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var.c revision 1.342
      1 /*	$NetBSD: var.c,v 1.342 2020/07/27 22:21:29 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: var.c,v 1.342 2020/07/27 22:21:29 rillig Exp $";
     73 #else
     74 #include <sys/cdefs.h>
     75 #ifndef lint
     76 #if 0
     77 static char sccsid[] = "@(#)var.c	8.3 (Berkeley) 3/19/94";
     78 #else
     79 __RCSID("$NetBSD: var.c,v 1.342 2020/07/27 22:21:29 rillig Exp $");
     80 #endif
     81 #endif /* not lint */
     82 #endif
     83 
     84 /*-
     85  * var.c --
     86  *	Variable-handling functions
     87  *
     88  * Interface:
     89  *	Var_Set		    Set the value of a variable in the given
     90  *			    context. The variable is created if it doesn't
     91  *			    yet exist.
     92  *
     93  *	Var_Append	    Append more characters to an existing variable
     94  *			    in the given context. The variable needn't
     95  *			    exist already -- it will be created if it doesn't.
     96  *			    A space is placed between the old value and the
     97  *			    new one.
     98  *
     99  *	Var_Exists	    See if a variable exists.
    100  *
    101  *	Var_Value 	    Return the unexpanded value of a variable in a
    102  *			    context or NULL if the variable is undefined.
    103  *
    104  *	Var_Subst 	    Substitute either a single variable or all
    105  *			    variables in a string, using the given context.
    106  *
    107  *	Var_Parse 	    Parse a variable expansion from a string and
    108  *			    return the result and the number of characters
    109  *			    consumed.
    110  *
    111  *	Var_Delete	    Delete a variable in a context.
    112  *
    113  *	Var_Init  	    Initialize this module.
    114  *
    115  * Debugging:
    116  *	Var_Dump  	    Print out all variables defined in the given
    117  *			    context.
    118  *
    119  * XXX: There's a lot of duplication in these functions.
    120  */
    121 
    122 #include    <sys/stat.h>
    123 #ifndef NO_REGEX
    124 #include    <sys/types.h>
    125 #include    <regex.h>
    126 #endif
    127 #include    <ctype.h>
    128 #include    <inttypes.h>
    129 #include    <limits.h>
    130 #include    <stdlib.h>
    131 #include    <time.h>
    132 
    133 #include    "make.h"
    134 #include    "buf.h"
    135 #include    "dir.h"
    136 #include    "job.h"
    137 #include    "metachar.h"
    138 
    139 #define VAR_DEBUG(fmt, ...)	\
    140     if (!DEBUG(VAR))		\
    141 	(void) 0;		\
    142     else			\
    143 	fprintf(debug_file, fmt, __VA_ARGS__)
    144 
    145 /*
    146  * This lets us tell if we have replaced the original environ
    147  * (which we cannot free).
    148  */
    149 char **savedEnv = NULL;
    150 
    151 /*
    152  * This is a harmless return value for Var_Parse that can be used by Var_Subst
    153  * to determine if there was an error in parsing -- easier than returning
    154  * a flag, as things outside this module don't give a hoot.
    155  */
    156 char var_Error[] = "";
    157 
    158 /*
    159  * Similar to var_Error, but returned when the 'VARE_UNDEFERR' flag for
    160  * Var_Parse is not set. Why not just use a constant? Well, GCC likes
    161  * to condense identical string instances...
    162  */
    163 static char varNoError[] = "";
    164 
    165 /*
    166  * Traditionally we consume $$ during := like any other expansion.
    167  * Other make's do not.
    168  * This knob allows controlling the behavior.
    169  * FALSE to consume $$ during := assignment.
    170  * TRUE to preserve $$ during := assignment.
    171  */
    172 #define SAVE_DOLLARS ".MAKE.SAVE_DOLLARS"
    173 static Boolean save_dollars = TRUE;
    174 
    175 /*
    176  * Internally, variables are contained in four different contexts.
    177  *	1) the environment. They cannot be changed. If an environment
    178  *	    variable is appended to, the result is placed in the global
    179  *	    context.
    180  *	2) the global context. Variables set in the Makefile are located in
    181  *	    the global context.
    182  *	3) the command-line context. All variables set on the command line
    183  *	   are placed in this context. They are UNALTERABLE once placed here.
    184  *	4) the local context. Each target has associated with it a context
    185  *	   list. On this list are located the structures describing such
    186  *	   local variables as $(@) and $(*)
    187  * The four contexts are searched in the reverse order from which they are
    188  * listed (but see checkEnvFirst).
    189  */
    190 GNode          *VAR_INTERNAL;	/* variables from make itself */
    191 GNode          *VAR_GLOBAL;	/* variables from the makefile */
    192 GNode          *VAR_CMD;	/* variables defined on the command-line */
    193 
    194 typedef enum {
    195     FIND_CMD		= 0x01,	/* look in VAR_CMD when searching */
    196     FIND_GLOBAL		= 0x02,	/* look in VAR_GLOBAL as well */
    197     FIND_ENV		= 0x04	/* look in the environment also */
    198 } VarFindFlags;
    199 
    200 typedef enum {
    201     VAR_IN_USE		= 0x01,	/* Variable's value is currently being used
    202 				 * by Var_Parse or Var_Subst.
    203 				 * Used to avoid endless recursion */
    204     VAR_FROM_ENV	= 0x02,	/* Variable comes from the environment */
    205     VAR_JUNK		= 0x04,	/* Variable is a junk variable that
    206 				 * should be destroyed when done with
    207 				 * it. Used by Var_Parse for undefined,
    208 				 * modified variables */
    209     VAR_KEEP		= 0x08,	/* Variable is VAR_JUNK, but we found
    210 				 * a use for it in some modifier and
    211 				 * the value is therefore valid */
    212     VAR_EXPORTED	= 0x10,	/* Variable is exported */
    213     VAR_REEXPORT	= 0x20,	/* Indicate if var needs re-export.
    214 				 * This would be true if it contains $'s */
    215     VAR_FROM_CMD	= 0x40	/* Variable came from command line */
    216 } Var_Flags;
    217 
    218 typedef struct Var {
    219     char          *name;	/* the variable's name */
    220     Buffer	  val;		/* its value */
    221     Var_Flags	  flags;    	/* miscellaneous status flags */
    222 }  Var;
    223 
    224 /*
    225  * Exporting vars is expensive so skip it if we can
    226  */
    227 typedef enum {
    228     VAR_EXPORTED_NONE,
    229     VAR_EXPORTED_YES,
    230     VAR_EXPORTED_ALL
    231 } VarExportedMode;
    232 static VarExportedMode var_exportedVars = VAR_EXPORTED_NONE;
    233 
    234 typedef enum {
    235     /*
    236      * We pass this to Var_Export when doing the initial export
    237      * or after updating an exported var.
    238      */
    239     VAR_EXPORT_PARENT	= 0x01,
    240     /*
    241      * We pass this to Var_Export1 to tell it to leave the value alone.
    242      */
    243     VAR_EXPORT_LITERAL	= 0x02
    244 } VarExportFlags;
    245 
    246 /* Flags for pattern matching in the :S and :C modifiers */
    247 typedef enum {
    248     VARP_SUB_GLOBAL	= 0x01,	/* Apply substitution globally */
    249     VARP_SUB_ONE	= 0x02,	/* Apply substitution to one word */
    250     VARP_SUB_MATCHED	= 0x04,	/* There was a match */
    251     VARP_ANCHOR_START	= 0x08,	/* Match at start of word */
    252     VARP_ANCHOR_END	= 0x10	/* Match at end of word */
    253 } VarPatternFlags;
    254 
    255 typedef enum {
    256     VAR_NO_EXPORT	= 0x01	/* do not export */
    257 } VarSet_Flags;
    258 
    259 #define BROPEN	'{'
    260 #define BRCLOSE	'}'
    261 #define PROPEN	'('
    262 #define PRCLOSE	')'
    263 
    264 /*-
    265  *-----------------------------------------------------------------------
    266  * VarFind --
    267  *	Find the given variable in the given context and any other contexts
    268  *	indicated.
    269  *
    270  * Input:
    271  *	name		name to find
    272  *	ctxt		context in which to find it
    273  *	flags		FIND_GLOBAL	look in VAR_GLOBAL as well
    274  *			FIND_CMD	look in VAR_CMD as well
    275  *			FIND_ENV	look in the environment as well
    276  *
    277  * Results:
    278  *	A pointer to the structure describing the desired variable or
    279  *	NULL if the variable does not exist.
    280  *
    281  * Side Effects:
    282  *	None
    283  *-----------------------------------------------------------------------
    284  */
    285 static Var *
    286 VarFind(const char *name, GNode *ctxt, VarFindFlags flags)
    287 {
    288     /*
    289      * If the variable name begins with a '.', it could very well be one of
    290      * the local ones.  We check the name against all the local variables
    291      * and substitute the short version in for 'name' if it matches one of
    292      * them.
    293      */
    294     if (*name == '.' && isupper((unsigned char) name[1])) {
    295 	switch (name[1]) {
    296 	case 'A':
    297 	    if (strcmp(name, ".ALLSRC") == 0)
    298 		name = ALLSRC;
    299 	    if (strcmp(name, ".ARCHIVE") == 0)
    300 		name = ARCHIVE;
    301 	    break;
    302 	case 'I':
    303 	    if (strcmp(name, ".IMPSRC") == 0)
    304 		name = IMPSRC;
    305 	    break;
    306 	case 'M':
    307 	    if (strcmp(name, ".MEMBER") == 0)
    308 		name = MEMBER;
    309 	    break;
    310 	case 'O':
    311 	    if (strcmp(name, ".OODATE") == 0)
    312 		name = OODATE;
    313 	    break;
    314 	case 'P':
    315 	    if (strcmp(name, ".PREFIX") == 0)
    316 		name = PREFIX;
    317 	    break;
    318 	case 'T':
    319 	    if (strcmp(name, ".TARGET") == 0)
    320 		name = TARGET;
    321 	    break;
    322 	}
    323     }
    324 
    325 #ifdef notyet
    326     /* for compatibility with gmake */
    327     if (name[0] == '^' && name[1] == '\0')
    328 	name = ALLSRC;
    329 #endif
    330 
    331     /*
    332      * First look for the variable in the given context. If it's not there,
    333      * look for it in VAR_CMD, VAR_GLOBAL and the environment, in that order,
    334      * depending on the FIND_* flags in 'flags'
    335      */
    336     Hash_Entry *var = Hash_FindEntry(&ctxt->context, name);
    337 
    338     if (var == NULL && (flags & FIND_CMD) && ctxt != VAR_CMD) {
    339 	var = Hash_FindEntry(&VAR_CMD->context, name);
    340     }
    341     if (!checkEnvFirst && var == NULL && (flags & FIND_GLOBAL) &&
    342 	ctxt != VAR_GLOBAL)
    343     {
    344 	var = Hash_FindEntry(&VAR_GLOBAL->context, name);
    345 	if (var == NULL && ctxt != VAR_INTERNAL) {
    346 	    /* VAR_INTERNAL is subordinate to VAR_GLOBAL */
    347 	    var = Hash_FindEntry(&VAR_INTERNAL->context, name);
    348 	}
    349     }
    350     if (var == NULL && (flags & FIND_ENV)) {
    351 	char *env;
    352 
    353 	if ((env = getenv(name)) != NULL) {
    354 	    Var *v = bmake_malloc(sizeof(Var));
    355 	    v->name = bmake_strdup(name);
    356 
    357 	    int len = (int)strlen(env);
    358 	    Buf_Init(&v->val, len + 1);
    359 	    Buf_AddBytes(&v->val, len, env);
    360 
    361 	    v->flags = VAR_FROM_ENV;
    362 	    return v;
    363 	} else if (checkEnvFirst && (flags & FIND_GLOBAL) &&
    364 		   ctxt != VAR_GLOBAL)
    365 	{
    366 	    var = Hash_FindEntry(&VAR_GLOBAL->context, name);
    367 	    if (var == NULL && ctxt != VAR_INTERNAL) {
    368 		var = Hash_FindEntry(&VAR_INTERNAL->context, name);
    369 	    }
    370 	    if (var == NULL) {
    371 		return NULL;
    372 	    } else {
    373 		return (Var *)Hash_GetValue(var);
    374 	    }
    375 	} else {
    376 	    return NULL;
    377 	}
    378     } else if (var == NULL) {
    379 	return NULL;
    380     } else {
    381 	return (Var *)Hash_GetValue(var);
    382     }
    383 }
    384 
    385 /*-
    386  *-----------------------------------------------------------------------
    387  * VarFreeEnv  --
    388  *	If the variable is an environment variable, free it
    389  *
    390  * Input:
    391  *	v		the variable
    392  *	destroy		true if the value buffer should be destroyed.
    393  *
    394  * Results:
    395  *	1 if it is an environment variable 0 ow.
    396  *
    397  * Side Effects:
    398  *	The variable is free'ed if it is an environent variable.
    399  *-----------------------------------------------------------------------
    400  */
    401 static Boolean
    402 VarFreeEnv(Var *v, Boolean destroy)
    403 {
    404     if (!(v->flags & VAR_FROM_ENV))
    405 	return FALSE;
    406     free(v->name);
    407     Buf_Destroy(&v->val, destroy);
    408     free(v);
    409     return TRUE;
    410 }
    411 
    412 /*-
    413  *-----------------------------------------------------------------------
    414  * VarAdd  --
    415  *	Add a new variable of name name and value val to the given context
    416  *
    417  * Input:
    418  *	name		name of variable to add
    419  *	val		value to set it to
    420  *	ctxt		context in which to set it
    421  *
    422  * Side Effects:
    423  *	The new variable is placed at the front of the given context
    424  *	The name and val arguments are duplicated so they may
    425  *	safely be freed.
    426  *-----------------------------------------------------------------------
    427  */
    428 static void
    429 VarAdd(const char *name, const char *val, GNode *ctxt)
    430 {
    431     Var *v = bmake_malloc(sizeof(Var));
    432 
    433     int len = val != NULL ? (int)strlen(val) : 0;
    434     Buf_Init(&v->val, len + 1);
    435     Buf_AddBytes(&v->val, len, val);
    436 
    437     v->flags = 0;
    438 
    439     Hash_Entry *h = Hash_CreateEntry(&ctxt->context, name, NULL);
    440     Hash_SetValue(h, v);
    441     v->name = h->name;
    442     if (DEBUG(VAR) && !(ctxt->flags & INTERNAL)) {
    443 	fprintf(debug_file, "%s:%s = %s\n", ctxt->name, name, val);
    444     }
    445 }
    446 
    447 /*-
    448  *-----------------------------------------------------------------------
    449  * Var_Delete --
    450  *	Remove a variable from a context.
    451  *
    452  * Side Effects:
    453  *	The Var structure is removed and freed.
    454  *
    455  *-----------------------------------------------------------------------
    456  */
    457 void
    458 Var_Delete(const char *name, GNode *ctxt)
    459 {
    460     Hash_Entry 	  *ln;
    461     char *cp;
    462 
    463     if (strchr(name, '$') != NULL) {
    464 	cp = Var_Subst(NULL, name, VAR_GLOBAL, VARE_WANTRES);
    465     } else {
    466 	cp = UNCONST(name);
    467     }
    468     ln = Hash_FindEntry(&ctxt->context, cp);
    469     if (DEBUG(VAR)) {
    470 	fprintf(debug_file, "%s:delete %s%s\n",
    471 	    ctxt->name, cp, ln ? "" : " (not found)");
    472     }
    473     if (cp != name)
    474 	free(cp);
    475     if (ln != NULL) {
    476 	Var *v = (Var *)Hash_GetValue(ln);
    477 	if (v->flags & VAR_EXPORTED)
    478 	    unsetenv(v->name);
    479 	if (strcmp(MAKE_EXPORTED, v->name) == 0)
    480 	    var_exportedVars = VAR_EXPORTED_NONE;
    481 	if (v->name != ln->name)
    482 	    free(v->name);
    483 	Hash_DeleteEntry(&ctxt->context, ln);
    484 	Buf_Destroy(&v->val, TRUE);
    485 	free(v);
    486     }
    487 }
    488 
    489 
    490 /*
    491  * Export a var.
    492  * We ignore make internal variables (those which start with '.')
    493  * Also we jump through some hoops to avoid calling setenv
    494  * more than necessary since it can leak.
    495  * We only manipulate flags of vars if 'parent' is set.
    496  */
    497 static int
    498 Var_Export1(const char *name, VarExportFlags flags)
    499 {
    500     char tmp[BUFSIZ];
    501     Var *v;
    502     char *val = NULL;
    503     int n;
    504     VarExportFlags parent = flags & VAR_EXPORT_PARENT;
    505 
    506     if (*name == '.')
    507 	return 0;		/* skip internals */
    508     if (!name[1]) {
    509 	/*
    510 	 * A single char.
    511 	 * If it is one of the vars that should only appear in
    512 	 * local context, skip it, else we can get Var_Subst
    513 	 * into a loop.
    514 	 */
    515 	switch (name[0]) {
    516 	case '@':
    517 	case '%':
    518 	case '*':
    519 	case '!':
    520 	    return 0;
    521 	}
    522     }
    523     v = VarFind(name, VAR_GLOBAL, 0);
    524     if (v == NULL)
    525 	return 0;
    526     if (!parent &&
    527 	(v->flags & (VAR_EXPORTED | VAR_REEXPORT)) == VAR_EXPORTED) {
    528 	return 0;			/* nothing to do */
    529     }
    530     val = Buf_GetAll(&v->val, NULL);
    531     if ((flags & VAR_EXPORT_LITERAL) == 0 && strchr(val, '$')) {
    532 	if (parent) {
    533 	    /*
    534 	     * Flag this as something we need to re-export.
    535 	     * No point actually exporting it now though,
    536 	     * the child can do it at the last minute.
    537 	     */
    538 	    v->flags |= (VAR_EXPORTED | VAR_REEXPORT);
    539 	    return 1;
    540 	}
    541 	if (v->flags & VAR_IN_USE) {
    542 	    /*
    543 	     * We recursed while exporting in a child.
    544 	     * This isn't going to end well, just skip it.
    545 	     */
    546 	    return 0;
    547 	}
    548 	n = snprintf(tmp, sizeof(tmp), "${%s}", name);
    549 	if (n < (int)sizeof(tmp)) {
    550 	    val = Var_Subst(NULL, tmp, VAR_GLOBAL, VARE_WANTRES);
    551 	    setenv(name, val, 1);
    552 	    free(val);
    553 	}
    554     } else {
    555 	if (parent)
    556 	    v->flags &= ~VAR_REEXPORT;	/* once will do */
    557 	if (parent || !(v->flags & VAR_EXPORTED))
    558 	    setenv(name, val, 1);
    559     }
    560     /*
    561      * This is so Var_Set knows to call Var_Export again...
    562      */
    563     if (parent) {
    564 	v->flags |= VAR_EXPORTED;
    565     }
    566     return 1;
    567 }
    568 
    569 static void
    570 Var_ExportVars_callback(void *entry, void *unused MAKE_ATTR_UNUSED)
    571 {
    572     Var *var = entry;
    573     Var_Export1(var->name, 0);
    574 }
    575 
    576 /*
    577  * This gets called from our children.
    578  */
    579 void
    580 Var_ExportVars(void)
    581 {
    582     char tmp[BUFSIZ];
    583     char *val;
    584     int n;
    585 
    586     /*
    587      * Several make's support this sort of mechanism for tracking
    588      * recursion - but each uses a different name.
    589      * We allow the makefiles to update MAKELEVEL and ensure
    590      * children see a correctly incremented value.
    591      */
    592     snprintf(tmp, sizeof(tmp), "%d", makelevel + 1);
    593     setenv(MAKE_LEVEL_ENV, tmp, 1);
    594 
    595     if (VAR_EXPORTED_NONE == var_exportedVars)
    596 	return;
    597 
    598     if (VAR_EXPORTED_ALL == var_exportedVars) {
    599 	/* Ouch! This is crazy... */
    600 	Hash_ForEach(&VAR_GLOBAL->context, Var_ExportVars_callback, NULL);
    601 	return;
    602     }
    603     /*
    604      * We have a number of exported vars,
    605      */
    606     n = snprintf(tmp, sizeof(tmp), "${" MAKE_EXPORTED ":O:u}");
    607     if (n < (int)sizeof(tmp)) {
    608 	char **av;
    609 	char *as;
    610 	int ac;
    611 	int i;
    612 
    613 	val = Var_Subst(NULL, tmp, VAR_GLOBAL, VARE_WANTRES);
    614 	if (*val) {
    615 	    av = brk_string(val, &ac, FALSE, &as);
    616 	    for (i = 0; i < ac; i++)
    617 		Var_Export1(av[i], 0);
    618 	    free(as);
    619 	    free(av);
    620 	}
    621 	free(val);
    622     }
    623 }
    624 
    625 /*
    626  * This is called when .export is seen or
    627  * .MAKE.EXPORTED is modified.
    628  * It is also called when any exported var is modified.
    629  */
    630 void
    631 Var_Export(char *str, int isExport)
    632 {
    633     char **av;
    634     char *as;
    635     VarExportFlags flags;
    636     int ac;
    637     int i;
    638 
    639     if (isExport && (!str || !str[0])) {
    640 	var_exportedVars = VAR_EXPORTED_ALL; /* use with caution! */
    641 	return;
    642     }
    643 
    644     flags = 0;
    645     if (strncmp(str, "-env", 4) == 0) {
    646 	str += 4;
    647     } else if (strncmp(str, "-literal", 8) == 0) {
    648 	str += 8;
    649 	flags |= VAR_EXPORT_LITERAL;
    650     } else {
    651 	flags |= VAR_EXPORT_PARENT;
    652     }
    653 
    654     char *val = Var_Subst(NULL, str, VAR_GLOBAL, VARE_WANTRES);
    655     if (*val) {
    656 	av = brk_string(val, &ac, FALSE, &as);
    657 	for (i = 0; i < ac; i++) {
    658 	    const char *name = av[i];
    659 	    if (!name[1]) {
    660 		/*
    661 		 * A single char.
    662 		 * If it is one of the vars that should only appear in
    663 		 * local context, skip it, else we can get Var_Subst
    664 		 * into a loop.
    665 		 */
    666 		switch (name[0]) {
    667 		case '@':
    668 		case '%':
    669 		case '*':
    670 		case '!':
    671 		    continue;
    672 		}
    673 	    }
    674 	    if (Var_Export1(name, flags)) {
    675 		if (VAR_EXPORTED_ALL != var_exportedVars)
    676 		    var_exportedVars = VAR_EXPORTED_YES;
    677 		if (isExport && (flags & VAR_EXPORT_PARENT)) {
    678 		    Var_Append(MAKE_EXPORTED, name, VAR_GLOBAL);
    679 		}
    680 	    }
    681 	}
    682 	free(as);
    683 	free(av);
    684     }
    685     free(val);
    686 }
    687 
    688 
    689 extern char **environ;
    690 
    691 /*
    692  * This is called when .unexport[-env] is seen.
    693  *
    694  * str must have the form "unexport[-env] varname...".
    695  */
    696 void
    697 Var_UnExport(char *str)
    698 {
    699     char tmp[BUFSIZ];
    700     char *vlist;
    701     char *cp;
    702     Boolean unexport_env;
    703     int n;
    704 
    705     vlist = NULL;
    706 
    707     str += strlen("unexport");
    708     unexport_env = (strncmp(str, "-env", 4) == 0);
    709     if (unexport_env) {
    710 	char **newenv;
    711 
    712 	cp = getenv(MAKE_LEVEL_ENV);	/* we should preserve this */
    713 	if (environ == savedEnv) {
    714 	    /* we have been here before! */
    715 	    newenv = bmake_realloc(environ, 2 * sizeof(char *));
    716 	} else {
    717 	    if (savedEnv) {
    718 		free(savedEnv);
    719 		savedEnv = NULL;
    720 	    }
    721 	    newenv = bmake_malloc(2 * sizeof(char *));
    722 	}
    723 	if (!newenv)
    724 	    return;
    725 	/* Note: we cannot safely free() the original environ. */
    726 	environ = savedEnv = newenv;
    727 	newenv[0] = NULL;
    728 	newenv[1] = NULL;
    729 	if (cp && *cp)
    730 	    setenv(MAKE_LEVEL_ENV, cp, 1);
    731     } else {
    732 	for (; *str != '\n' && isspace((unsigned char) *str); str++)
    733 	    continue;
    734 	if (str[0] && str[0] != '\n') {
    735 	    vlist = str;
    736 	}
    737     }
    738 
    739     if (!vlist) {
    740 	/* Using .MAKE.EXPORTED */
    741 	vlist = Var_Subst(NULL, "${" MAKE_EXPORTED ":O:u}", VAR_GLOBAL,
    742 			  VARE_WANTRES);
    743     }
    744     if (vlist) {
    745 	Var *v;
    746 	char **av;
    747 	char *as;
    748 	int ac;
    749 	int i;
    750 
    751 	av = brk_string(vlist, &ac, FALSE, &as);
    752 	for (i = 0; i < ac; i++) {
    753 	    v = VarFind(av[i], VAR_GLOBAL, 0);
    754 	    if (!v)
    755 		continue;
    756 	    if (!unexport_env &&
    757 		(v->flags & (VAR_EXPORTED | VAR_REEXPORT)) == VAR_EXPORTED)
    758 		unsetenv(v->name);
    759 	    v->flags &= ~(VAR_EXPORTED | VAR_REEXPORT);
    760 	    /*
    761 	     * If we are unexporting a list,
    762 	     * remove each one from .MAKE.EXPORTED.
    763 	     * If we are removing them all,
    764 	     * just delete .MAKE.EXPORTED below.
    765 	     */
    766 	    if (vlist == str) {
    767 		n = snprintf(tmp, sizeof(tmp),
    768 			     "${" MAKE_EXPORTED ":N%s}", v->name);
    769 		if (n < (int)sizeof(tmp)) {
    770 		    cp = Var_Subst(NULL, tmp, VAR_GLOBAL, VARE_WANTRES);
    771 		    Var_Set(MAKE_EXPORTED, cp, VAR_GLOBAL);
    772 		    free(cp);
    773 		}
    774 	    }
    775 	}
    776 	free(as);
    777 	free(av);
    778 	if (vlist != str) {
    779 	    Var_Delete(MAKE_EXPORTED, VAR_GLOBAL);
    780 	    free(vlist);
    781 	}
    782     }
    783 }
    784 
    785 static void
    786 Var_Set_with_flags(const char *name, const char *val, GNode *ctxt,
    787 		   VarSet_Flags flags)
    788 {
    789     Var *v;
    790     char *expanded_name = NULL;
    791 
    792     /*
    793      * We only look for a variable in the given context since anything set
    794      * here will override anything in a lower context, so there's not much
    795      * point in searching them all just to save a bit of memory...
    796      */
    797     if (strchr(name, '$') != NULL) {
    798 	expanded_name = Var_Subst(NULL, name, ctxt, VARE_WANTRES);
    799 	if (expanded_name[0] == '\0') {
    800 	    if (DEBUG(VAR)) {
    801 		fprintf(debug_file, "Var_Set(\"%s\", \"%s\", ...) "
    802 			"name expands to empty string - ignored\n",
    803 			name, val);
    804 	    }
    805 	    free(expanded_name);
    806 	    return;
    807 	}
    808 	name = expanded_name;
    809     }
    810     if (ctxt == VAR_GLOBAL) {
    811 	v = VarFind(name, VAR_CMD, 0);
    812 	if (v != NULL) {
    813 	    if ((v->flags & VAR_FROM_CMD)) {
    814 		if (DEBUG(VAR)) {
    815 		    fprintf(debug_file, "%s:%s = %s ignored!\n", ctxt->name, name, val);
    816 		}
    817 		goto out;
    818 	    }
    819 	    VarFreeEnv(v, TRUE);
    820 	}
    821     }
    822     v = VarFind(name, ctxt, 0);
    823     if (v == NULL) {
    824 	if (ctxt == VAR_CMD && (flags & VAR_NO_EXPORT) == 0) {
    825 	    /*
    826 	     * This var would normally prevent the same name being added
    827 	     * to VAR_GLOBAL, so delete it from there if needed.
    828 	     * Otherwise -V name may show the wrong value.
    829 	     */
    830 	    Var_Delete(name, VAR_GLOBAL);
    831 	}
    832 	VarAdd(name, val, ctxt);
    833     } else {
    834 	Buf_Empty(&v->val);
    835 	if (val)
    836 	    Buf_AddStr(&v->val, val);
    837 
    838 	if (DEBUG(VAR)) {
    839 	    fprintf(debug_file, "%s:%s = %s\n", ctxt->name, name, val);
    840 	}
    841 	if ((v->flags & VAR_EXPORTED)) {
    842 	    Var_Export1(name, VAR_EXPORT_PARENT);
    843 	}
    844     }
    845     /*
    846      * Any variables given on the command line are automatically exported
    847      * to the environment (as per POSIX standard)
    848      */
    849     if (ctxt == VAR_CMD && (flags & VAR_NO_EXPORT) == 0) {
    850 	if (v == NULL) {
    851 	    /* we just added it */
    852 	    v = VarFind(name, ctxt, 0);
    853 	}
    854 	if (v != NULL)
    855 	    v->flags |= VAR_FROM_CMD;
    856 	/*
    857 	 * If requested, don't export these in the environment
    858 	 * individually.  We still put them in MAKEOVERRIDES so
    859 	 * that the command-line settings continue to override
    860 	 * Makefile settings.
    861 	 */
    862 	if (varNoExportEnv != TRUE)
    863 	    setenv(name, val ? val : "", 1);
    864 
    865 	Var_Append(MAKEOVERRIDES, name, VAR_GLOBAL);
    866     }
    867     if (name[0] == '.' && strcmp(name, SAVE_DOLLARS) == 0)
    868 	save_dollars = s2Boolean(val, save_dollars);
    869 
    870 out:
    871     free(expanded_name);
    872     if (v != NULL)
    873 	VarFreeEnv(v, TRUE);
    874 }
    875 
    876 /*-
    877  *-----------------------------------------------------------------------
    878  * Var_Set --
    879  *	Set the variable name to the value val in the given context.
    880  *
    881  * Input:
    882  *	name		name of variable to set
    883  *	val		value to give to the variable
    884  *	ctxt		context in which to set it
    885  *
    886  * Side Effects:
    887  *	If the variable doesn't yet exist, a new record is created for it.
    888  *	Else the old value is freed and the new one stuck in its place
    889  *
    890  * Notes:
    891  *	The variable is searched for only in its context before being
    892  *	created in that context. I.e. if the context is VAR_GLOBAL,
    893  *	only VAR_GLOBAL->context is searched. Likewise if it is VAR_CMD, only
    894  *	VAR_CMD->context is searched. This is done to avoid the literally
    895  *	thousands of unnecessary strcmp's that used to be done to
    896  *	set, say, $(@) or $(<).
    897  *	If the context is VAR_GLOBAL though, we check if the variable
    898  *	was set in VAR_CMD from the command line and skip it if so.
    899  *-----------------------------------------------------------------------
    900  */
    901 void
    902 Var_Set(const char *name, const char *val, GNode *ctxt)
    903 {
    904     Var_Set_with_flags(name, val, ctxt, 0);
    905 }
    906 
    907 /*-
    908  *-----------------------------------------------------------------------
    909  * Var_Append --
    910  *	The variable of the given name has the given value appended to it in
    911  *	the given context.
    912  *
    913  * Input:
    914  *	name		name of variable to modify
    915  *	val		String to append to it
    916  *	ctxt		Context in which this should occur
    917  *
    918  * Side Effects:
    919  *	If the variable doesn't exist, it is created. Else the strings
    920  *	are concatenated (with a space in between).
    921  *
    922  * Notes:
    923  *	Only if the variable is being sought in the global context is the
    924  *	environment searched.
    925  *	XXX: Knows its calling circumstances in that if called with ctxt
    926  *	an actual target, it will only search that context since only
    927  *	a local variable could be being appended to. This is actually
    928  *	a big win and must be tolerated.
    929  *-----------------------------------------------------------------------
    930  */
    931 void
    932 Var_Append(const char *name, const char *val, GNode *ctxt)
    933 {
    934     Var *v;
    935     Hash_Entry *h;
    936     char *expanded_name = NULL;
    937 
    938     if (strchr(name, '$') != NULL) {
    939 	expanded_name = Var_Subst(NULL, name, ctxt, VARE_WANTRES);
    940 	if (expanded_name[0] == '\0') {
    941 	    if (DEBUG(VAR)) {
    942 		fprintf(debug_file, "Var_Append(\"%s\", \"%s\", ...) "
    943 			"name expands to empty string - ignored\n",
    944 			name, val);
    945 	    }
    946 	    free(expanded_name);
    947 	    return;
    948 	}
    949 	name = expanded_name;
    950     }
    951 
    952     v = VarFind(name, ctxt, ctxt == VAR_GLOBAL ? (FIND_CMD | FIND_ENV) : 0);
    953 
    954     if (v == NULL) {
    955 	Var_Set(name, val, ctxt);
    956     } else if (ctxt == VAR_CMD || !(v->flags & VAR_FROM_CMD)) {
    957 	Buf_AddByte(&v->val, ' ');
    958 	Buf_AddStr(&v->val, val);
    959 
    960 	if (DEBUG(VAR)) {
    961 	    fprintf(debug_file, "%s:%s = %s\n", ctxt->name, name,
    962 		    Buf_GetAll(&v->val, NULL));
    963 	}
    964 
    965 	if (v->flags & VAR_FROM_ENV) {
    966 	    /*
    967 	     * If the original variable came from the environment, we
    968 	     * have to install it in the global context (we could place
    969 	     * it in the environment, but then we should provide a way to
    970 	     * export other variables...)
    971 	     */
    972 	    v->flags &= ~VAR_FROM_ENV;
    973 	    h = Hash_CreateEntry(&ctxt->context, name, NULL);
    974 	    Hash_SetValue(h, v);
    975 	}
    976     }
    977     free(expanded_name);
    978 }
    979 
    980 /*-
    981  *-----------------------------------------------------------------------
    982  * Var_Exists --
    983  *	See if the given variable exists.
    984  *
    985  * Input:
    986  *	name		Variable to find
    987  *	ctxt		Context in which to start search
    988  *
    989  * Results:
    990  *	TRUE if it does, FALSE if it doesn't
    991  *
    992  * Side Effects:
    993  *	None.
    994  *
    995  *-----------------------------------------------------------------------
    996  */
    997 Boolean
    998 Var_Exists(const char *name, GNode *ctxt)
    999 {
   1000     Var		  *v;
   1001     char          *cp;
   1002 
   1003     if ((cp = strchr(name, '$')) != NULL)
   1004 	cp = Var_Subst(NULL, name, ctxt, VARE_WANTRES);
   1005     v = VarFind(cp ? cp : name, ctxt, FIND_CMD | FIND_GLOBAL | FIND_ENV);
   1006     free(cp);
   1007     if (v == NULL)
   1008 	return FALSE;
   1009 
   1010     (void)VarFreeEnv(v, TRUE);
   1011     return TRUE;
   1012 }
   1013 
   1014 /*-
   1015  *-----------------------------------------------------------------------
   1016  * Var_Value --
   1017  *	Return the unexpanded value of the given variable in the given
   1018  *	context.
   1019  *
   1020  * Input:
   1021  *	name		name to find
   1022  *	ctxt		context in which to search for it
   1023  *
   1024  * Results:
   1025  *	The value if the variable exists, NULL if it doesn't.
   1026  *	If the returned value is not NULL, the caller must free *freeIt
   1027  *	as soon as the returned value is no longer needed.
   1028  *-----------------------------------------------------------------------
   1029  */
   1030 char *
   1031 Var_Value(const char *name, GNode *ctxt, char **freeIt)
   1032 {
   1033     Var *v = VarFind(name, ctxt, FIND_ENV | FIND_GLOBAL | FIND_CMD);
   1034     *freeIt = NULL;
   1035     if (v == NULL)
   1036 	return NULL;
   1037 
   1038     char *p = Buf_GetAll(&v->val, NULL);
   1039     if (VarFreeEnv(v, FALSE))
   1040 	*freeIt = p;
   1041     return p;
   1042 }
   1043 
   1044 
   1045 /* SepBuf is a string being built from "words", interleaved with separators. */
   1046 typedef struct {
   1047     Buffer buf;
   1048     Boolean needSep;
   1049     char sep;
   1050 } SepBuf;
   1051 
   1052 static void
   1053 SepBuf_Init(SepBuf *buf, char sep)
   1054 {
   1055     Buf_Init(&buf->buf, 32 /* bytes */);
   1056     buf->needSep = FALSE;
   1057     buf->sep = sep;
   1058 }
   1059 
   1060 static void
   1061 SepBuf_Sep(SepBuf *buf)
   1062 {
   1063     buf->needSep = TRUE;
   1064 }
   1065 
   1066 static void
   1067 SepBuf_AddBytes(SepBuf *buf, const char *mem, size_t mem_size)
   1068 {
   1069     if (mem_size == 0)
   1070 	return;
   1071     if (buf->needSep && buf->sep != '\0') {
   1072 	Buf_AddByte(&buf->buf, buf->sep);
   1073 	buf->needSep = FALSE;
   1074     }
   1075     Buf_AddBytes(&buf->buf, mem_size, mem);
   1076 }
   1077 
   1078 static void
   1079 SepBuf_AddBytesBetween(SepBuf *buf, const char *start, const char *end)
   1080 {
   1081     SepBuf_AddBytes(buf, start, (size_t)(end - start));
   1082 }
   1083 
   1084 static void
   1085 SepBuf_AddStr(SepBuf *buf, const char *str)
   1086 {
   1087     SepBuf_AddBytes(buf, str, strlen(str));
   1088 }
   1089 
   1090 static char *
   1091 SepBuf_Destroy(SepBuf *buf, Boolean free_buf)
   1092 {
   1093     return Buf_Destroy(&buf->buf, free_buf);
   1094 }
   1095 
   1096 
   1097 /* This callback for ModifyWords gets a single word from an expression and
   1098  * typically adds a modification of this word to the buffer. It may also do
   1099  * nothing or add several words. */
   1100 typedef void (*ModifyWordsCallback)(const char *word, SepBuf *buf, void *data);
   1101 
   1102 
   1103 /* Callback for ModifyWords to implement the :H modifier.
   1104  * Add the dirname of the given word to the buffer. */
   1105 static void
   1106 ModifyWord_Head(const char *word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1107 {
   1108     const char *slash = strrchr(word, '/');
   1109     if (slash != NULL)
   1110 	SepBuf_AddBytesBetween(buf, word, slash);
   1111     else
   1112 	SepBuf_AddStr(buf, ".");
   1113 }
   1114 
   1115 /* Callback for ModifyWords to implement the :T modifier.
   1116  * Add the basename of the given word to the buffer. */
   1117 static void
   1118 ModifyWord_Tail(const char *word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1119 {
   1120     const char *slash = strrchr(word, '/');
   1121     const char *base = slash != NULL ? slash + 1 : word;
   1122     SepBuf_AddStr(buf, base);
   1123 }
   1124 
   1125 /* Callback for ModifyWords to implement the :E modifier.
   1126  * Add the filename suffix of the given word to the buffer, if it exists. */
   1127 static void
   1128 ModifyWord_Suffix(const char *word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1129 {
   1130     const char *dot = strrchr(word, '.');
   1131     if (dot != NULL)
   1132 	SepBuf_AddStr(buf, dot + 1);
   1133 }
   1134 
   1135 /* Callback for ModifyWords to implement the :R modifier.
   1136  * Add the basename of the given word to the buffer. */
   1137 static void
   1138 ModifyWord_Root(const char *word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1139 {
   1140     const char *dot = strrchr(word, '.');
   1141     size_t len = dot != NULL ? (size_t)(dot - word) : strlen(word);
   1142     SepBuf_AddBytes(buf, word, len);
   1143 }
   1144 
   1145 /* Callback for ModifyWords to implement the :M modifier.
   1146  * Place the word in the buffer if it matches the given pattern. */
   1147 static void
   1148 ModifyWord_Match(const char *word, SepBuf *buf, void *data)
   1149 {
   1150     const char *pattern = data;
   1151     if (DEBUG(VAR))
   1152 	fprintf(debug_file, "VarMatch [%s] [%s]\n", word, pattern);
   1153     if (Str_Match(word, pattern))
   1154 	SepBuf_AddStr(buf, word);
   1155 }
   1156 
   1157 /* Callback for ModifyWords to implement the :N modifier.
   1158  * Place the word in the buffer if it doesn't match the given pattern. */
   1159 static void
   1160 ModifyWord_NoMatch(const char *word, SepBuf *buf, void *data)
   1161 {
   1162     const char *pattern = data;
   1163     if (!Str_Match(word, pattern))
   1164 	SepBuf_AddStr(buf, word);
   1165 }
   1166 
   1167 #ifdef SYSVVARSUB
   1168 /*-
   1169  *-----------------------------------------------------------------------
   1170  * Str_SYSVMatch --
   1171  *	Check word against pattern for a match (% is wild),
   1172  *
   1173  * Input:
   1174  *	word		Word to examine
   1175  *	pattern		Pattern to examine against
   1176  *	len		Number of characters to substitute
   1177  *
   1178  * Results:
   1179  *	Returns the beginning position of a match or null. The number
   1180  *	of characters matched is returned in len.
   1181  *-----------------------------------------------------------------------
   1182  */
   1183 static const char *
   1184 Str_SYSVMatch(const char *word, const char *pattern, size_t *len,
   1185     Boolean *hasPercent)
   1186 {
   1187     const char *p = pattern;
   1188     const char *w = word;
   1189     const char *m;
   1190 
   1191     *hasPercent = FALSE;
   1192     if (*p == '\0') {
   1193 	/* Null pattern is the whole string */
   1194 	*len = strlen(w);
   1195 	return w;
   1196     }
   1197 
   1198     if ((m = strchr(p, '%')) != NULL) {
   1199 	*hasPercent = TRUE;
   1200 	if (*w == '\0') {
   1201 		/* empty word does not match pattern */
   1202 		return NULL;
   1203 	}
   1204 	/* check that the prefix matches */
   1205 	for (; p != m && *w && *w == *p; w++, p++)
   1206 	     continue;
   1207 
   1208 	if (p != m)
   1209 	    return NULL;	/* No match */
   1210 
   1211 	if (*++p == '\0') {
   1212 	    /* No more pattern, return the rest of the string */
   1213 	    *len = strlen(w);
   1214 	    return w;
   1215 	}
   1216     }
   1217 
   1218     m = w;
   1219 
   1220     /* Find a matching tail */
   1221     do {
   1222 	if (strcmp(p, w) == 0) {
   1223 	    *len = w - m;
   1224 	    return m;
   1225 	}
   1226     } while (*w++ != '\0');
   1227 
   1228     return NULL;
   1229 }
   1230 
   1231 
   1232 /*-
   1233  *-----------------------------------------------------------------------
   1234  * Str_SYSVSubst --
   1235  *	Substitute '%' on the pattern with len characters from src.
   1236  *	If the pattern does not contain a '%' prepend len characters
   1237  *	from src.
   1238  *
   1239  * Side Effects:
   1240  *	Places result on buf
   1241  *-----------------------------------------------------------------------
   1242  */
   1243 static void
   1244 Str_SYSVSubst(SepBuf *buf, const char *pat, const char *src, size_t len,
   1245 	      Boolean lhsHasPercent)
   1246 {
   1247     const char *m;
   1248 
   1249     if ((m = strchr(pat, '%')) != NULL && lhsHasPercent) {
   1250 	/* Copy the prefix */
   1251 	SepBuf_AddBytesBetween(buf, pat, m);
   1252 	/* skip the % */
   1253 	pat = m + 1;
   1254     }
   1255     if (m != NULL || !lhsHasPercent) {
   1256 	/* Copy the pattern */
   1257 	SepBuf_AddBytes(buf, src, len);
   1258     }
   1259 
   1260     /* append the rest */
   1261     SepBuf_AddStr(buf, pat);
   1262 }
   1263 
   1264 
   1265 typedef struct {
   1266     GNode *ctx;
   1267     const char *lhs;
   1268     const char *rhs;
   1269 } ModifyWord_SYSVSubstArgs;
   1270 
   1271 /* Callback for ModifyWords to implement the :%.from=%.to modifier. */
   1272 static void
   1273 ModifyWord_SYSVSubst(const char *word, SepBuf *buf, void *data)
   1274 {
   1275     const ModifyWord_SYSVSubstArgs *args = data;
   1276 
   1277     size_t len;
   1278     Boolean hasPercent;
   1279     const char *ptr = Str_SYSVMatch(word, args->lhs, &len, &hasPercent);
   1280     if (ptr != NULL) {
   1281 	char *varexp = Var_Subst(NULL, args->rhs, args->ctx, VARE_WANTRES);
   1282 	Str_SYSVSubst(buf, varexp, ptr, len, hasPercent);
   1283 	free(varexp);
   1284     } else {
   1285 	SepBuf_AddStr(buf, word);
   1286     }
   1287 }
   1288 #endif
   1289 
   1290 
   1291 typedef struct {
   1292     const char	*lhs;
   1293     size_t	lhsLen;
   1294     const char	*rhs;
   1295     size_t	rhsLen;
   1296     VarPatternFlags pflags;
   1297 } ModifyWord_SubstArgs;
   1298 
   1299 /* Callback for ModifyWords to implement the :S,from,to, modifier.
   1300  * Perform a string substitution on the given word. */
   1301 static void
   1302 ModifyWord_Subst(const char *word, SepBuf *buf, void *data)
   1303 {
   1304     size_t wordLen = strlen(word);
   1305     ModifyWord_SubstArgs *args = data;
   1306     const VarPatternFlags pflags = args->pflags;
   1307 
   1308     if ((pflags & VARP_SUB_ONE) && (pflags & VARP_SUB_MATCHED))
   1309 	goto nosub;
   1310 
   1311     if (args->pflags & VARP_ANCHOR_START) {
   1312 	if (wordLen < args->lhsLen ||
   1313 	    memcmp(word, args->lhs, args->lhsLen) != 0)
   1314 	    goto nosub;
   1315 
   1316 	if (args->pflags & VARP_ANCHOR_END) {
   1317 	    if (wordLen != args->lhsLen)
   1318 		goto nosub;
   1319 
   1320 	    SepBuf_AddBytes(buf, args->rhs, args->rhsLen);
   1321 	    args->pflags |= VARP_SUB_MATCHED;
   1322 	} else {
   1323 	    SepBuf_AddBytes(buf, args->rhs, args->rhsLen);
   1324 	    SepBuf_AddBytes(buf, word + args->lhsLen, wordLen - args->lhsLen);
   1325 	    args->pflags |= VARP_SUB_MATCHED;
   1326 	}
   1327 	return;
   1328     }
   1329 
   1330     if (args->pflags & VARP_ANCHOR_END) {
   1331 	if (wordLen < args->lhsLen)
   1332 	    goto nosub;
   1333 
   1334 	const char *start = word + (wordLen - args->lhsLen);
   1335 	if (memcmp(start, args->lhs, args->lhsLen) != 0)
   1336 	    goto nosub;
   1337 
   1338 	SepBuf_AddBytesBetween(buf, word, start);
   1339 	SepBuf_AddBytes(buf, args->rhs, args->rhsLen);
   1340 	args->pflags |= VARP_SUB_MATCHED;
   1341 	return;
   1342     }
   1343 
   1344     /* unanchored */
   1345     const char *match;
   1346     while ((match = Str_FindSubstring(word, args->lhs)) != NULL) {
   1347 	SepBuf_AddBytesBetween(buf, word, match);
   1348 	SepBuf_AddBytes(buf, args->rhs, args->rhsLen);
   1349 	args->pflags |= VARP_SUB_MATCHED;
   1350 	wordLen -= (match - word) + args->lhsLen;
   1351 	word += (match - word) + args->lhsLen;
   1352 	if (wordLen == 0 || !(args->pflags & VARP_SUB_GLOBAL))
   1353 	    break;
   1354     }
   1355 nosub:
   1356     SepBuf_AddBytes(buf, word, wordLen);
   1357 }
   1358 
   1359 #ifndef NO_REGEX
   1360 /*-
   1361  *-----------------------------------------------------------------------
   1362  * VarREError --
   1363  *	Print the error caused by a regcomp or regexec call.
   1364  *
   1365  * Side Effects:
   1366  *	An error gets printed.
   1367  *
   1368  *-----------------------------------------------------------------------
   1369  */
   1370 static void
   1371 VarREError(int reerr, regex_t *pat, const char *str)
   1372 {
   1373     char *errbuf;
   1374     int errlen;
   1375 
   1376     errlen = regerror(reerr, pat, 0, 0);
   1377     errbuf = bmake_malloc(errlen);
   1378     regerror(reerr, pat, errbuf, errlen);
   1379     Error("%s: %s", str, errbuf);
   1380     free(errbuf);
   1381 }
   1382 
   1383 typedef struct {
   1384     regex_t	   re;
   1385     int		   nsub;
   1386     char 	  *replace;
   1387     VarPatternFlags pflags;
   1388 } ModifyWord_SubstRegexArgs;
   1389 
   1390 /* Callback for ModifyWords to implement the :C/from/to/ modifier.
   1391  * Perform a regex substitution on the given word. */
   1392 static void
   1393 ModifyWord_SubstRegex(const char *word, SepBuf *buf, void *data)
   1394 {
   1395     ModifyWord_SubstRegexArgs *args = data;
   1396     int xrv;
   1397     const char *wp = word;
   1398     char *rp;
   1399     int flags = 0;
   1400     regmatch_t m[10];
   1401 
   1402     if ((args->pflags & VARP_SUB_ONE) && (args->pflags & VARP_SUB_MATCHED))
   1403 	goto nosub;
   1404 
   1405 tryagain:
   1406     xrv = regexec(&args->re, wp, args->nsub, m, flags);
   1407 
   1408     switch (xrv) {
   1409     case 0:
   1410 	args->pflags |= VARP_SUB_MATCHED;
   1411 	SepBuf_AddBytes(buf, wp, m[0].rm_so);
   1412 
   1413 	for (rp = args->replace; *rp; rp++) {
   1414 	    if (*rp == '\\' && (rp[1] == '&' || rp[1] == '\\')) {
   1415 		SepBuf_AddBytes(buf, rp + 1, 1);
   1416 		rp++;
   1417 	    } else if (*rp == '&' ||
   1418 		(*rp == '\\' && isdigit((unsigned char)rp[1]))) {
   1419 		int n;
   1420 		char errstr[3];
   1421 
   1422 		if (*rp == '&') {
   1423 		    n = 0;
   1424 		    errstr[0] = '&';
   1425 		    errstr[1] = '\0';
   1426 		} else {
   1427 		    n = rp[1] - '0';
   1428 		    errstr[0] = '\\';
   1429 		    errstr[1] = rp[1];
   1430 		    errstr[2] = '\0';
   1431 		    rp++;
   1432 		}
   1433 
   1434 		if (n >= args->nsub) {
   1435 		    Error("No subexpression %s", errstr);
   1436 		} else if (m[n].rm_so == -1 && m[n].rm_eo == -1) {
   1437 		    Error("No match for subexpression %s", errstr);
   1438 		} else {
   1439 		    SepBuf_AddBytesBetween(buf, wp + m[n].rm_so,
   1440 					   wp + m[n].rm_eo);
   1441 		}
   1442 
   1443 	    } else {
   1444 		SepBuf_AddBytes(buf, rp, 1);
   1445 	    }
   1446 	}
   1447 	wp += m[0].rm_eo;
   1448 	if (args->pflags & VARP_SUB_GLOBAL) {
   1449 	    flags |= REG_NOTBOL;
   1450 	    if (m[0].rm_so == 0 && m[0].rm_eo == 0) {
   1451 		SepBuf_AddBytes(buf, wp, 1);
   1452 		wp++;
   1453 	    }
   1454 	    if (*wp)
   1455 		goto tryagain;
   1456 	}
   1457 	if (*wp) {
   1458 	    SepBuf_AddStr(buf, wp);
   1459 	}
   1460 	break;
   1461     default:
   1462 	VarREError(xrv, &args->re, "Unexpected regex error");
   1463 	/* fall through */
   1464     case REG_NOMATCH:
   1465     nosub:
   1466 	SepBuf_AddStr(buf, wp);
   1467 	break;
   1468     }
   1469 }
   1470 #endif
   1471 
   1472 
   1473 typedef struct {
   1474     GNode	*ctx;
   1475     char	*tvar;		/* name of temporary variable */
   1476     char	*str;		/* string to expand */
   1477     VarEvalFlags eflags;
   1478 } ModifyWord_LoopArgs;
   1479 
   1480 /* Callback for ModifyWords to implement the :@var (at) ...@ modifier of ODE make. */
   1481 static void
   1482 ModifyWord_Loop(const char *word, SepBuf *buf, void *data)
   1483 {
   1484     if (word[0] == '\0')
   1485 	return;
   1486 
   1487     const ModifyWord_LoopArgs *args = data;
   1488     Var_Set_with_flags(args->tvar, word, args->ctx, VAR_NO_EXPORT);
   1489     char *s = Var_Subst(NULL, args->str, args->ctx, args->eflags);
   1490     if (DEBUG(VAR)) {
   1491 	fprintf(debug_file,
   1492 		"ModifyWord_Loop: in \"%s\", replace \"%s\" with \"%s\" "
   1493 		"to \"%s\"\n",
   1494 		word, args->tvar, args->str, s ? s : "(null)");
   1495     }
   1496 
   1497     if (s != NULL && s[0] != '\0') {
   1498 	if (s[0] == '\n' || (buf->buf.count > 0 &&
   1499 	    buf->buf.buffer[buf->buf.count - 1] == '\n'))
   1500 	    buf->needSep = FALSE;
   1501 	SepBuf_AddStr(buf, s);
   1502     }
   1503     free(s);
   1504 }
   1505 
   1506 
   1507 /*-
   1508  * Implements the :[first..last] modifier.
   1509  * This is a special case of ModifyWords since we want to be able
   1510  * to scan the list backwards if first > last.
   1511  */
   1512 static char *
   1513 VarSelectWords(Byte sep, Boolean oneBigWord, const char *str, int first,
   1514 	       int last)
   1515 {
   1516     SepBuf buf;
   1517     char **av;			/* word list */
   1518     char *as;			/* word list memory */
   1519     int ac, i;
   1520     int start, end, step;
   1521 
   1522     SepBuf_Init(&buf, sep);
   1523 
   1524     if (oneBigWord) {
   1525 	/* fake what brk_string() would do if there were only one word */
   1526 	ac = 1;
   1527 	av = bmake_malloc((ac + 1) * sizeof(char *));
   1528 	as = bmake_strdup(str);
   1529 	av[0] = as;
   1530 	av[1] = NULL;
   1531     } else {
   1532 	av = brk_string(str, &ac, FALSE, &as);
   1533     }
   1534 
   1535     /*
   1536      * Now sanitize seldata.
   1537      * If seldata->start or seldata->end are negative, convert them to
   1538      * the positive equivalents (-1 gets converted to argc, -2 gets
   1539      * converted to (argc-1), etc.).
   1540      */
   1541     if (first < 0)
   1542 	first += ac + 1;
   1543     if (last < 0)
   1544 	last += ac + 1;
   1545 
   1546     /*
   1547      * We avoid scanning more of the list than we need to.
   1548      */
   1549     if (first > last) {
   1550 	start = MIN(ac, first) - 1;
   1551 	end = MAX(0, last - 1);
   1552 	step = -1;
   1553     } else {
   1554 	start = MAX(0, first - 1);
   1555 	end = MIN(ac, last);
   1556 	step = 1;
   1557     }
   1558 
   1559     for (i = start; (step < 0) == (i >= end); i += step) {
   1560 	SepBuf_AddStr(&buf, av[i]);
   1561 	SepBuf_Sep(&buf);
   1562     }
   1563 
   1564     free(as);
   1565     free(av);
   1566 
   1567     return SepBuf_Destroy(&buf, FALSE);
   1568 }
   1569 
   1570 
   1571 /* Callback for ModifyWords to implement the :tA modifier.
   1572  * Replace each word with the result of realpath() if successful. */
   1573 static void
   1574 ModifyWord_Realpath(const char *word, SepBuf *buf, void *data MAKE_ATTR_UNUSED)
   1575 {
   1576     struct stat st;
   1577     char rbuf[MAXPATHLEN];
   1578 
   1579     const char *rp = cached_realpath(word, rbuf);
   1580     if (rp != NULL && *rp == '/' && stat(rp, &st) == 0)
   1581 	word = rp;
   1582 
   1583     SepBuf_AddStr(buf, word);
   1584 }
   1585 
   1586 /*-
   1587  *-----------------------------------------------------------------------
   1588  * Modify each of the words of the passed string using the given function.
   1589  *
   1590  * Input:
   1591  *	str		String whose words should be modified
   1592  *	modifyWord	Function that modifies a single word
   1593  *	data		Custom data for modifyWord
   1594  *
   1595  * Results:
   1596  *	A string of all the words modified appropriately.
   1597  *-----------------------------------------------------------------------
   1598  */
   1599 static char *
   1600 ModifyWords(GNode *ctx, Byte sep, Boolean oneBigWord,
   1601 	    const char *str, ModifyWordsCallback modifyWord, void *data)
   1602 {
   1603     if (oneBigWord) {
   1604 	SepBuf result;
   1605 	SepBuf_Init(&result, sep);
   1606 	modifyWord(str, &result, data);
   1607 	return SepBuf_Destroy(&result, FALSE);
   1608     }
   1609 
   1610     SepBuf result;
   1611     char **av;			/* word list */
   1612     char *as;			/* word list memory */
   1613     int ac, i;
   1614 
   1615     SepBuf_Init(&result, sep);
   1616 
   1617     av = brk_string(str, &ac, FALSE, &as);
   1618 
   1619     if (DEBUG(VAR)) {
   1620 	fprintf(debug_file, "ModifyWords: split \"%s\" into %d words\n",
   1621 		str, ac);
   1622     }
   1623 
   1624     for (i = 0; i < ac; i++) {
   1625 	size_t orig_count = result.buf.count;
   1626 	modifyWord(av[i], &result, data);
   1627 	size_t count = result.buf.count;
   1628 	if (count != orig_count)
   1629 	    SepBuf_Sep(&result);
   1630     }
   1631 
   1632     free(as);
   1633     free(av);
   1634 
   1635     return SepBuf_Destroy(&result, FALSE);
   1636 }
   1637 
   1638 
   1639 static int
   1640 VarWordCompare(const void *a, const void *b)
   1641 {
   1642     int r = strcmp(*(const char * const *)a, *(const char * const *)b);
   1643     return r;
   1644 }
   1645 
   1646 static int
   1647 VarWordCompareReverse(const void *a, const void *b)
   1648 {
   1649     int r = strcmp(*(const char * const *)b, *(const char * const *)a);
   1650     return r;
   1651 }
   1652 
   1653 /*-
   1654  *-----------------------------------------------------------------------
   1655  * VarOrder --
   1656  *	Order the words in the string.
   1657  *
   1658  * Input:
   1659  *	str		String whose words should be sorted.
   1660  *	otype		How to order: s - sort, x - random.
   1661  *
   1662  * Results:
   1663  *	A string containing the words ordered.
   1664  *
   1665  * Side Effects:
   1666  *	None.
   1667  *
   1668  *-----------------------------------------------------------------------
   1669  */
   1670 static char *
   1671 VarOrder(const char *str, const char otype)
   1672 {
   1673     Buffer buf;			/* Buffer for the new string */
   1674     char **av;			/* word list */
   1675     char *as;			/* word list memory */
   1676     int ac, i;
   1677 
   1678     Buf_Init(&buf, 0);
   1679 
   1680     av = brk_string(str, &ac, FALSE, &as);
   1681 
   1682     if (ac > 0) {
   1683 	switch (otype) {
   1684 	case 'r':		/* reverse sort alphabetically */
   1685 	    qsort(av, ac, sizeof(char *), VarWordCompareReverse);
   1686 	    break;
   1687 	case 's':		/* sort alphabetically */
   1688 	    qsort(av, ac, sizeof(char *), VarWordCompare);
   1689 	    break;
   1690 	case 'x':		/* randomize */
   1691 	    /*
   1692 	     * We will use [ac..2] range for mod factors. This will produce
   1693 	     * random numbers in [(ac-1)..0] interval, and minimal
   1694 	     * reasonable value for mod factor is 2 (the mod 1 will produce
   1695 	     * 0 with probability 1).
   1696 	     */
   1697 	    for (i = ac - 1; i > 0; i--) {
   1698 		int rndidx = random() % (i + 1);
   1699 		char *t = av[i];
   1700 		av[i] = av[rndidx];
   1701 		av[rndidx] = t;
   1702 	    }
   1703 	}
   1704     }
   1705 
   1706     for (i = 0; i < ac; i++) {
   1707 	if (i != 0)
   1708 	    Buf_AddByte(&buf, ' ');
   1709 	Buf_AddStr(&buf, av[i]);
   1710     }
   1711 
   1712     free(as);
   1713     free(av);
   1714 
   1715     return Buf_Destroy(&buf, FALSE);
   1716 }
   1717 
   1718 
   1719 /* Remove adjacent duplicate words. */
   1720 static char *
   1721 VarUniq(const char *str)
   1722 {
   1723     Buffer	  buf;		/* Buffer for new string */
   1724     char 	**av;		/* List of words to affect */
   1725     char 	 *as;		/* Word list memory */
   1726     int 	  ac, i, j;
   1727 
   1728     Buf_Init(&buf, 0);
   1729     av = brk_string(str, &ac, FALSE, &as);
   1730 
   1731     if (ac > 1) {
   1732 	for (j = 0, i = 1; i < ac; i++)
   1733 	    if (strcmp(av[i], av[j]) != 0 && (++j != i))
   1734 		av[j] = av[i];
   1735 	ac = j + 1;
   1736     }
   1737 
   1738     for (i = 0; i < ac; i++) {
   1739 	if (i != 0)
   1740 	    Buf_AddByte(&buf, ' ');
   1741 	Buf_AddStr(&buf, av[i]);
   1742     }
   1743 
   1744     free(as);
   1745     free(av);
   1746 
   1747     return Buf_Destroy(&buf, FALSE);
   1748 }
   1749 
   1750 /*-
   1751  *-----------------------------------------------------------------------
   1752  * VarRange --
   1753  *	Return an integer sequence
   1754  *
   1755  * Input:
   1756  *	str		String whose words provide default range
   1757  *	ac		range length, if 0 use str words
   1758  *
   1759  * Side Effects:
   1760  *	None.
   1761  *
   1762  *-----------------------------------------------------------------------
   1763  */
   1764 static char *
   1765 VarRange(const char *str, int ac)
   1766 {
   1767     Buffer	  buf;		/* Buffer for new string */
   1768     char 	**av;		/* List of words to affect */
   1769     char 	 *as;		/* Word list memory */
   1770     int 	  i;
   1771 
   1772     Buf_Init(&buf, 0);
   1773     if (ac > 0) {
   1774 	as = NULL;
   1775 	av = NULL;
   1776     } else {
   1777 	av = brk_string(str, &ac, FALSE, &as);
   1778     }
   1779     for (i = 0; i < ac; i++) {
   1780 	if (i != 0)
   1781 	    Buf_AddByte(&buf, ' ');
   1782 	Buf_AddInt(&buf, 1 + i);
   1783     }
   1784 
   1785     free(as);
   1786     free(av);
   1787 
   1788     return Buf_Destroy(&buf, FALSE);
   1789 }
   1790 
   1791 
   1792 /*-
   1793  * Parse a text part of a modifier such as the "from" and "to" in :S/from/to/
   1794  * or the :@ modifier, until the next unescaped delimiter.  The delimiter, as
   1795  * well as the backslash or the dollar, can be escaped with a backslash.
   1796  *
   1797  * Return the parsed (and possibly expanded) string, or NULL if no delimiter
   1798  * was found.
   1799  *
   1800  * Nested variables in the text are expanded unless VARE_NOSUBST is set.
   1801  *
   1802  * If out_length is specified, store the length of the returned string, just
   1803  * to save another strlen call.
   1804  *
   1805  * If out_pflags is specified and the last character of the pattern is a $,
   1806  * set the VARP_ANCHOR_END bit of mpflags (for the first part of the :S
   1807  * modifier).
   1808  *
   1809  * If subst is specified, handle escaped ampersands and replace unescaped
   1810  * ampersands with the lhs of the pattern (for the second part of the :S
   1811  * modifier).
   1812  */
   1813 static char *
   1814 ParseModifierPart(const char **tstr, int delim, VarEvalFlags eflags,
   1815 		  GNode *ctxt, size_t *out_length,
   1816 		  VarPatternFlags *out_pflags, ModifyWord_SubstArgs *subst)
   1817 {
   1818     const char *cp;
   1819     char *rstr;
   1820     Buffer buf;
   1821     VarEvalFlags errnum = eflags & VARE_UNDEFERR;
   1822 
   1823     Buf_Init(&buf, 0);
   1824 
   1825     /*
   1826      * Skim through until the matching delimiter is found;
   1827      * pick up variable substitutions on the way. Also allow
   1828      * backslashes to quote the delimiter, $, and \, but don't
   1829      * touch other backslashes.
   1830      */
   1831     for (cp = *tstr; *cp != '\0' && *cp != delim; cp++) {
   1832 	Boolean is_escaped = cp[0] == '\\' && (
   1833 	    cp[1] == delim || cp[1] == '\\' || cp[1] == '$' ||
   1834 	    (cp[1] == '&' && subst != NULL));
   1835 	if (is_escaped) {
   1836 	    Buf_AddByte(&buf, cp[1]);
   1837 	    cp++;
   1838 	} else if (*cp == '$') {
   1839 	    if (cp[1] == delim) {	/* Unescaped $ at end of pattern */
   1840 		if (out_pflags != NULL)
   1841 		    *out_pflags |= VARP_ANCHOR_END;
   1842 		else
   1843 		    Buf_AddByte(&buf, *cp);
   1844 	    } else {
   1845 		if (eflags & VARE_WANTRES) {
   1846 		    const char *cp2;
   1847 		    int     len;
   1848 		    void   *freeIt;
   1849 
   1850 		    /*
   1851 		     * If unescaped dollar sign not before the
   1852 		     * delimiter, assume it's a variable
   1853 		     * substitution and recurse.
   1854 		     */
   1855 		    cp2 = Var_Parse(cp, ctxt, errnum | (eflags & VARE_WANTRES),
   1856 				    &len, &freeIt);
   1857 		    Buf_AddStr(&buf, cp2);
   1858 		    free(freeIt);
   1859 		    cp += len - 1;
   1860 		} else {
   1861 		    const char *cp2 = &cp[1];
   1862 
   1863 		    if (*cp2 == PROPEN || *cp2 == BROPEN) {
   1864 			/*
   1865 			 * Find the end of this variable reference
   1866 			 * and suck it in without further ado.
   1867 			 * It will be interpreted later.
   1868 			 */
   1869 			int have = *cp2;
   1870 			int want = (*cp2 == PROPEN) ? PRCLOSE : BRCLOSE;
   1871 			int depth = 1;
   1872 
   1873 			for (++cp2; *cp2 != '\0' && depth > 0; ++cp2) {
   1874 			    if (cp2[-1] != '\\') {
   1875 				if (*cp2 == have)
   1876 				    ++depth;
   1877 				if (*cp2 == want)
   1878 				    --depth;
   1879 			    }
   1880 			}
   1881 			Buf_AddBytesBetween(&buf, cp, cp2);
   1882 			cp = --cp2;
   1883 		    } else
   1884 			Buf_AddByte(&buf, *cp);
   1885 		}
   1886 	    }
   1887 	} else if (subst != NULL && *cp == '&')
   1888 	    Buf_AddBytes(&buf, subst->lhsLen, subst->lhs);
   1889 	else
   1890 	    Buf_AddByte(&buf, *cp);
   1891     }
   1892 
   1893     if (*cp != delim) {
   1894 	*tstr = cp;
   1895 	return NULL;
   1896     }
   1897 
   1898     *tstr = ++cp;
   1899     if (out_length != NULL)
   1900 	*out_length = Buf_Size(&buf);
   1901     rstr = Buf_Destroy(&buf, FALSE);
   1902     if (DEBUG(VAR))
   1903 	fprintf(debug_file, "Modifier part: \"%s\"\n", rstr);
   1904     return rstr;
   1905 }
   1906 
   1907 /*-
   1908  *-----------------------------------------------------------------------
   1909  * VarQuote --
   1910  *	Quote shell meta-characters and space characters in the string
   1911  *	if quoteDollar is set, also quote and double any '$' characters.
   1912  *
   1913  * Results:
   1914  *	The quoted string
   1915  *
   1916  * Side Effects:
   1917  *	None.
   1918  *
   1919  *-----------------------------------------------------------------------
   1920  */
   1921 static char *
   1922 VarQuote(char *str, Boolean quoteDollar)
   1923 {
   1924     Buffer buf;
   1925     Buf_Init(&buf, 0);
   1926 
   1927     for (; *str != '\0'; str++) {
   1928 	if (*str == '\n') {
   1929 	    const char *newline = Shell_GetNewline();
   1930 	    if (newline == NULL)
   1931 		newline = "\\\n";
   1932 	    Buf_AddStr(&buf, newline);
   1933 	    continue;
   1934 	}
   1935 	if (isspace((unsigned char)*str) || ismeta((unsigned char)*str))
   1936 	    Buf_AddByte(&buf, '\\');
   1937 	Buf_AddByte(&buf, *str);
   1938 	if (quoteDollar && *str == '$')
   1939 	    Buf_AddStr(&buf, "\\$");
   1940     }
   1941 
   1942     str = Buf_Destroy(&buf, FALSE);
   1943     if (DEBUG(VAR))
   1944 	fprintf(debug_file, "QuoteMeta: [%s]\n", str);
   1945     return str;
   1946 }
   1947 
   1948 /*-
   1949  *-----------------------------------------------------------------------
   1950  * VarHash --
   1951  *      Hash the string using the MurmurHash3 algorithm.
   1952  *      Output is computed using 32bit Little Endian arithmetic.
   1953  *
   1954  * Input:
   1955  *	str		String to modify
   1956  *
   1957  * Results:
   1958  *      Hash value of str, encoded as 8 hex digits.
   1959  *
   1960  * Side Effects:
   1961  *      None.
   1962  *
   1963  *-----------------------------------------------------------------------
   1964  */
   1965 static char *
   1966 VarHash(const char *str)
   1967 {
   1968     static const char    hexdigits[16] = "0123456789abcdef";
   1969     Buffer         buf;
   1970     size_t         len, len2;
   1971     const unsigned char *ustr = (const unsigned char *)str;
   1972     uint32_t       h, k, c1, c2;
   1973 
   1974     h  = 0x971e137bU;
   1975     c1 = 0x95543787U;
   1976     c2 = 0x2ad7eb25U;
   1977     len2 = strlen(str);
   1978 
   1979     for (len = len2; len; ) {
   1980 	k = 0;
   1981 	switch (len) {
   1982 	default:
   1983 	    k = ((uint32_t)ustr[3] << 24) |
   1984 		((uint32_t)ustr[2] << 16) |
   1985 		((uint32_t)ustr[1] << 8) |
   1986 		(uint32_t)ustr[0];
   1987 	    len -= 4;
   1988 	    ustr += 4;
   1989 	    break;
   1990 	case 3:
   1991 	    k |= (uint32_t)ustr[2] << 16;
   1992 	    /* FALLTHROUGH */
   1993 	case 2:
   1994 	    k |= (uint32_t)ustr[1] << 8;
   1995 	    /* FALLTHROUGH */
   1996 	case 1:
   1997 	    k |= (uint32_t)ustr[0];
   1998 	    len = 0;
   1999 	}
   2000 	c1 = c1 * 5 + 0x7b7d159cU;
   2001 	c2 = c2 * 5 + 0x6bce6396U;
   2002 	k *= c1;
   2003 	k = (k << 11) ^ (k >> 21);
   2004 	k *= c2;
   2005 	h = (h << 13) ^ (h >> 19);
   2006 	h = h * 5 + 0x52dce729U;
   2007 	h ^= k;
   2008     }
   2009     h ^= len2;
   2010     h *= 0x85ebca6b;
   2011     h ^= h >> 13;
   2012     h *= 0xc2b2ae35;
   2013     h ^= h >> 16;
   2014 
   2015     Buf_Init(&buf, 0);
   2016     for (len = 0; len < 8; ++len) {
   2017 	Buf_AddByte(&buf, hexdigits[h & 15]);
   2018 	h >>= 4;
   2019     }
   2020 
   2021     return Buf_Destroy(&buf, FALSE);
   2022 }
   2023 
   2024 static char *
   2025 VarStrftime(const char *fmt, int zulu, time_t utc)
   2026 {
   2027     char buf[BUFSIZ];
   2028 
   2029     if (!utc)
   2030 	time(&utc);
   2031     if (!*fmt)
   2032 	fmt = "%c";
   2033     strftime(buf, sizeof(buf), fmt, zulu ? gmtime(&utc) : localtime(&utc));
   2034 
   2035     buf[sizeof(buf) - 1] = '\0';
   2036     return bmake_strdup(buf);
   2037 }
   2038 
   2039 typedef struct {
   2040     /* const parameters */
   2041     int startc;			/* '\0' or '{' or '(' */
   2042     int endc;
   2043     Var *v;
   2044     GNode *ctxt;
   2045     VarEvalFlags eflags;
   2046     int *lengthPtr;
   2047     void **freePtr;
   2048 
   2049     /* read-write */
   2050     char *nstr;
   2051     const char *start;
   2052     const char *cp;		/* The position where parsing continues
   2053 				 * after the current modifier. */
   2054     char termc;			/* Character which terminated scan */
   2055     char missing_delim;		/* For error reporting */
   2056 
   2057     Byte	sep;		/* Word separator in expansions */
   2058     Boolean	oneBigWord;	/* TRUE if we will treat the variable as a
   2059 				 * single big word, even if it contains
   2060 				 * embedded spaces (as opposed to the
   2061 				 * usual behaviour of treating it as
   2062 				 * several space-separated words). */
   2063 
   2064     /* result */
   2065     char *newStr;		/* New value to return */
   2066 } ApplyModifiersState;
   2067 
   2068 /* we now have some modifiers with long names */
   2069 static Boolean
   2070 ModMatch(const char *mod, const char *modname, char endc)
   2071 {
   2072     size_t n = strlen(modname);
   2073     return strncmp(mod, modname, n) == 0 &&
   2074 	   (mod[n] == endc || mod[n] == ':');
   2075 }
   2076 
   2077 static inline Boolean
   2078 ModMatchEq(const char *mod, const char *modname, char endc)
   2079 {
   2080     size_t n = strlen(modname);
   2081     return strncmp(mod, modname, n) == 0 &&
   2082 	   (mod[n] == endc || mod[n] == ':' || mod[n] == '=');
   2083 }
   2084 
   2085 /* :@var (at) ...${var}...@ */
   2086 static Boolean
   2087 ApplyModifier_Loop(const char *mod, ApplyModifiersState *st) {
   2088     ModifyWord_LoopArgs args;
   2089 
   2090     args.ctx = st->ctxt;
   2091     st->cp = mod + 1;
   2092     char delim = '@';
   2093     args.tvar = ParseModifierPart(&st->cp, delim, st->eflags & ~VARE_WANTRES,
   2094 				  st->ctxt, NULL, NULL, NULL);
   2095     if (args.tvar == NULL) {
   2096 	st->missing_delim = delim;
   2097 	return FALSE;
   2098     }
   2099 
   2100     args.str = ParseModifierPart(&st->cp, delim, st->eflags & ~VARE_WANTRES,
   2101 				 st->ctxt, NULL, NULL, NULL);
   2102     if (args.str == NULL) {
   2103 	st->missing_delim = delim;
   2104 	return FALSE;
   2105     }
   2106 
   2107     st->termc = *st->cp;
   2108 
   2109     args.eflags = st->eflags & (VARE_UNDEFERR | VARE_WANTRES);
   2110     int prev_sep = st->sep;
   2111     st->sep = ' ';		/* XXX: this is inconsistent */
   2112     st->newStr = ModifyWords(st->ctxt, st->sep, st->oneBigWord, st->nstr,
   2113 			     ModifyWord_Loop, &args);
   2114     st->sep = prev_sep;
   2115     Var_Delete(args.tvar, st->ctxt);
   2116     free(args.tvar);
   2117     free(args.str);
   2118     return TRUE;
   2119 }
   2120 
   2121 /* :Ddefined or :Uundefined */
   2122 static void
   2123 ApplyModifier_Defined(const char *mod, ApplyModifiersState *st)
   2124 {
   2125     Buffer buf;			/* Buffer for patterns */
   2126     VarEvalFlags neflags;
   2127 
   2128     if (st->eflags & VARE_WANTRES) {
   2129 	Boolean wantres;
   2130 	if (*mod == 'U')
   2131 	    wantres = ((st->v->flags & VAR_JUNK) != 0);
   2132 	else
   2133 	    wantres = ((st->v->flags & VAR_JUNK) == 0);
   2134 	neflags = st->eflags & ~VARE_WANTRES;
   2135 	if (wantres)
   2136 	    neflags |= VARE_WANTRES;
   2137     } else
   2138 	neflags = st->eflags;
   2139 
   2140     /*
   2141      * Pass through mod looking for 1) escaped delimiters,
   2142      * '$'s and backslashes (place the escaped character in
   2143      * uninterpreted) and 2) unescaped $'s that aren't before
   2144      * the delimiter (expand the variable substitution).
   2145      * The result is left in the Buffer buf.
   2146      */
   2147     Buf_Init(&buf, 0);
   2148     const char *p = mod + 1;
   2149     while (*p != st->endc && *p != ':' && *p != '\0') {
   2150 	if (*p == '\\' &&
   2151 	    (p[1] == ':' || p[1] == '$' || p[1] == st->endc || p[1] == '\\')) {
   2152 	    Buf_AddByte(&buf, p[1]);
   2153 	    p += 2;
   2154 	} else if (*p == '$') {
   2155 	    /*
   2156 	     * If unescaped dollar sign, assume it's a
   2157 	     * variable substitution and recurse.
   2158 	     */
   2159 	    const char *cp2;
   2160 	    int	    len;
   2161 	    void    *freeIt;
   2162 
   2163 	    cp2 = Var_Parse(p, st->ctxt, neflags, &len, &freeIt);
   2164 	    Buf_AddStr(&buf, cp2);
   2165 	    free(freeIt);
   2166 	    p += len;
   2167 	} else {
   2168 	    Buf_AddByte(&buf, *p);
   2169 	    p++;
   2170 	}
   2171     }
   2172 
   2173     st->cp = p;
   2174     st->termc = *st->cp;
   2175 
   2176     if (st->v->flags & VAR_JUNK)
   2177 	st->v->flags |= VAR_KEEP;
   2178     if (neflags & VARE_WANTRES) {
   2179 	st->newStr = Buf_Destroy(&buf, FALSE);
   2180     } else {
   2181 	st->newStr = st->nstr;
   2182 	Buf_Destroy(&buf, TRUE);
   2183     }
   2184 }
   2185 
   2186 /* :gmtime */
   2187 static Boolean
   2188 ApplyModifier_Gmtime(const char *mod, ApplyModifiersState *st)
   2189 {
   2190     if (!ModMatchEq(mod, "gmtime", st->endc)) {
   2191 	st->cp = mod + 1;
   2192 	return FALSE;
   2193     }
   2194 
   2195     time_t utc;
   2196     if (mod[6] == '=') {
   2197 	char *ep;
   2198 	utc = strtoul(mod + 7, &ep, 10);
   2199 	st->cp = ep;
   2200     } else {
   2201 	utc = 0;
   2202 	st->cp = mod + 6;
   2203     }
   2204     st->newStr = VarStrftime(st->nstr, 1, utc);
   2205     st->termc = *st->cp;
   2206     return TRUE;
   2207 }
   2208 
   2209 /* :localtime */
   2210 static Boolean
   2211 ApplyModifier_Localtime(const char *mod, ApplyModifiersState *st)
   2212 {
   2213     if (!ModMatchEq(mod, "localtime", st->endc)) {
   2214 	st->cp = mod + 1;
   2215 	return FALSE;
   2216     }
   2217 
   2218     time_t utc;
   2219     if (mod[9] == '=') {
   2220 	char *ep;
   2221 	utc = strtoul(mod + 10, &ep, 10);
   2222 	st->cp = ep;
   2223     } else {
   2224 	utc = 0;
   2225 	st->cp = mod + 9;
   2226     }
   2227     st->newStr = VarStrftime(st->nstr, 0, utc);
   2228     st->termc = *st->cp;
   2229     return TRUE;
   2230 }
   2231 
   2232 /* :hash */
   2233 static Boolean
   2234 ApplyModifier_Hash(const char *mod, ApplyModifiersState *st)
   2235 {
   2236     if (!ModMatch(mod, "hash", st->endc)) {
   2237 	st->cp = mod + 1;
   2238 	return FALSE;
   2239     }
   2240 
   2241     st->newStr = VarHash(st->nstr);
   2242     st->cp = mod + 4;
   2243     st->termc = *st->cp;
   2244     return TRUE;
   2245 }
   2246 
   2247 /* :P */
   2248 static void
   2249 ApplyModifier_Path(const char *mod, ApplyModifiersState *st)
   2250 {
   2251     if (st->v->flags & VAR_JUNK)
   2252 	st->v->flags |= VAR_KEEP;
   2253     GNode *gn = Targ_FindNode(st->v->name, TARG_NOCREATE);
   2254     if (gn == NULL || gn->type & OP_NOPATH) {
   2255 	st->newStr = NULL;
   2256     } else if (gn->path) {
   2257 	st->newStr = bmake_strdup(gn->path);
   2258     } else {
   2259 	st->newStr = Dir_FindFile(st->v->name, Suff_FindPath(gn));
   2260     }
   2261     if (!st->newStr)
   2262 	st->newStr = bmake_strdup(st->v->name);
   2263     st->cp = mod + 1;
   2264     st->termc = *st->cp;
   2265 }
   2266 
   2267 /* :!cmd! */
   2268 static Boolean
   2269 ApplyModifier_Exclam(const char *mod, ApplyModifiersState *st)
   2270 {
   2271     st->cp = mod + 1;
   2272     char delim = '!';
   2273     char *cmd = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2274 				  NULL, NULL, NULL);
   2275     if (cmd == NULL) {
   2276 	st->missing_delim = delim;
   2277 	return FALSE;
   2278     }
   2279 
   2280     const char *emsg = NULL;
   2281     if (st->eflags & VARE_WANTRES)
   2282 	st->newStr = Cmd_Exec(cmd, &emsg);
   2283     else
   2284 	st->newStr = varNoError;
   2285     free(cmd);
   2286 
   2287     if (emsg)
   2288 	Error(emsg, st->nstr);
   2289 
   2290     st->termc = *st->cp;
   2291     if (st->v->flags & VAR_JUNK)
   2292 	st->v->flags |= VAR_KEEP;
   2293     return TRUE;
   2294 }
   2295 
   2296 /* :range */
   2297 static Boolean
   2298 ApplyModifier_Range(const char *mod, ApplyModifiersState *st)
   2299 {
   2300     if (!ModMatchEq(mod, "range", st->endc)) {
   2301 	st->cp = mod + 1;
   2302 	return FALSE;
   2303     }
   2304 
   2305     int n;
   2306     if (mod[5] == '=') {
   2307 	char *ep;
   2308 	n = strtoul(mod + 6, &ep, 10);
   2309 	st->cp = ep;
   2310     } else {
   2311 	n = 0;
   2312 	st->cp = mod + 5;
   2313     }
   2314     st->newStr = VarRange(st->nstr, n);
   2315     st->termc = *st->cp;
   2316     return TRUE;
   2317 }
   2318 
   2319 /* :Mpattern or :Npattern */
   2320 static void
   2321 ApplyModifier_Match(const char *mod, ApplyModifiersState *st)
   2322 {
   2323     Boolean copy = FALSE;	/* pattern should be, or has been, copied */
   2324     Boolean needSubst = FALSE;
   2325     /*
   2326      * In the loop below, ignore ':' unless we are at (or back to) the
   2327      * original brace level.
   2328      * XXX This will likely not work right if $() and ${} are intermixed.
   2329      */
   2330     int nest = 1;
   2331     for (st->cp = mod + 1;
   2332 	 *st->cp != '\0' && !(*st->cp == ':' && nest == 1);
   2333 	 st->cp++) {
   2334 	if (*st->cp == '\\' &&
   2335 	    (st->cp[1] == ':' || st->cp[1] == st->endc ||
   2336 	     st->cp[1] == st->startc)) {
   2337 	    if (!needSubst)
   2338 		copy = TRUE;
   2339 	    st->cp++;
   2340 	    continue;
   2341 	}
   2342 	if (*st->cp == '$')
   2343 	    needSubst = TRUE;
   2344 	if (*st->cp == '(' || *st->cp == '{')
   2345 	    ++nest;
   2346 	if (*st->cp == ')' || *st->cp == '}') {
   2347 	    --nest;
   2348 	    if (nest == 0)
   2349 		break;
   2350 	}
   2351     }
   2352     st->termc = *st->cp;
   2353     const char *endpat = st->cp;
   2354 
   2355     char *pattern = NULL;
   2356     if (copy) {
   2357 	/*
   2358 	 * Need to compress the \:'s out of the pattern, so
   2359 	 * allocate enough room to hold the uncompressed
   2360 	 * pattern (note that st->cp started at mod+1, so
   2361 	 * st->cp - mod takes the null byte into account) and
   2362 	 * compress the pattern into the space.
   2363 	 */
   2364 	pattern = bmake_malloc(st->cp - mod);
   2365 	char *cp2;
   2366 	for (cp2 = pattern, st->cp = mod + 1;
   2367 	     st->cp < endpat;
   2368 	     st->cp++, cp2++) {
   2369 	    if ((*st->cp == '\\') && (st->cp+1 < endpat) &&
   2370 		(st->cp[1] == ':' || st->cp[1] == st->endc))
   2371 		st->cp++;
   2372 	    *cp2 = *st->cp;
   2373 	}
   2374 	*cp2 = '\0';
   2375 	endpat = cp2;
   2376     } else {
   2377 	/*
   2378 	 * Either Var_Subst or ModifyWords will need a
   2379 	 * nul-terminated string soon, so construct one now.
   2380 	 */
   2381 	pattern = bmake_strndup(mod + 1, endpat - (mod + 1));
   2382     }
   2383     if (needSubst) {
   2384 	/* pattern contains embedded '$', so use Var_Subst to expand it. */
   2385 	char *old_pattern = pattern;
   2386 	pattern = Var_Subst(NULL, pattern, st->ctxt, st->eflags);
   2387 	free(old_pattern);
   2388     }
   2389     if (DEBUG(VAR))
   2390 	fprintf(debug_file, "Pattern[%s] for [%s] is [%s]\n",
   2391 	    st->v->name, st->nstr, pattern);
   2392     ModifyWordsCallback callback = mod[0] == 'M'
   2393 	? ModifyWord_Match : ModifyWord_NoMatch;
   2394     st->newStr = ModifyWords(st->ctxt, st->sep, st->oneBigWord, st->nstr,
   2395 			     callback, pattern);
   2396     free(pattern);
   2397 }
   2398 
   2399 /* :S,from,to, */
   2400 static Boolean
   2401 ApplyModifier_Subst(const char * const mod, ApplyModifiersState *st)
   2402 {
   2403     ModifyWord_SubstArgs args;
   2404     Boolean oneBigWord = st->oneBigWord;
   2405     char delim = mod[1];
   2406 
   2407     st->cp = mod + 2;
   2408 
   2409     /*
   2410      * If pattern begins with '^', it is anchored to the
   2411      * start of the word -- skip over it and flag pattern.
   2412      */
   2413     args.pflags = 0;
   2414     if (*st->cp == '^') {
   2415 	args.pflags |= VARP_ANCHOR_START;
   2416 	st->cp++;
   2417     }
   2418 
   2419     char *lhs = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2420 				  &args.lhsLen, &args.pflags, NULL);
   2421     if (lhs == NULL) {
   2422 	st->missing_delim = delim;
   2423 	return FALSE;
   2424     }
   2425     args.lhs = lhs;
   2426 
   2427     char *rhs = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2428 				  &args.rhsLen, NULL, &args);
   2429     if (rhs == NULL) {
   2430 	st->missing_delim = delim;
   2431 	return FALSE;
   2432     }
   2433     args.rhs = rhs;
   2434 
   2435     /*
   2436      * Check for global substitution. If 'g' after the final
   2437      * delimiter, substitution is global and is marked that
   2438      * way.
   2439      */
   2440     for (;; st->cp++) {
   2441 	switch (*st->cp) {
   2442 	case 'g':
   2443 	    args.pflags |= VARP_SUB_GLOBAL;
   2444 	    continue;
   2445 	case '1':
   2446 	    args.pflags |= VARP_SUB_ONE;
   2447 	    continue;
   2448 	case 'W':
   2449 	    oneBigWord = TRUE;
   2450 	    continue;
   2451 	}
   2452 	break;
   2453     }
   2454 
   2455     st->termc = *st->cp;
   2456     st->newStr = ModifyWords(st->ctxt, st->sep, oneBigWord, st->nstr,
   2457 			     ModifyWord_Subst, &args);
   2458 
   2459     free(lhs);
   2460     free(rhs);
   2461     return TRUE;
   2462 }
   2463 
   2464 #ifndef NO_REGEX
   2465 
   2466 /* :C,from,to, */
   2467 static Boolean
   2468 ApplyModifier_Regex(const char *mod, ApplyModifiersState *st)
   2469 {
   2470     ModifyWord_SubstRegexArgs args;
   2471 
   2472     args.pflags = 0;
   2473     Boolean oneBigWord = st->oneBigWord;
   2474     char delim = mod[1];
   2475 
   2476     st->cp = mod + 2;
   2477 
   2478     char *re = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2479 				 NULL, NULL, NULL);
   2480     if (re == NULL) {
   2481 	st->missing_delim = delim;
   2482 	return FALSE;
   2483     }
   2484 
   2485     args.replace = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2486 				     NULL, NULL, NULL);
   2487     if (args.replace == NULL) {
   2488 	free(re);
   2489 	st->missing_delim = delim;
   2490 	return FALSE;
   2491     }
   2492 
   2493     for (;; st->cp++) {
   2494 	switch (*st->cp) {
   2495 	case 'g':
   2496 	    args.pflags |= VARP_SUB_GLOBAL;
   2497 	    continue;
   2498 	case '1':
   2499 	    args.pflags |= VARP_SUB_ONE;
   2500 	    continue;
   2501 	case 'W':
   2502 	    oneBigWord = TRUE;
   2503 	    continue;
   2504 	}
   2505 	break;
   2506     }
   2507 
   2508     st->termc = *st->cp;
   2509 
   2510     int error = regcomp(&args.re, re, REG_EXTENDED);
   2511     free(re);
   2512     if (error) {
   2513 	VarREError(error, &args.re, "RE substitution error");
   2514 	free(args.replace);
   2515 	return FALSE;
   2516     }
   2517 
   2518     args.nsub = args.re.re_nsub + 1;
   2519     if (args.nsub < 1)
   2520 	args.nsub = 1;
   2521     if (args.nsub > 10)
   2522 	args.nsub = 10;
   2523     st->newStr = ModifyWords(st->ctxt, st->sep, oneBigWord, st->nstr,
   2524 			     ModifyWord_SubstRegex, &args);
   2525     regfree(&args.re);
   2526     free(args.replace);
   2527     return TRUE;
   2528 }
   2529 #endif
   2530 
   2531 static void
   2532 ModifyWord_Copy(const char *word, SepBuf *buf, void *data MAKE_ATTR_UNUSED)
   2533 {
   2534     SepBuf_AddStr(buf, word);
   2535 }
   2536 
   2537 /* :ts<separator> */
   2538 static Boolean
   2539 ApplyModifier_ToSep(const char *sep, ApplyModifiersState *st)
   2540 {
   2541     if (sep[0] != st->endc && (sep[1] == st->endc || sep[1] == ':')) {
   2542 	/* ":ts<unrecognised><endc>" or ":ts<unrecognised>:" */
   2543 	st->sep = sep[0];
   2544 	st->cp = sep + 1;
   2545     } else if (sep[0] == st->endc || sep[0] == ':') {
   2546 	/* ":ts<endc>" or ":ts:" */
   2547 	st->sep = '\0';		/* no separator */
   2548 	st->cp = sep;
   2549     } else if (sep[0] == '\\') {
   2550 	const char *xp = sep + 1;
   2551 	int base = 8;		/* assume octal */
   2552 
   2553 	switch (sep[1]) {
   2554 	case 'n':
   2555 	    st->sep = '\n';
   2556 	    st->cp = sep + 2;
   2557 	    break;
   2558 	case 't':
   2559 	    st->sep = '\t';
   2560 	    st->cp = sep + 2;
   2561 	    break;
   2562 	case 'x':
   2563 	    base = 16;
   2564 	    xp++;
   2565 	    goto get_numeric;
   2566 	case '0':
   2567 	    base = 0;
   2568 	    goto get_numeric;
   2569 	default:
   2570 	    if (!isdigit((unsigned char)sep[1]))
   2571 		return FALSE;	/* ":ts<backslash><unrecognised>". */
   2572 
   2573 	    char *end;
   2574 	get_numeric:
   2575 	    st->sep = strtoul(sep + 1 + (sep[1] == 'x'), &end, base);
   2576 	    if (*end != ':' && *end != st->endc)
   2577 	        return FALSE;
   2578 	    st->cp = end;
   2579 	    break;
   2580 	}
   2581     } else {
   2582 	return FALSE;		/* Found ":ts<unrecognised><unrecognised>". */
   2583     }
   2584 
   2585     st->termc = *st->cp;
   2586     st->newStr = ModifyWords(st->ctxt, st->sep, st->oneBigWord, st->nstr,
   2587 			     ModifyWord_Copy, NULL);
   2588     return TRUE;
   2589 }
   2590 
   2591 /* :tA, :tu, :tl, :ts<separator>, etc. */
   2592 static Boolean
   2593 ApplyModifier_To(const char *mod, ApplyModifiersState *st)
   2594 {
   2595     st->cp = mod + 1;	/* make sure it is set */
   2596     if (mod[1] == st->endc || mod[1] == ':')
   2597 	return FALSE;		/* Found ":t<endc>" or ":t:". */
   2598 
   2599     if (mod[1] == 's')
   2600 	return ApplyModifier_ToSep(mod + 2, st);
   2601 
   2602     if (mod[2] != st->endc && mod[2] != ':')
   2603 	return FALSE;		/* Found ":t<unrecognised><unrecognised>". */
   2604 
   2605     /* Check for two-character options: ":tu", ":tl" */
   2606     if (mod[1] == 'A') {	/* absolute path */
   2607 	st->newStr = ModifyWords(st->ctxt, st->sep, st->oneBigWord, st->nstr,
   2608 				 ModifyWord_Realpath, NULL);
   2609 	st->cp = mod + 2;
   2610 	st->termc = *st->cp;
   2611     } else if (mod[1] == 'u') {
   2612 	char *dp = bmake_strdup(st->nstr);
   2613 	for (st->newStr = dp; *dp; dp++)
   2614 	    *dp = toupper((unsigned char)*dp);
   2615 	st->cp = mod + 2;
   2616 	st->termc = *st->cp;
   2617     } else if (mod[1] == 'l') {
   2618 	char *dp = bmake_strdup(st->nstr);
   2619 	for (st->newStr = dp; *dp; dp++)
   2620 	    *dp = tolower((unsigned char)*dp);
   2621 	st->cp = mod + 2;
   2622 	st->termc = *st->cp;
   2623     } else if (mod[1] == 'W' || mod[1] == 'w') {
   2624 	st->oneBigWord = mod[1] == 'W';
   2625 	st->newStr = st->nstr;
   2626 	st->cp = mod + 2;
   2627 	st->termc = *st->cp;
   2628     } else {
   2629 	/* Found ":t<unrecognised>:" or ":t<unrecognised><endc>". */
   2630 	return FALSE;
   2631     }
   2632     return TRUE;
   2633 }
   2634 
   2635 /* :[#], :[1], etc. */
   2636 static int
   2637 ApplyModifier_Words(const char *mod, ApplyModifiersState *st)
   2638 {
   2639     st->cp = mod + 1;		/* point to char after '[' */
   2640     char delim = ']';		/* look for closing ']' */
   2641     char *estr = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2642 				   NULL, NULL, NULL);
   2643     if (estr == NULL) {
   2644 	st->missing_delim = delim;
   2645 	return 'c';
   2646     }
   2647 
   2648     /* now st->cp points just after the closing ']' */
   2649     if (st->cp[0] != ':' && st->cp[0] != st->endc)
   2650 	goto bad_modifier;	/* Found junk after ']' */
   2651 
   2652     if (estr[0] == '\0')
   2653 	goto bad_modifier;	/* empty square brackets in ":[]". */
   2654 
   2655     if (estr[0] == '#' && estr[1] == '\0') { /* Found ":[#]" */
   2656 	if (st->oneBigWord) {
   2657 	    st->newStr = bmake_strdup("1");
   2658 	} else {
   2659 	    /* XXX: brk_string() is a rather expensive
   2660 	     * way of counting words. */
   2661 	    char *as;
   2662 	    int ac;
   2663 	    char **av = brk_string(st->nstr, &ac, FALSE, &as);
   2664 	    free(as);
   2665 	    free(av);
   2666 
   2667 	    Buffer buf;
   2668 	    Buf_Init(&buf, 4);	/* 3 digits + '\0' */
   2669 	    Buf_AddInt(&buf, ac);
   2670 	    st->newStr = Buf_Destroy(&buf, FALSE);
   2671 	}
   2672 	goto ok;
   2673     }
   2674 
   2675     if (estr[0] == '*' && estr[1] == '\0') {
   2676 	/* Found ":[*]" */
   2677 	st->oneBigWord = TRUE;
   2678 	st->newStr = st->nstr;
   2679 	goto ok;
   2680     }
   2681 
   2682     if (estr[0] == '@' && estr[1] == '\0') {
   2683 	/* Found ":[@]" */
   2684 	st->oneBigWord = FALSE;
   2685 	st->newStr = st->nstr;
   2686 	goto ok;
   2687     }
   2688 
   2689     /*
   2690      * We expect estr to contain a single integer for :[N], or two integers
   2691      * separated by ".." for :[start..end].
   2692      */
   2693     char *ep;
   2694     int first = strtol(estr, &ep, 0);
   2695     int last;
   2696     if (ep == estr)		/* Found junk instead of a number */
   2697 	goto bad_modifier;
   2698 
   2699     if (ep[0] == '\0') {	/* Found only one integer in :[N] */
   2700 	last = first;
   2701     } else if (ep[0] == '.' && ep[1] == '.' && ep[2] != '\0') {
   2702 	/* Expecting another integer after ".." */
   2703 	ep += 2;
   2704 	last = strtol(ep, &ep, 0);
   2705 	if (ep[0] != '\0')	/* Found junk after ".." */
   2706 	    goto bad_modifier;
   2707     } else
   2708 	goto bad_modifier;	/* Found junk instead of ".." */
   2709 
   2710     /*
   2711      * Now seldata is properly filled in, but we still have to check for 0 as
   2712      * a special case.
   2713      */
   2714     if (first == 0 && last == 0) {
   2715 	/* ":[0]" or perhaps ":[0..0]" */
   2716 	st->oneBigWord = TRUE;
   2717 	st->newStr = st->nstr;
   2718 	goto ok;
   2719     }
   2720 
   2721     /* ":[0..N]" or ":[N..0]" */
   2722     if (first == 0 || last == 0)
   2723 	goto bad_modifier;
   2724 
   2725     /* Normal case: select the words described by seldata. */
   2726     st->newStr = VarSelectWords(st->sep, st->oneBigWord, st->nstr, first, last);
   2727 
   2728 ok:
   2729     st->termc = *st->cp;
   2730     free(estr);
   2731     return 0;
   2732 
   2733 bad_modifier:
   2734     free(estr);
   2735     return 'b';
   2736 }
   2737 
   2738 /* :O or :Ox */
   2739 static Boolean
   2740 ApplyModifier_Order(const char *mod, ApplyModifiersState *st)
   2741 {
   2742     char otype;
   2743 
   2744     st->cp = mod + 1;	/* skip to the rest in any case */
   2745     if (mod[1] == st->endc || mod[1] == ':') {
   2746 	otype = 's';
   2747 	st->termc = *st->cp;
   2748     } else if ((mod[1] == 'r' || mod[1] == 'x') &&
   2749 	       (mod[2] == st->endc || mod[2] == ':')) {
   2750 	otype = mod[1];
   2751 	st->cp = mod + 2;
   2752 	st->termc = *st->cp;
   2753     } else {
   2754 	return FALSE;
   2755     }
   2756     st->newStr = VarOrder(st->nstr, otype);
   2757     return TRUE;
   2758 }
   2759 
   2760 /* :? then : else */
   2761 static Boolean
   2762 ApplyModifier_IfElse(const char *mod, ApplyModifiersState *st)
   2763 {
   2764     Boolean value = FALSE;
   2765     int cond_rc = 0;
   2766     VarEvalFlags then_eflags = st->eflags & ~VARE_WANTRES;
   2767     VarEvalFlags else_eflags = st->eflags & ~VARE_WANTRES;
   2768 
   2769     if (st->eflags & VARE_WANTRES) {
   2770 	cond_rc = Cond_EvalExpression(NULL, st->v->name, &value, 0, FALSE);
   2771 	if (cond_rc != COND_INVALID && value)
   2772 	    then_eflags |= VARE_WANTRES;
   2773 	if (cond_rc != COND_INVALID && !value)
   2774 	    else_eflags |= VARE_WANTRES;
   2775     }
   2776 
   2777     st->cp = mod + 1;
   2778     char delim = ':';
   2779     char *then_expr = ParseModifierPart(&st->cp, delim, then_eflags, st->ctxt,
   2780 					NULL, NULL, NULL);
   2781     if (then_expr == NULL) {
   2782 	st->missing_delim = delim;
   2783 	return FALSE;
   2784     }
   2785 
   2786     delim = st->endc;		/* BRCLOSE or PRCLOSE */
   2787     char *else_expr = ParseModifierPart(&st->cp, delim, else_eflags, st->ctxt,
   2788 					NULL, NULL, NULL);
   2789     if (else_expr == NULL) {
   2790 	st->missing_delim = delim;
   2791 	return FALSE;
   2792     }
   2793 
   2794     st->termc = *--st->cp;
   2795     if (cond_rc == COND_INVALID) {
   2796 	Error("Bad conditional expression `%s' in %s?%s:%s",
   2797 	    st->v->name, st->v->name, then_expr, else_expr);
   2798 	return FALSE;
   2799     }
   2800 
   2801     if (value) {
   2802 	st->newStr = then_expr;
   2803 	free(else_expr);
   2804     } else {
   2805 	st->newStr = else_expr;
   2806 	free(then_expr);
   2807     }
   2808     if (st->v->flags & VAR_JUNK)
   2809 	st->v->flags |= VAR_KEEP;
   2810     return TRUE;
   2811 }
   2812 
   2813 /*
   2814  * The ::= modifiers actually assign a value to the variable.
   2815  * Their main purpose is in supporting modifiers of .for loop
   2816  * iterators and other obscure uses.  They always expand to
   2817  * nothing.  In a target rule that would otherwise expand to an
   2818  * empty line they can be preceded with @: to keep make happy.
   2819  * Eg.
   2820  *
   2821  * foo:	.USE
   2822  * .for i in ${.TARGET} ${.TARGET:R}.gz
   2823  * 	@: ${t::=$i}
   2824  *	@echo blah ${t:T}
   2825  * .endfor
   2826  *
   2827  *	  ::=<str>	Assigns <str> as the new value of variable.
   2828  *	  ::?=<str>	Assigns <str> as value of variable if
   2829  *			it was not already set.
   2830  *	  ::+=<str>	Appends <str> to variable.
   2831  *	  ::!=<cmd>	Assigns output of <cmd> as the new value of
   2832  *			variable.
   2833  */
   2834 static int
   2835 ApplyModifier_Assign(const char *mod, ApplyModifiersState *st)
   2836 {
   2837     const char *op = mod + 1;
   2838     if (!(op[0] == '=' ||
   2839 	(op[1] == '=' &&
   2840 	 (op[0] == '!' || op[0] == '+' || op[0] == '?'))))
   2841 	return 'd';		/* "::<unrecognised>" */
   2842 
   2843     GNode *v_ctxt;		/* context where v belongs */
   2844 
   2845     if (st->v->name[0] == 0)
   2846 	return 'b';
   2847 
   2848     v_ctxt = st->ctxt;
   2849     char *sv_name = NULL;
   2850     if (st->v->flags & VAR_JUNK) {
   2851 	/*
   2852 	 * We need to bmake_strdup() it incase ParseModifierPart() recurses.
   2853 	 */
   2854 	sv_name = st->v->name;
   2855 	st->v->name = bmake_strdup(st->v->name);
   2856     } else if (st->ctxt != VAR_GLOBAL) {
   2857 	Var *gv = VarFind(st->v->name, st->ctxt, 0);
   2858 	if (gv == NULL)
   2859 	    v_ctxt = VAR_GLOBAL;
   2860 	else
   2861 	    VarFreeEnv(gv, TRUE);
   2862     }
   2863 
   2864     switch (op[0]) {
   2865     case '+':
   2866     case '?':
   2867     case '!':
   2868 	st->cp = mod + 3;
   2869 	break;
   2870     default:
   2871 	st->cp = mod + 2;
   2872 	break;
   2873     }
   2874 
   2875     char delim = st->startc == PROPEN ? PRCLOSE : BRCLOSE;
   2876     char *val = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2877 				  NULL, NULL, NULL);
   2878     if (st->v->flags & VAR_JUNK) {
   2879 	/* restore original name */
   2880 	free(st->v->name);
   2881 	st->v->name = sv_name;
   2882     }
   2883     if (val == NULL) {
   2884 	st->missing_delim = delim;
   2885 	return 'c';
   2886     }
   2887 
   2888     st->termc = *--st->cp;
   2889 
   2890     if (st->eflags & VARE_WANTRES) {
   2891 	switch (op[0]) {
   2892 	case '+':
   2893 	    Var_Append(st->v->name, val, v_ctxt);
   2894 	    break;
   2895 	case '!': {
   2896 	    const char *emsg;
   2897 	    st->newStr = Cmd_Exec(val, &emsg);
   2898 	    if (emsg)
   2899 		Error(emsg, st->nstr);
   2900 	    else
   2901 		Var_Set(st->v->name, st->newStr, v_ctxt);
   2902 	    free(st->newStr);
   2903 	    break;
   2904 	}
   2905 	case '?':
   2906 	    if (!(st->v->flags & VAR_JUNK))
   2907 		break;
   2908 	    /* FALLTHROUGH */
   2909 	default:
   2910 	    Var_Set(st->v->name, val, v_ctxt);
   2911 	    break;
   2912 	}
   2913     }
   2914     free(val);
   2915     st->newStr = varNoError;
   2916     return 0;
   2917 }
   2918 
   2919 /* remember current value */
   2920 static Boolean
   2921 ApplyModifier_Remember(const char *mod, ApplyModifiersState *st)
   2922 {
   2923     if (!ModMatchEq(mod, "_", st->endc)) {
   2924 	st->cp = mod + 1;
   2925 	return FALSE;
   2926     }
   2927 
   2928     if (mod[1] == '=') {
   2929 	size_t n = strcspn(mod + 2, ":)}");
   2930 	char *name = bmake_strndup(mod + 2, n);
   2931 	Var_Set(name, st->nstr, st->ctxt);
   2932 	free(name);
   2933 	st->cp = mod + 2 + n;
   2934     } else {
   2935 	Var_Set("_", st->nstr, st->ctxt);
   2936 	st->cp = mod + 1;
   2937     }
   2938     st->newStr = st->nstr;
   2939     st->termc = *st->cp;
   2940     return TRUE;
   2941 }
   2942 
   2943 #ifdef SYSVVARSUB
   2944 /* :from=to */
   2945 static int
   2946 ApplyModifier_SysV(const char *mod, ApplyModifiersState *st)
   2947 {
   2948     Boolean eqFound = FALSE;
   2949 
   2950     /*
   2951      * First we make a pass through the string trying
   2952      * to verify it is a SYSV-make-style translation:
   2953      * it must be: <string1>=<string2>)
   2954      */
   2955     st->cp = mod;
   2956     int nest = 1;
   2957     while (*st->cp != '\0' && nest > 0) {
   2958 	if (*st->cp == '=') {
   2959 	    eqFound = TRUE;
   2960 	    /* continue looking for st->endc */
   2961 	} else if (*st->cp == st->endc)
   2962 	    nest--;
   2963 	else if (*st->cp == st->startc)
   2964 	    nest++;
   2965 	if (nest > 0)
   2966 	    st->cp++;
   2967     }
   2968     if (*st->cp != st->endc || !eqFound)
   2969 	return 0;
   2970 
   2971     char delim = '=';
   2972     st->cp = mod;
   2973     char *lhs = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2974 				  NULL, NULL, NULL);
   2975     if (lhs == NULL) {
   2976 	st->missing_delim = delim;
   2977 	return 'c';
   2978     }
   2979 
   2980     delim = st->endc;
   2981     char *rhs = ParseModifierPart(&st->cp, delim, st->eflags, st->ctxt,
   2982 				  NULL, NULL, NULL);
   2983     if (rhs == NULL) {
   2984 	st->missing_delim = delim;
   2985 	return 'c';
   2986     }
   2987 
   2988     /*
   2989      * SYSV modifications happen through the whole
   2990      * string. Note the pattern is anchored at the end.
   2991      */
   2992     st->termc = *--st->cp;
   2993     if (lhs[0] == '\0' && *st->nstr == '\0') {
   2994 	st->newStr = st->nstr;	/* special case */
   2995     } else {
   2996 	ModifyWord_SYSVSubstArgs args = { st->ctxt, lhs, rhs };
   2997 	st->newStr = ModifyWords(st->ctxt, st->sep, st->oneBigWord, st->nstr,
   2998 				 ModifyWord_SYSVSubst, &args);
   2999     }
   3000     free(lhs);
   3001     free(rhs);
   3002     return '=';
   3003 }
   3004 #endif
   3005 
   3006 /*
   3007  * Now we need to apply any modifiers the user wants applied.
   3008  * These are:
   3009  *  	  :M<pattern>	words which match the given <pattern>.
   3010  *  			<pattern> is of the standard file
   3011  *  			wildcarding form.
   3012  *  	  :N<pattern>	words which do not match the given <pattern>.
   3013  *  	  :S<d><pat1><d><pat2><d>[1gW]
   3014  *  			Substitute <pat2> for <pat1> in the value
   3015  *  	  :C<d><pat1><d><pat2><d>[1gW]
   3016  *  			Substitute <pat2> for regex <pat1> in the value
   3017  *  	  :H		Substitute the head of each word
   3018  *  	  :T		Substitute the tail of each word
   3019  *  	  :E		Substitute the extension (minus '.') of
   3020  *  			each word
   3021  *  	  :R		Substitute the root of each word
   3022  *  			(pathname minus the suffix).
   3023  *	  :O		("Order") Alphabeticaly sort words in variable.
   3024  *	  :Ox		("intermiX") Randomize words in variable.
   3025  *	  :u		("uniq") Remove adjacent duplicate words.
   3026  *	  :tu		Converts the variable contents to uppercase.
   3027  *	  :tl		Converts the variable contents to lowercase.
   3028  *	  :ts[c]	Sets varSpace - the char used to
   3029  *			separate words to 'c'. If 'c' is
   3030  *			omitted then no separation is used.
   3031  *	  :tW		Treat the variable contents as a single
   3032  *			word, even if it contains spaces.
   3033  *			(Mnemonic: one big 'W'ord.)
   3034  *	  :tw		Treat the variable contents as multiple
   3035  *			space-separated words.
   3036  *			(Mnemonic: many small 'w'ords.)
   3037  *	  :[index]	Select a single word from the value.
   3038  *	  :[start..end]	Select multiple words from the value.
   3039  *	  :[*] or :[0]	Select the entire value, as a single
   3040  *			word.  Equivalent to :tW.
   3041  *	  :[@]		Select the entire value, as multiple
   3042  *			words.	Undoes the effect of :[*].
   3043  *			Equivalent to :tw.
   3044  *	  :[#]		Returns the number of words in the value.
   3045  *
   3046  *	  :?<true-value>:<false-value>
   3047  *			If the variable evaluates to true, return
   3048  *			true value, else return the second value.
   3049  *    	  :lhs=rhs  	Like :S, but the rhs goes to the end of
   3050  *    			the invocation.
   3051  *	  :sh		Treat the current value as a command
   3052  *			to be run, new value is its output.
   3053  * The following added so we can handle ODE makefiles.
   3054  *	  :@<tmpvar>@<newval>@
   3055  *			Assign a temporary local variable <tmpvar>
   3056  *			to the current value of each word in turn
   3057  *			and replace each word with the result of
   3058  *			evaluating <newval>
   3059  *	  :D<newval>	Use <newval> as value if variable defined
   3060  *	  :U<newval>	Use <newval> as value if variable undefined
   3061  *	  :L		Use the name of the variable as the value.
   3062  *	  :P		Use the path of the node that has the same
   3063  *			name as the variable as the value.  This
   3064  *			basically includes an implied :L so that
   3065  *			the common method of refering to the path
   3066  *			of your dependent 'x' in a rule is to use
   3067  *			the form '${x:P}'.
   3068  *	  :!<cmd>!	Run cmd much the same as :sh run's the
   3069  *			current value of the variable.
   3070  * Assignment operators (see ApplyModifier_Assign).
   3071  */
   3072 static char *
   3073 ApplyModifiers(char *nstr, const char *tstr,
   3074 	       int const startc, int const endc,
   3075 	       Var * const v, GNode * const ctxt, VarEvalFlags const eflags,
   3076 	       int * const lengthPtr, void ** const freePtr)
   3077 {
   3078     ApplyModifiersState st = {
   3079 	startc, endc, v, ctxt, eflags, lengthPtr, freePtr,
   3080 	nstr, tstr, tstr,
   3081 	'\0', '\0', ' ', FALSE, NULL
   3082     };
   3083 
   3084     const char *p = tstr;
   3085     while (*p != '\0' && *p != endc) {
   3086 
   3087 	if (*p == '$') {
   3088 	    /*
   3089 	     * We may have some complex modifiers in a variable.
   3090 	     */
   3091 	    void *freeIt;
   3092 	    const char *rval;
   3093 	    int rlen;
   3094 	    int c;
   3095 
   3096 	    rval = Var_Parse(p, st.ctxt, st.eflags, &rlen, &freeIt);
   3097 
   3098 	    /*
   3099 	     * If we have not parsed up to st.endc or ':',
   3100 	     * we are not interested.
   3101 	     */
   3102 	    if (rval != NULL && *rval &&
   3103 		(c = p[rlen]) != '\0' &&
   3104 		c != ':' &&
   3105 		c != st.endc) {
   3106 		free(freeIt);
   3107 		goto apply_mods;
   3108 	    }
   3109 
   3110 	    if (DEBUG(VAR)) {
   3111 		fprintf(debug_file, "Got '%s' from '%.*s'%.*s\n",
   3112 		       rval, rlen, p, rlen, p + rlen);
   3113 	    }
   3114 
   3115 	    p += rlen;
   3116 
   3117 	    if (rval != NULL && *rval) {
   3118 		int used;
   3119 
   3120 		st.nstr = ApplyModifiers(st.nstr, rval, 0, 0, st.v,
   3121 				      st.ctxt, st.eflags, &used, st.freePtr);
   3122 		if (st.nstr == var_Error
   3123 		    || (st.nstr == varNoError && (st.eflags & VARE_UNDEFERR) == 0)
   3124 		    || strlen(rval) != (size_t) used) {
   3125 		    free(freeIt);
   3126 		    goto out;	/* error already reported */
   3127 		}
   3128 	    }
   3129 	    free(freeIt);
   3130 	    if (*p == ':')
   3131 		p++;
   3132 	    else if (*p == '\0' && endc != '\0') {
   3133 		Error("Unclosed variable specification after complex "
   3134 		    "modifier (expecting '%c') for %s", st.endc, st.v->name);
   3135 		goto out;
   3136 	    }
   3137 	    continue;
   3138 	}
   3139     apply_mods:
   3140 	if (DEBUG(VAR)) {
   3141 	    fprintf(debug_file, "Applying[%s] :%c to \"%s\"\n", st.v->name,
   3142 		*p, st.nstr);
   3143 	}
   3144 	st.newStr = var_Error;
   3145 	char modifier = *p;
   3146 	switch (modifier) {
   3147 	case ':':
   3148 	    {
   3149 		int res = ApplyModifier_Assign(p, &st);
   3150 		if (res == 'b')
   3151 		    goto bad_modifier;
   3152 		if (res == 'c')
   3153 		    goto cleanup;
   3154 		if (res == 'd')
   3155 		    goto default_case;
   3156 		break;
   3157 	    }
   3158 	case '@':
   3159 	    if (!ApplyModifier_Loop(p, &st))
   3160 		goto cleanup;
   3161 	    break;
   3162 	case '_':
   3163 	    if (!ApplyModifier_Remember(p, &st))
   3164 		goto default_case;
   3165 	    break;
   3166 	case 'D':
   3167 	case 'U':
   3168 	    ApplyModifier_Defined(p, &st);
   3169 	    break;
   3170 	case 'L':
   3171 	    {
   3172 		if (st.v->flags & VAR_JUNK)
   3173 		    st.v->flags |= VAR_KEEP;
   3174 		st.newStr = bmake_strdup(st.v->name);
   3175 		st.cp = p + 1;
   3176 		st.termc = *st.cp;
   3177 		break;
   3178 	    }
   3179 	case 'P':
   3180 	    ApplyModifier_Path(p, &st);
   3181 	    break;
   3182 	case '!':
   3183 	    if (!ApplyModifier_Exclam(p, &st))
   3184 		goto cleanup;
   3185 	    break;
   3186 	case '[':
   3187 	    {
   3188 		int res = ApplyModifier_Words(p, &st);
   3189 		if (res == 'b')
   3190 		    goto bad_modifier;
   3191 		if (res == 'c')
   3192 		    goto cleanup;
   3193 		break;
   3194 	    }
   3195 	case 'g':
   3196 	    if (!ApplyModifier_Gmtime(p, &st))
   3197 		goto default_case;
   3198 	    break;
   3199 	case 'h':
   3200 	    if (!ApplyModifier_Hash(p, &st))
   3201 		goto default_case;
   3202 	    break;
   3203 	case 'l':
   3204 	    if (!ApplyModifier_Localtime(p, &st))
   3205 		goto default_case;
   3206 	    break;
   3207 	case 't':
   3208 	    if (!ApplyModifier_To(p, &st))
   3209 		goto bad_modifier;
   3210 	    break;
   3211 	case 'N':
   3212 	case 'M':
   3213 	    ApplyModifier_Match(p, &st);
   3214 	    break;
   3215 	case 'S':
   3216 	    if (!ApplyModifier_Subst(p, &st))
   3217 		goto cleanup;
   3218 	    break;
   3219 	case '?':
   3220 	    if (!ApplyModifier_IfElse(p, &st))
   3221 		goto cleanup;
   3222 	    break;
   3223 #ifndef NO_REGEX
   3224 	case 'C':
   3225 	    if (!ApplyModifier_Regex(p, &st))
   3226 		goto cleanup;
   3227 	    break;
   3228 #endif
   3229 	case 'q':
   3230 	case 'Q':
   3231 	    if (p[1] == st.endc || p[1] == ':') {
   3232 		st.newStr = VarQuote(st.nstr, modifier == 'q');
   3233 		st.cp = p + 1;
   3234 		st.termc = *st.cp;
   3235 		break;
   3236 	    }
   3237 	    goto default_case;
   3238 	case 'T':
   3239 	    if (p[1] == st.endc || p[1] == ':') {
   3240 		st.newStr = ModifyWords(st.ctxt, st.sep, st.oneBigWord,
   3241 					st.nstr, ModifyWord_Tail, NULL);
   3242 		st.cp = p + 1;
   3243 		st.termc = *st.cp;
   3244 		break;
   3245 	    }
   3246 	    goto default_case;
   3247 	case 'H':
   3248 	    if (p[1] == st.endc || p[1] == ':') {
   3249 		st.newStr = ModifyWords(st.ctxt, st.sep, st.oneBigWord,
   3250 					st.nstr, ModifyWord_Head, NULL);
   3251 		st.cp = p + 1;
   3252 		st.termc = *st.cp;
   3253 		break;
   3254 	    }
   3255 	    goto default_case;
   3256 	case 'E':
   3257 	    if (p[1] == st.endc || p[1] == ':') {
   3258 		st.newStr = ModifyWords(st.ctxt, st.sep, st.oneBigWord,
   3259 					st.nstr, ModifyWord_Suffix, NULL);
   3260 		st.cp = p + 1;
   3261 		st.termc = *st.cp;
   3262 		break;
   3263 	    }
   3264 	    goto default_case;
   3265 	case 'R':
   3266 	    if (p[1] == st.endc || p[1] == ':') {
   3267 		st.newStr = ModifyWords(st.ctxt, st.sep, st.oneBigWord,
   3268 					st.nstr, ModifyWord_Root, NULL);
   3269 		st.cp = p + 1;
   3270 		st.termc = *st.cp;
   3271 		break;
   3272 	    }
   3273 	    goto default_case;
   3274 	case 'r':
   3275 	    if (!ApplyModifier_Range(p, &st))
   3276 		goto default_case;
   3277 	    break;
   3278 	case 'O':
   3279 	    if (!ApplyModifier_Order(p, &st))
   3280 		goto bad_modifier;
   3281 	    break;
   3282 	case 'u':
   3283 	    if (p[1] == st.endc || p[1] == ':') {
   3284 		st.newStr = VarUniq(st.nstr);
   3285 		st.cp = p + 1;
   3286 		st.termc = *st.cp;
   3287 		break;
   3288 	    }
   3289 	    goto default_case;
   3290 #ifdef SUNSHCMD
   3291 	case 's':
   3292 	    if (p[1] == 'h' && (p[2] == st.endc || p[2] == ':')) {
   3293 		const char *emsg;
   3294 		if (st.eflags & VARE_WANTRES) {
   3295 		    st.newStr = Cmd_Exec(st.nstr, &emsg);
   3296 		    if (emsg)
   3297 			Error(emsg, st.nstr);
   3298 		} else
   3299 		    st.newStr = varNoError;
   3300 		st.cp = p + 2;
   3301 		st.termc = *st.cp;
   3302 		break;
   3303 	    }
   3304 	    goto default_case;
   3305 #endif
   3306 	default:
   3307 	default_case:
   3308 	    {
   3309 #ifdef SYSVVARSUB
   3310 		int res = ApplyModifier_SysV(p, &st);
   3311 		if (res == 'c')
   3312 		    goto cleanup;
   3313 		if (res != '=')
   3314 #endif
   3315 		{
   3316 		    Error("Unknown modifier '%c'", *p);
   3317 		    for (st.cp = p + 1;
   3318 			 *st.cp != ':' && *st.cp != st.endc && *st.cp != '\0';
   3319 			 st.cp++)
   3320 			continue;
   3321 		    st.termc = *st.cp;
   3322 		    st.newStr = var_Error;
   3323 		}
   3324 	    }
   3325 	}
   3326 	if (DEBUG(VAR)) {
   3327 	    fprintf(debug_file, "Result[%s] of :%c is \"%s\"\n",
   3328 		st.v->name, modifier, st.newStr);
   3329 	}
   3330 
   3331 	if (st.newStr != st.nstr) {
   3332 	    if (*st.freePtr) {
   3333 		free(st.nstr);
   3334 		*st.freePtr = NULL;
   3335 	    }
   3336 	    st.nstr = st.newStr;
   3337 	    if (st.nstr != var_Error && st.nstr != varNoError) {
   3338 		*st.freePtr = st.nstr;
   3339 	    }
   3340 	}
   3341 	if (st.termc == '\0' && st.endc != '\0') {
   3342 	    Error("Unclosed variable specification (expecting '%c') "
   3343 		"for \"%s\" (value \"%s\") modifier %c",
   3344 		st.endc, st.v->name, st.nstr, modifier);
   3345 	} else if (st.termc == ':') {
   3346 	    st.cp++;
   3347 	}
   3348 	p = st.cp;
   3349     }
   3350 out:
   3351     *st.lengthPtr = p - st.start;
   3352     return st.nstr;
   3353 
   3354 bad_modifier:
   3355     Error("Bad modifier `:%.*s' for %s",
   3356 	  (int)strcspn(p, ":)}"), p, st.v->name);
   3357 
   3358 cleanup:
   3359     *st.lengthPtr = st.cp - st.start;
   3360     if (st.missing_delim != '\0')
   3361 	Error("Unclosed substitution for %s (%c missing)",
   3362 	      st.v->name, st.missing_delim);
   3363     free(*st.freePtr);
   3364     *st.freePtr = NULL;
   3365     return var_Error;
   3366 }
   3367 
   3368 static Boolean
   3369 VarIsDynamic(GNode *ctxt, const char *varname, size_t namelen)
   3370 {
   3371     if ((namelen == 1 ||
   3372 	 (namelen == 2 && (varname[1] == 'F' || varname[1] == 'D'))) &&
   3373 	(ctxt == VAR_CMD || ctxt == VAR_GLOBAL))
   3374     {
   3375 	/*
   3376 	 * If substituting a local variable in a non-local context,
   3377 	 * assume it's for dynamic source stuff. We have to handle
   3378 	 * this specially and return the longhand for the variable
   3379 	 * with the dollar sign escaped so it makes it back to the
   3380 	 * caller. Only four of the local variables are treated
   3381 	 * specially as they are the only four that will be set
   3382 	 * when dynamic sources are expanded.
   3383 	 */
   3384 	switch (varname[0]) {
   3385 	case '@':
   3386 	case '%':
   3387 	case '*':
   3388 	case '!':
   3389 	    return TRUE;
   3390 	}
   3391 	return FALSE;
   3392     }
   3393 
   3394     if ((namelen == 7 || namelen == 8) && varname[0] == '.' &&
   3395 	isupper((unsigned char) varname[1]) &&
   3396 	(ctxt == VAR_CMD || ctxt == VAR_GLOBAL))
   3397     {
   3398 	return strcmp(varname, ".TARGET") == 0 ||
   3399 	    strcmp(varname, ".ARCHIVE") == 0 ||
   3400 	    strcmp(varname, ".PREFIX") == 0 ||
   3401 	    strcmp(varname, ".MEMBER") == 0;
   3402     }
   3403 
   3404     return FALSE;
   3405 }
   3406 
   3407 /*-
   3408  *-----------------------------------------------------------------------
   3409  * Var_Parse --
   3410  *	Given the start of a variable invocation (such as $v, $(VAR),
   3411  *	${VAR:Mpattern}), extract the variable name, possibly some
   3412  *	modifiers and find its value by applying the modifiers to the
   3413  *	original value.
   3414  *
   3415  * Input:
   3416  *	str		The string to parse
   3417  *	ctxt		The context for the variable
   3418  *	flags		VARE_UNDEFERR	if undefineds are an error
   3419  *			VARE_WANTRES	if we actually want the result
   3420  *			VARE_ASSIGN	if we are in a := assignment
   3421  *	lengthPtr	OUT: The length of the specification
   3422  *	freePtr		OUT: Non-NULL if caller should free *freePtr
   3423  *
   3424  * Results:
   3425  *	The (possibly-modified) value of the variable or var_Error if the
   3426  *	specification is invalid. The length of the specification is
   3427  *	placed in *lengthPtr (for invalid specifications, this is just
   3428  *	2...?).
   3429  *	If *freePtr is non-NULL then it's a pointer that the caller
   3430  *	should pass to free() to free memory used by the result.
   3431  *
   3432  * Side Effects:
   3433  *	None.
   3434  *
   3435  *-----------------------------------------------------------------------
   3436  */
   3437 /* coverity[+alloc : arg-*4] */
   3438 const char *
   3439 Var_Parse(const char * const str, GNode *ctxt, VarEvalFlags eflags,
   3440 	  int *lengthPtr, void **freePtr)
   3441 {
   3442     const char	*tstr;		/* Pointer into str */
   3443     Var		*v;		/* Variable in invocation */
   3444     Boolean 	 haveModifier;	/* TRUE if have modifiers for the variable */
   3445     char	 endc;		/* Ending character when variable in parens
   3446 				 * or braces */
   3447     char	 startc;	/* Starting character when variable in parens
   3448 				 * or braces */
   3449     char	*nstr;		/* New string, used during expansion */
   3450     Boolean	 dynamic;	/* TRUE if the variable is local and we're
   3451 				 * expanding it in a non-local context. This
   3452 				 * is done to support dynamic sources. The
   3453 				 * result is just the invocation, unaltered */
   3454     const char	*extramodifiers; /* extra modifiers to apply first */
   3455 
   3456     *freePtr = NULL;
   3457     extramodifiers = NULL;
   3458     dynamic = FALSE;
   3459 
   3460     startc = str[1];
   3461     if (startc != PROPEN && startc != BROPEN) {
   3462 	/*
   3463 	 * If it's not bounded by braces of some sort, life is much simpler.
   3464 	 * We just need to check for the first character and return the
   3465 	 * value if it exists.
   3466 	 */
   3467 
   3468 	/* Error out some really stupid names */
   3469 	if (startc == '\0' || strchr(")}:$", startc)) {
   3470 	    *lengthPtr = 1;
   3471 	    return var_Error;
   3472 	}
   3473 	char name[] = { startc, '\0' };
   3474 
   3475 	v = VarFind(name, ctxt, FIND_ENV | FIND_GLOBAL | FIND_CMD);
   3476 	if (v == NULL) {
   3477 	    *lengthPtr = 2;
   3478 
   3479 	    if ((ctxt == VAR_CMD) || (ctxt == VAR_GLOBAL)) {
   3480 		/*
   3481 		 * If substituting a local variable in a non-local context,
   3482 		 * assume it's for dynamic source stuff. We have to handle
   3483 		 * this specially and return the longhand for the variable
   3484 		 * with the dollar sign escaped so it makes it back to the
   3485 		 * caller. Only four of the local variables are treated
   3486 		 * specially as they are the only four that will be set
   3487 		 * when dynamic sources are expanded.
   3488 		 */
   3489 		switch (str[1]) {
   3490 		case '@':
   3491 		    return "$(.TARGET)";
   3492 		case '%':
   3493 		    return "$(.MEMBER)";
   3494 		case '*':
   3495 		    return "$(.PREFIX)";
   3496 		case '!':
   3497 		    return "$(.ARCHIVE)";
   3498 		}
   3499 	    }
   3500 	    return (eflags & VARE_UNDEFERR) ? var_Error : varNoError;
   3501 	} else {
   3502 	    haveModifier = FALSE;
   3503 	    tstr = str + 1;
   3504 	    endc = str[1];
   3505 	}
   3506     } else {
   3507 	Buffer namebuf;		/* Holds the variable name */
   3508 	int depth = 1;
   3509 
   3510 	endc = startc == PROPEN ? PRCLOSE : BRCLOSE;
   3511 	Buf_Init(&namebuf, 0);
   3512 
   3513 	/*
   3514 	 * Skip to the end character or a colon, whichever comes first.
   3515 	 */
   3516 	for (tstr = str + 2; *tstr != '\0'; tstr++) {
   3517 	    /* Track depth so we can spot parse errors. */
   3518 	    if (*tstr == startc)
   3519 		depth++;
   3520 	    if (*tstr == endc) {
   3521 		if (--depth == 0)
   3522 		    break;
   3523 	    }
   3524 	    if (depth == 1 && *tstr == ':')
   3525 		break;
   3526 	    /* A variable inside a variable, expand. */
   3527 	    if (*tstr == '$') {
   3528 		int rlen;
   3529 		void *freeIt;
   3530 		const char *rval = Var_Parse(tstr, ctxt, eflags, &rlen, &freeIt);
   3531 		if (rval != NULL)
   3532 		    Buf_AddStr(&namebuf, rval);
   3533 		free(freeIt);
   3534 		tstr += rlen - 1;
   3535 	    } else
   3536 		Buf_AddByte(&namebuf, *tstr);
   3537 	}
   3538 	if (*tstr == ':') {
   3539 	    haveModifier = TRUE;
   3540 	} else if (*tstr == endc) {
   3541 	    haveModifier = FALSE;
   3542 	} else {
   3543 	    /*
   3544 	     * If we never did find the end character, return NULL
   3545 	     * right now, setting the length to be the distance to
   3546 	     * the end of the string, since that's what make does.
   3547 	     */
   3548 	    *lengthPtr = tstr - str;
   3549 	    Buf_Destroy(&namebuf, TRUE);
   3550 	    return var_Error;
   3551 	}
   3552 
   3553 	int namelen;
   3554 	char *varname = Buf_GetAll(&namebuf, &namelen);
   3555 
   3556 	/*
   3557 	 * At this point, varname points into newly allocated memory from
   3558 	 * namebuf, containing only the name of the variable.
   3559 	 *
   3560 	 * start and tstr point into the const string that was pointed
   3561 	 * to by the original value of the str parameter.  start points
   3562 	 * to the '$' at the beginning of the string, while tstr points
   3563 	 * to the char just after the end of the variable name -- this
   3564 	 * will be '\0', ':', PRCLOSE, or BRCLOSE.
   3565 	 */
   3566 
   3567 	v = VarFind(varname, ctxt, FIND_ENV | FIND_GLOBAL | FIND_CMD);
   3568 	/*
   3569 	 * Check also for bogus D and F forms of local variables since we're
   3570 	 * in a local context and the name is the right length.
   3571 	 */
   3572 	if (v == NULL && ctxt != VAR_CMD && ctxt != VAR_GLOBAL &&
   3573 		namelen == 2 && (varname[1] == 'F' || varname[1] == 'D') &&
   3574 		strchr("@%?*!<>", varname[0]) != NULL) {
   3575 	    /*
   3576 	     * Well, it's local -- go look for it.
   3577 	     */
   3578 	    char name[] = {varname[0], '\0' };
   3579 	    v = VarFind(name, ctxt, 0);
   3580 
   3581 	    if (v != NULL) {
   3582 		if (varname[1] == 'D') {
   3583 		    extramodifiers = "H:";
   3584 		} else { /* F */
   3585 		    extramodifiers = "T:";
   3586 		}
   3587 	    }
   3588 	}
   3589 
   3590 	if (v == NULL) {
   3591 	    dynamic = VarIsDynamic(ctxt, varname, namelen);
   3592 
   3593 	    if (!haveModifier) {
   3594 		/*
   3595 		 * No modifiers -- have specification length so we can return
   3596 		 * now.
   3597 		 */
   3598 		*lengthPtr = tstr - str + 1;
   3599 		if (dynamic) {
   3600 		    char *pstr = bmake_strndup(str, *lengthPtr);
   3601 		    *freePtr = pstr;
   3602 		    Buf_Destroy(&namebuf, TRUE);
   3603 		    return pstr;
   3604 		} else {
   3605 		    Buf_Destroy(&namebuf, TRUE);
   3606 		    return (eflags & VARE_UNDEFERR) ? var_Error : varNoError;
   3607 		}
   3608 	    } else {
   3609 		/*
   3610 		 * Still need to get to the end of the variable specification,
   3611 		 * so kludge up a Var structure for the modifications
   3612 		 */
   3613 		v = bmake_malloc(sizeof(Var));
   3614 		v->name = varname;
   3615 		Buf_Init(&v->val, 1);
   3616 		v->flags = VAR_JUNK;
   3617 		Buf_Destroy(&namebuf, FALSE);
   3618 	    }
   3619 	} else
   3620 	    Buf_Destroy(&namebuf, TRUE);
   3621     }
   3622 
   3623     if (v->flags & VAR_IN_USE) {
   3624 	Fatal("Variable %s is recursive.", v->name);
   3625 	/*NOTREACHED*/
   3626     } else {
   3627 	v->flags |= VAR_IN_USE;
   3628     }
   3629     /*
   3630      * Before doing any modification, we have to make sure the value
   3631      * has been fully expanded. If it looks like recursion might be
   3632      * necessary (there's a dollar sign somewhere in the variable's value)
   3633      * we just call Var_Subst to do any other substitutions that are
   3634      * necessary. Note that the value returned by Var_Subst will have
   3635      * been dynamically-allocated, so it will need freeing when we
   3636      * return.
   3637      */
   3638     nstr = Buf_GetAll(&v->val, NULL);
   3639     if (strchr(nstr, '$') != NULL && (eflags & VARE_WANTRES) != 0) {
   3640 	nstr = Var_Subst(NULL, nstr, ctxt, eflags);
   3641 	*freePtr = nstr;
   3642     }
   3643 
   3644     v->flags &= ~VAR_IN_USE;
   3645 
   3646     if (nstr != NULL && (haveModifier || extramodifiers != NULL)) {
   3647 	void *extraFree;
   3648 	int used;
   3649 
   3650 	extraFree = NULL;
   3651 	if (extramodifiers != NULL) {
   3652 	    nstr = ApplyModifiers(nstr, extramodifiers, '(', ')',
   3653 				  v, ctxt, eflags, &used, &extraFree);
   3654 	}
   3655 
   3656 	if (haveModifier) {
   3657 	    /* Skip initial colon. */
   3658 	    tstr++;
   3659 
   3660 	    nstr = ApplyModifiers(nstr, tstr, startc, endc,
   3661 				  v, ctxt, eflags, &used, freePtr);
   3662 	    tstr += used;
   3663 	    free(extraFree);
   3664 	} else {
   3665 	    *freePtr = extraFree;
   3666 	}
   3667     }
   3668     *lengthPtr = tstr - str + (*tstr ? 1 : 0);
   3669 
   3670     if (v->flags & VAR_FROM_ENV) {
   3671 	Boolean destroy = FALSE;
   3672 
   3673 	if (nstr != Buf_GetAll(&v->val, NULL)) {
   3674 	    destroy = TRUE;
   3675 	} else {
   3676 	    /*
   3677 	     * Returning the value unmodified, so tell the caller to free
   3678 	     * the thing.
   3679 	     */
   3680 	    *freePtr = nstr;
   3681 	}
   3682 	VarFreeEnv(v, destroy);
   3683     } else if (v->flags & VAR_JUNK) {
   3684 	/*
   3685 	 * Perform any free'ing needed and set *freePtr to NULL so the caller
   3686 	 * doesn't try to free a static pointer.
   3687 	 * If VAR_KEEP is also set then we want to keep str(?) as is.
   3688 	 */
   3689 	if (!(v->flags & VAR_KEEP)) {
   3690 	    if (*freePtr) {
   3691 		free(nstr);
   3692 		*freePtr = NULL;
   3693 	    }
   3694 	    if (dynamic) {
   3695 		nstr = bmake_strndup(str, *lengthPtr);
   3696 		*freePtr = nstr;
   3697 	    } else {
   3698 		nstr = (eflags & VARE_UNDEFERR) ? var_Error : varNoError;
   3699 	    }
   3700 	}
   3701 	if (nstr != Buf_GetAll(&v->val, NULL))
   3702 	    Buf_Destroy(&v->val, TRUE);
   3703 	free(v->name);
   3704 	free(v);
   3705     }
   3706     return nstr;
   3707 }
   3708 
   3709 /*-
   3710  *-----------------------------------------------------------------------
   3711  * Var_Subst  --
   3712  *	Substitute for all variables in the given string in the given context.
   3713  *	If eflags & VARE_UNDEFERR, Parse_Error will be called when an undefined
   3714  *	variable is encountered.
   3715  *
   3716  * Input:
   3717  *	var		Named variable || NULL for all
   3718  *	str		the string which to substitute
   3719  *	ctxt		the context wherein to find variables
   3720  *	eflags		VARE_UNDEFERR	if undefineds are an error
   3721  *			VARE_WANTRES	if we actually want the result
   3722  *			VARE_ASSIGN	if we are in a := assignment
   3723  *
   3724  * Results:
   3725  *	The resulting string.
   3726  *
   3727  * Side Effects:
   3728  *	None.
   3729  *-----------------------------------------------------------------------
   3730  */
   3731 char *
   3732 Var_Subst(const char *var, const char *str, GNode *ctxt, VarEvalFlags eflags)
   3733 {
   3734     Buffer	buf;		/* Buffer for forming things */
   3735     const char	*val;		/* Value to substitute for a variable */
   3736     int		length;		/* Length of the variable invocation */
   3737     Boolean	trailingBslash;	/* variable ends in \ */
   3738     void	*freeIt = NULL;	/* Set if it should be freed */
   3739     static Boolean errorReported; /* Set true if an error has already
   3740 				 * been reported to prevent a plethora
   3741 				 * of messages when recursing */
   3742 
   3743     Buf_Init(&buf, 0);
   3744     errorReported = FALSE;
   3745     trailingBslash = FALSE;
   3746 
   3747     while (*str) {
   3748 	if (*str == '\n' && trailingBslash)
   3749 	    Buf_AddByte(&buf, ' ');
   3750 	if (var == NULL && (*str == '$') && (str[1] == '$')) {
   3751 	    /*
   3752 	     * A dollar sign may be escaped either with another dollar sign.
   3753 	     * In such a case, we skip over the escape character and store the
   3754 	     * dollar sign into the buffer directly.
   3755 	     */
   3756 	    if (save_dollars && (eflags & VARE_ASSIGN))
   3757 		Buf_AddByte(&buf, *str);
   3758 	    str++;
   3759 	    Buf_AddByte(&buf, *str);
   3760 	    str++;
   3761 	} else if (*str != '$') {
   3762 	    /*
   3763 	     * Skip as many characters as possible -- either to the end of
   3764 	     * the string or to the next dollar sign (variable invocation).
   3765 	     */
   3766 	    const char *cp;
   3767 
   3768 	    for (cp = str++; *str != '$' && *str != '\0'; str++)
   3769 		continue;
   3770 	    Buf_AddBytesBetween(&buf, cp, str);
   3771 	} else {
   3772 	    if (var != NULL) {
   3773 		int expand;
   3774 		for (;;) {
   3775 		    if (str[1] == '\0') {
   3776 			/* A trailing $ is kind of a special case */
   3777 			Buf_AddByte(&buf, str[0]);
   3778 			str++;
   3779 			expand = FALSE;
   3780 		    } else if (str[1] != PROPEN && str[1] != BROPEN) {
   3781 			if (str[1] != *var || strlen(var) > 1) {
   3782 			    Buf_AddBytes(&buf, 2, str);
   3783 			    str += 2;
   3784 			    expand = FALSE;
   3785 			} else
   3786 			    expand = TRUE;
   3787 			break;
   3788 		    } else {
   3789 			const char *p;
   3790 
   3791 			/* Scan up to the end of the variable name. */
   3792 			for (p = &str[2]; *p &&
   3793 			     *p != ':' && *p != PRCLOSE && *p != BRCLOSE; p++)
   3794 			    if (*p == '$')
   3795 				break;
   3796 			/*
   3797 			 * A variable inside the variable. We cannot expand
   3798 			 * the external variable yet, so we try again with
   3799 			 * the nested one
   3800 			 */
   3801 			if (*p == '$') {
   3802 			    Buf_AddBytesBetween(&buf, str, p);
   3803 			    str = p;
   3804 			    continue;
   3805 			}
   3806 
   3807 			if (strncmp(var, str + 2, p - str - 2) != 0 ||
   3808 			    var[p - str - 2] != '\0') {
   3809 			    /*
   3810 			     * Not the variable we want to expand, scan
   3811 			     * until the next variable
   3812 			     */
   3813 			    for (; *p != '$' && *p != '\0'; p++)
   3814 				continue;
   3815 			    Buf_AddBytesBetween(&buf, str, p);
   3816 			    str = p;
   3817 			    expand = FALSE;
   3818 			} else
   3819 			    expand = TRUE;
   3820 			break;
   3821 		    }
   3822 		}
   3823 		if (!expand)
   3824 		    continue;
   3825 	    }
   3826 
   3827 	    val = Var_Parse(str, ctxt, eflags, &length, &freeIt);
   3828 
   3829 	    /*
   3830 	     * When we come down here, val should either point to the
   3831 	     * value of this variable, suitably modified, or be NULL.
   3832 	     * Length should be the total length of the potential
   3833 	     * variable invocation (from $ to end character...)
   3834 	     */
   3835 	    if (val == var_Error || val == varNoError) {
   3836 		/*
   3837 		 * If performing old-time variable substitution, skip over
   3838 		 * the variable and continue with the substitution. Otherwise,
   3839 		 * store the dollar sign and advance str so we continue with
   3840 		 * the string...
   3841 		 */
   3842 		if (oldVars) {
   3843 		    str += length;
   3844 		} else if ((eflags & VARE_UNDEFERR) || val == var_Error) {
   3845 		    /*
   3846 		     * If variable is undefined, complain and skip the
   3847 		     * variable. The complaint will stop us from doing anything
   3848 		     * when the file is parsed.
   3849 		     */
   3850 		    if (!errorReported) {
   3851 			Parse_Error(PARSE_FATAL, "Undefined variable \"%.*s\"",
   3852 				    length, str);
   3853 		    }
   3854 		    str += length;
   3855 		    errorReported = TRUE;
   3856 		} else {
   3857 		    Buf_AddByte(&buf, *str);
   3858 		    str += 1;
   3859 		}
   3860 	    } else {
   3861 		/*
   3862 		 * We've now got a variable structure to store in. But first,
   3863 		 * advance the string pointer.
   3864 		 */
   3865 		str += length;
   3866 
   3867 		/*
   3868 		 * Copy all the characters from the variable value straight
   3869 		 * into the new string.
   3870 		 */
   3871 		length = strlen(val);
   3872 		Buf_AddBytes(&buf, length, val);
   3873 		trailingBslash = length > 0 && val[length - 1] == '\\';
   3874 	    }
   3875 	    free(freeIt);
   3876 	    freeIt = NULL;
   3877 	}
   3878     }
   3879 
   3880     return Buf_DestroyCompact(&buf);
   3881 }
   3882 
   3883 /* Initialize the module. */
   3884 void
   3885 Var_Init(void)
   3886 {
   3887     VAR_INTERNAL = Targ_NewGN("Internal");
   3888     VAR_GLOBAL = Targ_NewGN("Global");
   3889     VAR_CMD = Targ_NewGN("Command");
   3890 }
   3891 
   3892 
   3893 void
   3894 Var_End(void)
   3895 {
   3896     Var_Stats();
   3897 }
   3898 
   3899 void
   3900 Var_Stats(void)
   3901 {
   3902     Hash_DebugStats(&VAR_GLOBAL->context, "VAR_GLOBAL");
   3903 }
   3904 
   3905 
   3906 /****************** PRINT DEBUGGING INFO *****************/
   3907 static void
   3908 VarPrintVar(void *vp, void *data MAKE_ATTR_UNUSED)
   3909 {
   3910     Var *v = (Var *)vp;
   3911     fprintf(debug_file, "%-16s = %s\n", v->name, Buf_GetAll(&v->val, NULL));
   3912 }
   3913 
   3914 /*-
   3915  *-----------------------------------------------------------------------
   3916  * Var_Dump --
   3917  *	print all variables in a context
   3918  *-----------------------------------------------------------------------
   3919  */
   3920 void
   3921 Var_Dump(GNode *ctxt)
   3922 {
   3923     Hash_ForEach(&ctxt->context, VarPrintVar, NULL);
   3924 }
   3925