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var.c revision 1.1124
      1  1.1124    rillig /*	$NetBSD: var.c,v 1.1124 2024/06/30 13:01:01 rillig Exp $	*/
      2    1.11  christos 
      3     1.1       cgd /*
      4    1.15  christos  * Copyright (c) 1988, 1989, 1990, 1993
      5    1.15  christos  *	The Regents of the University of California.  All rights reserved.
      6    1.80       agc  *
      7    1.80       agc  * This code is derived from software contributed to Berkeley by
      8    1.80       agc  * Adam de Boor.
      9    1.80       agc  *
     10    1.80       agc  * Redistribution and use in source and binary forms, with or without
     11    1.80       agc  * modification, are permitted provided that the following conditions
     12    1.80       agc  * are met:
     13    1.80       agc  * 1. Redistributions of source code must retain the above copyright
     14    1.80       agc  *    notice, this list of conditions and the following disclaimer.
     15    1.80       agc  * 2. Redistributions in binary form must reproduce the above copyright
     16    1.80       agc  *    notice, this list of conditions and the following disclaimer in the
     17    1.80       agc  *    documentation and/or other materials provided with the distribution.
     18    1.80       agc  * 3. Neither the name of the University nor the names of its contributors
     19    1.80       agc  *    may be used to endorse or promote products derived from this software
     20    1.80       agc  *    without specific prior written permission.
     21    1.80       agc  *
     22    1.80       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23    1.80       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24    1.80       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25    1.80       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26    1.80       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27    1.80       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28    1.80       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29    1.80       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30    1.80       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31    1.80       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32    1.80       agc  * SUCH DAMAGE.
     33    1.80       agc  */
     34    1.80       agc 
     35    1.80       agc /*
     36     1.1       cgd  * Copyright (c) 1989 by Berkeley Softworks
     37     1.1       cgd  * All rights reserved.
     38     1.1       cgd  *
     39     1.1       cgd  * This code is derived from software contributed to Berkeley by
     40     1.1       cgd  * Adam de Boor.
     41     1.1       cgd  *
     42     1.1       cgd  * Redistribution and use in source and binary forms, with or without
     43     1.1       cgd  * modification, are permitted provided that the following conditions
     44     1.1       cgd  * are met:
     45     1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     46     1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     47     1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     48     1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     49     1.1       cgd  *    documentation and/or other materials provided with the distribution.
     50     1.1       cgd  * 3. All advertising materials mentioning features or use of this software
     51     1.1       cgd  *    must display the following acknowledgement:
     52     1.1       cgd  *	This product includes software developed by the University of
     53     1.1       cgd  *	California, Berkeley and its contributors.
     54     1.1       cgd  * 4. Neither the name of the University nor the names of its contributors
     55     1.1       cgd  *    may be used to endorse or promote products derived from this software
     56     1.1       cgd  *    without specific prior written permission.
     57     1.1       cgd  *
     58     1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     59     1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     60     1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     61     1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     62     1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     63     1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     64     1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     65     1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     66     1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     67     1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     68     1.1       cgd  * SUCH DAMAGE.
     69     1.1       cgd  */
     70     1.1       cgd 
     71   1.592    rillig /*
     72   1.592    rillig  * Handling of variables and the expressions formed from them.
     73   1.592    rillig  *
     74   1.592    rillig  * Variables are set using lines of the form VAR=value.  Both the variable
     75   1.592    rillig  * name and the value can contain references to other variables, by using
     76   1.592    rillig  * expressions like ${VAR}, ${VAR:Modifiers}, ${${VARNAME}} or ${VAR:${MODS}}.
     77     1.1       cgd  *
     78     1.1       cgd  * Interface:
     79   1.592    rillig  *	Var_Init	Initialize this module.
     80   1.592    rillig  *
     81   1.592    rillig  *	Var_End		Clean up the module.
     82   1.592    rillig  *
     83   1.798    rillig  *	Var_Set
     84  1.1105    rillig  *	Var_SetExpand	Set the value of the variable, creating it if
     85   1.592    rillig  *			necessary.
     86   1.592    rillig  *
     87   1.794    rillig  *	Var_Append
     88   1.794    rillig  *	Var_AppendExpand
     89   1.794    rillig  *			Append more characters to the variable, creating it if
     90   1.592    rillig  *			necessary. A space is placed between the old value and
     91   1.592    rillig  *			the new one.
     92     1.1       cgd  *
     93   1.796    rillig  *	Var_Exists
     94   1.796    rillig  *	Var_ExistsExpand
     95   1.796    rillig  *			See if a variable exists.
     96     1.1       cgd  *
     97   1.592    rillig  *	Var_Value	Return the unexpanded value of a variable, or NULL if
     98   1.592    rillig  *			the variable is undefined.
     99   1.592    rillig  *
    100  1.1075    rillig  *	Var_Subst	Substitute all expressions in a string.
    101   1.592    rillig  *
    102  1.1075    rillig  *	Var_Parse	Parse an expression such as ${VAR:Mpattern}.
    103     1.1       cgd  *
    104  1.1105    rillig  *	Var_Delete	Delete a variable.
    105     1.1       cgd  *
    106   1.725    rillig  *	Var_ReexportVars
    107   1.725    rillig  *			Export some or even all variables to the environment
    108   1.592    rillig  *			of this process and its child processes.
    109     1.1       cgd  *
    110   1.592    rillig  *	Var_Export	Export the variable to the environment of this process
    111   1.592    rillig  *			and its child processes.
    112     1.1       cgd  *
    113   1.592    rillig  *	Var_UnExport	Don't export the variable anymore.
    114     1.1       cgd  *
    115     1.1       cgd  * Debugging:
    116   1.592    rillig  *	Var_Stats	Print out hashing statistics if in -dh mode.
    117   1.592    rillig  *
    118   1.802    rillig  *	Var_Dump	Print out all variables defined in the given scope.
    119     1.1       cgd  */
    120     1.1       cgd 
    121   1.630    rillig #include <sys/stat.h>
    122   1.630    rillig #include <sys/types.h>
    123   1.630    rillig #include <regex.h>
    124   1.631    rillig #include <errno.h>
    125   1.630    rillig #include <inttypes.h>
    126   1.630    rillig #include <limits.h>
    127   1.630    rillig #include <time.h>
    128   1.630    rillig 
    129   1.630    rillig #include "make.h"
    130   1.630    rillig #include "dir.h"
    131   1.630    rillig #include "job.h"
    132   1.630    rillig #include "metachar.h"
    133     1.1       cgd 
    134   1.512    rillig /*	"@(#)var.c	8.3 (Berkeley) 3/19/94" */
    135  1.1124    rillig MAKE_RCSID("$NetBSD: var.c,v 1.1124 2024/06/30 13:01:01 rillig Exp $");
    136   1.228    rillig 
    137   1.778    rillig /*
    138   1.778    rillig  * Variables are defined using one of the VAR=value assignments.  Their
    139   1.570    rillig  * value can be queried by expressions such as $V, ${VAR}, or with modifiers
    140   1.570    rillig  * such as ${VAR:S,from,to,g:Q}.
    141   1.570    rillig  *
    142   1.802    rillig  * There are 3 kinds of variables: scope variables, environment variables,
    143   1.570    rillig  * undefined variables.
    144   1.570    rillig  *
    145  1.1105    rillig  * Scope variables are stored in GNode.vars.  The only way to undefine
    146   1.802    rillig  * a scope variable is using the .undef directive.  In particular, it must
    147   1.570    rillig  * not be possible to undefine a variable during the evaluation of an
    148   1.996    rillig  * expression, or Var.name might point nowhere.  (There is another,
    149   1.996    rillig  * unintended way to undefine a scope variable, see varmod-loop-delete.mk.)
    150   1.570    rillig  *
    151   1.977    rillig  * Environment variables are short-lived.  They are returned by VarFind, and
    152   1.977    rillig  * after using them, they must be freed using VarFreeShortLived.
    153   1.570    rillig  *
    154  1.1075    rillig  * Undefined variables occur during evaluation of expressions such
    155   1.570    rillig  * as ${UNDEF:Ufallback} in Var_Parse and ApplyModifiers.
    156   1.570    rillig  */
    157     1.1       cgd typedef struct Var {
    158   1.703    rillig 	/*
    159   1.703    rillig 	 * The name of the variable, once set, doesn't change anymore.
    160   1.802    rillig 	 * For scope variables, it aliases the corresponding HashEntry name.
    161   1.703    rillig 	 * For environment and undefined variables, it is allocated.
    162   1.703    rillig 	 */
    163   1.711    rillig 	FStr name;
    164   1.570    rillig 
    165   1.703    rillig 	/* The unexpanded value of the variable. */
    166   1.703    rillig 	Buffer val;
    167   1.902    rillig 
    168   1.902    rillig 	/* The variable came from the command line. */
    169   1.987    rillig 	bool fromCmd:1;
    170   1.902    rillig 
    171   1.902    rillig 	/*
    172   1.978    rillig 	 * The variable is short-lived.
    173   1.978    rillig 	 * These variables are not registered in any GNode, therefore they
    174   1.978    rillig 	 * must be freed after use.
    175   1.978    rillig 	 */
    176   1.987    rillig 	bool shortLived:1;
    177   1.978    rillig 
    178   1.978    rillig 	/*
    179   1.902    rillig 	 * The variable comes from the environment.
    180  1.1105    rillig 	 * Appending to its value depends on the scope, see var-op-append.mk.
    181   1.902    rillig 	 */
    182   1.987    rillig 	bool fromEnvironment:1;
    183   1.902    rillig 
    184   1.902    rillig 	/*
    185   1.902    rillig 	 * The variable value cannot be changed anymore, and the variable
    186   1.902    rillig 	 * cannot be deleted.  Any attempts to do so are silently ignored,
    187   1.902    rillig 	 * they are logged with -dv though.
    188  1.1038       sjg 	 * Use .[NO]READONLY: to adjust.
    189   1.902    rillig 	 *
    190   1.902    rillig 	 * See VAR_SET_READONLY.
    191   1.902    rillig 	 */
    192   1.987    rillig 	bool readOnly:1;
    193   1.902    rillig 
    194   1.902    rillig 	/*
    195  1.1121    rillig 	 * The variable is read-only and immune to the .NOREADONLY special
    196  1.1121    rillig 	 * target.  Any attempt to modify it results in an error.
    197  1.1121    rillig 	 */
    198  1.1121    rillig 	bool readOnlyLoud:1;
    199  1.1121    rillig 
    200  1.1121    rillig 	/*
    201  1.1035    rillig 	 * The variable is currently being accessed by Var_Parse or Var_Subst.
    202  1.1035    rillig 	 * This temporary marker is used to avoid endless recursion.
    203  1.1035    rillig 	 */
    204   1.987    rillig 	bool inUse:1;
    205   1.902    rillig 
    206   1.902    rillig 	/*
    207   1.902    rillig 	 * The variable is exported to the environment, to be used by child
    208   1.902    rillig 	 * processes.
    209   1.902    rillig 	 */
    210   1.987    rillig 	bool exported:1;
    211   1.902    rillig 
    212   1.902    rillig 	/*
    213   1.902    rillig 	 * At the point where this variable was exported, it contained an
    214   1.902    rillig 	 * unresolved reference to another variable.  Before any child
    215  1.1066    rillig 	 * process is started, it needs to be actually exported, resolving
    216  1.1066    rillig 	 * the referenced variable just in time.
    217   1.902    rillig 	 */
    218   1.987    rillig 	bool reexport:1;
    219   1.417    rillig } Var;
    220     1.1       cgd 
    221   1.710    rillig /*
    222   1.830    rillig  * Exporting variables is expensive and may leak memory, so skip it if we
    223   1.830    rillig  * can.
    224   1.710    rillig  */
    225   1.710    rillig typedef enum VarExportedMode {
    226   1.710    rillig 	VAR_EXPORTED_NONE,
    227   1.710    rillig 	VAR_EXPORTED_SOME,
    228   1.710    rillig 	VAR_EXPORTED_ALL
    229   1.710    rillig } VarExportedMode;
    230   1.710    rillig 
    231   1.713    rillig typedef enum UnexportWhat {
    232   1.830    rillig 	/* Unexport the variables given by name. */
    233   1.713    rillig 	UNEXPORT_NAMED,
    234   1.830    rillig 	/*
    235   1.830    rillig 	 * Unexport all globals previously exported, but keep the environment
    236   1.830    rillig 	 * inherited from the parent.
    237   1.830    rillig 	 */
    238   1.713    rillig 	UNEXPORT_ALL,
    239   1.830    rillig 	/*
    240   1.830    rillig 	 * Unexport all globals previously exported and clear the environment
    241   1.830    rillig 	 * inherited from the parent.
    242   1.830    rillig 	 */
    243   1.713    rillig 	UNEXPORT_ENV
    244   1.713    rillig } UnexportWhat;
    245   1.713    rillig 
    246   1.261    rillig /* Flags for pattern matching in the :S and :C modifiers */
    247   1.927    rillig typedef struct PatternFlags {
    248   1.987    rillig 	bool subGlobal:1;	/* 'g': replace as often as possible */
    249   1.987    rillig 	bool subOnce:1;		/* '1': replace only once */
    250   1.987    rillig 	bool anchorStart:1;	/* '^': match only at start of word */
    251   1.987    rillig 	bool anchorEnd:1;	/* '$': match only at end of word */
    252   1.927    rillig } PatternFlags;
    253    1.16  christos 
    254   1.830    rillig /* SepBuf builds a string from words interleaved with separators. */
    255   1.710    rillig typedef struct SepBuf {
    256   1.710    rillig 	Buffer buf;
    257   1.895    rillig 	bool needSep;
    258   1.710    rillig 	/* Usually ' ', but see the ':ts' modifier. */
    259   1.710    rillig 	char sep;
    260   1.710    rillig } SepBuf;
    261   1.710    rillig 
    262  1.1120    rillig typedef enum {
    263  1.1120    rillig 	VSK_TARGET,
    264  1.1120    rillig 	VSK_VARNAME,
    265  1.1124    rillig 	VSK_COND,
    266  1.1124    rillig 	VSK_COND_THEN,
    267  1.1124    rillig 	VSK_COND_ELSE,
    268  1.1120    rillig 	VSK_EXPR
    269  1.1120    rillig } EvalStackElementKind;
    270  1.1120    rillig 
    271  1.1102    rillig typedef struct {
    272  1.1120    rillig 	EvalStackElementKind kind;
    273  1.1120    rillig 	const char *str;
    274  1.1102    rillig } EvalStackElement;
    275  1.1102    rillig 
    276  1.1102    rillig typedef struct {
    277  1.1102    rillig 	EvalStackElement *elems;
    278  1.1102    rillig 	size_t len;
    279  1.1102    rillig 	size_t cap;
    280  1.1102    rillig 	Buffer details;
    281  1.1102    rillig } EvalStack;
    282   1.710    rillig 
    283  1.1088    rillig /* Whether we have replaced the original environ (which we cannot free). */
    284   1.710    rillig char **savedEnv = NULL;
    285   1.710    rillig 
    286   1.778    rillig /*
    287   1.778    rillig  * Special return value for Var_Parse, indicating a parse error.  It may be
    288   1.710    rillig  * caused by an undefined variable, a syntax error in a modifier or
    289   1.778    rillig  * something entirely different.
    290   1.778    rillig  */
    291   1.710    rillig char var_Error[] = "";
    292   1.710    rillig 
    293   1.778    rillig /*
    294   1.778    rillig  * Special return value for Var_Parse, indicating an undefined variable in
    295  1.1119    rillig  * a case where VARE_EVAL_DEFINED is not set.  This undefined variable is
    296   1.710    rillig  * typically a dynamic variable such as ${.TARGET}, whose expansion needs to
    297   1.778    rillig  * be deferred until it is defined in an actual target.
    298   1.830    rillig  *
    299  1.1119    rillig  * See VARE_EVAL_KEEP_UNDEFINED.
    300   1.778    rillig  */
    301   1.710    rillig static char varUndefined[] = "";
    302   1.710    rillig 
    303   1.710    rillig /*
    304   1.710    rillig  * Traditionally this make consumed $$ during := like any other expansion.
    305   1.710    rillig  * Other make's do not, and this make follows straight since 2016-01-09.
    306   1.710    rillig  *
    307   1.895    rillig  * This knob allows controlling the behavior:
    308   1.895    rillig  *	false to consume $$ during := assignment.
    309   1.895    rillig  *	true to preserve $$ during := assignment.
    310   1.710    rillig  */
    311   1.710    rillig #define MAKE_SAVE_DOLLARS ".MAKE.SAVE_DOLLARS"
    312   1.895    rillig static bool save_dollars = true;
    313   1.710    rillig 
    314   1.710    rillig /*
    315   1.807    rillig  * A scope collects variable names and their values.
    316   1.807    rillig  *
    317   1.807    rillig  * The main scope is SCOPE_GLOBAL, which contains the variables that are set
    318   1.807    rillig  * in the makefiles.  SCOPE_INTERNAL acts as a fallback for SCOPE_GLOBAL and
    319   1.807    rillig  * contains some internal make variables.  These internal variables can thus
    320   1.807    rillig  * be overridden, they can also be restored by undefining the overriding
    321   1.807    rillig  * variable.
    322   1.807    rillig  *
    323   1.807    rillig  * SCOPE_CMDLINE contains variables from the command line arguments.  These
    324   1.807    rillig  * override variables from SCOPE_GLOBAL.
    325   1.807    rillig  *
    326   1.807    rillig  * There is no scope for environment variables, these are generated on-the-fly
    327  1.1088    rillig  * whenever they are referenced.
    328   1.807    rillig  *
    329   1.807    rillig  * Each target has its own scope, containing the 7 target-local variables
    330  1.1006       sjg  * .TARGET, .ALLSRC, etc.  Variables set on dependency lines also go in
    331  1.1006       sjg  * this scope.
    332   1.807    rillig  */
    333   1.807    rillig 
    334   1.807    rillig GNode *SCOPE_CMDLINE;
    335   1.807    rillig GNode *SCOPE_GLOBAL;
    336   1.807    rillig GNode *SCOPE_INTERNAL;
    337   1.710    rillig 
    338   1.710    rillig static VarExportedMode var_exportedVars = VAR_EXPORTED_NONE;
    339   1.710    rillig 
    340   1.951    rillig static const char VarEvalMode_Name[][32] = {
    341  1.1119    rillig 	"parse",
    342  1.1047    rillig 	"parse-balanced",
    343   1.906    rillig 	"eval",
    344   1.906    rillig 	"eval-defined",
    345   1.906    rillig 	"eval-keep-undefined",
    346   1.906    rillig 	"eval-keep-dollar-and-undefined",
    347   1.906    rillig };
    348   1.711    rillig 
    349  1.1102    rillig static EvalStack evalStack;
    350  1.1102    rillig 
    351  1.1102    rillig 
    352  1.1120    rillig static void
    353  1.1120    rillig EvalStack_Push(EvalStackElementKind kind, const char *str)
    354  1.1102    rillig {
    355  1.1102    rillig 	if (evalStack.len >= evalStack.cap) {
    356  1.1102    rillig 		evalStack.cap = 16 + 2 * evalStack.cap;
    357  1.1102    rillig 		evalStack.elems = bmake_realloc(evalStack.elems,
    358  1.1102    rillig 		    evalStack.cap * sizeof(*evalStack.elems));
    359  1.1102    rillig 	}
    360  1.1120    rillig 	evalStack.elems[evalStack.len].kind = kind;
    361  1.1120    rillig 	evalStack.elems[evalStack.len].str = str;
    362  1.1102    rillig 	evalStack.len++;
    363  1.1102    rillig }
    364  1.1102    rillig 
    365  1.1120    rillig static void
    366  1.1102    rillig EvalStack_Pop(void)
    367  1.1102    rillig {
    368  1.1102    rillig 	assert(evalStack.len > 0);
    369  1.1102    rillig 	evalStack.len--;
    370  1.1102    rillig }
    371  1.1102    rillig 
    372  1.1102    rillig const char *
    373  1.1102    rillig EvalStack_Details(void)
    374  1.1102    rillig {
    375  1.1102    rillig 	size_t i;
    376  1.1102    rillig 	Buffer *buf = &evalStack.details;
    377  1.1102    rillig 
    378  1.1102    rillig 
    379  1.1102    rillig 	buf->len = 0;
    380  1.1102    rillig 	for (i = 0; i < evalStack.len; i++) {
    381  1.1124    rillig 		static const char descr[][42] = {
    382  1.1124    rillig 			"in target",
    383  1.1124    rillig 			"while evaluating variable",
    384  1.1124    rillig 			"while evaluating condition",
    385  1.1124    rillig 			"while evaluating then-branch of condition",
    386  1.1124    rillig 			"while evaluating else-branch of condition",
    387  1.1124    rillig 			"while evaluating",
    388  1.1124    rillig 		};
    389  1.1102    rillig 		EvalStackElement *elem = evalStack.elems + i;
    390  1.1124    rillig 		Buf_AddStr(buf, descr[elem->kind]);
    391  1.1124    rillig 		Buf_AddStr(buf, " \"");
    392  1.1120    rillig 		Buf_AddStr(buf, elem->str);
    393  1.1120    rillig 		Buf_AddStr(buf, "\": ");
    394  1.1102    rillig 	}
    395  1.1102    rillig 	return buf->len > 0 ? buf->data : "";
    396  1.1102    rillig }
    397   1.904    rillig 
    398   1.569    rillig static Var *
    399   1.978    rillig VarNew(FStr name, const char *value,
    400   1.978    rillig        bool shortLived, bool fromEnvironment, bool readOnly)
    401   1.569    rillig {
    402   1.703    rillig 	size_t value_len = strlen(value);
    403   1.703    rillig 	Var *var = bmake_malloc(sizeof *var);
    404   1.744    rillig 	var->name = name;
    405   1.703    rillig 	Buf_InitSize(&var->val, value_len + 1);
    406   1.703    rillig 	Buf_AddBytes(&var->val, value, value_len);
    407   1.902    rillig 	var->fromCmd = false;
    408   1.978    rillig 	var->shortLived = shortLived;
    409   1.978    rillig 	var->fromEnvironment = fromEnvironment;
    410   1.902    rillig 	var->readOnly = readOnly;
    411  1.1121    rillig 	var->readOnlyLoud = false;
    412   1.902    rillig 	var->inUse = false;
    413   1.902    rillig 	var->exported = false;
    414   1.902    rillig 	var->reexport = false;
    415   1.703    rillig 	return var;
    416   1.569    rillig }
    417   1.569    rillig 
    418   1.916    rillig static Substring
    419   1.916    rillig CanonicalVarname(Substring name)
    420     1.1       cgd {
    421   1.916    rillig 
    422   1.916    rillig 	if (!(Substring_Length(name) > 0 && name.start[0] == '.'))
    423   1.916    rillig 		return name;
    424   1.916    rillig 
    425   1.916    rillig 	if (Substring_Equals(name, ".ALLSRC"))
    426   1.916    rillig 		return Substring_InitStr(ALLSRC);
    427   1.916    rillig 	if (Substring_Equals(name, ".ARCHIVE"))
    428   1.916    rillig 		return Substring_InitStr(ARCHIVE);
    429   1.916    rillig 	if (Substring_Equals(name, ".IMPSRC"))
    430   1.916    rillig 		return Substring_InitStr(IMPSRC);
    431   1.916    rillig 	if (Substring_Equals(name, ".MEMBER"))
    432   1.916    rillig 		return Substring_InitStr(MEMBER);
    433   1.916    rillig 	if (Substring_Equals(name, ".OODATE"))
    434   1.916    rillig 		return Substring_InitStr(OODATE);
    435   1.916    rillig 	if (Substring_Equals(name, ".PREFIX"))
    436   1.916    rillig 		return Substring_InitStr(PREFIX);
    437   1.916    rillig 	if (Substring_Equals(name, ".TARGET"))
    438   1.916    rillig 		return Substring_InitStr(TARGET);
    439   1.916    rillig 
    440  1.1079    rillig 	/* GNU make has an additional alias $^ == ${.ALLSRC}. */
    441  1.1079    rillig 
    442   1.916    rillig 	if (Substring_Equals(name, ".SHELL") && shellPath == NULL)
    443   1.916    rillig 		Shell_Init();
    444   1.242    rillig 
    445   1.703    rillig 	return name;
    446   1.580    rillig }
    447   1.580    rillig 
    448   1.587    rillig static Var *
    449   1.916    rillig GNode_FindVar(GNode *scope, Substring varname, unsigned int hash)
    450   1.587    rillig {
    451   1.916    rillig 	return HashTable_FindValueBySubstringHash(&scope->vars, varname, hash);
    452   1.587    rillig }
    453   1.587    rillig 
    454   1.778    rillig /*
    455   1.802    rillig  * Find the variable in the scope, and maybe in other scopes as well.
    456   1.580    rillig  *
    457   1.580    rillig  * Input:
    458   1.607    rillig  *	name		name to find, is not expanded any further
    459   1.802    rillig  *	scope		scope in which to look first
    460   1.895    rillig  *	elsewhere	true to look in other scopes as well
    461   1.580    rillig  *
    462   1.580    rillig  * Results:
    463   1.605    rillig  *	The found variable, or NULL if the variable does not exist.
    464   1.977    rillig  *	If the variable is short-lived (such as environment variables), it
    465   1.977    rillig  *	must be freed using VarFreeShortLived after use.
    466   1.580    rillig  */
    467   1.580    rillig static Var *
    468   1.916    rillig VarFindSubstring(Substring name, GNode *scope, bool elsewhere)
    469   1.580    rillig {
    470   1.703    rillig 	Var *var;
    471   1.703    rillig 	unsigned int nameHash;
    472   1.703    rillig 
    473   1.830    rillig 	/* Replace '.TARGET' with '@', likewise for other local variables. */
    474   1.703    rillig 	name = CanonicalVarname(name);
    475   1.916    rillig 	nameHash = Hash_Substring(name);
    476   1.580    rillig 
    477   1.802    rillig 	var = GNode_FindVar(scope, name, nameHash);
    478   1.703    rillig 	if (!elsewhere)
    479   1.703    rillig 		return var;
    480   1.160  christos 
    481   1.802    rillig 	if (var == NULL && scope != SCOPE_CMDLINE)
    482   1.801    rillig 		var = GNode_FindVar(SCOPE_CMDLINE, name, nameHash);
    483     1.1       cgd 
    484   1.802    rillig 	if (!opts.checkEnvFirst && var == NULL && scope != SCOPE_GLOBAL) {
    485   1.801    rillig 		var = GNode_FindVar(SCOPE_GLOBAL, name, nameHash);
    486   1.802    rillig 		if (var == NULL && scope != SCOPE_INTERNAL) {
    487   1.801    rillig 			/* SCOPE_INTERNAL is subordinate to SCOPE_GLOBAL */
    488   1.801    rillig 			var = GNode_FindVar(SCOPE_INTERNAL, name, nameHash);
    489   1.703    rillig 		}
    490   1.184       sjg 	}
    491   1.399    rillig 
    492   1.703    rillig 	if (var == NULL) {
    493  1.1105    rillig 		FStr envName = Substring_Str(name);
    494  1.1105    rillig 		const char *envValue = getenv(envName.str);
    495   1.916    rillig 		if (envValue != NULL)
    496   1.978    rillig 			return VarNew(envName, envValue, true, true, false);
    497   1.916    rillig 		FStr_Done(&envName);
    498     1.1       cgd 
    499   1.802    rillig 		if (opts.checkEnvFirst && scope != SCOPE_GLOBAL) {
    500   1.801    rillig 			var = GNode_FindVar(SCOPE_GLOBAL, name, nameHash);
    501   1.802    rillig 			if (var == NULL && scope != SCOPE_INTERNAL)
    502   1.801    rillig 				var = GNode_FindVar(SCOPE_INTERNAL, name,
    503   1.703    rillig 				    nameHash);
    504   1.703    rillig 			return var;
    505   1.703    rillig 		}
    506   1.399    rillig 
    507   1.703    rillig 		return NULL;
    508     1.1       cgd 	}
    509   1.399    rillig 
    510   1.703    rillig 	return var;
    511     1.1       cgd }
    512     1.1       cgd 
    513   1.916    rillig static Var *
    514   1.916    rillig VarFind(const char *name, GNode *scope, bool elsewhere)
    515   1.916    rillig {
    516   1.916    rillig 	return VarFindSubstring(Substring_InitStr(name), scope, elsewhere);
    517   1.916    rillig }
    518   1.916    rillig 
    519   1.977    rillig /* If the variable is short-lived, free it, including its value. */
    520   1.837    rillig static void
    521   1.977    rillig VarFreeShortLived(Var *v)
    522   1.105  christos {
    523   1.978    rillig 	if (!v->shortLived)
    524   1.837    rillig 		return;
    525   1.605    rillig 
    526   1.711    rillig 	FStr_Done(&v->name);
    527   1.837    rillig 	Buf_Done(&v->val);
    528   1.703    rillig 	free(v);
    529   1.105  christos }
    530   1.105  christos 
    531  1.1018    rillig static const char *
    532  1.1018    rillig ValueDescription(const char *value)
    533  1.1018    rillig {
    534  1.1018    rillig 	if (value[0] == '\0')
    535  1.1018    rillig 		return "# (empty)";
    536  1.1019    rillig 	if (ch_isspace(value[strlen(value) - 1]))
    537  1.1018    rillig 		return "# (ends with space)";
    538  1.1018    rillig 	return "";
    539  1.1018    rillig }
    540  1.1018    rillig 
    541   1.831    rillig /* Add a new variable of the given name and value to the given scope. */
    542   1.833    rillig static Var *
    543   1.831    rillig VarAdd(const char *name, const char *value, GNode *scope, VarSetFlags flags)
    544     1.1       cgd {
    545   1.802    rillig 	HashEntry *he = HashTable_CreateEntry(&scope->vars, name, NULL);
    546   1.831    rillig 	Var *v = VarNew(FStr_InitRefer(/* aliased to */ he->key), value,
    547   1.978    rillig 	    false, false, (flags & VAR_SET_READONLY) != 0);
    548   1.703    rillig 	HashEntry_Set(he, v);
    549  1.1018    rillig 	DEBUG4(VAR, "%s: %s = %s%s\n",
    550  1.1018    rillig 	    scope->name, name, value, ValueDescription(value));
    551   1.833    rillig 	return v;
    552     1.1       cgd }
    553     1.1       cgd 
    554   1.736    rillig /*
    555   1.802    rillig  * Remove a variable from a scope, freeing all related memory as well.
    556   1.736    rillig  * The variable name is kept as-is, it is not expanded.
    557   1.736    rillig  */
    558   1.736    rillig void
    559   1.805    rillig Var_Delete(GNode *scope, const char *varname)
    560   1.736    rillig {
    561   1.802    rillig 	HashEntry *he = HashTable_FindEntry(&scope->vars, varname);
    562   1.736    rillig 	Var *v;
    563   1.736    rillig 
    564   1.736    rillig 	if (he == NULL) {
    565  1.1085    rillig 		DEBUG2(VAR, "%s: ignoring delete '%s' as it is not found\n",
    566  1.1017    rillig 		    scope->name, varname);
    567   1.736    rillig 		return;
    568   1.736    rillig 	}
    569   1.736    rillig 
    570   1.831    rillig 	v = he->value;
    571  1.1121    rillig 	if (v->readOnlyLoud) {
    572  1.1121    rillig 		Parse_Error(PARSE_FATAL,
    573  1.1121    rillig 		    "Cannot delete \"%s\" as it is read-only",
    574  1.1121    rillig 		    v->name.str);
    575  1.1121    rillig 		return;
    576  1.1121    rillig 	}
    577  1.1056       sjg 	if (v->readOnly) {
    578  1.1085    rillig 		DEBUG2(VAR, "%s: ignoring delete '%s' as it is read-only\n",
    579  1.1056       sjg 		    scope->name, varname);
    580  1.1056       sjg 		return;
    581  1.1056       sjg 	}
    582   1.963    rillig 	if (v->inUse) {
    583   1.963    rillig 		Parse_Error(PARSE_FATAL,
    584   1.969    rillig 		    "Cannot delete variable \"%s\" while it is used",
    585   1.963    rillig 		    v->name.str);
    586   1.963    rillig 		return;
    587   1.963    rillig 	}
    588  1.1017    rillig 
    589  1.1085    rillig 	DEBUG2(VAR, "%s: delete %s\n", scope->name, varname);
    590   1.902    rillig 	if (v->exported)
    591   1.736    rillig 		unsetenv(v->name.str);
    592  1.1045    rillig 	if (strcmp(v->name.str, ".MAKE.EXPORTED") == 0)
    593   1.736    rillig 		var_exportedVars = VAR_EXPORTED_NONE;
    594  1.1017    rillig 
    595   1.736    rillig 	assert(v->name.freeIt == NULL);
    596   1.802    rillig 	HashTable_DeleteEntry(&scope->vars, he);
    597   1.784    rillig 	Buf_Done(&v->val);
    598   1.736    rillig 	free(v);
    599   1.736    rillig }
    600   1.736    rillig 
    601  1.1111    rillig #ifdef CLEANUP
    602  1.1111    rillig void
    603  1.1111    rillig Var_DeleteAll(GNode *scope)
    604  1.1111    rillig {
    605  1.1113    rillig 	HashIter hi;
    606  1.1113    rillig 	HashIter_Init(&hi, &scope->vars);
    607  1.1114    rillig 	while (HashIter_Next(&hi)) {
    608  1.1113    rillig 		Var *v = hi.entry->value;
    609  1.1113    rillig 		Buf_Done(&v->val);
    610  1.1113    rillig 		free(v);
    611  1.1111    rillig 	}
    612  1.1111    rillig }
    613  1.1111    rillig #endif
    614  1.1111    rillig 
    615   1.778    rillig /*
    616   1.762    rillig  * Undefine one or more variables from the global scope.
    617   1.762    rillig  * The argument is expanded exactly once and then split into words.
    618   1.737    rillig  */
    619   1.735    rillig void
    620   1.762    rillig Var_Undef(const char *arg)
    621   1.735    rillig {
    622   1.762    rillig 	char *expanded;
    623   1.762    rillig 	Words varnames;
    624   1.762    rillig 	size_t i;
    625   1.762    rillig 
    626   1.762    rillig 	if (arg[0] == '\0') {
    627   1.762    rillig 		Parse_Error(PARSE_FATAL,
    628   1.762    rillig 		    "The .undef directive requires an argument");
    629   1.762    rillig 		return;
    630   1.762    rillig 	}
    631   1.735    rillig 
    632  1.1119    rillig 	expanded = Var_Subst(arg, SCOPE_GLOBAL, VARE_EVAL);
    633  1.1043    rillig 	if (expanded == var_Error) {
    634  1.1043    rillig 		/* TODO: Make this part of the code reachable. */
    635   1.737    rillig 		Parse_Error(PARSE_FATAL,
    636   1.762    rillig 		    "Error in variable names to be undefined");
    637   1.762    rillig 		return;
    638   1.762    rillig 	}
    639   1.762    rillig 
    640   1.895    rillig 	varnames = Str_Words(expanded, false);
    641   1.762    rillig 	if (varnames.len == 1 && varnames.words[0][0] == '\0')
    642   1.762    rillig 		varnames.len = 0;
    643   1.762    rillig 
    644   1.762    rillig 	for (i = 0; i < varnames.len; i++) {
    645   1.762    rillig 		const char *varname = varnames.words[i];
    646   1.804    rillig 		Global_Delete(varname);
    647   1.737    rillig 	}
    648   1.735    rillig 
    649   1.762    rillig 	Words_Free(varnames);
    650   1.763    rillig 	free(expanded);
    651   1.735    rillig }
    652   1.735    rillig 
    653   1.895    rillig static bool
    654   1.598    rillig MayExport(const char *name)
    655   1.118       sjg {
    656   1.703    rillig 	if (name[0] == '.')
    657   1.895    rillig 		return false;	/* skip internals */
    658   1.703    rillig 	if (name[0] == '-')
    659   1.895    rillig 		return false;	/* skip misnamed variables */
    660   1.703    rillig 	if (name[1] == '\0') {
    661   1.703    rillig 		/*
    662   1.703    rillig 		 * A single char.
    663   1.802    rillig 		 * If it is one of the variables that should only appear in
    664   1.802    rillig 		 * local scope, skip it, else we can get Var_Subst
    665   1.703    rillig 		 * into a loop.
    666   1.703    rillig 		 */
    667   1.703    rillig 		switch (name[0]) {
    668   1.703    rillig 		case '@':
    669   1.703    rillig 		case '%':
    670   1.703    rillig 		case '*':
    671   1.703    rillig 		case '!':
    672   1.895    rillig 			return false;
    673   1.703    rillig 		}
    674   1.118       sjg 	}
    675   1.895    rillig 	return true;
    676   1.598    rillig }
    677   1.598    rillig 
    678   1.895    rillig static bool
    679  1.1100       sjg ExportVarEnv(Var *v, GNode *scope)
    680   1.776    rillig {
    681   1.776    rillig 	const char *name = v->name.str;
    682   1.777    rillig 	char *val = v->val.data;
    683   1.777    rillig 	char *expr;
    684   1.776    rillig 
    685   1.902    rillig 	if (v->exported && !v->reexport)
    686   1.895    rillig 		return false;	/* nothing to do */
    687   1.776    rillig 
    688   1.777    rillig 	if (strchr(val, '$') == NULL) {
    689   1.902    rillig 		if (!v->exported)
    690   1.776    rillig 			setenv(name, val, 1);
    691   1.895    rillig 		return true;
    692   1.776    rillig 	}
    693   1.776    rillig 
    694  1.1070    rillig 	if (v->inUse)
    695  1.1070    rillig 		return false;	/* see EMPTY_SHELL in directive-export.mk */
    696   1.776    rillig 
    697   1.777    rillig 	/* XXX: name is injected without escaping it */
    698   1.777    rillig 	expr = str_concat3("${", name, "}");
    699  1.1119    rillig 	val = Var_Subst(expr, scope, VARE_EVAL);
    700  1.1100       sjg 	if (scope != SCOPE_GLOBAL) {
    701  1.1101    rillig 		/* we will need to re-export the global version */
    702  1.1100       sjg 		v = VarFind(name, SCOPE_GLOBAL, false);
    703  1.1101    rillig 		if (v != NULL)
    704  1.1100       sjg 			v->exported = false;
    705  1.1100       sjg 	}
    706   1.777    rillig 	/* TODO: handle errors */
    707   1.777    rillig 	setenv(name, val, 1);
    708   1.777    rillig 	free(val);
    709   1.777    rillig 	free(expr);
    710   1.895    rillig 	return true;
    711   1.776    rillig }
    712   1.776    rillig 
    713   1.895    rillig static bool
    714   1.776    rillig ExportVarPlain(Var *v)
    715   1.598    rillig {
    716   1.777    rillig 	if (strchr(v->val.data, '$') == NULL) {
    717   1.777    rillig 		setenv(v->name.str, v->val.data, 1);
    718   1.902    rillig 		v->exported = true;
    719   1.902    rillig 		v->reexport = false;
    720   1.895    rillig 		return true;
    721   1.776    rillig 	}
    722   1.776    rillig 
    723   1.777    rillig 	/*
    724   1.777    rillig 	 * Flag the variable as something we need to re-export.
    725   1.777    rillig 	 * No point actually exporting it now though,
    726   1.777    rillig 	 * the child process can do it at the last minute.
    727   1.830    rillig 	 * Avoid calling setenv more often than necessary since it can leak.
    728   1.777    rillig 	 */
    729   1.902    rillig 	v->exported = true;
    730   1.902    rillig 	v->reexport = true;
    731   1.895    rillig 	return true;
    732   1.776    rillig }
    733   1.401    rillig 
    734   1.895    rillig static bool
    735   1.776    rillig ExportVarLiteral(Var *v)
    736   1.776    rillig {
    737   1.902    rillig 	if (v->exported && !v->reexport)
    738   1.895    rillig 		return false;
    739   1.401    rillig 
    740   1.902    rillig 	if (!v->exported)
    741   1.777    rillig 		setenv(v->name.str, v->val.data, 1);
    742   1.605    rillig 
    743   1.895    rillig 	return true;
    744   1.118       sjg }
    745   1.118       sjg 
    746   1.118       sjg /*
    747   1.830    rillig  * Mark a single variable to be exported later for subprocesses.
    748   1.776    rillig  *
    749  1.1088    rillig  * Internal variables are not exported.
    750   1.776    rillig  */
    751   1.895    rillig static bool
    752  1.1100       sjg ExportVar(const char *name, GNode *scope, VarExportMode mode)
    753   1.776    rillig {
    754   1.776    rillig 	Var *v;
    755   1.776    rillig 
    756   1.776    rillig 	if (!MayExport(name))
    757   1.895    rillig 		return false;
    758   1.776    rillig 
    759  1.1100       sjg 	v = VarFind(name, scope, false);
    760  1.1100       sjg 	if (v == NULL && scope != SCOPE_GLOBAL)
    761  1.1100       sjg 		v = VarFind(name, SCOPE_GLOBAL, false);
    762   1.776    rillig 	if (v == NULL)
    763   1.895    rillig 		return false;
    764   1.776    rillig 
    765   1.776    rillig 	if (mode == VEM_ENV)
    766  1.1100       sjg 		return ExportVarEnv(v, scope);
    767   1.776    rillig 	else if (mode == VEM_PLAIN)
    768   1.776    rillig 		return ExportVarPlain(v);
    769   1.776    rillig 	else
    770   1.776    rillig 		return ExportVarLiteral(v);
    771   1.776    rillig }
    772   1.776    rillig 
    773   1.776    rillig /*
    774   1.765    rillig  * Actually export the variables that have been marked as needing to be
    775   1.765    rillig  * re-exported.
    776   1.118       sjg  */
    777   1.118       sjg void
    778  1.1100       sjg Var_ReexportVars(GNode *scope)
    779   1.118       sjg {
    780   1.775    rillig 	char *xvarnames;
    781   1.412    rillig 
    782   1.703    rillig 	/*
    783   1.703    rillig 	 * Several make implementations support this sort of mechanism for
    784   1.703    rillig 	 * tracking recursion - but each uses a different name.
    785   1.703    rillig 	 * We allow the makefiles to update MAKELEVEL and ensure
    786   1.703    rillig 	 * children see a correctly incremented value.
    787   1.703    rillig 	 */
    788  1.1067    rillig 	char level_buf[21];
    789  1.1067    rillig 	snprintf(level_buf, sizeof level_buf, "%d", makelevel + 1);
    790  1.1067    rillig 	setenv(MAKE_LEVEL_ENV, level_buf, 1);
    791   1.182  christos 
    792   1.703    rillig 	if (var_exportedVars == VAR_EXPORTED_NONE)
    793   1.703    rillig 		return;
    794   1.118       sjg 
    795   1.703    rillig 	if (var_exportedVars == VAR_EXPORTED_ALL) {
    796   1.703    rillig 		HashIter hi;
    797   1.575    rillig 
    798   1.831    rillig 		/* Ouch! Exporting all variables at once is crazy. */
    799   1.801    rillig 		HashIter_Init(&hi, &SCOPE_GLOBAL->vars);
    800  1.1114    rillig 		while (HashIter_Next(&hi)) {
    801   1.703    rillig 			Var *var = hi.entry->value;
    802  1.1100       sjg 			ExportVar(var->name.str, scope, VEM_ENV);
    803   1.703    rillig 		}
    804   1.703    rillig 		return;
    805   1.575    rillig 	}
    806   1.369    rillig 
    807  1.1045    rillig 	xvarnames = Var_Subst("${.MAKE.EXPORTED:O:u}", SCOPE_GLOBAL,
    808  1.1119    rillig 	    VARE_EVAL);
    809   1.703    rillig 	/* TODO: handle errors */
    810   1.775    rillig 	if (xvarnames[0] != '\0') {
    811   1.895    rillig 		Words varnames = Str_Words(xvarnames, false);
    812   1.703    rillig 		size_t i;
    813   1.703    rillig 
    814   1.775    rillig 		for (i = 0; i < varnames.len; i++)
    815  1.1100       sjg 			ExportVar(varnames.words[i], scope, VEM_ENV);
    816   1.775    rillig 		Words_Free(varnames);
    817   1.703    rillig 	}
    818   1.775    rillig 	free(xvarnames);
    819   1.118       sjg }
    820   1.118       sjg 
    821   1.726    rillig static void
    822   1.895    rillig ExportVars(const char *varnames, bool isExport, VarExportMode mode)
    823   1.831    rillig /* TODO: try to combine the parameters 'isExport' and 'mode'. */
    824   1.726    rillig {
    825   1.895    rillig 	Words words = Str_Words(varnames, false);
    826   1.727    rillig 	size_t i;
    827   1.727    rillig 
    828   1.727    rillig 	if (words.len == 1 && words.words[0][0] == '\0')
    829   1.727    rillig 		words.len = 0;
    830   1.727    rillig 
    831   1.727    rillig 	for (i = 0; i < words.len; i++) {
    832   1.727    rillig 		const char *varname = words.words[i];
    833  1.1100       sjg 		if (!ExportVar(varname, SCOPE_GLOBAL, mode))
    834   1.727    rillig 			continue;
    835   1.727    rillig 
    836   1.727    rillig 		if (var_exportedVars == VAR_EXPORTED_NONE)
    837   1.727    rillig 			var_exportedVars = VAR_EXPORTED_SOME;
    838   1.726    rillig 
    839   1.765    rillig 		if (isExport && mode == VEM_PLAIN)
    840  1.1045    rillig 			Global_Append(".MAKE.EXPORTED", varname);
    841   1.726    rillig 	}
    842   1.727    rillig 	Words_Free(words);
    843   1.726    rillig }
    844   1.726    rillig 
    845   1.728    rillig static void
    846   1.895    rillig ExportVarsExpand(const char *uvarnames, bool isExport, VarExportMode mode)
    847   1.728    rillig {
    848  1.1119    rillig 	char *xvarnames = Var_Subst(uvarnames, SCOPE_GLOBAL, VARE_EVAL);
    849   1.728    rillig 	/* TODO: handle errors */
    850   1.730    rillig 	ExportVars(xvarnames, isExport, mode);
    851   1.728    rillig 	free(xvarnames);
    852   1.728    rillig }
    853   1.728    rillig 
    854   1.731    rillig /* Export the named variables, or all variables. */
    855   1.118       sjg void
    856   1.731    rillig Var_Export(VarExportMode mode, const char *varnames)
    857   1.118       sjg {
    858  1.1117       sjg 	if (mode == VEM_ALL) {
    859   1.703    rillig 		var_exportedVars = VAR_EXPORTED_ALL; /* use with caution! */
    860   1.703    rillig 		return;
    861  1.1117       sjg 	} else if (mode == VEM_PLAIN && varnames[0] == '\0') {
    862  1.1117       sjg 		Parse_Error(PARSE_WARNING, ".export requires an argument.");
    863  1.1117       sjg 		return;
    864   1.703    rillig 	}
    865   1.118       sjg 
    866   1.895    rillig 	ExportVarsExpand(varnames, true, mode);
    867   1.729    rillig }
    868   1.729    rillig 
    869   1.729    rillig void
    870   1.729    rillig Var_ExportVars(const char *varnames)
    871   1.729    rillig {
    872   1.895    rillig 	ExportVarsExpand(varnames, false, VEM_PLAIN);
    873   1.118       sjg }
    874   1.118       sjg 
    875   1.155       sjg 
    876   1.700    rillig static void
    877   1.714    rillig ClearEnv(void)
    878   1.701    rillig {
    879  1.1083    rillig 	const char *level;
    880   1.701    rillig 	char **newenv;
    881   1.701    rillig 
    882  1.1083    rillig 	level = getenv(MAKE_LEVEL_ENV);	/* we should preserve this */
    883   1.701    rillig 	if (environ == savedEnv) {
    884   1.701    rillig 		/* we have been here before! */
    885   1.701    rillig 		newenv = bmake_realloc(environ, 2 * sizeof(char *));
    886   1.701    rillig 	} else {
    887   1.701    rillig 		if (savedEnv != NULL) {
    888   1.701    rillig 			free(savedEnv);
    889   1.701    rillig 			savedEnv = NULL;
    890   1.701    rillig 		}
    891   1.701    rillig 		newenv = bmake_malloc(2 * sizeof(char *));
    892   1.701    rillig 	}
    893   1.701    rillig 
    894   1.701    rillig 	/* Note: we cannot safely free() the original environ. */
    895   1.701    rillig 	environ = savedEnv = newenv;
    896   1.701    rillig 	newenv[0] = NULL;
    897   1.701    rillig 	newenv[1] = NULL;
    898  1.1083    rillig 	if (level != NULL && *level != '\0')
    899  1.1083    rillig 		setenv(MAKE_LEVEL_ENV, level, 1);
    900   1.701    rillig }
    901   1.701    rillig 
    902   1.701    rillig static void
    903   1.895    rillig GetVarnamesToUnexport(bool isEnv, const char *arg,
    904   1.715    rillig 		      FStr *out_varnames, UnexportWhat *out_what)
    905   1.714    rillig {
    906   1.714    rillig 	UnexportWhat what;
    907   1.739    rillig 	FStr varnames = FStr_InitRefer("");
    908   1.714    rillig 
    909   1.732    rillig 	if (isEnv) {
    910   1.732    rillig 		if (arg[0] != '\0') {
    911   1.723    rillig 			Parse_Error(PARSE_FATAL,
    912   1.723    rillig 			    "The directive .unexport-env does not take "
    913   1.723    rillig 			    "arguments");
    914   1.830    rillig 			/* continue anyway */
    915   1.723    rillig 		}
    916   1.714    rillig 		what = UNEXPORT_ENV;
    917   1.723    rillig 
    918   1.732    rillig 	} else {
    919   1.732    rillig 		what = arg[0] != '\0' ? UNEXPORT_NAMED : UNEXPORT_ALL;
    920   1.714    rillig 		if (what == UNEXPORT_NAMED)
    921   1.739    rillig 			varnames = FStr_InitRefer(arg);
    922   1.714    rillig 	}
    923   1.714    rillig 
    924   1.714    rillig 	if (what != UNEXPORT_NAMED) {
    925  1.1045    rillig 		char *expanded = Var_Subst("${.MAKE.EXPORTED:O:u}",
    926  1.1119    rillig 		    SCOPE_GLOBAL, VARE_EVAL);
    927   1.714    rillig 		/* TODO: handle errors */
    928   1.739    rillig 		varnames = FStr_InitOwn(expanded);
    929   1.714    rillig 	}
    930   1.714    rillig 
    931   1.714    rillig 	*out_varnames = varnames;
    932   1.714    rillig 	*out_what = what;
    933   1.714    rillig }
    934   1.714    rillig 
    935   1.714    rillig static void
    936   1.959    rillig UnexportVar(Substring varname, UnexportWhat what)
    937   1.700    rillig {
    938   1.959    rillig 	Var *v = VarFindSubstring(varname, SCOPE_GLOBAL, false);
    939   1.700    rillig 	if (v == NULL) {
    940   1.959    rillig 		DEBUG2(VAR, "Not unexporting \"%.*s\" (not found)\n",
    941   1.959    rillig 		    (int)Substring_Length(varname), varname.start);
    942   1.700    rillig 		return;
    943   1.700    rillig 	}
    944   1.700    rillig 
    945   1.959    rillig 	DEBUG2(VAR, "Unexporting \"%.*s\"\n",
    946   1.959    rillig 	    (int)Substring_Length(varname), varname.start);
    947   1.902    rillig 	if (what != UNEXPORT_ENV && v->exported && !v->reexport)
    948   1.711    rillig 		unsetenv(v->name.str);
    949   1.902    rillig 	v->exported = false;
    950   1.902    rillig 	v->reexport = false;
    951   1.700    rillig 
    952   1.713    rillig 	if (what == UNEXPORT_NAMED) {
    953   1.713    rillig 		/* Remove the variable names from .MAKE.EXPORTED. */
    954   1.700    rillig 		/* XXX: v->name is injected without escaping it */
    955  1.1083    rillig 		char *expr = str_concat3(
    956  1.1083    rillig 		    "${.MAKE.EXPORTED:N", v->name.str, "}");
    957  1.1119    rillig 		char *filtered = Var_Subst(expr, SCOPE_GLOBAL, VARE_EVAL);
    958   1.700    rillig 		/* TODO: handle errors */
    959  1.1083    rillig 		Global_Set(".MAKE.EXPORTED", filtered);
    960  1.1083    rillig 		free(filtered);
    961   1.700    rillig 		free(expr);
    962   1.700    rillig 	}
    963   1.700    rillig }
    964   1.700    rillig 
    965   1.716    rillig static void
    966   1.716    rillig UnexportVars(FStr *varnames, UnexportWhat what)
    967   1.716    rillig {
    968   1.716    rillig 	size_t i;
    969   1.959    rillig 	SubstringWords words;
    970   1.717    rillig 
    971   1.717    rillig 	if (what == UNEXPORT_ENV)
    972   1.717    rillig 		ClearEnv();
    973   1.716    rillig 
    974   1.959    rillig 	words = Substring_Words(varnames->str, false);
    975   1.959    rillig 	for (i = 0; i < words.len; i++)
    976   1.959    rillig 		UnexportVar(words.words[i], what);
    977   1.959    rillig 	SubstringWords_Free(words);
    978   1.716    rillig 
    979   1.716    rillig 	if (what != UNEXPORT_NAMED)
    980  1.1045    rillig 		Global_Delete(".MAKE.EXPORTED");
    981   1.716    rillig }
    982   1.716    rillig 
    983  1.1088    rillig /* Handle the .unexport and .unexport-env directives. */
    984   1.155       sjg void
    985   1.895    rillig Var_UnExport(bool isEnv, const char *arg)
    986   1.155       sjg {
    987   1.713    rillig 	UnexportWhat what;
    988   1.714    rillig 	FStr varnames;
    989   1.155       sjg 
    990   1.732    rillig 	GetVarnamesToUnexport(isEnv, arg, &varnames, &what);
    991   1.716    rillig 	UnexportVars(&varnames, what);
    992   1.712    rillig 	FStr_Done(&varnames);
    993   1.155       sjg }
    994   1.155       sjg 
    995   1.747    rillig /* Set the variable to the value; the name is not expanded. */
    996   1.800    rillig void
    997   1.805    rillig Var_SetWithFlags(GNode *scope, const char *name, const char *val,
    998   1.800    rillig 		 VarSetFlags flags)
    999     1.1       cgd {
   1000   1.704    rillig 	Var *v;
   1001   1.142       dsl 
   1002   1.793    rillig 	assert(val != NULL);
   1003   1.793    rillig 	if (name[0] == '\0') {
   1004  1.1086    rillig 		DEBUG3(VAR,
   1005  1.1086    rillig 		    "%s: ignoring '%s = %s' as the variable name is empty\n",
   1006  1.1086    rillig 		    scope->name, name, val);
   1007   1.793    rillig 		return;
   1008   1.793    rillig 	}
   1009   1.793    rillig 
   1010  1.1089    rillig 	if (scope == SCOPE_GLOBAL
   1011  1.1089    rillig 	    && VarFind(name, SCOPE_CMDLINE, false) != NULL) {
   1012  1.1089    rillig 		/*
   1013  1.1089    rillig 		 * The global variable would not be visible anywhere.
   1014  1.1089    rillig 		 * Therefore, there is no point in setting it at all.
   1015  1.1089    rillig 		 */
   1016  1.1082    rillig 		DEBUG3(VAR,
   1017  1.1086    rillig 		    "%s: ignoring '%s = %s' "
   1018  1.1082    rillig 		    "due to a command line variable of the same name\n",
   1019  1.1086    rillig 		    scope->name, name, val);
   1020   1.834    rillig 		return;
   1021  1.1080    rillig 	}
   1022   1.400    rillig 
   1023   1.704    rillig 	/*
   1024   1.802    rillig 	 * Only look for a variable in the given scope since anything set
   1025   1.802    rillig 	 * here will override anything in a lower scope, so there's not much
   1026   1.830    rillig 	 * point in searching them all.
   1027   1.704    rillig 	 */
   1028   1.895    rillig 	v = VarFind(name, scope, false);
   1029   1.704    rillig 	if (v == NULL) {
   1030   1.802    rillig 		if (scope == SCOPE_CMDLINE && !(flags & VAR_SET_NO_EXPORT)) {
   1031   1.704    rillig 			/*
   1032  1.1105    rillig 			 * This variable would normally prevent the same name
   1033  1.1105    rillig 			 * being added to SCOPE_GLOBAL, so delete it from
   1034  1.1105    rillig 			 * there if needed. Otherwise -V name may show the
   1035  1.1105    rillig 			 * wrong value.
   1036   1.832    rillig 			 *
   1037   1.835    rillig 			 * See ExistsInCmdline.
   1038   1.704    rillig 			 */
   1039   1.835    rillig 			Var_Delete(SCOPE_GLOBAL, name);
   1040   1.704    rillig 		}
   1041   1.973       sjg 		if (strcmp(name, ".SUFFIXES") == 0) {
   1042  1.1079    rillig 			/* special: treat as read-only */
   1043  1.1086    rillig 			DEBUG3(VAR,
   1044  1.1086    rillig 			    "%s: ignoring '%s = %s' as it is read-only\n",
   1045   1.973       sjg 			    scope->name, name, val);
   1046   1.973       sjg 			return;
   1047   1.973       sjg 		}
   1048   1.833    rillig 		v = VarAdd(name, val, scope, flags);
   1049   1.704    rillig 	} else {
   1050  1.1121    rillig 		if (v->readOnlyLoud) {
   1051  1.1121    rillig 			Parse_Error(PARSE_FATAL,
   1052  1.1121    rillig 			    "Cannot overwrite \"%s\" as it is read-only",
   1053  1.1121    rillig 			    name);
   1054  1.1121    rillig 			return;
   1055  1.1121    rillig 		}
   1056   1.902    rillig 		if (v->readOnly && !(flags & VAR_SET_READONLY)) {
   1057  1.1086    rillig 			DEBUG3(VAR,
   1058  1.1086    rillig 			    "%s: ignoring '%s = %s' as it is read-only\n",
   1059   1.802    rillig 			    scope->name, name, val);
   1060   1.747    rillig 			return;
   1061   1.704    rillig 		}
   1062   1.998    rillig 		Buf_Clear(&v->val);
   1063   1.704    rillig 		Buf_AddStr(&v->val, val);
   1064   1.704    rillig 
   1065  1.1018    rillig 		DEBUG4(VAR, "%s: %s = %s%s\n",
   1066  1.1018    rillig 		    scope->name, name, val, ValueDescription(val));
   1067   1.902    rillig 		if (v->exported)
   1068  1.1100       sjg 			ExportVar(name, scope, VEM_PLAIN);
   1069   1.183       sjg 	}
   1070   1.833    rillig 
   1071  1.1076       sjg 	if (scope == SCOPE_CMDLINE) {
   1072   1.902    rillig 		v->fromCmd = true;
   1073  1.1079    rillig 
   1074  1.1079    rillig 		/*
   1075  1.1079    rillig 		 * Any variables given on the command line are automatically
   1076  1.1079    rillig 		 * exported to the environment (as per POSIX standard), except
   1077  1.1079    rillig 		 * for internals.
   1078  1.1079    rillig 		 */
   1079  1.1109       sjg 		if (!(flags & VAR_SET_NO_EXPORT)) {
   1080   1.704    rillig 
   1081  1.1076       sjg 			/*
   1082  1.1076       sjg 			 * If requested, don't export these in the
   1083  1.1076       sjg 			 * environment individually.  We still put
   1084  1.1076       sjg 			 * them in .MAKEOVERRIDES so that the
   1085  1.1077    rillig 			 * command-line settings continue to override
   1086  1.1076       sjg 			 * Makefile settings.
   1087  1.1076       sjg 			 */
   1088  1.1109       sjg 			if (!opts.varNoExportEnv && name[0] != '.')
   1089  1.1076       sjg 				setenv(name, val, 1);
   1090  1.1109       sjg 
   1091  1.1109       sjg 			if (!(flags & VAR_SET_INTERNAL))
   1092  1.1109       sjg 				Global_Append(".MAKEOVERRIDES", name);
   1093  1.1076       sjg 		}
   1094   1.704    rillig 	}
   1095   1.833    rillig 
   1096   1.704    rillig 	if (name[0] == '.' && strcmp(name, MAKE_SAVE_DOLLARS) == 0)
   1097   1.704    rillig 		save_dollars = ParseBoolean(val, save_dollars);
   1098   1.205       sjg 
   1099   1.704    rillig 	if (v != NULL)
   1100   1.977    rillig 		VarFreeShortLived(v);
   1101     1.1       cgd }
   1102     1.1       cgd 
   1103   1.798    rillig void
   1104   1.805    rillig Var_Set(GNode *scope, const char *name, const char *val)
   1105   1.798    rillig {
   1106   1.805    rillig 	Var_SetWithFlags(scope, name, val, VAR_SET_NONE);
   1107   1.798    rillig }
   1108   1.798    rillig 
   1109   1.718    rillig /*
   1110  1.1079    rillig  * In the scope, expand the variable name once, then create the variable or
   1111  1.1079    rillig  * replace its value.
   1112   1.230    rillig  */
   1113   1.230    rillig void
   1114   1.805    rillig Var_SetExpand(GNode *scope, const char *name, const char *val)
   1115   1.230    rillig {
   1116  1.1007    rillig 	FStr varname = FStr_InitRefer(name);
   1117  1.1007    rillig 
   1118  1.1007    rillig 	assert(val != NULL);
   1119  1.1007    rillig 
   1120  1.1119    rillig 	Var_Expand(&varname, scope, VARE_EVAL);
   1121  1.1007    rillig 
   1122  1.1007    rillig 	if (varname.str[0] == '\0') {
   1123  1.1086    rillig 		DEBUG4(VAR,
   1124  1.1086    rillig 		    "%s: ignoring '%s = %s' "
   1125  1.1086    rillig 		    "as the variable name '%s' expands to empty\n",
   1126  1.1089    rillig 		    scope->name, varname.str, val, name);
   1127  1.1007    rillig 	} else
   1128  1.1007    rillig 		Var_SetWithFlags(scope, varname.str, val, VAR_SET_NONE);
   1129  1.1007    rillig 
   1130  1.1007    rillig 	FStr_Done(&varname);
   1131   1.230    rillig }
   1132   1.230    rillig 
   1133   1.791    rillig void
   1134   1.792    rillig Global_Set(const char *name, const char *value)
   1135   1.792    rillig {
   1136   1.805    rillig 	Var_Set(SCOPE_GLOBAL, name, value);
   1137   1.792    rillig }
   1138   1.792    rillig 
   1139   1.792    rillig void
   1140   1.804    rillig Global_Delete(const char *name)
   1141   1.804    rillig {
   1142   1.805    rillig 	Var_Delete(SCOPE_GLOBAL, name);
   1143   1.804    rillig }
   1144   1.804    rillig 
   1145  1.1039       sjg void
   1146  1.1039       sjg Global_Set_ReadOnly(const char *name, const char *value)
   1147  1.1039       sjg {
   1148  1.1121    rillig 	Var_SetWithFlags(SCOPE_GLOBAL, name, value, VAR_SET_NONE);
   1149  1.1121    rillig 	VarFind(name, SCOPE_GLOBAL, false)->readOnlyLoud = true;
   1150  1.1039       sjg }
   1151  1.1039       sjg 
   1152   1.718    rillig /*
   1153   1.794    rillig  * Append the value to the named variable.
   1154   1.794    rillig  *
   1155   1.794    rillig  * If the variable doesn't exist, it is created.  Otherwise a single space
   1156   1.794    rillig  * and the given value are appended.
   1157   1.794    rillig  */
   1158   1.794    rillig void
   1159   1.805    rillig Var_Append(GNode *scope, const char *name, const char *val)
   1160   1.794    rillig {
   1161   1.794    rillig 	Var *v;
   1162   1.794    rillig 
   1163   1.802    rillig 	v = VarFind(name, scope, scope == SCOPE_GLOBAL);
   1164   1.794    rillig 
   1165   1.794    rillig 	if (v == NULL) {
   1166   1.805    rillig 		Var_SetWithFlags(scope, name, val, VAR_SET_NONE);
   1167  1.1121    rillig 	} else if (v->readOnlyLoud) {
   1168  1.1121    rillig 		Parse_Error(PARSE_FATAL,
   1169  1.1121    rillig 		    "Cannot append to \"%s\" as it is read-only", name);
   1170  1.1121    rillig 		return;
   1171   1.902    rillig 	} else if (v->readOnly) {
   1172  1.1086    rillig 		DEBUG3(VAR, "%s: ignoring '%s += %s' as it is read-only\n",
   1173  1.1086    rillig 		    scope->name, name, val);
   1174   1.902    rillig 	} else if (scope == SCOPE_CMDLINE || !v->fromCmd) {
   1175   1.794    rillig 		Buf_AddByte(&v->val, ' ');
   1176   1.794    rillig 		Buf_AddStr(&v->val, val);
   1177   1.794    rillig 
   1178   1.911    rillig 		DEBUG3(VAR, "%s: %s = %s\n", scope->name, name, v->val.data);
   1179   1.794    rillig 
   1180   1.978    rillig 		if (v->fromEnvironment) {
   1181  1.1014    rillig 			/* See VarAdd. */
   1182  1.1014    rillig 			HashEntry *he =
   1183  1.1014    rillig 			    HashTable_CreateEntry(&scope->vars, name, NULL);
   1184  1.1014    rillig 			HashEntry_Set(he, v);
   1185  1.1014    rillig 			FStr_Done(&v->name);
   1186  1.1014    rillig 			v->name = FStr_InitRefer(/* aliased to */ he->key);
   1187  1.1014    rillig 			v->shortLived = false;
   1188   1.978    rillig 			v->fromEnvironment = false;
   1189   1.794    rillig 		}
   1190   1.794    rillig 	}
   1191   1.794    rillig }
   1192   1.794    rillig 
   1193   1.794    rillig /*
   1194  1.1088    rillig  * In the scope, expand the variable name once.  If the variable exists in the
   1195  1.1088    rillig  * scope, add a space and the value, otherwise set the variable to the value.
   1196   1.483    rillig  *
   1197  1.1088    rillig  * Appending to an environment variable only works in the global scope, that
   1198  1.1088    rillig  * is, for variable assignments in makefiles, but not inside conditions or the
   1199  1.1088    rillig  * commands of a target.
   1200     1.1       cgd  */
   1201     1.1       cgd void
   1202   1.805    rillig Var_AppendExpand(GNode *scope, const char *name, const char *val)
   1203     1.1       cgd {
   1204   1.838    rillig 	FStr xname = FStr_InitRefer(name);
   1205     1.1       cgd 
   1206   1.704    rillig 	assert(val != NULL);
   1207   1.460    rillig 
   1208  1.1119    rillig 	Var_Expand(&xname, scope, VARE_EVAL);
   1209  1.1001    rillig 	if (xname.str != name && xname.str[0] == '\0')
   1210  1.1086    rillig 		DEBUG4(VAR,
   1211  1.1086    rillig 		    "%s: ignoring '%s += %s' "
   1212  1.1086    rillig 		    "as the variable name '%s' expands to empty\n",
   1213  1.1086    rillig 		    scope->name, xname.str, val, name);
   1214  1.1001    rillig 	else
   1215  1.1001    rillig 		Var_Append(scope, xname.str, val);
   1216     1.1       cgd 
   1217   1.838    rillig 	FStr_Done(&xname);
   1218     1.1       cgd }
   1219     1.1       cgd 
   1220   1.791    rillig void
   1221   1.795    rillig Global_Append(const char *name, const char *value)
   1222   1.791    rillig {
   1223   1.805    rillig 	Var_Append(SCOPE_GLOBAL, name, value);
   1224   1.791    rillig }
   1225   1.791    rillig 
   1226   1.895    rillig bool
   1227   1.805    rillig Var_Exists(GNode *scope, const char *name)
   1228   1.796    rillig {
   1229   1.895    rillig 	Var *v = VarFind(name, scope, true);
   1230   1.796    rillig 	if (v == NULL)
   1231   1.895    rillig 		return false;
   1232   1.796    rillig 
   1233   1.977    rillig 	VarFreeShortLived(v);
   1234   1.895    rillig 	return true;
   1235   1.796    rillig }
   1236   1.796    rillig 
   1237   1.778    rillig /*
   1238   1.802    rillig  * See if the given variable exists, in the given scope or in other
   1239   1.802    rillig  * fallback scopes.
   1240     1.1       cgd  *
   1241    1.70       wiz  * Input:
   1242   1.953    rillig  *	scope		scope in which to start search
   1243   1.953    rillig  *	name		name of the variable to find, is expanded once
   1244     1.1       cgd  */
   1245   1.895    rillig bool
   1246   1.805    rillig Var_ExistsExpand(GNode *scope, const char *name)
   1247     1.1       cgd {
   1248   1.747    rillig 	FStr varname = FStr_InitRefer(name);
   1249   1.895    rillig 	bool exists;
   1250   1.412    rillig 
   1251  1.1119    rillig 	Var_Expand(&varname, scope, VARE_EVAL);
   1252   1.805    rillig 	exists = Var_Exists(scope, varname.str);
   1253   1.747    rillig 	FStr_Done(&varname);
   1254   1.796    rillig 	return exists;
   1255     1.1       cgd }
   1256     1.1       cgd 
   1257   1.718    rillig /*
   1258   1.802    rillig  * Return the unexpanded value of the given variable in the given scope,
   1259  1.1066    rillig  * falling back to the command, global and environment scopes, in this order,
   1260  1.1066    rillig  * but see the -e option.
   1261     1.1       cgd  *
   1262    1.70       wiz  * Input:
   1263  1.1066    rillig  *	name		the name to find, is not expanded any further
   1264    1.70       wiz  *
   1265     1.1       cgd  * Results:
   1266   1.337    rillig  *	The value if the variable exists, NULL if it doesn't.
   1267   1.830    rillig  *	The value is valid until the next modification to any variable.
   1268     1.1       cgd  */
   1269   1.745    rillig FStr
   1270   1.805    rillig Var_Value(GNode *scope, const char *name)
   1271     1.1       cgd {
   1272   1.895    rillig 	Var *v = VarFind(name, scope, true);
   1273   1.703    rillig 	char *value;
   1274   1.703    rillig 
   1275   1.703    rillig 	if (v == NULL)
   1276   1.745    rillig 		return FStr_InitRefer(NULL);
   1277   1.412    rillig 
   1278   1.978    rillig 	if (!v->shortLived)
   1279   1.837    rillig 		return FStr_InitRefer(v->val.data);
   1280   1.837    rillig 
   1281   1.978    rillig 	value = v->val.data;
   1282   1.978    rillig 	v->val.data = NULL;
   1283   1.978    rillig 	VarFreeShortLived(v);
   1284   1.978    rillig 
   1285   1.837    rillig 	return FStr_InitOwn(value);
   1286     1.1       cgd }
   1287     1.1       cgd 
   1288  1.1088    rillig /* Set or clear the read-only attribute of the variable if it exists. */
   1289  1.1037       sjg void
   1290  1.1037       sjg Var_ReadOnly(const char *name, bool bf)
   1291  1.1037       sjg {
   1292  1.1037       sjg 	Var *v;
   1293  1.1037       sjg 
   1294  1.1037       sjg 	v = VarFind(name, SCOPE_GLOBAL, false);
   1295  1.1037       sjg 	if (v == NULL) {
   1296  1.1037       sjg 		DEBUG1(VAR, "Var_ReadOnly: %s not found\n", name);
   1297  1.1037       sjg 		return;
   1298  1.1037       sjg 	}
   1299  1.1037       sjg 	v->readOnly = bf;
   1300  1.1038       sjg 	DEBUG2(VAR, "Var_ReadOnly: %s %s\n", name, bf ? "true" : "false");
   1301  1.1037       sjg }
   1302  1.1037       sjg 
   1303  1.1037       sjg /*
   1304   1.778    rillig  * Return the unexpanded variable value from this node, without trying to look
   1305   1.802    rillig  * up the variable in any other scope.
   1306   1.778    rillig  */
   1307   1.616    rillig const char *
   1308   1.803    rillig GNode_ValueDirect(GNode *gn, const char *name)
   1309   1.616    rillig {
   1310   1.895    rillig 	Var *v = VarFind(name, gn, false);
   1311   1.785    rillig 	return v != NULL ? v->val.data : NULL;
   1312   1.616    rillig }
   1313   1.616    rillig 
   1314   1.906    rillig static VarEvalMode
   1315   1.906    rillig VarEvalMode_WithoutKeepDollar(VarEvalMode emode)
   1316   1.906    rillig {
   1317  1.1119    rillig 	return emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED
   1318  1.1119    rillig 	    ? VARE_EVAL_KEEP_UNDEFINED : emode;
   1319   1.906    rillig }
   1320   1.906    rillig 
   1321   1.906    rillig static VarEvalMode
   1322   1.906    rillig VarEvalMode_UndefOk(VarEvalMode emode)
   1323   1.906    rillig {
   1324  1.1119    rillig 	return emode == VARE_EVAL_DEFINED ? VARE_EVAL : emode;
   1325   1.906    rillig }
   1326   1.244    rillig 
   1327   1.905    rillig static bool
   1328   1.906    rillig VarEvalMode_ShouldEval(VarEvalMode emode)
   1329   1.905    rillig {
   1330  1.1119    rillig 	return emode != VARE_PARSE;
   1331   1.906    rillig }
   1332   1.906    rillig 
   1333   1.906    rillig static bool
   1334   1.906    rillig VarEvalMode_ShouldKeepUndef(VarEvalMode emode)
   1335   1.906    rillig {
   1336  1.1119    rillig 	return emode == VARE_EVAL_KEEP_UNDEFINED ||
   1337  1.1119    rillig 	       emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED;
   1338   1.906    rillig }
   1339   1.906    rillig 
   1340   1.906    rillig static bool
   1341   1.906    rillig VarEvalMode_ShouldKeepDollar(VarEvalMode emode)
   1342   1.906    rillig {
   1343  1.1119    rillig 	return emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED;
   1344   1.905    rillig }
   1345   1.905    rillig 
   1346   1.905    rillig 
   1347   1.278    rillig static void
   1348   1.278    rillig SepBuf_Init(SepBuf *buf, char sep)
   1349   1.278    rillig {
   1350   1.703    rillig 	Buf_InitSize(&buf->buf, 32);
   1351   1.895    rillig 	buf->needSep = false;
   1352   1.703    rillig 	buf->sep = sep;
   1353   1.278    rillig }
   1354   1.278    rillig 
   1355   1.278    rillig static void
   1356   1.278    rillig SepBuf_Sep(SepBuf *buf)
   1357   1.278    rillig {
   1358   1.895    rillig 	buf->needSep = true;
   1359   1.278    rillig }
   1360   1.278    rillig 
   1361   1.278    rillig static void
   1362   1.314    rillig SepBuf_AddBytes(SepBuf *buf, const char *mem, size_t mem_size)
   1363   1.278    rillig {
   1364   1.703    rillig 	if (mem_size == 0)
   1365   1.703    rillig 		return;
   1366   1.703    rillig 	if (buf->needSep && buf->sep != '\0') {
   1367   1.703    rillig 		Buf_AddByte(&buf->buf, buf->sep);
   1368   1.895    rillig 		buf->needSep = false;
   1369   1.703    rillig 	}
   1370   1.703    rillig 	Buf_AddBytes(&buf->buf, mem, mem_size);
   1371   1.278    rillig }
   1372   1.278    rillig 
   1373   1.314    rillig static void
   1374  1.1055    rillig SepBuf_AddRange(SepBuf *buf, const char *start, const char *end)
   1375   1.314    rillig {
   1376   1.703    rillig 	SepBuf_AddBytes(buf, start, (size_t)(end - start));
   1377   1.314    rillig }
   1378   1.314    rillig 
   1379   1.314    rillig static void
   1380   1.314    rillig SepBuf_AddStr(SepBuf *buf, const char *str)
   1381   1.314    rillig {
   1382   1.703    rillig 	SepBuf_AddBytes(buf, str, strlen(str));
   1383   1.314    rillig }
   1384   1.314    rillig 
   1385   1.919    rillig static void
   1386   1.919    rillig SepBuf_AddSubstring(SepBuf *buf, Substring sub)
   1387   1.919    rillig {
   1388  1.1055    rillig 	SepBuf_AddRange(buf, sub.start, sub.end);
   1389   1.919    rillig }
   1390   1.919    rillig 
   1391   1.278    rillig static char *
   1392   1.784    rillig SepBuf_DoneData(SepBuf *buf)
   1393   1.278    rillig {
   1394   1.784    rillig 	return Buf_DoneData(&buf->buf);
   1395   1.278    rillig }
   1396   1.278    rillig 
   1397   1.278    rillig 
   1398   1.778    rillig /*
   1399  1.1075    rillig  * This callback for ModifyWords gets a single word from an expression
   1400   1.609    rillig  * and typically adds a modification of this word to the buffer. It may also
   1401   1.609    rillig  * do nothing or add several words.
   1402   1.609    rillig  *
   1403   1.822    rillig  * For example, when evaluating the modifier ':M*b' in ${:Ua b c:M*b}, the
   1404   1.822    rillig  * callback is called 3 times, once for "a", "b" and "c".
   1405   1.919    rillig  *
   1406   1.919    rillig  * Some ModifyWord functions assume that they are always passed a
   1407   1.919    rillig  * null-terminated substring, which is currently guaranteed but may change in
   1408   1.919    rillig  * the future.
   1409   1.778    rillig  */
   1410   1.919    rillig typedef void (*ModifyWordProc)(Substring word, SepBuf *buf, void *data);
   1411   1.244    rillig 
   1412   1.244    rillig 
   1413   1.779    rillig /*ARGSUSED*/
   1414   1.278    rillig static void
   1415   1.919    rillig ModifyWord_Head(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1416     1.1       cgd {
   1417   1.919    rillig 	SepBuf_AddSubstring(buf, Substring_Dirname(word));
   1418     1.1       cgd }
   1419     1.1       cgd 
   1420   1.779    rillig /*ARGSUSED*/
   1421   1.278    rillig static void
   1422   1.919    rillig ModifyWord_Tail(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1423     1.1       cgd {
   1424   1.919    rillig 	SepBuf_AddSubstring(buf, Substring_Basename(word));
   1425     1.1       cgd }
   1426     1.1       cgd 
   1427   1.779    rillig /*ARGSUSED*/
   1428   1.278    rillig static void
   1429   1.919    rillig ModifyWord_Suffix(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1430     1.1       cgd {
   1431  1.1092    rillig 	const char *lastDot = Substring_FindLast(word, '.');
   1432   1.703    rillig 	if (lastDot != NULL)
   1433  1.1055    rillig 		SepBuf_AddRange(buf, lastDot + 1, word.end);
   1434     1.1       cgd }
   1435     1.1       cgd 
   1436   1.779    rillig /*ARGSUSED*/
   1437   1.278    rillig static void
   1438   1.919    rillig ModifyWord_Root(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
   1439     1.1       cgd {
   1440   1.919    rillig 	const char *lastDot, *end;
   1441   1.919    rillig 
   1442  1.1092    rillig 	lastDot = Substring_FindLast(word, '.');
   1443   1.919    rillig 	end = lastDot != NULL ? lastDot : word.end;
   1444  1.1055    rillig 	SepBuf_AddRange(buf, word.start, end);
   1445     1.1       cgd }
   1446     1.1       cgd 
   1447   1.926    rillig struct ModifyWord_SysVSubstArgs {
   1448   1.806    rillig 	GNode *scope;
   1449   1.925    rillig 	Substring lhsPrefix;
   1450   1.925    rillig 	bool lhsPercent;
   1451   1.925    rillig 	Substring lhsSuffix;
   1452   1.703    rillig 	const char *rhs;
   1453   1.541    rillig };
   1454   1.276    rillig 
   1455   1.278    rillig static void
   1456   1.926    rillig ModifyWord_SysVSubst(Substring word, SepBuf *buf, void *data)
   1457     1.5       cgd {
   1458   1.926    rillig 	const struct ModifyWord_SysVSubstArgs *args = data;
   1459   1.925    rillig 	FStr rhs;
   1460   1.703    rillig 	const char *percent;
   1461   1.919    rillig 
   1462   1.925    rillig 	if (Substring_IsEmpty(word))
   1463   1.703    rillig 		return;
   1464   1.925    rillig 
   1465  1.1011    rillig 	if (!Substring_HasPrefix(word, args->lhsPrefix) ||
   1466  1.1011    rillig 	    !Substring_HasSuffix(word, args->lhsSuffix)) {
   1467  1.1011    rillig 		SepBuf_AddSubstring(buf, word);
   1468  1.1011    rillig 		return;
   1469  1.1011    rillig 	}
   1470   1.925    rillig 
   1471   1.925    rillig 	rhs = FStr_InitRefer(args->rhs);
   1472  1.1119    rillig 	Var_Expand(&rhs, args->scope, VARE_EVAL);
   1473   1.379    rillig 
   1474   1.925    rillig 	percent = args->lhsPercent ? strchr(rhs.str, '%') : NULL;
   1475   1.379    rillig 
   1476   1.925    rillig 	if (percent != NULL)
   1477  1.1055    rillig 		SepBuf_AddRange(buf, rhs.str, percent);
   1478   1.925    rillig 	if (percent != NULL || !args->lhsPercent)
   1479  1.1055    rillig 		SepBuf_AddRange(buf,
   1480   1.925    rillig 		    word.start + Substring_Length(args->lhsPrefix),
   1481   1.925    rillig 		    word.end - Substring_Length(args->lhsSuffix));
   1482   1.925    rillig 	SepBuf_AddStr(buf, percent != NULL ? percent + 1 : rhs.str);
   1483   1.379    rillig 
   1484   1.925    rillig 	FStr_Done(&rhs);
   1485     1.5       cgd }
   1486     1.5       cgd 
   1487   1.918    rillig static const char *
   1488   1.918    rillig Substring_Find(Substring haystack, Substring needle)
   1489   1.918    rillig {
   1490   1.918    rillig 	size_t len, needleLen, i;
   1491   1.918    rillig 
   1492   1.918    rillig 	len = Substring_Length(haystack);
   1493   1.918    rillig 	needleLen = Substring_Length(needle);
   1494   1.918    rillig 	for (i = 0; i + needleLen <= len; i++)
   1495   1.918    rillig 		if (memcmp(haystack.start + i, needle.start, needleLen) == 0)
   1496   1.918    rillig 			return haystack.start + i;
   1497   1.918    rillig 	return NULL;
   1498   1.918    rillig }
   1499   1.918    rillig 
   1500  1.1079    rillig struct ModifyWord_SubstArgs {
   1501  1.1079    rillig 	Substring lhs;
   1502  1.1079    rillig 	Substring rhs;
   1503  1.1079    rillig 	PatternFlags pflags;
   1504  1.1079    rillig 	bool matched;
   1505  1.1079    rillig };
   1506  1.1079    rillig 
   1507   1.278    rillig static void
   1508   1.919    rillig ModifyWord_Subst(Substring word, SepBuf *buf, void *data)
   1509     1.1       cgd {
   1510   1.703    rillig 	struct ModifyWord_SubstArgs *args = data;
   1511   1.918    rillig 	size_t wordLen, lhsLen;
   1512  1.1089    rillig 	const char *match;
   1513   1.703    rillig 
   1514   1.919    rillig 	wordLen = Substring_Length(word);
   1515   1.788    rillig 	if (args->pflags.subOnce && args->matched)
   1516   1.703    rillig 		goto nosub;
   1517   1.703    rillig 
   1518   1.918    rillig 	lhsLen = Substring_Length(args->lhs);
   1519   1.788    rillig 	if (args->pflags.anchorStart) {
   1520   1.918    rillig 		if (wordLen < lhsLen ||
   1521   1.919    rillig 		    memcmp(word.start, args->lhs.start, lhsLen) != 0)
   1522   1.703    rillig 			goto nosub;
   1523   1.703    rillig 
   1524   1.918    rillig 		if (args->pflags.anchorEnd && wordLen != lhsLen)
   1525   1.703    rillig 			goto nosub;
   1526   1.703    rillig 
   1527   1.703    rillig 		/* :S,^prefix,replacement, or :S,^whole$,replacement, */
   1528   1.919    rillig 		SepBuf_AddSubstring(buf, args->rhs);
   1529  1.1089    rillig 		SepBuf_AddRange(buf, word.start + lhsLen, word.end);
   1530   1.895    rillig 		args->matched = true;
   1531   1.703    rillig 		return;
   1532   1.703    rillig 	}
   1533     1.1       cgd 
   1534   1.788    rillig 	if (args->pflags.anchorEnd) {
   1535   1.918    rillig 		if (wordLen < lhsLen)
   1536   1.703    rillig 			goto nosub;
   1537  1.1089    rillig 		if (memcmp(word.end - lhsLen, args->lhs.start, lhsLen) != 0)
   1538   1.703    rillig 			goto nosub;
   1539   1.703    rillig 
   1540   1.703    rillig 		/* :S,suffix$,replacement, */
   1541  1.1089    rillig 		SepBuf_AddRange(buf, word.start, word.end - lhsLen);
   1542   1.919    rillig 		SepBuf_AddSubstring(buf, args->rhs);
   1543   1.895    rillig 		args->matched = true;
   1544   1.703    rillig 		return;
   1545   1.703    rillig 	}
   1546   1.315    rillig 
   1547   1.921    rillig 	if (Substring_IsEmpty(args->lhs))
   1548   1.703    rillig 		goto nosub;
   1549   1.279    rillig 
   1550   1.703    rillig 	/* unanchored case, may match more than once */
   1551   1.919    rillig 	while ((match = Substring_Find(word, args->lhs)) != NULL) {
   1552  1.1055    rillig 		SepBuf_AddRange(buf, word.start, match);
   1553   1.919    rillig 		SepBuf_AddSubstring(buf, args->rhs);
   1554   1.895    rillig 		args->matched = true;
   1555   1.921    rillig 		word.start = match + lhsLen;
   1556   1.919    rillig 		if (Substring_IsEmpty(word) || !args->pflags.subGlobal)
   1557   1.703    rillig 			break;
   1558   1.703    rillig 	}
   1559   1.242    rillig nosub:
   1560   1.919    rillig 	SepBuf_AddSubstring(buf, word);
   1561     1.1       cgd }
   1562     1.1       cgd 
   1563   1.400    rillig /* Print the error caused by a regcomp or regexec call. */
   1564    1.16  christos static void
   1565  1.1059    rillig RegexError(int reerr, const regex_t *pat, const char *str)
   1566    1.16  christos {
   1567   1.703    rillig 	size_t errlen = regerror(reerr, pat, NULL, 0);
   1568   1.703    rillig 	char *errbuf = bmake_malloc(errlen);
   1569   1.703    rillig 	regerror(reerr, pat, errbuf, errlen);
   1570   1.703    rillig 	Error("%s: %s", str, errbuf);
   1571   1.703    rillig 	free(errbuf);
   1572    1.16  christos }
   1573    1.16  christos 
   1574   1.981    rillig /* In the modifier ':C', replace a backreference from \0 to \9. */
   1575   1.981    rillig static void
   1576   1.981    rillig RegexReplaceBackref(char ref, SepBuf *buf, const char *wp,
   1577   1.981    rillig 		    const regmatch_t *m, size_t nsub)
   1578   1.981    rillig {
   1579  1.1033    rillig 	unsigned int n = (unsigned)ref - '0';
   1580   1.981    rillig 
   1581   1.981    rillig 	if (n >= nsub)
   1582   1.981    rillig 		Error("No subexpression \\%u", n);
   1583   1.981    rillig 	else if (m[n].rm_so == -1) {
   1584   1.981    rillig 		if (opts.strict)
   1585   1.981    rillig 			Error("No match for subexpression \\%u", n);
   1586   1.981    rillig 	} else {
   1587  1.1055    rillig 		SepBuf_AddRange(buf,
   1588   1.981    rillig 		    wp + (size_t)m[n].rm_so,
   1589   1.981    rillig 		    wp + (size_t)m[n].rm_eo);
   1590   1.981    rillig 	}
   1591   1.981    rillig }
   1592   1.981    rillig 
   1593   1.937    rillig /*
   1594   1.983    rillig  * The regular expression matches the word; now add the replacement to the
   1595   1.983    rillig  * buffer, taking back-references from 'wp'.
   1596   1.937    rillig  */
   1597   1.937    rillig static void
   1598   1.984    rillig RegexReplace(Substring replace, SepBuf *buf, const char *wp,
   1599   1.937    rillig 	     const regmatch_t *m, size_t nsub)
   1600   1.937    rillig {
   1601   1.937    rillig 	const char *rp;
   1602   1.937    rillig 
   1603   1.984    rillig 	for (rp = replace.start; rp != replace.end; rp++) {
   1604   1.984    rillig 		if (*rp == '\\' && rp + 1 != replace.end &&
   1605   1.984    rillig 		    (rp[1] == '&' || rp[1] == '\\'))
   1606   1.983    rillig 			SepBuf_AddBytes(buf, ++rp, 1);
   1607   1.984    rillig 		else if (*rp == '\\' && rp + 1 != replace.end &&
   1608   1.984    rillig 			 ch_isdigit(rp[1]))
   1609   1.983    rillig 			RegexReplaceBackref(*++rp, buf, wp, m, nsub);
   1610   1.983    rillig 		else if (*rp == '&') {
   1611  1.1055    rillig 			SepBuf_AddRange(buf,
   1612   1.948    rillig 			    wp + (size_t)m[0].rm_so,
   1613   1.948    rillig 			    wp + (size_t)m[0].rm_eo);
   1614   1.983    rillig 		} else
   1615   1.937    rillig 			SepBuf_AddBytes(buf, rp, 1);
   1616   1.937    rillig 	}
   1617   1.937    rillig }
   1618   1.937    rillig 
   1619   1.541    rillig struct ModifyWord_SubstRegexArgs {
   1620   1.703    rillig 	regex_t re;
   1621   1.703    rillig 	size_t nsub;
   1622   1.984    rillig 	Substring replace;
   1623   1.927    rillig 	PatternFlags pflags;
   1624   1.895    rillig 	bool matched;
   1625   1.541    rillig };
   1626   1.291    rillig 
   1627   1.278    rillig static void
   1628   1.919    rillig ModifyWord_SubstRegex(Substring word, SepBuf *buf, void *data)
   1629    1.16  christos {
   1630   1.704    rillig 	struct ModifyWord_SubstRegexArgs *args = data;
   1631   1.704    rillig 	int xrv;
   1632   1.919    rillig 	const char *wp;
   1633   1.704    rillig 	int flags = 0;
   1634   1.704    rillig 	regmatch_t m[10];
   1635    1.16  christos 
   1636   1.919    rillig 	assert(word.end[0] == '\0');	/* assume null-terminated word */
   1637   1.919    rillig 	wp = word.start;
   1638   1.936    rillig 	if (args->pflags.subOnce && args->matched)
   1639   1.936    rillig 		goto no_match;
   1640   1.307    rillig 
   1641   1.935    rillig again:
   1642   1.704    rillig 	xrv = regexec(&args->re, wp, args->nsub, m, flags);
   1643   1.935    rillig 	if (xrv == 0)
   1644   1.935    rillig 		goto ok;
   1645   1.935    rillig 	if (xrv != REG_NOMATCH)
   1646  1.1059    rillig 		RegexError(xrv, &args->re, "Unexpected regex error");
   1647   1.936    rillig no_match:
   1648  1.1055    rillig 	SepBuf_AddRange(buf, wp, word.end);
   1649   1.936    rillig 	return;
   1650    1.16  christos 
   1651   1.935    rillig ok:
   1652   1.935    rillig 	args->matched = true;
   1653   1.935    rillig 	SepBuf_AddBytes(buf, wp, (size_t)m[0].rm_so);
   1654   1.704    rillig 
   1655   1.937    rillig 	RegexReplace(args->replace, buf, wp, m, args->nsub);
   1656   1.445    rillig 
   1657   1.948    rillig 	wp += (size_t)m[0].rm_eo;
   1658   1.935    rillig 	if (args->pflags.subGlobal) {
   1659   1.935    rillig 		flags |= REG_NOTBOL;
   1660  1.1077    rillig 		if (m[0].rm_so == 0 && m[0].rm_eo == 0 && *wp != '\0') {
   1661   1.935    rillig 			SepBuf_AddBytes(buf, wp, 1);
   1662   1.935    rillig 			wp++;
   1663   1.704    rillig 		}
   1664   1.704    rillig 		if (*wp != '\0')
   1665   1.935    rillig 			goto again;
   1666   1.935    rillig 	}
   1667   1.935    rillig 	if (*wp != '\0')
   1668   1.704    rillig 		SepBuf_AddStr(buf, wp);
   1669    1.16  christos }
   1670    1.16  christos 
   1671    1.16  christos 
   1672   1.541    rillig struct ModifyWord_LoopArgs {
   1673   1.806    rillig 	GNode *scope;
   1674   1.928    rillig 	const char *var;	/* name of the temporary variable */
   1675   1.928    rillig 	const char *body;	/* string to expand */
   1676   1.906    rillig 	VarEvalMode emode;
   1677   1.541    rillig };
   1678   1.291    rillig 
   1679   1.278    rillig static void
   1680   1.919    rillig ModifyWord_Loop(Substring word, SepBuf *buf, void *data)
   1681    1.40       sjg {
   1682   1.703    rillig 	const struct ModifyWord_LoopArgs *args;
   1683   1.703    rillig 	char *s;
   1684   1.412    rillig 
   1685   1.919    rillig 	if (Substring_IsEmpty(word))
   1686   1.703    rillig 		return;
   1687   1.278    rillig 
   1688   1.703    rillig 	args = data;
   1689   1.919    rillig 	assert(word.end[0] == '\0');	/* assume null-terminated word */
   1690   1.928    rillig 	Var_SetWithFlags(args->scope, args->var, word.start,
   1691   1.919    rillig 	    VAR_SET_NO_EXPORT);
   1692  1.1043    rillig 	s = Var_Subst(args->body, args->scope, args->emode);
   1693   1.703    rillig 	/* TODO: handle errors */
   1694    1.64       sjg 
   1695  1.1090    rillig 	DEBUG2(VAR, "ModifyWord_Loop: expand \"%s\" to \"%s\"\n",
   1696  1.1090    rillig 	    args->body, s);
   1697   1.703    rillig 
   1698   1.703    rillig 	if (s[0] == '\n' || Buf_EndsWith(&buf->buf, '\n'))
   1699   1.895    rillig 		buf->needSep = false;
   1700   1.703    rillig 	SepBuf_AddStr(buf, s);
   1701   1.703    rillig 	free(s);
   1702    1.40       sjg }
   1703    1.40       sjg 
   1704    1.81       sjg 
   1705   1.778    rillig /*
   1706   1.778    rillig  * The :[first..last] modifier selects words from the expression.
   1707   1.778    rillig  * It can also reverse the words.
   1708   1.778    rillig  */
   1709    1.81       sjg static char *
   1710   1.840    rillig VarSelectWords(const char *str, int first, int last,
   1711   1.895    rillig 	       char sep, bool oneBigWord)
   1712    1.81       sjg {
   1713   1.960    rillig 	SubstringWords words;
   1714   1.703    rillig 	int len, start, end, step;
   1715   1.703    rillig 	int i;
   1716   1.703    rillig 
   1717   1.703    rillig 	SepBuf buf;
   1718   1.703    rillig 	SepBuf_Init(&buf, sep);
   1719   1.703    rillig 
   1720   1.703    rillig 	if (oneBigWord) {
   1721   1.960    rillig 		/* fake what Substring_Words() would do */
   1722   1.703    rillig 		words.len = 1;
   1723   1.960    rillig 		words.words = bmake_malloc(sizeof(words.words[0]));
   1724   1.960    rillig 		words.freeIt = NULL;
   1725   1.960    rillig 		words.words[0] = Substring_InitStr(str); /* no need to copy */
   1726   1.703    rillig 	} else {
   1727   1.960    rillig 		words = Substring_Words(str, false);
   1728   1.703    rillig 	}
   1729    1.81       sjg 
   1730  1.1088    rillig 	/* Convert -1 to len, -2 to (len - 1), etc. */
   1731   1.703    rillig 	len = (int)words.len;
   1732   1.703    rillig 	if (first < 0)
   1733   1.703    rillig 		first += len + 1;
   1734   1.703    rillig 	if (last < 0)
   1735   1.703    rillig 		last += len + 1;
   1736   1.703    rillig 
   1737   1.703    rillig 	if (first > last) {
   1738   1.703    rillig 		start = (first > len ? len : first) - 1;
   1739   1.703    rillig 		end = last < 1 ? 0 : last - 1;
   1740   1.703    rillig 		step = -1;
   1741   1.703    rillig 	} else {
   1742   1.703    rillig 		start = first < 1 ? 0 : first - 1;
   1743   1.703    rillig 		end = last > len ? len : last;
   1744   1.703    rillig 		step = 1;
   1745   1.703    rillig 	}
   1746    1.81       sjg 
   1747   1.703    rillig 	for (i = start; (step < 0) == (i >= end); i += step) {
   1748   1.960    rillig 		SepBuf_AddSubstring(&buf, words.words[i]);
   1749   1.703    rillig 		SepBuf_Sep(&buf);
   1750   1.703    rillig 	}
   1751    1.81       sjg 
   1752   1.960    rillig 	SubstringWords_Free(words);
   1753    1.81       sjg 
   1754   1.784    rillig 	return SepBuf_DoneData(&buf);
   1755    1.81       sjg }
   1756    1.81       sjg 
   1757   1.156       sjg 
   1758   1.779    rillig /*ARGSUSED*/
   1759   1.278    rillig static void
   1760   1.919    rillig ModifyWord_Realpath(Substring word, SepBuf *buf, void *data MAKE_ATTR_UNUSED)
   1761   1.156       sjg {
   1762   1.703    rillig 	struct stat st;
   1763   1.703    rillig 	char rbuf[MAXPATHLEN];
   1764   1.919    rillig 	const char *rp;
   1765   1.231    rillig 
   1766   1.919    rillig 	assert(word.end[0] == '\0');	/* assume null-terminated word */
   1767   1.919    rillig 	rp = cached_realpath(word.start, rbuf);
   1768   1.703    rillig 	if (rp != NULL && *rp == '/' && stat(rp, &st) == 0)
   1769   1.919    rillig 		SepBuf_AddStr(buf, rp);
   1770   1.919    rillig 	else
   1771   1.919    rillig 		SepBuf_AddSubstring(buf, word);
   1772   1.156       sjg }
   1773   1.156       sjg 
   1774    1.35  christos 
   1775   1.403    rillig static char *
   1776   1.962    rillig SubstringWords_JoinFree(SubstringWords words)
   1777   1.403    rillig {
   1778   1.703    rillig 	Buffer buf;
   1779   1.703    rillig 	size_t i;
   1780   1.412    rillig 
   1781   1.703    rillig 	Buf_Init(&buf);
   1782   1.403    rillig 
   1783   1.703    rillig 	for (i = 0; i < words.len; i++) {
   1784   1.703    rillig 		if (i != 0) {
   1785   1.988    rillig 			/*
   1786   1.988    rillig 			 * XXX: Use ch->sep instead of ' ', for consistency.
   1787   1.988    rillig 			 */
   1788   1.703    rillig 			Buf_AddByte(&buf, ' ');
   1789   1.703    rillig 		}
   1790  1.1055    rillig 		Buf_AddRange(&buf, words.words[i].start, words.words[i].end);
   1791   1.703    rillig 	}
   1792   1.403    rillig 
   1793   1.962    rillig 	SubstringWords_Free(words);
   1794   1.403    rillig 
   1795   1.784    rillig 	return Buf_DoneData(&buf);
   1796   1.403    rillig }
   1797   1.403    rillig 
   1798    1.55  christos 
   1799   1.778    rillig /*
   1800   1.778    rillig  * Quote shell meta-characters and space characters in the string.
   1801   1.778    rillig  * If quoteDollar is set, also quote and double any '$' characters.
   1802   1.778    rillig  */
   1803   1.924    rillig static void
   1804  1.1059    rillig QuoteShell(const char *str, bool quoteDollar, LazyBuf *buf)
   1805    1.16  christos {
   1806   1.924    rillig 	const char *p;
   1807   1.193  christos 
   1808   1.924    rillig 	LazyBuf_Init(buf, str);
   1809   1.924    rillig 	for (p = str; *p != '\0'; p++) {
   1810   1.924    rillig 		if (*p == '\n') {
   1811   1.703    rillig 			const char *newline = Shell_GetNewline();
   1812   1.703    rillig 			if (newline == NULL)
   1813   1.703    rillig 				newline = "\\\n";
   1814   1.924    rillig 			LazyBuf_AddStr(buf, newline);
   1815   1.703    rillig 			continue;
   1816   1.703    rillig 		}
   1817   1.997    rillig 		if (ch_isspace(*p) || ch_is_shell_meta(*p))
   1818   1.924    rillig 			LazyBuf_Add(buf, '\\');
   1819   1.924    rillig 		LazyBuf_Add(buf, *p);
   1820   1.924    rillig 		if (quoteDollar && *p == '$')
   1821   1.924    rillig 			LazyBuf_AddStr(buf, "\\$");
   1822   1.193  christos 	}
   1823    1.16  christos }
   1824    1.16  christos 
   1825   1.778    rillig /*
   1826   1.778    rillig  * Compute the 32-bit hash of the given string, using the MurmurHash3
   1827   1.778    rillig  * algorithm. Output is encoded as 8 hex digits, in Little Endian order.
   1828   1.778    rillig  */
   1829   1.163     joerg static char *
   1830  1.1059    rillig Hash(const char *str)
   1831   1.163     joerg {
   1832   1.703    rillig 	static const char hexdigits[16] = "0123456789abcdef";
   1833   1.703    rillig 	const unsigned char *ustr = (const unsigned char *)str;
   1834   1.703    rillig 
   1835   1.703    rillig 	uint32_t h = 0x971e137bU;
   1836   1.703    rillig 	uint32_t c1 = 0x95543787U;
   1837   1.703    rillig 	uint32_t c2 = 0x2ad7eb25U;
   1838   1.703    rillig 	size_t len2 = strlen(str);
   1839   1.163     joerg 
   1840   1.703    rillig 	char *buf;
   1841   1.703    rillig 	size_t i;
   1842   1.703    rillig 
   1843   1.703    rillig 	size_t len;
   1844   1.781    rillig 	for (len = len2; len != 0;) {
   1845   1.703    rillig 		uint32_t k = 0;
   1846   1.703    rillig 		switch (len) {
   1847   1.703    rillig 		default:
   1848   1.703    rillig 			k = ((uint32_t)ustr[3] << 24) |
   1849   1.703    rillig 			    ((uint32_t)ustr[2] << 16) |
   1850   1.703    rillig 			    ((uint32_t)ustr[1] << 8) |
   1851   1.703    rillig 			    (uint32_t)ustr[0];
   1852   1.703    rillig 			len -= 4;
   1853   1.703    rillig 			ustr += 4;
   1854   1.703    rillig 			break;
   1855   1.703    rillig 		case 3:
   1856   1.703    rillig 			k |= (uint32_t)ustr[2] << 16;
   1857   1.703    rillig 			/* FALLTHROUGH */
   1858   1.703    rillig 		case 2:
   1859   1.703    rillig 			k |= (uint32_t)ustr[1] << 8;
   1860   1.703    rillig 			/* FALLTHROUGH */
   1861   1.703    rillig 		case 1:
   1862   1.703    rillig 			k |= (uint32_t)ustr[0];
   1863   1.703    rillig 			len = 0;
   1864   1.703    rillig 		}
   1865   1.703    rillig 		c1 = c1 * 5 + 0x7b7d159cU;
   1866   1.703    rillig 		c2 = c2 * 5 + 0x6bce6396U;
   1867   1.703    rillig 		k *= c1;
   1868   1.703    rillig 		k = (k << 11) ^ (k >> 21);
   1869   1.703    rillig 		k *= c2;
   1870   1.703    rillig 		h = (h << 13) ^ (h >> 19);
   1871   1.703    rillig 		h = h * 5 + 0x52dce729U;
   1872   1.703    rillig 		h ^= k;
   1873   1.703    rillig 	}
   1874   1.703    rillig 	h ^= (uint32_t)len2;
   1875   1.703    rillig 	h *= 0x85ebca6b;
   1876   1.703    rillig 	h ^= h >> 13;
   1877   1.703    rillig 	h *= 0xc2b2ae35;
   1878   1.703    rillig 	h ^= h >> 16;
   1879   1.703    rillig 
   1880   1.703    rillig 	buf = bmake_malloc(9);
   1881   1.703    rillig 	for (i = 0; i < 8; i++) {
   1882   1.703    rillig 		buf[i] = hexdigits[h & 0x0f];
   1883   1.703    rillig 		h >>= 4;
   1884   1.703    rillig 	}
   1885   1.703    rillig 	buf[8] = '\0';
   1886   1.703    rillig 	return buf;
   1887   1.163     joerg }
   1888   1.163     joerg 
   1889   1.164       sjg static char *
   1890  1.1059    rillig FormatTime(const char *fmt, time_t t, bool gmt)
   1891   1.164       sjg {
   1892   1.703    rillig 	char buf[BUFSIZ];
   1893   1.164       sjg 
   1894   1.993    rillig 	if (t == 0)
   1895   1.993    rillig 		time(&t);
   1896   1.703    rillig 	if (*fmt == '\0')
   1897   1.703    rillig 		fmt = "%c";
   1898  1.1064    rillig 	if (gmt && strchr(fmt, 's') != NULL) {
   1899  1.1064    rillig 		/* strftime "%s" only works with localtime, not with gmtime. */
   1900  1.1062    rillig 		const char *prev_tz_env = getenv("TZ");
   1901  1.1062    rillig 		char *prev_tz = prev_tz_env != NULL
   1902  1.1062    rillig 		    ? bmake_strdup(prev_tz_env) : NULL;
   1903  1.1062    rillig 		setenv("TZ", "UTC", 1);
   1904  1.1062    rillig 		strftime(buf, sizeof buf, fmt, localtime(&t));
   1905  1.1062    rillig 		if (prev_tz != NULL) {
   1906  1.1062    rillig 			setenv("TZ", prev_tz, 1);
   1907  1.1062    rillig 			free(prev_tz);
   1908  1.1062    rillig 		} else
   1909  1.1062    rillig 			unsetenv("TZ");
   1910  1.1062    rillig 	} else
   1911  1.1064    rillig 		strftime(buf, sizeof buf, fmt, (gmt ? gmtime : localtime)(&t));
   1912   1.235    rillig 
   1913   1.703    rillig 	buf[sizeof buf - 1] = '\0';
   1914   1.703    rillig 	return bmake_strdup(buf);
   1915   1.164       sjg }
   1916   1.164       sjg 
   1917   1.687    rillig /*
   1918   1.687    rillig  * The ApplyModifier functions take an expression that is being evaluated.
   1919   1.830    rillig  * Their task is to apply a single modifier to the expression.  This involves
   1920   1.830    rillig  * parsing the modifier, evaluating it and finally updating the value of the
   1921   1.830    rillig  * expression.
   1922   1.467    rillig  *
   1923   1.467    rillig  * Parsing the modifier
   1924   1.467    rillig  *
   1925   1.467    rillig  * If parsing succeeds, the parsing position *pp is updated to point to the
   1926   1.467    rillig  * first character following the modifier, which typically is either ':' or
   1927   1.891    rillig  * ch->endc.  The modifier doesn't have to check for this delimiter character,
   1928   1.687    rillig  * this is done by ApplyModifiers.
   1929   1.687    rillig  *
   1930   1.687    rillig  * XXX: As of 2020-11-15, some modifiers such as :S, :C, :P, :L do not
   1931   1.687    rillig  * need to be followed by a ':' or endc; this was an unintended mistake.
   1932   1.467    rillig  *
   1933  1.1079    rillig  * If parsing fails because of a missing delimiter after a modifier part (as
   1934  1.1079    rillig  * in the :S, :C or :@ modifiers), return AMR_CLEANUP.
   1935   1.467    rillig  *
   1936   1.467    rillig  * If parsing fails because the modifier is unknown, return AMR_UNKNOWN to
   1937  1.1088    rillig  * try the SysV modifier ':from=to' as fallback.  This should only be
   1938   1.467    rillig  * done as long as there have been no side effects from evaluating nested
   1939   1.467    rillig  * variables, to avoid evaluating them more than once.  In this case, the
   1940   1.687    rillig  * parsing position may or may not be updated.  (XXX: Why not? The original
   1941   1.687    rillig  * parsing position is well-known in ApplyModifiers.)
   1942   1.467    rillig  *
   1943   1.467    rillig  * If parsing fails and the SysV modifier ${VAR:from=to} should not be used
   1944  1.1066    rillig  * as a fallback, issue an error message using Parse_Error (preferred over
   1945  1.1088    rillig  * Error) and then return AMR_CLEANUP, which stops processing the expression.
   1946  1.1088    rillig  * (XXX: As of 2020-08-23, evaluation of the string continues nevertheless
   1947  1.1088    rillig  * after skipping a few bytes, which results in garbage.)
   1948   1.467    rillig  *
   1949   1.467    rillig  * Evaluating the modifier
   1950   1.467    rillig  *
   1951   1.467    rillig  * After parsing, the modifier is evaluated.  The side effects from evaluating
   1952  1.1075    rillig  * nested expressions in the modifier text often already happen
   1953   1.830    rillig  * during parsing though.  For most modifiers this doesn't matter since their
   1954   1.949    rillig  * only noticeable effect is that they update the value of the expression.
   1955   1.830    rillig  * Some modifiers such as ':sh' or '::=' have noticeable side effects though.
   1956   1.467    rillig  *
   1957  1.1075    rillig  * Evaluating the modifier usually takes the current value of the
   1958  1.1094    rillig  * expression from ch->expr->value, or the variable name from ch->var->name,
   1959  1.1066    rillig  * and stores the result back in ch->expr->value via Expr_SetValueOwn or
   1960   1.821    rillig  * Expr_SetValueRefer.
   1961   1.467    rillig  *
   1962  1.1094    rillig  * If evaluating fails, the fallback error message "Bad modifier" is printed
   1963  1.1094    rillig  * using Error.  This function has no side effects, it really just prints the
   1964  1.1094    rillig  * error message, continuing as if nothing had happened.  TODO: This should be
   1965  1.1094    rillig  * fixed by adding proper error handling to Var_Subst, Var_Parse,
   1966  1.1094    rillig  * ApplyModifiers and ModifyWords.
   1967   1.467    rillig  *
   1968   1.528    rillig  * Some modifiers such as :D and :U turn undefined expressions into defined
   1969  1.1066    rillig  * expressions using Expr_Define.
   1970   1.350    rillig  */
   1971   1.409    rillig 
   1972   1.825    rillig typedef enum ExprDefined {
   1973  1.1075    rillig 	/* The expression is based on a regular, defined variable. */
   1974   1.825    rillig 	DEF_REGULAR,
   1975  1.1075    rillig 	/* The expression is based on an undefined variable. */
   1976   1.825    rillig 	DEF_UNDEF,
   1977   1.703    rillig 	/*
   1978  1.1075    rillig 	 * The expression started as an undefined expression, but one
   1979   1.825    rillig 	 * of the modifiers (such as ':D' or ':U') has turned the expression
   1980   1.825    rillig 	 * from undefined to defined.
   1981   1.703    rillig 	 */
   1982   1.825    rillig 	DEF_DEFINED
   1983   1.825    rillig } ExprDefined;
   1984   1.527    rillig 
   1985   1.951    rillig static const char ExprDefined_Name[][10] = {
   1986   1.826    rillig 	"regular",
   1987   1.826    rillig 	"undefined",
   1988   1.826    rillig 	"defined"
   1989   1.789    rillig };
   1990   1.527    rillig 
   1991   1.897    rillig #if __STDC_VERSION__ >= 199901L
   1992   1.989    rillig #define const_member		const
   1993   1.897    rillig #else
   1994   1.989    rillig #define const_member		/* no const possible */
   1995   1.897    rillig #endif
   1996   1.897    rillig 
   1997   1.966    rillig /* An expression based on a variable, such as $@ or ${VAR:Mpattern:Q}. */
   1998   1.823    rillig typedef struct Expr {
   1999   1.898    rillig 	const char *name;
   2000   1.823    rillig 	FStr value;
   2001   1.906    rillig 	VarEvalMode const_member emode;
   2002   1.897    rillig 	GNode *const_member scope;
   2003   1.825    rillig 	ExprDefined defined;
   2004   1.823    rillig } Expr;
   2005   1.823    rillig 
   2006   1.823    rillig /*
   2007   1.890    rillig  * The status of applying a chain of modifiers to an expression.
   2008   1.823    rillig  *
   2009   1.890    rillig  * The modifiers of an expression are broken into chains of modifiers,
   2010   1.892    rillig  * starting a new nested chain whenever an indirect modifier starts.  There
   2011   1.892    rillig  * are at most 2 nesting levels: the outer one for the direct modifiers, and
   2012   1.892    rillig  * the inner one for the indirect modifiers.
   2013   1.890    rillig  *
   2014   1.892    rillig  * For example, the expression ${VAR:M*:${IND1}:${IND2}:O:u} has 3 chains of
   2015   1.889    rillig  * modifiers:
   2016   1.889    rillig  *
   2017   1.892    rillig  *	Chain 1 starts with the single modifier ':M*'.
   2018   1.892    rillig  *	  Chain 2 starts with all modifiers from ${IND1}.
   2019   1.892    rillig  *	  Chain 2 ends at the ':' between ${IND1} and ${IND2}.
   2020   1.893    rillig  *	  Chain 3 starts with all modifiers from ${IND2}.
   2021   1.893    rillig  *	  Chain 3 ends at the ':' after ${IND2}.
   2022   1.942    rillig  *	Chain 1 continues with the 2 modifiers ':O' and ':u'.
   2023   1.892    rillig  *	Chain 1 ends at the final '}' of the expression.
   2024   1.890    rillig  *
   2025   1.892    rillig  * After such a chain ends, its properties no longer have any effect.
   2026   1.889    rillig  *
   2027   1.823    rillig  * See varmod-indirect.mk.
   2028   1.823    rillig  */
   2029   1.891    rillig typedef struct ModChain {
   2030   1.823    rillig 	Expr *expr;
   2031   1.703    rillig 	/* '\0' or '{' or '(' */
   2032   1.897    rillig 	char const_member startc;
   2033   1.703    rillig 	/* '\0' or '}' or ')' */
   2034   1.897    rillig 	char const_member endc;
   2035  1.1094    rillig 	/* Separator when joining words (see the :ts modifier). */
   2036   1.703    rillig 	char sep;
   2037   1.703    rillig 	/*
   2038  1.1066    rillig 	 * Whether some modifiers that otherwise split the variable value
   2039   1.703    rillig 	 * into words, like :S and :C, treat the variable value as a single
   2040   1.703    rillig 	 * big word, possibly containing spaces.
   2041   1.703    rillig 	 */
   2042   1.895    rillig 	bool oneBigWord;
   2043   1.891    rillig } ModChain;
   2044   1.236    rillig 
   2045   1.525    rillig static void
   2046   1.812    rillig Expr_Define(Expr *expr)
   2047   1.525    rillig {
   2048   1.825    rillig 	if (expr->defined == DEF_UNDEF)
   2049   1.825    rillig 		expr->defined = DEF_DEFINED;
   2050   1.525    rillig }
   2051   1.525    rillig 
   2052   1.965    rillig static const char *
   2053   1.965    rillig Expr_Str(const Expr *expr)
   2054   1.965    rillig {
   2055   1.965    rillig 	return expr->value.str;
   2056   1.965    rillig }
   2057   1.965    rillig 
   2058   1.967    rillig static SubstringWords
   2059   1.967    rillig Expr_Words(const Expr *expr)
   2060   1.967    rillig {
   2061   1.967    rillig 	return Substring_Words(Expr_Str(expr), false);
   2062   1.967    rillig }
   2063   1.967    rillig 
   2064   1.813    rillig static void
   2065   1.921    rillig Expr_SetValue(Expr *expr, FStr value)
   2066   1.921    rillig {
   2067   1.921    rillig 	FStr_Done(&expr->value);
   2068   1.921    rillig 	expr->value = value;
   2069   1.921    rillig }
   2070   1.921    rillig 
   2071   1.921    rillig static void
   2072   1.813    rillig Expr_SetValueOwn(Expr *expr, char *value)
   2073   1.813    rillig {
   2074   1.921    rillig 	Expr_SetValue(expr, FStr_InitOwn(value));
   2075   1.813    rillig }
   2076   1.813    rillig 
   2077   1.813    rillig static void
   2078   1.813    rillig Expr_SetValueRefer(Expr *expr, const char *value)
   2079   1.813    rillig {
   2080   1.921    rillig 	Expr_SetValue(expr, FStr_InitRefer(value));
   2081   1.813    rillig }
   2082   1.813    rillig 
   2083   1.905    rillig static bool
   2084   1.905    rillig Expr_ShouldEval(const Expr *expr)
   2085   1.905    rillig {
   2086   1.906    rillig 	return VarEvalMode_ShouldEval(expr->emode);
   2087   1.905    rillig }
   2088   1.905    rillig 
   2089   1.905    rillig static bool
   2090   1.905    rillig ModChain_ShouldEval(const ModChain *ch)
   2091   1.905    rillig {
   2092   1.905    rillig 	return Expr_ShouldEval(ch->expr);
   2093   1.905    rillig }
   2094   1.905    rillig 
   2095   1.905    rillig 
   2096   1.578    rillig typedef enum ApplyModifierResult {
   2097   1.703    rillig 	/* Continue parsing */
   2098   1.703    rillig 	AMR_OK,
   2099  1.1093    rillig 	/* Not a match, try the ':from=to' modifier as well. */
   2100   1.703    rillig 	AMR_UNKNOWN,
   2101   1.830    rillig 	/* Error out with "Bad modifier" message. */
   2102   1.703    rillig 	AMR_BAD,
   2103   1.830    rillig 	/* Error out without the standard error message. */
   2104   1.703    rillig 	AMR_CLEANUP
   2105   1.356    rillig } ApplyModifierResult;
   2106   1.356    rillig 
   2107   1.703    rillig /*
   2108   1.703    rillig  * Allow backslashes to escape the delimiter, $, and \, but don't touch other
   2109   1.703    rillig  * backslashes.
   2110   1.703    rillig  */
   2111   1.895    rillig static bool
   2112   1.620    rillig IsEscapedModifierPart(const char *p, char delim,
   2113   1.620    rillig 		      struct ModifyWord_SubstArgs *subst)
   2114   1.620    rillig {
   2115  1.1118    rillig 	if (p[0] != '\\' || p[1] == '\0')
   2116   1.895    rillig 		return false;
   2117   1.703    rillig 	if (p[1] == delim || p[1] == '\\' || p[1] == '$')
   2118   1.895    rillig 		return true;
   2119   1.703    rillig 	return p[1] == '&' && subst != NULL;
   2120   1.620    rillig }
   2121   1.620    rillig 
   2122   1.956    rillig /*
   2123   1.957    rillig  * In a part of a modifier, parse a subexpression and evaluate it.
   2124   1.957    rillig  */
   2125   1.957    rillig static void
   2126   1.957    rillig ParseModifierPartExpr(const char **pp, LazyBuf *part, const ModChain *ch,
   2127   1.957    rillig 		      VarEvalMode emode)
   2128   1.957    rillig {
   2129   1.957    rillig 	const char *p = *pp;
   2130  1.1042    rillig 	FStr nested_val = Var_Parse(&p, ch->expr->scope,
   2131  1.1042    rillig 	    VarEvalMode_WithoutKeepDollar(emode));
   2132   1.957    rillig 	/* TODO: handle errors */
   2133  1.1047    rillig 	if (VarEvalMode_ShouldEval(emode))
   2134  1.1047    rillig 		LazyBuf_AddStr(part, nested_val.str);
   2135  1.1047    rillig 	else
   2136  1.1047    rillig 		LazyBuf_AddSubstring(part, Substring_Init(*pp, p));
   2137   1.957    rillig 	FStr_Done(&nested_val);
   2138   1.957    rillig 	*pp = p;
   2139   1.957    rillig }
   2140   1.957    rillig 
   2141  1.1029    rillig /*
   2142  1.1047    rillig  * In a part of a modifier, parse some text that looks like a subexpression.
   2143  1.1047    rillig  * If the text starts with '$(', any '(' and ')' must be balanced.
   2144  1.1047    rillig  * If the text starts with '${', any '{' and '}' must be balanced.
   2145  1.1066    rillig  * If the text starts with '$', that '$' is copied verbatim, it is not parsed
   2146  1.1075    rillig  * as a short-name expression.
   2147  1.1029    rillig  */
   2148   1.956    rillig static void
   2149  1.1047    rillig ParseModifierPartBalanced(const char **pp, LazyBuf *part)
   2150   1.956    rillig {
   2151   1.956    rillig 	const char *p = *pp;
   2152   1.956    rillig 
   2153   1.956    rillig 	if (p[1] == '(' || p[1] == '{') {
   2154  1.1029    rillig 		char startc = p[1];
   2155  1.1029    rillig 		int endc = startc == '(' ? ')' : '}';
   2156  1.1029    rillig 		int depth = 1;
   2157  1.1029    rillig 
   2158  1.1029    rillig 		for (p += 2; *p != '\0' && depth > 0; p++) {
   2159  1.1029    rillig 			if (p[-1] != '\\') {
   2160  1.1029    rillig 				if (*p == startc)
   2161  1.1029    rillig 					depth++;
   2162  1.1029    rillig 				if (*p == endc)
   2163  1.1029    rillig 					depth--;
   2164  1.1029    rillig 			}
   2165  1.1029    rillig 		}
   2166  1.1089    rillig 		LazyBuf_AddSubstring(part, Substring_Init(*pp, p));
   2167  1.1029    rillig 		*pp = p;
   2168   1.956    rillig 	} else {
   2169  1.1089    rillig 		LazyBuf_Add(part, *p);
   2170  1.1029    rillig 		*pp = p + 1;
   2171   1.956    rillig 	}
   2172   1.956    rillig }
   2173   1.956    rillig 
   2174  1.1115    rillig /*
   2175  1.1115    rillig  * Parse a part of a modifier such as the "from" and "to" in :S/from/to/ or
   2176  1.1115    rillig  * the "var" or "replacement ${var}" in :@var@replacement ${var}@, up to and
   2177  1.1115    rillig  * including the next unescaped delimiter.  The delimiter, as well as the
   2178  1.1115    rillig  * backslash or the dollar, can be escaped with a backslash.
   2179  1.1115    rillig  *
   2180  1.1115    rillig  * Return true if parsing succeeded, together with the parsed (and possibly
   2181  1.1115    rillig  * expanded) part.  In that case, pp points right after the delimiter.  The
   2182  1.1115    rillig  * delimiter is not included in the part though.
   2183  1.1115    rillig  */
   2184  1.1044    rillig static bool
   2185  1.1115    rillig ParseModifierPart(
   2186  1.1115    rillig     /* The parsing position, updated upon return */
   2187   1.703    rillig     const char **pp,
   2188  1.1115    rillig     char end1,
   2189  1.1115    rillig     char end2,
   2190  1.1115    rillig     /* Mode for evaluating nested expressions. */
   2191   1.906    rillig     VarEvalMode emode,
   2192   1.891    rillig     ModChain *ch,
   2193   1.921    rillig     LazyBuf *part,
   2194   1.988    rillig     /*
   2195  1.1066    rillig      * For the first part of the ':S' modifier, set anchorEnd if the last
   2196   1.988    rillig      * character of the pattern is a $.
   2197   1.988    rillig      */
   2198   1.927    rillig     PatternFlags *out_pflags,
   2199   1.988    rillig     /*
   2200  1.1066    rillig      * For the second part of the ':S' modifier, allow ampersands to be
   2201  1.1066    rillig      * escaped and replace unescaped ampersands with subst->lhs.
   2202   1.988    rillig      */
   2203   1.541    rillig     struct ModifyWord_SubstArgs *subst
   2204   1.704    rillig )
   2205   1.704    rillig {
   2206  1.1115    rillig 	const char *p = *pp;
   2207   1.704    rillig 
   2208   1.923    rillig 	LazyBuf_Init(part, p);
   2209  1.1050    rillig 	while (*p != '\0' && *p != end1 && *p != end2) {
   2210  1.1115    rillig 		if (IsEscapedModifierPart(p, end2, subst)) {
   2211   1.921    rillig 			LazyBuf_Add(part, p[1]);
   2212   1.704    rillig 			p += 2;
   2213   1.958    rillig 		} else if (*p != '$') {	/* Unescaped, simple text */
   2214   1.704    rillig 			if (subst != NULL && *p == '&')
   2215   1.921    rillig 				LazyBuf_AddSubstring(part, subst->lhs);
   2216   1.704    rillig 			else
   2217   1.921    rillig 				LazyBuf_Add(part, *p);
   2218   1.704    rillig 			p++;
   2219  1.1115    rillig 		} else if (p[1] == end2) {	/* Unescaped '$' at end */
   2220   1.704    rillig 			if (out_pflags != NULL)
   2221   1.895    rillig 				out_pflags->anchorEnd = true;
   2222   1.704    rillig 			else
   2223   1.921    rillig 				LazyBuf_Add(part, *p);
   2224   1.704    rillig 			p++;
   2225  1.1047    rillig 		} else if (emode == VARE_PARSE_BALANCED)
   2226  1.1047    rillig 			ParseModifierPartBalanced(&p, part);
   2227  1.1047    rillig 		else
   2228   1.957    rillig 			ParseModifierPartExpr(&p, part, ch, emode);
   2229   1.529    rillig 	}
   2230   1.529    rillig 
   2231  1.1050    rillig 	*pp = p;
   2232  1.1050    rillig 	if (*p != end1 && *p != end2) {
   2233   1.842    rillig 		Error("Unfinished modifier for \"%s\" ('%c' missing)",
   2234  1.1050    rillig 		    ch->expr->name, end2);
   2235   1.921    rillig 		LazyBuf_Done(part);
   2236  1.1044    rillig 		return false;
   2237   1.704    rillig 	}
   2238  1.1115    rillig 	if (end1 == end2)
   2239  1.1050    rillig 		(*pp)++;
   2240   1.529    rillig 
   2241   1.921    rillig 	{
   2242   1.921    rillig 		Substring sub = LazyBuf_Get(part);
   2243   1.921    rillig 		DEBUG2(VAR, "Modifier part: \"%.*s\"\n",
   2244   1.921    rillig 		    (int)Substring_Length(sub), sub.start);
   2245   1.921    rillig 	}
   2246   1.921    rillig 
   2247  1.1044    rillig 	return true;
   2248   1.529    rillig }
   2249   1.529    rillig 
   2250   1.895    rillig MAKE_INLINE bool
   2251   1.891    rillig IsDelimiter(char c, const ModChain *ch)
   2252   1.859    rillig {
   2253  1.1032    rillig 	return c == ':' || c == ch->endc || c == '\0';
   2254   1.859    rillig }
   2255   1.859    rillig 
   2256   1.400    rillig /* Test whether mod starts with modname, followed by a delimiter. */
   2257   1.895    rillig MAKE_INLINE bool
   2258   1.891    rillig ModMatch(const char *mod, const char *modname, const ModChain *ch)
   2259   1.340    rillig {
   2260   1.703    rillig 	size_t n = strlen(modname);
   2261   1.891    rillig 	return strncmp(mod, modname, n) == 0 && IsDelimiter(mod[n], ch);
   2262   1.340    rillig }
   2263   1.340    rillig 
   2264   1.400    rillig /* Test whether mod starts with modname, followed by a delimiter or '='. */
   2265   1.895    rillig MAKE_INLINE bool
   2266   1.891    rillig ModMatchEq(const char *mod, const char *modname, const ModChain *ch)
   2267   1.340    rillig {
   2268   1.703    rillig 	size_t n = strlen(modname);
   2269   1.703    rillig 	return strncmp(mod, modname, n) == 0 &&
   2270   1.891    rillig 	       (IsDelimiter(mod[n], ch) || mod[n] == '=');
   2271   1.340    rillig }
   2272   1.236    rillig 
   2273   1.895    rillig static bool
   2274   1.635    rillig TryParseIntBase0(const char **pp, int *out_num)
   2275   1.635    rillig {
   2276   1.703    rillig 	char *end;
   2277   1.703    rillig 	long n;
   2278   1.635    rillig 
   2279   1.703    rillig 	errno = 0;
   2280   1.703    rillig 	n = strtol(*pp, &end, 0);
   2281   1.865    rillig 
   2282   1.865    rillig 	if (end == *pp)
   2283   1.895    rillig 		return false;
   2284   1.703    rillig 	if ((n == LONG_MIN || n == LONG_MAX) && errno == ERANGE)
   2285   1.895    rillig 		return false;
   2286   1.703    rillig 	if (n < INT_MIN || n > INT_MAX)
   2287   1.895    rillig 		return false;
   2288   1.635    rillig 
   2289   1.703    rillig 	*pp = end;
   2290   1.703    rillig 	*out_num = (int)n;
   2291   1.895    rillig 	return true;
   2292   1.635    rillig }
   2293   1.635    rillig 
   2294   1.895    rillig static bool
   2295   1.635    rillig TryParseSize(const char **pp, size_t *out_num)
   2296   1.635    rillig {
   2297   1.703    rillig 	char *end;
   2298   1.703    rillig 	unsigned long n;
   2299   1.635    rillig 
   2300   1.703    rillig 	if (!ch_isdigit(**pp))
   2301   1.895    rillig 		return false;
   2302   1.635    rillig 
   2303   1.703    rillig 	errno = 0;
   2304   1.703    rillig 	n = strtoul(*pp, &end, 10);
   2305   1.703    rillig 	if (n == ULONG_MAX && errno == ERANGE)
   2306   1.895    rillig 		return false;
   2307   1.703    rillig 	if (n > SIZE_MAX)
   2308   1.895    rillig 		return false;
   2309   1.635    rillig 
   2310   1.703    rillig 	*pp = end;
   2311   1.703    rillig 	*out_num = (size_t)n;
   2312   1.895    rillig 	return true;
   2313   1.635    rillig }
   2314   1.635    rillig 
   2315   1.895    rillig static bool
   2316   1.635    rillig TryParseChar(const char **pp, int base, char *out_ch)
   2317   1.635    rillig {
   2318   1.703    rillig 	char *end;
   2319   1.703    rillig 	unsigned long n;
   2320   1.635    rillig 
   2321   1.703    rillig 	if (!ch_isalnum(**pp))
   2322   1.895    rillig 		return false;
   2323   1.635    rillig 
   2324   1.703    rillig 	errno = 0;
   2325   1.703    rillig 	n = strtoul(*pp, &end, base);
   2326   1.703    rillig 	if (n == ULONG_MAX && errno == ERANGE)
   2327   1.895    rillig 		return false;
   2328   1.703    rillig 	if (n > UCHAR_MAX)
   2329   1.895    rillig 		return false;
   2330   1.635    rillig 
   2331   1.703    rillig 	*pp = end;
   2332   1.703    rillig 	*out_ch = (char)n;
   2333   1.895    rillig 	return true;
   2334   1.635    rillig }
   2335   1.635    rillig 
   2336   1.820    rillig /*
   2337   1.822    rillig  * Modify each word of the expression using the given function and place the
   2338   1.822    rillig  * result back in the expression.
   2339   1.820    rillig  */
   2340   1.820    rillig static void
   2341   1.891    rillig ModifyWords(ModChain *ch,
   2342   1.822    rillig 	    ModifyWordProc modifyWord, void *modifyWord_args,
   2343   1.895    rillig 	    bool oneBigWord)
   2344   1.820    rillig {
   2345   1.891    rillig 	Expr *expr = ch->expr;
   2346   1.965    rillig 	const char *val = Expr_Str(expr);
   2347   1.820    rillig 	SepBuf result;
   2348   1.920    rillig 	SubstringWords words;
   2349   1.820    rillig 	size_t i;
   2350   1.919    rillig 	Substring word;
   2351   1.820    rillig 
   2352  1.1097    rillig 	if (!ModChain_ShouldEval(ch))
   2353  1.1097    rillig 		return;
   2354  1.1097    rillig 
   2355   1.820    rillig 	if (oneBigWord) {
   2356   1.891    rillig 		SepBuf_Init(&result, ch->sep);
   2357   1.919    rillig 		/* XXX: performance: Substring_InitStr calls strlen */
   2358   1.919    rillig 		word = Substring_InitStr(val);
   2359   1.919    rillig 		modifyWord(word, &result, modifyWord_args);
   2360   1.820    rillig 		goto done;
   2361   1.820    rillig 	}
   2362   1.820    rillig 
   2363   1.920    rillig 	words = Substring_Words(val, false);
   2364   1.820    rillig 
   2365   1.954    rillig 	DEBUG3(VAR, "ModifyWords: split \"%s\" into %u %s\n",
   2366   1.954    rillig 	    val, (unsigned)words.len, words.len != 1 ? "words" : "word");
   2367   1.820    rillig 
   2368   1.891    rillig 	SepBuf_Init(&result, ch->sep);
   2369   1.820    rillig 	for (i = 0; i < words.len; i++) {
   2370   1.920    rillig 		modifyWord(words.words[i], &result, modifyWord_args);
   2371   1.820    rillig 		if (result.buf.len > 0)
   2372   1.820    rillig 			SepBuf_Sep(&result);
   2373   1.820    rillig 	}
   2374   1.820    rillig 
   2375   1.920    rillig 	SubstringWords_Free(words);
   2376   1.820    rillig 
   2377   1.820    rillig done:
   2378   1.823    rillig 	Expr_SetValueOwn(expr, SepBuf_DoneData(&result));
   2379   1.820    rillig }
   2380   1.820    rillig 
   2381   1.236    rillig /* :@var (at) ...${var}...@ */
   2382   1.356    rillig static ApplyModifierResult
   2383   1.891    rillig ApplyModifier_Loop(const char **pp, ModChain *ch)
   2384   1.417    rillig {
   2385   1.891    rillig 	Expr *expr = ch->expr;
   2386   1.703    rillig 	struct ModifyWord_LoopArgs args;
   2387   1.703    rillig 	char prev_sep;
   2388   1.921    rillig 	LazyBuf tvarBuf, strBuf;
   2389   1.921    rillig 	FStr tvar, str;
   2390   1.703    rillig 
   2391   1.823    rillig 	args.scope = expr->scope;
   2392   1.703    rillig 
   2393   1.703    rillig 	(*pp)++;		/* Skip the first '@' */
   2394  1.1119    rillig 	if (!ParseModifierPart(pp, '@', '@', VARE_PARSE,
   2395  1.1115    rillig 	    ch, &tvarBuf, NULL, NULL))
   2396   1.703    rillig 		return AMR_CLEANUP;
   2397   1.921    rillig 	tvar = LazyBuf_DoneGet(&tvarBuf);
   2398   1.928    rillig 	args.var = tvar.str;
   2399   1.928    rillig 	if (strchr(args.var, '$') != NULL) {
   2400   1.703    rillig 		Parse_Error(PARSE_FATAL,
   2401  1.1102    rillig 		    "In the :@ modifier, the variable name \"%s\" "
   2402   1.969    rillig 		    "must not contain a dollar",
   2403  1.1102    rillig 		    args.var);
   2404  1.1112    rillig 		goto cleanup_tvar;
   2405   1.703    rillig 	}
   2406   1.236    rillig 
   2407  1.1115    rillig 	if (!ParseModifierPart(pp, '@', '@', VARE_PARSE_BALANCED,
   2408  1.1115    rillig 	    ch, &strBuf, NULL, NULL))
   2409  1.1112    rillig 		goto cleanup_tvar;
   2410   1.921    rillig 	str = LazyBuf_DoneGet(&strBuf);
   2411   1.928    rillig 	args.body = str.str;
   2412   1.703    rillig 
   2413   1.906    rillig 	if (!Expr_ShouldEval(expr))
   2414   1.870    rillig 		goto done;
   2415   1.870    rillig 
   2416   1.906    rillig 	args.emode = VarEvalMode_WithoutKeepDollar(expr->emode);
   2417   1.891    rillig 	prev_sep = ch->sep;
   2418   1.891    rillig 	ch->sep = ' ';		/* XXX: should be ch->sep for consistency */
   2419   1.891    rillig 	ModifyWords(ch, ModifyWord_Loop, &args, ch->oneBigWord);
   2420   1.891    rillig 	ch->sep = prev_sep;
   2421   1.928    rillig 	/* XXX: Consider restoring the previous value instead of deleting. */
   2422   1.928    rillig 	Var_Delete(expr->scope, args.var);
   2423   1.870    rillig 
   2424   1.870    rillig done:
   2425   1.921    rillig 	FStr_Done(&tvar);
   2426   1.921    rillig 	FStr_Done(&str);
   2427   1.703    rillig 	return AMR_OK;
   2428  1.1112    rillig 
   2429  1.1112    rillig cleanup_tvar:
   2430  1.1112    rillig 	FStr_Done(&tvar);
   2431  1.1112    rillig 	return AMR_CLEANUP;
   2432   1.236    rillig }
   2433   1.236    rillig 
   2434  1.1026    rillig static void
   2435  1.1027    rillig ParseModifier_Defined(const char **pp, ModChain *ch, bool shouldEval,
   2436  1.1026    rillig 		      LazyBuf *buf)
   2437   1.236    rillig {
   2438   1.703    rillig 	const char *p;
   2439   1.412    rillig 
   2440   1.703    rillig 	p = *pp + 1;
   2441  1.1026    rillig 	LazyBuf_Init(buf, p);
   2442  1.1032    rillig 	while (!IsDelimiter(*p, ch)) {
   2443   1.703    rillig 
   2444   1.988    rillig 		/*
   2445   1.988    rillig 		 * XXX: This code is similar to the one in Var_Parse. See if
   2446  1.1065    rillig 		 * the code can be merged. See also ParseModifier_Match and
   2447   1.988    rillig 		 * ParseModifierPart.
   2448   1.988    rillig 		 */
   2449   1.703    rillig 
   2450  1.1066    rillig 		/* See Buf_AddEscaped in for.c for the counterpart. */
   2451   1.703    rillig 		if (*p == '\\') {
   2452   1.703    rillig 			char c = p[1];
   2453  1.1030    rillig 			if ((IsDelimiter(c, ch) && c != '\0') ||
   2454  1.1030    rillig 			    c == '$' || c == '\\') {
   2455  1.1027    rillig 				if (shouldEval)
   2456  1.1027    rillig 					LazyBuf_Add(buf, c);
   2457   1.703    rillig 				p += 2;
   2458   1.703    rillig 				continue;
   2459   1.703    rillig 			}
   2460   1.703    rillig 		}
   2461   1.236    rillig 
   2462   1.703    rillig 		if (*p == '$') {
   2463  1.1042    rillig 			FStr val = Var_Parse(&p, ch->expr->scope,
   2464  1.1119    rillig 			    shouldEval ? ch->expr->emode : VARE_PARSE);
   2465   1.703    rillig 			/* TODO: handle errors */
   2466  1.1027    rillig 			if (shouldEval)
   2467  1.1027    rillig 				LazyBuf_AddStr(buf, val.str);
   2468  1.1027    rillig 			FStr_Done(&val);
   2469   1.703    rillig 			continue;
   2470   1.703    rillig 		}
   2471   1.687    rillig 
   2472  1.1027    rillig 		if (shouldEval)
   2473  1.1027    rillig 			LazyBuf_Add(buf, *p);
   2474   1.703    rillig 		p++;
   2475   1.466    rillig 	}
   2476   1.703    rillig 	*pp = p;
   2477  1.1026    rillig }
   2478  1.1026    rillig 
   2479  1.1026    rillig /* :Ddefined or :Uundefined */
   2480  1.1026    rillig static ApplyModifierResult
   2481  1.1026    rillig ApplyModifier_Defined(const char **pp, ModChain *ch)
   2482  1.1026    rillig {
   2483  1.1026    rillig 	Expr *expr = ch->expr;
   2484  1.1026    rillig 	LazyBuf buf;
   2485  1.1027    rillig 	bool shouldEval =
   2486  1.1027    rillig 	    Expr_ShouldEval(expr) &&
   2487  1.1027    rillig 	    (**pp == 'D') == (expr->defined == DEF_REGULAR);
   2488  1.1026    rillig 
   2489  1.1027    rillig 	ParseModifier_Defined(pp, ch, shouldEval, &buf);
   2490   1.466    rillig 
   2491   1.823    rillig 	Expr_Define(expr);
   2492  1.1027    rillig 	if (shouldEval)
   2493   1.929    rillig 		Expr_SetValue(expr, Substring_Str(LazyBuf_Get(&buf)));
   2494  1.1111    rillig 	LazyBuf_Done(&buf);
   2495   1.821    rillig 
   2496   1.703    rillig 	return AMR_OK;
   2497   1.236    rillig }
   2498   1.236    rillig 
   2499   1.567    rillig /* :L */
   2500   1.567    rillig static ApplyModifierResult
   2501   1.891    rillig ApplyModifier_Literal(const char **pp, ModChain *ch)
   2502   1.567    rillig {
   2503   1.891    rillig 	Expr *expr = ch->expr;
   2504   1.864    rillig 
   2505   1.864    rillig 	(*pp)++;
   2506   1.864    rillig 
   2507   1.905    rillig 	if (Expr_ShouldEval(expr)) {
   2508   1.872    rillig 		Expr_Define(expr);
   2509   1.898    rillig 		Expr_SetValueOwn(expr, bmake_strdup(expr->name));
   2510   1.872    rillig 	}
   2511   1.864    rillig 
   2512   1.703    rillig 	return AMR_OK;
   2513   1.567    rillig }
   2514   1.567    rillig 
   2515   1.895    rillig static bool
   2516   1.633    rillig TryParseTime(const char **pp, time_t *out_time)
   2517   1.631    rillig {
   2518   1.703    rillig 	char *end;
   2519   1.703    rillig 	unsigned long n;
   2520   1.631    rillig 
   2521   1.703    rillig 	if (!ch_isdigit(**pp))
   2522   1.895    rillig 		return false;
   2523   1.631    rillig 
   2524   1.703    rillig 	errno = 0;
   2525   1.703    rillig 	n = strtoul(*pp, &end, 10);
   2526   1.703    rillig 	if (n == ULONG_MAX && errno == ERANGE)
   2527   1.895    rillig 		return false;
   2528   1.631    rillig 
   2529   1.703    rillig 	*pp = end;
   2530   1.703    rillig 	*out_time = (time_t)n;	/* ignore possible truncation for now */
   2531   1.895    rillig 	return true;
   2532   1.631    rillig }
   2533   1.631    rillig 
   2534   1.994    rillig /* :gmtime and :localtime */
   2535   1.356    rillig static ApplyModifierResult
   2536   1.995    rillig ApplyModifier_Time(const char **pp, ModChain *ch)
   2537   1.236    rillig {
   2538   1.950    rillig 	Expr *expr;
   2539   1.993    rillig 	time_t t;
   2540   1.994    rillig 	const char *args;
   2541   1.995    rillig 	const char *mod = *pp;
   2542   1.995    rillig 	bool gmt = mod[0] == 'g';
   2543   1.412    rillig 
   2544   1.994    rillig 	if (!ModMatchEq(mod, gmt ? "gmtime" : "localtime", ch))
   2545   1.703    rillig 		return AMR_UNKNOWN;
   2546   1.994    rillig 	args = mod + (gmt ? 6 : 9);
   2547   1.703    rillig 
   2548   1.994    rillig 	if (args[0] == '=') {
   2549   1.994    rillig 		const char *p = args + 1;
   2550  1.1050    rillig 		LazyBuf buf;
   2551  1.1104    rillig 		FStr arg;
   2552  1.1115    rillig 		if (!ParseModifierPart(&p, ':', ch->endc, ch->expr->emode,
   2553  1.1050    rillig 		    ch, &buf, NULL, NULL))
   2554   1.703    rillig 			return AMR_CLEANUP;
   2555  1.1104    rillig 		arg = LazyBuf_DoneGet(&buf);
   2556  1.1050    rillig 		if (ModChain_ShouldEval(ch)) {
   2557  1.1104    rillig 			const char *arg_p = arg.str;
   2558  1.1104    rillig 			if (!TryParseTime(&arg_p, &t) || *arg_p != '\0') {
   2559  1.1050    rillig 				Parse_Error(PARSE_FATAL,
   2560  1.1104    rillig 				    "Invalid time value \"%s\"", arg.str);
   2561  1.1104    rillig 				FStr_Done(&arg);
   2562  1.1050    rillig 				return AMR_CLEANUP;
   2563  1.1050    rillig 			}
   2564  1.1050    rillig 		} else
   2565  1.1050    rillig 			t = 0;
   2566  1.1104    rillig 		FStr_Done(&arg);
   2567   1.843    rillig 		*pp = p;
   2568   1.703    rillig 	} else {
   2569   1.993    rillig 		t = 0;
   2570   1.994    rillig 		*pp = args;
   2571   1.631    rillig 	}
   2572   1.864    rillig 
   2573   1.950    rillig 	expr = ch->expr;
   2574   1.950    rillig 	if (Expr_ShouldEval(expr))
   2575  1.1059    rillig 		Expr_SetValueOwn(expr, FormatTime(Expr_Str(expr), t, gmt));
   2576   1.864    rillig 
   2577   1.703    rillig 	return AMR_OK;
   2578   1.236    rillig }
   2579   1.236    rillig 
   2580   1.236    rillig /* :hash */
   2581   1.356    rillig static ApplyModifierResult
   2582   1.891    rillig ApplyModifier_Hash(const char **pp, ModChain *ch)
   2583   1.236    rillig {
   2584   1.891    rillig 	if (!ModMatch(*pp, "hash", ch))
   2585   1.703    rillig 		return AMR_UNKNOWN;
   2586   1.864    rillig 	*pp += 4;
   2587   1.340    rillig 
   2588   1.905    rillig 	if (ModChain_ShouldEval(ch))
   2589  1.1059    rillig 		Expr_SetValueOwn(ch->expr, Hash(Expr_Str(ch->expr)));
   2590   1.864    rillig 
   2591   1.703    rillig 	return AMR_OK;
   2592   1.236    rillig }
   2593   1.236    rillig 
   2594   1.236    rillig /* :P */
   2595   1.356    rillig static ApplyModifierResult
   2596   1.891    rillig ApplyModifier_Path(const char **pp, ModChain *ch)
   2597   1.236    rillig {
   2598   1.891    rillig 	Expr *expr = ch->expr;
   2599   1.703    rillig 	GNode *gn;
   2600   1.703    rillig 	char *path;
   2601   1.412    rillig 
   2602   1.864    rillig 	(*pp)++;
   2603   1.864    rillig 
   2604   1.950    rillig 	if (!Expr_ShouldEval(expr))
   2605   1.873    rillig 		return AMR_OK;
   2606   1.873    rillig 
   2607   1.823    rillig 	Expr_Define(expr);
   2608   1.409    rillig 
   2609   1.898    rillig 	gn = Targ_FindNode(expr->name);
   2610  1.1067    rillig 	if (gn == NULL || gn->type & OP_NOPATH)
   2611   1.703    rillig 		path = NULL;
   2612  1.1067    rillig 	else if (gn->path != NULL)
   2613   1.703    rillig 		path = bmake_strdup(gn->path);
   2614  1.1067    rillig 	else {
   2615   1.703    rillig 		SearchPath *searchPath = Suff_FindPath(gn);
   2616   1.898    rillig 		path = Dir_FindFile(expr->name, searchPath);
   2617   1.703    rillig 	}
   2618   1.703    rillig 	if (path == NULL)
   2619   1.898    rillig 		path = bmake_strdup(expr->name);
   2620   1.823    rillig 	Expr_SetValueOwn(expr, path);
   2621   1.409    rillig 
   2622   1.703    rillig 	return AMR_OK;
   2623   1.236    rillig }
   2624   1.236    rillig 
   2625   1.236    rillig /* :!cmd! */
   2626   1.356    rillig static ApplyModifierResult
   2627   1.891    rillig ApplyModifier_ShellCommand(const char **pp, ModChain *ch)
   2628   1.236    rillig {
   2629   1.891    rillig 	Expr *expr = ch->expr;
   2630   1.921    rillig 	LazyBuf cmdBuf;
   2631   1.921    rillig 	FStr cmd;
   2632   1.703    rillig 
   2633   1.703    rillig 	(*pp)++;
   2634  1.1115    rillig 	if (!ParseModifierPart(pp, '!', '!', expr->emode,
   2635  1.1115    rillig 	    ch, &cmdBuf, NULL, NULL))
   2636   1.703    rillig 		return AMR_CLEANUP;
   2637   1.921    rillig 	cmd = LazyBuf_DoneGet(&cmdBuf);
   2638   1.921    rillig 
   2639  1.1000    rillig 	if (Expr_ShouldEval(expr)) {
   2640  1.1000    rillig 		char *output, *error;
   2641  1.1000    rillig 		output = Cmd_Exec(cmd.str, &error);
   2642  1.1000    rillig 		Expr_SetValueOwn(expr, output);
   2643  1.1000    rillig 		if (error != NULL) {
   2644  1.1122    rillig 			Parse_Error(PARSE_WARNING, "%s", error);
   2645  1.1000    rillig 			free(error);
   2646  1.1000    rillig 		}
   2647  1.1000    rillig 	} else
   2648  1.1000    rillig 		Expr_SetValueRefer(expr, "");
   2649   1.703    rillig 
   2650   1.921    rillig 	FStr_Done(&cmd);
   2651   1.864    rillig 	Expr_Define(expr);
   2652   1.274    rillig 
   2653   1.703    rillig 	return AMR_OK;
   2654   1.236    rillig }
   2655   1.236    rillig 
   2656   1.778    rillig /*
   2657   1.778    rillig  * The :range modifier generates an integer sequence as long as the words.
   2658   1.778    rillig  * The :range=7 modifier generates an integer sequence from 1 to 7.
   2659   1.778    rillig  */
   2660   1.356    rillig static ApplyModifierResult
   2661   1.891    rillig ApplyModifier_Range(const char **pp, ModChain *ch)
   2662   1.236    rillig {
   2663   1.703    rillig 	size_t n;
   2664   1.703    rillig 	Buffer buf;
   2665   1.703    rillig 	size_t i;
   2666   1.412    rillig 
   2667   1.703    rillig 	const char *mod = *pp;
   2668   1.891    rillig 	if (!ModMatchEq(mod, "range", ch))
   2669   1.703    rillig 		return AMR_UNKNOWN;
   2670   1.703    rillig 
   2671   1.703    rillig 	if (mod[5] == '=') {
   2672   1.703    rillig 		const char *p = mod + 6;
   2673   1.703    rillig 		if (!TryParseSize(&p, &n)) {
   2674   1.703    rillig 			Parse_Error(PARSE_FATAL,
   2675   1.844    rillig 			    "Invalid number \"%s\" for ':range' modifier",
   2676   1.844    rillig 			    mod + 6);
   2677   1.703    rillig 			return AMR_CLEANUP;
   2678   1.703    rillig 		}
   2679   1.703    rillig 		*pp = p;
   2680   1.703    rillig 	} else {
   2681   1.703    rillig 		n = 0;
   2682   1.703    rillig 		*pp = mod + 5;
   2683   1.635    rillig 	}
   2684   1.386    rillig 
   2685   1.905    rillig 	if (!ModChain_ShouldEval(ch))
   2686   1.873    rillig 		return AMR_OK;
   2687   1.873    rillig 
   2688   1.703    rillig 	if (n == 0) {
   2689   1.967    rillig 		SubstringWords words = Expr_Words(ch->expr);
   2690   1.703    rillig 		n = words.len;
   2691   1.961    rillig 		SubstringWords_Free(words);
   2692   1.703    rillig 	}
   2693   1.386    rillig 
   2694   1.703    rillig 	Buf_Init(&buf);
   2695   1.386    rillig 
   2696   1.703    rillig 	for (i = 0; i < n; i++) {
   2697   1.703    rillig 		if (i != 0) {
   2698   1.988    rillig 			/*
   2699   1.988    rillig 			 * XXX: Use ch->sep instead of ' ', for consistency.
   2700   1.988    rillig 			 */
   2701   1.703    rillig 			Buf_AddByte(&buf, ' ');
   2702   1.703    rillig 		}
   2703   1.703    rillig 		Buf_AddInt(&buf, 1 + (int)i);
   2704   1.703    rillig 	}
   2705   1.386    rillig 
   2706   1.891    rillig 	Expr_SetValueOwn(ch->expr, Buf_DoneData(&buf));
   2707   1.703    rillig 	return AMR_OK;
   2708   1.236    rillig }
   2709   1.236    rillig 
   2710   1.845    rillig /* Parse a ':M' or ':N' modifier. */
   2711  1.1013    rillig static char *
   2712  1.1013    rillig ParseModifier_Match(const char **pp, const ModChain *ch)
   2713   1.236    rillig {
   2714   1.845    rillig 	const char *mod = *pp;
   2715   1.891    rillig 	Expr *expr = ch->expr;
   2716   1.895    rillig 	bool copy = false;	/* pattern should be, or has been, copied */
   2717   1.895    rillig 	bool needSubst = false;
   2718   1.703    rillig 	const char *endpat;
   2719   1.703    rillig 	char *pattern;
   2720   1.412    rillig 
   2721   1.703    rillig 	/*
   2722   1.703    rillig 	 * In the loop below, ignore ':' unless we are at (or back to) the
   2723   1.703    rillig 	 * original brace level.
   2724   1.703    rillig 	 * XXX: This will likely not work right if $() and ${} are intermixed.
   2725   1.703    rillig 	 */
   2726   1.845    rillig 	/*
   2727   1.845    rillig 	 * XXX: This code is similar to the one in Var_Parse.
   2728   1.703    rillig 	 * See if the code can be merged.
   2729   1.845    rillig 	 * See also ApplyModifier_Defined.
   2730   1.845    rillig 	 */
   2731  1.1083    rillig 	int depth = 0;
   2732   1.703    rillig 	const char *p;
   2733  1.1083    rillig 	for (p = mod + 1; *p != '\0' && !(*p == ':' && depth == 0); p++) {
   2734  1.1031    rillig 		if (*p == '\\' && p[1] != '\0' &&
   2735   1.891    rillig 		    (IsDelimiter(p[1], ch) || p[1] == ch->startc)) {
   2736   1.703    rillig 			if (!needSubst)
   2737   1.895    rillig 				copy = true;
   2738   1.703    rillig 			p++;
   2739   1.703    rillig 			continue;
   2740   1.703    rillig 		}
   2741   1.703    rillig 		if (*p == '$')
   2742   1.895    rillig 			needSubst = true;
   2743   1.703    rillig 		if (*p == '(' || *p == '{')
   2744  1.1083    rillig 			depth++;
   2745   1.703    rillig 		if (*p == ')' || *p == '}') {
   2746  1.1083    rillig 			depth--;
   2747  1.1083    rillig 			if (depth < 0)
   2748   1.703    rillig 				break;
   2749   1.703    rillig 		}
   2750   1.236    rillig 	}
   2751   1.703    rillig 	*pp = p;
   2752   1.703    rillig 	endpat = p;
   2753   1.703    rillig 
   2754   1.703    rillig 	if (copy) {
   2755   1.703    rillig 		char *dst;
   2756   1.703    rillig 		const char *src;
   2757   1.703    rillig 
   2758   1.703    rillig 		/* Compress the \:'s out of the pattern. */
   2759   1.703    rillig 		pattern = bmake_malloc((size_t)(endpat - (mod + 1)) + 1);
   2760   1.703    rillig 		dst = pattern;
   2761   1.703    rillig 		src = mod + 1;
   2762   1.703    rillig 		for (; src < endpat; src++, dst++) {
   2763   1.703    rillig 			if (src[0] == '\\' && src + 1 < endpat &&
   2764   1.891    rillig 			    /* XXX: ch->startc is missing here; see above */
   2765   1.891    rillig 			    IsDelimiter(src[1], ch))
   2766   1.703    rillig 				src++;
   2767   1.703    rillig 			*dst = *src;
   2768   1.703    rillig 		}
   2769   1.703    rillig 		*dst = '\0';
   2770   1.703    rillig 	} else {
   2771   1.703    rillig 		pattern = bmake_strsedup(mod + 1, endpat);
   2772   1.236    rillig 	}
   2773   1.288    rillig 
   2774   1.703    rillig 	if (needSubst) {
   2775   1.703    rillig 		char *old_pattern = pattern;
   2776  1.1013    rillig 		/*
   2777  1.1013    rillig 		 * XXX: Contrary to ParseModifierPart, a dollar in a ':M' or
   2778  1.1013    rillig 		 * ':N' modifier must be escaped as '$$', not as '\$'.
   2779  1.1013    rillig 		 */
   2780  1.1043    rillig 		pattern = Var_Subst(pattern, expr->scope, expr->emode);
   2781   1.703    rillig 		/* TODO: handle errors */
   2782   1.703    rillig 		free(old_pattern);
   2783   1.236    rillig 	}
   2784   1.346    rillig 
   2785   1.908    rillig 	DEBUG2(VAR, "Pattern for ':%c' is \"%s\"\n", mod[0], pattern);
   2786   1.346    rillig 
   2787  1.1013    rillig 	return pattern;
   2788   1.845    rillig }
   2789   1.845    rillig 
   2790  1.1057    rillig struct ModifyWord_MatchArgs {
   2791  1.1057    rillig 	const char *pattern;
   2792  1.1057    rillig 	bool neg;
   2793  1.1058    rillig 	bool error_reported;
   2794  1.1057    rillig };
   2795  1.1057    rillig 
   2796  1.1057    rillig static void
   2797  1.1057    rillig ModifyWord_Match(Substring word, SepBuf *buf, void *data)
   2798  1.1057    rillig {
   2799  1.1057    rillig 	struct ModifyWord_MatchArgs *args = data;
   2800  1.1058    rillig 	StrMatchResult res;
   2801  1.1057    rillig 	assert(word.end[0] == '\0');	/* assume null-terminated word */
   2802  1.1058    rillig 	res = Str_Match(word.start, args->pattern);
   2803  1.1058    rillig 	if (res.error != NULL && !args->error_reported) {
   2804  1.1058    rillig 		args->error_reported = true;
   2805  1.1058    rillig 		Parse_Error(PARSE_WARNING,
   2806  1.1058    rillig 		    "%s in pattern '%s' of modifier '%s'",
   2807  1.1058    rillig 		    res.error, args->pattern, args->neg ? ":N" : ":M");
   2808  1.1058    rillig 	}
   2809  1.1058    rillig 	if (res.matched != args->neg)
   2810  1.1057    rillig 		SepBuf_AddSubstring(buf, word);
   2811  1.1057    rillig }
   2812  1.1057    rillig 
   2813   1.845    rillig /* :Mpattern or :Npattern */
   2814   1.845    rillig static ApplyModifierResult
   2815   1.891    rillig ApplyModifier_Match(const char **pp, ModChain *ch)
   2816   1.845    rillig {
   2817   1.996    rillig 	char mod = **pp;
   2818   1.845    rillig 	char *pattern;
   2819   1.845    rillig 
   2820  1.1013    rillig 	pattern = ParseModifier_Match(pp, ch);
   2821   1.845    rillig 
   2822   1.905    rillig 	if (ModChain_ShouldEval(ch)) {
   2823  1.1057    rillig 		struct ModifyWord_MatchArgs args;
   2824  1.1057    rillig 		args.pattern = pattern;
   2825  1.1057    rillig 		args.neg = mod == 'N';
   2826  1.1058    rillig 		args.error_reported = false;
   2827  1.1057    rillig 		ModifyWords(ch, ModifyWord_Match, &args, ch->oneBigWord);
   2828   1.876    rillig 	}
   2829   1.876    rillig 
   2830   1.703    rillig 	free(pattern);
   2831   1.703    rillig 	return AMR_OK;
   2832   1.236    rillig }
   2833   1.236    rillig 
   2834  1.1054       sjg struct ModifyWord_MtimeArgs {
   2835  1.1054       sjg 	bool error;
   2836  1.1060    rillig 	bool use_fallback;
   2837  1.1054       sjg 	ApplyModifierResult rc;
   2838  1.1060    rillig 	time_t fallback;
   2839  1.1054       sjg };
   2840  1.1054       sjg 
   2841  1.1054       sjg static void
   2842  1.1054       sjg ModifyWord_Mtime(Substring word, SepBuf *buf, void *data)
   2843  1.1054       sjg {
   2844  1.1060    rillig 	struct ModifyWord_MtimeArgs *args = data;
   2845  1.1054       sjg 	struct stat st;
   2846  1.1060    rillig 	char tbuf[21];
   2847  1.1054       sjg 
   2848  1.1054       sjg 	if (Substring_IsEmpty(word))
   2849  1.1054       sjg 		return;
   2850  1.1054       sjg 	assert(word.end[0] == '\0');	/* assume null-terminated word */
   2851  1.1054       sjg 	if (stat(word.start, &st) < 0) {
   2852  1.1054       sjg 		if (args->error) {
   2853  1.1054       sjg 			Parse_Error(PARSE_FATAL,
   2854  1.1054       sjg 			    "Cannot determine mtime for '%s': %s",
   2855  1.1054       sjg 			    word.start, strerror(errno));
   2856  1.1054       sjg 			args->rc = AMR_CLEANUP;
   2857  1.1054       sjg 			return;
   2858  1.1054       sjg 		}
   2859  1.1060    rillig 		if (args->use_fallback)
   2860  1.1060    rillig 			st.st_mtime = args->fallback;
   2861  1.1054       sjg 		else
   2862  1.1054       sjg 			time(&st.st_mtime);
   2863  1.1054       sjg 	}
   2864  1.1054       sjg 	snprintf(tbuf, sizeof(tbuf), "%u", (unsigned)st.st_mtime);
   2865  1.1054       sjg 	SepBuf_AddStr(buf, tbuf);
   2866  1.1054       sjg }
   2867  1.1054       sjg 
   2868  1.1051       sjg /* :mtime */
   2869  1.1051       sjg static ApplyModifierResult
   2870  1.1051       sjg ApplyModifier_Mtime(const char **pp, ModChain *ch)
   2871  1.1051       sjg {
   2872  1.1054       sjg 	const char *p, *mod = *pp;
   2873  1.1054       sjg 	struct ModifyWord_MtimeArgs args;
   2874  1.1051       sjg 
   2875  1.1051       sjg 	if (!ModMatchEq(mod, "mtime", ch))
   2876  1.1051       sjg 		return AMR_UNKNOWN;
   2877  1.1051       sjg 	*pp += 5;
   2878  1.1054       sjg 	p = *pp;
   2879  1.1060    rillig 	args.error = false;
   2880  1.1060    rillig 	args.use_fallback = p[0] == '=';
   2881  1.1054       sjg 	args.rc = AMR_OK;
   2882  1.1060    rillig 	if (args.use_fallback) {
   2883  1.1054       sjg 		p++;
   2884  1.1060    rillig 		if (TryParseTime(&p, &args.fallback)) {
   2885  1.1072    rillig 		} else if (strncmp(p, "error", 5) == 0) {
   2886  1.1060    rillig 			p += 5;
   2887  1.1060    rillig 			args.error = true;
   2888  1.1072    rillig 		} else
   2889  1.1072    rillig 			goto invalid_argument;
   2890  1.1072    rillig 		if (!IsDelimiter(*p, ch))
   2891  1.1072    rillig 			goto invalid_argument;
   2892  1.1054       sjg 		*pp = p;
   2893  1.1051       sjg 	}
   2894  1.1097    rillig 	ModifyWords(ch, ModifyWord_Mtime, &args, ch->oneBigWord);
   2895  1.1054       sjg 	return args.rc;
   2896  1.1072    rillig 
   2897  1.1072    rillig invalid_argument:
   2898  1.1072    rillig 	Parse_Error(PARSE_FATAL,
   2899  1.1072    rillig 	    "Invalid argument '%.*s' for modifier ':mtime'",
   2900  1.1072    rillig 	    (int)strcspn(*pp + 1, ":{}()"), *pp + 1);
   2901  1.1072    rillig 	return AMR_CLEANUP;
   2902  1.1051       sjg }
   2903  1.1051       sjg 
   2904   1.860    rillig static void
   2905   1.927    rillig ParsePatternFlags(const char **pp, PatternFlags *pflags, bool *oneBigWord)
   2906   1.860    rillig {
   2907   1.860    rillig 	for (;; (*pp)++) {
   2908   1.860    rillig 		if (**pp == 'g')
   2909   1.895    rillig 			pflags->subGlobal = true;
   2910   1.860    rillig 		else if (**pp == '1')
   2911   1.895    rillig 			pflags->subOnce = true;
   2912   1.860    rillig 		else if (**pp == 'W')
   2913   1.895    rillig 			*oneBigWord = true;
   2914   1.860    rillig 		else
   2915   1.860    rillig 			break;
   2916   1.860    rillig 	}
   2917   1.860    rillig }
   2918   1.860    rillig 
   2919   1.927    rillig MAKE_INLINE PatternFlags
   2920   1.927    rillig PatternFlags_None(void)
   2921   1.897    rillig {
   2922   1.927    rillig 	PatternFlags pflags = { false, false, false, false };
   2923   1.897    rillig 	return pflags;
   2924   1.897    rillig }
   2925   1.897    rillig 
   2926   1.236    rillig /* :S,from,to, */
   2927   1.356    rillig static ApplyModifierResult
   2928   1.891    rillig ApplyModifier_Subst(const char **pp, ModChain *ch)
   2929   1.236    rillig {
   2930   1.703    rillig 	struct ModifyWord_SubstArgs args;
   2931   1.895    rillig 	bool oneBigWord;
   2932   1.921    rillig 	LazyBuf lhsBuf, rhsBuf;
   2933   1.299    rillig 
   2934   1.703    rillig 	char delim = (*pp)[1];
   2935   1.703    rillig 	if (delim == '\0') {
   2936   1.846    rillig 		Error("Missing delimiter for modifier ':S'");
   2937   1.703    rillig 		(*pp)++;
   2938   1.703    rillig 		return AMR_CLEANUP;
   2939   1.703    rillig 	}
   2940   1.236    rillig 
   2941   1.703    rillig 	*pp += 2;
   2942   1.236    rillig 
   2943   1.927    rillig 	args.pflags = PatternFlags_None();
   2944   1.895    rillig 	args.matched = false;
   2945   1.236    rillig 
   2946   1.703    rillig 	if (**pp == '^') {
   2947   1.895    rillig 		args.pflags.anchorStart = true;
   2948   1.703    rillig 		(*pp)++;
   2949   1.703    rillig 	}
   2950   1.703    rillig 
   2951  1.1115    rillig 	if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
   2952  1.1115    rillig 	    ch, &lhsBuf, &args.pflags, NULL))
   2953   1.703    rillig 		return AMR_CLEANUP;
   2954   1.921    rillig 	args.lhs = LazyBuf_Get(&lhsBuf);
   2955   1.703    rillig 
   2956  1.1115    rillig 	if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
   2957  1.1115    rillig 	    ch, &rhsBuf, NULL, &args)) {
   2958   1.921    rillig 		LazyBuf_Done(&lhsBuf);
   2959   1.703    rillig 		return AMR_CLEANUP;
   2960   1.921    rillig 	}
   2961   1.921    rillig 	args.rhs = LazyBuf_Get(&rhsBuf);
   2962   1.703    rillig 
   2963   1.891    rillig 	oneBigWord = ch->oneBigWord;
   2964   1.860    rillig 	ParsePatternFlags(pp, &args.pflags, &oneBigWord);
   2965   1.236    rillig 
   2966   1.891    rillig 	ModifyWords(ch, ModifyWord_Subst, &args, oneBigWord);
   2967   1.236    rillig 
   2968   1.921    rillig 	LazyBuf_Done(&lhsBuf);
   2969   1.921    rillig 	LazyBuf_Done(&rhsBuf);
   2970   1.703    rillig 	return AMR_OK;
   2971   1.236    rillig }
   2972   1.236    rillig 
   2973   1.236    rillig /* :C,from,to, */
   2974   1.356    rillig static ApplyModifierResult
   2975   1.891    rillig ApplyModifier_Regex(const char **pp, ModChain *ch)
   2976   1.236    rillig {
   2977   1.703    rillig 	struct ModifyWord_SubstRegexArgs args;
   2978   1.895    rillig 	bool oneBigWord;
   2979   1.703    rillig 	int error;
   2980   1.921    rillig 	LazyBuf reBuf, replaceBuf;
   2981   1.984    rillig 	FStr re;
   2982   1.703    rillig 
   2983   1.703    rillig 	char delim = (*pp)[1];
   2984   1.703    rillig 	if (delim == '\0') {
   2985   1.703    rillig 		Error("Missing delimiter for :C modifier");
   2986   1.703    rillig 		(*pp)++;
   2987   1.703    rillig 		return AMR_CLEANUP;
   2988   1.703    rillig 	}
   2989   1.703    rillig 
   2990   1.703    rillig 	*pp += 2;
   2991   1.236    rillig 
   2992  1.1115    rillig 	if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
   2993  1.1115    rillig 	    ch, &reBuf, NULL, NULL))
   2994   1.703    rillig 		return AMR_CLEANUP;
   2995   1.921    rillig 	re = LazyBuf_DoneGet(&reBuf);
   2996   1.703    rillig 
   2997  1.1115    rillig 	if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
   2998  1.1115    rillig 	    ch, &replaceBuf, NULL, NULL)) {
   2999   1.921    rillig 		FStr_Done(&re);
   3000   1.703    rillig 		return AMR_CLEANUP;
   3001   1.703    rillig 	}
   3002   1.984    rillig 	args.replace = LazyBuf_Get(&replaceBuf);
   3003   1.703    rillig 
   3004   1.927    rillig 	args.pflags = PatternFlags_None();
   3005   1.895    rillig 	args.matched = false;
   3006   1.891    rillig 	oneBigWord = ch->oneBigWord;
   3007   1.860    rillig 	ParsePatternFlags(pp, &args.pflags, &oneBigWord);
   3008   1.236    rillig 
   3009  1.1034    rillig 	if (!ModChain_ShouldEval(ch))
   3010  1.1034    rillig 		goto done;
   3011   1.856    rillig 
   3012   1.921    rillig 	error = regcomp(&args.re, re.str, REG_EXTENDED);
   3013   1.703    rillig 	if (error != 0) {
   3014  1.1059    rillig 		RegexError(error, &args.re, "Regex compilation error");
   3015   1.984    rillig 		LazyBuf_Done(&replaceBuf);
   3016   1.921    rillig 		FStr_Done(&re);
   3017   1.703    rillig 		return AMR_CLEANUP;
   3018   1.236    rillig 	}
   3019   1.236    rillig 
   3020   1.703    rillig 	args.nsub = args.re.re_nsub + 1;
   3021   1.703    rillig 	if (args.nsub > 10)
   3022   1.703    rillig 		args.nsub = 10;
   3023   1.820    rillig 
   3024   1.891    rillig 	ModifyWords(ch, ModifyWord_SubstRegex, &args, oneBigWord);
   3025   1.820    rillig 
   3026   1.703    rillig 	regfree(&args.re);
   3027  1.1034    rillig done:
   3028   1.984    rillig 	LazyBuf_Done(&replaceBuf);
   3029   1.921    rillig 	FStr_Done(&re);
   3030   1.703    rillig 	return AMR_OK;
   3031   1.703    rillig }
   3032   1.236    rillig 
   3033   1.555    rillig /* :Q, :q */
   3034   1.555    rillig static ApplyModifierResult
   3035   1.891    rillig ApplyModifier_Quote(const char **pp, ModChain *ch)
   3036   1.555    rillig {
   3037   1.924    rillig 	LazyBuf buf;
   3038   1.924    rillig 	bool quoteDollar;
   3039   1.924    rillig 
   3040   1.924    rillig 	quoteDollar = **pp == 'q';
   3041   1.891    rillig 	if (!IsDelimiter((*pp)[1], ch))
   3042   1.703    rillig 		return AMR_UNKNOWN;
   3043   1.861    rillig 	(*pp)++;
   3044   1.861    rillig 
   3045   1.924    rillig 	if (!ModChain_ShouldEval(ch))
   3046   1.924    rillig 		return AMR_OK;
   3047   1.924    rillig 
   3048  1.1059    rillig 	QuoteShell(Expr_Str(ch->expr), quoteDollar, &buf);
   3049   1.924    rillig 	if (buf.data != NULL)
   3050   1.924    rillig 		Expr_SetValue(ch->expr, LazyBuf_DoneGet(&buf));
   3051   1.924    rillig 	else
   3052   1.924    rillig 		LazyBuf_Done(&buf);
   3053   1.861    rillig 
   3054   1.861    rillig 	return AMR_OK;
   3055   1.555    rillig }
   3056   1.555    rillig 
   3057   1.779    rillig /*ARGSUSED*/
   3058   1.278    rillig static void
   3059   1.919    rillig ModifyWord_Copy(Substring word, SepBuf *buf, void *data MAKE_ATTR_UNUSED)
   3060   1.278    rillig {
   3061   1.919    rillig 	SepBuf_AddSubstring(buf, word);
   3062   1.275    rillig }
   3063   1.275    rillig 
   3064   1.289    rillig /* :ts<separator> */
   3065   1.356    rillig static ApplyModifierResult
   3066   1.891    rillig ApplyModifier_ToSep(const char **pp, ModChain *ch)
   3067   1.289    rillig {
   3068   1.703    rillig 	const char *sep = *pp + 2;
   3069   1.703    rillig 
   3070   1.873    rillig 	/*
   3071  1.1079    rillig 	 * Even in parse-only mode, apply the side effects, since the side
   3072  1.1079    rillig 	 * effects are neither observable nor is there a performance penalty.
   3073  1.1119    rillig 	 * Checking for VARE_EVAL for every single piece of code in here
   3074   1.873    rillig 	 * would make the code in this function too hard to read.
   3075   1.873    rillig 	 */
   3076   1.873    rillig 
   3077   1.703    rillig 	/* ":ts<any><endc>" or ":ts<any>:" */
   3078   1.891    rillig 	if (sep[0] != ch->endc && IsDelimiter(sep[1], ch)) {
   3079   1.864    rillig 		*pp = sep + 1;
   3080   1.891    rillig 		ch->sep = sep[0];
   3081   1.703    rillig 		goto ok;
   3082   1.703    rillig 	}
   3083   1.468    rillig 
   3084   1.703    rillig 	/* ":ts<endc>" or ":ts:" */
   3085   1.891    rillig 	if (IsDelimiter(sep[0], ch)) {
   3086   1.864    rillig 		*pp = sep;
   3087   1.891    rillig 		ch->sep = '\0';	/* no separator */
   3088   1.703    rillig 		goto ok;
   3089   1.703    rillig 	}
   3090   1.468    rillig 
   3091  1.1066    rillig 	/* ":ts<unrecognized><unrecognized>". */
   3092   1.703    rillig 	if (sep[0] != '\\') {
   3093   1.703    rillig 		(*pp)++;	/* just for backwards compatibility */
   3094   1.703    rillig 		return AMR_BAD;
   3095   1.703    rillig 	}
   3096   1.468    rillig 
   3097   1.703    rillig 	/* ":ts\n" */
   3098   1.703    rillig 	if (sep[1] == 'n') {
   3099   1.864    rillig 		*pp = sep + 2;
   3100   1.891    rillig 		ch->sep = '\n';
   3101   1.703    rillig 		goto ok;
   3102   1.703    rillig 	}
   3103   1.468    rillig 
   3104   1.703    rillig 	/* ":ts\t" */
   3105   1.703    rillig 	if (sep[1] == 't') {
   3106   1.864    rillig 		*pp = sep + 2;
   3107   1.891    rillig 		ch->sep = '\t';
   3108   1.703    rillig 		goto ok;
   3109   1.703    rillig 	}
   3110   1.468    rillig 
   3111   1.703    rillig 	/* ":ts\x40" or ":ts\100" */
   3112   1.703    rillig 	{
   3113   1.703    rillig 		const char *p = sep + 1;
   3114   1.703    rillig 		int base = 8;	/* assume octal */
   3115   1.468    rillig 
   3116   1.703    rillig 		if (sep[1] == 'x') {
   3117   1.703    rillig 			base = 16;
   3118   1.703    rillig 			p++;
   3119   1.703    rillig 		} else if (!ch_isdigit(sep[1])) {
   3120   1.703    rillig 			(*pp)++;	/* just for backwards compatibility */
   3121  1.1066    rillig 			return AMR_BAD;	/* ":ts<backslash><unrecognized>". */
   3122   1.703    rillig 		}
   3123   1.289    rillig 
   3124   1.891    rillig 		if (!TryParseChar(&p, base, &ch->sep)) {
   3125   1.703    rillig 			Parse_Error(PARSE_FATAL,
   3126   1.970    rillig 			    "Invalid character number at \"%s\"", p);
   3127   1.703    rillig 			return AMR_CLEANUP;
   3128   1.703    rillig 		}
   3129   1.891    rillig 		if (!IsDelimiter(*p, ch)) {
   3130   1.703    rillig 			(*pp)++;	/* just for backwards compatibility */
   3131   1.703    rillig 			return AMR_BAD;
   3132   1.703    rillig 		}
   3133   1.468    rillig 
   3134   1.703    rillig 		*pp = p;
   3135   1.556    rillig 	}
   3136   1.635    rillig 
   3137   1.468    rillig ok:
   3138   1.891    rillig 	ModifyWords(ch, ModifyWord_Copy, NULL, ch->oneBigWord);
   3139   1.703    rillig 	return AMR_OK;
   3140   1.289    rillig }
   3141   1.289    rillig 
   3142   1.738    rillig static char *
   3143   1.738    rillig str_toupper(const char *str)
   3144   1.738    rillig {
   3145  1.1106    rillig 	size_t i, n = strlen(str) + 1;
   3146  1.1106    rillig 	char *res = bmake_malloc(n);
   3147  1.1106    rillig 	for (i = 0; i < n; i++)
   3148   1.738    rillig 		res[i] = ch_toupper(str[i]);
   3149   1.738    rillig 	return res;
   3150   1.738    rillig }
   3151   1.738    rillig 
   3152   1.738    rillig static char *
   3153   1.738    rillig str_tolower(const char *str)
   3154   1.738    rillig {
   3155  1.1106    rillig 	size_t i, n = strlen(str) + 1;
   3156  1.1106    rillig 	char *res = bmake_malloc(n);
   3157  1.1106    rillig 	for (i = 0; i < n; i++)
   3158   1.738    rillig 		res[i] = ch_tolower(str[i]);
   3159   1.738    rillig 	return res;
   3160   1.738    rillig }
   3161   1.738    rillig 
   3162   1.289    rillig /* :tA, :tu, :tl, :ts<separator>, etc. */
   3163   1.356    rillig static ApplyModifierResult
   3164   1.891    rillig ApplyModifier_To(const char **pp, ModChain *ch)
   3165   1.236    rillig {
   3166   1.891    rillig 	Expr *expr = ch->expr;
   3167   1.703    rillig 	const char *mod = *pp;
   3168   1.703    rillig 	assert(mod[0] == 't');
   3169   1.363    rillig 
   3170  1.1032    rillig 	if (IsDelimiter(mod[1], ch)) {
   3171   1.703    rillig 		*pp = mod + 1;
   3172   1.703    rillig 		return AMR_BAD;	/* Found ":t<endc>" or ":t:". */
   3173   1.703    rillig 	}
   3174   1.289    rillig 
   3175   1.703    rillig 	if (mod[1] == 's')
   3176   1.891    rillig 		return ApplyModifier_ToSep(pp, ch);
   3177   1.289    rillig 
   3178  1.1032    rillig 	if (!IsDelimiter(mod[2], ch)) {			/* :t<any><any> */
   3179   1.703    rillig 		*pp = mod + 1;
   3180   1.810    rillig 		return AMR_BAD;
   3181   1.703    rillig 	}
   3182   1.236    rillig 
   3183   1.810    rillig 	if (mod[1] == 'A') {				/* :tA */
   3184   1.864    rillig 		*pp = mod + 2;
   3185   1.891    rillig 		ModifyWords(ch, ModifyWord_Realpath, NULL, ch->oneBigWord);
   3186   1.703    rillig 		return AMR_OK;
   3187   1.703    rillig 	}
   3188   1.475    rillig 
   3189   1.810    rillig 	if (mod[1] == 'u') {				/* :tu */
   3190   1.864    rillig 		*pp = mod + 2;
   3191   1.950    rillig 		if (Expr_ShouldEval(expr))
   3192   1.965    rillig 			Expr_SetValueOwn(expr, str_toupper(Expr_Str(expr)));
   3193   1.703    rillig 		return AMR_OK;
   3194   1.703    rillig 	}
   3195   1.475    rillig 
   3196   1.810    rillig 	if (mod[1] == 'l') {				/* :tl */
   3197   1.864    rillig 		*pp = mod + 2;
   3198   1.950    rillig 		if (Expr_ShouldEval(expr))
   3199   1.965    rillig 			Expr_SetValueOwn(expr, str_tolower(Expr_Str(expr)));
   3200   1.703    rillig 		return AMR_OK;
   3201   1.703    rillig 	}
   3202   1.475    rillig 
   3203   1.810    rillig 	if (mod[1] == 'W' || mod[1] == 'w') {		/* :tW, :tw */
   3204   1.864    rillig 		*pp = mod + 2;
   3205   1.891    rillig 		ch->oneBigWord = mod[1] == 'W';
   3206   1.703    rillig 		return AMR_OK;
   3207   1.703    rillig 	}
   3208   1.475    rillig 
   3209  1.1066    rillig 	/* Found ":t<unrecognized>:" or ":t<unrecognized><endc>". */
   3210   1.864    rillig 	*pp = mod + 1;		/* XXX: unnecessary but observable */
   3211   1.703    rillig 	return AMR_BAD;
   3212   1.236    rillig }
   3213   1.236    rillig 
   3214   1.634    rillig /* :[#], :[1], :[-1..1], etc. */
   3215   1.356    rillig static ApplyModifierResult
   3216   1.891    rillig ApplyModifier_Words(const char **pp, ModChain *ch)
   3217   1.236    rillig {
   3218   1.891    rillig 	Expr *expr = ch->expr;
   3219   1.703    rillig 	int first, last;
   3220   1.703    rillig 	const char *p;
   3221  1.1079    rillig 	LazyBuf argBuf;
   3222  1.1079    rillig 	FStr arg;
   3223   1.412    rillig 
   3224   1.703    rillig 	(*pp)++;		/* skip the '[' */
   3225  1.1115    rillig 	if (!ParseModifierPart(pp, ']', ']', expr->emode,
   3226  1.1115    rillig 	    ch, &argBuf, NULL, NULL))
   3227   1.703    rillig 		return AMR_CLEANUP;
   3228  1.1079    rillig 	arg = LazyBuf_DoneGet(&argBuf);
   3229  1.1079    rillig 	p = arg.str;
   3230   1.703    rillig 
   3231   1.891    rillig 	if (!IsDelimiter(**pp, ch))
   3232   1.810    rillig 		goto bad_modifier;		/* Found junk after ']' */
   3233   1.703    rillig 
   3234   1.905    rillig 	if (!ModChain_ShouldEval(ch))
   3235   1.877    rillig 		goto ok;
   3236   1.877    rillig 
   3237  1.1069    rillig 	if (p[0] == '\0')
   3238  1.1069    rillig 		goto bad_modifier;		/* Found ":[]". */
   3239   1.703    rillig 
   3240  1.1069    rillig 	if (strcmp(p, "#") == 0) {		/* Found ":[#]" */
   3241  1.1069    rillig 		if (ch->oneBigWord)
   3242   1.823    rillig 			Expr_SetValueRefer(expr, "1");
   3243  1.1069    rillig 		else {
   3244   1.703    rillig 			Buffer buf;
   3245   1.412    rillig 
   3246   1.967    rillig 			SubstringWords words = Expr_Words(expr);
   3247   1.703    rillig 			size_t ac = words.len;
   3248   1.961    rillig 			SubstringWords_Free(words);
   3249   1.703    rillig 
   3250  1.1087    rillig 			Buf_Init(&buf);
   3251   1.703    rillig 			Buf_AddInt(&buf, (int)ac);
   3252   1.823    rillig 			Expr_SetValueOwn(expr, Buf_DoneData(&buf));
   3253   1.703    rillig 		}
   3254   1.703    rillig 		goto ok;
   3255   1.703    rillig 	}
   3256   1.494    rillig 
   3257  1.1069    rillig 	if (strcmp(p, "*") == 0) {		/* ":[*]" */
   3258   1.895    rillig 		ch->oneBigWord = true;
   3259   1.703    rillig 		goto ok;
   3260   1.236    rillig 	}
   3261   1.288    rillig 
   3262  1.1069    rillig 	if (strcmp(p, "@") == 0) {		/* ":[@]" */
   3263   1.895    rillig 		ch->oneBigWord = false;
   3264   1.703    rillig 		goto ok;
   3265   1.703    rillig 	}
   3266   1.288    rillig 
   3267  1.1069    rillig 	/* Expect ":[N]" or ":[start..end]" */
   3268   1.703    rillig 	if (!TryParseIntBase0(&p, &first))
   3269  1.1069    rillig 		goto bad_modifier;
   3270   1.703    rillig 
   3271  1.1069    rillig 	if (p[0] == '\0')			/* ":[N]" */
   3272   1.703    rillig 		last = first;
   3273  1.1069    rillig 	else if (strncmp(p, "..", 2) == 0) {
   3274   1.703    rillig 		p += 2;
   3275   1.703    rillig 		if (!TryParseIntBase0(&p, &last) || *p != '\0')
   3276  1.1069    rillig 			goto bad_modifier;
   3277   1.703    rillig 	} else
   3278  1.1069    rillig 		goto bad_modifier;
   3279   1.288    rillig 
   3280  1.1069    rillig 	if (first == 0 && last == 0) {		/* ":[0]" or ":[0..0]" */
   3281   1.895    rillig 		ch->oneBigWord = true;
   3282   1.703    rillig 		goto ok;
   3283   1.703    rillig 	}
   3284   1.288    rillig 
   3285  1.1069    rillig 	if (first == 0 || last == 0)		/* ":[0..N]" or ":[N..0]" */
   3286   1.703    rillig 		goto bad_modifier;
   3287   1.703    rillig 
   3288   1.823    rillig 	Expr_SetValueOwn(expr,
   3289   1.965    rillig 	    VarSelectWords(Expr_Str(expr), first, last,
   3290  1.1019    rillig 		ch->sep, ch->oneBigWord));
   3291   1.288    rillig 
   3292   1.288    rillig ok:
   3293  1.1079    rillig 	FStr_Done(&arg);
   3294   1.703    rillig 	return AMR_OK;
   3295   1.288    rillig 
   3296   1.288    rillig bad_modifier:
   3297  1.1079    rillig 	FStr_Done(&arg);
   3298   1.703    rillig 	return AMR_BAD;
   3299   1.236    rillig }
   3300   1.236    rillig 
   3301  1.1016    rillig #if __STDC_VERSION__ >= 199901L
   3302   1.939       sjg # define NUM_TYPE long long
   3303  1.1009    rillig # define PARSE_NUM_TYPE strtoll
   3304  1.1009    rillig #else
   3305  1.1009    rillig # define NUM_TYPE long
   3306  1.1009    rillig # define PARSE_NUM_TYPE strtol
   3307   1.939       sjg #endif
   3308   1.939       sjg 
   3309   1.939       sjg static NUM_TYPE
   3310   1.964    rillig num_val(Substring s)
   3311   1.939       sjg {
   3312   1.939       sjg 	NUM_TYPE val;
   3313   1.939       sjg 	char *ep;
   3314   1.939       sjg 
   3315  1.1009    rillig 	val = PARSE_NUM_TYPE(s.start, &ep, 0);
   3316   1.964    rillig 	if (ep != s.start) {
   3317   1.939       sjg 		switch (*ep) {
   3318   1.939       sjg 		case 'K':
   3319   1.939       sjg 		case 'k':
   3320   1.939       sjg 			val <<= 10;
   3321   1.939       sjg 			break;
   3322   1.939       sjg 		case 'M':
   3323   1.939       sjg 		case 'm':
   3324   1.939       sjg 			val <<= 20;
   3325   1.939       sjg 			break;
   3326   1.939       sjg 		case 'G':
   3327   1.939       sjg 		case 'g':
   3328   1.939       sjg 			val <<= 30;
   3329   1.939       sjg 			break;
   3330   1.939       sjg 		}
   3331   1.939       sjg 	}
   3332   1.939       sjg 	return val;
   3333   1.939       sjg }
   3334   1.939       sjg 
   3335   1.939       sjg static int
   3336   1.964    rillig SubNumAsc(const void *sa, const void *sb)
   3337   1.939       sjg {
   3338   1.939       sjg 	NUM_TYPE a, b;
   3339   1.939       sjg 
   3340   1.964    rillig 	a = num_val(*((const Substring *)sa));
   3341   1.964    rillig 	b = num_val(*((const Substring *)sb));
   3342  1.1067    rillig 	return a > b ? 1 : b > a ? -1 : 0;
   3343   1.939       sjg }
   3344   1.940    rillig 
   3345   1.939       sjg static int
   3346   1.964    rillig SubNumDesc(const void *sa, const void *sb)
   3347   1.939       sjg {
   3348   1.964    rillig 	return SubNumAsc(sb, sa);
   3349   1.939       sjg }
   3350   1.940    rillig 
   3351   1.404    rillig static int
   3352  1.1068    rillig Substring_Cmp(Substring a, Substring b)
   3353  1.1068    rillig {
   3354  1.1068    rillig 	for (; a.start < a.end && b.start < b.end; a.start++, b.start++)
   3355  1.1068    rillig 		if (a.start[0] != b.start[0])
   3356  1.1068    rillig 			return (unsigned char)a.start[0]
   3357  1.1068    rillig 			    - (unsigned char)b.start[0];
   3358  1.1068    rillig 	return (int)((a.end - a.start) - (b.end - b.start));
   3359  1.1068    rillig }
   3360  1.1068    rillig 
   3361  1.1068    rillig static int
   3362   1.964    rillig SubStrAsc(const void *sa, const void *sb)
   3363   1.404    rillig {
   3364  1.1068    rillig 	return Substring_Cmp(*(const Substring *)sa, *(const Substring *)sb);
   3365   1.404    rillig }
   3366   1.404    rillig 
   3367   1.404    rillig static int
   3368   1.964    rillig SubStrDesc(const void *sa, const void *sb)
   3369   1.404    rillig {
   3370   1.964    rillig 	return SubStrAsc(sb, sa);
   3371   1.404    rillig }
   3372   1.404    rillig 
   3373   1.705    rillig static void
   3374   1.962    rillig ShuffleSubstrings(Substring *strs, size_t n)
   3375   1.705    rillig {
   3376   1.705    rillig 	size_t i;
   3377   1.705    rillig 
   3378   1.705    rillig 	for (i = n - 1; i > 0; i--) {
   3379   1.705    rillig 		size_t rndidx = (size_t)random() % (i + 1);
   3380   1.962    rillig 		Substring t = strs[i];
   3381   1.705    rillig 		strs[i] = strs[rndidx];
   3382   1.705    rillig 		strs[rndidx] = t;
   3383   1.705    rillig 	}
   3384   1.705    rillig }
   3385   1.705    rillig 
   3386   1.943    rillig /*
   3387   1.943    rillig  * :O		order ascending
   3388   1.943    rillig  * :Or		order descending
   3389   1.943    rillig  * :Ox		shuffle
   3390   1.943    rillig  * :On		numeric ascending
   3391   1.943    rillig  * :Onr, :Orn	numeric descending
   3392   1.939       sjg  */
   3393   1.356    rillig static ApplyModifierResult
   3394   1.891    rillig ApplyModifier_Order(const char **pp, ModChain *ch)
   3395   1.236    rillig {
   3396   1.942    rillig 	const char *mod = *pp;
   3397   1.962    rillig 	SubstringWords words;
   3398   1.946    rillig 	int (*cmp)(const void *, const void *);
   3399   1.401    rillig 
   3400  1.1032    rillig 	if (IsDelimiter(mod[1], ch)) {
   3401   1.964    rillig 		cmp = SubStrAsc;
   3402   1.939       sjg 		(*pp)++;
   3403  1.1032    rillig 	} else if (IsDelimiter(mod[2], ch)) {
   3404   1.942    rillig 		if (mod[1] == 'n')
   3405   1.964    rillig 			cmp = SubNumAsc;
   3406   1.942    rillig 		else if (mod[1] == 'r')
   3407   1.964    rillig 			cmp = SubStrDesc;
   3408   1.942    rillig 		else if (mod[1] == 'x')
   3409   1.944    rillig 			cmp = NULL;
   3410   1.942    rillig 		else
   3411   1.942    rillig 			goto bad;
   3412   1.942    rillig 		*pp += 2;
   3413  1.1032    rillig 	} else if (IsDelimiter(mod[3], ch)) {
   3414   1.942    rillig 		if ((mod[1] == 'n' && mod[2] == 'r') ||
   3415   1.944    rillig 		    (mod[1] == 'r' && mod[2] == 'n'))
   3416   1.964    rillig 			cmp = SubNumDesc;
   3417   1.944    rillig 		else
   3418   1.942    rillig 			goto bad;
   3419   1.942    rillig 		*pp += 3;
   3420   1.996    rillig 	} else
   3421   1.942    rillig 		goto bad;
   3422   1.402    rillig 
   3423   1.905    rillig 	if (!ModChain_ShouldEval(ch))
   3424   1.879    rillig 		return AMR_OK;
   3425   1.879    rillig 
   3426   1.967    rillig 	words = Expr_Words(ch->expr);
   3427   1.944    rillig 	if (cmp == NULL)
   3428   1.962    rillig 		ShuffleSubstrings(words.words, words.len);
   3429   1.964    rillig 	else {
   3430   1.964    rillig 		assert(words.words[0].end[0] == '\0');
   3431   1.944    rillig 		qsort(words.words, words.len, sizeof(words.words[0]), cmp);
   3432   1.964    rillig 	}
   3433   1.962    rillig 	Expr_SetValueOwn(ch->expr, SubstringWords_JoinFree(words));
   3434   1.878    rillig 
   3435   1.705    rillig 	return AMR_OK;
   3436   1.942    rillig 
   3437   1.942    rillig bad:
   3438   1.942    rillig 	(*pp)++;
   3439   1.942    rillig 	return AMR_BAD;
   3440   1.236    rillig }
   3441   1.236    rillig 
   3442   1.236    rillig /* :? then : else */
   3443   1.356    rillig static ApplyModifierResult
   3444   1.891    rillig ApplyModifier_IfElse(const char **pp, ModChain *ch)
   3445   1.236    rillig {
   3446   1.891    rillig 	Expr *expr = ch->expr;
   3447   1.985    rillig 	LazyBuf thenBuf;
   3448   1.985    rillig 	LazyBuf elseBuf;
   3449   1.412    rillig 
   3450  1.1119    rillig 	VarEvalMode then_emode = VARE_PARSE;
   3451  1.1119    rillig 	VarEvalMode else_emode = VARE_PARSE;
   3452   1.236    rillig 
   3453   1.991    rillig 	CondResult cond_rc = CR_TRUE;	/* just not CR_ERROR */
   3454   1.905    rillig 	if (Expr_ShouldEval(expr)) {
   3455  1.1124    rillig 		evalStack.elems[evalStack.len - 1].kind = VSK_COND;
   3456   1.990    rillig 		cond_rc = Cond_EvalCondition(expr->name);
   3457   1.990    rillig 		if (cond_rc == CR_TRUE)
   3458   1.906    rillig 			then_emode = expr->emode;
   3459   1.990    rillig 		if (cond_rc == CR_FALSE)
   3460   1.906    rillig 			else_emode = expr->emode;
   3461   1.703    rillig 	}
   3462   1.703    rillig 
   3463  1.1124    rillig 	evalStack.elems[evalStack.len - 1].kind = VSK_COND_THEN;
   3464   1.988    rillig 	(*pp)++;		/* skip past the '?' */
   3465  1.1115    rillig 	if (!ParseModifierPart(pp, ':', ':', then_emode,
   3466  1.1115    rillig 	    ch, &thenBuf, NULL, NULL))
   3467   1.703    rillig 		return AMR_CLEANUP;
   3468   1.703    rillig 
   3469  1.1124    rillig 	evalStack.elems[evalStack.len - 1].kind = VSK_COND_ELSE;
   3470  1.1115    rillig 	if (!ParseModifierPart(pp, ch->endc, ch->endc, else_emode,
   3471  1.1115    rillig 	    ch, &elseBuf, NULL, NULL)) {
   3472   1.985    rillig 		LazyBuf_Done(&thenBuf);
   3473   1.703    rillig 		return AMR_CLEANUP;
   3474   1.921    rillig 	}
   3475   1.703    rillig 
   3476   1.891    rillig 	(*pp)--;		/* Go back to the ch->endc. */
   3477   1.809    rillig 
   3478   1.990    rillig 	if (cond_rc == CR_ERROR) {
   3479  1.1124    rillig 		evalStack.elems[evalStack.len - 1].kind = VSK_COND;
   3480  1.1124    rillig 		Parse_Error(PARSE_FATAL, "Bad condition");
   3481   1.985    rillig 		LazyBuf_Done(&thenBuf);
   3482   1.985    rillig 		LazyBuf_Done(&elseBuf);
   3483   1.703    rillig 		return AMR_CLEANUP;
   3484   1.703    rillig 	}
   3485   1.703    rillig 
   3486   1.950    rillig 	if (!Expr_ShouldEval(expr)) {
   3487   1.985    rillig 		LazyBuf_Done(&thenBuf);
   3488   1.985    rillig 		LazyBuf_Done(&elseBuf);
   3489   1.990    rillig 	} else if (cond_rc == CR_TRUE) {
   3490   1.985    rillig 		Expr_SetValue(expr, LazyBuf_DoneGet(&thenBuf));
   3491   1.985    rillig 		LazyBuf_Done(&elseBuf);
   3492   1.703    rillig 	} else {
   3493   1.985    rillig 		LazyBuf_Done(&thenBuf);
   3494   1.985    rillig 		Expr_SetValue(expr, LazyBuf_DoneGet(&elseBuf));
   3495   1.703    rillig 	}
   3496   1.823    rillig 	Expr_Define(expr);
   3497   1.703    rillig 	return AMR_OK;
   3498   1.236    rillig }
   3499   1.236    rillig 
   3500   1.283    rillig /*
   3501   1.808    rillig  * The ::= modifiers are special in that they do not read the variable value
   3502   1.808    rillig  * but instead assign to that variable.  They always expand to an empty
   3503   1.808    rillig  * string.
   3504   1.808    rillig  *
   3505   1.808    rillig  * Their main purpose is in supporting .for loops that generate shell commands
   3506   1.808    rillig  * since an ordinary variable assignment at that point would terminate the
   3507   1.808    rillig  * dependency group for these targets.  For example:
   3508   1.283    rillig  *
   3509   1.808    rillig  * list-targets: .USE
   3510   1.283    rillig  * .for i in ${.TARGET} ${.TARGET:R}.gz
   3511   1.808    rillig  *	@${t::=$i}
   3512   1.808    rillig  *	@echo 'The target is ${t:T}.'
   3513   1.283    rillig  * .endfor
   3514   1.283    rillig  *
   3515   1.283    rillig  *	  ::=<str>	Assigns <str> as the new value of variable.
   3516   1.283    rillig  *	  ::?=<str>	Assigns <str> as value of variable if
   3517   1.283    rillig  *			it was not already set.
   3518   1.283    rillig  *	  ::+=<str>	Appends <str> to variable.
   3519   1.283    rillig  *	  ::!=<cmd>	Assigns output of <cmd> as the new value of
   3520   1.283    rillig  *			variable.
   3521   1.283    rillig  */
   3522   1.356    rillig static ApplyModifierResult
   3523   1.891    rillig ApplyModifier_Assign(const char **pp, ModChain *ch)
   3524   1.236    rillig {
   3525   1.891    rillig 	Expr *expr = ch->expr;
   3526   1.802    rillig 	GNode *scope;
   3527   1.921    rillig 	FStr val;
   3528   1.921    rillig 	LazyBuf buf;
   3529   1.272    rillig 
   3530   1.703    rillig 	const char *mod = *pp;
   3531   1.703    rillig 	const char *op = mod + 1;
   3532   1.272    rillig 
   3533   1.703    rillig 	if (op[0] == '=')
   3534   1.992    rillig 		goto found_op;
   3535   1.992    rillig 	if ((op[0] == '+' || op[0] == '?' || op[0] == '!') && op[1] == '=')
   3536   1.992    rillig 		goto found_op;
   3537  1.1066    rillig 	return AMR_UNKNOWN;	/* "::<unrecognized>" */
   3538   1.862    rillig 
   3539   1.992    rillig found_op:
   3540   1.898    rillig 	if (expr->name[0] == '\0') {
   3541   1.703    rillig 		*pp = mod + 1;
   3542   1.703    rillig 		return AMR_BAD;
   3543   1.703    rillig 	}
   3544   1.272    rillig 
   3545  1.1089    rillig 	*pp = mod + (op[0] != '=' ? 3 : 2);
   3546   1.703    rillig 
   3547  1.1115    rillig 	if (!ParseModifierPart(pp, ch->endc, ch->endc, expr->emode,
   3548  1.1115    rillig 	    ch, &buf, NULL, NULL))
   3549   1.703    rillig 		return AMR_CLEANUP;
   3550   1.921    rillig 	val = LazyBuf_DoneGet(&buf);
   3551   1.703    rillig 
   3552   1.891    rillig 	(*pp)--;		/* Go back to the ch->endc. */
   3553   1.703    rillig 
   3554   1.905    rillig 	if (!Expr_ShouldEval(expr))
   3555   1.882    rillig 		goto done;
   3556   1.882    rillig 
   3557   1.881    rillig 	scope = expr->scope;	/* scope where v belongs */
   3558  1.1089    rillig 	if (expr->defined == DEF_REGULAR && expr->scope != SCOPE_GLOBAL
   3559  1.1089    rillig 	    && VarFind(expr->name, expr->scope, false) == NULL)
   3560  1.1089    rillig 		scope = SCOPE_GLOBAL;
   3561   1.881    rillig 
   3562   1.999    rillig 	if (op[0] == '+')
   3563   1.921    rillig 		Var_Append(scope, expr->name, val.str);
   3564   1.999    rillig 	else if (op[0] == '!') {
   3565  1.1000    rillig 		char *output, *error;
   3566  1.1000    rillig 		output = Cmd_Exec(val.str, &error);
   3567  1.1000    rillig 		if (error != NULL) {
   3568  1.1123    rillig 			Parse_Error(PARSE_WARNING, "%s", error);
   3569  1.1000    rillig 			free(error);
   3570  1.1000    rillig 		} else
   3571  1.1000    rillig 			Var_Set(scope, expr->name, output);
   3572  1.1000    rillig 		free(output);
   3573   1.999    rillig 	} else if (op[0] == '?' && expr->defined == DEF_REGULAR) {
   3574   1.999    rillig 		/* Do nothing. */
   3575   1.999    rillig 	} else
   3576   1.921    rillig 		Var_Set(scope, expr->name, val.str);
   3577   1.999    rillig 
   3578   1.882    rillig 	Expr_SetValueRefer(expr, "");
   3579   1.882    rillig 
   3580   1.882    rillig done:
   3581   1.921    rillig 	FStr_Done(&val);
   3582   1.703    rillig 	return AMR_OK;
   3583   1.236    rillig }
   3584   1.236    rillig 
   3585   1.778    rillig /*
   3586   1.778    rillig  * :_=...
   3587   1.778    rillig  * remember current value
   3588   1.778    rillig  */
   3589   1.356    rillig static ApplyModifierResult
   3590   1.891    rillig ApplyModifier_Remember(const char **pp, ModChain *ch)
   3591   1.236    rillig {
   3592   1.891    rillig 	Expr *expr = ch->expr;
   3593   1.703    rillig 	const char *mod = *pp;
   3594   1.868    rillig 	FStr name;
   3595   1.866    rillig 
   3596   1.891    rillig 	if (!ModMatchEq(mod, "_", ch))
   3597   1.703    rillig 		return AMR_UNKNOWN;
   3598   1.703    rillig 
   3599   1.868    rillig 	name = FStr_InitRefer("_");
   3600   1.703    rillig 	if (mod[1] == '=') {
   3601   1.847    rillig 		/*
   3602   1.847    rillig 		 * XXX: This ad-hoc call to strcspn deviates from the usual
   3603   1.847    rillig 		 * behavior defined in ParseModifierPart.  This creates an
   3604  1.1066    rillig 		 * unnecessary and undocumented inconsistency in make.
   3605   1.847    rillig 		 */
   3606   1.869    rillig 		const char *arg = mod + 2;
   3607   1.869    rillig 		size_t argLen = strcspn(arg, ":)}");
   3608   1.869    rillig 		*pp = arg + argLen;
   3609   1.869    rillig 		name = FStr_InitOwn(bmake_strldup(arg, argLen));
   3610   1.868    rillig 	} else
   3611   1.868    rillig 		*pp = mod + 1;
   3612   1.864    rillig 
   3613   1.905    rillig 	if (Expr_ShouldEval(expr))
   3614  1.1040       sjg 		Var_Set(SCOPE_GLOBAL, name.str, Expr_Str(expr));
   3615   1.868    rillig 	FStr_Done(&name);
   3616   1.864    rillig 
   3617   1.703    rillig 	return AMR_OK;
   3618   1.236    rillig }
   3619   1.236    rillig 
   3620   1.778    rillig /*
   3621   1.778    rillig  * Apply the given function to each word of the variable value,
   3622   1.778    rillig  * for a single-letter modifier such as :H, :T.
   3623   1.778    rillig  */
   3624   1.434    rillig static ApplyModifierResult
   3625   1.891    rillig ApplyModifier_WordFunc(const char **pp, ModChain *ch,
   3626   1.822    rillig 		       ModifyWordProc modifyWord)
   3627   1.434    rillig {
   3628   1.891    rillig 	if (!IsDelimiter((*pp)[1], ch))
   3629   1.703    rillig 		return AMR_UNKNOWN;
   3630   1.864    rillig 	(*pp)++;
   3631   1.703    rillig 
   3632  1.1097    rillig 	ModifyWords(ch, modifyWord, NULL, ch->oneBigWord);
   3633   1.864    rillig 
   3634   1.703    rillig 	return AMR_OK;
   3635   1.434    rillig }
   3636   1.434    rillig 
   3637   1.931    rillig /* Remove adjacent duplicate words. */
   3638   1.567    rillig static ApplyModifierResult
   3639   1.891    rillig ApplyModifier_Unique(const char **pp, ModChain *ch)
   3640   1.567    rillig {
   3641   1.962    rillig 	SubstringWords words;
   3642   1.931    rillig 
   3643   1.891    rillig 	if (!IsDelimiter((*pp)[1], ch))
   3644   1.703    rillig 		return AMR_UNKNOWN;
   3645   1.862    rillig 	(*pp)++;
   3646   1.862    rillig 
   3647   1.931    rillig 	if (!ModChain_ShouldEval(ch))
   3648   1.931    rillig 		return AMR_OK;
   3649   1.931    rillig 
   3650   1.967    rillig 	words = Expr_Words(ch->expr);
   3651   1.931    rillig 
   3652   1.931    rillig 	if (words.len > 1) {
   3653  1.1067    rillig 		size_t di, si;
   3654   1.932    rillig 
   3655   1.932    rillig 		di = 0;
   3656   1.932    rillig 		for (si = 1; si < words.len; si++) {
   3657   1.962    rillig 			if (!Substring_Eq(words.words[si], words.words[di])) {
   3658   1.932    rillig 				di++;
   3659   1.932    rillig 				if (di != si)
   3660   1.932    rillig 					words.words[di] = words.words[si];
   3661   1.932    rillig 			}
   3662   1.932    rillig 		}
   3663   1.932    rillig 		words.len = di + 1;
   3664   1.931    rillig 	}
   3665   1.931    rillig 
   3666   1.962    rillig 	Expr_SetValueOwn(ch->expr, SubstringWords_JoinFree(words));
   3667   1.862    rillig 
   3668   1.862    rillig 	return AMR_OK;
   3669   1.567    rillig }
   3670   1.567    rillig 
   3671  1.1071    rillig /* Test whether the modifier has the form '<lhs>=<rhs>'. */
   3672  1.1071    rillig static bool
   3673  1.1071    rillig IsSysVModifier(const char *p, char startc, char endc)
   3674  1.1071    rillig {
   3675  1.1071    rillig 	bool eqFound = false;
   3676  1.1071    rillig 
   3677  1.1071    rillig 	int depth = 1;
   3678  1.1071    rillig 	while (*p != '\0' && depth > 0) {
   3679  1.1071    rillig 		if (*p == '=')	/* XXX: should also test depth == 1 */
   3680  1.1071    rillig 			eqFound = true;
   3681  1.1071    rillig 		else if (*p == endc)
   3682  1.1071    rillig 			depth--;
   3683  1.1071    rillig 		else if (*p == startc)
   3684  1.1071    rillig 			depth++;
   3685  1.1071    rillig 		if (depth > 0)
   3686  1.1071    rillig 			p++;
   3687  1.1071    rillig 	}
   3688  1.1071    rillig 	return *p == endc && eqFound;
   3689  1.1071    rillig }
   3690  1.1071    rillig 
   3691   1.236    rillig /* :from=to */
   3692   1.356    rillig static ApplyModifierResult
   3693   1.891    rillig ApplyModifier_SysV(const char **pp, ModChain *ch)
   3694   1.236    rillig {
   3695   1.891    rillig 	Expr *expr = ch->expr;
   3696   1.925    rillig 	LazyBuf lhsBuf, rhsBuf;
   3697   1.925    rillig 	FStr rhs;
   3698   1.926    rillig 	struct ModifyWord_SysVSubstArgs args;
   3699   1.925    rillig 	Substring lhs;
   3700   1.925    rillig 	const char *lhsSuffix;
   3701   1.412    rillig 
   3702   1.703    rillig 	const char *mod = *pp;
   3703   1.245    rillig 
   3704  1.1071    rillig 	if (!IsSysVModifier(mod, ch->startc, ch->endc))
   3705   1.703    rillig 		return AMR_UNKNOWN;
   3706   1.236    rillig 
   3707  1.1115    rillig 	if (!ParseModifierPart(pp, '=', '=', expr->emode,
   3708  1.1115    rillig 	    ch, &lhsBuf, NULL, NULL))
   3709   1.703    rillig 		return AMR_CLEANUP;
   3710   1.703    rillig 
   3711  1.1115    rillig 	if (!ParseModifierPart(pp, ch->endc, ch->endc, expr->emode,
   3712  1.1115    rillig 	    ch, &rhsBuf, NULL, NULL)) {
   3713   1.925    rillig 		LazyBuf_Done(&lhsBuf);
   3714   1.703    rillig 		return AMR_CLEANUP;
   3715   1.921    rillig 	}
   3716   1.925    rillig 	rhs = LazyBuf_DoneGet(&rhsBuf);
   3717   1.703    rillig 
   3718   1.891    rillig 	(*pp)--;		/* Go back to the ch->endc. */
   3719   1.809    rillig 
   3720   1.925    rillig 	/* Do not turn an empty expression into non-empty. */
   3721   1.965    rillig 	if (lhsBuf.len == 0 && Expr_Str(expr)[0] == '\0')
   3722   1.925    rillig 		goto done;
   3723   1.925    rillig 
   3724   1.925    rillig 	lhs = LazyBuf_Get(&lhsBuf);
   3725   1.925    rillig 	lhsSuffix = Substring_SkipFirst(lhs, '%');
   3726   1.925    rillig 
   3727   1.925    rillig 	args.scope = expr->scope;
   3728   1.925    rillig 	args.lhsPrefix = Substring_Init(lhs.start,
   3729   1.925    rillig 	    lhsSuffix != lhs.start ? lhsSuffix - 1 : lhs.start);
   3730   1.925    rillig 	args.lhsPercent = lhsSuffix != lhs.start;
   3731   1.925    rillig 	args.lhsSuffix = Substring_Init(lhsSuffix, lhs.end);
   3732   1.925    rillig 	args.rhs = rhs.str;
   3733   1.925    rillig 
   3734   1.926    rillig 	ModifyWords(ch, ModifyWord_SysVSubst, &args, ch->oneBigWord);
   3735   1.897    rillig 
   3736   1.925    rillig done:
   3737   1.925    rillig 	LazyBuf_Done(&lhsBuf);
   3738  1.1048    rillig 	FStr_Done(&rhs);
   3739   1.703    rillig 	return AMR_OK;
   3740   1.236    rillig }
   3741   1.236    rillig 
   3742   1.548    rillig /* :sh */
   3743   1.548    rillig static ApplyModifierResult
   3744   1.891    rillig ApplyModifier_SunShell(const char **pp, ModChain *ch)
   3745   1.548    rillig {
   3746   1.891    rillig 	Expr *expr = ch->expr;
   3747   1.703    rillig 	const char *p = *pp;
   3748   1.891    rillig 	if (!(p[1] == 'h' && IsDelimiter(p[2], ch)))
   3749   1.703    rillig 		return AMR_UNKNOWN;
   3750   1.864    rillig 	*pp = p + 2;
   3751   1.863    rillig 
   3752   1.905    rillig 	if (Expr_ShouldEval(expr)) {
   3753  1.1000    rillig 		char *output, *error;
   3754  1.1000    rillig 		output = Cmd_Exec(Expr_Str(expr), &error);
   3755  1.1000    rillig 		if (error != NULL) {
   3756  1.1122    rillig 			Parse_Error(PARSE_WARNING, "%s", error);
   3757  1.1000    rillig 			free(error);
   3758  1.1000    rillig 		}
   3759   1.863    rillig 		Expr_SetValueOwn(expr, output);
   3760   1.863    rillig 	}
   3761   1.864    rillig 
   3762   1.863    rillig 	return AMR_OK;
   3763   1.548    rillig }
   3764   1.548    rillig 
   3765  1.1041    rillig /*
   3766  1.1041    rillig  * In cases where the evaluation mode and the definedness are the "standard"
   3767  1.1041    rillig  * ones, don't log them, to keep the logs readable.
   3768  1.1041    rillig  */
   3769  1.1041    rillig static bool
   3770  1.1041    rillig ShouldLogInSimpleFormat(const Expr *expr)
   3771  1.1041    rillig {
   3772  1.1119    rillig 	return (expr->emode == VARE_EVAL || expr->emode == VARE_EVAL_DEFINED)
   3773  1.1119    rillig 	    && expr->defined == DEF_REGULAR;
   3774  1.1041    rillig }
   3775  1.1041    rillig 
   3776   1.549    rillig static void
   3777   1.891    rillig LogBeforeApply(const ModChain *ch, const char *mod)
   3778   1.549    rillig {
   3779   1.891    rillig 	const Expr *expr = ch->expr;
   3780   1.895    rillig 	bool is_single_char = mod[0] != '\0' && IsDelimiter(mod[1], ch);
   3781   1.703    rillig 
   3782   1.909    rillig 	/*
   3783   1.909    rillig 	 * At this point, only the first character of the modifier can
   3784   1.909    rillig 	 * be used since the end of the modifier is not yet known.
   3785   1.909    rillig 	 */
   3786   1.909    rillig 
   3787   1.909    rillig 	if (!Expr_ShouldEval(expr)) {
   3788   1.909    rillig 		debug_printf("Parsing modifier ${%s:%c%s}\n",
   3789   1.909    rillig 		    expr->name, mod[0], is_single_char ? "" : "...");
   3790   1.909    rillig 		return;
   3791   1.909    rillig 	}
   3792   1.909    rillig 
   3793  1.1041    rillig 	if (ShouldLogInSimpleFormat(expr)) {
   3794   1.910    rillig 		debug_printf(
   3795   1.910    rillig 		    "Evaluating modifier ${%s:%c%s} on value \"%s\"\n",
   3796   1.910    rillig 		    expr->name, mod[0], is_single_char ? "" : "...",
   3797   1.965    rillig 		    Expr_Str(expr));
   3798   1.910    rillig 		return;
   3799   1.910    rillig 	}
   3800   1.910    rillig 
   3801   1.909    rillig 	debug_printf(
   3802   1.909    rillig 	    "Evaluating modifier ${%s:%c%s} on value \"%s\" (%s, %s)\n",
   3803   1.965    rillig 	    expr->name, mod[0], is_single_char ? "" : "...", Expr_Str(expr),
   3804   1.910    rillig 	    VarEvalMode_Name[expr->emode], ExprDefined_Name[expr->defined]);
   3805   1.549    rillig }
   3806   1.549    rillig 
   3807   1.549    rillig static void
   3808   1.891    rillig LogAfterApply(const ModChain *ch, const char *p, const char *mod)
   3809   1.549    rillig {
   3810   1.891    rillig 	const Expr *expr = ch->expr;
   3811   1.965    rillig 	const char *value = Expr_Str(expr);
   3812   1.823    rillig 	const char *quot = value == var_Error ? "" : "\"";
   3813   1.703    rillig 
   3814  1.1041    rillig 	if (ShouldLogInSimpleFormat(expr)) {
   3815   1.912    rillig 		debug_printf("Result of ${%s:%.*s} is %s%s%s\n",
   3816   1.912    rillig 		    expr->name, (int)(p - mod), mod,
   3817   1.912    rillig 		    quot, value == var_Error ? "error" : value, quot);
   3818   1.912    rillig 		return;
   3819   1.912    rillig 	}
   3820   1.912    rillig 
   3821   1.899    rillig 	debug_printf("Result of ${%s:%.*s} is %s%s%s (%s, %s)\n",
   3822   1.898    rillig 	    expr->name, (int)(p - mod), mod,
   3823   1.823    rillig 	    quot, value == var_Error ? "error" : value, quot,
   3824   1.906    rillig 	    VarEvalMode_Name[expr->emode],
   3825   1.825    rillig 	    ExprDefined_Name[expr->defined]);
   3826   1.549    rillig }
   3827   1.549    rillig 
   3828   1.551    rillig static ApplyModifierResult
   3829   1.891    rillig ApplyModifier(const char **pp, ModChain *ch)
   3830   1.551    rillig {
   3831   1.703    rillig 	switch (**pp) {
   3832   1.857    rillig 	case '!':
   3833   1.891    rillig 		return ApplyModifier_ShellCommand(pp, ch);
   3834   1.703    rillig 	case ':':
   3835   1.891    rillig 		return ApplyModifier_Assign(pp, ch);
   3836   1.857    rillig 	case '?':
   3837   1.891    rillig 		return ApplyModifier_IfElse(pp, ch);
   3838   1.703    rillig 	case '@':
   3839   1.891    rillig 		return ApplyModifier_Loop(pp, ch);
   3840   1.857    rillig 	case '[':
   3841   1.891    rillig 		return ApplyModifier_Words(pp, ch);
   3842   1.703    rillig 	case '_':
   3843   1.891    rillig 		return ApplyModifier_Remember(pp, ch);
   3844   1.857    rillig 	case 'C':
   3845   1.891    rillig 		return ApplyModifier_Regex(pp, ch);
   3846   1.703    rillig 	case 'D':
   3847   1.968    rillig 	case 'U':
   3848   1.891    rillig 		return ApplyModifier_Defined(pp, ch);
   3849   1.857    rillig 	case 'E':
   3850   1.891    rillig 		return ApplyModifier_WordFunc(pp, ch, ModifyWord_Suffix);
   3851   1.703    rillig 	case 'g':
   3852   1.995    rillig 	case 'l':
   3853   1.995    rillig 		return ApplyModifier_Time(pp, ch);
   3854   1.857    rillig 	case 'H':
   3855   1.891    rillig 		return ApplyModifier_WordFunc(pp, ch, ModifyWord_Head);
   3856   1.703    rillig 	case 'h':
   3857   1.891    rillig 		return ApplyModifier_Hash(pp, ch);
   3858   1.857    rillig 	case 'L':
   3859   1.891    rillig 		return ApplyModifier_Literal(pp, ch);
   3860   1.857    rillig 	case 'M':
   3861   1.703    rillig 	case 'N':
   3862   1.891    rillig 		return ApplyModifier_Match(pp, ch);
   3863  1.1051       sjg 	case 'm':
   3864  1.1051       sjg 		return ApplyModifier_Mtime(pp, ch);
   3865   1.857    rillig 	case 'O':
   3866   1.891    rillig 		return ApplyModifier_Order(pp, ch);
   3867   1.857    rillig 	case 'P':
   3868   1.891    rillig 		return ApplyModifier_Path(pp, ch);
   3869   1.857    rillig 	case 'Q':
   3870   1.703    rillig 	case 'q':
   3871   1.891    rillig 		return ApplyModifier_Quote(pp, ch);
   3872   1.703    rillig 	case 'R':
   3873   1.891    rillig 		return ApplyModifier_WordFunc(pp, ch, ModifyWord_Root);
   3874   1.703    rillig 	case 'r':
   3875   1.891    rillig 		return ApplyModifier_Range(pp, ch);
   3876   1.857    rillig 	case 'S':
   3877   1.891    rillig 		return ApplyModifier_Subst(pp, ch);
   3878   1.703    rillig 	case 's':
   3879   1.891    rillig 		return ApplyModifier_SunShell(pp, ch);
   3880   1.857    rillig 	case 'T':
   3881   1.891    rillig 		return ApplyModifier_WordFunc(pp, ch, ModifyWord_Tail);
   3882   1.857    rillig 	case 't':
   3883   1.891    rillig 		return ApplyModifier_To(pp, ch);
   3884   1.857    rillig 	case 'u':
   3885   1.891    rillig 		return ApplyModifier_Unique(pp, ch);
   3886   1.703    rillig 	default:
   3887   1.703    rillig 		return AMR_UNKNOWN;
   3888   1.703    rillig 	}
   3889   1.551    rillig }
   3890   1.551    rillig 
   3891   1.823    rillig static void ApplyModifiers(Expr *, const char **, char, char);
   3892   1.641    rillig 
   3893   1.641    rillig typedef enum ApplyModifiersIndirectResult {
   3894   1.752    rillig 	/* The indirect modifiers have been applied successfully. */
   3895   1.703    rillig 	AMIR_CONTINUE,
   3896   1.752    rillig 	/* Fall back to the SysV modifier. */
   3897   1.849    rillig 	AMIR_SYSV,
   3898   1.752    rillig 	/* Error out. */
   3899   1.703    rillig 	AMIR_OUT
   3900   1.641    rillig } ApplyModifiersIndirectResult;
   3901   1.641    rillig 
   3902   1.752    rillig /*
   3903  1.1075    rillig  * While expanding an expression, expand and apply indirect modifiers,
   3904   1.752    rillig  * such as in ${VAR:${M_indirect}}.
   3905   1.752    rillig  *
   3906  1.1075    rillig  * All indirect modifiers of a group must come from a single
   3907   1.752    rillig  * expression.  ${VAR:${M1}} is valid but ${VAR:${M1}${M2}} is not.
   3908   1.752    rillig  *
   3909   1.752    rillig  * Multiple groups of indirect modifiers can be chained by separating them
   3910   1.752    rillig  * with colons.  ${VAR:${M1}:${M2}} contains 2 indirect modifiers.
   3911   1.752    rillig  *
   3912  1.1075    rillig  * If the expression is not followed by ch->endc or ':', fall
   3913   1.752    rillig  * back to trying the SysV modifier, such as in ${VAR:${FROM}=${TO}}.
   3914   1.752    rillig  */
   3915   1.641    rillig static ApplyModifiersIndirectResult
   3916   1.891    rillig ApplyModifiersIndirect(ModChain *ch, const char **pp)
   3917   1.703    rillig {
   3918   1.891    rillig 	Expr *expr = ch->expr;
   3919   1.721    rillig 	const char *p = *pp;
   3920  1.1042    rillig 	FStr mods = Var_Parse(&p, expr->scope, expr->emode);
   3921   1.703    rillig 	/* TODO: handle errors */
   3922   1.641    rillig 
   3923  1.1032    rillig 	if (mods.str[0] != '\0' && !IsDelimiter(*p, ch)) {
   3924   1.743    rillig 		FStr_Done(&mods);
   3925   1.849    rillig 		return AMIR_SYSV;
   3926   1.703    rillig 	}
   3927   1.703    rillig 
   3928   1.708    rillig 	DEBUG3(VAR, "Indirect modifier \"%s\" from \"%.*s\"\n",
   3929   1.743    rillig 	    mods.str, (int)(p - *pp), *pp);
   3930   1.703    rillig 
   3931  1.1098    rillig 	if (ModChain_ShouldEval(ch) && mods.str[0] != '\0') {
   3932   1.743    rillig 		const char *modsp = mods.str;
   3933   1.823    rillig 		ApplyModifiers(expr, &modsp, '\0', '\0');
   3934   1.965    rillig 		if (Expr_Str(expr) == var_Error || *modsp != '\0') {
   3935   1.743    rillig 			FStr_Done(&mods);
   3936   1.721    rillig 			*pp = p;
   3937   1.703    rillig 			return AMIR_OUT;	/* error already reported */
   3938   1.703    rillig 		}
   3939   1.703    rillig 	}
   3940   1.743    rillig 	FStr_Done(&mods);
   3941   1.641    rillig 
   3942   1.703    rillig 	if (*p == ':')
   3943   1.703    rillig 		p++;
   3944   1.891    rillig 	else if (*p == '\0' && ch->endc != '\0') {
   3945  1.1074    rillig 		Error("Unclosed expression after indirect modifier, "
   3946  1.1074    rillig 		      "expecting '%c' for variable \"%s\"",
   3947   1.898    rillig 		    ch->endc, expr->name);
   3948   1.721    rillig 		*pp = p;
   3949   1.703    rillig 		return AMIR_OUT;
   3950   1.641    rillig 	}
   3951   1.641    rillig 
   3952   1.721    rillig 	*pp = p;
   3953   1.703    rillig 	return AMIR_CONTINUE;
   3954   1.641    rillig }
   3955   1.641    rillig 
   3956   1.750    rillig static ApplyModifierResult
   3957   1.891    rillig ApplySingleModifier(const char **pp, ModChain *ch)
   3958   1.750    rillig {
   3959   1.750    rillig 	ApplyModifierResult res;
   3960   1.850    rillig 	const char *mod = *pp;
   3961   1.750    rillig 	const char *p = *pp;
   3962   1.750    rillig 
   3963   1.750    rillig 	if (DEBUG(VAR))
   3964   1.891    rillig 		LogBeforeApply(ch, mod);
   3965   1.750    rillig 
   3966   1.891    rillig 	res = ApplyModifier(&p, ch);
   3967   1.750    rillig 
   3968   1.750    rillig 	if (res == AMR_UNKNOWN) {
   3969   1.750    rillig 		assert(p == mod);
   3970   1.891    rillig 		res = ApplyModifier_SysV(&p, ch);
   3971   1.750    rillig 	}
   3972   1.750    rillig 
   3973   1.750    rillig 	if (res == AMR_UNKNOWN) {
   3974   1.750    rillig 		/*
   3975   1.750    rillig 		 * Guess the end of the current modifier.
   3976   1.750    rillig 		 * XXX: Skipping the rest of the modifier hides
   3977   1.750    rillig 		 * errors and leads to wrong results.
   3978   1.750    rillig 		 * Parsing should rather stop here.
   3979   1.750    rillig 		 */
   3980  1.1032    rillig 		for (p++; !IsDelimiter(*p, ch); p++)
   3981   1.750    rillig 			continue;
   3982   1.851    rillig 		Parse_Error(PARSE_FATAL, "Unknown modifier \"%.*s\"",
   3983   1.851    rillig 		    (int)(p - mod), mod);
   3984   1.891    rillig 		Expr_SetValueRefer(ch->expr, var_Error);
   3985   1.750    rillig 	}
   3986   1.750    rillig 	if (res == AMR_CLEANUP || res == AMR_BAD) {
   3987   1.750    rillig 		*pp = p;
   3988   1.750    rillig 		return res;
   3989   1.750    rillig 	}
   3990   1.750    rillig 
   3991   1.750    rillig 	if (DEBUG(VAR))
   3992   1.891    rillig 		LogAfterApply(ch, p, mod);
   3993   1.750    rillig 
   3994   1.891    rillig 	if (*p == '\0' && ch->endc != '\0') {
   3995   1.750    rillig 		Error(
   3996  1.1074    rillig 		    "Unclosed expression, expecting '%c' for "
   3997   1.852    rillig 		    "modifier \"%.*s\" of variable \"%s\" with value \"%s\"",
   3998   1.891    rillig 		    ch->endc,
   3999   1.852    rillig 		    (int)(p - mod), mod,
   4000   1.965    rillig 		    ch->expr->name, Expr_Str(ch->expr));
   4001   1.750    rillig 	} else if (*p == ':') {
   4002   1.750    rillig 		p++;
   4003   1.891    rillig 	} else if (opts.strict && *p != '\0' && *p != ch->endc) {
   4004   1.750    rillig 		Parse_Error(PARSE_FATAL,
   4005   1.750    rillig 		    "Missing delimiter ':' after modifier \"%.*s\"",
   4006   1.750    rillig 		    (int)(p - mod), mod);
   4007   1.750    rillig 		/*
   4008   1.750    rillig 		 * TODO: propagate parse error to the enclosing
   4009   1.750    rillig 		 * expression
   4010   1.750    rillig 		 */
   4011   1.750    rillig 	}
   4012   1.750    rillig 	*pp = p;
   4013   1.750    rillig 	return AMR_OK;
   4014   1.750    rillig }
   4015   1.750    rillig 
   4016   1.897    rillig #if __STDC_VERSION__ >= 199901L
   4017  1.1079    rillig #define ModChain_Init(expr, startc, endc, sep, oneBigWord) \
   4018   1.897    rillig 	(ModChain) { expr, startc, endc, sep, oneBigWord }
   4019   1.897    rillig #else
   4020   1.897    rillig MAKE_INLINE ModChain
   4021  1.1079    rillig ModChain_Init(Expr *expr, char startc, char endc, char sep, bool oneBigWord)
   4022   1.897    rillig {
   4023   1.897    rillig 	ModChain ch;
   4024   1.897    rillig 	ch.expr = expr;
   4025   1.897    rillig 	ch.startc = startc;
   4026   1.897    rillig 	ch.endc = endc;
   4027   1.897    rillig 	ch.sep = sep;
   4028   1.897    rillig 	ch.oneBigWord = oneBigWord;
   4029   1.897    rillig 	return ch;
   4030   1.897    rillig }
   4031   1.897    rillig #endif
   4032   1.897    rillig 
   4033   1.419    rillig /* Apply any modifiers (such as :Mpattern or :@var@loop@ or :Q or ::=value). */
   4034   1.823    rillig static void
   4035   1.357    rillig ApplyModifiers(
   4036   1.823    rillig     Expr *expr,
   4037   1.821    rillig     const char **pp,	/* the parsing position, updated upon return */
   4038   1.821    rillig     char startc,	/* '(' or '{'; or '\0' for indirect modifiers */
   4039   1.823    rillig     char endc		/* ')' or '}'; or '\0' for indirect modifiers */
   4040   1.703    rillig )
   4041   1.703    rillig {
   4042  1.1079    rillig 	ModChain ch = ModChain_Init(expr, startc, endc, ' ', false);
   4043   1.703    rillig 	const char *p;
   4044   1.703    rillig 	const char *mod;
   4045   1.703    rillig 
   4046   1.703    rillig 	assert(startc == '(' || startc == '{' || startc == '\0');
   4047   1.703    rillig 	assert(endc == ')' || endc == '}' || endc == '\0');
   4048   1.965    rillig 	assert(Expr_Str(expr) != NULL);
   4049   1.703    rillig 
   4050   1.703    rillig 	p = *pp;
   4051   1.703    rillig 
   4052   1.703    rillig 	if (*p == '\0' && endc != '\0') {
   4053   1.703    rillig 		Error(
   4054  1.1074    rillig 		    "Unclosed expression, expecting '%c' for \"%s\"",
   4055   1.898    rillig 		    ch.endc, expr->name);
   4056   1.703    rillig 		goto cleanup;
   4057   1.703    rillig 	}
   4058   1.703    rillig 
   4059   1.703    rillig 	while (*p != '\0' && *p != endc) {
   4060   1.750    rillig 		ApplyModifierResult res;
   4061   1.703    rillig 
   4062   1.703    rillig 		if (*p == '$') {
   4063  1.1079    rillig 			/*
   4064  1.1079    rillig 			 * TODO: Only evaluate the expression once, no matter
   4065  1.1079    rillig 			 * whether it's an indirect modifier or the initial
   4066  1.1079    rillig 			 * part of a SysV modifier.
   4067  1.1079    rillig 			 */
   4068   1.849    rillig 			ApplyModifiersIndirectResult amir =
   4069   1.891    rillig 			    ApplyModifiersIndirect(&ch, &p);
   4070   1.703    rillig 			if (amir == AMIR_CONTINUE)
   4071   1.703    rillig 				continue;
   4072   1.703    rillig 			if (amir == AMIR_OUT)
   4073   1.752    rillig 				break;
   4074   1.703    rillig 		}
   4075   1.752    rillig 
   4076   1.703    rillig 		mod = p;
   4077   1.649    rillig 
   4078   1.891    rillig 		res = ApplySingleModifier(&p, &ch);
   4079   1.703    rillig 		if (res == AMR_CLEANUP)
   4080   1.703    rillig 			goto cleanup;
   4081   1.703    rillig 		if (res == AMR_BAD)
   4082   1.703    rillig 			goto bad_modifier;
   4083   1.356    rillig 	}
   4084   1.752    rillig 
   4085   1.703    rillig 	*pp = p;
   4086   1.988    rillig 	assert(Expr_Str(expr) != NULL);	/* Use var_Error or varUndefined. */
   4087   1.823    rillig 	return;
   4088    1.25  christos 
   4089   1.240    rillig bad_modifier:
   4090  1.1079    rillig 	/* Take a guess at where the modifier ends. */
   4091   1.853    rillig 	Error("Bad modifier \":%.*s\" for variable \"%s\"",
   4092   1.898    rillig 	    (int)strcspn(mod, ":)}"), mod, expr->name);
   4093    1.25  christos 
   4094   1.240    rillig cleanup:
   4095   1.858    rillig 	/*
   4096   1.858    rillig 	 * TODO: Use p + strlen(p) instead, to stop parsing immediately.
   4097   1.858    rillig 	 *
   4098  1.1015    rillig 	 * In the unit tests, this generates a few shell commands with
   4099  1.1015    rillig 	 * unbalanced quotes.  Instead of producing these incomplete strings,
   4100  1.1015    rillig 	 * commands with evaluation errors should not be run at all.
   4101   1.858    rillig 	 *
   4102   1.858    rillig 	 * To make that happen, Var_Subst must report the actual errors
   4103  1.1044    rillig 	 * instead of returning the resulting string unconditionally.
   4104   1.858    rillig 	 */
   4105   1.703    rillig 	*pp = p;
   4106   1.823    rillig 	Expr_SetValueRefer(expr, var_Error);
   4107   1.108       sjg }
   4108    1.25  christos 
   4109   1.778    rillig /*
   4110  1.1015    rillig  * Only 4 of the 7 built-in local variables are treated specially as they are
   4111  1.1015    rillig  * the only ones that will be set when dynamic sources are expanded.
   4112   1.778    rillig  */
   4113   1.895    rillig static bool
   4114   1.916    rillig VarnameIsDynamic(Substring varname)
   4115   1.335    rillig {
   4116   1.916    rillig 	const char *name;
   4117   1.916    rillig 	size_t len;
   4118   1.916    rillig 
   4119   1.916    rillig 	name = varname.start;
   4120   1.916    rillig 	len = Substring_Length(varname);
   4121   1.703    rillig 	if (len == 1 || (len == 2 && (name[1] == 'F' || name[1] == 'D'))) {
   4122   1.703    rillig 		switch (name[0]) {
   4123   1.703    rillig 		case '@':
   4124   1.703    rillig 		case '%':
   4125   1.703    rillig 		case '*':
   4126   1.703    rillig 		case '!':
   4127   1.895    rillig 			return true;
   4128   1.703    rillig 		}
   4129   1.895    rillig 		return false;
   4130   1.335    rillig 	}
   4131   1.335    rillig 
   4132   1.703    rillig 	if ((len == 7 || len == 8) && name[0] == '.' && ch_isupper(name[1])) {
   4133   1.916    rillig 		return Substring_Equals(varname, ".TARGET") ||
   4134   1.916    rillig 		       Substring_Equals(varname, ".ARCHIVE") ||
   4135   1.916    rillig 		       Substring_Equals(varname, ".PREFIX") ||
   4136   1.916    rillig 		       Substring_Equals(varname, ".MEMBER");
   4137   1.703    rillig 	}
   4138   1.335    rillig 
   4139   1.895    rillig 	return false;
   4140   1.335    rillig }
   4141   1.335    rillig 
   4142   1.502    rillig static const char *
   4143   1.802    rillig UndefinedShortVarValue(char varname, const GNode *scope)
   4144   1.502    rillig {
   4145   1.802    rillig 	if (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL) {
   4146   1.703    rillig 		/*
   4147   1.802    rillig 		 * If substituting a local variable in a non-local scope,
   4148   1.703    rillig 		 * assume it's for dynamic source stuff. We have to handle
   4149   1.703    rillig 		 * this specially and return the longhand for the variable
   4150   1.703    rillig 		 * with the dollar sign escaped so it makes it back to the
   4151   1.703    rillig 		 * caller. Only four of the local variables are treated
   4152   1.703    rillig 		 * specially as they are the only four that will be set
   4153   1.703    rillig 		 * when dynamic sources are expanded.
   4154   1.703    rillig 		 */
   4155   1.703    rillig 		switch (varname) {
   4156   1.703    rillig 		case '@':
   4157   1.703    rillig 			return "$(.TARGET)";
   4158   1.703    rillig 		case '%':
   4159   1.703    rillig 			return "$(.MEMBER)";
   4160   1.703    rillig 		case '*':
   4161   1.703    rillig 			return "$(.PREFIX)";
   4162   1.703    rillig 		case '!':
   4163   1.703    rillig 			return "$(.ARCHIVE)";
   4164   1.703    rillig 		}
   4165   1.502    rillig 	}
   4166   1.769    rillig 	return NULL;
   4167   1.502    rillig }
   4168   1.502    rillig 
   4169   1.778    rillig /*
   4170   1.778    rillig  * Parse a variable name, until the end character or a colon, whichever
   4171   1.778    rillig  * comes first.
   4172   1.778    rillig  */
   4173   1.916    rillig static void
   4174   1.501    rillig ParseVarname(const char **pp, char startc, char endc,
   4175   1.906    rillig 	     GNode *scope, VarEvalMode emode,
   4176   1.916    rillig 	     LazyBuf *buf)
   4177   1.501    rillig {
   4178   1.703    rillig 	const char *p = *pp;
   4179  1.1066    rillig 	int depth = 0;
   4180   1.703    rillig 
   4181   1.923    rillig 	LazyBuf_Init(buf, p);
   4182   1.703    rillig 
   4183   1.703    rillig 	while (*p != '\0') {
   4184   1.854    rillig 		if ((*p == endc || *p == ':') && depth == 0)
   4185   1.854    rillig 			break;
   4186   1.703    rillig 		if (*p == startc)
   4187   1.703    rillig 			depth++;
   4188   1.854    rillig 		if (*p == endc)
   4189   1.854    rillig 			depth--;
   4190   1.501    rillig 
   4191   1.703    rillig 		if (*p == '$') {
   4192  1.1042    rillig 			FStr nested_val = Var_Parse(&p, scope, emode);
   4193   1.703    rillig 			/* TODO: handle errors */
   4194   1.916    rillig 			LazyBuf_AddStr(buf, nested_val.str);
   4195   1.743    rillig 			FStr_Done(&nested_val);
   4196   1.703    rillig 		} else {
   4197   1.916    rillig 			LazyBuf_Add(buf, *p);
   4198   1.703    rillig 			p++;
   4199   1.703    rillig 		}
   4200   1.501    rillig 	}
   4201   1.703    rillig 	*pp = p;
   4202   1.501    rillig }
   4203   1.501    rillig 
   4204  1.1023    rillig static bool
   4205  1.1023    rillig IsShortVarnameValid(char varname, const char *start)
   4206   1.507    rillig {
   4207   1.818    rillig 	if (varname != '$' && varname != ':' && varname != '}' &&
   4208   1.818    rillig 	    varname != ')' && varname != '\0')
   4209  1.1023    rillig 		return true;
   4210   1.507    rillig 
   4211   1.771    rillig 	if (!opts.strict)
   4212  1.1023    rillig 		return false;	/* XXX: Missing error message */
   4213   1.507    rillig 
   4214  1.1096       sjg 	if (varname == '$' && save_dollars)
   4215   1.703    rillig 		Parse_Error(PARSE_FATAL,
   4216   1.507    rillig 		    "To escape a dollar, use \\$, not $$, at \"%s\"", start);
   4217   1.703    rillig 	else if (varname == '\0')
   4218   1.703    rillig 		Parse_Error(PARSE_FATAL, "Dollar followed by nothing");
   4219  1.1096       sjg 	else if (save_dollars)
   4220   1.703    rillig 		Parse_Error(PARSE_FATAL,
   4221   1.507    rillig 		    "Invalid variable name '%c', at \"%s\"", varname, start);
   4222   1.507    rillig 
   4223  1.1023    rillig 	return false;
   4224   1.507    rillig }
   4225   1.507    rillig 
   4226   1.778    rillig /*
   4227   1.817    rillig  * Parse a single-character variable name such as in $V or $@.
   4228   1.778    rillig  * Return whether to continue parsing.
   4229   1.778    rillig  */
   4230   1.895    rillig static bool
   4231   1.817    rillig ParseVarnameShort(char varname, const char **pp, GNode *scope,
   4232   1.906    rillig 		  VarEvalMode emode,
   4233  1.1042    rillig 		  const char **out_false_val,
   4234   1.896    rillig 		  Var **out_true_var)
   4235   1.667    rillig {
   4236   1.703    rillig 	char name[2];
   4237   1.703    rillig 	Var *v;
   4238  1.1024    rillig 	const char *val;
   4239   1.622    rillig 
   4240  1.1023    rillig 	if (!IsShortVarnameValid(varname, *pp)) {
   4241  1.1025    rillig 		(*pp)++;	/* only skip the '$' */
   4242   1.896    rillig 		*out_false_val = var_Error;
   4243   1.895    rillig 		return false;
   4244   1.703    rillig 	}
   4245   1.622    rillig 
   4246   1.817    rillig 	name[0] = varname;
   4247   1.703    rillig 	name[1] = '\0';
   4248   1.895    rillig 	v = VarFind(name, scope, true);
   4249  1.1024    rillig 	if (v != NULL) {
   4250  1.1025    rillig 		/* No need to advance *pp, the calling code handles this. */
   4251  1.1024    rillig 		*out_true_var = v;
   4252  1.1024    rillig 		return true;
   4253  1.1024    rillig 	}
   4254   1.622    rillig 
   4255  1.1024    rillig 	*pp += 2;
   4256   1.769    rillig 
   4257  1.1024    rillig 	val = UndefinedShortVarValue(varname, scope);
   4258  1.1024    rillig 	if (val == NULL)
   4259  1.1119    rillig 		val = emode == VARE_EVAL_DEFINED ? var_Error : varUndefined;
   4260   1.767    rillig 
   4261  1.1024    rillig 	if (opts.strict && val == var_Error) {
   4262  1.1024    rillig 		Parse_Error(PARSE_FATAL,
   4263  1.1024    rillig 		    "Variable \"%s\" is undefined", name);
   4264   1.622    rillig 	}
   4265   1.622    rillig 
   4266  1.1024    rillig 	*out_false_val = val;
   4267  1.1024    rillig 	return false;
   4268   1.622    rillig }
   4269   1.622    rillig 
   4270   1.662    rillig /* Find variables like @F or <D. */
   4271   1.662    rillig static Var *
   4272   1.916    rillig FindLocalLegacyVar(Substring varname, GNode *scope,
   4273   1.662    rillig 		   const char **out_extraModifiers)
   4274   1.662    rillig {
   4275   1.916    rillig 	Var *v;
   4276   1.916    rillig 
   4277   1.802    rillig 	/* Only resolve these variables if scope is a "real" target. */
   4278   1.802    rillig 	if (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL)
   4279   1.703    rillig 		return NULL;
   4280   1.703    rillig 
   4281   1.916    rillig 	if (Substring_Length(varname) != 2)
   4282   1.703    rillig 		return NULL;
   4283   1.916    rillig 	if (varname.start[1] != 'F' && varname.start[1] != 'D')
   4284   1.703    rillig 		return NULL;
   4285   1.916    rillig 	if (strchr("@%?*!<>", varname.start[0]) == NULL)
   4286   1.703    rillig 		return NULL;
   4287   1.703    rillig 
   4288  1.1091    rillig 	v = VarFindSubstring(Substring_Init(varname.start, varname.start + 1),
   4289  1.1091    rillig 	    scope, false);
   4290   1.916    rillig 	if (v == NULL)
   4291   1.916    rillig 		return NULL;
   4292   1.897    rillig 
   4293   1.916    rillig 	*out_extraModifiers = varname.start[1] == 'D' ? "H:" : "T:";
   4294   1.916    rillig 	return v;
   4295   1.662    rillig }
   4296   1.662    rillig 
   4297  1.1044    rillig static FStr
   4298   1.916    rillig EvalUndefined(bool dynamic, const char *start, const char *p,
   4299  1.1044    rillig 	      Substring varname, VarEvalMode emode)
   4300   1.667    rillig {
   4301  1.1044    rillig 	if (dynamic)
   4302  1.1044    rillig 		return FStr_InitOwn(bmake_strsedup(start, p));
   4303   1.703    rillig 
   4304  1.1119    rillig 	if (emode == VARE_EVAL_DEFINED && opts.strict) {
   4305   1.703    rillig 		Parse_Error(PARSE_FATAL,
   4306   1.916    rillig 		    "Variable \"%.*s\" is undefined",
   4307   1.916    rillig 		    (int)Substring_Length(varname), varname.start);
   4308  1.1044    rillig 		return FStr_InitRefer(var_Error);
   4309   1.703    rillig 	}
   4310   1.703    rillig 
   4311  1.1044    rillig 	return FStr_InitRefer(
   4312  1.1119    rillig 	    emode == VARE_EVAL_DEFINED ? var_Error : varUndefined);
   4313   1.663    rillig }
   4314   1.663    rillig 
   4315   1.778    rillig /*
   4316   1.778    rillig  * Parse a long variable name enclosed in braces or parentheses such as $(VAR)
   4317   1.623    rillig  * or ${VAR}, up to the closing brace or parenthesis, or in the case of
   4318   1.623    rillig  * ${VAR:Modifiers}, up to the ':' that starts the modifiers.
   4319   1.778    rillig  * Return whether to continue parsing.
   4320   1.778    rillig  */
   4321   1.895    rillig static bool
   4322   1.623    rillig ParseVarnameLong(
   4323   1.922    rillig 	const char **pp,
   4324   1.624    rillig 	char startc,
   4325   1.802    rillig 	GNode *scope,
   4326   1.906    rillig 	VarEvalMode emode,
   4327   1.624    rillig 
   4328   1.896    rillig 	const char **out_false_pp,
   4329   1.896    rillig 	FStr *out_false_val,
   4330   1.896    rillig 
   4331   1.896    rillig 	char *out_true_endc,
   4332   1.896    rillig 	Var **out_true_v,
   4333   1.896    rillig 	bool *out_true_haveModifier,
   4334   1.896    rillig 	const char **out_true_extraModifiers,
   4335   1.896    rillig 	bool *out_true_dynamic,
   4336   1.896    rillig 	ExprDefined *out_true_exprDefined
   4337   1.703    rillig )
   4338   1.703    rillig {
   4339   1.916    rillig 	LazyBuf varname;
   4340   1.972       sjg 	Substring name;
   4341   1.703    rillig 	Var *v;
   4342   1.895    rillig 	bool haveModifier;
   4343   1.895    rillig 	bool dynamic = false;
   4344   1.703    rillig 
   4345   1.922    rillig 	const char *p = *pp;
   4346  1.1095    rillig 	const char *start = p;
   4347   1.703    rillig 	char endc = startc == '(' ? ')' : '}';
   4348   1.703    rillig 
   4349   1.703    rillig 	p += 2;			/* skip "${" or "$(" or "y(" */
   4350   1.916    rillig 	ParseVarname(&p, startc, endc, scope, emode, &varname);
   4351   1.972       sjg 	name = LazyBuf_Get(&varname);
   4352   1.703    rillig 
   4353  1.1093    rillig 	if (*p == ':')
   4354   1.895    rillig 		haveModifier = true;
   4355  1.1093    rillig 	else if (*p == endc)
   4356   1.895    rillig 		haveModifier = false;
   4357  1.1093    rillig 	else {
   4358   1.916    rillig 		Parse_Error(PARSE_FATAL, "Unclosed variable \"%.*s\"",
   4359   1.916    rillig 		    (int)Substring_Length(name), name.start);
   4360   1.916    rillig 		LazyBuf_Done(&varname);
   4361   1.896    rillig 		*out_false_pp = p;
   4362   1.896    rillig 		*out_false_val = FStr_InitRefer(var_Error);
   4363   1.895    rillig 		return false;
   4364   1.703    rillig 	}
   4365   1.623    rillig 
   4366   1.972       sjg 	v = VarFindSubstring(name, scope, true);
   4367   1.623    rillig 
   4368   1.988    rillig 	/*
   4369   1.988    rillig 	 * At this point, p points just after the variable name, either at
   4370   1.988    rillig 	 * ':' or at endc.
   4371   1.988    rillig 	 */
   4372   1.623    rillig 
   4373   1.974    rillig 	if (v == NULL && Substring_Equals(name, ".SUFFIXES")) {
   4374   1.974    rillig 		char *suffixes = Suff_NamesStr();
   4375   1.975    rillig 		v = VarNew(FStr_InitRefer(".SUFFIXES"), suffixes,
   4376   1.979    rillig 		    true, false, true);
   4377   1.974    rillig 		free(suffixes);
   4378   1.974    rillig 	} else if (v == NULL)
   4379   1.974    rillig 		v = FindLocalLegacyVar(name, scope, out_true_extraModifiers);
   4380   1.623    rillig 
   4381   1.703    rillig 	if (v == NULL) {
   4382   1.703    rillig 		/*
   4383   1.703    rillig 		 * Defer expansion of dynamic variables if they appear in
   4384   1.802    rillig 		 * non-local scope since they are not defined there.
   4385   1.703    rillig 		 */
   4386   1.972       sjg 		dynamic = VarnameIsDynamic(name) &&
   4387   1.802    rillig 			  (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL);
   4388   1.703    rillig 
   4389   1.703    rillig 		if (!haveModifier) {
   4390   1.703    rillig 			p++;	/* skip endc */
   4391   1.896    rillig 			*out_false_pp = p;
   4392  1.1044    rillig 			*out_false_val = EvalUndefined(dynamic, start, p,
   4393  1.1044    rillig 			    name, emode);
   4394   1.986    rillig 			LazyBuf_Done(&varname);
   4395   1.895    rillig 			return false;
   4396   1.703    rillig 		}
   4397   1.623    rillig 
   4398   1.703    rillig 		/*
   4399  1.1075    rillig 		 * The expression is based on an undefined variable.
   4400   1.703    rillig 		 * Nevertheless it needs a Var, for modifiers that access the
   4401   1.703    rillig 		 * variable name, such as :L or :?.
   4402   1.703    rillig 		 *
   4403   1.703    rillig 		 * Most modifiers leave this expression in the "undefined"
   4404  1.1079    rillig 		 * state (DEF_UNDEF), only a few modifiers like :D, :U, :L,
   4405   1.703    rillig 		 * :P turn this undefined expression into a defined
   4406  1.1079    rillig 		 * expression (DEF_DEFINED).
   4407   1.703    rillig 		 *
   4408   1.830    rillig 		 * In the end, after applying all modifiers, if the expression
   4409   1.703    rillig 		 * is still undefined, Var_Parse will return an empty string
   4410   1.703    rillig 		 * instead of the actually computed value.
   4411   1.703    rillig 		 */
   4412   1.978    rillig 		v = VarNew(LazyBuf_DoneGet(&varname), "",
   4413   1.980    rillig 		    true, false, false);
   4414   1.896    rillig 		*out_true_exprDefined = DEF_UNDEF;
   4415   1.703    rillig 	} else
   4416   1.916    rillig 		LazyBuf_Done(&varname);
   4417   1.623    rillig 
   4418   1.922    rillig 	*pp = p;
   4419   1.896    rillig 	*out_true_endc = endc;
   4420   1.896    rillig 	*out_true_v = v;
   4421   1.896    rillig 	*out_true_haveModifier = haveModifier;
   4422   1.896    rillig 	*out_true_dynamic = dynamic;
   4423   1.895    rillig 	return true;
   4424   1.623    rillig }
   4425   1.623    rillig 
   4426   1.897    rillig #if __STDC_VERSION__ >= 199901L
   4427  1.1079    rillig #define Expr_Init(name, value, emode, scope, defined) \
   4428  1.1079    rillig 	(Expr) { name, value, emode, scope, defined }
   4429   1.897    rillig #else
   4430   1.897    rillig MAKE_INLINE Expr
   4431  1.1079    rillig Expr_Init(const char *name, FStr value,
   4432  1.1079    rillig 	  VarEvalMode emode, GNode *scope, ExprDefined defined)
   4433   1.897    rillig {
   4434   1.897    rillig 	Expr expr;
   4435   1.897    rillig 
   4436   1.898    rillig 	expr.name = name;
   4437   1.897    rillig 	expr.value = value;
   4438   1.917    rillig 	expr.emode = emode;
   4439   1.897    rillig 	expr.scope = scope;
   4440   1.897    rillig 	expr.defined = defined;
   4441   1.897    rillig 	return expr;
   4442   1.897    rillig }
   4443   1.897    rillig #endif
   4444   1.897    rillig 
   4445   1.666    rillig /*
   4446   1.913    rillig  * Expressions of the form ${:U...} with a trivial value are often generated
   4447  1.1079    rillig  * by .for loops and are boring, so evaluate them without debug logging.
   4448   1.913    rillig  */
   4449   1.913    rillig static bool
   4450  1.1106    rillig Var_Parse_U(const char **pp, VarEvalMode emode, FStr *out_value)
   4451   1.913    rillig {
   4452   1.913    rillig 	const char *p;
   4453   1.913    rillig 
   4454   1.913    rillig 	p = *pp;
   4455   1.913    rillig 	if (!(p[0] == '$' && p[1] == '{' && p[2] == ':' && p[3] == 'U'))
   4456   1.913    rillig 		return false;
   4457   1.913    rillig 
   4458   1.913    rillig 	p += 4;
   4459   1.915    rillig 	while (*p != '$' && *p != '{' && *p != ':' && *p != '\\' &&
   4460   1.915    rillig 	       *p != '}' && *p != '\0')
   4461   1.913    rillig 		p++;
   4462   1.913    rillig 	if (*p != '}')
   4463   1.913    rillig 		return false;
   4464   1.913    rillig 
   4465  1.1119    rillig 	*out_value = emode == VARE_PARSE
   4466  1.1093    rillig 	    ? FStr_InitRefer("")
   4467  1.1093    rillig 	    : FStr_InitOwn(bmake_strsedup(*pp + 4, p));
   4468   1.913    rillig 	*pp = p + 1;
   4469   1.913    rillig 	return true;
   4470   1.913    rillig }
   4471   1.913    rillig 
   4472   1.913    rillig /*
   4473  1.1079    rillig  * Given the start of an expression (such as $v, $(VAR), ${VAR:Mpattern}),
   4474  1.1079    rillig  * extract the variable name and the modifiers, if any.  While parsing, apply
   4475  1.1079    rillig  * the modifiers to the value of the expression.
   4476   1.579    rillig  *
   4477   1.108       sjg  * Input:
   4478   1.666    rillig  *	*pp		The string to parse.
   4479  1.1021    rillig  *			When called from CondParser_FuncCallEmpty, it can
   4480  1.1021    rillig  *			also point to the "y" of "empty(VARNAME:Modifiers)".
   4481  1.1079    rillig  *	scope		The scope for finding variables.
   4482  1.1079    rillig  *	emode		Controls the exact details of parsing and evaluation.
   4483   1.666    rillig  *
   4484   1.666    rillig  * Output:
   4485   1.666    rillig  *	*pp		The position where to continue parsing.
   4486   1.666    rillig  *			TODO: After a parse error, the value of *pp is
   4487   1.666    rillig  *			unspecified.  It may not have been updated at all,
   4488   1.666    rillig  *			point to some random character in the string, to the
   4489   1.666    rillig  *			location of the parse error, or at the end of the
   4490   1.666    rillig  *			string.
   4491  1.1075    rillig  *	return		The value of the expression, never NULL.
   4492  1.1042    rillig  *	return		var_Error if there was a parse error.
   4493  1.1042    rillig  *	return		var_Error if the base variable of the expression was
   4494  1.1119    rillig  *			undefined, emode is VARE_EVAL_DEFINED, and none of
   4495   1.666    rillig  *			the modifiers turned the undefined expression into a
   4496   1.666    rillig  *			defined expression.
   4497   1.666    rillig  *			XXX: It is not guaranteed that an error message has
   4498   1.666    rillig  *			been printed.
   4499  1.1042    rillig  *	return		varUndefined if the base variable of the expression
   4500  1.1119    rillig  *			was undefined, emode was not VARE_EVAL_DEFINED,
   4501   1.666    rillig  *			and none of the modifiers turned the undefined
   4502   1.666    rillig  *			expression into a defined expression.
   4503   1.666    rillig  *			XXX: It is not guaranteed that an error message has
   4504   1.666    rillig  *			been printed.
   4505   1.108       sjg  */
   4506  1.1042    rillig FStr
   4507  1.1042    rillig Var_Parse(const char **pp, GNode *scope, VarEvalMode emode)
   4508   1.108       sjg {
   4509  1.1106    rillig 	const char *start, *p;
   4510  1.1021    rillig 	bool haveModifier;	/* true for ${VAR:...}, false for ${VAR} */
   4511  1.1021    rillig 	char startc;		/* the actual '{' or '(' or '\0' */
   4512  1.1021    rillig 	char endc;		/* the expected '}' or ')' or '\0' */
   4513   1.703    rillig 	/*
   4514  1.1021    rillig 	 * true if the expression is based on one of the 7 predefined
   4515  1.1021    rillig 	 * variables that are local to a target, and the expression is
   4516  1.1021    rillig 	 * expanded in a non-local scope.  The result is the text of the
   4517  1.1021    rillig 	 * expression, unaltered.  This is needed to support dynamic sources.
   4518   1.703    rillig 	 */
   4519   1.895    rillig 	bool dynamic;
   4520   1.703    rillig 	const char *extramodifiers;
   4521   1.703    rillig 	Var *v;
   4522  1.1079    rillig 	Expr expr = Expr_Init(NULL, FStr_InitRefer(NULL), emode,
   4523   1.898    rillig 	    scope, DEF_REGULAR);
   4524  1.1042    rillig 	FStr val;
   4525   1.703    rillig 
   4526  1.1106    rillig 	if (Var_Parse_U(pp, emode, &val))
   4527  1.1042    rillig 		return val;
   4528   1.913    rillig 
   4529  1.1106    rillig 	p = *pp;
   4530  1.1106    rillig 	start = p;
   4531   1.906    rillig 	DEBUG2(VAR, "Var_Parse: %s (%s)\n", start, VarEvalMode_Name[emode]);
   4532   1.703    rillig 
   4533  1.1042    rillig 	val = FStr_InitRefer(NULL);
   4534   1.703    rillig 	extramodifiers = NULL;	/* extra modifiers to apply first */
   4535   1.895    rillig 	dynamic = false;
   4536   1.473    rillig 
   4537  1.1021    rillig 	endc = '\0';		/* Appease GCC. */
   4538   1.108       sjg 
   4539   1.703    rillig 	startc = p[1];
   4540   1.703    rillig 	if (startc != '(' && startc != '{') {
   4541  1.1042    rillig 		if (!ParseVarnameShort(startc, pp, scope, emode, &val.str, &v))
   4542  1.1042    rillig 			return val;
   4543   1.895    rillig 		haveModifier = false;
   4544   1.703    rillig 		p++;
   4545   1.703    rillig 	} else {
   4546   1.922    rillig 		if (!ParseVarnameLong(&p, startc, scope, emode,
   4547  1.1044    rillig 		    pp, &val,
   4548   1.922    rillig 		    &endc, &v, &haveModifier, &extramodifiers,
   4549   1.825    rillig 		    &dynamic, &expr.defined))
   4550  1.1042    rillig 			return val;
   4551   1.703    rillig 	}
   4552   1.401    rillig 
   4553   1.898    rillig 	expr.name = v->name.str;
   4554  1.1028    rillig 	if (v->inUse && VarEvalMode_ShouldEval(emode)) {
   4555  1.1008    rillig 		if (scope->fname != NULL) {
   4556  1.1008    rillig 			fprintf(stderr, "In a command near ");
   4557  1.1022    rillig 			PrintLocation(stderr, false, scope);
   4558  1.1008    rillig 		}
   4559   1.711    rillig 		Fatal("Variable %s is recursive.", v->name.str);
   4560  1.1008    rillig 	}
   4561   1.187  christos 
   4562   1.703    rillig 	/*
   4563  1.1078    rillig 	 * FIXME: This assignment creates an alias to the current value of the
   4564   1.703    rillig 	 * variable.  This means that as long as the value of the expression
   4565  1.1078    rillig 	 * stays the same, the value of the variable must not change, and the
   4566  1.1078    rillig 	 * variable must not be deleted.  Using the ':@' modifier, it is
   4567  1.1084    rillig 	 * possible (since var.c 1.212 from 2017-02-01) to delete the variable
   4568  1.1078    rillig 	 * while its value is still being used:
   4569  1.1078    rillig 	 *
   4570  1.1078    rillig 	 *	VAR=	value
   4571  1.1107    rillig 	 *	_:=	${VAR:${:U:@VAR@@}:S,^,prefix,}
   4572  1.1078    rillig 	 *
   4573  1.1078    rillig 	 * The same effect might be achievable using the '::=' or the ':_'
   4574  1.1078    rillig 	 * modifiers.
   4575  1.1021    rillig 	 *
   4576   1.703    rillig 	 * At the bottom of this function, the resulting value is compared to
   4577   1.703    rillig 	 * the then-current value of the variable.  This might also invoke
   4578   1.703    rillig 	 * undefined behavior.
   4579   1.703    rillig 	 */
   4580   1.823    rillig 	expr.value = FStr_InitRefer(v->val.data);
   4581   1.108       sjg 
   4582  1.1102    rillig 	if (expr.name[0] != '\0')
   4583  1.1120    rillig 		EvalStack_Push(VSK_VARNAME, expr.name);
   4584  1.1102    rillig 	else
   4585  1.1120    rillig 		EvalStack_Push(VSK_EXPR, start);
   4586  1.1102    rillig 
   4587   1.703    rillig 	/*
   4588   1.703    rillig 	 * Before applying any modifiers, expand any nested expressions from
   4589   1.703    rillig 	 * the variable value.
   4590   1.703    rillig 	 */
   4591  1.1003    rillig 	if (VarEvalMode_ShouldEval(emode) &&
   4592  1.1003    rillig 	    strchr(Expr_Str(&expr), '$') != NULL) {
   4593   1.743    rillig 		char *expanded;
   4594   1.906    rillig 		VarEvalMode nested_emode = emode;
   4595   1.764    rillig 		if (opts.strict)
   4596   1.906    rillig 			nested_emode = VarEvalMode_UndefOk(nested_emode);
   4597   1.902    rillig 		v->inUse = true;
   4598  1.1043    rillig 		expanded = Var_Subst(Expr_Str(&expr), scope, nested_emode);
   4599   1.902    rillig 		v->inUse = false;
   4600   1.703    rillig 		/* TODO: handle errors */
   4601   1.823    rillig 		Expr_SetValueOwn(&expr, expanded);
   4602   1.191  dholland 	}
   4603   1.191  dholland 
   4604   1.855    rillig 	if (extramodifiers != NULL) {
   4605   1.855    rillig 		const char *em = extramodifiers;
   4606   1.855    rillig 		ApplyModifiers(&expr, &em, '\0', '\0');
   4607   1.855    rillig 	}
   4608   1.191  dholland 
   4609   1.855    rillig 	if (haveModifier) {
   4610   1.988    rillig 		p++;		/* Skip initial colon. */
   4611   1.855    rillig 		ApplyModifiers(&expr, &p, startc, endc);
   4612   1.191  dholland 	}
   4613   1.438    rillig 
   4614   1.703    rillig 	if (*p != '\0')		/* Skip past endc if possible. */
   4615   1.703    rillig 		p++;
   4616   1.519    rillig 
   4617   1.703    rillig 	*pp = p;
   4618    1.15  christos 
   4619   1.980    rillig 	if (expr.defined == DEF_UNDEF) {
   4620   1.980    rillig 		if (dynamic)
   4621   1.980    rillig 			Expr_SetValueOwn(&expr, bmake_strsedup(start, p));
   4622   1.980    rillig 		else {
   4623   1.980    rillig 			/*
   4624   1.980    rillig 			 * The expression is still undefined, therefore
   4625   1.980    rillig 			 * discard the actual value and return an error marker
   4626   1.980    rillig 			 * instead.
   4627   1.980    rillig 			 */
   4628   1.980    rillig 			Expr_SetValueRefer(&expr,
   4629  1.1119    rillig 			    emode == VARE_EVAL_DEFINED
   4630   1.980    rillig 				? var_Error : varUndefined);
   4631   1.980    rillig 		}
   4632   1.980    rillig 	}
   4633   1.980    rillig 
   4634   1.978    rillig 	if (v->shortLived) {
   4635   1.980    rillig 		if (expr.value.str == v->val.data) {
   4636   1.980    rillig 			/* move ownership */
   4637   1.980    rillig 			expr.value.freeIt = v->val.data;
   4638   1.980    rillig 			v->val.data = NULL;
   4639   1.703    rillig 		}
   4640   1.980    rillig 		VarFreeShortLived(v);
   4641    1.34  christos 	}
   4642   1.980    rillig 
   4643  1.1102    rillig 	EvalStack_Pop();
   4644  1.1042    rillig 	return expr.value;
   4645     1.1       cgd }
   4646     1.1       cgd 
   4647   1.678    rillig static void
   4648   1.906    rillig VarSubstDollarDollar(const char **pp, Buffer *res, VarEvalMode emode)
   4649   1.768    rillig {
   4650   1.830    rillig 	/* A dollar sign may be escaped with another dollar sign. */
   4651   1.906    rillig 	if (save_dollars && VarEvalMode_ShouldKeepDollar(emode))
   4652   1.768    rillig 		Buf_AddByte(res, '$');
   4653   1.768    rillig 	Buf_AddByte(res, '$');
   4654   1.768    rillig 	*pp += 2;
   4655   1.768    rillig }
   4656   1.768    rillig 
   4657   1.768    rillig static void
   4658   1.802    rillig VarSubstExpr(const char **pp, Buffer *buf, GNode *scope,
   4659   1.906    rillig 	     VarEvalMode emode, bool *inout_errorReported)
   4660   1.678    rillig {
   4661   1.703    rillig 	const char *p = *pp;
   4662   1.703    rillig 	const char *nested_p = p;
   4663  1.1042    rillig 	FStr val = Var_Parse(&nested_p, scope, emode);
   4664   1.703    rillig 	/* TODO: handle errors */
   4665   1.678    rillig 
   4666   1.743    rillig 	if (val.str == var_Error || val.str == varUndefined) {
   4667   1.906    rillig 		if (!VarEvalMode_ShouldKeepUndef(emode)) {
   4668   1.703    rillig 			p = nested_p;
   4669  1.1004    rillig 		} else if (val.str == var_Error) {
   4670   1.703    rillig 
   4671   1.703    rillig 			/*
   4672  1.1094    rillig 			 * FIXME: The condition 'val.str == var_Error' doesn't
   4673  1.1094    rillig 			 * mean there was an undefined variable.  It could
   4674  1.1094    rillig 			 * equally well be a parse error; see
   4675  1.1094    rillig 			 * unit-tests/varmod-order.mk.
   4676   1.703    rillig 			 */
   4677   1.703    rillig 
   4678   1.703    rillig 			/*
   4679   1.703    rillig 			 * If variable is undefined, complain and skip the
   4680   1.703    rillig 			 * variable. The complaint will stop us from doing
   4681   1.703    rillig 			 * anything when the file is parsed.
   4682   1.703    rillig 			 */
   4683   1.703    rillig 			if (!*inout_errorReported) {
   4684   1.703    rillig 				Parse_Error(PARSE_FATAL,
   4685   1.703    rillig 				    "Undefined variable \"%.*s\"",
   4686  1.1094    rillig 				    (int)(nested_p - p), p);
   4687  1.1094    rillig 				*inout_errorReported = true;
   4688   1.703    rillig 			}
   4689   1.703    rillig 			p = nested_p;
   4690   1.703    rillig 		} else {
   4691   1.988    rillig 			/*
   4692   1.988    rillig 			 * Copy the initial '$' of the undefined expression,
   4693   1.703    rillig 			 * thereby deferring expansion of the expression, but
   4694   1.988    rillig 			 * expand nested expressions if already possible. See
   4695   1.988    rillig 			 * unit-tests/varparse-undef-partial.mk.
   4696   1.988    rillig 			 */
   4697   1.703    rillig 			Buf_AddByte(buf, *p);
   4698   1.703    rillig 			p++;
   4699   1.703    rillig 		}
   4700   1.678    rillig 	} else {
   4701   1.703    rillig 		p = nested_p;
   4702   1.743    rillig 		Buf_AddStr(buf, val.str);
   4703   1.678    rillig 	}
   4704   1.678    rillig 
   4705   1.743    rillig 	FStr_Done(&val);
   4706   1.678    rillig 
   4707   1.703    rillig 	*pp = p;
   4708   1.678    rillig }
   4709   1.678    rillig 
   4710   1.768    rillig /*
   4711  1.1075    rillig  * Skip as many characters as possible -- either to the end of the string,
   4712  1.1075    rillig  * or to the next dollar sign, which may start an expression.
   4713   1.768    rillig  */
   4714   1.768    rillig static void
   4715   1.768    rillig VarSubstPlain(const char **pp, Buffer *res)
   4716   1.768    rillig {
   4717   1.768    rillig 	const char *p = *pp;
   4718   1.768    rillig 	const char *start = p;
   4719   1.768    rillig 
   4720   1.768    rillig 	for (p++; *p != '$' && *p != '\0'; p++)
   4721   1.768    rillig 		continue;
   4722  1.1055    rillig 	Buf_AddRange(res, start, p);
   4723   1.768    rillig 	*pp = p;
   4724   1.768    rillig }
   4725   1.768    rillig 
   4726   1.778    rillig /*
   4727  1.1075    rillig  * Expand all expressions like $V, ${VAR}, $(VAR:Modifiers) in the
   4728   1.660    rillig  * given string.
   4729     1.1       cgd  *
   4730    1.70       wiz  * Input:
   4731  1.1105    rillig  *	str		The string in which the expressions are expanded.
   4732  1.1105    rillig  *	scope		The scope in which to start searching for variables.
   4733  1.1105    rillig  *			The other scopes are searched as well.
   4734   1.917    rillig  *	emode		The mode for parsing or evaluating subexpressions.
   4735     1.1       cgd  */
   4736  1.1043    rillig char *
   4737  1.1043    rillig Var_Subst(const char *str, GNode *scope, VarEvalMode emode)
   4738     1.1       cgd {
   4739   1.703    rillig 	const char *p = str;
   4740   1.703    rillig 	Buffer res;
   4741     1.1       cgd 
   4742   1.988    rillig 	/*
   4743   1.988    rillig 	 * Set true if an error has already been reported, to prevent a
   4744   1.988    rillig 	 * plethora of messages when recursing
   4745   1.988    rillig 	 */
   4746   1.895    rillig 	static bool errorReported;
   4747   1.703    rillig 
   4748   1.703    rillig 	Buf_Init(&res);
   4749   1.895    rillig 	errorReported = false;
   4750   1.703    rillig 
   4751   1.703    rillig 	while (*p != '\0') {
   4752   1.768    rillig 		if (p[0] == '$' && p[1] == '$')
   4753   1.906    rillig 			VarSubstDollarDollar(&p, &res, emode);
   4754   1.768    rillig 		else if (p[0] == '$')
   4755   1.906    rillig 			VarSubstExpr(&p, &res, scope, emode, &errorReported);
   4756   1.768    rillig 		else
   4757   1.768    rillig 			VarSubstPlain(&p, &res);
   4758     1.1       cgd 	}
   4759    1.15  christos 
   4760  1.1108    rillig 	return Buf_DoneData(&res);
   4761     1.1       cgd }
   4762     1.1       cgd 
   4763  1.1120    rillig char *
   4764  1.1120    rillig Var_SubstInTarget(const char *str, GNode *scope)
   4765  1.1120    rillig {
   4766  1.1120    rillig 	char *res;
   4767  1.1120    rillig 	EvalStack_Push(VSK_TARGET, scope->name);
   4768  1.1120    rillig 	res = Var_Subst(str, scope, VARE_EVAL);
   4769  1.1120    rillig 	EvalStack_Pop();
   4770  1.1120    rillig 	return res;
   4771  1.1120    rillig }
   4772  1.1120    rillig 
   4773  1.1001    rillig void
   4774  1.1001    rillig Var_Expand(FStr *str, GNode *scope, VarEvalMode emode)
   4775  1.1001    rillig {
   4776  1.1001    rillig 	char *expanded;
   4777  1.1001    rillig 
   4778  1.1001    rillig 	if (strchr(str->str, '$') == NULL)
   4779  1.1001    rillig 		return;
   4780  1.1043    rillig 	expanded = Var_Subst(str->str, scope, emode);
   4781  1.1001    rillig 	/* TODO: handle errors */
   4782  1.1001    rillig 	FStr_Done(str);
   4783  1.1001    rillig 	*str = FStr_InitOwn(expanded);
   4784  1.1001    rillig }
   4785  1.1001    rillig 
   4786   1.572    rillig /* Initialize the variables module. */
   4787     1.1       cgd void
   4788    1.70       wiz Var_Init(void)
   4789     1.1       cgd {
   4790   1.801    rillig 	SCOPE_INTERNAL = GNode_New("Internal");
   4791   1.801    rillig 	SCOPE_GLOBAL = GNode_New("Global");
   4792   1.801    rillig 	SCOPE_CMDLINE = GNode_New("Command");
   4793     1.6       jtc }
   4794     1.6       jtc 
   4795   1.572    rillig /* Clean up the variables module. */
   4796     1.6       jtc void
   4797    1.70       wiz Var_End(void)
   4798     1.6       jtc {
   4799   1.703    rillig 	Var_Stats();
   4800   1.286       sjg }
   4801   1.286       sjg 
   4802   1.286       sjg void
   4803   1.286       sjg Var_Stats(void)
   4804   1.286       sjg {
   4805   1.802    rillig 	HashTable_DebugStats(&SCOPE_GLOBAL->vars, "Global variables");
   4806     1.1       cgd }
   4807    1.15  christos 
   4808   1.964    rillig static int
   4809   1.964    rillig StrAsc(const void *sa, const void *sb)
   4810   1.964    rillig {
   4811   1.964    rillig 	return strcmp(
   4812   1.964    rillig 	    *((const char *const *)sa), *((const char *const *)sb));
   4813   1.964    rillig }
   4814   1.964    rillig 
   4815   1.964    rillig 
   4816   1.802    rillig /* Print all variables in a scope, sorted by name. */
   4817     1.5       cgd void
   4818   1.802    rillig Var_Dump(GNode *scope)
   4819     1.1       cgd {
   4820   1.703    rillig 	Vector /* of const char * */ vec;
   4821   1.703    rillig 	HashIter hi;
   4822   1.703    rillig 	size_t i;
   4823   1.703    rillig 	const char **varnames;
   4824   1.703    rillig 
   4825   1.703    rillig 	Vector_Init(&vec, sizeof(const char *));
   4826   1.703    rillig 
   4827   1.802    rillig 	HashIter_Init(&hi, &scope->vars);
   4828  1.1114    rillig 	while (HashIter_Next(&hi))
   4829   1.703    rillig 		*(const char **)Vector_Push(&vec) = hi.entry->key;
   4830   1.703    rillig 	varnames = vec.items;
   4831   1.703    rillig 
   4832   1.964    rillig 	qsort(varnames, vec.len, sizeof varnames[0], StrAsc);
   4833   1.703    rillig 
   4834   1.703    rillig 	for (i = 0; i < vec.len; i++) {
   4835   1.703    rillig 		const char *varname = varnames[i];
   4836  1.1035    rillig 		const Var *var = HashTable_FindValue(&scope->vars, varname);
   4837  1.1018    rillig 		debug_printf("%-16s = %s%s\n", varname,
   4838  1.1018    rillig 		    var->val.data, ValueDescription(var->val.data));
   4839   1.703    rillig 	}
   4840   1.573    rillig 
   4841   1.703    rillig 	Vector_Done(&vec);
   4842     1.1       cgd }
   4843