DEBUG1("\tusing existing source %s\n", s->name);
   1237     Lst_Close(t->children);
   1238     return ret;
   1239 }
   1240 
   1241 /* Expand the names of any children of a given node that contain variable
   1242  * invocations or file wildcards into actual targets.
   1243  *
   1244  * The expanded node is removed from the parent's list of children, and the
   1245  * parent's unmade counter is decremented, but other nodes may be added.
   1246  *
   1247  * Input:
   1248  *	cln		Child to examine
   1249  *	pgn		Parent node being processed
   1250  */
   1251 static void
   1252 SuffExpandChildren(LstNode cln, GNode *pgn)
   1253 {
   1254     GNode   	*cgn = LstNode_Datum(cln);
   1255     GNode	*gn;	    /* New source 8) */
   1256     char	*cp;	    /* Expanded value */
   1257 
   1258     if (!Lst_IsEmpty(cgn->order_pred) || !Lst_IsEmpty(cgn->order_succ))
   1259 	/* It is all too hard to process the result of .ORDER */
   1260 	return;
   1261 
   1262     if (cgn->type & OP_WAIT)
   1263 	/* Ignore these (& OP_PHONY ?) */
   1264 	return;
   1265 
   1266     /*
   1267      * First do variable expansion -- this takes precedence over
   1268      * wildcard expansion. If the result contains wildcards, they'll be gotten
   1269      * to later since the resulting words are tacked on to the end of
   1270      * the children list.
   1271      */
   1272     if (strchr(cgn->name, '$') == NULL) {
   1273 	SuffExpandWildcards(cln, pgn);
   1274 	return;
   1275     }
   1276 
   1277     SUFF_DEBUG1("Expanding \"%s\"...", cgn->name);
   1278     cp = Var_Subst(cgn->name, pgn, VARE_UNDEFERR|VARE_WANTRES);
   1279 
   1280     {
   1281 	Lst	    members = Lst_Init();
   1282 
   1283 	if (cgn->type & OP_ARCHV) {
   1284 	    /*
   1285 	     * Node was an archive(member) target, so we want to call
   1286 	     * on the Arch module to find the nodes for us, expanding
   1287 	     * variables in the parent's context.
   1288 	     */
   1289 	    char	*sacrifice = cp;
   1290 
   1291 	    (void)Arch_ParseArchive(&sacrifice, members, pgn);
   1292 	} else {
   1293 	    /*
   1294 	     * Break the result into a vector of strings whose nodes
   1295 	     * we can find, then add those nodes to the members list.
   1296 	     * Unfortunately, we can't use brk_string b/c it
   1297 	     * doesn't understand about variable specifications with
   1298 	     * spaces in them...
   1299 	     */
   1300 	    char	    *start;
   1301 	    char	    *initcp = cp;   /* For freeing... */
   1302 
   1303 	    for (start = cp; *start == ' ' || *start == '\t'; start++)
   1304 		continue;
   1305 	    for (cp = start; *cp != '\0'; cp++) {
   1306 		if (*cp == ' ' || *cp == '\t') {
   1307 		    /*
   1308 		     * White-space -- terminate element, find the node,
   1309 		     * add it, skip any further spaces.
   1310 		     */
   1311 		    *cp++ = '\0';
   1312 		    gn = Targ_FindNode(start, TARG_CREATE);
   1313 		    Lst_Append(members, gn);
   1314 		    while (*cp == ' ' || *cp == '\t') {
   1315 			cp++;
   1316 		    }
   1317 		    /*
   1318 		     * Adjust cp for increment at start of loop, but
   1319 		     * set start to first non-space.
   1320 		     */
   1321 		    start = cp--;
   1322 		} else if (*cp == '$') {
   1323 		    /*
   1324 		     * Start of a variable spec -- contact variable module
   1325 		     * to find the end so we can skip over it.
   1326 		     */
   1327 		    const char	*junk;
   1328 		    int 	len;
   1329 		    void	*freeIt;
   1330 
   1331 		    junk = Var_Parse(cp, pgn, VARE_UNDEFERR|VARE_WANTRES,
   1332 				     &len, &freeIt);
   1333 		    if (junk != var_Error) {
   1334 			cp += len - 1;
   1335 		    }
   1336 
   1337 		    free(freeIt);
   1338 		} else if (*cp == '\\' && cp[1] != '\0') {
   1339 		    /*
   1340 		     * Escaped something -- skip over it
   1341 		     */
   1342 		    cp++;
   1343 		}
   1344 	    }
   1345 
   1346 	    if (cp != start) {
   1347 		/*
   1348 		 * Stuff left over -- add it to the list too
   1349 		 */
   1350 		gn = Targ_FindNode(start, TARG_CREATE);
   1351 		Lst_Append(members, gn);
   1352 	    }
   1353 	    /*
   1354 	     * Point cp back at the beginning again so the variable value
   1355 	     * can be freed.
   1356 	     */
   1357 	    cp = initcp;
   1358 	}
   1359 
   1360 	/*
   1361 	 * Add all elements of the members list to the parent node.
   1362 	 */
   1363 	while(!Lst_IsEmpty(members)) {
   1364 	    gn = Lst_Dequeue(members);
   1365 
   1366 	    SUFF_DEBUG1("%s...", gn->name);
   1367 	    /* Add gn to the parents child list before the original child */
   1368 	    Lst_InsertBefore(pgn->children, cln, gn);
   1369 	    Lst_Append(gn->parents, pgn);
   1370 	    pgn->unmade++;
   1371 	    /* Expand wildcards on new node */
   1372 	    SuffExpandWildcards(LstNode_Prev(cln), pgn);
   1373 	}
   1374 	Lst_Free(members);
   1375 
   1376 	/*
   1377 	 * Free the result
   1378 	 */
   1379 	free(cp);
   1380     }
   1381 
   1382     SUFF_DEBUG0("\n");
   1383 
   1384     /*
   1385      * Now the source is expanded, remove it from the list of children to
   1386      * keep it from being processed.
   1387      */
   1388     pgn->unmade--;
   1389     Lst_Remove(pgn->children, cln);
   1390     Lst_Remove(cgn->parents, Lst_FindDatum(cgn->parents, pgn));
   1391 }
   1392 
   1393 static void
   1394 SuffExpandWildcards(LstNode cln, GNode *pgn)
   1395 {
   1396     GNode   	*cgn = LstNode_Datum(cln);
   1397     GNode	*gn;	    /* New source 8) */
   1398     char	*cp;	    /* Expanded value */
   1399     Lst 	explist;    /* List of expansions */
   1400 
   1401     if (!Dir_HasWildcards(cgn->name))
   1402 	return;
   1403 
   1404     /*
   1405      * Expand the word along the chosen path
   1406      */
   1407     explist = Lst_Init();
   1408     Dir_Expand(cgn->name, Suff_FindPath(cgn), explist);
   1409 
   1410     while (!Lst_IsEmpty(explist)) {
   1411 	/*
   1412 	 * Fetch next expansion off the list and find its GNode
   1413 	 */
   1414 	cp = Lst_Dequeue(explist);
   1415 
   1416 	SUFF_DEBUG1("%s...", cp);
   1417 	gn = Targ_FindNode(cp, TARG_CREATE);
   1418 
   1419 	/* Add gn to the parents child list before the original child */
   1420 	Lst_InsertBefore(pgn->children, cln, gn);
   1421 	Lst_Append(gn->parents, pgn);
   1422 	pgn->unmade++;
   1423     }
   1424 
   1425     Lst_Free(explist);
   1426 
   1427     SUFF_DEBUG0("\n");
   1428 
   1429     /*
   1430      * Now the source is expanded, remove it from the list of children to
   1431      * keep it from being processed.
   1432      */
   1433     pgn->unmade--;
   1434     Lst_Remove(pgn->children, cln);
   1435     Lst_Remove(cgn->parents, Lst_FindDatum(cgn->parents, pgn));
   1436 }
   1437 
   1438 /* Find a path along which to expand the node.
   1439  *
   1440  * If the word has a known suffix, use that path.
   1441  * If it has no known suffix, use the default system search path.
   1442  *
   1443  * Input:
   1444  *	gn		Node being examined
   1445  *
   1446  * Results:
   1447  *	The appropriate path to search for the GNode.
   1448  */
   1449 Lst
   1450 Suff_FindPath(GNode* gn)
   1451 {
   1452     Suff *suff = gn->suffix;
   1453 
   1454     if (suff == NULL) {
   1455 	SuffSuffGetSuffixArgs sd;   /* Search string data */
   1456 	LstNode ln;
   1457 	sd.len = strlen(gn->name);
   1458 	sd.ename = gn->name + sd.len;
   1459 	ln = Lst_Find(sufflist, SuffSuffIsSuffix, &sd);
   1460 
   1461 	SUFF_DEBUG1("Wildcard expanding \"%s\"...", gn->name);
   1462 	if (ln != NULL)
   1463 	    suff = LstNode_Datum(ln);
   1464 	/* XXX: Here we can save the suffix so we don't have to do this again */
   1465     }
   1466 
   1467     if (suff != NULL) {
   1468 	SUFF_DEBUG1("suffix is \"%s\"...", suff->name);
   1469 	return suff->searchPath;
   1470     } else {
   1471 	/*
   1472 	 * Use default search path
   1473 	 */
   1474 	return dirSearchPath;
   1475     }
   1476 }
   1477 
   1478 /* Apply a transformation rule, given the source and target nodes and
   1479  * suffixes.
   1480  *
   1481  * Input:
   1482  *	tGn		Target node
   1483  *	sGn		Source node
   1484  *	t		Target suffix
   1485  *	s		Source suffix
   1486  *
   1487  * Results:
   1488  *	TRUE if successful, FALSE if not.
   1489  *
   1490  * Side Effects:
   1491  *	The source and target are linked and the commands from the
   1492  *	transformation are added to the target node's commands list.
   1493  *	All attributes but OP_DEPMASK and OP_TRANSFORM are applied
   1494  *	to the target. The target also inherits all the sources for
   1495  *	the transformation rule.
   1496  */
   1497 static Boolean
   1498 SuffApplyTransform(GNode *tGn, GNode *sGn, Suff *t, Suff *s)
   1499 {
   1500     LstNode 	ln, nln;    /* General node */
   1501     char    	*tname;	    /* Name of transformation rule */
   1502     GNode   	*gn;	    /* Node for same */
   1503 
   1504     /*
   1505      * Form the proper links between the target and source.
   1506      */
   1507     Lst_Append(tGn->children, sGn);
   1508     Lst_Append(sGn->parents, tGn);
   1509     tGn->unmade += 1;
   1510 
   1511     /*
   1512      * Locate the transformation rule itself
   1513      */
   1514     tname = str_concat2(s->name, t->name);
   1515     ln = Lst_Find(transforms, SuffGNHasName, tname);
   1516     free(tname);
   1517 
   1518     if (ln == NULL) {
   1519 	/*
   1520 	 * Not really such a transformation rule (can happen when we're
   1521 	 * called to link an OP_MEMBER and OP_ARCHV node), so return
   1522 	 * FALSE.
   1523 	 */
   1524 	return FALSE;
   1525     }
   1526 
   1527     gn = LstNode_Datum(ln);
   1528 
   1529     SUFF_DEBUG3("\tapplying %s -> %s to \"%s\"\n", s->name, t->name, tGn->name);
   1530 
   1531     /*
   1532      * Record last child for expansion purposes
   1533      */
   1534     ln = Lst_Last(tGn->children);
   1535 
   1536     /*
   1537      * Pass the buck to Make_HandleUse to apply the rule
   1538      */
   1539     (void)Make_HandleUse(gn, tGn);
   1540 
   1541     /*
   1542      * Deal with wildcards and variables in any acquired sources
   1543      */
   1544     for (ln = ln != NULL ? LstNode_Next(ln) : NULL; ln != NULL; ln = nln) {
   1545 	nln = LstNode_Next(ln);
   1546 	SuffExpandChildren(ln, tGn);
   1547     }
   1548 
   1549     /*
   1550      * Keep track of another parent to which this beast is transformed so
   1551      * the .IMPSRC variable can be set correctly for the parent.
   1552      */
   1553     Lst_Append(sGn->implicitParents, tGn);
   1554 
   1555     return TRUE;
   1556 }
   1557 
   1558 
   1559 /* Locate dependencies for an OP_ARCHV node.
   1560  *
   1561  * Input:
   1562  *	gn		Node for which to locate dependencies
   1563  *
   1564  * Side Effects:
   1565  *	Same as Suff_FindDeps
   1566  */
   1567 static void
   1568 SuffFindArchiveDeps(GNode *gn, Lst slst)
   1569 {
   1570     char    	*eoarch;    /* End of archive portion */
   1571     char    	*eoname;    /* End of member portion */
   1572     GNode   	*mem;	    /* Node for member */
   1573     LstNode 	ln, nln;    /* Next suffix node to check */
   1574     Suff    	*ms;	    /* Suffix descriptor for member */
   1575     char    	*name;	    /* Start of member's name */
   1576 
   1577     /*
   1578      * The node is an archive(member) pair. so we must find a
   1579      * suffix for both of them.
   1580      */
   1581     eoarch = strchr(gn->name, '(');
   1582     eoname = strchr(eoarch, ')');
   1583 
   1584     /*
   1585      * Caller guarantees the format `libname(member)', via
   1586      * Arch_ParseArchive.
   1587      */
   1588     assert(eoarch != NULL);
   1589     assert(eoname != NULL);
   1590 
   1591     *eoname = '\0';	  /* Nuke parentheses during suffix search */
   1592     *eoarch = '\0';	  /* So a suffix can be found */
   1593 
   1594     name = eoarch + 1;
   1595 
   1596     /*
   1597      * To simplify things, call Suff_FindDeps recursively on the member now,
   1598      * so we can simply compare the member's .PREFIX and .TARGET variables
   1599      * to locate its suffix. This allows us to figure out the suffix to
   1600      * use for the archive without having to do a quadratic search over the
   1601      * suffix list, backtracking for each one...
   1602      */
   1603     mem = Targ_FindNode(name, TARG_CREATE);
   1604     SuffFindDeps(mem, slst);
   1605 
   1606     /*
   1607      * Create the link between the two nodes right off
   1608      */
   1609     Lst_Append(gn->children, mem);
   1610     Lst_Append(mem->parents, gn);
   1611     gn->unmade += 1;
   1612 
   1613     /*
   1614      * Copy in the variables from the member node to this one.
   1615      */
   1616     {
   1617 	char *freeIt;
   1618 	Var_Set(PREFIX, Var_Value(PREFIX, mem, &freeIt), gn);
   1619 	bmake_free(freeIt);
   1620 	Var_Set(TARGET, Var_Value(TARGET, mem, &freeIt), gn);
   1621 	bmake_free(freeIt);
   1622     }
   1623 
   1624     ms = mem->suffix;
   1625     if (ms == NULL) {
   1626 	/*
   1627 	 * Didn't know what it was -- use .NULL suffix if not in make mode
   1628 	 */
   1629 	SUFF_DEBUG0("using null suffix\n");
   1630 	ms = suffNull;
   1631     }
   1632 
   1633 
   1634     /*
   1635      * Set the other two local variables required for this target.
   1636      */
   1637     Var_Set(MEMBER, name, gn);
   1638     Var_Set(ARCHIVE, gn->name, gn);
   1639 
   1640     /*
   1641      * Set $@ for compatibility with other makes
   1642      */
   1643     Var_Set(TARGET, gn->name, gn);
   1644 
   1645     /*
   1646      * Now we've got the important local variables set, expand any sources
   1647      * that still contain variables or wildcards in their names.
   1648      */
   1649     for (ln = Lst_First(gn->children); ln != NULL; ln = nln) {
   1650 	nln = LstNode_Next(ln);
   1651 	SuffExpandChildren(ln, gn);
   1652     }
   1653 
   1654     if (ms != NULL) {
   1655 	/*
   1656 	 * Member has a known suffix, so look for a transformation rule from
   1657 	 * it to a possible suffix of the archive. Rather than searching
   1658 	 * through the entire list, we just look at suffixes to which the
   1659 	 * member's suffix may be transformed...
   1660 	 */
   1661 	SuffSuffGetSuffixArgs sd;	/* Search string data */
   1662 
   1663 	/*
   1664 	 * Use first matching suffix...
   1665 	 */
   1666 	sd.len = eoarch - gn->name;
   1667 	sd.ename = eoarch;
   1668 	ln = Lst_Find(ms->parents, SuffSuffIsSuffix, &sd);
   1669 
   1670 	if (ln != NULL) {
   1671 	    /*
   1672 	     * Got one -- apply it
   1673 	     */
   1674 	    Suff *suff = LstNode_Datum(ln);
   1675 	    if (!SuffApplyTransform(gn, mem, suff, ms)) {
   1676 		SUFF_DEBUG2("\tNo transformation from %s -> %s\n",
   1677 			    ms->name, suff->name);
   1678 	    }
   1679 	}
   1680     }
   1681 
   1682     /*
   1683      * Replace the opening and closing parens now we've no need of the separate
   1684      * pieces.
   1685      */
   1686     *eoarch = '('; *eoname = ')';
   1687 
   1688     /*
   1689      * Pretend gn appeared to the left of a dependency operator so
   1690      * the user needn't provide a transformation from the member to the
   1691      * archive.
   1692      */
   1693     if (OP_NOP(gn->type)) {
   1694 	gn->type |= OP_DEPENDS;
   1695     }
   1696 
   1697     /*
   1698      * Flag the member as such so we remember to look in the archive for
   1699      * its modification time. The OP_JOIN | OP_MADE is needed because this
   1700      * target should never get made.
   1701      */
   1702     mem->type |= OP_MEMBER | OP_JOIN | OP_MADE;
   1703 }
   1704 
   1705 /* Locate implicit dependencies for regular targets.
   1706  *
   1707  * Input:
   1708  *	gn		Node for which to find sources
   1709  *
   1710  * Side Effects:
   1711  *	Same as Suff_FindDeps
   1712  */
   1713 static void
   1714 SuffFindNormalDeps(GNode *gn, Lst slst)
   1715 {
   1716     char    	*eoname;    /* End of name */
   1717     char    	*sopref;    /* Start of prefix */
   1718     LstNode 	ln, nln;    /* Next suffix node to check */
   1719     Lst	    	srcs;	    /* List of sources at which to look */
   1720     Lst	    	targs;	    /* List of targets to which things can be
   1721 			     * transformed. They all have the same file,
   1722 			     * but different suff and pref fields */
   1723     Src	    	*bottom;    /* Start of found transformation path */
   1724     Src 	*src;	    /* General Src pointer */
   1725     char    	*pref;	    /* Prefix to use */
   1726     Src	    	*targ;	    /* General Src target pointer */
   1727     SuffSuffGetSuffixArgs sd; /* Search string data */
   1728 
   1729 
   1730     sd.len = strlen(gn->name);
   1731     sd.ename = eoname = gn->name + sd.len;
   1732 
   1733     sopref = gn->name;
   1734 
   1735     /*
   1736      * Begin at the beginning...
   1737      */
   1738     ln = Lst_First(sufflist);
   1739     srcs = Lst_Init();
   1740     targs = Lst_Init();
   1741 
   1742     /*
   1743      * We're caught in a catch-22 here. On the one hand, we want to use any
   1744      * transformation implied by the target's sources, but we can't examine
   1745      * the sources until we've expanded any variables/wildcards they may hold,
   1746      * and we can't do that until we've set up the target's local variables
   1747      * and we can't do that until we know what the proper suffix for the
   1748      * target is (in case there are two suffixes one of which is a suffix of
   1749      * the other) and we can't know that until we've found its implied
   1750      * source, which we may not want to use if there's an existing source
   1751      * that implies a different transformation.
   1752      *
   1753      * In an attempt to get around this, which may not work all the time,
   1754      * but should work most of the time, we look for implied sources first,
   1755      * checking transformations to all possible suffixes of the target,
   1756      * use what we find to set the target's local variables, expand the
   1757      * children, then look for any overriding transformations they imply.
   1758      * Should we find one, we discard the one we found before.
   1759      */
   1760     bottom = NULL;
   1761     targ = NULL;
   1762 
   1763     if (!(gn->type & OP_PHONY)) {
   1764 
   1765 	while (ln != NULL) {
   1766 	    /*
   1767 	     * Look for next possible suffix...
   1768 	     */
   1769 	    ln = Lst_FindFrom(sufflist, ln, SuffSuffIsSuffix, &sd);
   1770 
   1771 	    if (ln != NULL) {
   1772 	        const char *eopref;
   1773 
   1774 		/*
   1775 		 * Allocate a Src structure to which things can be transformed
   1776 		 */
   1777 		targ = bmake_malloc(sizeof(Src));
   1778 		targ->file = bmake_strdup(gn->name);
   1779 		targ->suff = LstNode_Datum(ln);
   1780 		targ->suff->refCount++;
   1781 		targ->node = gn;
   1782 		targ->parent = NULL;
   1783 		targ->children = 0;
   1784 #ifdef DEBUG_SRC
   1785 		targ->cp = Lst_Init();
   1786 #endif
   1787 
   1788 		eopref = eoname - targ->suff->nameLen;
   1789 		targ->pref = bmake_strsedup(sopref, eopref);
   1790 
   1791 		/*
   1792 		 * Add nodes from which the target can be made
   1793 		 */
   1794 		SuffAddLevel(srcs, targ);
   1795 
   1796 		/*
   1797 		 * Record the target so we can nuke it
   1798 		 */
   1799 		Lst_Append(targs, targ);
   1800 
   1801 		/*
   1802 		 * Search from this suffix's successor...
   1803 		 */
   1804 		ln = LstNode_Next(ln);
   1805 	    }
   1806 	}
   1807 
   1808 	/*
   1809 	 * Handle target of unknown suffix...
   1810 	 */
   1811 	if (Lst_IsEmpty(targs) && suffNull != NULL) {
   1812 	    SUFF_DEBUG1("\tNo known suffix on %s. Using .NULL suffix\n",
   1813 			gn->name);
   1814 
   1815 	    targ = bmake_malloc(sizeof(Src));
   1816 	    targ->file = bmake_strdup(gn->name);
   1817 	    targ->suff = suffNull;
   1818 	    targ->suff->refCount++;
   1819 	    targ->node = gn;
   1820 	    targ->parent = NULL;
   1821 	    targ->children = 0;
   1822 	    targ->pref = bmake_strdup(sopref);
   1823 #ifdef DEBUG_SRC
   1824 	    targ->cp = Lst_Init();
   1825 #endif
   1826 
   1827 	    /*
   1828 	     * Only use the default suffix rules if we don't have commands
   1829 	     * defined for this gnode; traditional make programs used to
   1830 	     * not define suffix rules if the gnode had children but we
   1831 	     * don't do this anymore.
   1832 	     */
   1833 	    if (Lst_IsEmpty(gn->commands))
   1834 		SuffAddLevel(srcs, targ);
   1835 	    else {
   1836 		SUFF_DEBUG0("not ");
   1837 	    }
   1838 
   1839 	    SUFF_DEBUG0("adding suffix rules\n");
   1840 
   1841 	    Lst_Append(targs, targ);
   1842 	}
   1843 
   1844 	/*
   1845 	 * Using the list of possible sources built up from the target
   1846 	 * suffix(es), try and find an existing file/target that matches.
   1847 	 */
   1848 	bottom = SuffFindThem(srcs, slst);
   1849 
   1850 	if (bottom == NULL) {
   1851 	    /*
   1852 	     * No known transformations -- use the first suffix found
   1853 	     * for setting the local variables.
   1854 	     */
   1855 	    if (!Lst_IsEmpty(targs)) {
   1856 		targ = LstNode_Datum(Lst_First(targs));
   1857 	    } else {
   1858 		targ = NULL;
   1859 	    }
   1860 	} else {
   1861 	    /*
   1862 	     * Work up the transformation path to find the suffix of the
   1863 	     * target to which the transformation was made.
   1864 	     */
   1865 	    for (targ = bottom; targ->parent != NULL; targ = targ->parent)
   1866 		continue;
   1867 	}
   1868     }
   1869 
   1870     Var_Set(TARGET, gn->path ? gn->path : gn->name, gn);
   1871 
   1872     pref = (targ != NULL) ? targ->pref : gn->name;
   1873     Var_Set(PREFIX, pref, gn);
   1874 
   1875     /*
   1876      * Now we've got the important local variables set, expand any sources
   1877      * that still contain variables or wildcards in their names.
   1878      */
   1879     for (ln = Lst_First(gn->children); ln != NULL; ln = nln) {
   1880 	nln = LstNode_Next(ln);
   1881 	SuffExpandChildren(ln, gn);
   1882     }
   1883 
   1884     if (targ == NULL) {
   1885 	SUFF_DEBUG1("\tNo valid suffix on %s\n", gn->name);
   1886 
   1887 sfnd_abort:
   1888 	/*
   1889 	 * Deal with finding the thing on the default search path. We
   1890 	 * always do that, not only if the node is only a source (not
   1891 	 * on the lhs of a dependency operator or [XXX] it has neither
   1892 	 * children or commands) as the old pmake did.
   1893 	 */
   1894 	if ((gn->type & (OP_PHONY|OP_NOPATH)) == 0) {
   1895 	    free(gn->path);
   1896 	    gn->path = Dir_FindFile(gn->name,
   1897 				    (targ == NULL ? dirSearchPath :
   1898 				     targ->suff->searchPath));
   1899 	    if (gn->path != NULL) {
   1900 		char *ptr;
   1901 		Var_Set(TARGET, gn->path, gn);
   1902 
   1903 		if (targ != NULL) {
   1904 		    /*
   1905 		     * Suffix known for the thing -- trim the suffix off
   1906 		     * the path to form the proper .PREFIX variable.
   1907 		     */
   1908 		    int     savep = strlen(gn->path) - targ->suff->nameLen;
   1909 		    char    savec;
   1910 
   1911 		    if (gn->suffix)
   1912 			gn->suffix->refCount--;
   1913 		    gn->suffix = targ->suff;
   1914 		    gn->suffix->refCount++;
   1915 
   1916 		    savec = gn->path[savep];
   1917 		    gn->path[savep] = '\0';
   1918 
   1919 		    if ((ptr = strrchr(gn->path, '/')) != NULL)
   1920 			ptr++;
   1921 		    else
   1922 			ptr = gn->path;
   1923 
   1924 		    Var_Set(PREFIX, ptr, gn);
   1925 
   1926 		    gn->path[savep] = savec;
   1927 		} else {
   1928 		    /*
   1929 		     * The .PREFIX gets the full path if the target has
   1930 		     * no known suffix.
   1931 		     */
   1932 		    if (gn->suffix)
   1933 			gn->suffix->refCount--;
   1934 		    gn->suffix = NULL;
   1935 
   1936 		    if ((ptr = strrchr(gn->path, '/')) != NULL)
   1937 			ptr++;
   1938 		    else
   1939 			ptr = gn->path;
   1940 
   1941 		    Var_Set(PREFIX, ptr, gn);
   1942 		}
   1943 	    }
   1944 	}
   1945 
   1946 	goto sfnd_return;
   1947     }
   1948 
   1949     /*
   1950      * If the suffix indicates that the target is a library, mark that in
   1951      * the node's type field.
   1952      */
   1953     if (targ->suff->flags & SUFF_LIBRARY) {
   1954 	gn->type |= OP_LIB;
   1955     }
   1956 
   1957     /*
   1958      * Check for overriding transformation rule implied by sources
   1959      */
   1960     if (!Lst_IsEmpty(gn->children)) {
   1961 	src = SuffFindCmds(targ, slst);
   1962 
   1963 	if (src != NULL) {
   1964 	    /*
   1965 	     * Free up all the Src structures in the transformation path
   1966 	     * up to, but not including, the parent node.
   1967 	     */
   1968 	    while (bottom && bottom->parent != NULL) {
   1969 		if (Lst_FindDatum(slst, bottom) == NULL) {
   1970 		    Lst_Append(slst, bottom);
   1971 		}
   1972 		bottom = bottom->parent;
   1973 	    }
   1974 	    bottom = src;
   1975 	}
   1976     }
   1977 
   1978     if (bottom == NULL) {
   1979 	/*
   1980 	 * No idea from where it can come -- return now.
   1981 	 */
   1982 	goto sfnd_abort;
   1983     }
   1984 
   1985     /*
   1986      * We now have a list of Src structures headed by 'bottom' and linked via
   1987      * their 'parent' pointers. What we do next is create links between
   1988      * source and target nodes (which may or may not have been created)
   1989      * and set the necessary local variables in each target. The
   1990      * commands for each target are set from the commands of the
   1991      * transformation rule used to get from the src suffix to the targ
   1992      * suffix. Note that this causes the commands list of the original
   1993      * node, gn, to be replaced by the commands of the final
   1994      * transformation rule. Also, the unmade field of gn is incremented.
   1995      * Etc.
   1996      */
   1997     if (bottom->node == NULL) {
   1998 	bottom->node = Targ_FindNode(bottom->file, TARG_CREATE);
   1999     }
   2000 
   2001     for (src = bottom; src->parent != NULL; src = src->parent) {
   2002 	targ = src->parent;
   2003 
   2004 	if (src->node->suffix)
   2005 	    src->node->suffix->refCount--;
   2006 	src->node->suffix = src->suff;
   2007 	src->node->suffix->refCount++;
   2008 
   2009 	if (targ->node == NULL) {
   2010 	    targ->node = Targ_FindNode(targ->file, TARG_CREATE);
   2011 	}
   2012 
   2013 	SuffApplyTransform(targ->node, src->node,
   2014 			   targ->suff, src->suff);
   2015 
   2016 	if (targ->node != gn) {
   2017 	    /*
   2018 	     * Finish off the dependency-search process for any nodes
   2019 	     * between bottom and gn (no point in questing around the
   2020 	     * filesystem for their implicit source when it's already
   2021 	     * known). Note that the node can't have any sources that
   2022 	     * need expanding, since SuffFindThem will stop on an existing
   2023 	     * node, so all we need to do is set the standard and System V
   2024 	     * variables.
   2025 	     */
   2026 	    targ->node->type |= OP_DEPS_FOUND;
   2027 
   2028 	    Var_Set(PREFIX, targ->pref, targ->node);
   2029 
   2030 	    Var_Set(TARGET, targ->node->name, targ->node);
   2031 	}
   2032     }
   2033 
   2034     if (gn->suffix)
   2035 	gn->suffix->refCount--;
   2036     gn->suffix = src->suff;
   2037     gn->suffix->refCount++;
   2038 
   2039     /*
   2040      * Nuke the transformation path and the Src structures left over in the
   2041      * two lists.
   2042      */
   2043 sfnd_return:
   2044     if (bottom)
   2045 	if (Lst_FindDatum(slst, bottom) == NULL)
   2046 	    Lst_Append(slst, bottom);
   2047 
   2048     while (SuffRemoveSrc(srcs) || SuffRemoveSrc(targs))
   2049 	continue;
   2050 
   2051     Lst_MoveAll(slst, srcs);
   2052     Lst_MoveAll(slst, targs);
   2053 }
   2054 
   2055 
   2056 /* Find implicit sources for the target described by the graph node.
   2057  *
   2058  * Nodes are added to the graph below the passed-in node. The nodes are
   2059  * marked to have their IMPSRC variable filled in. The PREFIX variable is set
   2060  * for the given node and all its implied children.
   2061  *
   2062  * The path found by this target is the shortest path in the transformation
   2063  * graph, which may pass through non-existent targets, to an existing target.
   2064  * The search continues on all paths from the root suffix until a file is
   2065  * found. I.e. if there's a path .o -> .c -> .l -> .l,v from the root and the
   2066  * .l,v file exists but the .c and .l files don't, the search will branch out
   2067  * in all directions from .o and again from all the nodes on the next level
   2068  * until the .l,v node is encountered.
   2069  */
   2070 void
   2071 Suff_FindDeps(GNode *gn)
   2072 {
   2073 
   2074     SuffFindDeps(gn, srclist);
   2075     while (SuffRemoveSrc(srclist))
   2076 	continue;
   2077 }
   2078 
   2079 static void
   2080 SuffFindDeps(GNode *gn, Lst slst)
   2081 {
   2082     if (gn->type & OP_DEPS_FOUND)
   2083 	return;
   2084     gn->type |= OP_DEPS_FOUND;
   2085 
   2086     /*
   2087      * Make sure we have these set, may get revised below.
   2088      */
   2089     Var_Set(TARGET, gn->path ? gn->path : gn->name, gn);
   2090     Var_Set(PREFIX, gn->name, gn);
   2091 
   2092     SUFF_DEBUG1("SuffFindDeps (%s)\n", gn->name);
   2093 
   2094     if (gn->type & OP_ARCHV) {
   2095 	SuffFindArchiveDeps(gn, slst);
   2096     } else if (gn->type & OP_LIB) {
   2097 	/*
   2098 	 * If the node is a library, it is the arch module's job to find it
   2099 	 * and set the TARGET variable accordingly. We merely provide the
   2100 	 * search path, assuming all libraries end in ".a" (if the suffix
   2101 	 * hasn't been defined, there's nothing we can do for it, so we just
   2102 	 * set the TARGET variable to the node's name in order to give it a
   2103 	 * value).
   2104 	 */
   2105 	LstNode	ln;
   2106 	Suff	*s;
   2107 
   2108 	ln = Lst_Find(sufflist, SuffSuffHasName, LIBSUFF);
   2109 	if (gn->suffix)
   2110 	    gn->suffix->refCount--;
   2111 	if (ln != NULL) {
   2112 	    gn->suffix = s = LstNode_Datum(ln);
   2113 	    gn->suffix->refCount++;
   2114 	    Arch_FindLib(gn, s->searchPath);
   2115 	} else {
   2116 	    gn->suffix = NULL;
   2117 	    Var_Set(TARGET, gn->name, gn);
   2118 	}
   2119 	/*
   2120 	 * Because a library (-lfoo) target doesn't follow the standard
   2121 	 * filesystem conventions, we don't set the regular variables for
   2122 	 * the thing. .PREFIX is simply made empty...
   2123 	 */
   2124 	Var_Set(PREFIX, "", gn);
   2125     } else {
   2126 	SuffFindNormalDeps(gn, slst);
   2127     }
   2128 }
   2129 
   2130 /* Define which suffix is the null suffix.
   2131  *
   2132  * Need to handle the changing of the null suffix gracefully so the old
   2133  * transformation rules don't just go away.
   2134  *
   2135  * Input:
   2136  *	name		Name of null suffix
   2137  */
   2138 void
   2139 Suff_SetNull(char *name)
   2140 {
   2141     Suff    *s;
   2142     LstNode ln;
   2143 
   2144     ln = Lst_Find(sufflist, SuffSuffHasName, name);
   2145     if (ln != NULL) {
   2146 	s = LstNode_Datum(ln);
   2147 	if (suffNull != NULL) {
   2148 	    suffNull->flags &= ~SUFF_NULL;
   2149 	}
   2150 	s->flags |= SUFF_NULL;
   2151 	/*
   2152 	 * XXX: Here's where the transformation mangling would take place
   2153 	 */
   2154 	suffNull = s;
   2155     } else {
   2156 	Parse_Error(PARSE_WARNING, "Desired null suffix %s not defined.",
   2157 		     name);
   2158     }
   2159 }
   2160 
   2161 /* Initialize the suffixes module. */
   2162 void
   2163 Suff_Init(void)
   2164 {
   2165 #ifdef CLEANUP
   2166     suffClean = Lst_Init();
   2167     sufflist = Lst_Init();
   2168 #endif
   2169     srclist = Lst_Init();
   2170     transforms = Lst_Init();
   2171 
   2172     /*
   2173      * Create null suffix for single-suffix rules (POSIX). The thing doesn't
   2174      * actually go on the suffix list or everyone will think that's its
   2175      * suffix.
   2176      */
   2177     Suff_ClearSuffixes();
   2178 }
   2179 
   2180 
   2181 /* Clean up the suffixes module. */
   2182 void
   2183 Suff_End(void)
   2184 {
   2185 #ifdef CLEANUP
   2186     Lst_Destroy(sufflist, SuffFree);
   2187     Lst_Destroy(suffClean, SuffFree);
   2188     if (suffNull)
   2189 	SuffFree(suffNull);
   2190     Lst_Free(srclist);
   2191     Lst_Free(transforms);
   2192 #endif
   2193 }
   2194 
   2195 
   2196 /********************* DEBUGGING FUNCTIONS **********************/
   2197 
   2198 static int SuffPrintName(void *s, void *dummy MAKE_ATTR_UNUSED)
   2199 {
   2200 
   2201     fprintf(debug_file, "%s ", ((Suff *)s)->name);
   2202     return 0;
   2203 }
   2204 
   2205 static int
   2206 SuffPrintSuff(void *sp, void *dummy MAKE_ATTR_UNUSED)
   2207 {
   2208     Suff    *s = (Suff *)sp;
   2209 
   2210     fprintf(debug_file, "# `%s' [%d] ", s->name, s->refCount);
   2211 
   2212     if (s->flags != 0) {
   2213 	char flags_buf[SuffFlags_ToStringSize];
   2214 
   2215 	fprintf(debug_file, " (%s)",
   2216 		Enum_FlagsToString(flags_buf, sizeof flags_buf,
   2217 				   s->flags, SuffFlags_ToStringSpecs));
   2218     }
   2219     fputc('\n', debug_file);
   2220     fprintf(debug_file, "#\tTo: ");
   2221     Lst_ForEach(s->parents, SuffPrintName, NULL);
   2222     fputc('\n', debug_file);
   2223     fprintf(debug_file, "#\tFrom: ");
   2224     Lst_ForEach(s->children, SuffPrintName, NULL);
   2225     fputc('\n', debug_file);
   2226     fprintf(debug_file, "#\tSearch Path: ");
   2227     Dir_PrintPath(s->searchPath);
   2228     fputc('\n', debug_file);
   2229     return 0;
   2230 }
   2231 
   2232 static int
   2233 SuffPrintTrans(void *tp, void *dummy MAKE_ATTR_UNUSED)
   2234 {
   2235     GNode   *t = (GNode *)tp;
   2236 
   2237     fprintf(debug_file, "%-16s:", t->name);
   2238     Targ_PrintType(t->type);
   2239     fputc('\n', debug_file);
   2240     Lst_ForEach(t->commands, Targ_PrintCmd, NULL);
   2241     fputc('\n', debug_file);
   2242     return 0;
   2243 }
   2244 
   2245 void
   2246 Suff_PrintAll(void)
   2247 {
   2248     fprintf(debug_file, "#*** Suffixes:\n");
   2249     Lst_ForEach(sufflist, SuffPrintSuff, NULL);
   2250 
   2251     fprintf(debug_file, "#*** Transformations:\n");
   2252     Lst_ForEach(transforms, SuffPrintTrans, NULL);
   2253 }
   2254