var.c revision 1.1128 1 1.1128 rillig /* $NetBSD: var.c,v 1.1128 2024/07/04 17:47:53 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 ${VAR:Mpattern}.
103 1.1 cgd *
104 1.1105 rillig * Var_Delete Delete a variable.
105 1.1 cgd *
106 1.725 rillig * Var_ReexportVars
107 1.725 rillig * Export some or even all variables to the environment
108 1.592 rillig * of this process and its child processes.
109 1.1 cgd *
110 1.592 rillig * Var_Export Export the variable to the environment of this process
111 1.592 rillig * and its child processes.
112 1.1 cgd *
113 1.592 rillig * Var_UnExport Don't export the variable anymore.
114 1.1 cgd *
115 1.1 cgd * Debugging:
116 1.592 rillig * Var_Stats Print out hashing statistics if in -dh mode.
117 1.592 rillig *
118 1.802 rillig * Var_Dump Print out all variables defined in the given scope.
119 1.1 cgd */
120 1.1 cgd
121 1.630 rillig #include <sys/stat.h>
122 1.630 rillig #include <sys/types.h>
123 1.630 rillig #include <regex.h>
124 1.631 rillig #include <errno.h>
125 1.630 rillig #include <inttypes.h>
126 1.630 rillig #include <limits.h>
127 1.630 rillig #include <time.h>
128 1.630 rillig
129 1.630 rillig #include "make.h"
130 1.630 rillig #include "dir.h"
131 1.630 rillig #include "job.h"
132 1.630 rillig #include "metachar.h"
133 1.1 cgd
134 1.512 rillig /* "@(#)var.c 8.3 (Berkeley) 3/19/94" */
135 1.1128 rillig MAKE_RCSID("$NetBSD: var.c,v 1.1128 2024/07/04 17:47:53 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 1.1128 rillig const FStr *value;
275 1.1102 rillig } EvalStackElement;
276 1.1102 rillig
277 1.1102 rillig typedef struct {
278 1.1102 rillig EvalStackElement *elems;
279 1.1102 rillig size_t len;
280 1.1102 rillig size_t cap;
281 1.1102 rillig Buffer details;
282 1.1102 rillig } EvalStack;
283 1.710 rillig
284 1.1088 rillig /* Whether we have replaced the original environ (which we cannot free). */
285 1.710 rillig char **savedEnv = NULL;
286 1.710 rillig
287 1.778 rillig /*
288 1.778 rillig * Special return value for Var_Parse, indicating a parse error. It may be
289 1.710 rillig * caused by an undefined variable, a syntax error in a modifier or
290 1.778 rillig * something entirely different.
291 1.778 rillig */
292 1.710 rillig char var_Error[] = "";
293 1.710 rillig
294 1.778 rillig /*
295 1.778 rillig * Special return value for Var_Parse, indicating an undefined variable in
296 1.1119 rillig * a case where VARE_EVAL_DEFINED is not set. This undefined variable is
297 1.710 rillig * typically a dynamic variable such as ${.TARGET}, whose expansion needs to
298 1.778 rillig * be deferred until it is defined in an actual target.
299 1.830 rillig *
300 1.1119 rillig * See VARE_EVAL_KEEP_UNDEFINED.
301 1.778 rillig */
302 1.710 rillig static char varUndefined[] = "";
303 1.710 rillig
304 1.710 rillig /*
305 1.710 rillig * Traditionally this make consumed $$ during := like any other expansion.
306 1.710 rillig * Other make's do not, and this make follows straight since 2016-01-09.
307 1.710 rillig *
308 1.895 rillig * This knob allows controlling the behavior:
309 1.895 rillig * false to consume $$ during := assignment.
310 1.895 rillig * true to preserve $$ during := assignment.
311 1.710 rillig */
312 1.710 rillig #define MAKE_SAVE_DOLLARS ".MAKE.SAVE_DOLLARS"
313 1.895 rillig static bool save_dollars = true;
314 1.710 rillig
315 1.710 rillig /*
316 1.807 rillig * A scope collects variable names and their values.
317 1.807 rillig *
318 1.807 rillig * The main scope is SCOPE_GLOBAL, which contains the variables that are set
319 1.807 rillig * in the makefiles. SCOPE_INTERNAL acts as a fallback for SCOPE_GLOBAL and
320 1.807 rillig * contains some internal make variables. These internal variables can thus
321 1.807 rillig * be overridden, they can also be restored by undefining the overriding
322 1.807 rillig * variable.
323 1.807 rillig *
324 1.807 rillig * SCOPE_CMDLINE contains variables from the command line arguments. These
325 1.807 rillig * override variables from SCOPE_GLOBAL.
326 1.807 rillig *
327 1.807 rillig * There is no scope for environment variables, these are generated on-the-fly
328 1.1088 rillig * whenever they are referenced.
329 1.807 rillig *
330 1.807 rillig * Each target has its own scope, containing the 7 target-local variables
331 1.1006 sjg * .TARGET, .ALLSRC, etc. Variables set on dependency lines also go in
332 1.1006 sjg * this scope.
333 1.807 rillig */
334 1.807 rillig
335 1.807 rillig GNode *SCOPE_CMDLINE;
336 1.807 rillig GNode *SCOPE_GLOBAL;
337 1.807 rillig GNode *SCOPE_INTERNAL;
338 1.710 rillig
339 1.710 rillig static VarExportedMode var_exportedVars = VAR_EXPORTED_NONE;
340 1.710 rillig
341 1.951 rillig static const char VarEvalMode_Name[][32] = {
342 1.1119 rillig "parse",
343 1.1047 rillig "parse-balanced",
344 1.906 rillig "eval",
345 1.906 rillig "eval-defined",
346 1.906 rillig "eval-keep-undefined",
347 1.906 rillig "eval-keep-dollar-and-undefined",
348 1.906 rillig };
349 1.711 rillig
350 1.1102 rillig static EvalStack evalStack;
351 1.1102 rillig
352 1.1102 rillig
353 1.1120 rillig static void
354 1.1128 rillig EvalStack_Push(EvalStackElementKind kind, const char *str, const FStr *value)
355 1.1102 rillig {
356 1.1102 rillig if (evalStack.len >= evalStack.cap) {
357 1.1102 rillig evalStack.cap = 16 + 2 * evalStack.cap;
358 1.1102 rillig evalStack.elems = bmake_realloc(evalStack.elems,
359 1.1102 rillig evalStack.cap * sizeof(*evalStack.elems));
360 1.1102 rillig }
361 1.1120 rillig evalStack.elems[evalStack.len].kind = kind;
362 1.1120 rillig evalStack.elems[evalStack.len].str = str;
363 1.1128 rillig evalStack.elems[evalStack.len].value = value;
364 1.1102 rillig evalStack.len++;
365 1.1102 rillig }
366 1.1102 rillig
367 1.1120 rillig static void
368 1.1102 rillig EvalStack_Pop(void)
369 1.1102 rillig {
370 1.1102 rillig assert(evalStack.len > 0);
371 1.1102 rillig evalStack.len--;
372 1.1102 rillig }
373 1.1102 rillig
374 1.1102 rillig const char *
375 1.1102 rillig EvalStack_Details(void)
376 1.1102 rillig {
377 1.1102 rillig size_t i;
378 1.1102 rillig Buffer *buf = &evalStack.details;
379 1.1102 rillig
380 1.1102 rillig
381 1.1102 rillig buf->len = 0;
382 1.1102 rillig for (i = 0; i < evalStack.len; i++) {
383 1.1124 rillig static const char descr[][42] = {
384 1.1124 rillig "in target",
385 1.1124 rillig "while evaluating variable",
386 1.1124 rillig "while evaluating condition",
387 1.1124 rillig "while evaluating then-branch of condition",
388 1.1124 rillig "while evaluating else-branch of condition",
389 1.1124 rillig "while evaluating",
390 1.1124 rillig };
391 1.1102 rillig EvalStackElement *elem = evalStack.elems + i;
392 1.1124 rillig Buf_AddStr(buf, descr[elem->kind]);
393 1.1124 rillig Buf_AddStr(buf, " \"");
394 1.1120 rillig Buf_AddStr(buf, elem->str);
395 1.1128 rillig if (elem->kind == VSK_VARNAME) {
396 1.1128 rillig Buf_AddStr(buf, "\" with value \"");
397 1.1128 rillig Buf_AddStr(buf, elem->value->str);
398 1.1128 rillig }
399 1.1120 rillig Buf_AddStr(buf, "\": ");
400 1.1102 rillig }
401 1.1102 rillig return buf->len > 0 ? buf->data : "";
402 1.1102 rillig }
403 1.904 rillig
404 1.569 rillig static Var *
405 1.978 rillig VarNew(FStr name, const char *value,
406 1.978 rillig bool shortLived, bool fromEnvironment, bool readOnly)
407 1.569 rillig {
408 1.703 rillig size_t value_len = strlen(value);
409 1.703 rillig Var *var = bmake_malloc(sizeof *var);
410 1.744 rillig var->name = name;
411 1.703 rillig Buf_InitSize(&var->val, value_len + 1);
412 1.703 rillig Buf_AddBytes(&var->val, value, value_len);
413 1.902 rillig var->fromCmd = false;
414 1.978 rillig var->shortLived = shortLived;
415 1.978 rillig var->fromEnvironment = fromEnvironment;
416 1.902 rillig var->readOnly = readOnly;
417 1.1121 rillig var->readOnlyLoud = false;
418 1.902 rillig var->inUse = false;
419 1.902 rillig var->exported = false;
420 1.902 rillig var->reexport = false;
421 1.703 rillig return var;
422 1.569 rillig }
423 1.569 rillig
424 1.916 rillig static Substring
425 1.916 rillig CanonicalVarname(Substring name)
426 1.1 cgd {
427 1.916 rillig
428 1.916 rillig if (!(Substring_Length(name) > 0 && name.start[0] == '.'))
429 1.916 rillig return name;
430 1.916 rillig
431 1.916 rillig if (Substring_Equals(name, ".ALLSRC"))
432 1.916 rillig return Substring_InitStr(ALLSRC);
433 1.916 rillig if (Substring_Equals(name, ".ARCHIVE"))
434 1.916 rillig return Substring_InitStr(ARCHIVE);
435 1.916 rillig if (Substring_Equals(name, ".IMPSRC"))
436 1.916 rillig return Substring_InitStr(IMPSRC);
437 1.916 rillig if (Substring_Equals(name, ".MEMBER"))
438 1.916 rillig return Substring_InitStr(MEMBER);
439 1.916 rillig if (Substring_Equals(name, ".OODATE"))
440 1.916 rillig return Substring_InitStr(OODATE);
441 1.916 rillig if (Substring_Equals(name, ".PREFIX"))
442 1.916 rillig return Substring_InitStr(PREFIX);
443 1.916 rillig if (Substring_Equals(name, ".TARGET"))
444 1.916 rillig return Substring_InitStr(TARGET);
445 1.916 rillig
446 1.1079 rillig /* GNU make has an additional alias $^ == ${.ALLSRC}. */
447 1.1079 rillig
448 1.916 rillig if (Substring_Equals(name, ".SHELL") && shellPath == NULL)
449 1.916 rillig Shell_Init();
450 1.242 rillig
451 1.703 rillig return name;
452 1.580 rillig }
453 1.580 rillig
454 1.587 rillig static Var *
455 1.916 rillig GNode_FindVar(GNode *scope, Substring varname, unsigned int hash)
456 1.587 rillig {
457 1.916 rillig return HashTable_FindValueBySubstringHash(&scope->vars, varname, hash);
458 1.587 rillig }
459 1.587 rillig
460 1.778 rillig /*
461 1.802 rillig * Find the variable in the scope, and maybe in other scopes as well.
462 1.580 rillig *
463 1.580 rillig * Input:
464 1.607 rillig * name name to find, is not expanded any further
465 1.802 rillig * scope scope in which to look first
466 1.895 rillig * elsewhere true to look in other scopes as well
467 1.580 rillig *
468 1.580 rillig * Results:
469 1.605 rillig * The found variable, or NULL if the variable does not exist.
470 1.977 rillig * If the variable is short-lived (such as environment variables), it
471 1.977 rillig * must be freed using VarFreeShortLived after use.
472 1.580 rillig */
473 1.580 rillig static Var *
474 1.916 rillig VarFindSubstring(Substring name, GNode *scope, bool elsewhere)
475 1.580 rillig {
476 1.703 rillig Var *var;
477 1.703 rillig unsigned int nameHash;
478 1.703 rillig
479 1.830 rillig /* Replace '.TARGET' with '@', likewise for other local variables. */
480 1.703 rillig name = CanonicalVarname(name);
481 1.916 rillig nameHash = Hash_Substring(name);
482 1.580 rillig
483 1.802 rillig var = GNode_FindVar(scope, name, nameHash);
484 1.703 rillig if (!elsewhere)
485 1.703 rillig return var;
486 1.160 christos
487 1.802 rillig if (var == NULL && scope != SCOPE_CMDLINE)
488 1.801 rillig var = GNode_FindVar(SCOPE_CMDLINE, name, nameHash);
489 1.1 cgd
490 1.802 rillig if (!opts.checkEnvFirst && var == NULL && scope != SCOPE_GLOBAL) {
491 1.801 rillig var = GNode_FindVar(SCOPE_GLOBAL, name, nameHash);
492 1.802 rillig if (var == NULL && scope != SCOPE_INTERNAL) {
493 1.801 rillig /* SCOPE_INTERNAL is subordinate to SCOPE_GLOBAL */
494 1.801 rillig var = GNode_FindVar(SCOPE_INTERNAL, name, nameHash);
495 1.703 rillig }
496 1.184 sjg }
497 1.399 rillig
498 1.703 rillig if (var == NULL) {
499 1.1105 rillig FStr envName = Substring_Str(name);
500 1.1105 rillig const char *envValue = getenv(envName.str);
501 1.916 rillig if (envValue != NULL)
502 1.978 rillig return VarNew(envName, envValue, true, true, false);
503 1.916 rillig FStr_Done(&envName);
504 1.1 cgd
505 1.802 rillig if (opts.checkEnvFirst && scope != SCOPE_GLOBAL) {
506 1.801 rillig var = GNode_FindVar(SCOPE_GLOBAL, name, nameHash);
507 1.802 rillig if (var == NULL && scope != SCOPE_INTERNAL)
508 1.801 rillig var = GNode_FindVar(SCOPE_INTERNAL, name,
509 1.703 rillig nameHash);
510 1.703 rillig return var;
511 1.703 rillig }
512 1.399 rillig
513 1.703 rillig return NULL;
514 1.1 cgd }
515 1.399 rillig
516 1.703 rillig return var;
517 1.1 cgd }
518 1.1 cgd
519 1.916 rillig static Var *
520 1.916 rillig VarFind(const char *name, GNode *scope, bool elsewhere)
521 1.916 rillig {
522 1.916 rillig return VarFindSubstring(Substring_InitStr(name), scope, elsewhere);
523 1.916 rillig }
524 1.916 rillig
525 1.977 rillig /* If the variable is short-lived, free it, including its value. */
526 1.837 rillig static void
527 1.977 rillig VarFreeShortLived(Var *v)
528 1.105 christos {
529 1.978 rillig if (!v->shortLived)
530 1.837 rillig return;
531 1.605 rillig
532 1.711 rillig FStr_Done(&v->name);
533 1.837 rillig Buf_Done(&v->val);
534 1.703 rillig free(v);
535 1.105 christos }
536 1.105 christos
537 1.1018 rillig static const char *
538 1.1018 rillig ValueDescription(const char *value)
539 1.1018 rillig {
540 1.1018 rillig if (value[0] == '\0')
541 1.1018 rillig return "# (empty)";
542 1.1019 rillig if (ch_isspace(value[strlen(value) - 1]))
543 1.1018 rillig return "# (ends with space)";
544 1.1018 rillig return "";
545 1.1018 rillig }
546 1.1018 rillig
547 1.831 rillig /* Add a new variable of the given name and value to the given scope. */
548 1.833 rillig static Var *
549 1.831 rillig VarAdd(const char *name, const char *value, GNode *scope, VarSetFlags flags)
550 1.1 cgd {
551 1.802 rillig HashEntry *he = HashTable_CreateEntry(&scope->vars, name, NULL);
552 1.831 rillig Var *v = VarNew(FStr_InitRefer(/* aliased to */ he->key), value,
553 1.978 rillig false, false, (flags & VAR_SET_READONLY) != 0);
554 1.703 rillig HashEntry_Set(he, v);
555 1.1018 rillig DEBUG4(VAR, "%s: %s = %s%s\n",
556 1.1018 rillig scope->name, name, value, ValueDescription(value));
557 1.833 rillig return v;
558 1.1 cgd }
559 1.1 cgd
560 1.736 rillig /*
561 1.802 rillig * Remove a variable from a scope, freeing all related memory as well.
562 1.736 rillig * The variable name is kept as-is, it is not expanded.
563 1.736 rillig */
564 1.736 rillig void
565 1.805 rillig Var_Delete(GNode *scope, const char *varname)
566 1.736 rillig {
567 1.802 rillig HashEntry *he = HashTable_FindEntry(&scope->vars, varname);
568 1.736 rillig Var *v;
569 1.736 rillig
570 1.736 rillig if (he == NULL) {
571 1.1085 rillig DEBUG2(VAR, "%s: ignoring delete '%s' as it is not found\n",
572 1.1017 rillig scope->name, varname);
573 1.736 rillig return;
574 1.736 rillig }
575 1.736 rillig
576 1.831 rillig v = he->value;
577 1.1121 rillig if (v->readOnlyLoud) {
578 1.1121 rillig Parse_Error(PARSE_FATAL,
579 1.1121 rillig "Cannot delete \"%s\" as it is read-only",
580 1.1121 rillig v->name.str);
581 1.1121 rillig return;
582 1.1121 rillig }
583 1.1056 sjg if (v->readOnly) {
584 1.1085 rillig DEBUG2(VAR, "%s: ignoring delete '%s' as it is read-only\n",
585 1.1056 sjg scope->name, varname);
586 1.1056 sjg return;
587 1.1056 sjg }
588 1.963 rillig if (v->inUse) {
589 1.963 rillig Parse_Error(PARSE_FATAL,
590 1.969 rillig "Cannot delete variable \"%s\" while it is used",
591 1.963 rillig v->name.str);
592 1.963 rillig return;
593 1.963 rillig }
594 1.1017 rillig
595 1.1085 rillig DEBUG2(VAR, "%s: delete %s\n", scope->name, varname);
596 1.902 rillig if (v->exported)
597 1.736 rillig unsetenv(v->name.str);
598 1.1045 rillig if (strcmp(v->name.str, ".MAKE.EXPORTED") == 0)
599 1.736 rillig var_exportedVars = VAR_EXPORTED_NONE;
600 1.1017 rillig
601 1.736 rillig assert(v->name.freeIt == NULL);
602 1.802 rillig HashTable_DeleteEntry(&scope->vars, he);
603 1.784 rillig Buf_Done(&v->val);
604 1.736 rillig free(v);
605 1.736 rillig }
606 1.736 rillig
607 1.1111 rillig #ifdef CLEANUP
608 1.1111 rillig void
609 1.1111 rillig Var_DeleteAll(GNode *scope)
610 1.1111 rillig {
611 1.1113 rillig HashIter hi;
612 1.1113 rillig HashIter_Init(&hi, &scope->vars);
613 1.1114 rillig while (HashIter_Next(&hi)) {
614 1.1113 rillig Var *v = hi.entry->value;
615 1.1113 rillig Buf_Done(&v->val);
616 1.1113 rillig free(v);
617 1.1111 rillig }
618 1.1111 rillig }
619 1.1111 rillig #endif
620 1.1111 rillig
621 1.778 rillig /*
622 1.762 rillig * Undefine one or more variables from the global scope.
623 1.762 rillig * The argument is expanded exactly once and then split into words.
624 1.737 rillig */
625 1.735 rillig void
626 1.762 rillig Var_Undef(const char *arg)
627 1.735 rillig {
628 1.762 rillig char *expanded;
629 1.762 rillig Words varnames;
630 1.762 rillig size_t i;
631 1.762 rillig
632 1.762 rillig if (arg[0] == '\0') {
633 1.762 rillig Parse_Error(PARSE_FATAL,
634 1.762 rillig "The .undef directive requires an argument");
635 1.762 rillig return;
636 1.762 rillig }
637 1.735 rillig
638 1.1119 rillig expanded = Var_Subst(arg, SCOPE_GLOBAL, VARE_EVAL);
639 1.1043 rillig if (expanded == var_Error) {
640 1.1043 rillig /* TODO: Make this part of the code reachable. */
641 1.737 rillig Parse_Error(PARSE_FATAL,
642 1.762 rillig "Error in variable names to be undefined");
643 1.762 rillig return;
644 1.762 rillig }
645 1.762 rillig
646 1.895 rillig varnames = Str_Words(expanded, false);
647 1.762 rillig if (varnames.len == 1 && varnames.words[0][0] == '\0')
648 1.762 rillig varnames.len = 0;
649 1.762 rillig
650 1.762 rillig for (i = 0; i < varnames.len; i++) {
651 1.762 rillig const char *varname = varnames.words[i];
652 1.804 rillig Global_Delete(varname);
653 1.737 rillig }
654 1.735 rillig
655 1.762 rillig Words_Free(varnames);
656 1.763 rillig free(expanded);
657 1.735 rillig }
658 1.735 rillig
659 1.895 rillig static bool
660 1.598 rillig MayExport(const char *name)
661 1.118 sjg {
662 1.703 rillig if (name[0] == '.')
663 1.895 rillig return false; /* skip internals */
664 1.703 rillig if (name[0] == '-')
665 1.895 rillig return false; /* skip misnamed variables */
666 1.703 rillig if (name[1] == '\0') {
667 1.703 rillig /*
668 1.703 rillig * A single char.
669 1.802 rillig * If it is one of the variables that should only appear in
670 1.802 rillig * local scope, skip it, else we can get Var_Subst
671 1.703 rillig * into a loop.
672 1.703 rillig */
673 1.703 rillig switch (name[0]) {
674 1.703 rillig case '@':
675 1.703 rillig case '%':
676 1.703 rillig case '*':
677 1.703 rillig case '!':
678 1.895 rillig return false;
679 1.703 rillig }
680 1.118 sjg }
681 1.895 rillig return true;
682 1.598 rillig }
683 1.598 rillig
684 1.895 rillig static bool
685 1.1100 sjg ExportVarEnv(Var *v, GNode *scope)
686 1.776 rillig {
687 1.776 rillig const char *name = v->name.str;
688 1.777 rillig char *val = v->val.data;
689 1.777 rillig char *expr;
690 1.776 rillig
691 1.902 rillig if (v->exported && !v->reexport)
692 1.895 rillig return false; /* nothing to do */
693 1.776 rillig
694 1.777 rillig if (strchr(val, '$') == NULL) {
695 1.902 rillig if (!v->exported)
696 1.776 rillig setenv(name, val, 1);
697 1.895 rillig return true;
698 1.776 rillig }
699 1.776 rillig
700 1.1070 rillig if (v->inUse)
701 1.1070 rillig return false; /* see EMPTY_SHELL in directive-export.mk */
702 1.776 rillig
703 1.777 rillig /* XXX: name is injected without escaping it */
704 1.777 rillig expr = str_concat3("${", name, "}");
705 1.1119 rillig val = Var_Subst(expr, scope, VARE_EVAL);
706 1.1100 sjg if (scope != SCOPE_GLOBAL) {
707 1.1101 rillig /* we will need to re-export the global version */
708 1.1100 sjg v = VarFind(name, SCOPE_GLOBAL, false);
709 1.1101 rillig if (v != NULL)
710 1.1100 sjg v->exported = false;
711 1.1100 sjg }
712 1.777 rillig /* TODO: handle errors */
713 1.777 rillig setenv(name, val, 1);
714 1.777 rillig free(val);
715 1.777 rillig free(expr);
716 1.895 rillig return true;
717 1.776 rillig }
718 1.776 rillig
719 1.895 rillig static bool
720 1.776 rillig ExportVarPlain(Var *v)
721 1.598 rillig {
722 1.777 rillig if (strchr(v->val.data, '$') == NULL) {
723 1.777 rillig setenv(v->name.str, v->val.data, 1);
724 1.902 rillig v->exported = true;
725 1.902 rillig v->reexport = false;
726 1.895 rillig return true;
727 1.776 rillig }
728 1.776 rillig
729 1.777 rillig /*
730 1.777 rillig * Flag the variable as something we need to re-export.
731 1.777 rillig * No point actually exporting it now though,
732 1.777 rillig * the child process can do it at the last minute.
733 1.830 rillig * Avoid calling setenv more often than necessary since it can leak.
734 1.777 rillig */
735 1.902 rillig v->exported = true;
736 1.902 rillig v->reexport = true;
737 1.895 rillig return true;
738 1.776 rillig }
739 1.401 rillig
740 1.895 rillig static bool
741 1.776 rillig ExportVarLiteral(Var *v)
742 1.776 rillig {
743 1.902 rillig if (v->exported && !v->reexport)
744 1.895 rillig return false;
745 1.401 rillig
746 1.902 rillig if (!v->exported)
747 1.777 rillig setenv(v->name.str, v->val.data, 1);
748 1.605 rillig
749 1.895 rillig return true;
750 1.118 sjg }
751 1.118 sjg
752 1.118 sjg /*
753 1.830 rillig * Mark a single variable to be exported later for subprocesses.
754 1.776 rillig *
755 1.1088 rillig * Internal variables are not exported.
756 1.776 rillig */
757 1.895 rillig static bool
758 1.1100 sjg ExportVar(const char *name, GNode *scope, VarExportMode mode)
759 1.776 rillig {
760 1.776 rillig Var *v;
761 1.776 rillig
762 1.776 rillig if (!MayExport(name))
763 1.895 rillig return false;
764 1.776 rillig
765 1.1100 sjg v = VarFind(name, scope, false);
766 1.1100 sjg if (v == NULL && scope != SCOPE_GLOBAL)
767 1.1100 sjg v = VarFind(name, SCOPE_GLOBAL, false);
768 1.776 rillig if (v == NULL)
769 1.895 rillig return false;
770 1.776 rillig
771 1.776 rillig if (mode == VEM_ENV)
772 1.1100 sjg return ExportVarEnv(v, scope);
773 1.776 rillig else if (mode == VEM_PLAIN)
774 1.776 rillig return ExportVarPlain(v);
775 1.776 rillig else
776 1.776 rillig return ExportVarLiteral(v);
777 1.776 rillig }
778 1.776 rillig
779 1.776 rillig /*
780 1.765 rillig * Actually export the variables that have been marked as needing to be
781 1.765 rillig * re-exported.
782 1.118 sjg */
783 1.118 sjg void
784 1.1100 sjg Var_ReexportVars(GNode *scope)
785 1.118 sjg {
786 1.775 rillig char *xvarnames;
787 1.412 rillig
788 1.703 rillig /*
789 1.703 rillig * Several make implementations support this sort of mechanism for
790 1.703 rillig * tracking recursion - but each uses a different name.
791 1.703 rillig * We allow the makefiles to update MAKELEVEL and ensure
792 1.703 rillig * children see a correctly incremented value.
793 1.703 rillig */
794 1.1067 rillig char level_buf[21];
795 1.1067 rillig snprintf(level_buf, sizeof level_buf, "%d", makelevel + 1);
796 1.1067 rillig setenv(MAKE_LEVEL_ENV, level_buf, 1);
797 1.182 christos
798 1.703 rillig if (var_exportedVars == VAR_EXPORTED_NONE)
799 1.703 rillig return;
800 1.118 sjg
801 1.703 rillig if (var_exportedVars == VAR_EXPORTED_ALL) {
802 1.703 rillig HashIter hi;
803 1.575 rillig
804 1.831 rillig /* Ouch! Exporting all variables at once is crazy. */
805 1.801 rillig HashIter_Init(&hi, &SCOPE_GLOBAL->vars);
806 1.1114 rillig while (HashIter_Next(&hi)) {
807 1.703 rillig Var *var = hi.entry->value;
808 1.1100 sjg ExportVar(var->name.str, scope, VEM_ENV);
809 1.703 rillig }
810 1.703 rillig return;
811 1.575 rillig }
812 1.369 rillig
813 1.1045 rillig xvarnames = Var_Subst("${.MAKE.EXPORTED:O:u}", SCOPE_GLOBAL,
814 1.1119 rillig VARE_EVAL);
815 1.703 rillig /* TODO: handle errors */
816 1.775 rillig if (xvarnames[0] != '\0') {
817 1.895 rillig Words varnames = Str_Words(xvarnames, false);
818 1.703 rillig size_t i;
819 1.703 rillig
820 1.775 rillig for (i = 0; i < varnames.len; i++)
821 1.1100 sjg ExportVar(varnames.words[i], scope, VEM_ENV);
822 1.775 rillig Words_Free(varnames);
823 1.703 rillig }
824 1.775 rillig free(xvarnames);
825 1.118 sjg }
826 1.118 sjg
827 1.726 rillig static void
828 1.895 rillig ExportVars(const char *varnames, bool isExport, VarExportMode mode)
829 1.831 rillig /* TODO: try to combine the parameters 'isExport' and 'mode'. */
830 1.726 rillig {
831 1.895 rillig Words words = Str_Words(varnames, false);
832 1.727 rillig size_t i;
833 1.727 rillig
834 1.727 rillig if (words.len == 1 && words.words[0][0] == '\0')
835 1.727 rillig words.len = 0;
836 1.727 rillig
837 1.727 rillig for (i = 0; i < words.len; i++) {
838 1.727 rillig const char *varname = words.words[i];
839 1.1100 sjg if (!ExportVar(varname, SCOPE_GLOBAL, mode))
840 1.727 rillig continue;
841 1.727 rillig
842 1.727 rillig if (var_exportedVars == VAR_EXPORTED_NONE)
843 1.727 rillig var_exportedVars = VAR_EXPORTED_SOME;
844 1.726 rillig
845 1.765 rillig if (isExport && mode == VEM_PLAIN)
846 1.1045 rillig Global_Append(".MAKE.EXPORTED", varname);
847 1.726 rillig }
848 1.727 rillig Words_Free(words);
849 1.726 rillig }
850 1.726 rillig
851 1.728 rillig static void
852 1.895 rillig ExportVarsExpand(const char *uvarnames, bool isExport, VarExportMode mode)
853 1.728 rillig {
854 1.1119 rillig char *xvarnames = Var_Subst(uvarnames, SCOPE_GLOBAL, VARE_EVAL);
855 1.728 rillig /* TODO: handle errors */
856 1.730 rillig ExportVars(xvarnames, isExport, mode);
857 1.728 rillig free(xvarnames);
858 1.728 rillig }
859 1.728 rillig
860 1.731 rillig /* Export the named variables, or all variables. */
861 1.118 sjg void
862 1.731 rillig Var_Export(VarExportMode mode, const char *varnames)
863 1.118 sjg {
864 1.1117 sjg if (mode == VEM_ALL) {
865 1.703 rillig var_exportedVars = VAR_EXPORTED_ALL; /* use with caution! */
866 1.703 rillig return;
867 1.1117 sjg } else if (mode == VEM_PLAIN && varnames[0] == '\0') {
868 1.1117 sjg Parse_Error(PARSE_WARNING, ".export requires an argument.");
869 1.1117 sjg return;
870 1.703 rillig }
871 1.118 sjg
872 1.895 rillig ExportVarsExpand(varnames, true, mode);
873 1.729 rillig }
874 1.729 rillig
875 1.729 rillig void
876 1.729 rillig Var_ExportVars(const char *varnames)
877 1.729 rillig {
878 1.895 rillig ExportVarsExpand(varnames, false, VEM_PLAIN);
879 1.118 sjg }
880 1.118 sjg
881 1.155 sjg
882 1.700 rillig static void
883 1.714 rillig ClearEnv(void)
884 1.701 rillig {
885 1.1083 rillig const char *level;
886 1.701 rillig char **newenv;
887 1.701 rillig
888 1.1083 rillig level = getenv(MAKE_LEVEL_ENV); /* we should preserve this */
889 1.701 rillig if (environ == savedEnv) {
890 1.701 rillig /* we have been here before! */
891 1.701 rillig newenv = bmake_realloc(environ, 2 * sizeof(char *));
892 1.701 rillig } else {
893 1.701 rillig if (savedEnv != NULL) {
894 1.701 rillig free(savedEnv);
895 1.701 rillig savedEnv = NULL;
896 1.701 rillig }
897 1.701 rillig newenv = bmake_malloc(2 * sizeof(char *));
898 1.701 rillig }
899 1.701 rillig
900 1.701 rillig /* Note: we cannot safely free() the original environ. */
901 1.701 rillig environ = savedEnv = newenv;
902 1.701 rillig newenv[0] = NULL;
903 1.701 rillig newenv[1] = NULL;
904 1.1083 rillig if (level != NULL && *level != '\0')
905 1.1083 rillig setenv(MAKE_LEVEL_ENV, level, 1);
906 1.701 rillig }
907 1.701 rillig
908 1.701 rillig static void
909 1.895 rillig GetVarnamesToUnexport(bool isEnv, const char *arg,
910 1.715 rillig FStr *out_varnames, UnexportWhat *out_what)
911 1.714 rillig {
912 1.714 rillig UnexportWhat what;
913 1.739 rillig FStr varnames = FStr_InitRefer("");
914 1.714 rillig
915 1.732 rillig if (isEnv) {
916 1.732 rillig if (arg[0] != '\0') {
917 1.723 rillig Parse_Error(PARSE_FATAL,
918 1.723 rillig "The directive .unexport-env does not take "
919 1.723 rillig "arguments");
920 1.830 rillig /* continue anyway */
921 1.723 rillig }
922 1.714 rillig what = UNEXPORT_ENV;
923 1.723 rillig
924 1.732 rillig } else {
925 1.732 rillig what = arg[0] != '\0' ? UNEXPORT_NAMED : UNEXPORT_ALL;
926 1.714 rillig if (what == UNEXPORT_NAMED)
927 1.739 rillig varnames = FStr_InitRefer(arg);
928 1.714 rillig }
929 1.714 rillig
930 1.714 rillig if (what != UNEXPORT_NAMED) {
931 1.1045 rillig char *expanded = Var_Subst("${.MAKE.EXPORTED:O:u}",
932 1.1119 rillig SCOPE_GLOBAL, VARE_EVAL);
933 1.714 rillig /* TODO: handle errors */
934 1.739 rillig varnames = FStr_InitOwn(expanded);
935 1.714 rillig }
936 1.714 rillig
937 1.714 rillig *out_varnames = varnames;
938 1.714 rillig *out_what = what;
939 1.714 rillig }
940 1.714 rillig
941 1.714 rillig static void
942 1.959 rillig UnexportVar(Substring varname, UnexportWhat what)
943 1.700 rillig {
944 1.959 rillig Var *v = VarFindSubstring(varname, SCOPE_GLOBAL, false);
945 1.700 rillig if (v == NULL) {
946 1.959 rillig DEBUG2(VAR, "Not unexporting \"%.*s\" (not found)\n",
947 1.959 rillig (int)Substring_Length(varname), varname.start);
948 1.700 rillig return;
949 1.700 rillig }
950 1.700 rillig
951 1.959 rillig DEBUG2(VAR, "Unexporting \"%.*s\"\n",
952 1.959 rillig (int)Substring_Length(varname), varname.start);
953 1.902 rillig if (what != UNEXPORT_ENV && v->exported && !v->reexport)
954 1.711 rillig unsetenv(v->name.str);
955 1.902 rillig v->exported = false;
956 1.902 rillig v->reexport = false;
957 1.700 rillig
958 1.713 rillig if (what == UNEXPORT_NAMED) {
959 1.713 rillig /* Remove the variable names from .MAKE.EXPORTED. */
960 1.700 rillig /* XXX: v->name is injected without escaping it */
961 1.1083 rillig char *expr = str_concat3(
962 1.1083 rillig "${.MAKE.EXPORTED:N", v->name.str, "}");
963 1.1119 rillig char *filtered = Var_Subst(expr, SCOPE_GLOBAL, VARE_EVAL);
964 1.700 rillig /* TODO: handle errors */
965 1.1083 rillig Global_Set(".MAKE.EXPORTED", filtered);
966 1.1083 rillig free(filtered);
967 1.700 rillig free(expr);
968 1.700 rillig }
969 1.700 rillig }
970 1.700 rillig
971 1.716 rillig static void
972 1.716 rillig UnexportVars(FStr *varnames, UnexportWhat what)
973 1.716 rillig {
974 1.716 rillig size_t i;
975 1.959 rillig SubstringWords words;
976 1.717 rillig
977 1.717 rillig if (what == UNEXPORT_ENV)
978 1.717 rillig ClearEnv();
979 1.716 rillig
980 1.959 rillig words = Substring_Words(varnames->str, false);
981 1.959 rillig for (i = 0; i < words.len; i++)
982 1.959 rillig UnexportVar(words.words[i], what);
983 1.959 rillig SubstringWords_Free(words);
984 1.716 rillig
985 1.716 rillig if (what != UNEXPORT_NAMED)
986 1.1045 rillig Global_Delete(".MAKE.EXPORTED");
987 1.716 rillig }
988 1.716 rillig
989 1.1088 rillig /* Handle the .unexport and .unexport-env directives. */
990 1.155 sjg void
991 1.895 rillig Var_UnExport(bool isEnv, const char *arg)
992 1.155 sjg {
993 1.713 rillig UnexportWhat what;
994 1.714 rillig FStr varnames;
995 1.155 sjg
996 1.732 rillig GetVarnamesToUnexport(isEnv, arg, &varnames, &what);
997 1.716 rillig UnexportVars(&varnames, what);
998 1.712 rillig FStr_Done(&varnames);
999 1.155 sjg }
1000 1.155 sjg
1001 1.747 rillig /* Set the variable to the value; the name is not expanded. */
1002 1.800 rillig void
1003 1.805 rillig Var_SetWithFlags(GNode *scope, const char *name, const char *val,
1004 1.800 rillig VarSetFlags flags)
1005 1.1 cgd {
1006 1.704 rillig Var *v;
1007 1.142 dsl
1008 1.793 rillig assert(val != NULL);
1009 1.793 rillig if (name[0] == '\0') {
1010 1.1086 rillig DEBUG3(VAR,
1011 1.1086 rillig "%s: ignoring '%s = %s' as the variable name is empty\n",
1012 1.1086 rillig scope->name, name, val);
1013 1.793 rillig return;
1014 1.793 rillig }
1015 1.793 rillig
1016 1.1089 rillig if (scope == SCOPE_GLOBAL
1017 1.1089 rillig && VarFind(name, SCOPE_CMDLINE, false) != NULL) {
1018 1.1089 rillig /*
1019 1.1089 rillig * The global variable would not be visible anywhere.
1020 1.1089 rillig * Therefore, there is no point in setting it at all.
1021 1.1089 rillig */
1022 1.1082 rillig DEBUG3(VAR,
1023 1.1086 rillig "%s: ignoring '%s = %s' "
1024 1.1082 rillig "due to a command line variable of the same name\n",
1025 1.1086 rillig scope->name, name, val);
1026 1.834 rillig return;
1027 1.1080 rillig }
1028 1.400 rillig
1029 1.704 rillig /*
1030 1.802 rillig * Only look for a variable in the given scope since anything set
1031 1.802 rillig * here will override anything in a lower scope, so there's not much
1032 1.830 rillig * point in searching them all.
1033 1.704 rillig */
1034 1.895 rillig v = VarFind(name, scope, false);
1035 1.704 rillig if (v == NULL) {
1036 1.802 rillig if (scope == SCOPE_CMDLINE && !(flags & VAR_SET_NO_EXPORT)) {
1037 1.704 rillig /*
1038 1.1105 rillig * This variable would normally prevent the same name
1039 1.1105 rillig * being added to SCOPE_GLOBAL, so delete it from
1040 1.1105 rillig * there if needed. Otherwise -V name may show the
1041 1.1105 rillig * wrong value.
1042 1.832 rillig *
1043 1.835 rillig * See ExistsInCmdline.
1044 1.704 rillig */
1045 1.835 rillig Var_Delete(SCOPE_GLOBAL, name);
1046 1.704 rillig }
1047 1.973 sjg if (strcmp(name, ".SUFFIXES") == 0) {
1048 1.1079 rillig /* special: treat as read-only */
1049 1.1086 rillig DEBUG3(VAR,
1050 1.1086 rillig "%s: ignoring '%s = %s' as it is read-only\n",
1051 1.973 sjg scope->name, name, val);
1052 1.973 sjg return;
1053 1.973 sjg }
1054 1.833 rillig v = VarAdd(name, val, scope, flags);
1055 1.704 rillig } else {
1056 1.1121 rillig if (v->readOnlyLoud) {
1057 1.1121 rillig Parse_Error(PARSE_FATAL,
1058 1.1121 rillig "Cannot overwrite \"%s\" as it is read-only",
1059 1.1121 rillig name);
1060 1.1121 rillig return;
1061 1.1121 rillig }
1062 1.902 rillig if (v->readOnly && !(flags & VAR_SET_READONLY)) {
1063 1.1086 rillig DEBUG3(VAR,
1064 1.1086 rillig "%s: ignoring '%s = %s' as it is read-only\n",
1065 1.802 rillig scope->name, name, val);
1066 1.747 rillig return;
1067 1.704 rillig }
1068 1.998 rillig Buf_Clear(&v->val);
1069 1.704 rillig Buf_AddStr(&v->val, val);
1070 1.704 rillig
1071 1.1018 rillig DEBUG4(VAR, "%s: %s = %s%s\n",
1072 1.1018 rillig scope->name, name, val, ValueDescription(val));
1073 1.902 rillig if (v->exported)
1074 1.1100 sjg ExportVar(name, scope, VEM_PLAIN);
1075 1.183 sjg }
1076 1.833 rillig
1077 1.1076 sjg if (scope == SCOPE_CMDLINE) {
1078 1.902 rillig v->fromCmd = true;
1079 1.1079 rillig
1080 1.1079 rillig /*
1081 1.1079 rillig * Any variables given on the command line are automatically
1082 1.1079 rillig * exported to the environment (as per POSIX standard), except
1083 1.1079 rillig * for internals.
1084 1.1079 rillig */
1085 1.1109 sjg if (!(flags & VAR_SET_NO_EXPORT)) {
1086 1.704 rillig
1087 1.1076 sjg /*
1088 1.1076 sjg * If requested, don't export these in the
1089 1.1076 sjg * environment individually. We still put
1090 1.1076 sjg * them in .MAKEOVERRIDES so that the
1091 1.1077 rillig * command-line settings continue to override
1092 1.1076 sjg * Makefile settings.
1093 1.1076 sjg */
1094 1.1109 sjg if (!opts.varNoExportEnv && name[0] != '.')
1095 1.1076 sjg setenv(name, val, 1);
1096 1.1109 sjg
1097 1.1109 sjg if (!(flags & VAR_SET_INTERNAL))
1098 1.1109 sjg Global_Append(".MAKEOVERRIDES", name);
1099 1.1076 sjg }
1100 1.704 rillig }
1101 1.833 rillig
1102 1.704 rillig if (name[0] == '.' && strcmp(name, MAKE_SAVE_DOLLARS) == 0)
1103 1.704 rillig save_dollars = ParseBoolean(val, save_dollars);
1104 1.205 sjg
1105 1.704 rillig if (v != NULL)
1106 1.977 rillig VarFreeShortLived(v);
1107 1.1 cgd }
1108 1.1 cgd
1109 1.798 rillig void
1110 1.805 rillig Var_Set(GNode *scope, const char *name, const char *val)
1111 1.798 rillig {
1112 1.805 rillig Var_SetWithFlags(scope, name, val, VAR_SET_NONE);
1113 1.798 rillig }
1114 1.798 rillig
1115 1.718 rillig /*
1116 1.1079 rillig * In the scope, expand the variable name once, then create the variable or
1117 1.1079 rillig * replace its value.
1118 1.230 rillig */
1119 1.230 rillig void
1120 1.805 rillig Var_SetExpand(GNode *scope, const char *name, const char *val)
1121 1.230 rillig {
1122 1.1007 rillig FStr varname = FStr_InitRefer(name);
1123 1.1007 rillig
1124 1.1007 rillig assert(val != NULL);
1125 1.1007 rillig
1126 1.1119 rillig Var_Expand(&varname, scope, VARE_EVAL);
1127 1.1007 rillig
1128 1.1007 rillig if (varname.str[0] == '\0') {
1129 1.1086 rillig DEBUG4(VAR,
1130 1.1086 rillig "%s: ignoring '%s = %s' "
1131 1.1086 rillig "as the variable name '%s' expands to empty\n",
1132 1.1089 rillig scope->name, varname.str, val, name);
1133 1.1007 rillig } else
1134 1.1007 rillig Var_SetWithFlags(scope, varname.str, val, VAR_SET_NONE);
1135 1.1007 rillig
1136 1.1007 rillig FStr_Done(&varname);
1137 1.230 rillig }
1138 1.230 rillig
1139 1.791 rillig void
1140 1.792 rillig Global_Set(const char *name, const char *value)
1141 1.792 rillig {
1142 1.805 rillig Var_Set(SCOPE_GLOBAL, name, value);
1143 1.792 rillig }
1144 1.792 rillig
1145 1.792 rillig void
1146 1.804 rillig Global_Delete(const char *name)
1147 1.804 rillig {
1148 1.805 rillig Var_Delete(SCOPE_GLOBAL, name);
1149 1.804 rillig }
1150 1.804 rillig
1151 1.1039 sjg void
1152 1.1039 sjg Global_Set_ReadOnly(const char *name, const char *value)
1153 1.1039 sjg {
1154 1.1121 rillig Var_SetWithFlags(SCOPE_GLOBAL, name, value, VAR_SET_NONE);
1155 1.1121 rillig VarFind(name, SCOPE_GLOBAL, false)->readOnlyLoud = true;
1156 1.1039 sjg }
1157 1.1039 sjg
1158 1.718 rillig /*
1159 1.794 rillig * Append the value to the named variable.
1160 1.794 rillig *
1161 1.794 rillig * If the variable doesn't exist, it is created. Otherwise a single space
1162 1.794 rillig * and the given value are appended.
1163 1.794 rillig */
1164 1.794 rillig void
1165 1.805 rillig Var_Append(GNode *scope, const char *name, const char *val)
1166 1.794 rillig {
1167 1.794 rillig Var *v;
1168 1.794 rillig
1169 1.802 rillig v = VarFind(name, scope, scope == SCOPE_GLOBAL);
1170 1.794 rillig
1171 1.794 rillig if (v == NULL) {
1172 1.805 rillig Var_SetWithFlags(scope, name, val, VAR_SET_NONE);
1173 1.1121 rillig } else if (v->readOnlyLoud) {
1174 1.1121 rillig Parse_Error(PARSE_FATAL,
1175 1.1121 rillig "Cannot append to \"%s\" as it is read-only", name);
1176 1.1121 rillig return;
1177 1.902 rillig } else if (v->readOnly) {
1178 1.1086 rillig DEBUG3(VAR, "%s: ignoring '%s += %s' as it is read-only\n",
1179 1.1086 rillig scope->name, name, val);
1180 1.902 rillig } else if (scope == SCOPE_CMDLINE || !v->fromCmd) {
1181 1.794 rillig Buf_AddByte(&v->val, ' ');
1182 1.794 rillig Buf_AddStr(&v->val, val);
1183 1.794 rillig
1184 1.911 rillig DEBUG3(VAR, "%s: %s = %s\n", scope->name, name, v->val.data);
1185 1.794 rillig
1186 1.978 rillig if (v->fromEnvironment) {
1187 1.1014 rillig /* See VarAdd. */
1188 1.1014 rillig HashEntry *he =
1189 1.1014 rillig HashTable_CreateEntry(&scope->vars, name, NULL);
1190 1.1014 rillig HashEntry_Set(he, v);
1191 1.1014 rillig FStr_Done(&v->name);
1192 1.1014 rillig v->name = FStr_InitRefer(/* aliased to */ he->key);
1193 1.1014 rillig v->shortLived = false;
1194 1.978 rillig v->fromEnvironment = false;
1195 1.794 rillig }
1196 1.794 rillig }
1197 1.794 rillig }
1198 1.794 rillig
1199 1.794 rillig /*
1200 1.1088 rillig * In the scope, expand the variable name once. If the variable exists in the
1201 1.1088 rillig * scope, add a space and the value, otherwise set the variable to the value.
1202 1.483 rillig *
1203 1.1088 rillig * Appending to an environment variable only works in the global scope, that
1204 1.1088 rillig * is, for variable assignments in makefiles, but not inside conditions or the
1205 1.1088 rillig * commands of a target.
1206 1.1 cgd */
1207 1.1 cgd void
1208 1.805 rillig Var_AppendExpand(GNode *scope, const char *name, const char *val)
1209 1.1 cgd {
1210 1.838 rillig FStr xname = FStr_InitRefer(name);
1211 1.1 cgd
1212 1.704 rillig assert(val != NULL);
1213 1.460 rillig
1214 1.1119 rillig Var_Expand(&xname, scope, VARE_EVAL);
1215 1.1001 rillig if (xname.str != name && xname.str[0] == '\0')
1216 1.1086 rillig DEBUG4(VAR,
1217 1.1086 rillig "%s: ignoring '%s += %s' "
1218 1.1086 rillig "as the variable name '%s' expands to empty\n",
1219 1.1086 rillig scope->name, xname.str, val, name);
1220 1.1001 rillig else
1221 1.1001 rillig Var_Append(scope, xname.str, val);
1222 1.1 cgd
1223 1.838 rillig FStr_Done(&xname);
1224 1.1 cgd }
1225 1.1 cgd
1226 1.791 rillig void
1227 1.795 rillig Global_Append(const char *name, const char *value)
1228 1.791 rillig {
1229 1.805 rillig Var_Append(SCOPE_GLOBAL, name, value);
1230 1.791 rillig }
1231 1.791 rillig
1232 1.895 rillig bool
1233 1.805 rillig Var_Exists(GNode *scope, const char *name)
1234 1.796 rillig {
1235 1.895 rillig Var *v = VarFind(name, scope, true);
1236 1.796 rillig if (v == NULL)
1237 1.895 rillig return false;
1238 1.796 rillig
1239 1.977 rillig VarFreeShortLived(v);
1240 1.895 rillig return true;
1241 1.796 rillig }
1242 1.796 rillig
1243 1.778 rillig /*
1244 1.802 rillig * See if the given variable exists, in the given scope or in other
1245 1.802 rillig * fallback scopes.
1246 1.1 cgd *
1247 1.70 wiz * Input:
1248 1.953 rillig * scope scope in which to start search
1249 1.953 rillig * name name of the variable to find, is expanded once
1250 1.1 cgd */
1251 1.895 rillig bool
1252 1.805 rillig Var_ExistsExpand(GNode *scope, const char *name)
1253 1.1 cgd {
1254 1.747 rillig FStr varname = FStr_InitRefer(name);
1255 1.895 rillig bool exists;
1256 1.412 rillig
1257 1.1119 rillig Var_Expand(&varname, scope, VARE_EVAL);
1258 1.805 rillig exists = Var_Exists(scope, varname.str);
1259 1.747 rillig FStr_Done(&varname);
1260 1.796 rillig return exists;
1261 1.1 cgd }
1262 1.1 cgd
1263 1.718 rillig /*
1264 1.802 rillig * Return the unexpanded value of the given variable in the given scope,
1265 1.1066 rillig * falling back to the command, global and environment scopes, in this order,
1266 1.1066 rillig * but see the -e option.
1267 1.1 cgd *
1268 1.70 wiz * Input:
1269 1.1066 rillig * name the name to find, is not expanded any further
1270 1.70 wiz *
1271 1.1 cgd * Results:
1272 1.337 rillig * The value if the variable exists, NULL if it doesn't.
1273 1.830 rillig * The value is valid until the next modification to any variable.
1274 1.1 cgd */
1275 1.745 rillig FStr
1276 1.805 rillig Var_Value(GNode *scope, const char *name)
1277 1.1 cgd {
1278 1.895 rillig Var *v = VarFind(name, scope, true);
1279 1.703 rillig char *value;
1280 1.703 rillig
1281 1.703 rillig if (v == NULL)
1282 1.745 rillig return FStr_InitRefer(NULL);
1283 1.412 rillig
1284 1.978 rillig if (!v->shortLived)
1285 1.837 rillig return FStr_InitRefer(v->val.data);
1286 1.837 rillig
1287 1.978 rillig value = v->val.data;
1288 1.978 rillig v->val.data = NULL;
1289 1.978 rillig VarFreeShortLived(v);
1290 1.978 rillig
1291 1.837 rillig return FStr_InitOwn(value);
1292 1.1 cgd }
1293 1.1 cgd
1294 1.1088 rillig /* Set or clear the read-only attribute of the variable if it exists. */
1295 1.1037 sjg void
1296 1.1037 sjg Var_ReadOnly(const char *name, bool bf)
1297 1.1037 sjg {
1298 1.1037 sjg Var *v;
1299 1.1037 sjg
1300 1.1037 sjg v = VarFind(name, SCOPE_GLOBAL, false);
1301 1.1037 sjg if (v == NULL) {
1302 1.1037 sjg DEBUG1(VAR, "Var_ReadOnly: %s not found\n", name);
1303 1.1037 sjg return;
1304 1.1037 sjg }
1305 1.1037 sjg v->readOnly = bf;
1306 1.1038 sjg DEBUG2(VAR, "Var_ReadOnly: %s %s\n", name, bf ? "true" : "false");
1307 1.1037 sjg }
1308 1.1037 sjg
1309 1.1037 sjg /*
1310 1.778 rillig * Return the unexpanded variable value from this node, without trying to look
1311 1.802 rillig * up the variable in any other scope.
1312 1.778 rillig */
1313 1.616 rillig const char *
1314 1.803 rillig GNode_ValueDirect(GNode *gn, const char *name)
1315 1.616 rillig {
1316 1.895 rillig Var *v = VarFind(name, gn, false);
1317 1.785 rillig return v != NULL ? v->val.data : NULL;
1318 1.616 rillig }
1319 1.616 rillig
1320 1.906 rillig static VarEvalMode
1321 1.906 rillig VarEvalMode_WithoutKeepDollar(VarEvalMode emode)
1322 1.906 rillig {
1323 1.1119 rillig return emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED
1324 1.1119 rillig ? VARE_EVAL_KEEP_UNDEFINED : emode;
1325 1.906 rillig }
1326 1.906 rillig
1327 1.906 rillig static VarEvalMode
1328 1.906 rillig VarEvalMode_UndefOk(VarEvalMode emode)
1329 1.906 rillig {
1330 1.1119 rillig return emode == VARE_EVAL_DEFINED ? VARE_EVAL : emode;
1331 1.906 rillig }
1332 1.244 rillig
1333 1.905 rillig static bool
1334 1.906 rillig VarEvalMode_ShouldEval(VarEvalMode emode)
1335 1.905 rillig {
1336 1.1119 rillig return emode != VARE_PARSE;
1337 1.906 rillig }
1338 1.906 rillig
1339 1.906 rillig static bool
1340 1.906 rillig VarEvalMode_ShouldKeepUndef(VarEvalMode emode)
1341 1.906 rillig {
1342 1.1119 rillig return emode == VARE_EVAL_KEEP_UNDEFINED ||
1343 1.1119 rillig emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED;
1344 1.906 rillig }
1345 1.906 rillig
1346 1.906 rillig static bool
1347 1.906 rillig VarEvalMode_ShouldKeepDollar(VarEvalMode emode)
1348 1.906 rillig {
1349 1.1119 rillig return emode == VARE_EVAL_KEEP_DOLLAR_AND_UNDEFINED;
1350 1.905 rillig }
1351 1.905 rillig
1352 1.905 rillig
1353 1.278 rillig static void
1354 1.278 rillig SepBuf_Init(SepBuf *buf, char sep)
1355 1.278 rillig {
1356 1.703 rillig Buf_InitSize(&buf->buf, 32);
1357 1.895 rillig buf->needSep = false;
1358 1.703 rillig buf->sep = sep;
1359 1.278 rillig }
1360 1.278 rillig
1361 1.278 rillig static void
1362 1.278 rillig SepBuf_Sep(SepBuf *buf)
1363 1.278 rillig {
1364 1.895 rillig buf->needSep = true;
1365 1.278 rillig }
1366 1.278 rillig
1367 1.278 rillig static void
1368 1.314 rillig SepBuf_AddBytes(SepBuf *buf, const char *mem, size_t mem_size)
1369 1.278 rillig {
1370 1.703 rillig if (mem_size == 0)
1371 1.703 rillig return;
1372 1.703 rillig if (buf->needSep && buf->sep != '\0') {
1373 1.703 rillig Buf_AddByte(&buf->buf, buf->sep);
1374 1.895 rillig buf->needSep = false;
1375 1.703 rillig }
1376 1.703 rillig Buf_AddBytes(&buf->buf, mem, mem_size);
1377 1.278 rillig }
1378 1.278 rillig
1379 1.314 rillig static void
1380 1.1055 rillig SepBuf_AddRange(SepBuf *buf, const char *start, const char *end)
1381 1.314 rillig {
1382 1.703 rillig SepBuf_AddBytes(buf, start, (size_t)(end - start));
1383 1.314 rillig }
1384 1.314 rillig
1385 1.314 rillig static void
1386 1.314 rillig SepBuf_AddStr(SepBuf *buf, const char *str)
1387 1.314 rillig {
1388 1.703 rillig SepBuf_AddBytes(buf, str, strlen(str));
1389 1.314 rillig }
1390 1.314 rillig
1391 1.919 rillig static void
1392 1.919 rillig SepBuf_AddSubstring(SepBuf *buf, Substring sub)
1393 1.919 rillig {
1394 1.1055 rillig SepBuf_AddRange(buf, sub.start, sub.end);
1395 1.919 rillig }
1396 1.919 rillig
1397 1.278 rillig static char *
1398 1.784 rillig SepBuf_DoneData(SepBuf *buf)
1399 1.278 rillig {
1400 1.784 rillig return Buf_DoneData(&buf->buf);
1401 1.278 rillig }
1402 1.278 rillig
1403 1.278 rillig
1404 1.778 rillig /*
1405 1.1075 rillig * This callback for ModifyWords gets a single word from an expression
1406 1.609 rillig * and typically adds a modification of this word to the buffer. It may also
1407 1.609 rillig * do nothing or add several words.
1408 1.609 rillig *
1409 1.822 rillig * For example, when evaluating the modifier ':M*b' in ${:Ua b c:M*b}, the
1410 1.822 rillig * callback is called 3 times, once for "a", "b" and "c".
1411 1.919 rillig *
1412 1.919 rillig * Some ModifyWord functions assume that they are always passed a
1413 1.919 rillig * null-terminated substring, which is currently guaranteed but may change in
1414 1.919 rillig * the future.
1415 1.778 rillig */
1416 1.919 rillig typedef void (*ModifyWordProc)(Substring word, SepBuf *buf, void *data);
1417 1.244 rillig
1418 1.244 rillig
1419 1.779 rillig /*ARGSUSED*/
1420 1.278 rillig static void
1421 1.919 rillig ModifyWord_Head(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
1422 1.1 cgd {
1423 1.919 rillig SepBuf_AddSubstring(buf, Substring_Dirname(word));
1424 1.1 cgd }
1425 1.1 cgd
1426 1.779 rillig /*ARGSUSED*/
1427 1.278 rillig static void
1428 1.919 rillig ModifyWord_Tail(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
1429 1.1 cgd {
1430 1.919 rillig SepBuf_AddSubstring(buf, Substring_Basename(word));
1431 1.1 cgd }
1432 1.1 cgd
1433 1.779 rillig /*ARGSUSED*/
1434 1.278 rillig static void
1435 1.919 rillig ModifyWord_Suffix(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
1436 1.1 cgd {
1437 1.1092 rillig const char *lastDot = Substring_FindLast(word, '.');
1438 1.703 rillig if (lastDot != NULL)
1439 1.1055 rillig SepBuf_AddRange(buf, lastDot + 1, word.end);
1440 1.1 cgd }
1441 1.1 cgd
1442 1.779 rillig /*ARGSUSED*/
1443 1.278 rillig static void
1444 1.919 rillig ModifyWord_Root(Substring word, SepBuf *buf, void *dummy MAKE_ATTR_UNUSED)
1445 1.1 cgd {
1446 1.919 rillig const char *lastDot, *end;
1447 1.919 rillig
1448 1.1092 rillig lastDot = Substring_FindLast(word, '.');
1449 1.919 rillig end = lastDot != NULL ? lastDot : word.end;
1450 1.1055 rillig SepBuf_AddRange(buf, word.start, end);
1451 1.1 cgd }
1452 1.1 cgd
1453 1.926 rillig struct ModifyWord_SysVSubstArgs {
1454 1.806 rillig GNode *scope;
1455 1.925 rillig Substring lhsPrefix;
1456 1.925 rillig bool lhsPercent;
1457 1.925 rillig Substring lhsSuffix;
1458 1.703 rillig const char *rhs;
1459 1.541 rillig };
1460 1.276 rillig
1461 1.278 rillig static void
1462 1.926 rillig ModifyWord_SysVSubst(Substring word, SepBuf *buf, void *data)
1463 1.5 cgd {
1464 1.926 rillig const struct ModifyWord_SysVSubstArgs *args = data;
1465 1.925 rillig FStr rhs;
1466 1.703 rillig const char *percent;
1467 1.919 rillig
1468 1.925 rillig if (Substring_IsEmpty(word))
1469 1.703 rillig return;
1470 1.925 rillig
1471 1.1011 rillig if (!Substring_HasPrefix(word, args->lhsPrefix) ||
1472 1.1011 rillig !Substring_HasSuffix(word, args->lhsSuffix)) {
1473 1.1011 rillig SepBuf_AddSubstring(buf, word);
1474 1.1011 rillig return;
1475 1.1011 rillig }
1476 1.925 rillig
1477 1.925 rillig rhs = FStr_InitRefer(args->rhs);
1478 1.1119 rillig Var_Expand(&rhs, args->scope, VARE_EVAL);
1479 1.379 rillig
1480 1.925 rillig percent = args->lhsPercent ? strchr(rhs.str, '%') : NULL;
1481 1.379 rillig
1482 1.925 rillig if (percent != NULL)
1483 1.1055 rillig SepBuf_AddRange(buf, rhs.str, percent);
1484 1.925 rillig if (percent != NULL || !args->lhsPercent)
1485 1.1055 rillig SepBuf_AddRange(buf,
1486 1.925 rillig word.start + Substring_Length(args->lhsPrefix),
1487 1.925 rillig word.end - Substring_Length(args->lhsSuffix));
1488 1.925 rillig SepBuf_AddStr(buf, percent != NULL ? percent + 1 : rhs.str);
1489 1.379 rillig
1490 1.925 rillig FStr_Done(&rhs);
1491 1.5 cgd }
1492 1.5 cgd
1493 1.918 rillig static const char *
1494 1.918 rillig Substring_Find(Substring haystack, Substring needle)
1495 1.918 rillig {
1496 1.918 rillig size_t len, needleLen, i;
1497 1.918 rillig
1498 1.918 rillig len = Substring_Length(haystack);
1499 1.918 rillig needleLen = Substring_Length(needle);
1500 1.918 rillig for (i = 0; i + needleLen <= len; i++)
1501 1.918 rillig if (memcmp(haystack.start + i, needle.start, needleLen) == 0)
1502 1.918 rillig return haystack.start + i;
1503 1.918 rillig return NULL;
1504 1.918 rillig }
1505 1.918 rillig
1506 1.1079 rillig struct ModifyWord_SubstArgs {
1507 1.1079 rillig Substring lhs;
1508 1.1079 rillig Substring rhs;
1509 1.1079 rillig PatternFlags pflags;
1510 1.1079 rillig bool matched;
1511 1.1079 rillig };
1512 1.1079 rillig
1513 1.278 rillig static void
1514 1.919 rillig ModifyWord_Subst(Substring word, SepBuf *buf, void *data)
1515 1.1 cgd {
1516 1.703 rillig struct ModifyWord_SubstArgs *args = data;
1517 1.918 rillig size_t wordLen, lhsLen;
1518 1.1089 rillig const char *match;
1519 1.703 rillig
1520 1.919 rillig wordLen = Substring_Length(word);
1521 1.788 rillig if (args->pflags.subOnce && args->matched)
1522 1.703 rillig goto nosub;
1523 1.703 rillig
1524 1.918 rillig lhsLen = Substring_Length(args->lhs);
1525 1.788 rillig if (args->pflags.anchorStart) {
1526 1.918 rillig if (wordLen < lhsLen ||
1527 1.919 rillig memcmp(word.start, args->lhs.start, lhsLen) != 0)
1528 1.703 rillig goto nosub;
1529 1.703 rillig
1530 1.918 rillig if (args->pflags.anchorEnd && wordLen != lhsLen)
1531 1.703 rillig goto nosub;
1532 1.703 rillig
1533 1.703 rillig /* :S,^prefix,replacement, or :S,^whole$,replacement, */
1534 1.919 rillig SepBuf_AddSubstring(buf, args->rhs);
1535 1.1089 rillig SepBuf_AddRange(buf, word.start + lhsLen, word.end);
1536 1.895 rillig args->matched = true;
1537 1.703 rillig return;
1538 1.703 rillig }
1539 1.1 cgd
1540 1.788 rillig if (args->pflags.anchorEnd) {
1541 1.918 rillig if (wordLen < lhsLen)
1542 1.703 rillig goto nosub;
1543 1.1089 rillig if (memcmp(word.end - lhsLen, args->lhs.start, lhsLen) != 0)
1544 1.703 rillig goto nosub;
1545 1.703 rillig
1546 1.703 rillig /* :S,suffix$,replacement, */
1547 1.1089 rillig SepBuf_AddRange(buf, word.start, word.end - lhsLen);
1548 1.919 rillig SepBuf_AddSubstring(buf, args->rhs);
1549 1.895 rillig args->matched = true;
1550 1.703 rillig return;
1551 1.703 rillig }
1552 1.315 rillig
1553 1.921 rillig if (Substring_IsEmpty(args->lhs))
1554 1.703 rillig goto nosub;
1555 1.279 rillig
1556 1.703 rillig /* unanchored case, may match more than once */
1557 1.919 rillig while ((match = Substring_Find(word, args->lhs)) != NULL) {
1558 1.1055 rillig SepBuf_AddRange(buf, word.start, match);
1559 1.919 rillig SepBuf_AddSubstring(buf, args->rhs);
1560 1.895 rillig args->matched = true;
1561 1.921 rillig word.start = match + lhsLen;
1562 1.919 rillig if (Substring_IsEmpty(word) || !args->pflags.subGlobal)
1563 1.703 rillig break;
1564 1.703 rillig }
1565 1.242 rillig nosub:
1566 1.919 rillig SepBuf_AddSubstring(buf, word);
1567 1.1 cgd }
1568 1.1 cgd
1569 1.400 rillig /* Print the error caused by a regcomp or regexec call. */
1570 1.16 christos static void
1571 1.1059 rillig RegexError(int reerr, const regex_t *pat, const char *str)
1572 1.16 christos {
1573 1.703 rillig size_t errlen = regerror(reerr, pat, NULL, 0);
1574 1.703 rillig char *errbuf = bmake_malloc(errlen);
1575 1.703 rillig regerror(reerr, pat, errbuf, errlen);
1576 1.1125 rillig Parse_Error(PARSE_FATAL, "%s: %s", str, errbuf);
1577 1.703 rillig free(errbuf);
1578 1.16 christos }
1579 1.16 christos
1580 1.981 rillig /* In the modifier ':C', replace a backreference from \0 to \9. */
1581 1.981 rillig static void
1582 1.981 rillig RegexReplaceBackref(char ref, SepBuf *buf, const char *wp,
1583 1.981 rillig const regmatch_t *m, size_t nsub)
1584 1.981 rillig {
1585 1.1033 rillig unsigned int n = (unsigned)ref - '0';
1586 1.981 rillig
1587 1.981 rillig if (n >= nsub)
1588 1.1125 rillig Parse_Error(PARSE_FATAL, "No subexpression \\%u", n);
1589 1.981 rillig else if (m[n].rm_so == -1) {
1590 1.981 rillig if (opts.strict)
1591 1.981 rillig Error("No match for subexpression \\%u", n);
1592 1.981 rillig } else {
1593 1.1055 rillig SepBuf_AddRange(buf,
1594 1.981 rillig wp + (size_t)m[n].rm_so,
1595 1.981 rillig wp + (size_t)m[n].rm_eo);
1596 1.981 rillig }
1597 1.981 rillig }
1598 1.981 rillig
1599 1.937 rillig /*
1600 1.983 rillig * The regular expression matches the word; now add the replacement to the
1601 1.983 rillig * buffer, taking back-references from 'wp'.
1602 1.937 rillig */
1603 1.937 rillig static void
1604 1.984 rillig RegexReplace(Substring replace, SepBuf *buf, const char *wp,
1605 1.937 rillig const regmatch_t *m, size_t nsub)
1606 1.937 rillig {
1607 1.937 rillig const char *rp;
1608 1.937 rillig
1609 1.984 rillig for (rp = replace.start; rp != replace.end; rp++) {
1610 1.984 rillig if (*rp == '\\' && rp + 1 != replace.end &&
1611 1.984 rillig (rp[1] == '&' || rp[1] == '\\'))
1612 1.983 rillig SepBuf_AddBytes(buf, ++rp, 1);
1613 1.984 rillig else if (*rp == '\\' && rp + 1 != replace.end &&
1614 1.984 rillig ch_isdigit(rp[1]))
1615 1.983 rillig RegexReplaceBackref(*++rp, buf, wp, m, nsub);
1616 1.983 rillig else if (*rp == '&') {
1617 1.1055 rillig SepBuf_AddRange(buf,
1618 1.948 rillig wp + (size_t)m[0].rm_so,
1619 1.948 rillig wp + (size_t)m[0].rm_eo);
1620 1.983 rillig } else
1621 1.937 rillig SepBuf_AddBytes(buf, rp, 1);
1622 1.937 rillig }
1623 1.937 rillig }
1624 1.937 rillig
1625 1.541 rillig struct ModifyWord_SubstRegexArgs {
1626 1.703 rillig regex_t re;
1627 1.703 rillig size_t nsub;
1628 1.984 rillig Substring replace;
1629 1.927 rillig PatternFlags pflags;
1630 1.895 rillig bool matched;
1631 1.541 rillig };
1632 1.291 rillig
1633 1.278 rillig static void
1634 1.919 rillig ModifyWord_SubstRegex(Substring word, SepBuf *buf, void *data)
1635 1.16 christos {
1636 1.704 rillig struct ModifyWord_SubstRegexArgs *args = data;
1637 1.704 rillig int xrv;
1638 1.919 rillig const char *wp;
1639 1.704 rillig int flags = 0;
1640 1.704 rillig regmatch_t m[10];
1641 1.16 christos
1642 1.919 rillig assert(word.end[0] == '\0'); /* assume null-terminated word */
1643 1.919 rillig wp = word.start;
1644 1.936 rillig if (args->pflags.subOnce && args->matched)
1645 1.936 rillig goto no_match;
1646 1.307 rillig
1647 1.935 rillig again:
1648 1.704 rillig xrv = regexec(&args->re, wp, args->nsub, m, flags);
1649 1.935 rillig if (xrv == 0)
1650 1.935 rillig goto ok;
1651 1.935 rillig if (xrv != REG_NOMATCH)
1652 1.1059 rillig RegexError(xrv, &args->re, "Unexpected regex error");
1653 1.936 rillig no_match:
1654 1.1055 rillig SepBuf_AddRange(buf, wp, word.end);
1655 1.936 rillig return;
1656 1.16 christos
1657 1.935 rillig ok:
1658 1.935 rillig args->matched = true;
1659 1.935 rillig SepBuf_AddBytes(buf, wp, (size_t)m[0].rm_so);
1660 1.704 rillig
1661 1.937 rillig RegexReplace(args->replace, buf, wp, m, args->nsub);
1662 1.445 rillig
1663 1.948 rillig wp += (size_t)m[0].rm_eo;
1664 1.935 rillig if (args->pflags.subGlobal) {
1665 1.935 rillig flags |= REG_NOTBOL;
1666 1.1077 rillig if (m[0].rm_so == 0 && m[0].rm_eo == 0 && *wp != '\0') {
1667 1.935 rillig SepBuf_AddBytes(buf, wp, 1);
1668 1.935 rillig wp++;
1669 1.704 rillig }
1670 1.704 rillig if (*wp != '\0')
1671 1.935 rillig goto again;
1672 1.935 rillig }
1673 1.935 rillig if (*wp != '\0')
1674 1.704 rillig SepBuf_AddStr(buf, wp);
1675 1.16 christos }
1676 1.16 christos
1677 1.16 christos
1678 1.541 rillig struct ModifyWord_LoopArgs {
1679 1.806 rillig GNode *scope;
1680 1.928 rillig const char *var; /* name of the temporary variable */
1681 1.928 rillig const char *body; /* string to expand */
1682 1.906 rillig VarEvalMode emode;
1683 1.541 rillig };
1684 1.291 rillig
1685 1.278 rillig static void
1686 1.919 rillig ModifyWord_Loop(Substring word, SepBuf *buf, void *data)
1687 1.40 sjg {
1688 1.703 rillig const struct ModifyWord_LoopArgs *args;
1689 1.703 rillig char *s;
1690 1.412 rillig
1691 1.919 rillig if (Substring_IsEmpty(word))
1692 1.703 rillig return;
1693 1.278 rillig
1694 1.703 rillig args = data;
1695 1.919 rillig assert(word.end[0] == '\0'); /* assume null-terminated word */
1696 1.928 rillig Var_SetWithFlags(args->scope, args->var, word.start,
1697 1.919 rillig VAR_SET_NO_EXPORT);
1698 1.1043 rillig s = Var_Subst(args->body, args->scope, args->emode);
1699 1.703 rillig /* TODO: handle errors */
1700 1.64 sjg
1701 1.1090 rillig DEBUG2(VAR, "ModifyWord_Loop: expand \"%s\" to \"%s\"\n",
1702 1.1090 rillig args->body, s);
1703 1.703 rillig
1704 1.703 rillig if (s[0] == '\n' || Buf_EndsWith(&buf->buf, '\n'))
1705 1.895 rillig buf->needSep = false;
1706 1.703 rillig SepBuf_AddStr(buf, s);
1707 1.703 rillig free(s);
1708 1.40 sjg }
1709 1.40 sjg
1710 1.81 sjg
1711 1.778 rillig /*
1712 1.778 rillig * The :[first..last] modifier selects words from the expression.
1713 1.778 rillig * It can also reverse the words.
1714 1.778 rillig */
1715 1.81 sjg static char *
1716 1.840 rillig VarSelectWords(const char *str, int first, int last,
1717 1.895 rillig char sep, bool oneBigWord)
1718 1.81 sjg {
1719 1.960 rillig SubstringWords words;
1720 1.703 rillig int len, start, end, step;
1721 1.703 rillig int i;
1722 1.703 rillig
1723 1.703 rillig SepBuf buf;
1724 1.703 rillig SepBuf_Init(&buf, sep);
1725 1.703 rillig
1726 1.703 rillig if (oneBigWord) {
1727 1.960 rillig /* fake what Substring_Words() would do */
1728 1.703 rillig words.len = 1;
1729 1.960 rillig words.words = bmake_malloc(sizeof(words.words[0]));
1730 1.960 rillig words.freeIt = NULL;
1731 1.960 rillig words.words[0] = Substring_InitStr(str); /* no need to copy */
1732 1.703 rillig } else {
1733 1.960 rillig words = Substring_Words(str, false);
1734 1.703 rillig }
1735 1.81 sjg
1736 1.1088 rillig /* Convert -1 to len, -2 to (len - 1), etc. */
1737 1.703 rillig len = (int)words.len;
1738 1.703 rillig if (first < 0)
1739 1.703 rillig first += len + 1;
1740 1.703 rillig if (last < 0)
1741 1.703 rillig last += len + 1;
1742 1.703 rillig
1743 1.703 rillig if (first > last) {
1744 1.703 rillig start = (first > len ? len : first) - 1;
1745 1.703 rillig end = last < 1 ? 0 : last - 1;
1746 1.703 rillig step = -1;
1747 1.703 rillig } else {
1748 1.703 rillig start = first < 1 ? 0 : first - 1;
1749 1.703 rillig end = last > len ? len : last;
1750 1.703 rillig step = 1;
1751 1.703 rillig }
1752 1.81 sjg
1753 1.703 rillig for (i = start; (step < 0) == (i >= end); i += step) {
1754 1.960 rillig SepBuf_AddSubstring(&buf, words.words[i]);
1755 1.703 rillig SepBuf_Sep(&buf);
1756 1.703 rillig }
1757 1.81 sjg
1758 1.960 rillig SubstringWords_Free(words);
1759 1.81 sjg
1760 1.784 rillig return SepBuf_DoneData(&buf);
1761 1.81 sjg }
1762 1.81 sjg
1763 1.156 sjg
1764 1.779 rillig /*ARGSUSED*/
1765 1.278 rillig static void
1766 1.919 rillig ModifyWord_Realpath(Substring word, SepBuf *buf, void *data MAKE_ATTR_UNUSED)
1767 1.156 sjg {
1768 1.703 rillig struct stat st;
1769 1.703 rillig char rbuf[MAXPATHLEN];
1770 1.919 rillig const char *rp;
1771 1.231 rillig
1772 1.919 rillig assert(word.end[0] == '\0'); /* assume null-terminated word */
1773 1.919 rillig rp = cached_realpath(word.start, rbuf);
1774 1.703 rillig if (rp != NULL && *rp == '/' && stat(rp, &st) == 0)
1775 1.919 rillig SepBuf_AddStr(buf, rp);
1776 1.919 rillig else
1777 1.919 rillig SepBuf_AddSubstring(buf, word);
1778 1.156 sjg }
1779 1.156 sjg
1780 1.35 christos
1781 1.403 rillig static char *
1782 1.962 rillig SubstringWords_JoinFree(SubstringWords words)
1783 1.403 rillig {
1784 1.703 rillig Buffer buf;
1785 1.703 rillig size_t i;
1786 1.412 rillig
1787 1.703 rillig Buf_Init(&buf);
1788 1.403 rillig
1789 1.703 rillig for (i = 0; i < words.len; i++) {
1790 1.703 rillig if (i != 0) {
1791 1.988 rillig /*
1792 1.988 rillig * XXX: Use ch->sep instead of ' ', for consistency.
1793 1.988 rillig */
1794 1.703 rillig Buf_AddByte(&buf, ' ');
1795 1.703 rillig }
1796 1.1055 rillig Buf_AddRange(&buf, words.words[i].start, words.words[i].end);
1797 1.703 rillig }
1798 1.403 rillig
1799 1.962 rillig SubstringWords_Free(words);
1800 1.403 rillig
1801 1.784 rillig return Buf_DoneData(&buf);
1802 1.403 rillig }
1803 1.403 rillig
1804 1.55 christos
1805 1.778 rillig /*
1806 1.778 rillig * Quote shell meta-characters and space characters in the string.
1807 1.778 rillig * If quoteDollar is set, also quote and double any '$' characters.
1808 1.778 rillig */
1809 1.924 rillig static void
1810 1.1059 rillig QuoteShell(const char *str, bool quoteDollar, LazyBuf *buf)
1811 1.16 christos {
1812 1.924 rillig const char *p;
1813 1.193 christos
1814 1.924 rillig LazyBuf_Init(buf, str);
1815 1.924 rillig for (p = str; *p != '\0'; p++) {
1816 1.924 rillig if (*p == '\n') {
1817 1.703 rillig const char *newline = Shell_GetNewline();
1818 1.703 rillig if (newline == NULL)
1819 1.703 rillig newline = "\\\n";
1820 1.924 rillig LazyBuf_AddStr(buf, newline);
1821 1.703 rillig continue;
1822 1.703 rillig }
1823 1.997 rillig if (ch_isspace(*p) || ch_is_shell_meta(*p))
1824 1.924 rillig LazyBuf_Add(buf, '\\');
1825 1.924 rillig LazyBuf_Add(buf, *p);
1826 1.924 rillig if (quoteDollar && *p == '$')
1827 1.924 rillig LazyBuf_AddStr(buf, "\\$");
1828 1.193 christos }
1829 1.16 christos }
1830 1.16 christos
1831 1.778 rillig /*
1832 1.778 rillig * Compute the 32-bit hash of the given string, using the MurmurHash3
1833 1.778 rillig * algorithm. Output is encoded as 8 hex digits, in Little Endian order.
1834 1.778 rillig */
1835 1.163 joerg static char *
1836 1.1059 rillig Hash(const char *str)
1837 1.163 joerg {
1838 1.703 rillig static const char hexdigits[16] = "0123456789abcdef";
1839 1.703 rillig const unsigned char *ustr = (const unsigned char *)str;
1840 1.703 rillig
1841 1.703 rillig uint32_t h = 0x971e137bU;
1842 1.703 rillig uint32_t c1 = 0x95543787U;
1843 1.703 rillig uint32_t c2 = 0x2ad7eb25U;
1844 1.703 rillig size_t len2 = strlen(str);
1845 1.163 joerg
1846 1.703 rillig char *buf;
1847 1.703 rillig size_t i;
1848 1.703 rillig
1849 1.703 rillig size_t len;
1850 1.781 rillig for (len = len2; len != 0;) {
1851 1.703 rillig uint32_t k = 0;
1852 1.703 rillig switch (len) {
1853 1.703 rillig default:
1854 1.703 rillig k = ((uint32_t)ustr[3] << 24) |
1855 1.703 rillig ((uint32_t)ustr[2] << 16) |
1856 1.703 rillig ((uint32_t)ustr[1] << 8) |
1857 1.703 rillig (uint32_t)ustr[0];
1858 1.703 rillig len -= 4;
1859 1.703 rillig ustr += 4;
1860 1.703 rillig break;
1861 1.703 rillig case 3:
1862 1.703 rillig k |= (uint32_t)ustr[2] << 16;
1863 1.703 rillig /* FALLTHROUGH */
1864 1.703 rillig case 2:
1865 1.703 rillig k |= (uint32_t)ustr[1] << 8;
1866 1.703 rillig /* FALLTHROUGH */
1867 1.703 rillig case 1:
1868 1.703 rillig k |= (uint32_t)ustr[0];
1869 1.703 rillig len = 0;
1870 1.703 rillig }
1871 1.703 rillig c1 = c1 * 5 + 0x7b7d159cU;
1872 1.703 rillig c2 = c2 * 5 + 0x6bce6396U;
1873 1.703 rillig k *= c1;
1874 1.703 rillig k = (k << 11) ^ (k >> 21);
1875 1.703 rillig k *= c2;
1876 1.703 rillig h = (h << 13) ^ (h >> 19);
1877 1.703 rillig h = h * 5 + 0x52dce729U;
1878 1.703 rillig h ^= k;
1879 1.703 rillig }
1880 1.703 rillig h ^= (uint32_t)len2;
1881 1.703 rillig h *= 0x85ebca6b;
1882 1.703 rillig h ^= h >> 13;
1883 1.703 rillig h *= 0xc2b2ae35;
1884 1.703 rillig h ^= h >> 16;
1885 1.703 rillig
1886 1.703 rillig buf = bmake_malloc(9);
1887 1.703 rillig for (i = 0; i < 8; i++) {
1888 1.703 rillig buf[i] = hexdigits[h & 0x0f];
1889 1.703 rillig h >>= 4;
1890 1.703 rillig }
1891 1.703 rillig buf[8] = '\0';
1892 1.703 rillig return buf;
1893 1.163 joerg }
1894 1.163 joerg
1895 1.164 sjg static char *
1896 1.1059 rillig FormatTime(const char *fmt, time_t t, bool gmt)
1897 1.164 sjg {
1898 1.703 rillig char buf[BUFSIZ];
1899 1.164 sjg
1900 1.993 rillig if (t == 0)
1901 1.993 rillig time(&t);
1902 1.703 rillig if (*fmt == '\0')
1903 1.703 rillig fmt = "%c";
1904 1.1064 rillig if (gmt && strchr(fmt, 's') != NULL) {
1905 1.1064 rillig /* strftime "%s" only works with localtime, not with gmtime. */
1906 1.1062 rillig const char *prev_tz_env = getenv("TZ");
1907 1.1062 rillig char *prev_tz = prev_tz_env != NULL
1908 1.1062 rillig ? bmake_strdup(prev_tz_env) : NULL;
1909 1.1062 rillig setenv("TZ", "UTC", 1);
1910 1.1062 rillig strftime(buf, sizeof buf, fmt, localtime(&t));
1911 1.1062 rillig if (prev_tz != NULL) {
1912 1.1062 rillig setenv("TZ", prev_tz, 1);
1913 1.1062 rillig free(prev_tz);
1914 1.1062 rillig } else
1915 1.1062 rillig unsetenv("TZ");
1916 1.1062 rillig } else
1917 1.1064 rillig strftime(buf, sizeof buf, fmt, (gmt ? gmtime : localtime)(&t));
1918 1.235 rillig
1919 1.703 rillig buf[sizeof buf - 1] = '\0';
1920 1.703 rillig return bmake_strdup(buf);
1921 1.164 sjg }
1922 1.164 sjg
1923 1.687 rillig /*
1924 1.687 rillig * The ApplyModifier functions take an expression that is being evaluated.
1925 1.830 rillig * Their task is to apply a single modifier to the expression. This involves
1926 1.830 rillig * parsing the modifier, evaluating it and finally updating the value of the
1927 1.830 rillig * expression.
1928 1.467 rillig *
1929 1.467 rillig * Parsing the modifier
1930 1.467 rillig *
1931 1.467 rillig * If parsing succeeds, the parsing position *pp is updated to point to the
1932 1.467 rillig * first character following the modifier, which typically is either ':' or
1933 1.891 rillig * ch->endc. The modifier doesn't have to check for this delimiter character,
1934 1.687 rillig * this is done by ApplyModifiers.
1935 1.687 rillig *
1936 1.687 rillig * XXX: As of 2020-11-15, some modifiers such as :S, :C, :P, :L do not
1937 1.687 rillig * need to be followed by a ':' or endc; this was an unintended mistake.
1938 1.467 rillig *
1939 1.1079 rillig * If parsing fails because of a missing delimiter after a modifier part (as
1940 1.1079 rillig * in the :S, :C or :@ modifiers), return AMR_CLEANUP.
1941 1.467 rillig *
1942 1.467 rillig * If parsing fails because the modifier is unknown, return AMR_UNKNOWN to
1943 1.1088 rillig * try the SysV modifier ':from=to' as fallback. This should only be
1944 1.467 rillig * done as long as there have been no side effects from evaluating nested
1945 1.467 rillig * variables, to avoid evaluating them more than once. In this case, the
1946 1.687 rillig * parsing position may or may not be updated. (XXX: Why not? The original
1947 1.687 rillig * parsing position is well-known in ApplyModifiers.)
1948 1.467 rillig *
1949 1.467 rillig * If parsing fails and the SysV modifier ${VAR:from=to} should not be used
1950 1.1066 rillig * as a fallback, issue an error message using Parse_Error (preferred over
1951 1.1088 rillig * Error) and then return AMR_CLEANUP, which stops processing the expression.
1952 1.1088 rillig * (XXX: As of 2020-08-23, evaluation of the string continues nevertheless
1953 1.1088 rillig * after skipping a few bytes, which results in garbage.)
1954 1.467 rillig *
1955 1.467 rillig * Evaluating the modifier
1956 1.467 rillig *
1957 1.467 rillig * After parsing, the modifier is evaluated. The side effects from evaluating
1958 1.1075 rillig * nested expressions in the modifier text often already happen
1959 1.830 rillig * during parsing though. For most modifiers this doesn't matter since their
1960 1.949 rillig * only noticeable effect is that they update the value of the expression.
1961 1.830 rillig * Some modifiers such as ':sh' or '::=' have noticeable side effects though.
1962 1.467 rillig *
1963 1.1075 rillig * Evaluating the modifier usually takes the current value of the
1964 1.1094 rillig * expression from ch->expr->value, or the variable name from ch->var->name,
1965 1.1066 rillig * and stores the result back in ch->expr->value via Expr_SetValueOwn or
1966 1.821 rillig * Expr_SetValueRefer.
1967 1.467 rillig *
1968 1.1094 rillig * If evaluating fails, the fallback error message "Bad modifier" is printed
1969 1.1094 rillig * using Error. This function has no side effects, it really just prints the
1970 1.1094 rillig * error message, continuing as if nothing had happened. TODO: This should be
1971 1.1094 rillig * fixed by adding proper error handling to Var_Subst, Var_Parse,
1972 1.1094 rillig * ApplyModifiers and ModifyWords.
1973 1.467 rillig *
1974 1.528 rillig * Some modifiers such as :D and :U turn undefined expressions into defined
1975 1.1066 rillig * expressions using Expr_Define.
1976 1.350 rillig */
1977 1.409 rillig
1978 1.825 rillig typedef enum ExprDefined {
1979 1.1075 rillig /* The expression is based on a regular, defined variable. */
1980 1.825 rillig DEF_REGULAR,
1981 1.1075 rillig /* The expression is based on an undefined variable. */
1982 1.825 rillig DEF_UNDEF,
1983 1.703 rillig /*
1984 1.1075 rillig * The expression started as an undefined expression, but one
1985 1.825 rillig * of the modifiers (such as ':D' or ':U') has turned the expression
1986 1.825 rillig * from undefined to defined.
1987 1.703 rillig */
1988 1.825 rillig DEF_DEFINED
1989 1.825 rillig } ExprDefined;
1990 1.527 rillig
1991 1.951 rillig static const char ExprDefined_Name[][10] = {
1992 1.826 rillig "regular",
1993 1.826 rillig "undefined",
1994 1.826 rillig "defined"
1995 1.789 rillig };
1996 1.527 rillig
1997 1.897 rillig #if __STDC_VERSION__ >= 199901L
1998 1.989 rillig #define const_member const
1999 1.897 rillig #else
2000 1.989 rillig #define const_member /* no const possible */
2001 1.897 rillig #endif
2002 1.897 rillig
2003 1.966 rillig /* An expression based on a variable, such as $@ or ${VAR:Mpattern:Q}. */
2004 1.823 rillig typedef struct Expr {
2005 1.898 rillig const char *name;
2006 1.823 rillig FStr value;
2007 1.906 rillig VarEvalMode const_member emode;
2008 1.897 rillig GNode *const_member scope;
2009 1.825 rillig ExprDefined defined;
2010 1.823 rillig } Expr;
2011 1.823 rillig
2012 1.823 rillig /*
2013 1.890 rillig * The status of applying a chain of modifiers to an expression.
2014 1.823 rillig *
2015 1.890 rillig * The modifiers of an expression are broken into chains of modifiers,
2016 1.892 rillig * starting a new nested chain whenever an indirect modifier starts. There
2017 1.892 rillig * are at most 2 nesting levels: the outer one for the direct modifiers, and
2018 1.892 rillig * the inner one for the indirect modifiers.
2019 1.890 rillig *
2020 1.892 rillig * For example, the expression ${VAR:M*:${IND1}:${IND2}:O:u} has 3 chains of
2021 1.889 rillig * modifiers:
2022 1.889 rillig *
2023 1.892 rillig * Chain 1 starts with the single modifier ':M*'.
2024 1.892 rillig * Chain 2 starts with all modifiers from ${IND1}.
2025 1.892 rillig * Chain 2 ends at the ':' between ${IND1} and ${IND2}.
2026 1.893 rillig * Chain 3 starts with all modifiers from ${IND2}.
2027 1.893 rillig * Chain 3 ends at the ':' after ${IND2}.
2028 1.942 rillig * Chain 1 continues with the 2 modifiers ':O' and ':u'.
2029 1.892 rillig * Chain 1 ends at the final '}' of the expression.
2030 1.890 rillig *
2031 1.892 rillig * After such a chain ends, its properties no longer have any effect.
2032 1.889 rillig *
2033 1.823 rillig * See varmod-indirect.mk.
2034 1.823 rillig */
2035 1.891 rillig typedef struct ModChain {
2036 1.823 rillig Expr *expr;
2037 1.703 rillig /* '\0' or '{' or '(' */
2038 1.897 rillig char const_member startc;
2039 1.703 rillig /* '\0' or '}' or ')' */
2040 1.897 rillig char const_member endc;
2041 1.1094 rillig /* Separator when joining words (see the :ts modifier). */
2042 1.703 rillig char sep;
2043 1.703 rillig /*
2044 1.1066 rillig * Whether some modifiers that otherwise split the variable value
2045 1.703 rillig * into words, like :S and :C, treat the variable value as a single
2046 1.703 rillig * big word, possibly containing spaces.
2047 1.703 rillig */
2048 1.895 rillig bool oneBigWord;
2049 1.891 rillig } ModChain;
2050 1.236 rillig
2051 1.525 rillig static void
2052 1.812 rillig Expr_Define(Expr *expr)
2053 1.525 rillig {
2054 1.825 rillig if (expr->defined == DEF_UNDEF)
2055 1.825 rillig expr->defined = DEF_DEFINED;
2056 1.525 rillig }
2057 1.525 rillig
2058 1.965 rillig static const char *
2059 1.965 rillig Expr_Str(const Expr *expr)
2060 1.965 rillig {
2061 1.965 rillig return expr->value.str;
2062 1.965 rillig }
2063 1.965 rillig
2064 1.967 rillig static SubstringWords
2065 1.967 rillig Expr_Words(const Expr *expr)
2066 1.967 rillig {
2067 1.967 rillig return Substring_Words(Expr_Str(expr), false);
2068 1.967 rillig }
2069 1.967 rillig
2070 1.813 rillig static void
2071 1.921 rillig Expr_SetValue(Expr *expr, FStr value)
2072 1.921 rillig {
2073 1.921 rillig FStr_Done(&expr->value);
2074 1.921 rillig expr->value = value;
2075 1.921 rillig }
2076 1.921 rillig
2077 1.921 rillig static void
2078 1.813 rillig Expr_SetValueOwn(Expr *expr, char *value)
2079 1.813 rillig {
2080 1.921 rillig Expr_SetValue(expr, FStr_InitOwn(value));
2081 1.813 rillig }
2082 1.813 rillig
2083 1.813 rillig static void
2084 1.813 rillig Expr_SetValueRefer(Expr *expr, const char *value)
2085 1.813 rillig {
2086 1.921 rillig Expr_SetValue(expr, FStr_InitRefer(value));
2087 1.813 rillig }
2088 1.813 rillig
2089 1.905 rillig static bool
2090 1.905 rillig Expr_ShouldEval(const Expr *expr)
2091 1.905 rillig {
2092 1.906 rillig return VarEvalMode_ShouldEval(expr->emode);
2093 1.905 rillig }
2094 1.905 rillig
2095 1.905 rillig static bool
2096 1.905 rillig ModChain_ShouldEval(const ModChain *ch)
2097 1.905 rillig {
2098 1.905 rillig return Expr_ShouldEval(ch->expr);
2099 1.905 rillig }
2100 1.905 rillig
2101 1.905 rillig
2102 1.578 rillig typedef enum ApplyModifierResult {
2103 1.703 rillig /* Continue parsing */
2104 1.703 rillig AMR_OK,
2105 1.1093 rillig /* Not a match, try the ':from=to' modifier as well. */
2106 1.703 rillig AMR_UNKNOWN,
2107 1.830 rillig /* Error out with "Bad modifier" message. */
2108 1.703 rillig AMR_BAD,
2109 1.830 rillig /* Error out without the standard error message. */
2110 1.703 rillig AMR_CLEANUP
2111 1.356 rillig } ApplyModifierResult;
2112 1.356 rillig
2113 1.703 rillig /*
2114 1.703 rillig * Allow backslashes to escape the delimiter, $, and \, but don't touch other
2115 1.703 rillig * backslashes.
2116 1.703 rillig */
2117 1.895 rillig static bool
2118 1.620 rillig IsEscapedModifierPart(const char *p, char delim,
2119 1.620 rillig struct ModifyWord_SubstArgs *subst)
2120 1.620 rillig {
2121 1.1118 rillig if (p[0] != '\\' || p[1] == '\0')
2122 1.895 rillig return false;
2123 1.703 rillig if (p[1] == delim || p[1] == '\\' || p[1] == '$')
2124 1.895 rillig return true;
2125 1.703 rillig return p[1] == '&' && subst != NULL;
2126 1.620 rillig }
2127 1.620 rillig
2128 1.956 rillig /*
2129 1.957 rillig * In a part of a modifier, parse a subexpression and evaluate it.
2130 1.957 rillig */
2131 1.957 rillig static void
2132 1.957 rillig ParseModifierPartExpr(const char **pp, LazyBuf *part, const ModChain *ch,
2133 1.957 rillig VarEvalMode emode)
2134 1.957 rillig {
2135 1.957 rillig const char *p = *pp;
2136 1.1042 rillig FStr nested_val = Var_Parse(&p, ch->expr->scope,
2137 1.1042 rillig VarEvalMode_WithoutKeepDollar(emode));
2138 1.957 rillig /* TODO: handle errors */
2139 1.1047 rillig if (VarEvalMode_ShouldEval(emode))
2140 1.1047 rillig LazyBuf_AddStr(part, nested_val.str);
2141 1.1047 rillig else
2142 1.1047 rillig LazyBuf_AddSubstring(part, Substring_Init(*pp, p));
2143 1.957 rillig FStr_Done(&nested_val);
2144 1.957 rillig *pp = p;
2145 1.957 rillig }
2146 1.957 rillig
2147 1.1029 rillig /*
2148 1.1047 rillig * In a part of a modifier, parse some text that looks like a subexpression.
2149 1.1047 rillig * If the text starts with '$(', any '(' and ')' must be balanced.
2150 1.1047 rillig * If the text starts with '${', any '{' and '}' must be balanced.
2151 1.1066 rillig * If the text starts with '$', that '$' is copied verbatim, it is not parsed
2152 1.1075 rillig * as a short-name expression.
2153 1.1029 rillig */
2154 1.956 rillig static void
2155 1.1047 rillig ParseModifierPartBalanced(const char **pp, LazyBuf *part)
2156 1.956 rillig {
2157 1.956 rillig const char *p = *pp;
2158 1.956 rillig
2159 1.956 rillig if (p[1] == '(' || p[1] == '{') {
2160 1.1029 rillig char startc = p[1];
2161 1.1029 rillig int endc = startc == '(' ? ')' : '}';
2162 1.1029 rillig int depth = 1;
2163 1.1029 rillig
2164 1.1029 rillig for (p += 2; *p != '\0' && depth > 0; p++) {
2165 1.1029 rillig if (p[-1] != '\\') {
2166 1.1029 rillig if (*p == startc)
2167 1.1029 rillig depth++;
2168 1.1029 rillig if (*p == endc)
2169 1.1029 rillig depth--;
2170 1.1029 rillig }
2171 1.1029 rillig }
2172 1.1089 rillig LazyBuf_AddSubstring(part, Substring_Init(*pp, p));
2173 1.1029 rillig *pp = p;
2174 1.956 rillig } else {
2175 1.1089 rillig LazyBuf_Add(part, *p);
2176 1.1029 rillig *pp = p + 1;
2177 1.956 rillig }
2178 1.956 rillig }
2179 1.956 rillig
2180 1.1115 rillig /*
2181 1.1115 rillig * Parse a part of a modifier such as the "from" and "to" in :S/from/to/ or
2182 1.1115 rillig * the "var" or "replacement ${var}" in :@var@replacement ${var}@, up to and
2183 1.1115 rillig * including the next unescaped delimiter. The delimiter, as well as the
2184 1.1115 rillig * backslash or the dollar, can be escaped with a backslash.
2185 1.1115 rillig *
2186 1.1115 rillig * Return true if parsing succeeded, together with the parsed (and possibly
2187 1.1115 rillig * expanded) part. In that case, pp points right after the delimiter. The
2188 1.1115 rillig * delimiter is not included in the part though.
2189 1.1115 rillig */
2190 1.1044 rillig static bool
2191 1.1115 rillig ParseModifierPart(
2192 1.1115 rillig /* The parsing position, updated upon return */
2193 1.703 rillig const char **pp,
2194 1.1115 rillig char end1,
2195 1.1115 rillig char end2,
2196 1.1115 rillig /* Mode for evaluating nested expressions. */
2197 1.906 rillig VarEvalMode emode,
2198 1.891 rillig ModChain *ch,
2199 1.921 rillig LazyBuf *part,
2200 1.988 rillig /*
2201 1.1066 rillig * For the first part of the ':S' modifier, set anchorEnd if the last
2202 1.988 rillig * character of the pattern is a $.
2203 1.988 rillig */
2204 1.927 rillig PatternFlags *out_pflags,
2205 1.988 rillig /*
2206 1.1066 rillig * For the second part of the ':S' modifier, allow ampersands to be
2207 1.1066 rillig * escaped and replace unescaped ampersands with subst->lhs.
2208 1.988 rillig */
2209 1.541 rillig struct ModifyWord_SubstArgs *subst
2210 1.704 rillig )
2211 1.704 rillig {
2212 1.1115 rillig const char *p = *pp;
2213 1.704 rillig
2214 1.923 rillig LazyBuf_Init(part, p);
2215 1.1050 rillig while (*p != '\0' && *p != end1 && *p != end2) {
2216 1.1115 rillig if (IsEscapedModifierPart(p, end2, subst)) {
2217 1.921 rillig LazyBuf_Add(part, p[1]);
2218 1.704 rillig p += 2;
2219 1.958 rillig } else if (*p != '$') { /* Unescaped, simple text */
2220 1.704 rillig if (subst != NULL && *p == '&')
2221 1.921 rillig LazyBuf_AddSubstring(part, subst->lhs);
2222 1.704 rillig else
2223 1.921 rillig LazyBuf_Add(part, *p);
2224 1.704 rillig p++;
2225 1.1115 rillig } else if (p[1] == end2) { /* Unescaped '$' at end */
2226 1.704 rillig if (out_pflags != NULL)
2227 1.895 rillig out_pflags->anchorEnd = true;
2228 1.704 rillig else
2229 1.921 rillig LazyBuf_Add(part, *p);
2230 1.704 rillig p++;
2231 1.1047 rillig } else if (emode == VARE_PARSE_BALANCED)
2232 1.1047 rillig ParseModifierPartBalanced(&p, part);
2233 1.1047 rillig else
2234 1.957 rillig ParseModifierPartExpr(&p, part, ch, emode);
2235 1.529 rillig }
2236 1.529 rillig
2237 1.1050 rillig *pp = p;
2238 1.1050 rillig if (*p != end1 && *p != end2) {
2239 1.1125 rillig Parse_Error(PARSE_FATAL,
2240 1.1125 rillig "Unfinished modifier ('%c' missing)", end2);
2241 1.921 rillig LazyBuf_Done(part);
2242 1.1044 rillig return false;
2243 1.704 rillig }
2244 1.1115 rillig if (end1 == end2)
2245 1.1050 rillig (*pp)++;
2246 1.529 rillig
2247 1.921 rillig {
2248 1.921 rillig Substring sub = LazyBuf_Get(part);
2249 1.921 rillig DEBUG2(VAR, "Modifier part: \"%.*s\"\n",
2250 1.921 rillig (int)Substring_Length(sub), sub.start);
2251 1.921 rillig }
2252 1.921 rillig
2253 1.1044 rillig return true;
2254 1.529 rillig }
2255 1.529 rillig
2256 1.895 rillig MAKE_INLINE bool
2257 1.891 rillig IsDelimiter(char c, const ModChain *ch)
2258 1.859 rillig {
2259 1.1032 rillig return c == ':' || c == ch->endc || c == '\0';
2260 1.859 rillig }
2261 1.859 rillig
2262 1.400 rillig /* Test whether mod starts with modname, followed by a delimiter. */
2263 1.895 rillig MAKE_INLINE bool
2264 1.891 rillig ModMatch(const char *mod, const char *modname, const ModChain *ch)
2265 1.340 rillig {
2266 1.703 rillig size_t n = strlen(modname);
2267 1.891 rillig return strncmp(mod, modname, n) == 0 && IsDelimiter(mod[n], ch);
2268 1.340 rillig }
2269 1.340 rillig
2270 1.400 rillig /* Test whether mod starts with modname, followed by a delimiter or '='. */
2271 1.895 rillig MAKE_INLINE bool
2272 1.891 rillig ModMatchEq(const char *mod, const char *modname, const ModChain *ch)
2273 1.340 rillig {
2274 1.703 rillig size_t n = strlen(modname);
2275 1.703 rillig return strncmp(mod, modname, n) == 0 &&
2276 1.891 rillig (IsDelimiter(mod[n], ch) || mod[n] == '=');
2277 1.340 rillig }
2278 1.236 rillig
2279 1.895 rillig static bool
2280 1.635 rillig TryParseIntBase0(const char **pp, int *out_num)
2281 1.635 rillig {
2282 1.703 rillig char *end;
2283 1.703 rillig long n;
2284 1.635 rillig
2285 1.703 rillig errno = 0;
2286 1.703 rillig n = strtol(*pp, &end, 0);
2287 1.865 rillig
2288 1.865 rillig if (end == *pp)
2289 1.895 rillig return false;
2290 1.703 rillig if ((n == LONG_MIN || n == LONG_MAX) && errno == ERANGE)
2291 1.895 rillig return false;
2292 1.703 rillig if (n < INT_MIN || n > INT_MAX)
2293 1.895 rillig return false;
2294 1.635 rillig
2295 1.703 rillig *pp = end;
2296 1.703 rillig *out_num = (int)n;
2297 1.895 rillig return true;
2298 1.635 rillig }
2299 1.635 rillig
2300 1.895 rillig static bool
2301 1.635 rillig TryParseSize(const char **pp, size_t *out_num)
2302 1.635 rillig {
2303 1.703 rillig char *end;
2304 1.703 rillig unsigned long n;
2305 1.635 rillig
2306 1.703 rillig if (!ch_isdigit(**pp))
2307 1.895 rillig return false;
2308 1.635 rillig
2309 1.703 rillig errno = 0;
2310 1.703 rillig n = strtoul(*pp, &end, 10);
2311 1.703 rillig if (n == ULONG_MAX && errno == ERANGE)
2312 1.895 rillig return false;
2313 1.703 rillig if (n > SIZE_MAX)
2314 1.895 rillig return false;
2315 1.635 rillig
2316 1.703 rillig *pp = end;
2317 1.703 rillig *out_num = (size_t)n;
2318 1.895 rillig return true;
2319 1.635 rillig }
2320 1.635 rillig
2321 1.895 rillig static bool
2322 1.635 rillig TryParseChar(const char **pp, int base, char *out_ch)
2323 1.635 rillig {
2324 1.703 rillig char *end;
2325 1.703 rillig unsigned long n;
2326 1.635 rillig
2327 1.703 rillig if (!ch_isalnum(**pp))
2328 1.895 rillig return false;
2329 1.635 rillig
2330 1.703 rillig errno = 0;
2331 1.703 rillig n = strtoul(*pp, &end, base);
2332 1.703 rillig if (n == ULONG_MAX && errno == ERANGE)
2333 1.895 rillig return false;
2334 1.703 rillig if (n > UCHAR_MAX)
2335 1.895 rillig return false;
2336 1.635 rillig
2337 1.703 rillig *pp = end;
2338 1.703 rillig *out_ch = (char)n;
2339 1.895 rillig return true;
2340 1.635 rillig }
2341 1.635 rillig
2342 1.820 rillig /*
2343 1.822 rillig * Modify each word of the expression using the given function and place the
2344 1.822 rillig * result back in the expression.
2345 1.820 rillig */
2346 1.820 rillig static void
2347 1.891 rillig ModifyWords(ModChain *ch,
2348 1.822 rillig ModifyWordProc modifyWord, void *modifyWord_args,
2349 1.895 rillig bool oneBigWord)
2350 1.820 rillig {
2351 1.891 rillig Expr *expr = ch->expr;
2352 1.965 rillig const char *val = Expr_Str(expr);
2353 1.820 rillig SepBuf result;
2354 1.920 rillig SubstringWords words;
2355 1.820 rillig size_t i;
2356 1.919 rillig Substring word;
2357 1.820 rillig
2358 1.1097 rillig if (!ModChain_ShouldEval(ch))
2359 1.1097 rillig return;
2360 1.1097 rillig
2361 1.820 rillig if (oneBigWord) {
2362 1.891 rillig SepBuf_Init(&result, ch->sep);
2363 1.919 rillig /* XXX: performance: Substring_InitStr calls strlen */
2364 1.919 rillig word = Substring_InitStr(val);
2365 1.919 rillig modifyWord(word, &result, modifyWord_args);
2366 1.820 rillig goto done;
2367 1.820 rillig }
2368 1.820 rillig
2369 1.920 rillig words = Substring_Words(val, false);
2370 1.820 rillig
2371 1.954 rillig DEBUG3(VAR, "ModifyWords: split \"%s\" into %u %s\n",
2372 1.954 rillig val, (unsigned)words.len, words.len != 1 ? "words" : "word");
2373 1.820 rillig
2374 1.891 rillig SepBuf_Init(&result, ch->sep);
2375 1.820 rillig for (i = 0; i < words.len; i++) {
2376 1.920 rillig modifyWord(words.words[i], &result, modifyWord_args);
2377 1.820 rillig if (result.buf.len > 0)
2378 1.820 rillig SepBuf_Sep(&result);
2379 1.820 rillig }
2380 1.820 rillig
2381 1.920 rillig SubstringWords_Free(words);
2382 1.820 rillig
2383 1.820 rillig done:
2384 1.823 rillig Expr_SetValueOwn(expr, SepBuf_DoneData(&result));
2385 1.820 rillig }
2386 1.820 rillig
2387 1.236 rillig /* :@var (at) ...${var}...@ */
2388 1.356 rillig static ApplyModifierResult
2389 1.891 rillig ApplyModifier_Loop(const char **pp, ModChain *ch)
2390 1.417 rillig {
2391 1.891 rillig Expr *expr = ch->expr;
2392 1.703 rillig struct ModifyWord_LoopArgs args;
2393 1.703 rillig char prev_sep;
2394 1.921 rillig LazyBuf tvarBuf, strBuf;
2395 1.921 rillig FStr tvar, str;
2396 1.703 rillig
2397 1.823 rillig args.scope = expr->scope;
2398 1.703 rillig
2399 1.703 rillig (*pp)++; /* Skip the first '@' */
2400 1.1119 rillig if (!ParseModifierPart(pp, '@', '@', VARE_PARSE,
2401 1.1115 rillig ch, &tvarBuf, NULL, NULL))
2402 1.703 rillig return AMR_CLEANUP;
2403 1.921 rillig tvar = LazyBuf_DoneGet(&tvarBuf);
2404 1.928 rillig args.var = tvar.str;
2405 1.928 rillig if (strchr(args.var, '$') != NULL) {
2406 1.703 rillig Parse_Error(PARSE_FATAL,
2407 1.1102 rillig "In the :@ modifier, the variable name \"%s\" "
2408 1.969 rillig "must not contain a dollar",
2409 1.1102 rillig args.var);
2410 1.1112 rillig goto cleanup_tvar;
2411 1.703 rillig }
2412 1.236 rillig
2413 1.1115 rillig if (!ParseModifierPart(pp, '@', '@', VARE_PARSE_BALANCED,
2414 1.1115 rillig ch, &strBuf, NULL, NULL))
2415 1.1112 rillig goto cleanup_tvar;
2416 1.921 rillig str = LazyBuf_DoneGet(&strBuf);
2417 1.928 rillig args.body = str.str;
2418 1.703 rillig
2419 1.906 rillig if (!Expr_ShouldEval(expr))
2420 1.870 rillig goto done;
2421 1.870 rillig
2422 1.906 rillig args.emode = VarEvalMode_WithoutKeepDollar(expr->emode);
2423 1.891 rillig prev_sep = ch->sep;
2424 1.891 rillig ch->sep = ' '; /* XXX: should be ch->sep for consistency */
2425 1.891 rillig ModifyWords(ch, ModifyWord_Loop, &args, ch->oneBigWord);
2426 1.891 rillig ch->sep = prev_sep;
2427 1.928 rillig /* XXX: Consider restoring the previous value instead of deleting. */
2428 1.928 rillig Var_Delete(expr->scope, args.var);
2429 1.870 rillig
2430 1.870 rillig done:
2431 1.921 rillig FStr_Done(&tvar);
2432 1.921 rillig FStr_Done(&str);
2433 1.703 rillig return AMR_OK;
2434 1.1112 rillig
2435 1.1112 rillig cleanup_tvar:
2436 1.1112 rillig FStr_Done(&tvar);
2437 1.1112 rillig return AMR_CLEANUP;
2438 1.236 rillig }
2439 1.236 rillig
2440 1.1026 rillig static void
2441 1.1027 rillig ParseModifier_Defined(const char **pp, ModChain *ch, bool shouldEval,
2442 1.1026 rillig LazyBuf *buf)
2443 1.236 rillig {
2444 1.703 rillig const char *p;
2445 1.412 rillig
2446 1.703 rillig p = *pp + 1;
2447 1.1026 rillig LazyBuf_Init(buf, p);
2448 1.1032 rillig while (!IsDelimiter(*p, ch)) {
2449 1.703 rillig
2450 1.988 rillig /*
2451 1.988 rillig * XXX: This code is similar to the one in Var_Parse. See if
2452 1.1065 rillig * the code can be merged. See also ParseModifier_Match and
2453 1.988 rillig * ParseModifierPart.
2454 1.988 rillig */
2455 1.703 rillig
2456 1.1066 rillig /* See Buf_AddEscaped in for.c for the counterpart. */
2457 1.703 rillig if (*p == '\\') {
2458 1.703 rillig char c = p[1];
2459 1.1030 rillig if ((IsDelimiter(c, ch) && c != '\0') ||
2460 1.1030 rillig c == '$' || c == '\\') {
2461 1.1027 rillig if (shouldEval)
2462 1.1027 rillig LazyBuf_Add(buf, c);
2463 1.703 rillig p += 2;
2464 1.703 rillig continue;
2465 1.703 rillig }
2466 1.703 rillig }
2467 1.236 rillig
2468 1.703 rillig if (*p == '$') {
2469 1.1042 rillig FStr val = Var_Parse(&p, ch->expr->scope,
2470 1.1119 rillig shouldEval ? ch->expr->emode : VARE_PARSE);
2471 1.703 rillig /* TODO: handle errors */
2472 1.1027 rillig if (shouldEval)
2473 1.1027 rillig LazyBuf_AddStr(buf, val.str);
2474 1.1027 rillig FStr_Done(&val);
2475 1.703 rillig continue;
2476 1.703 rillig }
2477 1.687 rillig
2478 1.1027 rillig if (shouldEval)
2479 1.1027 rillig LazyBuf_Add(buf, *p);
2480 1.703 rillig p++;
2481 1.466 rillig }
2482 1.703 rillig *pp = p;
2483 1.1026 rillig }
2484 1.1026 rillig
2485 1.1026 rillig /* :Ddefined or :Uundefined */
2486 1.1026 rillig static ApplyModifierResult
2487 1.1026 rillig ApplyModifier_Defined(const char **pp, ModChain *ch)
2488 1.1026 rillig {
2489 1.1026 rillig Expr *expr = ch->expr;
2490 1.1026 rillig LazyBuf buf;
2491 1.1027 rillig bool shouldEval =
2492 1.1027 rillig Expr_ShouldEval(expr) &&
2493 1.1027 rillig (**pp == 'D') == (expr->defined == DEF_REGULAR);
2494 1.1026 rillig
2495 1.1027 rillig ParseModifier_Defined(pp, ch, shouldEval, &buf);
2496 1.466 rillig
2497 1.823 rillig Expr_Define(expr);
2498 1.1027 rillig if (shouldEval)
2499 1.929 rillig Expr_SetValue(expr, Substring_Str(LazyBuf_Get(&buf)));
2500 1.1111 rillig LazyBuf_Done(&buf);
2501 1.821 rillig
2502 1.703 rillig return AMR_OK;
2503 1.236 rillig }
2504 1.236 rillig
2505 1.567 rillig /* :L */
2506 1.567 rillig static ApplyModifierResult
2507 1.891 rillig ApplyModifier_Literal(const char **pp, ModChain *ch)
2508 1.567 rillig {
2509 1.891 rillig Expr *expr = ch->expr;
2510 1.864 rillig
2511 1.864 rillig (*pp)++;
2512 1.864 rillig
2513 1.905 rillig if (Expr_ShouldEval(expr)) {
2514 1.872 rillig Expr_Define(expr);
2515 1.898 rillig Expr_SetValueOwn(expr, bmake_strdup(expr->name));
2516 1.872 rillig }
2517 1.864 rillig
2518 1.703 rillig return AMR_OK;
2519 1.567 rillig }
2520 1.567 rillig
2521 1.895 rillig static bool
2522 1.633 rillig TryParseTime(const char **pp, time_t *out_time)
2523 1.631 rillig {
2524 1.703 rillig char *end;
2525 1.703 rillig unsigned long n;
2526 1.631 rillig
2527 1.703 rillig if (!ch_isdigit(**pp))
2528 1.895 rillig return false;
2529 1.631 rillig
2530 1.703 rillig errno = 0;
2531 1.703 rillig n = strtoul(*pp, &end, 10);
2532 1.703 rillig if (n == ULONG_MAX && errno == ERANGE)
2533 1.895 rillig return false;
2534 1.631 rillig
2535 1.703 rillig *pp = end;
2536 1.703 rillig *out_time = (time_t)n; /* ignore possible truncation for now */
2537 1.895 rillig return true;
2538 1.631 rillig }
2539 1.631 rillig
2540 1.994 rillig /* :gmtime and :localtime */
2541 1.356 rillig static ApplyModifierResult
2542 1.995 rillig ApplyModifier_Time(const char **pp, ModChain *ch)
2543 1.236 rillig {
2544 1.950 rillig Expr *expr;
2545 1.993 rillig time_t t;
2546 1.994 rillig const char *args;
2547 1.995 rillig const char *mod = *pp;
2548 1.995 rillig bool gmt = mod[0] == 'g';
2549 1.412 rillig
2550 1.994 rillig if (!ModMatchEq(mod, gmt ? "gmtime" : "localtime", ch))
2551 1.703 rillig return AMR_UNKNOWN;
2552 1.994 rillig args = mod + (gmt ? 6 : 9);
2553 1.703 rillig
2554 1.994 rillig if (args[0] == '=') {
2555 1.994 rillig const char *p = args + 1;
2556 1.1050 rillig LazyBuf buf;
2557 1.1104 rillig FStr arg;
2558 1.1115 rillig if (!ParseModifierPart(&p, ':', ch->endc, ch->expr->emode,
2559 1.1050 rillig ch, &buf, NULL, NULL))
2560 1.703 rillig return AMR_CLEANUP;
2561 1.1104 rillig arg = LazyBuf_DoneGet(&buf);
2562 1.1050 rillig if (ModChain_ShouldEval(ch)) {
2563 1.1104 rillig const char *arg_p = arg.str;
2564 1.1104 rillig if (!TryParseTime(&arg_p, &t) || *arg_p != '\0') {
2565 1.1050 rillig Parse_Error(PARSE_FATAL,
2566 1.1104 rillig "Invalid time value \"%s\"", arg.str);
2567 1.1104 rillig FStr_Done(&arg);
2568 1.1050 rillig return AMR_CLEANUP;
2569 1.1050 rillig }
2570 1.1050 rillig } else
2571 1.1050 rillig t = 0;
2572 1.1104 rillig FStr_Done(&arg);
2573 1.843 rillig *pp = p;
2574 1.703 rillig } else {
2575 1.993 rillig t = 0;
2576 1.994 rillig *pp = args;
2577 1.631 rillig }
2578 1.864 rillig
2579 1.950 rillig expr = ch->expr;
2580 1.950 rillig if (Expr_ShouldEval(expr))
2581 1.1059 rillig Expr_SetValueOwn(expr, FormatTime(Expr_Str(expr), t, gmt));
2582 1.864 rillig
2583 1.703 rillig return AMR_OK;
2584 1.236 rillig }
2585 1.236 rillig
2586 1.236 rillig /* :hash */
2587 1.356 rillig static ApplyModifierResult
2588 1.891 rillig ApplyModifier_Hash(const char **pp, ModChain *ch)
2589 1.236 rillig {
2590 1.891 rillig if (!ModMatch(*pp, "hash", ch))
2591 1.703 rillig return AMR_UNKNOWN;
2592 1.864 rillig *pp += 4;
2593 1.340 rillig
2594 1.905 rillig if (ModChain_ShouldEval(ch))
2595 1.1059 rillig Expr_SetValueOwn(ch->expr, Hash(Expr_Str(ch->expr)));
2596 1.864 rillig
2597 1.703 rillig return AMR_OK;
2598 1.236 rillig }
2599 1.236 rillig
2600 1.236 rillig /* :P */
2601 1.356 rillig static ApplyModifierResult
2602 1.891 rillig ApplyModifier_Path(const char **pp, ModChain *ch)
2603 1.236 rillig {
2604 1.891 rillig Expr *expr = ch->expr;
2605 1.703 rillig GNode *gn;
2606 1.703 rillig char *path;
2607 1.412 rillig
2608 1.864 rillig (*pp)++;
2609 1.864 rillig
2610 1.950 rillig if (!Expr_ShouldEval(expr))
2611 1.873 rillig return AMR_OK;
2612 1.873 rillig
2613 1.823 rillig Expr_Define(expr);
2614 1.409 rillig
2615 1.898 rillig gn = Targ_FindNode(expr->name);
2616 1.1067 rillig if (gn == NULL || gn->type & OP_NOPATH)
2617 1.703 rillig path = NULL;
2618 1.1067 rillig else if (gn->path != NULL)
2619 1.703 rillig path = bmake_strdup(gn->path);
2620 1.1067 rillig else {
2621 1.703 rillig SearchPath *searchPath = Suff_FindPath(gn);
2622 1.898 rillig path = Dir_FindFile(expr->name, searchPath);
2623 1.703 rillig }
2624 1.703 rillig if (path == NULL)
2625 1.898 rillig path = bmake_strdup(expr->name);
2626 1.823 rillig Expr_SetValueOwn(expr, path);
2627 1.409 rillig
2628 1.703 rillig return AMR_OK;
2629 1.236 rillig }
2630 1.236 rillig
2631 1.236 rillig /* :!cmd! */
2632 1.356 rillig static ApplyModifierResult
2633 1.891 rillig ApplyModifier_ShellCommand(const char **pp, ModChain *ch)
2634 1.236 rillig {
2635 1.891 rillig Expr *expr = ch->expr;
2636 1.921 rillig LazyBuf cmdBuf;
2637 1.921 rillig FStr cmd;
2638 1.703 rillig
2639 1.703 rillig (*pp)++;
2640 1.1115 rillig if (!ParseModifierPart(pp, '!', '!', expr->emode,
2641 1.1115 rillig ch, &cmdBuf, NULL, NULL))
2642 1.703 rillig return AMR_CLEANUP;
2643 1.921 rillig cmd = LazyBuf_DoneGet(&cmdBuf);
2644 1.921 rillig
2645 1.1000 rillig if (Expr_ShouldEval(expr)) {
2646 1.1000 rillig char *output, *error;
2647 1.1000 rillig output = Cmd_Exec(cmd.str, &error);
2648 1.1000 rillig Expr_SetValueOwn(expr, output);
2649 1.1000 rillig if (error != NULL) {
2650 1.1122 rillig Parse_Error(PARSE_WARNING, "%s", error);
2651 1.1000 rillig free(error);
2652 1.1000 rillig }
2653 1.1000 rillig } else
2654 1.1000 rillig Expr_SetValueRefer(expr, "");
2655 1.703 rillig
2656 1.921 rillig FStr_Done(&cmd);
2657 1.864 rillig Expr_Define(expr);
2658 1.274 rillig
2659 1.703 rillig return AMR_OK;
2660 1.236 rillig }
2661 1.236 rillig
2662 1.778 rillig /*
2663 1.778 rillig * The :range modifier generates an integer sequence as long as the words.
2664 1.778 rillig * The :range=7 modifier generates an integer sequence from 1 to 7.
2665 1.778 rillig */
2666 1.356 rillig static ApplyModifierResult
2667 1.891 rillig ApplyModifier_Range(const char **pp, ModChain *ch)
2668 1.236 rillig {
2669 1.703 rillig size_t n;
2670 1.703 rillig Buffer buf;
2671 1.703 rillig size_t i;
2672 1.412 rillig
2673 1.703 rillig const char *mod = *pp;
2674 1.891 rillig if (!ModMatchEq(mod, "range", ch))
2675 1.703 rillig return AMR_UNKNOWN;
2676 1.703 rillig
2677 1.703 rillig if (mod[5] == '=') {
2678 1.703 rillig const char *p = mod + 6;
2679 1.703 rillig if (!TryParseSize(&p, &n)) {
2680 1.703 rillig Parse_Error(PARSE_FATAL,
2681 1.844 rillig "Invalid number \"%s\" for ':range' modifier",
2682 1.844 rillig mod + 6);
2683 1.703 rillig return AMR_CLEANUP;
2684 1.703 rillig }
2685 1.703 rillig *pp = p;
2686 1.703 rillig } else {
2687 1.703 rillig n = 0;
2688 1.703 rillig *pp = mod + 5;
2689 1.635 rillig }
2690 1.386 rillig
2691 1.905 rillig if (!ModChain_ShouldEval(ch))
2692 1.873 rillig return AMR_OK;
2693 1.873 rillig
2694 1.703 rillig if (n == 0) {
2695 1.967 rillig SubstringWords words = Expr_Words(ch->expr);
2696 1.703 rillig n = words.len;
2697 1.961 rillig SubstringWords_Free(words);
2698 1.703 rillig }
2699 1.386 rillig
2700 1.703 rillig Buf_Init(&buf);
2701 1.386 rillig
2702 1.703 rillig for (i = 0; i < n; i++) {
2703 1.703 rillig if (i != 0) {
2704 1.988 rillig /*
2705 1.988 rillig * XXX: Use ch->sep instead of ' ', for consistency.
2706 1.988 rillig */
2707 1.703 rillig Buf_AddByte(&buf, ' ');
2708 1.703 rillig }
2709 1.703 rillig Buf_AddInt(&buf, 1 + (int)i);
2710 1.703 rillig }
2711 1.386 rillig
2712 1.891 rillig Expr_SetValueOwn(ch->expr, Buf_DoneData(&buf));
2713 1.703 rillig return AMR_OK;
2714 1.236 rillig }
2715 1.236 rillig
2716 1.845 rillig /* Parse a ':M' or ':N' modifier. */
2717 1.1013 rillig static char *
2718 1.1013 rillig ParseModifier_Match(const char **pp, const ModChain *ch)
2719 1.236 rillig {
2720 1.845 rillig const char *mod = *pp;
2721 1.891 rillig Expr *expr = ch->expr;
2722 1.895 rillig bool copy = false; /* pattern should be, or has been, copied */
2723 1.895 rillig bool needSubst = false;
2724 1.703 rillig const char *endpat;
2725 1.703 rillig char *pattern;
2726 1.412 rillig
2727 1.703 rillig /*
2728 1.703 rillig * In the loop below, ignore ':' unless we are at (or back to) the
2729 1.703 rillig * original brace level.
2730 1.703 rillig * XXX: This will likely not work right if $() and ${} are intermixed.
2731 1.703 rillig */
2732 1.845 rillig /*
2733 1.845 rillig * XXX: This code is similar to the one in Var_Parse.
2734 1.703 rillig * See if the code can be merged.
2735 1.845 rillig * See also ApplyModifier_Defined.
2736 1.845 rillig */
2737 1.1083 rillig int depth = 0;
2738 1.703 rillig const char *p;
2739 1.1083 rillig for (p = mod + 1; *p != '\0' && !(*p == ':' && depth == 0); p++) {
2740 1.1031 rillig if (*p == '\\' && p[1] != '\0' &&
2741 1.891 rillig (IsDelimiter(p[1], ch) || p[1] == ch->startc)) {
2742 1.703 rillig if (!needSubst)
2743 1.895 rillig copy = true;
2744 1.703 rillig p++;
2745 1.703 rillig continue;
2746 1.703 rillig }
2747 1.703 rillig if (*p == '$')
2748 1.895 rillig needSubst = true;
2749 1.703 rillig if (*p == '(' || *p == '{')
2750 1.1083 rillig depth++;
2751 1.703 rillig if (*p == ')' || *p == '}') {
2752 1.1083 rillig depth--;
2753 1.1083 rillig if (depth < 0)
2754 1.703 rillig break;
2755 1.703 rillig }
2756 1.236 rillig }
2757 1.703 rillig *pp = p;
2758 1.703 rillig endpat = p;
2759 1.703 rillig
2760 1.703 rillig if (copy) {
2761 1.703 rillig char *dst;
2762 1.703 rillig const char *src;
2763 1.703 rillig
2764 1.703 rillig /* Compress the \:'s out of the pattern. */
2765 1.703 rillig pattern = bmake_malloc((size_t)(endpat - (mod + 1)) + 1);
2766 1.703 rillig dst = pattern;
2767 1.703 rillig src = mod + 1;
2768 1.703 rillig for (; src < endpat; src++, dst++) {
2769 1.703 rillig if (src[0] == '\\' && src + 1 < endpat &&
2770 1.891 rillig /* XXX: ch->startc is missing here; see above */
2771 1.891 rillig IsDelimiter(src[1], ch))
2772 1.703 rillig src++;
2773 1.703 rillig *dst = *src;
2774 1.703 rillig }
2775 1.703 rillig *dst = '\0';
2776 1.703 rillig } else {
2777 1.703 rillig pattern = bmake_strsedup(mod + 1, endpat);
2778 1.236 rillig }
2779 1.288 rillig
2780 1.703 rillig if (needSubst) {
2781 1.703 rillig char *old_pattern = pattern;
2782 1.1013 rillig /*
2783 1.1013 rillig * XXX: Contrary to ParseModifierPart, a dollar in a ':M' or
2784 1.1013 rillig * ':N' modifier must be escaped as '$$', not as '\$'.
2785 1.1013 rillig */
2786 1.1043 rillig pattern = Var_Subst(pattern, expr->scope, expr->emode);
2787 1.703 rillig /* TODO: handle errors */
2788 1.703 rillig free(old_pattern);
2789 1.236 rillig }
2790 1.346 rillig
2791 1.908 rillig DEBUG2(VAR, "Pattern for ':%c' is \"%s\"\n", mod[0], pattern);
2792 1.346 rillig
2793 1.1013 rillig return pattern;
2794 1.845 rillig }
2795 1.845 rillig
2796 1.1057 rillig struct ModifyWord_MatchArgs {
2797 1.1057 rillig const char *pattern;
2798 1.1057 rillig bool neg;
2799 1.1058 rillig bool error_reported;
2800 1.1057 rillig };
2801 1.1057 rillig
2802 1.1057 rillig static void
2803 1.1057 rillig ModifyWord_Match(Substring word, SepBuf *buf, void *data)
2804 1.1057 rillig {
2805 1.1057 rillig struct ModifyWord_MatchArgs *args = data;
2806 1.1058 rillig StrMatchResult res;
2807 1.1057 rillig assert(word.end[0] == '\0'); /* assume null-terminated word */
2808 1.1058 rillig res = Str_Match(word.start, args->pattern);
2809 1.1058 rillig if (res.error != NULL && !args->error_reported) {
2810 1.1058 rillig args->error_reported = true;
2811 1.1058 rillig Parse_Error(PARSE_WARNING,
2812 1.1058 rillig "%s in pattern '%s' of modifier '%s'",
2813 1.1058 rillig res.error, args->pattern, args->neg ? ":N" : ":M");
2814 1.1058 rillig }
2815 1.1058 rillig if (res.matched != args->neg)
2816 1.1057 rillig SepBuf_AddSubstring(buf, word);
2817 1.1057 rillig }
2818 1.1057 rillig
2819 1.845 rillig /* :Mpattern or :Npattern */
2820 1.845 rillig static ApplyModifierResult
2821 1.891 rillig ApplyModifier_Match(const char **pp, ModChain *ch)
2822 1.845 rillig {
2823 1.996 rillig char mod = **pp;
2824 1.845 rillig char *pattern;
2825 1.845 rillig
2826 1.1013 rillig pattern = ParseModifier_Match(pp, ch);
2827 1.845 rillig
2828 1.905 rillig if (ModChain_ShouldEval(ch)) {
2829 1.1057 rillig struct ModifyWord_MatchArgs args;
2830 1.1057 rillig args.pattern = pattern;
2831 1.1057 rillig args.neg = mod == 'N';
2832 1.1058 rillig args.error_reported = false;
2833 1.1057 rillig ModifyWords(ch, ModifyWord_Match, &args, ch->oneBigWord);
2834 1.876 rillig }
2835 1.876 rillig
2836 1.703 rillig free(pattern);
2837 1.703 rillig return AMR_OK;
2838 1.236 rillig }
2839 1.236 rillig
2840 1.1054 sjg struct ModifyWord_MtimeArgs {
2841 1.1054 sjg bool error;
2842 1.1060 rillig bool use_fallback;
2843 1.1054 sjg ApplyModifierResult rc;
2844 1.1060 rillig time_t fallback;
2845 1.1054 sjg };
2846 1.1054 sjg
2847 1.1054 sjg static void
2848 1.1054 sjg ModifyWord_Mtime(Substring word, SepBuf *buf, void *data)
2849 1.1054 sjg {
2850 1.1060 rillig struct ModifyWord_MtimeArgs *args = data;
2851 1.1054 sjg struct stat st;
2852 1.1060 rillig char tbuf[21];
2853 1.1054 sjg
2854 1.1054 sjg if (Substring_IsEmpty(word))
2855 1.1054 sjg return;
2856 1.1054 sjg assert(word.end[0] == '\0'); /* assume null-terminated word */
2857 1.1054 sjg if (stat(word.start, &st) < 0) {
2858 1.1054 sjg if (args->error) {
2859 1.1054 sjg Parse_Error(PARSE_FATAL,
2860 1.1054 sjg "Cannot determine mtime for '%s': %s",
2861 1.1054 sjg word.start, strerror(errno));
2862 1.1054 sjg args->rc = AMR_CLEANUP;
2863 1.1054 sjg return;
2864 1.1054 sjg }
2865 1.1060 rillig if (args->use_fallback)
2866 1.1060 rillig st.st_mtime = args->fallback;
2867 1.1054 sjg else
2868 1.1054 sjg time(&st.st_mtime);
2869 1.1054 sjg }
2870 1.1054 sjg snprintf(tbuf, sizeof(tbuf), "%u", (unsigned)st.st_mtime);
2871 1.1054 sjg SepBuf_AddStr(buf, tbuf);
2872 1.1054 sjg }
2873 1.1054 sjg
2874 1.1051 sjg /* :mtime */
2875 1.1051 sjg static ApplyModifierResult
2876 1.1051 sjg ApplyModifier_Mtime(const char **pp, ModChain *ch)
2877 1.1051 sjg {
2878 1.1054 sjg const char *p, *mod = *pp;
2879 1.1054 sjg struct ModifyWord_MtimeArgs args;
2880 1.1051 sjg
2881 1.1051 sjg if (!ModMatchEq(mod, "mtime", ch))
2882 1.1051 sjg return AMR_UNKNOWN;
2883 1.1051 sjg *pp += 5;
2884 1.1054 sjg p = *pp;
2885 1.1060 rillig args.error = false;
2886 1.1060 rillig args.use_fallback = p[0] == '=';
2887 1.1054 sjg args.rc = AMR_OK;
2888 1.1060 rillig if (args.use_fallback) {
2889 1.1054 sjg p++;
2890 1.1060 rillig if (TryParseTime(&p, &args.fallback)) {
2891 1.1072 rillig } else if (strncmp(p, "error", 5) == 0) {
2892 1.1060 rillig p += 5;
2893 1.1060 rillig args.error = true;
2894 1.1072 rillig } else
2895 1.1072 rillig goto invalid_argument;
2896 1.1072 rillig if (!IsDelimiter(*p, ch))
2897 1.1072 rillig goto invalid_argument;
2898 1.1054 sjg *pp = p;
2899 1.1051 sjg }
2900 1.1097 rillig ModifyWords(ch, ModifyWord_Mtime, &args, ch->oneBigWord);
2901 1.1054 sjg return args.rc;
2902 1.1072 rillig
2903 1.1072 rillig invalid_argument:
2904 1.1072 rillig Parse_Error(PARSE_FATAL,
2905 1.1072 rillig "Invalid argument '%.*s' for modifier ':mtime'",
2906 1.1072 rillig (int)strcspn(*pp + 1, ":{}()"), *pp + 1);
2907 1.1072 rillig return AMR_CLEANUP;
2908 1.1051 sjg }
2909 1.1051 sjg
2910 1.860 rillig static void
2911 1.927 rillig ParsePatternFlags(const char **pp, PatternFlags *pflags, bool *oneBigWord)
2912 1.860 rillig {
2913 1.860 rillig for (;; (*pp)++) {
2914 1.860 rillig if (**pp == 'g')
2915 1.895 rillig pflags->subGlobal = true;
2916 1.860 rillig else if (**pp == '1')
2917 1.895 rillig pflags->subOnce = true;
2918 1.860 rillig else if (**pp == 'W')
2919 1.895 rillig *oneBigWord = true;
2920 1.860 rillig else
2921 1.860 rillig break;
2922 1.860 rillig }
2923 1.860 rillig }
2924 1.860 rillig
2925 1.927 rillig MAKE_INLINE PatternFlags
2926 1.927 rillig PatternFlags_None(void)
2927 1.897 rillig {
2928 1.927 rillig PatternFlags pflags = { false, false, false, false };
2929 1.897 rillig return pflags;
2930 1.897 rillig }
2931 1.897 rillig
2932 1.236 rillig /* :S,from,to, */
2933 1.356 rillig static ApplyModifierResult
2934 1.891 rillig ApplyModifier_Subst(const char **pp, ModChain *ch)
2935 1.236 rillig {
2936 1.703 rillig struct ModifyWord_SubstArgs args;
2937 1.895 rillig bool oneBigWord;
2938 1.921 rillig LazyBuf lhsBuf, rhsBuf;
2939 1.299 rillig
2940 1.703 rillig char delim = (*pp)[1];
2941 1.703 rillig if (delim == '\0') {
2942 1.1125 rillig Parse_Error(PARSE_FATAL,
2943 1.1125 rillig "Missing delimiter for modifier ':S'");
2944 1.703 rillig (*pp)++;
2945 1.703 rillig return AMR_CLEANUP;
2946 1.703 rillig }
2947 1.236 rillig
2948 1.703 rillig *pp += 2;
2949 1.236 rillig
2950 1.927 rillig args.pflags = PatternFlags_None();
2951 1.895 rillig args.matched = false;
2952 1.236 rillig
2953 1.703 rillig if (**pp == '^') {
2954 1.895 rillig args.pflags.anchorStart = true;
2955 1.703 rillig (*pp)++;
2956 1.703 rillig }
2957 1.703 rillig
2958 1.1115 rillig if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
2959 1.1115 rillig ch, &lhsBuf, &args.pflags, NULL))
2960 1.703 rillig return AMR_CLEANUP;
2961 1.921 rillig args.lhs = LazyBuf_Get(&lhsBuf);
2962 1.703 rillig
2963 1.1115 rillig if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
2964 1.1115 rillig ch, &rhsBuf, NULL, &args)) {
2965 1.921 rillig LazyBuf_Done(&lhsBuf);
2966 1.703 rillig return AMR_CLEANUP;
2967 1.921 rillig }
2968 1.921 rillig args.rhs = LazyBuf_Get(&rhsBuf);
2969 1.703 rillig
2970 1.891 rillig oneBigWord = ch->oneBigWord;
2971 1.860 rillig ParsePatternFlags(pp, &args.pflags, &oneBigWord);
2972 1.236 rillig
2973 1.891 rillig ModifyWords(ch, ModifyWord_Subst, &args, oneBigWord);
2974 1.236 rillig
2975 1.921 rillig LazyBuf_Done(&lhsBuf);
2976 1.921 rillig LazyBuf_Done(&rhsBuf);
2977 1.703 rillig return AMR_OK;
2978 1.236 rillig }
2979 1.236 rillig
2980 1.236 rillig /* :C,from,to, */
2981 1.356 rillig static ApplyModifierResult
2982 1.891 rillig ApplyModifier_Regex(const char **pp, ModChain *ch)
2983 1.236 rillig {
2984 1.703 rillig struct ModifyWord_SubstRegexArgs args;
2985 1.895 rillig bool oneBigWord;
2986 1.703 rillig int error;
2987 1.921 rillig LazyBuf reBuf, replaceBuf;
2988 1.984 rillig FStr re;
2989 1.703 rillig
2990 1.703 rillig char delim = (*pp)[1];
2991 1.703 rillig if (delim == '\0') {
2992 1.1125 rillig Parse_Error(PARSE_FATAL,
2993 1.1125 rillig "Missing delimiter for modifier ':C'");
2994 1.703 rillig (*pp)++;
2995 1.703 rillig return AMR_CLEANUP;
2996 1.703 rillig }
2997 1.703 rillig
2998 1.703 rillig *pp += 2;
2999 1.236 rillig
3000 1.1115 rillig if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
3001 1.1115 rillig ch, &reBuf, NULL, NULL))
3002 1.703 rillig return AMR_CLEANUP;
3003 1.921 rillig re = LazyBuf_DoneGet(&reBuf);
3004 1.703 rillig
3005 1.1115 rillig if (!ParseModifierPart(pp, delim, delim, ch->expr->emode,
3006 1.1115 rillig ch, &replaceBuf, NULL, NULL)) {
3007 1.921 rillig FStr_Done(&re);
3008 1.703 rillig return AMR_CLEANUP;
3009 1.703 rillig }
3010 1.984 rillig args.replace = LazyBuf_Get(&replaceBuf);
3011 1.703 rillig
3012 1.927 rillig args.pflags = PatternFlags_None();
3013 1.895 rillig args.matched = false;
3014 1.891 rillig oneBigWord = ch->oneBigWord;
3015 1.860 rillig ParsePatternFlags(pp, &args.pflags, &oneBigWord);
3016 1.236 rillig
3017 1.1034 rillig if (!ModChain_ShouldEval(ch))
3018 1.1034 rillig goto done;
3019 1.856 rillig
3020 1.921 rillig error = regcomp(&args.re, re.str, REG_EXTENDED);
3021 1.703 rillig if (error != 0) {
3022 1.1059 rillig RegexError(error, &args.re, "Regex compilation error");
3023 1.984 rillig LazyBuf_Done(&replaceBuf);
3024 1.921 rillig FStr_Done(&re);
3025 1.703 rillig return AMR_CLEANUP;
3026 1.236 rillig }
3027 1.236 rillig
3028 1.703 rillig args.nsub = args.re.re_nsub + 1;
3029 1.703 rillig if (args.nsub > 10)
3030 1.703 rillig args.nsub = 10;
3031 1.820 rillig
3032 1.891 rillig ModifyWords(ch, ModifyWord_SubstRegex, &args, oneBigWord);
3033 1.820 rillig
3034 1.703 rillig regfree(&args.re);
3035 1.1034 rillig done:
3036 1.984 rillig LazyBuf_Done(&replaceBuf);
3037 1.921 rillig FStr_Done(&re);
3038 1.703 rillig return AMR_OK;
3039 1.703 rillig }
3040 1.236 rillig
3041 1.555 rillig /* :Q, :q */
3042 1.555 rillig static ApplyModifierResult
3043 1.891 rillig ApplyModifier_Quote(const char **pp, ModChain *ch)
3044 1.555 rillig {
3045 1.924 rillig LazyBuf buf;
3046 1.924 rillig bool quoteDollar;
3047 1.924 rillig
3048 1.924 rillig quoteDollar = **pp == 'q';
3049 1.891 rillig if (!IsDelimiter((*pp)[1], ch))
3050 1.703 rillig return AMR_UNKNOWN;
3051 1.861 rillig (*pp)++;
3052 1.861 rillig
3053 1.924 rillig if (!ModChain_ShouldEval(ch))
3054 1.924 rillig return AMR_OK;
3055 1.924 rillig
3056 1.1059 rillig QuoteShell(Expr_Str(ch->expr), quoteDollar, &buf);
3057 1.924 rillig if (buf.data != NULL)
3058 1.924 rillig Expr_SetValue(ch->expr, LazyBuf_DoneGet(&buf));
3059 1.924 rillig else
3060 1.924 rillig LazyBuf_Done(&buf);
3061 1.861 rillig
3062 1.861 rillig return AMR_OK;
3063 1.555 rillig }
3064 1.555 rillig
3065 1.779 rillig /*ARGSUSED*/
3066 1.278 rillig static void
3067 1.919 rillig ModifyWord_Copy(Substring word, SepBuf *buf, void *data MAKE_ATTR_UNUSED)
3068 1.278 rillig {
3069 1.919 rillig SepBuf_AddSubstring(buf, word);
3070 1.275 rillig }
3071 1.275 rillig
3072 1.289 rillig /* :ts<separator> */
3073 1.356 rillig static ApplyModifierResult
3074 1.891 rillig ApplyModifier_ToSep(const char **pp, ModChain *ch)
3075 1.289 rillig {
3076 1.703 rillig const char *sep = *pp + 2;
3077 1.703 rillig
3078 1.873 rillig /*
3079 1.1079 rillig * Even in parse-only mode, apply the side effects, since the side
3080 1.1079 rillig * effects are neither observable nor is there a performance penalty.
3081 1.1119 rillig * Checking for VARE_EVAL for every single piece of code in here
3082 1.873 rillig * would make the code in this function too hard to read.
3083 1.873 rillig */
3084 1.873 rillig
3085 1.703 rillig /* ":ts<any><endc>" or ":ts<any>:" */
3086 1.891 rillig if (sep[0] != ch->endc && IsDelimiter(sep[1], ch)) {
3087 1.864 rillig *pp = sep + 1;
3088 1.891 rillig ch->sep = sep[0];
3089 1.703 rillig goto ok;
3090 1.703 rillig }
3091 1.468 rillig
3092 1.703 rillig /* ":ts<endc>" or ":ts:" */
3093 1.891 rillig if (IsDelimiter(sep[0], ch)) {
3094 1.864 rillig *pp = sep;
3095 1.891 rillig ch->sep = '\0'; /* no separator */
3096 1.703 rillig goto ok;
3097 1.703 rillig }
3098 1.468 rillig
3099 1.1066 rillig /* ":ts<unrecognized><unrecognized>". */
3100 1.703 rillig if (sep[0] != '\\') {
3101 1.703 rillig (*pp)++; /* just for backwards compatibility */
3102 1.703 rillig return AMR_BAD;
3103 1.703 rillig }
3104 1.468 rillig
3105 1.703 rillig /* ":ts\n" */
3106 1.703 rillig if (sep[1] == 'n') {
3107 1.864 rillig *pp = sep + 2;
3108 1.891 rillig ch->sep = '\n';
3109 1.703 rillig goto ok;
3110 1.703 rillig }
3111 1.468 rillig
3112 1.703 rillig /* ":ts\t" */
3113 1.703 rillig if (sep[1] == 't') {
3114 1.864 rillig *pp = sep + 2;
3115 1.891 rillig ch->sep = '\t';
3116 1.703 rillig goto ok;
3117 1.703 rillig }
3118 1.468 rillig
3119 1.703 rillig /* ":ts\x40" or ":ts\100" */
3120 1.703 rillig {
3121 1.703 rillig const char *p = sep + 1;
3122 1.703 rillig int base = 8; /* assume octal */
3123 1.468 rillig
3124 1.703 rillig if (sep[1] == 'x') {
3125 1.703 rillig base = 16;
3126 1.703 rillig p++;
3127 1.703 rillig } else if (!ch_isdigit(sep[1])) {
3128 1.703 rillig (*pp)++; /* just for backwards compatibility */
3129 1.1066 rillig return AMR_BAD; /* ":ts<backslash><unrecognized>". */
3130 1.703 rillig }
3131 1.289 rillig
3132 1.891 rillig if (!TryParseChar(&p, base, &ch->sep)) {
3133 1.703 rillig Parse_Error(PARSE_FATAL,
3134 1.970 rillig "Invalid character number at \"%s\"", p);
3135 1.703 rillig return AMR_CLEANUP;
3136 1.703 rillig }
3137 1.891 rillig if (!IsDelimiter(*p, ch)) {
3138 1.703 rillig (*pp)++; /* just for backwards compatibility */
3139 1.703 rillig return AMR_BAD;
3140 1.703 rillig }
3141 1.468 rillig
3142 1.703 rillig *pp = p;
3143 1.556 rillig }
3144 1.635 rillig
3145 1.468 rillig ok:
3146 1.891 rillig ModifyWords(ch, ModifyWord_Copy, NULL, ch->oneBigWord);
3147 1.703 rillig return AMR_OK;
3148 1.289 rillig }
3149 1.289 rillig
3150 1.738 rillig static char *
3151 1.1126 sjg str_totitle(const char *str)
3152 1.1126 sjg {
3153 1.1126 sjg size_t i, n = strlen(str) + 1;
3154 1.1126 sjg char *res = bmake_malloc(n);
3155 1.1126 sjg for (i = 0; i < n; i++) {
3156 1.1126 sjg if (i == 0 || ch_isspace(res[i - 1]))
3157 1.1126 sjg res[i] = ch_toupper(str[i]);
3158 1.1126 sjg else
3159 1.1126 sjg res[i] = ch_tolower(str[i]);
3160 1.1126 sjg }
3161 1.1126 sjg return res;
3162 1.1126 sjg }
3163 1.1126 sjg
3164 1.1126 sjg
3165 1.1126 sjg static char *
3166 1.738 rillig str_toupper(const char *str)
3167 1.738 rillig {
3168 1.1106 rillig size_t i, n = strlen(str) + 1;
3169 1.1106 rillig char *res = bmake_malloc(n);
3170 1.1106 rillig for (i = 0; i < n; i++)
3171 1.738 rillig res[i] = ch_toupper(str[i]);
3172 1.738 rillig return res;
3173 1.738 rillig }
3174 1.738 rillig
3175 1.738 rillig static char *
3176 1.738 rillig str_tolower(const char *str)
3177 1.738 rillig {
3178 1.1106 rillig size_t i, n = strlen(str) + 1;
3179 1.1106 rillig char *res = bmake_malloc(n);
3180 1.1106 rillig for (i = 0; i < n; i++)
3181 1.738 rillig res[i] = ch_tolower(str[i]);
3182 1.738 rillig return res;
3183 1.738 rillig }
3184 1.738 rillig
3185 1.289 rillig /* :tA, :tu, :tl, :ts<separator>, etc. */
3186 1.356 rillig static ApplyModifierResult
3187 1.891 rillig ApplyModifier_To(const char **pp, ModChain *ch)
3188 1.236 rillig {
3189 1.891 rillig Expr *expr = ch->expr;
3190 1.703 rillig const char *mod = *pp;
3191 1.703 rillig assert(mod[0] == 't');
3192 1.363 rillig
3193 1.1032 rillig if (IsDelimiter(mod[1], ch)) {
3194 1.703 rillig *pp = mod + 1;
3195 1.703 rillig return AMR_BAD; /* Found ":t<endc>" or ":t:". */
3196 1.703 rillig }
3197 1.289 rillig
3198 1.703 rillig if (mod[1] == 's')
3199 1.891 rillig return ApplyModifier_ToSep(pp, ch);
3200 1.289 rillig
3201 1.1032 rillig if (!IsDelimiter(mod[2], ch)) { /* :t<any><any> */
3202 1.703 rillig *pp = mod + 1;
3203 1.810 rillig return AMR_BAD;
3204 1.703 rillig }
3205 1.236 rillig
3206 1.810 rillig if (mod[1] == 'A') { /* :tA */
3207 1.864 rillig *pp = mod + 2;
3208 1.891 rillig ModifyWords(ch, ModifyWord_Realpath, NULL, ch->oneBigWord);
3209 1.703 rillig return AMR_OK;
3210 1.703 rillig }
3211 1.475 rillig
3212 1.1126 sjg if (mod[1] == 't') { /* :tt */
3213 1.1126 sjg *pp = mod + 2;
3214 1.1126 sjg if (Expr_ShouldEval(expr))
3215 1.1126 sjg Expr_SetValueOwn(expr, str_totitle(Expr_Str(expr)));
3216 1.1126 sjg return AMR_OK;
3217 1.1126 sjg }
3218 1.1127 rillig
3219 1.810 rillig if (mod[1] == 'u') { /* :tu */
3220 1.864 rillig *pp = mod + 2;
3221 1.950 rillig if (Expr_ShouldEval(expr))
3222 1.965 rillig Expr_SetValueOwn(expr, str_toupper(Expr_Str(expr)));
3223 1.703 rillig return AMR_OK;
3224 1.703 rillig }
3225 1.475 rillig
3226 1.810 rillig if (mod[1] == 'l') { /* :tl */
3227 1.864 rillig *pp = mod + 2;
3228 1.950 rillig if (Expr_ShouldEval(expr))
3229 1.965 rillig Expr_SetValueOwn(expr, str_tolower(Expr_Str(expr)));
3230 1.703 rillig return AMR_OK;
3231 1.703 rillig }
3232 1.475 rillig
3233 1.810 rillig if (mod[1] == 'W' || mod[1] == 'w') { /* :tW, :tw */
3234 1.864 rillig *pp = mod + 2;
3235 1.891 rillig ch->oneBigWord = mod[1] == 'W';
3236 1.703 rillig return AMR_OK;
3237 1.703 rillig }
3238 1.475 rillig
3239 1.1066 rillig /* Found ":t<unrecognized>:" or ":t<unrecognized><endc>". */
3240 1.864 rillig *pp = mod + 1; /* XXX: unnecessary but observable */
3241 1.703 rillig return AMR_BAD;
3242 1.236 rillig }
3243 1.236 rillig
3244 1.634 rillig /* :[#], :[1], :[-1..1], etc. */
3245 1.356 rillig static ApplyModifierResult
3246 1.891 rillig ApplyModifier_Words(const char **pp, ModChain *ch)
3247 1.236 rillig {
3248 1.891 rillig Expr *expr = ch->expr;
3249 1.703 rillig int first, last;
3250 1.703 rillig const char *p;
3251 1.1079 rillig LazyBuf argBuf;
3252 1.1079 rillig FStr arg;
3253 1.412 rillig
3254 1.703 rillig (*pp)++; /* skip the '[' */
3255 1.1115 rillig if (!ParseModifierPart(pp, ']', ']', expr->emode,
3256 1.1115 rillig ch, &argBuf, NULL, NULL))
3257 1.703 rillig return AMR_CLEANUP;
3258 1.1079 rillig arg = LazyBuf_DoneGet(&argBuf);
3259 1.1079 rillig p = arg.str;
3260 1.703 rillig
3261 1.891 rillig if (!IsDelimiter(**pp, ch))
3262 1.810 rillig goto bad_modifier; /* Found junk after ']' */
3263 1.703 rillig
3264 1.905 rillig if (!ModChain_ShouldEval(ch))
3265 1.877 rillig goto ok;
3266 1.877 rillig
3267 1.1069 rillig if (p[0] == '\0')
3268 1.1069 rillig goto bad_modifier; /* Found ":[]". */
3269 1.703 rillig
3270 1.1069 rillig if (strcmp(p, "#") == 0) { /* Found ":[#]" */
3271 1.1069 rillig if (ch->oneBigWord)
3272 1.823 rillig Expr_SetValueRefer(expr, "1");
3273 1.1069 rillig else {
3274 1.703 rillig Buffer buf;
3275 1.412 rillig
3276 1.967 rillig SubstringWords words = Expr_Words(expr);
3277 1.703 rillig size_t ac = words.len;
3278 1.961 rillig SubstringWords_Free(words);
3279 1.703 rillig
3280 1.1087 rillig Buf_Init(&buf);
3281 1.703 rillig Buf_AddInt(&buf, (int)ac);
3282 1.823 rillig Expr_SetValueOwn(expr, Buf_DoneData(&buf));
3283 1.703 rillig }
3284 1.703 rillig goto ok;
3285 1.703 rillig }
3286 1.494 rillig
3287 1.1069 rillig if (strcmp(p, "*") == 0) { /* ":[*]" */
3288 1.895 rillig ch->oneBigWord = true;
3289 1.703 rillig goto ok;
3290 1.236 rillig }
3291 1.288 rillig
3292 1.1069 rillig if (strcmp(p, "@") == 0) { /* ":[@]" */
3293 1.895 rillig ch->oneBigWord = false;
3294 1.703 rillig goto ok;
3295 1.703 rillig }
3296 1.288 rillig
3297 1.1069 rillig /* Expect ":[N]" or ":[start..end]" */
3298 1.703 rillig if (!TryParseIntBase0(&p, &first))
3299 1.1069 rillig goto bad_modifier;
3300 1.703 rillig
3301 1.1069 rillig if (p[0] == '\0') /* ":[N]" */
3302 1.703 rillig last = first;
3303 1.1069 rillig else if (strncmp(p, "..", 2) == 0) {
3304 1.703 rillig p += 2;
3305 1.703 rillig if (!TryParseIntBase0(&p, &last) || *p != '\0')
3306 1.1069 rillig goto bad_modifier;
3307 1.703 rillig } else
3308 1.1069 rillig goto bad_modifier;
3309 1.288 rillig
3310 1.1069 rillig if (first == 0 && last == 0) { /* ":[0]" or ":[0..0]" */
3311 1.895 rillig ch->oneBigWord = true;
3312 1.703 rillig goto ok;
3313 1.703 rillig }
3314 1.288 rillig
3315 1.1069 rillig if (first == 0 || last == 0) /* ":[0..N]" or ":[N..0]" */
3316 1.703 rillig goto bad_modifier;
3317 1.703 rillig
3318 1.823 rillig Expr_SetValueOwn(expr,
3319 1.965 rillig VarSelectWords(Expr_Str(expr), first, last,
3320 1.1019 rillig ch->sep, ch->oneBigWord));
3321 1.288 rillig
3322 1.288 rillig ok:
3323 1.1079 rillig FStr_Done(&arg);
3324 1.703 rillig return AMR_OK;
3325 1.288 rillig
3326 1.288 rillig bad_modifier:
3327 1.1079 rillig FStr_Done(&arg);
3328 1.703 rillig return AMR_BAD;
3329 1.236 rillig }
3330 1.236 rillig
3331 1.1016 rillig #if __STDC_VERSION__ >= 199901L
3332 1.939 sjg # define NUM_TYPE long long
3333 1.1009 rillig # define PARSE_NUM_TYPE strtoll
3334 1.1009 rillig #else
3335 1.1009 rillig # define NUM_TYPE long
3336 1.1009 rillig # define PARSE_NUM_TYPE strtol
3337 1.939 sjg #endif
3338 1.939 sjg
3339 1.939 sjg static NUM_TYPE
3340 1.964 rillig num_val(Substring s)
3341 1.939 sjg {
3342 1.939 sjg NUM_TYPE val;
3343 1.939 sjg char *ep;
3344 1.939 sjg
3345 1.1009 rillig val = PARSE_NUM_TYPE(s.start, &ep, 0);
3346 1.964 rillig if (ep != s.start) {
3347 1.939 sjg switch (*ep) {
3348 1.939 sjg case 'K':
3349 1.939 sjg case 'k':
3350 1.939 sjg val <<= 10;
3351 1.939 sjg break;
3352 1.939 sjg case 'M':
3353 1.939 sjg case 'm':
3354 1.939 sjg val <<= 20;
3355 1.939 sjg break;
3356 1.939 sjg case 'G':
3357 1.939 sjg case 'g':
3358 1.939 sjg val <<= 30;
3359 1.939 sjg break;
3360 1.939 sjg }
3361 1.939 sjg }
3362 1.939 sjg return val;
3363 1.939 sjg }
3364 1.939 sjg
3365 1.939 sjg static int
3366 1.964 rillig SubNumAsc(const void *sa, const void *sb)
3367 1.939 sjg {
3368 1.939 sjg NUM_TYPE a, b;
3369 1.939 sjg
3370 1.964 rillig a = num_val(*((const Substring *)sa));
3371 1.964 rillig b = num_val(*((const Substring *)sb));
3372 1.1067 rillig return a > b ? 1 : b > a ? -1 : 0;
3373 1.939 sjg }
3374 1.940 rillig
3375 1.939 sjg static int
3376 1.964 rillig SubNumDesc(const void *sa, const void *sb)
3377 1.939 sjg {
3378 1.964 rillig return SubNumAsc(sb, sa);
3379 1.939 sjg }
3380 1.940 rillig
3381 1.404 rillig static int
3382 1.1068 rillig Substring_Cmp(Substring a, Substring b)
3383 1.1068 rillig {
3384 1.1068 rillig for (; a.start < a.end && b.start < b.end; a.start++, b.start++)
3385 1.1068 rillig if (a.start[0] != b.start[0])
3386 1.1068 rillig return (unsigned char)a.start[0]
3387 1.1068 rillig - (unsigned char)b.start[0];
3388 1.1068 rillig return (int)((a.end - a.start) - (b.end - b.start));
3389 1.1068 rillig }
3390 1.1068 rillig
3391 1.1068 rillig static int
3392 1.964 rillig SubStrAsc(const void *sa, const void *sb)
3393 1.404 rillig {
3394 1.1068 rillig return Substring_Cmp(*(const Substring *)sa, *(const Substring *)sb);
3395 1.404 rillig }
3396 1.404 rillig
3397 1.404 rillig static int
3398 1.964 rillig SubStrDesc(const void *sa, const void *sb)
3399 1.404 rillig {
3400 1.964 rillig return SubStrAsc(sb, sa);
3401 1.404 rillig }
3402 1.404 rillig
3403 1.705 rillig static void
3404 1.962 rillig ShuffleSubstrings(Substring *strs, size_t n)
3405 1.705 rillig {
3406 1.705 rillig size_t i;
3407 1.705 rillig
3408 1.705 rillig for (i = n - 1; i > 0; i--) {
3409 1.705 rillig size_t rndidx = (size_t)random() % (i + 1);
3410 1.962 rillig Substring t = strs[i];
3411 1.705 rillig strs[i] = strs[rndidx];
3412 1.705 rillig strs[rndidx] = t;
3413 1.705 rillig }
3414 1.705 rillig }
3415 1.705 rillig
3416 1.943 rillig /*
3417 1.943 rillig * :O order ascending
3418 1.943 rillig * :Or order descending
3419 1.943 rillig * :Ox shuffle
3420 1.943 rillig * :On numeric ascending
3421 1.943 rillig * :Onr, :Orn numeric descending
3422 1.939 sjg */
3423 1.356 rillig static ApplyModifierResult
3424 1.891 rillig ApplyModifier_Order(const char **pp, ModChain *ch)
3425 1.236 rillig {
3426 1.942 rillig const char *mod = *pp;
3427 1.962 rillig SubstringWords words;
3428 1.946 rillig int (*cmp)(const void *, const void *);
3429 1.401 rillig
3430 1.1032 rillig if (IsDelimiter(mod[1], ch)) {
3431 1.964 rillig cmp = SubStrAsc;
3432 1.939 sjg (*pp)++;
3433 1.1032 rillig } else if (IsDelimiter(mod[2], ch)) {
3434 1.942 rillig if (mod[1] == 'n')
3435 1.964 rillig cmp = SubNumAsc;
3436 1.942 rillig else if (mod[1] == 'r')
3437 1.964 rillig cmp = SubStrDesc;
3438 1.942 rillig else if (mod[1] == 'x')
3439 1.944 rillig cmp = NULL;
3440 1.942 rillig else
3441 1.942 rillig goto bad;
3442 1.942 rillig *pp += 2;
3443 1.1032 rillig } else if (IsDelimiter(mod[3], ch)) {
3444 1.942 rillig if ((mod[1] == 'n' && mod[2] == 'r') ||
3445 1.944 rillig (mod[1] == 'r' && mod[2] == 'n'))
3446 1.964 rillig cmp = SubNumDesc;
3447 1.944 rillig else
3448 1.942 rillig goto bad;
3449 1.942 rillig *pp += 3;
3450 1.996 rillig } else
3451 1.942 rillig goto bad;
3452 1.402 rillig
3453 1.905 rillig if (!ModChain_ShouldEval(ch))
3454 1.879 rillig return AMR_OK;
3455 1.879 rillig
3456 1.967 rillig words = Expr_Words(ch->expr);
3457 1.944 rillig if (cmp == NULL)
3458 1.962 rillig ShuffleSubstrings(words.words, words.len);
3459 1.964 rillig else {
3460 1.964 rillig assert(words.words[0].end[0] == '\0');
3461 1.944 rillig qsort(words.words, words.len, sizeof(words.words[0]), cmp);
3462 1.964 rillig }
3463 1.962 rillig Expr_SetValueOwn(ch->expr, SubstringWords_JoinFree(words));
3464 1.878 rillig
3465 1.705 rillig return AMR_OK;
3466 1.942 rillig
3467 1.942 rillig bad:
3468 1.942 rillig (*pp)++;
3469 1.942 rillig return AMR_BAD;
3470 1.236 rillig }
3471 1.236 rillig
3472 1.236 rillig /* :? then : else */
3473 1.356 rillig static ApplyModifierResult
3474 1.891 rillig ApplyModifier_IfElse(const char **pp, ModChain *ch)
3475 1.236 rillig {
3476 1.891 rillig Expr *expr = ch->expr;
3477 1.985 rillig LazyBuf thenBuf;
3478 1.985 rillig LazyBuf elseBuf;
3479 1.412 rillig
3480 1.1119 rillig VarEvalMode then_emode = VARE_PARSE;
3481 1.1119 rillig VarEvalMode else_emode = VARE_PARSE;
3482 1.236 rillig
3483 1.991 rillig CondResult cond_rc = CR_TRUE; /* just not CR_ERROR */
3484 1.905 rillig if (Expr_ShouldEval(expr)) {
3485 1.1124 rillig evalStack.elems[evalStack.len - 1].kind = VSK_COND;
3486 1.990 rillig cond_rc = Cond_EvalCondition(expr->name);
3487 1.990 rillig if (cond_rc == CR_TRUE)
3488 1.906 rillig then_emode = expr->emode;
3489 1.990 rillig if (cond_rc == CR_FALSE)
3490 1.906 rillig else_emode = expr->emode;
3491 1.703 rillig }
3492 1.703 rillig
3493 1.1124 rillig evalStack.elems[evalStack.len - 1].kind = VSK_COND_THEN;
3494 1.988 rillig (*pp)++; /* skip past the '?' */
3495 1.1115 rillig if (!ParseModifierPart(pp, ':', ':', then_emode,
3496 1.1115 rillig ch, &thenBuf, NULL, NULL))
3497 1.703 rillig return AMR_CLEANUP;
3498 1.703 rillig
3499 1.1124 rillig evalStack.elems[evalStack.len - 1].kind = VSK_COND_ELSE;
3500 1.1115 rillig if (!ParseModifierPart(pp, ch->endc, ch->endc, else_emode,
3501 1.1115 rillig ch, &elseBuf, NULL, NULL)) {
3502 1.985 rillig LazyBuf_Done(&thenBuf);
3503 1.703 rillig return AMR_CLEANUP;
3504 1.921 rillig }
3505 1.703 rillig
3506 1.891 rillig (*pp)--; /* Go back to the ch->endc. */
3507 1.809 rillig
3508 1.990 rillig if (cond_rc == CR_ERROR) {
3509 1.1124 rillig evalStack.elems[evalStack.len - 1].kind = VSK_COND;
3510 1.1124 rillig Parse_Error(PARSE_FATAL, "Bad condition");
3511 1.985 rillig LazyBuf_Done(&thenBuf);
3512 1.985 rillig LazyBuf_Done(&elseBuf);
3513 1.703 rillig return AMR_CLEANUP;
3514 1.703 rillig }
3515 1.703 rillig
3516 1.950 rillig if (!Expr_ShouldEval(expr)) {
3517 1.985 rillig LazyBuf_Done(&thenBuf);
3518 1.985 rillig LazyBuf_Done(&elseBuf);
3519 1.990 rillig } else if (cond_rc == CR_TRUE) {
3520 1.985 rillig Expr_SetValue(expr, LazyBuf_DoneGet(&thenBuf));
3521 1.985 rillig LazyBuf_Done(&elseBuf);
3522 1.703 rillig } else {
3523 1.985 rillig LazyBuf_Done(&thenBuf);
3524 1.985 rillig Expr_SetValue(expr, LazyBuf_DoneGet(&elseBuf));
3525 1.703 rillig }
3526 1.823 rillig Expr_Define(expr);
3527 1.703 rillig return AMR_OK;
3528 1.236 rillig }
3529 1.236 rillig
3530 1.283 rillig /*
3531 1.808 rillig * The ::= modifiers are special in that they do not read the variable value
3532 1.808 rillig * but instead assign to that variable. They always expand to an empty
3533 1.808 rillig * string.
3534 1.808 rillig *
3535 1.808 rillig * Their main purpose is in supporting .for loops that generate shell commands
3536 1.808 rillig * since an ordinary variable assignment at that point would terminate the
3537 1.808 rillig * dependency group for these targets. For example:
3538 1.283 rillig *
3539 1.808 rillig * list-targets: .USE
3540 1.283 rillig * .for i in ${.TARGET} ${.TARGET:R}.gz
3541 1.808 rillig * @${t::=$i}
3542 1.808 rillig * @echo 'The target is ${t:T}.'
3543 1.283 rillig * .endfor
3544 1.283 rillig *
3545 1.283 rillig * ::=<str> Assigns <str> as the new value of variable.
3546 1.283 rillig * ::?=<str> Assigns <str> as value of variable if
3547 1.283 rillig * it was not already set.
3548 1.283 rillig * ::+=<str> Appends <str> to variable.
3549 1.283 rillig * ::!=<cmd> Assigns output of <cmd> as the new value of
3550 1.283 rillig * variable.
3551 1.283 rillig */
3552 1.356 rillig static ApplyModifierResult
3553 1.891 rillig ApplyModifier_Assign(const char **pp, ModChain *ch)
3554 1.236 rillig {
3555 1.891 rillig Expr *expr = ch->expr;
3556 1.802 rillig GNode *scope;
3557 1.921 rillig FStr val;
3558 1.921 rillig LazyBuf buf;
3559 1.272 rillig
3560 1.703 rillig const char *mod = *pp;
3561 1.703 rillig const char *op = mod + 1;
3562 1.272 rillig
3563 1.703 rillig if (op[0] == '=')
3564 1.992 rillig goto found_op;
3565 1.992 rillig if ((op[0] == '+' || op[0] == '?' || op[0] == '!') && op[1] == '=')
3566 1.992 rillig goto found_op;
3567 1.1066 rillig return AMR_UNKNOWN; /* "::<unrecognized>" */
3568 1.862 rillig
3569 1.992 rillig found_op:
3570 1.898 rillig if (expr->name[0] == '\0') {
3571 1.703 rillig *pp = mod + 1;
3572 1.703 rillig return AMR_BAD;
3573 1.703 rillig }
3574 1.272 rillig
3575 1.1089 rillig *pp = mod + (op[0] != '=' ? 3 : 2);
3576 1.703 rillig
3577 1.1115 rillig if (!ParseModifierPart(pp, ch->endc, ch->endc, expr->emode,
3578 1.1115 rillig ch, &buf, NULL, NULL))
3579 1.703 rillig return AMR_CLEANUP;
3580 1.921 rillig val = LazyBuf_DoneGet(&buf);
3581 1.703 rillig
3582 1.891 rillig (*pp)--; /* Go back to the ch->endc. */
3583 1.703 rillig
3584 1.905 rillig if (!Expr_ShouldEval(expr))
3585 1.882 rillig goto done;
3586 1.882 rillig
3587 1.881 rillig scope = expr->scope; /* scope where v belongs */
3588 1.1089 rillig if (expr->defined == DEF_REGULAR && expr->scope != SCOPE_GLOBAL
3589 1.1089 rillig && VarFind(expr->name, expr->scope, false) == NULL)
3590 1.1089 rillig scope = SCOPE_GLOBAL;
3591 1.881 rillig
3592 1.999 rillig if (op[0] == '+')
3593 1.921 rillig Var_Append(scope, expr->name, val.str);
3594 1.999 rillig else if (op[0] == '!') {
3595 1.1000 rillig char *output, *error;
3596 1.1000 rillig output = Cmd_Exec(val.str, &error);
3597 1.1000 rillig if (error != NULL) {
3598 1.1123 rillig Parse_Error(PARSE_WARNING, "%s", error);
3599 1.1000 rillig free(error);
3600 1.1000 rillig } else
3601 1.1000 rillig Var_Set(scope, expr->name, output);
3602 1.1000 rillig free(output);
3603 1.999 rillig } else if (op[0] == '?' && expr->defined == DEF_REGULAR) {
3604 1.999 rillig /* Do nothing. */
3605 1.999 rillig } else
3606 1.921 rillig Var_Set(scope, expr->name, val.str);
3607 1.999 rillig
3608 1.882 rillig Expr_SetValueRefer(expr, "");
3609 1.882 rillig
3610 1.882 rillig done:
3611 1.921 rillig FStr_Done(&val);
3612 1.703 rillig return AMR_OK;
3613 1.236 rillig }
3614 1.236 rillig
3615 1.778 rillig /*
3616 1.778 rillig * :_=...
3617 1.778 rillig * remember current value
3618 1.778 rillig */
3619 1.356 rillig static ApplyModifierResult
3620 1.891 rillig ApplyModifier_Remember(const char **pp, ModChain *ch)
3621 1.236 rillig {
3622 1.891 rillig Expr *expr = ch->expr;
3623 1.703 rillig const char *mod = *pp;
3624 1.868 rillig FStr name;
3625 1.866 rillig
3626 1.891 rillig if (!ModMatchEq(mod, "_", ch))
3627 1.703 rillig return AMR_UNKNOWN;
3628 1.703 rillig
3629 1.868 rillig name = FStr_InitRefer("_");
3630 1.703 rillig if (mod[1] == '=') {
3631 1.847 rillig /*
3632 1.847 rillig * XXX: This ad-hoc call to strcspn deviates from the usual
3633 1.847 rillig * behavior defined in ParseModifierPart. This creates an
3634 1.1066 rillig * unnecessary and undocumented inconsistency in make.
3635 1.847 rillig */
3636 1.869 rillig const char *arg = mod + 2;
3637 1.869 rillig size_t argLen = strcspn(arg, ":)}");
3638 1.869 rillig *pp = arg + argLen;
3639 1.869 rillig name = FStr_InitOwn(bmake_strldup(arg, argLen));
3640 1.868 rillig } else
3641 1.868 rillig *pp = mod + 1;
3642 1.864 rillig
3643 1.905 rillig if (Expr_ShouldEval(expr))
3644 1.1040 sjg Var_Set(SCOPE_GLOBAL, name.str, Expr_Str(expr));
3645 1.868 rillig FStr_Done(&name);
3646 1.864 rillig
3647 1.703 rillig return AMR_OK;
3648 1.236 rillig }
3649 1.236 rillig
3650 1.778 rillig /*
3651 1.778 rillig * Apply the given function to each word of the variable value,
3652 1.778 rillig * for a single-letter modifier such as :H, :T.
3653 1.778 rillig */
3654 1.434 rillig static ApplyModifierResult
3655 1.891 rillig ApplyModifier_WordFunc(const char **pp, ModChain *ch,
3656 1.822 rillig ModifyWordProc modifyWord)
3657 1.434 rillig {
3658 1.891 rillig if (!IsDelimiter((*pp)[1], ch))
3659 1.703 rillig return AMR_UNKNOWN;
3660 1.864 rillig (*pp)++;
3661 1.703 rillig
3662 1.1097 rillig ModifyWords(ch, modifyWord, NULL, ch->oneBigWord);
3663 1.864 rillig
3664 1.703 rillig return AMR_OK;
3665 1.434 rillig }
3666 1.434 rillig
3667 1.931 rillig /* Remove adjacent duplicate words. */
3668 1.567 rillig static ApplyModifierResult
3669 1.891 rillig ApplyModifier_Unique(const char **pp, ModChain *ch)
3670 1.567 rillig {
3671 1.962 rillig SubstringWords words;
3672 1.931 rillig
3673 1.891 rillig if (!IsDelimiter((*pp)[1], ch))
3674 1.703 rillig return AMR_UNKNOWN;
3675 1.862 rillig (*pp)++;
3676 1.862 rillig
3677 1.931 rillig if (!ModChain_ShouldEval(ch))
3678 1.931 rillig return AMR_OK;
3679 1.931 rillig
3680 1.967 rillig words = Expr_Words(ch->expr);
3681 1.931 rillig
3682 1.931 rillig if (words.len > 1) {
3683 1.1067 rillig size_t di, si;
3684 1.932 rillig
3685 1.932 rillig di = 0;
3686 1.932 rillig for (si = 1; si < words.len; si++) {
3687 1.962 rillig if (!Substring_Eq(words.words[si], words.words[di])) {
3688 1.932 rillig di++;
3689 1.932 rillig if (di != si)
3690 1.932 rillig words.words[di] = words.words[si];
3691 1.932 rillig }
3692 1.932 rillig }
3693 1.932 rillig words.len = di + 1;
3694 1.931 rillig }
3695 1.931 rillig
3696 1.962 rillig Expr_SetValueOwn(ch->expr, SubstringWords_JoinFree(words));
3697 1.862 rillig
3698 1.862 rillig return AMR_OK;
3699 1.567 rillig }
3700 1.567 rillig
3701 1.1071 rillig /* Test whether the modifier has the form '<lhs>=<rhs>'. */
3702 1.1071 rillig static bool
3703 1.1071 rillig IsSysVModifier(const char *p, char startc, char endc)
3704 1.1071 rillig {
3705 1.1071 rillig bool eqFound = false;
3706 1.1071 rillig
3707 1.1071 rillig int depth = 1;
3708 1.1071 rillig while (*p != '\0' && depth > 0) {
3709 1.1071 rillig if (*p == '=') /* XXX: should also test depth == 1 */
3710 1.1071 rillig eqFound = true;
3711 1.1071 rillig else if (*p == endc)
3712 1.1071 rillig depth--;
3713 1.1071 rillig else if (*p == startc)
3714 1.1071 rillig depth++;
3715 1.1071 rillig if (depth > 0)
3716 1.1071 rillig p++;
3717 1.1071 rillig }
3718 1.1071 rillig return *p == endc && eqFound;
3719 1.1071 rillig }
3720 1.1071 rillig
3721 1.236 rillig /* :from=to */
3722 1.356 rillig static ApplyModifierResult
3723 1.891 rillig ApplyModifier_SysV(const char **pp, ModChain *ch)
3724 1.236 rillig {
3725 1.891 rillig Expr *expr = ch->expr;
3726 1.925 rillig LazyBuf lhsBuf, rhsBuf;
3727 1.925 rillig FStr rhs;
3728 1.926 rillig struct ModifyWord_SysVSubstArgs args;
3729 1.925 rillig Substring lhs;
3730 1.925 rillig const char *lhsSuffix;
3731 1.412 rillig
3732 1.703 rillig const char *mod = *pp;
3733 1.245 rillig
3734 1.1071 rillig if (!IsSysVModifier(mod, ch->startc, ch->endc))
3735 1.703 rillig return AMR_UNKNOWN;
3736 1.236 rillig
3737 1.1115 rillig if (!ParseModifierPart(pp, '=', '=', expr->emode,
3738 1.1115 rillig ch, &lhsBuf, NULL, NULL))
3739 1.703 rillig return AMR_CLEANUP;
3740 1.703 rillig
3741 1.1115 rillig if (!ParseModifierPart(pp, ch->endc, ch->endc, expr->emode,
3742 1.1115 rillig ch, &rhsBuf, NULL, NULL)) {
3743 1.925 rillig LazyBuf_Done(&lhsBuf);
3744 1.703 rillig return AMR_CLEANUP;
3745 1.921 rillig }
3746 1.925 rillig rhs = LazyBuf_DoneGet(&rhsBuf);
3747 1.703 rillig
3748 1.891 rillig (*pp)--; /* Go back to the ch->endc. */
3749 1.809 rillig
3750 1.925 rillig /* Do not turn an empty expression into non-empty. */
3751 1.965 rillig if (lhsBuf.len == 0 && Expr_Str(expr)[0] == '\0')
3752 1.925 rillig goto done;
3753 1.925 rillig
3754 1.925 rillig lhs = LazyBuf_Get(&lhsBuf);
3755 1.925 rillig lhsSuffix = Substring_SkipFirst(lhs, '%');
3756 1.925 rillig
3757 1.925 rillig args.scope = expr->scope;
3758 1.925 rillig args.lhsPrefix = Substring_Init(lhs.start,
3759 1.925 rillig lhsSuffix != lhs.start ? lhsSuffix - 1 : lhs.start);
3760 1.925 rillig args.lhsPercent = lhsSuffix != lhs.start;
3761 1.925 rillig args.lhsSuffix = Substring_Init(lhsSuffix, lhs.end);
3762 1.925 rillig args.rhs = rhs.str;
3763 1.925 rillig
3764 1.926 rillig ModifyWords(ch, ModifyWord_SysVSubst, &args, ch->oneBigWord);
3765 1.897 rillig
3766 1.925 rillig done:
3767 1.925 rillig LazyBuf_Done(&lhsBuf);
3768 1.1048 rillig FStr_Done(&rhs);
3769 1.703 rillig return AMR_OK;
3770 1.236 rillig }
3771 1.236 rillig
3772 1.548 rillig /* :sh */
3773 1.548 rillig static ApplyModifierResult
3774 1.891 rillig ApplyModifier_SunShell(const char **pp, ModChain *ch)
3775 1.548 rillig {
3776 1.891 rillig Expr *expr = ch->expr;
3777 1.703 rillig const char *p = *pp;
3778 1.891 rillig if (!(p[1] == 'h' && IsDelimiter(p[2], ch)))
3779 1.703 rillig return AMR_UNKNOWN;
3780 1.864 rillig *pp = p + 2;
3781 1.863 rillig
3782 1.905 rillig if (Expr_ShouldEval(expr)) {
3783 1.1000 rillig char *output, *error;
3784 1.1000 rillig output = Cmd_Exec(Expr_Str(expr), &error);
3785 1.1000 rillig if (error != NULL) {
3786 1.1122 rillig Parse_Error(PARSE_WARNING, "%s", error);
3787 1.1000 rillig free(error);
3788 1.1000 rillig }
3789 1.863 rillig Expr_SetValueOwn(expr, output);
3790 1.863 rillig }
3791 1.864 rillig
3792 1.863 rillig return AMR_OK;
3793 1.548 rillig }
3794 1.548 rillig
3795 1.1041 rillig /*
3796 1.1041 rillig * In cases where the evaluation mode and the definedness are the "standard"
3797 1.1041 rillig * ones, don't log them, to keep the logs readable.
3798 1.1041 rillig */
3799 1.1041 rillig static bool
3800 1.1041 rillig ShouldLogInSimpleFormat(const Expr *expr)
3801 1.1041 rillig {
3802 1.1119 rillig return (expr->emode == VARE_EVAL || expr->emode == VARE_EVAL_DEFINED)
3803 1.1119 rillig && expr->defined == DEF_REGULAR;
3804 1.1041 rillig }
3805 1.1041 rillig
3806 1.549 rillig static void
3807 1.891 rillig LogBeforeApply(const ModChain *ch, const char *mod)
3808 1.549 rillig {
3809 1.891 rillig const Expr *expr = ch->expr;
3810 1.895 rillig bool is_single_char = mod[0] != '\0' && IsDelimiter(mod[1], ch);
3811 1.703 rillig
3812 1.909 rillig /*
3813 1.909 rillig * At this point, only the first character of the modifier can
3814 1.909 rillig * be used since the end of the modifier is not yet known.
3815 1.909 rillig */
3816 1.909 rillig
3817 1.909 rillig if (!Expr_ShouldEval(expr)) {
3818 1.909 rillig debug_printf("Parsing modifier ${%s:%c%s}\n",
3819 1.909 rillig expr->name, mod[0], is_single_char ? "" : "...");
3820 1.909 rillig return;
3821 1.909 rillig }
3822 1.909 rillig
3823 1.1041 rillig if (ShouldLogInSimpleFormat(expr)) {
3824 1.910 rillig debug_printf(
3825 1.910 rillig "Evaluating modifier ${%s:%c%s} on value \"%s\"\n",
3826 1.910 rillig expr->name, mod[0], is_single_char ? "" : "...",
3827 1.965 rillig Expr_Str(expr));
3828 1.910 rillig return;
3829 1.910 rillig }
3830 1.910 rillig
3831 1.909 rillig debug_printf(
3832 1.909 rillig "Evaluating modifier ${%s:%c%s} on value \"%s\" (%s, %s)\n",
3833 1.965 rillig expr->name, mod[0], is_single_char ? "" : "...", Expr_Str(expr),
3834 1.910 rillig VarEvalMode_Name[expr->emode], ExprDefined_Name[expr->defined]);
3835 1.549 rillig }
3836 1.549 rillig
3837 1.549 rillig static void
3838 1.891 rillig LogAfterApply(const ModChain *ch, const char *p, const char *mod)
3839 1.549 rillig {
3840 1.891 rillig const Expr *expr = ch->expr;
3841 1.965 rillig const char *value = Expr_Str(expr);
3842 1.823 rillig const char *quot = value == var_Error ? "" : "\"";
3843 1.703 rillig
3844 1.1041 rillig if (ShouldLogInSimpleFormat(expr)) {
3845 1.912 rillig debug_printf("Result of ${%s:%.*s} is %s%s%s\n",
3846 1.912 rillig expr->name, (int)(p - mod), mod,
3847 1.912 rillig quot, value == var_Error ? "error" : value, quot);
3848 1.912 rillig return;
3849 1.912 rillig }
3850 1.912 rillig
3851 1.899 rillig debug_printf("Result of ${%s:%.*s} is %s%s%s (%s, %s)\n",
3852 1.898 rillig expr->name, (int)(p - mod), mod,
3853 1.823 rillig quot, value == var_Error ? "error" : value, quot,
3854 1.906 rillig VarEvalMode_Name[expr->emode],
3855 1.825 rillig ExprDefined_Name[expr->defined]);
3856 1.549 rillig }
3857 1.549 rillig
3858 1.551 rillig static ApplyModifierResult
3859 1.891 rillig ApplyModifier(const char **pp, ModChain *ch)
3860 1.551 rillig {
3861 1.703 rillig switch (**pp) {
3862 1.857 rillig case '!':
3863 1.891 rillig return ApplyModifier_ShellCommand(pp, ch);
3864 1.703 rillig case ':':
3865 1.891 rillig return ApplyModifier_Assign(pp, ch);
3866 1.857 rillig case '?':
3867 1.891 rillig return ApplyModifier_IfElse(pp, ch);
3868 1.703 rillig case '@':
3869 1.891 rillig return ApplyModifier_Loop(pp, ch);
3870 1.857 rillig case '[':
3871 1.891 rillig return ApplyModifier_Words(pp, ch);
3872 1.703 rillig case '_':
3873 1.891 rillig return ApplyModifier_Remember(pp, ch);
3874 1.857 rillig case 'C':
3875 1.891 rillig return ApplyModifier_Regex(pp, ch);
3876 1.703 rillig case 'D':
3877 1.968 rillig case 'U':
3878 1.891 rillig return ApplyModifier_Defined(pp, ch);
3879 1.857 rillig case 'E':
3880 1.891 rillig return ApplyModifier_WordFunc(pp, ch, ModifyWord_Suffix);
3881 1.703 rillig case 'g':
3882 1.995 rillig case 'l':
3883 1.995 rillig return ApplyModifier_Time(pp, ch);
3884 1.857 rillig case 'H':
3885 1.891 rillig return ApplyModifier_WordFunc(pp, ch, ModifyWord_Head);
3886 1.703 rillig case 'h':
3887 1.891 rillig return ApplyModifier_Hash(pp, ch);
3888 1.857 rillig case 'L':
3889 1.891 rillig return ApplyModifier_Literal(pp, ch);
3890 1.857 rillig case 'M':
3891 1.703 rillig case 'N':
3892 1.891 rillig return ApplyModifier_Match(pp, ch);
3893 1.1051 sjg case 'm':
3894 1.1051 sjg return ApplyModifier_Mtime(pp, ch);
3895 1.857 rillig case 'O':
3896 1.891 rillig return ApplyModifier_Order(pp, ch);
3897 1.857 rillig case 'P':
3898 1.891 rillig return ApplyModifier_Path(pp, ch);
3899 1.857 rillig case 'Q':
3900 1.703 rillig case 'q':
3901 1.891 rillig return ApplyModifier_Quote(pp, ch);
3902 1.703 rillig case 'R':
3903 1.891 rillig return ApplyModifier_WordFunc(pp, ch, ModifyWord_Root);
3904 1.703 rillig case 'r':
3905 1.891 rillig return ApplyModifier_Range(pp, ch);
3906 1.857 rillig case 'S':
3907 1.891 rillig return ApplyModifier_Subst(pp, ch);
3908 1.703 rillig case 's':
3909 1.891 rillig return ApplyModifier_SunShell(pp, ch);
3910 1.857 rillig case 'T':
3911 1.891 rillig return ApplyModifier_WordFunc(pp, ch, ModifyWord_Tail);
3912 1.857 rillig case 't':
3913 1.891 rillig return ApplyModifier_To(pp, ch);
3914 1.857 rillig case 'u':
3915 1.891 rillig return ApplyModifier_Unique(pp, ch);
3916 1.703 rillig default:
3917 1.703 rillig return AMR_UNKNOWN;
3918 1.703 rillig }
3919 1.551 rillig }
3920 1.551 rillig
3921 1.823 rillig static void ApplyModifiers(Expr *, const char **, char, char);
3922 1.641 rillig
3923 1.641 rillig typedef enum ApplyModifiersIndirectResult {
3924 1.752 rillig /* The indirect modifiers have been applied successfully. */
3925 1.703 rillig AMIR_CONTINUE,
3926 1.752 rillig /* Fall back to the SysV modifier. */
3927 1.849 rillig AMIR_SYSV,
3928 1.752 rillig /* Error out. */
3929 1.703 rillig AMIR_OUT
3930 1.641 rillig } ApplyModifiersIndirectResult;
3931 1.641 rillig
3932 1.752 rillig /*
3933 1.1075 rillig * While expanding an expression, expand and apply indirect modifiers,
3934 1.752 rillig * such as in ${VAR:${M_indirect}}.
3935 1.752 rillig *
3936 1.1075 rillig * All indirect modifiers of a group must come from a single
3937 1.752 rillig * expression. ${VAR:${M1}} is valid but ${VAR:${M1}${M2}} is not.
3938 1.752 rillig *
3939 1.752 rillig * Multiple groups of indirect modifiers can be chained by separating them
3940 1.752 rillig * with colons. ${VAR:${M1}:${M2}} contains 2 indirect modifiers.
3941 1.752 rillig *
3942 1.1075 rillig * If the expression is not followed by ch->endc or ':', fall
3943 1.752 rillig * back to trying the SysV modifier, such as in ${VAR:${FROM}=${TO}}.
3944 1.752 rillig */
3945 1.641 rillig static ApplyModifiersIndirectResult
3946 1.891 rillig ApplyModifiersIndirect(ModChain *ch, const char **pp)
3947 1.703 rillig {
3948 1.891 rillig Expr *expr = ch->expr;
3949 1.721 rillig const char *p = *pp;
3950 1.1042 rillig FStr mods = Var_Parse(&p, expr->scope, expr->emode);
3951 1.703 rillig /* TODO: handle errors */
3952 1.641 rillig
3953 1.1032 rillig if (mods.str[0] != '\0' && !IsDelimiter(*p, ch)) {
3954 1.743 rillig FStr_Done(&mods);
3955 1.849 rillig return AMIR_SYSV;
3956 1.703 rillig }
3957 1.703 rillig
3958 1.708 rillig DEBUG3(VAR, "Indirect modifier \"%s\" from \"%.*s\"\n",
3959 1.743 rillig mods.str, (int)(p - *pp), *pp);
3960 1.703 rillig
3961 1.1098 rillig if (ModChain_ShouldEval(ch) && mods.str[0] != '\0') {
3962 1.743 rillig const char *modsp = mods.str;
3963 1.823 rillig ApplyModifiers(expr, &modsp, '\0', '\0');
3964 1.965 rillig if (Expr_Str(expr) == var_Error || *modsp != '\0') {
3965 1.743 rillig FStr_Done(&mods);
3966 1.721 rillig *pp = p;
3967 1.703 rillig return AMIR_OUT; /* error already reported */
3968 1.703 rillig }
3969 1.703 rillig }
3970 1.743 rillig FStr_Done(&mods);
3971 1.641 rillig
3972 1.703 rillig if (*p == ':')
3973 1.703 rillig p++;
3974 1.891 rillig else if (*p == '\0' && ch->endc != '\0') {
3975 1.1074 rillig Error("Unclosed expression after indirect modifier, "
3976 1.1074 rillig "expecting '%c' for variable \"%s\"",
3977 1.898 rillig ch->endc, expr->name);
3978 1.721 rillig *pp = p;
3979 1.703 rillig return AMIR_OUT;
3980 1.641 rillig }
3981 1.641 rillig
3982 1.721 rillig *pp = p;
3983 1.703 rillig return AMIR_CONTINUE;
3984 1.641 rillig }
3985 1.641 rillig
3986 1.750 rillig static ApplyModifierResult
3987 1.891 rillig ApplySingleModifier(const char **pp, ModChain *ch)
3988 1.750 rillig {
3989 1.750 rillig ApplyModifierResult res;
3990 1.850 rillig const char *mod = *pp;
3991 1.750 rillig const char *p = *pp;
3992 1.750 rillig
3993 1.750 rillig if (DEBUG(VAR))
3994 1.891 rillig LogBeforeApply(ch, mod);
3995 1.750 rillig
3996 1.891 rillig res = ApplyModifier(&p, ch);
3997 1.750 rillig
3998 1.750 rillig if (res == AMR_UNKNOWN) {
3999 1.750 rillig assert(p == mod);
4000 1.891 rillig res = ApplyModifier_SysV(&p, ch);
4001 1.750 rillig }
4002 1.750 rillig
4003 1.750 rillig if (res == AMR_UNKNOWN) {
4004 1.750 rillig /*
4005 1.750 rillig * Guess the end of the current modifier.
4006 1.750 rillig * XXX: Skipping the rest of the modifier hides
4007 1.750 rillig * errors and leads to wrong results.
4008 1.750 rillig * Parsing should rather stop here.
4009 1.750 rillig */
4010 1.1032 rillig for (p++; !IsDelimiter(*p, ch); p++)
4011 1.750 rillig continue;
4012 1.851 rillig Parse_Error(PARSE_FATAL, "Unknown modifier \"%.*s\"",
4013 1.851 rillig (int)(p - mod), mod);
4014 1.891 rillig Expr_SetValueRefer(ch->expr, var_Error);
4015 1.750 rillig }
4016 1.750 rillig if (res == AMR_CLEANUP || res == AMR_BAD) {
4017 1.750 rillig *pp = p;
4018 1.750 rillig return res;
4019 1.750 rillig }
4020 1.750 rillig
4021 1.750 rillig if (DEBUG(VAR))
4022 1.891 rillig LogAfterApply(ch, p, mod);
4023 1.750 rillig
4024 1.891 rillig if (*p == '\0' && ch->endc != '\0') {
4025 1.750 rillig Error(
4026 1.1074 rillig "Unclosed expression, expecting '%c' for "
4027 1.852 rillig "modifier \"%.*s\" of variable \"%s\" with value \"%s\"",
4028 1.891 rillig ch->endc,
4029 1.852 rillig (int)(p - mod), mod,
4030 1.965 rillig ch->expr->name, Expr_Str(ch->expr));
4031 1.750 rillig } else if (*p == ':') {
4032 1.750 rillig p++;
4033 1.891 rillig } else if (opts.strict && *p != '\0' && *p != ch->endc) {
4034 1.750 rillig Parse_Error(PARSE_FATAL,
4035 1.750 rillig "Missing delimiter ':' after modifier \"%.*s\"",
4036 1.750 rillig (int)(p - mod), mod);
4037 1.750 rillig /*
4038 1.750 rillig * TODO: propagate parse error to the enclosing
4039 1.750 rillig * expression
4040 1.750 rillig */
4041 1.750 rillig }
4042 1.750 rillig *pp = p;
4043 1.750 rillig return AMR_OK;
4044 1.750 rillig }
4045 1.750 rillig
4046 1.897 rillig #if __STDC_VERSION__ >= 199901L
4047 1.1079 rillig #define ModChain_Init(expr, startc, endc, sep, oneBigWord) \
4048 1.897 rillig (ModChain) { expr, startc, endc, sep, oneBigWord }
4049 1.897 rillig #else
4050 1.897 rillig MAKE_INLINE ModChain
4051 1.1079 rillig ModChain_Init(Expr *expr, char startc, char endc, char sep, bool oneBigWord)
4052 1.897 rillig {
4053 1.897 rillig ModChain ch;
4054 1.897 rillig ch.expr = expr;
4055 1.897 rillig ch.startc = startc;
4056 1.897 rillig ch.endc = endc;
4057 1.897 rillig ch.sep = sep;
4058 1.897 rillig ch.oneBigWord = oneBigWord;
4059 1.897 rillig return ch;
4060 1.897 rillig }
4061 1.897 rillig #endif
4062 1.897 rillig
4063 1.419 rillig /* Apply any modifiers (such as :Mpattern or :@var@loop@ or :Q or ::=value). */
4064 1.823 rillig static void
4065 1.357 rillig ApplyModifiers(
4066 1.823 rillig Expr *expr,
4067 1.821 rillig const char **pp, /* the parsing position, updated upon return */
4068 1.821 rillig char startc, /* '(' or '{'; or '\0' for indirect modifiers */
4069 1.823 rillig char endc /* ')' or '}'; or '\0' for indirect modifiers */
4070 1.703 rillig )
4071 1.703 rillig {
4072 1.1079 rillig ModChain ch = ModChain_Init(expr, startc, endc, ' ', false);
4073 1.703 rillig const char *p;
4074 1.703 rillig const char *mod;
4075 1.703 rillig
4076 1.703 rillig assert(startc == '(' || startc == '{' || startc == '\0');
4077 1.703 rillig assert(endc == ')' || endc == '}' || endc == '\0');
4078 1.965 rillig assert(Expr_Str(expr) != NULL);
4079 1.703 rillig
4080 1.703 rillig p = *pp;
4081 1.703 rillig
4082 1.703 rillig if (*p == '\0' && endc != '\0') {
4083 1.703 rillig Error(
4084 1.1074 rillig "Unclosed expression, expecting '%c' for \"%s\"",
4085 1.898 rillig ch.endc, expr->name);
4086 1.703 rillig goto cleanup;
4087 1.703 rillig }
4088 1.703 rillig
4089 1.703 rillig while (*p != '\0' && *p != endc) {
4090 1.750 rillig ApplyModifierResult res;
4091 1.703 rillig
4092 1.703 rillig if (*p == '$') {
4093 1.1079 rillig /*
4094 1.1079 rillig * TODO: Only evaluate the expression once, no matter
4095 1.1079 rillig * whether it's an indirect modifier or the initial
4096 1.1079 rillig * part of a SysV modifier.
4097 1.1079 rillig */
4098 1.849 rillig ApplyModifiersIndirectResult amir =
4099 1.891 rillig ApplyModifiersIndirect(&ch, &p);
4100 1.703 rillig if (amir == AMIR_CONTINUE)
4101 1.703 rillig continue;
4102 1.703 rillig if (amir == AMIR_OUT)
4103 1.752 rillig break;
4104 1.703 rillig }
4105 1.752 rillig
4106 1.703 rillig mod = p;
4107 1.649 rillig
4108 1.891 rillig res = ApplySingleModifier(&p, &ch);
4109 1.703 rillig if (res == AMR_CLEANUP)
4110 1.703 rillig goto cleanup;
4111 1.703 rillig if (res == AMR_BAD)
4112 1.703 rillig goto bad_modifier;
4113 1.356 rillig }
4114 1.752 rillig
4115 1.703 rillig *pp = p;
4116 1.988 rillig assert(Expr_Str(expr) != NULL); /* Use var_Error or varUndefined. */
4117 1.823 rillig return;
4118 1.25 christos
4119 1.240 rillig bad_modifier:
4120 1.1079 rillig /* Take a guess at where the modifier ends. */
4121 1.853 rillig Error("Bad modifier \":%.*s\" for variable \"%s\"",
4122 1.898 rillig (int)strcspn(mod, ":)}"), mod, expr->name);
4123 1.25 christos
4124 1.240 rillig cleanup:
4125 1.858 rillig /*
4126 1.858 rillig * TODO: Use p + strlen(p) instead, to stop parsing immediately.
4127 1.858 rillig *
4128 1.1015 rillig * In the unit tests, this generates a few shell commands with
4129 1.1015 rillig * unbalanced quotes. Instead of producing these incomplete strings,
4130 1.1015 rillig * commands with evaluation errors should not be run at all.
4131 1.858 rillig *
4132 1.858 rillig * To make that happen, Var_Subst must report the actual errors
4133 1.1044 rillig * instead of returning the resulting string unconditionally.
4134 1.858 rillig */
4135 1.703 rillig *pp = p;
4136 1.823 rillig Expr_SetValueRefer(expr, var_Error);
4137 1.108 sjg }
4138 1.25 christos
4139 1.778 rillig /*
4140 1.1015 rillig * Only 4 of the 7 built-in local variables are treated specially as they are
4141 1.1015 rillig * the only ones that will be set when dynamic sources are expanded.
4142 1.778 rillig */
4143 1.895 rillig static bool
4144 1.916 rillig VarnameIsDynamic(Substring varname)
4145 1.335 rillig {
4146 1.916 rillig const char *name;
4147 1.916 rillig size_t len;
4148 1.916 rillig
4149 1.916 rillig name = varname.start;
4150 1.916 rillig len = Substring_Length(varname);
4151 1.703 rillig if (len == 1 || (len == 2 && (name[1] == 'F' || name[1] == 'D'))) {
4152 1.703 rillig switch (name[0]) {
4153 1.703 rillig case '@':
4154 1.703 rillig case '%':
4155 1.703 rillig case '*':
4156 1.703 rillig case '!':
4157 1.895 rillig return true;
4158 1.703 rillig }
4159 1.895 rillig return false;
4160 1.335 rillig }
4161 1.335 rillig
4162 1.703 rillig if ((len == 7 || len == 8) && name[0] == '.' && ch_isupper(name[1])) {
4163 1.916 rillig return Substring_Equals(varname, ".TARGET") ||
4164 1.916 rillig Substring_Equals(varname, ".ARCHIVE") ||
4165 1.916 rillig Substring_Equals(varname, ".PREFIX") ||
4166 1.916 rillig Substring_Equals(varname, ".MEMBER");
4167 1.703 rillig }
4168 1.335 rillig
4169 1.895 rillig return false;
4170 1.335 rillig }
4171 1.335 rillig
4172 1.502 rillig static const char *
4173 1.802 rillig UndefinedShortVarValue(char varname, const GNode *scope)
4174 1.502 rillig {
4175 1.802 rillig if (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL) {
4176 1.703 rillig /*
4177 1.802 rillig * If substituting a local variable in a non-local scope,
4178 1.703 rillig * assume it's for dynamic source stuff. We have to handle
4179 1.703 rillig * this specially and return the longhand for the variable
4180 1.703 rillig * with the dollar sign escaped so it makes it back to the
4181 1.703 rillig * caller. Only four of the local variables are treated
4182 1.703 rillig * specially as they are the only four that will be set
4183 1.703 rillig * when dynamic sources are expanded.
4184 1.703 rillig */
4185 1.703 rillig switch (varname) {
4186 1.703 rillig case '@':
4187 1.703 rillig return "$(.TARGET)";
4188 1.703 rillig case '%':
4189 1.703 rillig return "$(.MEMBER)";
4190 1.703 rillig case '*':
4191 1.703 rillig return "$(.PREFIX)";
4192 1.703 rillig case '!':
4193 1.703 rillig return "$(.ARCHIVE)";
4194 1.703 rillig }
4195 1.502 rillig }
4196 1.769 rillig return NULL;
4197 1.502 rillig }
4198 1.502 rillig
4199 1.778 rillig /*
4200 1.778 rillig * Parse a variable name, until the end character or a colon, whichever
4201 1.778 rillig * comes first.
4202 1.778 rillig */
4203 1.916 rillig static void
4204 1.501 rillig ParseVarname(const char **pp, char startc, char endc,
4205 1.906 rillig GNode *scope, VarEvalMode emode,
4206 1.916 rillig LazyBuf *buf)
4207 1.501 rillig {
4208 1.703 rillig const char *p = *pp;
4209 1.1066 rillig int depth = 0;
4210 1.703 rillig
4211 1.923 rillig LazyBuf_Init(buf, p);
4212 1.703 rillig
4213 1.703 rillig while (*p != '\0') {
4214 1.854 rillig if ((*p == endc || *p == ':') && depth == 0)
4215 1.854 rillig break;
4216 1.703 rillig if (*p == startc)
4217 1.703 rillig depth++;
4218 1.854 rillig if (*p == endc)
4219 1.854 rillig depth--;
4220 1.501 rillig
4221 1.703 rillig if (*p == '$') {
4222 1.1042 rillig FStr nested_val = Var_Parse(&p, scope, emode);
4223 1.703 rillig /* TODO: handle errors */
4224 1.916 rillig LazyBuf_AddStr(buf, nested_val.str);
4225 1.743 rillig FStr_Done(&nested_val);
4226 1.703 rillig } else {
4227 1.916 rillig LazyBuf_Add(buf, *p);
4228 1.703 rillig p++;
4229 1.703 rillig }
4230 1.501 rillig }
4231 1.703 rillig *pp = p;
4232 1.501 rillig }
4233 1.501 rillig
4234 1.1023 rillig static bool
4235 1.1023 rillig IsShortVarnameValid(char varname, const char *start)
4236 1.507 rillig {
4237 1.818 rillig if (varname != '$' && varname != ':' && varname != '}' &&
4238 1.818 rillig varname != ')' && varname != '\0')
4239 1.1023 rillig return true;
4240 1.507 rillig
4241 1.771 rillig if (!opts.strict)
4242 1.1023 rillig return false; /* XXX: Missing error message */
4243 1.507 rillig
4244 1.1096 sjg if (varname == '$' && save_dollars)
4245 1.703 rillig Parse_Error(PARSE_FATAL,
4246 1.507 rillig "To escape a dollar, use \\$, not $$, at \"%s\"", start);
4247 1.703 rillig else if (varname == '\0')
4248 1.703 rillig Parse_Error(PARSE_FATAL, "Dollar followed by nothing");
4249 1.1096 sjg else if (save_dollars)
4250 1.703 rillig Parse_Error(PARSE_FATAL,
4251 1.507 rillig "Invalid variable name '%c', at \"%s\"", varname, start);
4252 1.507 rillig
4253 1.1023 rillig return false;
4254 1.507 rillig }
4255 1.507 rillig
4256 1.778 rillig /*
4257 1.817 rillig * Parse a single-character variable name such as in $V or $@.
4258 1.778 rillig * Return whether to continue parsing.
4259 1.778 rillig */
4260 1.895 rillig static bool
4261 1.817 rillig ParseVarnameShort(char varname, const char **pp, GNode *scope,
4262 1.906 rillig VarEvalMode emode,
4263 1.1042 rillig const char **out_false_val,
4264 1.896 rillig Var **out_true_var)
4265 1.667 rillig {
4266 1.703 rillig char name[2];
4267 1.703 rillig Var *v;
4268 1.1024 rillig const char *val;
4269 1.622 rillig
4270 1.1023 rillig if (!IsShortVarnameValid(varname, *pp)) {
4271 1.1025 rillig (*pp)++; /* only skip the '$' */
4272 1.896 rillig *out_false_val = var_Error;
4273 1.895 rillig return false;
4274 1.703 rillig }
4275 1.622 rillig
4276 1.817 rillig name[0] = varname;
4277 1.703 rillig name[1] = '\0';
4278 1.895 rillig v = VarFind(name, scope, true);
4279 1.1024 rillig if (v != NULL) {
4280 1.1025 rillig /* No need to advance *pp, the calling code handles this. */
4281 1.1024 rillig *out_true_var = v;
4282 1.1024 rillig return true;
4283 1.1024 rillig }
4284 1.622 rillig
4285 1.1024 rillig *pp += 2;
4286 1.769 rillig
4287 1.1024 rillig val = UndefinedShortVarValue(varname, scope);
4288 1.1024 rillig if (val == NULL)
4289 1.1119 rillig val = emode == VARE_EVAL_DEFINED ? var_Error : varUndefined;
4290 1.767 rillig
4291 1.1024 rillig if (opts.strict && val == var_Error) {
4292 1.1024 rillig Parse_Error(PARSE_FATAL,
4293 1.1024 rillig "Variable \"%s\" is undefined", name);
4294 1.622 rillig }
4295 1.622 rillig
4296 1.1024 rillig *out_false_val = val;
4297 1.1024 rillig return false;
4298 1.622 rillig }
4299 1.622 rillig
4300 1.662 rillig /* Find variables like @F or <D. */
4301 1.662 rillig static Var *
4302 1.916 rillig FindLocalLegacyVar(Substring varname, GNode *scope,
4303 1.662 rillig const char **out_extraModifiers)
4304 1.662 rillig {
4305 1.916 rillig Var *v;
4306 1.916 rillig
4307 1.802 rillig /* Only resolve these variables if scope is a "real" target. */
4308 1.802 rillig if (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL)
4309 1.703 rillig return NULL;
4310 1.703 rillig
4311 1.916 rillig if (Substring_Length(varname) != 2)
4312 1.703 rillig return NULL;
4313 1.916 rillig if (varname.start[1] != 'F' && varname.start[1] != 'D')
4314 1.703 rillig return NULL;
4315 1.916 rillig if (strchr("@%?*!<>", varname.start[0]) == NULL)
4316 1.703 rillig return NULL;
4317 1.703 rillig
4318 1.1091 rillig v = VarFindSubstring(Substring_Init(varname.start, varname.start + 1),
4319 1.1091 rillig scope, false);
4320 1.916 rillig if (v == NULL)
4321 1.916 rillig return NULL;
4322 1.897 rillig
4323 1.916 rillig *out_extraModifiers = varname.start[1] == 'D' ? "H:" : "T:";
4324 1.916 rillig return v;
4325 1.662 rillig }
4326 1.662 rillig
4327 1.1044 rillig static FStr
4328 1.916 rillig EvalUndefined(bool dynamic, const char *start, const char *p,
4329 1.1044 rillig Substring varname, VarEvalMode emode)
4330 1.667 rillig {
4331 1.1044 rillig if (dynamic)
4332 1.1044 rillig return FStr_InitOwn(bmake_strsedup(start, p));
4333 1.703 rillig
4334 1.1119 rillig if (emode == VARE_EVAL_DEFINED && opts.strict) {
4335 1.703 rillig Parse_Error(PARSE_FATAL,
4336 1.916 rillig "Variable \"%.*s\" is undefined",
4337 1.916 rillig (int)Substring_Length(varname), varname.start);
4338 1.1044 rillig return FStr_InitRefer(var_Error);
4339 1.703 rillig }
4340 1.703 rillig
4341 1.1044 rillig return FStr_InitRefer(
4342 1.1119 rillig emode == VARE_EVAL_DEFINED ? var_Error : varUndefined);
4343 1.663 rillig }
4344 1.663 rillig
4345 1.778 rillig /*
4346 1.778 rillig * Parse a long variable name enclosed in braces or parentheses such as $(VAR)
4347 1.623 rillig * or ${VAR}, up to the closing brace or parenthesis, or in the case of
4348 1.623 rillig * ${VAR:Modifiers}, up to the ':' that starts the modifiers.
4349 1.778 rillig * Return whether to continue parsing.
4350 1.778 rillig */
4351 1.895 rillig static bool
4352 1.623 rillig ParseVarnameLong(
4353 1.922 rillig const char **pp,
4354 1.624 rillig char startc,
4355 1.802 rillig GNode *scope,
4356 1.906 rillig VarEvalMode emode,
4357 1.624 rillig
4358 1.896 rillig const char **out_false_pp,
4359 1.896 rillig FStr *out_false_val,
4360 1.896 rillig
4361 1.896 rillig char *out_true_endc,
4362 1.896 rillig Var **out_true_v,
4363 1.896 rillig bool *out_true_haveModifier,
4364 1.896 rillig const char **out_true_extraModifiers,
4365 1.896 rillig bool *out_true_dynamic,
4366 1.896 rillig ExprDefined *out_true_exprDefined
4367 1.703 rillig )
4368 1.703 rillig {
4369 1.916 rillig LazyBuf varname;
4370 1.972 sjg Substring name;
4371 1.703 rillig Var *v;
4372 1.895 rillig bool haveModifier;
4373 1.895 rillig bool dynamic = false;
4374 1.703 rillig
4375 1.922 rillig const char *p = *pp;
4376 1.1095 rillig const char *start = p;
4377 1.703 rillig char endc = startc == '(' ? ')' : '}';
4378 1.703 rillig
4379 1.703 rillig p += 2; /* skip "${" or "$(" or "y(" */
4380 1.916 rillig ParseVarname(&p, startc, endc, scope, emode, &varname);
4381 1.972 sjg name = LazyBuf_Get(&varname);
4382 1.703 rillig
4383 1.1093 rillig if (*p == ':')
4384 1.895 rillig haveModifier = true;
4385 1.1093 rillig else if (*p == endc)
4386 1.895 rillig haveModifier = false;
4387 1.1093 rillig else {
4388 1.916 rillig Parse_Error(PARSE_FATAL, "Unclosed variable \"%.*s\"",
4389 1.916 rillig (int)Substring_Length(name), name.start);
4390 1.916 rillig LazyBuf_Done(&varname);
4391 1.896 rillig *out_false_pp = p;
4392 1.896 rillig *out_false_val = FStr_InitRefer(var_Error);
4393 1.895 rillig return false;
4394 1.703 rillig }
4395 1.623 rillig
4396 1.972 sjg v = VarFindSubstring(name, scope, true);
4397 1.623 rillig
4398 1.988 rillig /*
4399 1.988 rillig * At this point, p points just after the variable name, either at
4400 1.988 rillig * ':' or at endc.
4401 1.988 rillig */
4402 1.623 rillig
4403 1.974 rillig if (v == NULL && Substring_Equals(name, ".SUFFIXES")) {
4404 1.974 rillig char *suffixes = Suff_NamesStr();
4405 1.975 rillig v = VarNew(FStr_InitRefer(".SUFFIXES"), suffixes,
4406 1.979 rillig true, false, true);
4407 1.974 rillig free(suffixes);
4408 1.974 rillig } else if (v == NULL)
4409 1.974 rillig v = FindLocalLegacyVar(name, scope, out_true_extraModifiers);
4410 1.623 rillig
4411 1.703 rillig if (v == NULL) {
4412 1.703 rillig /*
4413 1.703 rillig * Defer expansion of dynamic variables if they appear in
4414 1.802 rillig * non-local scope since they are not defined there.
4415 1.703 rillig */
4416 1.972 sjg dynamic = VarnameIsDynamic(name) &&
4417 1.802 rillig (scope == SCOPE_CMDLINE || scope == SCOPE_GLOBAL);
4418 1.703 rillig
4419 1.703 rillig if (!haveModifier) {
4420 1.703 rillig p++; /* skip endc */
4421 1.896 rillig *out_false_pp = p;
4422 1.1044 rillig *out_false_val = EvalUndefined(dynamic, start, p,
4423 1.1044 rillig name, emode);
4424 1.986 rillig LazyBuf_Done(&varname);
4425 1.895 rillig return false;
4426 1.703 rillig }
4427 1.623 rillig
4428 1.703 rillig /*
4429 1.1075 rillig * The expression is based on an undefined variable.
4430 1.703 rillig * Nevertheless it needs a Var, for modifiers that access the
4431 1.703 rillig * variable name, such as :L or :?.
4432 1.703 rillig *
4433 1.703 rillig * Most modifiers leave this expression in the "undefined"
4434 1.1079 rillig * state (DEF_UNDEF), only a few modifiers like :D, :U, :L,
4435 1.703 rillig * :P turn this undefined expression into a defined
4436 1.1079 rillig * expression (DEF_DEFINED).
4437 1.703 rillig *
4438 1.830 rillig * In the end, after applying all modifiers, if the expression
4439 1.703 rillig * is still undefined, Var_Parse will return an empty string
4440 1.703 rillig * instead of the actually computed value.
4441 1.703 rillig */
4442 1.978 rillig v = VarNew(LazyBuf_DoneGet(&varname), "",
4443 1.980 rillig true, false, false);
4444 1.896 rillig *out_true_exprDefined = DEF_UNDEF;
4445 1.703 rillig } else
4446 1.916 rillig LazyBuf_Done(&varname);
4447 1.623 rillig
4448 1.922 rillig *pp = p;
4449 1.896 rillig *out_true_endc = endc;
4450 1.896 rillig *out_true_v = v;
4451 1.896 rillig *out_true_haveModifier = haveModifier;
4452 1.896 rillig *out_true_dynamic = dynamic;
4453 1.895 rillig return true;
4454 1.623 rillig }
4455 1.623 rillig
4456 1.897 rillig #if __STDC_VERSION__ >= 199901L
4457 1.1079 rillig #define Expr_Init(name, value, emode, scope, defined) \
4458 1.1079 rillig (Expr) { name, value, emode, scope, defined }
4459 1.897 rillig #else
4460 1.897 rillig MAKE_INLINE Expr
4461 1.1079 rillig Expr_Init(const char *name, FStr value,
4462 1.1079 rillig VarEvalMode emode, GNode *scope, ExprDefined defined)
4463 1.897 rillig {
4464 1.897 rillig Expr expr;
4465 1.897 rillig
4466 1.898 rillig expr.name = name;
4467 1.897 rillig expr.value = value;
4468 1.917 rillig expr.emode = emode;
4469 1.897 rillig expr.scope = scope;
4470 1.897 rillig expr.defined = defined;
4471 1.897 rillig return expr;
4472 1.897 rillig }
4473 1.897 rillig #endif
4474 1.897 rillig
4475 1.666 rillig /*
4476 1.913 rillig * Expressions of the form ${:U...} with a trivial value are often generated
4477 1.1079 rillig * by .for loops and are boring, so evaluate them without debug logging.
4478 1.913 rillig */
4479 1.913 rillig static bool
4480 1.1106 rillig Var_Parse_U(const char **pp, VarEvalMode emode, FStr *out_value)
4481 1.913 rillig {
4482 1.913 rillig const char *p;
4483 1.913 rillig
4484 1.913 rillig p = *pp;
4485 1.913 rillig if (!(p[0] == '$' && p[1] == '{' && p[2] == ':' && p[3] == 'U'))
4486 1.913 rillig return false;
4487 1.913 rillig
4488 1.913 rillig p += 4;
4489 1.915 rillig while (*p != '$' && *p != '{' && *p != ':' && *p != '\\' &&
4490 1.915 rillig *p != '}' && *p != '\0')
4491 1.913 rillig p++;
4492 1.913 rillig if (*p != '}')
4493 1.913 rillig return false;
4494 1.913 rillig
4495 1.1119 rillig *out_value = emode == VARE_PARSE
4496 1.1093 rillig ? FStr_InitRefer("")
4497 1.1093 rillig : FStr_InitOwn(bmake_strsedup(*pp + 4, p));
4498 1.913 rillig *pp = p + 1;
4499 1.913 rillig return true;
4500 1.913 rillig }
4501 1.913 rillig
4502 1.913 rillig /*
4503 1.1079 rillig * Given the start of an expression (such as $v, $(VAR), ${VAR:Mpattern}),
4504 1.1079 rillig * extract the variable name and the modifiers, if any. While parsing, apply
4505 1.1079 rillig * the modifiers to the value of the expression.
4506 1.579 rillig *
4507 1.108 sjg * Input:
4508 1.666 rillig * *pp The string to parse.
4509 1.1021 rillig * When called from CondParser_FuncCallEmpty, it can
4510 1.1021 rillig * also point to the "y" of "empty(VARNAME:Modifiers)".
4511 1.1079 rillig * scope The scope for finding variables.
4512 1.1079 rillig * emode Controls the exact details of parsing and evaluation.
4513 1.666 rillig *
4514 1.666 rillig * Output:
4515 1.666 rillig * *pp The position where to continue parsing.
4516 1.666 rillig * TODO: After a parse error, the value of *pp is
4517 1.666 rillig * unspecified. It may not have been updated at all,
4518 1.666 rillig * point to some random character in the string, to the
4519 1.666 rillig * location of the parse error, or at the end of the
4520 1.666 rillig * string.
4521 1.1075 rillig * return The value of the expression, never NULL.
4522 1.1042 rillig * return var_Error if there was a parse error.
4523 1.1042 rillig * return var_Error if the base variable of the expression was
4524 1.1119 rillig * undefined, emode is VARE_EVAL_DEFINED, and none of
4525 1.666 rillig * the modifiers turned the undefined expression into a
4526 1.666 rillig * defined expression.
4527 1.666 rillig * XXX: It is not guaranteed that an error message has
4528 1.666 rillig * been printed.
4529 1.1042 rillig * return varUndefined if the base variable of the expression
4530 1.1119 rillig * was undefined, emode was not VARE_EVAL_DEFINED,
4531 1.666 rillig * and none of the modifiers turned the undefined
4532 1.666 rillig * expression into a defined expression.
4533 1.666 rillig * XXX: It is not guaranteed that an error message has
4534 1.666 rillig * been printed.
4535 1.108 sjg */
4536 1.1042 rillig FStr
4537 1.1042 rillig Var_Parse(const char **pp, GNode *scope, VarEvalMode emode)
4538 1.108 sjg {
4539 1.1106 rillig const char *start, *p;
4540 1.1021 rillig bool haveModifier; /* true for ${VAR:...}, false for ${VAR} */
4541 1.1021 rillig char startc; /* the actual '{' or '(' or '\0' */
4542 1.1021 rillig char endc; /* the expected '}' or ')' or '\0' */
4543 1.703 rillig /*
4544 1.1021 rillig * true if the expression is based on one of the 7 predefined
4545 1.1021 rillig * variables that are local to a target, and the expression is
4546 1.1021 rillig * expanded in a non-local scope. The result is the text of the
4547 1.1021 rillig * expression, unaltered. This is needed to support dynamic sources.
4548 1.703 rillig */
4549 1.895 rillig bool dynamic;
4550 1.703 rillig const char *extramodifiers;
4551 1.703 rillig Var *v;
4552 1.1079 rillig Expr expr = Expr_Init(NULL, FStr_InitRefer(NULL), emode,
4553 1.898 rillig scope, DEF_REGULAR);
4554 1.1042 rillig FStr val;
4555 1.703 rillig
4556 1.1106 rillig if (Var_Parse_U(pp, emode, &val))
4557 1.1042 rillig return val;
4558 1.913 rillig
4559 1.1106 rillig p = *pp;
4560 1.1106 rillig start = p;
4561 1.906 rillig DEBUG2(VAR, "Var_Parse: %s (%s)\n", start, VarEvalMode_Name[emode]);
4562 1.703 rillig
4563 1.1042 rillig val = FStr_InitRefer(NULL);
4564 1.703 rillig extramodifiers = NULL; /* extra modifiers to apply first */
4565 1.895 rillig dynamic = false;
4566 1.473 rillig
4567 1.1021 rillig endc = '\0'; /* Appease GCC. */
4568 1.108 sjg
4569 1.703 rillig startc = p[1];
4570 1.703 rillig if (startc != '(' && startc != '{') {
4571 1.1042 rillig if (!ParseVarnameShort(startc, pp, scope, emode, &val.str, &v))
4572 1.1042 rillig return val;
4573 1.895 rillig haveModifier = false;
4574 1.703 rillig p++;
4575 1.703 rillig } else {
4576 1.922 rillig if (!ParseVarnameLong(&p, startc, scope, emode,
4577 1.1044 rillig pp, &val,
4578 1.922 rillig &endc, &v, &haveModifier, &extramodifiers,
4579 1.825 rillig &dynamic, &expr.defined))
4580 1.1042 rillig return val;
4581 1.703 rillig }
4582 1.401 rillig
4583 1.898 rillig expr.name = v->name.str;
4584 1.1028 rillig if (v->inUse && VarEvalMode_ShouldEval(emode)) {
4585 1.1008 rillig if (scope->fname != NULL) {
4586 1.1008 rillig fprintf(stderr, "In a command near ");
4587 1.1022 rillig PrintLocation(stderr, false, scope);
4588 1.1008 rillig }
4589 1.711 rillig Fatal("Variable %s is recursive.", v->name.str);
4590 1.1008 rillig }
4591 1.187 christos
4592 1.703 rillig /*
4593 1.1078 rillig * FIXME: This assignment creates an alias to the current value of the
4594 1.703 rillig * variable. This means that as long as the value of the expression
4595 1.1078 rillig * stays the same, the value of the variable must not change, and the
4596 1.1078 rillig * variable must not be deleted. Using the ':@' modifier, it is
4597 1.1084 rillig * possible (since var.c 1.212 from 2017-02-01) to delete the variable
4598 1.1078 rillig * while its value is still being used:
4599 1.1078 rillig *
4600 1.1078 rillig * VAR= value
4601 1.1107 rillig * _:= ${VAR:${:U:@VAR@@}:S,^,prefix,}
4602 1.1078 rillig *
4603 1.1078 rillig * The same effect might be achievable using the '::=' or the ':_'
4604 1.1078 rillig * modifiers.
4605 1.1021 rillig *
4606 1.703 rillig * At the bottom of this function, the resulting value is compared to
4607 1.703 rillig * the then-current value of the variable. This might also invoke
4608 1.703 rillig * undefined behavior.
4609 1.703 rillig */
4610 1.823 rillig expr.value = FStr_InitRefer(v->val.data);
4611 1.108 sjg
4612 1.1102 rillig if (expr.name[0] != '\0')
4613 1.1128 rillig EvalStack_Push(VSK_VARNAME, expr.name, &expr.value);
4614 1.1102 rillig else
4615 1.1128 rillig EvalStack_Push(VSK_EXPR, start, NULL);
4616 1.1102 rillig
4617 1.703 rillig /*
4618 1.703 rillig * Before applying any modifiers, expand any nested expressions from
4619 1.703 rillig * the variable value.
4620 1.703 rillig */
4621 1.1003 rillig if (VarEvalMode_ShouldEval(emode) &&
4622 1.1003 rillig strchr(Expr_Str(&expr), '$') != NULL) {
4623 1.743 rillig char *expanded;
4624 1.906 rillig VarEvalMode nested_emode = emode;
4625 1.764 rillig if (opts.strict)
4626 1.906 rillig nested_emode = VarEvalMode_UndefOk(nested_emode);
4627 1.902 rillig v->inUse = true;
4628 1.1043 rillig expanded = Var_Subst(Expr_Str(&expr), scope, nested_emode);
4629 1.902 rillig v->inUse = false;
4630 1.703 rillig /* TODO: handle errors */
4631 1.823 rillig Expr_SetValueOwn(&expr, expanded);
4632 1.191 dholland }
4633 1.191 dholland
4634 1.855 rillig if (extramodifiers != NULL) {
4635 1.855 rillig const char *em = extramodifiers;
4636 1.855 rillig ApplyModifiers(&expr, &em, '\0', '\0');
4637 1.855 rillig }
4638 1.191 dholland
4639 1.855 rillig if (haveModifier) {
4640 1.988 rillig p++; /* Skip initial colon. */
4641 1.855 rillig ApplyModifiers(&expr, &p, startc, endc);
4642 1.191 dholland }
4643 1.438 rillig
4644 1.703 rillig if (*p != '\0') /* Skip past endc if possible. */
4645 1.703 rillig p++;
4646 1.519 rillig
4647 1.703 rillig *pp = p;
4648 1.15 christos
4649 1.980 rillig if (expr.defined == DEF_UNDEF) {
4650 1.980 rillig if (dynamic)
4651 1.980 rillig Expr_SetValueOwn(&expr, bmake_strsedup(start, p));
4652 1.980 rillig else {
4653 1.980 rillig /*
4654 1.980 rillig * The expression is still undefined, therefore
4655 1.980 rillig * discard the actual value and return an error marker
4656 1.980 rillig * instead.
4657 1.980 rillig */
4658 1.980 rillig Expr_SetValueRefer(&expr,
4659 1.1119 rillig emode == VARE_EVAL_DEFINED
4660 1.980 rillig ? var_Error : varUndefined);
4661 1.980 rillig }
4662 1.980 rillig }
4663 1.980 rillig
4664 1.978 rillig if (v->shortLived) {
4665 1.980 rillig if (expr.value.str == v->val.data) {
4666 1.980 rillig /* move ownership */
4667 1.980 rillig expr.value.freeIt = v->val.data;
4668 1.980 rillig v->val.data = NULL;
4669 1.703 rillig }
4670 1.980 rillig VarFreeShortLived(v);
4671 1.34 christos }
4672 1.980 rillig
4673 1.1102 rillig EvalStack_Pop();
4674 1.1042 rillig return expr.value;
4675 1.1 cgd }
4676 1.1 cgd
4677 1.678 rillig static void
4678 1.906 rillig VarSubstDollarDollar(const char **pp, Buffer *res, VarEvalMode emode)
4679 1.768 rillig {
4680 1.830 rillig /* A dollar sign may be escaped with another dollar sign. */
4681 1.906 rillig if (save_dollars && VarEvalMode_ShouldKeepDollar(emode))
4682 1.768 rillig Buf_AddByte(res, '$');
4683 1.768 rillig Buf_AddByte(res, '$');
4684 1.768 rillig *pp += 2;
4685 1.768 rillig }
4686 1.768 rillig
4687 1.768 rillig static void
4688 1.802 rillig VarSubstExpr(const char **pp, Buffer *buf, GNode *scope,
4689 1.906 rillig VarEvalMode emode, bool *inout_errorReported)
4690 1.678 rillig {
4691 1.703 rillig const char *p = *pp;
4692 1.703 rillig const char *nested_p = p;
4693 1.1042 rillig FStr val = Var_Parse(&nested_p, scope, emode);
4694 1.703 rillig /* TODO: handle errors */
4695 1.678 rillig
4696 1.743 rillig if (val.str == var_Error || val.str == varUndefined) {
4697 1.906 rillig if (!VarEvalMode_ShouldKeepUndef(emode)) {
4698 1.703 rillig p = nested_p;
4699 1.1004 rillig } else if (val.str == var_Error) {
4700 1.703 rillig
4701 1.703 rillig /*
4702 1.1094 rillig * FIXME: The condition 'val.str == var_Error' doesn't
4703 1.1094 rillig * mean there was an undefined variable. It could
4704 1.1094 rillig * equally well be a parse error; see
4705 1.1094 rillig * unit-tests/varmod-order.mk.
4706 1.703 rillig */
4707 1.703 rillig
4708 1.703 rillig /*
4709 1.703 rillig * If variable is undefined, complain and skip the
4710 1.703 rillig * variable. The complaint will stop us from doing
4711 1.703 rillig * anything when the file is parsed.
4712 1.703 rillig */
4713 1.703 rillig if (!*inout_errorReported) {
4714 1.703 rillig Parse_Error(PARSE_FATAL,
4715 1.703 rillig "Undefined variable \"%.*s\"",
4716 1.1094 rillig (int)(nested_p - p), p);
4717 1.1094 rillig *inout_errorReported = true;
4718 1.703 rillig }
4719 1.703 rillig p = nested_p;
4720 1.703 rillig } else {
4721 1.988 rillig /*
4722 1.988 rillig * Copy the initial '$' of the undefined expression,
4723 1.703 rillig * thereby deferring expansion of the expression, but
4724 1.988 rillig * expand nested expressions if already possible. See
4725 1.988 rillig * unit-tests/varparse-undef-partial.mk.
4726 1.988 rillig */
4727 1.703 rillig Buf_AddByte(buf, *p);
4728 1.703 rillig p++;
4729 1.703 rillig }
4730 1.678 rillig } else {
4731 1.703 rillig p = nested_p;
4732 1.743 rillig Buf_AddStr(buf, val.str);
4733 1.678 rillig }
4734 1.678 rillig
4735 1.743 rillig FStr_Done(&val);
4736 1.678 rillig
4737 1.703 rillig *pp = p;
4738 1.678 rillig }
4739 1.678 rillig
4740 1.768 rillig /*
4741 1.1075 rillig * Skip as many characters as possible -- either to the end of the string,
4742 1.1075 rillig * or to the next dollar sign, which may start an expression.
4743 1.768 rillig */
4744 1.768 rillig static void
4745 1.768 rillig VarSubstPlain(const char **pp, Buffer *res)
4746 1.768 rillig {
4747 1.768 rillig const char *p = *pp;
4748 1.768 rillig const char *start = p;
4749 1.768 rillig
4750 1.768 rillig for (p++; *p != '$' && *p != '\0'; p++)
4751 1.768 rillig continue;
4752 1.1055 rillig Buf_AddRange(res, start, p);
4753 1.768 rillig *pp = p;
4754 1.768 rillig }
4755 1.768 rillig
4756 1.778 rillig /*
4757 1.1075 rillig * Expand all expressions like $V, ${VAR}, $(VAR:Modifiers) in the
4758 1.660 rillig * given string.
4759 1.1 cgd *
4760 1.70 wiz * Input:
4761 1.1105 rillig * str The string in which the expressions are expanded.
4762 1.1105 rillig * scope The scope in which to start searching for variables.
4763 1.1105 rillig * The other scopes are searched as well.
4764 1.917 rillig * emode The mode for parsing or evaluating subexpressions.
4765 1.1 cgd */
4766 1.1043 rillig char *
4767 1.1043 rillig Var_Subst(const char *str, GNode *scope, VarEvalMode emode)
4768 1.1 cgd {
4769 1.703 rillig const char *p = str;
4770 1.703 rillig Buffer res;
4771 1.1 cgd
4772 1.988 rillig /*
4773 1.988 rillig * Set true if an error has already been reported, to prevent a
4774 1.988 rillig * plethora of messages when recursing
4775 1.988 rillig */
4776 1.895 rillig static bool errorReported;
4777 1.703 rillig
4778 1.703 rillig Buf_Init(&res);
4779 1.895 rillig errorReported = false;
4780 1.703 rillig
4781 1.703 rillig while (*p != '\0') {
4782 1.768 rillig if (p[0] == '$' && p[1] == '$')
4783 1.906 rillig VarSubstDollarDollar(&p, &res, emode);
4784 1.768 rillig else if (p[0] == '$')
4785 1.906 rillig VarSubstExpr(&p, &res, scope, emode, &errorReported);
4786 1.768 rillig else
4787 1.768 rillig VarSubstPlain(&p, &res);
4788 1.1 cgd }
4789 1.15 christos
4790 1.1108 rillig return Buf_DoneData(&res);
4791 1.1 cgd }
4792 1.1 cgd
4793 1.1120 rillig char *
4794 1.1120 rillig Var_SubstInTarget(const char *str, GNode *scope)
4795 1.1120 rillig {
4796 1.1120 rillig char *res;
4797 1.1128 rillig EvalStack_Push(VSK_TARGET, scope->name, NULL);
4798 1.1120 rillig res = Var_Subst(str, scope, VARE_EVAL);
4799 1.1120 rillig EvalStack_Pop();
4800 1.1120 rillig return res;
4801 1.1120 rillig }
4802 1.1120 rillig
4803 1.1001 rillig void
4804 1.1001 rillig Var_Expand(FStr *str, GNode *scope, VarEvalMode emode)
4805 1.1001 rillig {
4806 1.1001 rillig char *expanded;
4807 1.1001 rillig
4808 1.1001 rillig if (strchr(str->str, '$') == NULL)
4809 1.1001 rillig return;
4810 1.1043 rillig expanded = Var_Subst(str->str, scope, emode);
4811 1.1001 rillig /* TODO: handle errors */
4812 1.1001 rillig FStr_Done(str);
4813 1.1001 rillig *str = FStr_InitOwn(expanded);
4814 1.1001 rillig }
4815 1.1001 rillig
4816 1.572 rillig /* Initialize the variables module. */
4817 1.1 cgd void
4818 1.70 wiz Var_Init(void)
4819 1.1 cgd {
4820 1.801 rillig SCOPE_INTERNAL = GNode_New("Internal");
4821 1.801 rillig SCOPE_GLOBAL = GNode_New("Global");
4822 1.801 rillig SCOPE_CMDLINE = GNode_New("Command");
4823 1.6 jtc }
4824 1.6 jtc
4825 1.572 rillig /* Clean up the variables module. */
4826 1.6 jtc void
4827 1.70 wiz Var_End(void)
4828 1.6 jtc {
4829 1.703 rillig Var_Stats();
4830 1.286 sjg }
4831 1.286 sjg
4832 1.286 sjg void
4833 1.286 sjg Var_Stats(void)
4834 1.286 sjg {
4835 1.802 rillig HashTable_DebugStats(&SCOPE_GLOBAL->vars, "Global variables");
4836 1.1 cgd }
4837 1.15 christos
4838 1.964 rillig static int
4839 1.964 rillig StrAsc(const void *sa, const void *sb)
4840 1.964 rillig {
4841 1.964 rillig return strcmp(
4842 1.964 rillig *((const char *const *)sa), *((const char *const *)sb));
4843 1.964 rillig }
4844 1.964 rillig
4845 1.964 rillig
4846 1.802 rillig /* Print all variables in a scope, sorted by name. */
4847 1.5 cgd void
4848 1.802 rillig Var_Dump(GNode *scope)
4849 1.1 cgd {
4850 1.703 rillig Vector /* of const char * */ vec;
4851 1.703 rillig HashIter hi;
4852 1.703 rillig size_t i;
4853 1.703 rillig const char **varnames;
4854 1.703 rillig
4855 1.703 rillig Vector_Init(&vec, sizeof(const char *));
4856 1.703 rillig
4857 1.802 rillig HashIter_Init(&hi, &scope->vars);
4858 1.1114 rillig while (HashIter_Next(&hi))
4859 1.703 rillig *(const char **)Vector_Push(&vec) = hi.entry->key;
4860 1.703 rillig varnames = vec.items;
4861 1.703 rillig
4862 1.964 rillig qsort(varnames, vec.len, sizeof varnames[0], StrAsc);
4863 1.703 rillig
4864 1.703 rillig for (i = 0; i < vec.len; i++) {
4865 1.703 rillig const char *varname = varnames[i];
4866 1.1035 rillig const Var *var = HashTable_FindValue(&scope->vars, varname);
4867 1.1018 rillig debug_printf("%-16s = %s%s\n", varname,
4868 1.1018 rillig var->val.data, ValueDescription(var->val.data));
4869 1.703 rillig }
4870 1.573 rillig
4871 1.703 rillig Vector_Done(&vec);
4872 1.1 cgd }
4873