cond.c revision 1.119 1 1.119 rillig /* $NetBSD: cond.c,v 1.119 2020/09/10 23:27:27 rillig Exp $ */
2 1.6 christos
3 1.1 cgd /*
4 1.1 cgd * Copyright (c) 1988, 1989, 1990 The Regents of the University of California.
5 1.17 agc * All rights reserved.
6 1.17 agc *
7 1.17 agc * This code is derived from software contributed to Berkeley by
8 1.17 agc * Adam de Boor.
9 1.17 agc *
10 1.17 agc * Redistribution and use in source and binary forms, with or without
11 1.17 agc * modification, are permitted provided that the following conditions
12 1.17 agc * are met:
13 1.17 agc * 1. Redistributions of source code must retain the above copyright
14 1.17 agc * notice, this list of conditions and the following disclaimer.
15 1.17 agc * 2. Redistributions in binary form must reproduce the above copyright
16 1.17 agc * notice, this list of conditions and the following disclaimer in the
17 1.17 agc * documentation and/or other materials provided with the distribution.
18 1.17 agc * 3. Neither the name of the University nor the names of its contributors
19 1.17 agc * may be used to endorse or promote products derived from this software
20 1.17 agc * without specific prior written permission.
21 1.17 agc *
22 1.17 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.17 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.17 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.17 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.17 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.17 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.17 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.17 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.17 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.17 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.17 agc * SUCH DAMAGE.
33 1.17 agc */
34 1.17 agc
35 1.17 agc /*
36 1.1 cgd * Copyright (c) 1988, 1989 by Adam de Boor
37 1.1 cgd * Copyright (c) 1989 by Berkeley Softworks
38 1.1 cgd * All rights reserved.
39 1.1 cgd *
40 1.1 cgd * This code is derived from software contributed to Berkeley by
41 1.1 cgd * Adam de Boor.
42 1.1 cgd *
43 1.1 cgd * Redistribution and use in source and binary forms, with or without
44 1.1 cgd * modification, are permitted provided that the following conditions
45 1.1 cgd * are met:
46 1.1 cgd * 1. Redistributions of source code must retain the above copyright
47 1.1 cgd * notice, this list of conditions and the following disclaimer.
48 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
49 1.1 cgd * notice, this list of conditions and the following disclaimer in the
50 1.1 cgd * documentation and/or other materials provided with the distribution.
51 1.1 cgd * 3. All advertising materials mentioning features or use of this software
52 1.1 cgd * must display the following acknowledgement:
53 1.1 cgd * This product includes software developed by the University of
54 1.1 cgd * California, Berkeley and its contributors.
55 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
56 1.1 cgd * may be used to endorse or promote products derived from this software
57 1.1 cgd * without specific prior written permission.
58 1.1 cgd *
59 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
60 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
61 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
62 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
63 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
64 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
65 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
66 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
67 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
68 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
69 1.1 cgd * SUCH DAMAGE.
70 1.1 cgd */
71 1.1 cgd
72 1.24 ross #ifndef MAKE_NATIVE
73 1.119 rillig static char rcsid[] = "$NetBSD: cond.c,v 1.119 2020/09/10 23:27:27 rillig Exp $";
74 1.9 lukem #else
75 1.8 christos #include <sys/cdefs.h>
76 1.1 cgd #ifndef lint
77 1.6 christos #if 0
78 1.7 christos static char sccsid[] = "@(#)cond.c 8.2 (Berkeley) 1/2/94";
79 1.6 christos #else
80 1.119 rillig __RCSID("$NetBSD: cond.c,v 1.119 2020/09/10 23:27:27 rillig Exp $");
81 1.6 christos #endif
82 1.1 cgd #endif /* not lint */
83 1.9 lukem #endif
84 1.1 cgd
85 1.117 rillig /* Handling of conditionals in a makefile.
86 1.1 cgd *
87 1.1 cgd * Interface:
88 1.1 cgd * Cond_Eval Evaluate the conditional in the passed line.
89 1.1 cgd *
90 1.117 rillig * Cond_EvalExpression
91 1.117 rillig * Evaluate the conditional in the passed line, which
92 1.117 rillig * is either the argument of one of the .if directives
93 1.117 rillig * or the condition in a :?true:false variable modifier.
94 1.117 rillig *
95 1.117 rillig * Cond_save_depth
96 1.117 rillig * Cond_restore_depth
97 1.117 rillig * Save and restore the nesting of the conditions, at
98 1.117 rillig * the start and end of including another makefile, to
99 1.117 rillig * ensure that in each makefile the conditional
100 1.117 rillig * directives are well-balanced.
101 1.1 cgd */
102 1.1 cgd
103 1.99 rillig #include <errno.h>
104 1.99 rillig
105 1.99 rillig #include "make.h"
106 1.99 rillig #include "dir.h"
107 1.1 cgd
108 1.1 cgd /*
109 1.1 cgd * The parsing of conditional expressions is based on this grammar:
110 1.1 cgd * E -> F || E
111 1.1 cgd * E -> F
112 1.1 cgd * F -> T && F
113 1.1 cgd * F -> T
114 1.1 cgd * T -> defined(variable)
115 1.1 cgd * T -> make(target)
116 1.1 cgd * T -> exists(file)
117 1.1 cgd * T -> empty(varspec)
118 1.1 cgd * T -> target(name)
119 1.12 christos * T -> commands(name)
120 1.1 cgd * T -> symbol
121 1.1 cgd * T -> $(varspec) op value
122 1.1 cgd * T -> $(varspec) == "string"
123 1.1 cgd * T -> $(varspec) != "string"
124 1.23 sjg * T -> "string"
125 1.1 cgd * T -> ( E )
126 1.1 cgd * T -> ! T
127 1.1 cgd * op -> == | != | > | < | >= | <=
128 1.1 cgd *
129 1.96 rillig * 'symbol' is some other symbol to which the default function is applied.
130 1.1 cgd *
131 1.117 rillig * Tokens are scanned from the lexer. The scanner (CondToken)
132 1.60 dsl * will return TOK_AND for '&' and '&&', TOK_OR for '|' and '||',
133 1.60 dsl * TOK_NOT for '!', TOK_LPAREN for '(', TOK_RPAREN for ')' and will evaluate
134 1.60 dsl * the other terminal symbols, using either the default function or the
135 1.60 dsl * function given in the terminal, and return the result as either TOK_TRUE
136 1.60 dsl * or TOK_FALSE.
137 1.1 cgd *
138 1.60 dsl * TOK_FALSE is 0 and TOK_TRUE 1 so we can directly assign C comparisons.
139 1.60 dsl *
140 1.60 dsl * All Non-Terminal functions (CondE, CondF and CondT) return TOK_ERROR on
141 1.60 dsl * error.
142 1.1 cgd */
143 1.1 cgd typedef enum {
144 1.60 dsl TOK_FALSE = 0, TOK_TRUE = 1, TOK_AND, TOK_OR, TOK_NOT,
145 1.60 dsl TOK_LPAREN, TOK_RPAREN, TOK_EOF, TOK_NONE, TOK_ERROR
146 1.1 cgd } Token;
147 1.1 cgd
148 1.114 rillig typedef struct {
149 1.114 rillig const struct If *if_info; /* Info for current statement */
150 1.114 rillig const char *condExpr; /* The expression to parse */
151 1.115 rillig Token curr; /* Single push-back token used in parsing */
152 1.114 rillig } CondLexer;
153 1.1 cgd
154 1.114 rillig static Token CondE(CondLexer *lex, Boolean);
155 1.114 rillig static CondEvalResult do_Cond_EvalExpression(CondLexer *lex, Boolean *);
156 1.1 cgd
157 1.93 rillig static unsigned int cond_depth = 0; /* current .if nesting level */
158 1.93 rillig static unsigned int cond_min_depth = 0; /* depth at makefile open */
159 1.1 cgd
160 1.68 sjg /*
161 1.68 sjg * Indicate when we should be strict about lhs of comparisons.
162 1.117 rillig * In strict mode, the lhs must be a variable expression or a string literal
163 1.117 rillig * in quotes. In non-strict mode it may also be an unquoted string literal.
164 1.117 rillig *
165 1.68 sjg * TRUE when Cond_EvalExpression is called from Cond_Eval (.if etc)
166 1.68 sjg * FALSE when Cond_EvalExpression is called from var.c:ApplyModifiers
167 1.78 rillig * since lhs is already expanded and we cannot tell if
168 1.68 sjg * it was a variable reference or not.
169 1.68 sjg */
170 1.68 sjg static Boolean lhsStrict;
171 1.68 sjg
172 1.26 christos static int
173 1.26 christos istoken(const char *str, const char *tok, size_t len)
174 1.26 christos {
175 1.93 rillig return strncmp(str, tok, len) == 0 && !isalpha((unsigned char)str[len]);
176 1.26 christos }
177 1.26 christos
178 1.115 rillig /* Push back the most recent token read. We only need one level of this. */
179 1.1 cgd static void
180 1.115 rillig CondLexer_PushBack(CondLexer *lex, Token t)
181 1.1 cgd {
182 1.115 rillig assert(lex->curr == TOK_NONE);
183 1.115 rillig assert(t != TOK_NONE);
184 1.115 rillig
185 1.115 rillig lex->curr = t;
186 1.1 cgd }
187 1.90 rillig
188 1.116 rillig static void
189 1.116 rillig CondLexer_SkipWhitespace(CondLexer *lex)
190 1.116 rillig {
191 1.116 rillig while (isspace((unsigned char)lex->condExpr[0]))
192 1.116 rillig lex->condExpr++;
193 1.116 rillig }
194 1.116 rillig
195 1.112 rillig /* Parse the argument of a built-in function.
196 1.112 rillig *
197 1.112 rillig * Arguments:
198 1.112 rillig * *linePtr initially points to the '(', upon successful return points
199 1.112 rillig * beyond the ')'.
200 1.112 rillig *
201 1.112 rillig * *out_arg receives the argument as string.
202 1.112 rillig *
203 1.112 rillig * func says whether the argument belongs to an actual function, or
204 1.112 rillig * whether the parsed argument is passed to the default function.
205 1.112 rillig *
206 1.112 rillig * Return the length of the argument. */
207 1.1 cgd static int
208 1.112 rillig ParseFuncArg(Boolean doEval, const char **linePtr, char **out_arg,
209 1.112 rillig const char *func) {
210 1.93 rillig const char *cp;
211 1.93 rillig Buffer buf;
212 1.93 rillig int paren_depth;
213 1.93 rillig char ch;
214 1.93 rillig size_t argLen;
215 1.1 cgd
216 1.1 cgd cp = *linePtr;
217 1.56 dsl if (func != NULL)
218 1.87 rillig /* Skip opening '(' - verified by caller */
219 1.56 dsl cp++;
220 1.1 cgd
221 1.1 cgd if (*cp == '\0') {
222 1.1 cgd /*
223 1.1 cgd * No arguments whatsoever. Because 'make' and 'defined' aren't really
224 1.1 cgd * "reserved words", we don't print a message. I think this is better
225 1.1 cgd * than hitting the user with a warning message every time s/he uses
226 1.1 cgd * the word 'make' or 'defined' at the beginning of a symbol...
227 1.1 cgd */
228 1.112 rillig *out_arg = NULL;
229 1.77 rillig return 0;
230 1.1 cgd }
231 1.1 cgd
232 1.1 cgd while (*cp == ' ' || *cp == '\t') {
233 1.1 cgd cp++;
234 1.1 cgd }
235 1.1 cgd
236 1.1 cgd /*
237 1.1 cgd * Create a buffer for the argument and start it out at 16 characters
238 1.1 cgd * long. Why 16? Why not?
239 1.1 cgd */
240 1.92 rillig Buf_Init(&buf, 16);
241 1.7 christos
242 1.56 dsl paren_depth = 0;
243 1.56 dsl for (;;) {
244 1.56 dsl ch = *cp;
245 1.56 dsl if (ch == 0 || ch == ' ' || ch == '\t')
246 1.56 dsl break;
247 1.56 dsl if ((ch == '&' || ch == '|') && paren_depth == 0)
248 1.56 dsl break;
249 1.1 cgd if (*cp == '$') {
250 1.1 cgd /*
251 1.1 cgd * Parse the variable spec and install it as part of the argument
252 1.1 cgd * if it's valid. We tell Var_Parse to complain on an undefined
253 1.117 rillig * variable, so we don't need to do it. Nor do we return an error,
254 1.1 cgd * though perhaps we should...
255 1.1 cgd */
256 1.93 rillig void *freeIt;
257 1.81 rillig VarEvalFlags eflags = VARE_UNDEFERR | (doEval ? VARE_WANTRES : 0);
258 1.110 rillig const char *cp2 = Var_ParsePP(&cp, VAR_CMD, eflags, &freeIt);
259 1.87 rillig Buf_AddStr(&buf, cp2);
260 1.73 christos free(freeIt);
261 1.56 dsl continue;
262 1.1 cgd }
263 1.56 dsl if (ch == '(')
264 1.56 dsl paren_depth++;
265 1.93 rillig else if (ch == ')' && --paren_depth < 0)
266 1.93 rillig break;
267 1.56 dsl Buf_AddByte(&buf, *cp);
268 1.56 dsl cp++;
269 1.1 cgd }
270 1.1 cgd
271 1.112 rillig *out_arg = Buf_GetAll(&buf, &argLen);
272 1.50 dsl Buf_Destroy(&buf, FALSE);
273 1.1 cgd
274 1.1 cgd while (*cp == ' ' || *cp == '\t') {
275 1.1 cgd cp++;
276 1.1 cgd }
277 1.56 dsl
278 1.56 dsl if (func != NULL && *cp++ != ')') {
279 1.25 christos Parse_Error(PARSE_WARNING, "Missing closing parenthesis for %s()",
280 1.93 rillig func);
281 1.77 rillig return 0;
282 1.50 dsl }
283 1.50 dsl
284 1.1 cgd *linePtr = cp;
285 1.77 rillig return argLen;
286 1.1 cgd }
287 1.90 rillig
288 1.90 rillig /* Test whether the given variable is defined. */
289 1.1 cgd static Boolean
290 1.64 joerg CondDoDefined(int argLen MAKE_ATTR_UNUSED, const char *arg)
291 1.1 cgd {
292 1.83 rillig char *freeIt;
293 1.83 rillig Boolean result = Var_Value(arg, VAR_CMD, &freeIt) != NULL;
294 1.84 rillig bmake_free(freeIt);
295 1.77 rillig return result;
296 1.1 cgd }
297 1.90 rillig
298 1.105 rillig /* Wrapper around Str_Match, to be used by Lst_Find. */
299 1.104 rillig static Boolean
300 1.90 rillig CondFindStrMatch(const void *string, const void *pattern)
301 1.1 cgd {
302 1.104 rillig return Str_Match(string, pattern);
303 1.1 cgd }
304 1.90 rillig
305 1.90 rillig /* See if the given target is being made. */
306 1.1 cgd static Boolean
307 1.64 joerg CondDoMake(int argLen MAKE_ATTR_UNUSED, const char *arg)
308 1.1 cgd {
309 1.105 rillig return Lst_Find(create, CondFindStrMatch, arg) != NULL;
310 1.1 cgd }
311 1.90 rillig
312 1.90 rillig /* See if the given file exists. */
313 1.1 cgd static Boolean
314 1.64 joerg CondDoExists(int argLen MAKE_ATTR_UNUSED, const char *arg)
315 1.1 cgd {
316 1.1 cgd Boolean result;
317 1.93 rillig char *path;
318 1.1 cgd
319 1.1 cgd path = Dir_FindFile(arg, dirSearchPath);
320 1.62 sjg if (DEBUG(COND)) {
321 1.62 sjg fprintf(debug_file, "exists(%s) result is \"%s\"\n",
322 1.93 rillig arg, path ? path : "");
323 1.78 rillig }
324 1.29 christos if (path != NULL) {
325 1.1 cgd result = TRUE;
326 1.1 cgd free(path);
327 1.1 cgd } else {
328 1.1 cgd result = FALSE;
329 1.1 cgd }
330 1.77 rillig return result;
331 1.1 cgd }
332 1.90 rillig
333 1.90 rillig /* See if the given node exists and is an actual target. */
334 1.1 cgd static Boolean
335 1.64 joerg CondDoTarget(int argLen MAKE_ATTR_UNUSED, const char *arg)
336 1.1 cgd {
337 1.93 rillig GNode *gn;
338 1.1 cgd
339 1.1 cgd gn = Targ_FindNode(arg, TARG_NOCREATE);
340 1.77 rillig return gn != NULL && !OP_NOP(gn->type);
341 1.1 cgd }
342 1.1 cgd
343 1.90 rillig /* See if the given node exists and is an actual target with commands
344 1.90 rillig * associated with it. */
345 1.12 christos static Boolean
346 1.64 joerg CondDoCommands(int argLen MAKE_ATTR_UNUSED, const char *arg)
347 1.12 christos {
348 1.93 rillig GNode *gn;
349 1.12 christos
350 1.12 christos gn = Targ_FindNode(arg, TARG_NOCREATE);
351 1.103 rillig return gn != NULL && !OP_NOP(gn->type) && !Lst_IsEmpty(gn->commands);
352 1.12 christos }
353 1.90 rillig
354 1.1 cgd /*-
355 1.90 rillig * Convert the given number into a double.
356 1.90 rillig * We try a base 10 or 16 integer conversion first, if that fails
357 1.90 rillig * then we try a floating point conversion instead.
358 1.1 cgd *
359 1.1 cgd * Results:
360 1.4 cgd * Sets 'value' to double value of string.
361 1.90 rillig * Returns TRUE if the conversion succeeded.
362 1.1 cgd */
363 1.46 dsl static Boolean
364 1.82 rillig CondCvtArg(const char *str, double *value)
365 1.1 cgd {
366 1.46 dsl char *eptr, ech;
367 1.46 dsl unsigned long l_val;
368 1.46 dsl double d_val;
369 1.46 dsl
370 1.71 sjg errno = 0;
371 1.70 sjg if (!*str) {
372 1.71 sjg *value = (double)0;
373 1.71 sjg return TRUE;
374 1.70 sjg }
375 1.46 dsl l_val = strtoul(str, &eptr, str[1] == 'x' ? 16 : 10);
376 1.46 dsl ech = *eptr;
377 1.46 dsl if (ech == 0 && errno != ERANGE) {
378 1.46 dsl d_val = str[0] == '-' ? -(double)-l_val : (double)l_val;
379 1.19 sjg } else {
380 1.46 dsl if (ech != 0 && ech != '.' && ech != 'e' && ech != 'E')
381 1.46 dsl return FALSE;
382 1.46 dsl d_val = strtod(str, &eptr);
383 1.46 dsl if (*eptr)
384 1.46 dsl return FALSE;
385 1.1 cgd }
386 1.46 dsl
387 1.46 dsl *value = d_val;
388 1.46 dsl return TRUE;
389 1.1 cgd }
390 1.46 dsl
391 1.1 cgd /*-
392 1.117 rillig * Parse a string from a variable reference or an optionally quoted
393 1.90 rillig * string. This is called for the lhs and rhs of string compares.
394 1.23 sjg *
395 1.23 sjg * Results:
396 1.90 rillig * Returns the string, absent any quotes, or NULL on error.
397 1.90 rillig * Sets quoted if the string was quoted.
398 1.90 rillig * Sets freeIt if needed.
399 1.23 sjg */
400 1.117 rillig /* coverity:[+alloc : arg-*3] */
401 1.82 rillig static const char *
402 1.114 rillig CondGetString(CondLexer *lex, Boolean doEval, Boolean *quoted, void **freeIt,
403 1.114 rillig Boolean strictLHS)
404 1.23 sjg {
405 1.23 sjg Buffer buf;
406 1.82 rillig const char *str;
407 1.93 rillig int len;
408 1.94 rillig Boolean qt;
409 1.91 rillig const char *start;
410 1.98 rillig VarEvalFlags eflags;
411 1.23 sjg
412 1.92 rillig Buf_Init(&buf, 0);
413 1.23 sjg str = NULL;
414 1.30 christos *freeIt = NULL;
415 1.114 rillig *quoted = qt = *lex->condExpr == '"' ? 1 : 0;
416 1.23 sjg if (qt)
417 1.114 rillig lex->condExpr++;
418 1.119 rillig for (start = lex->condExpr; *lex->condExpr && str == NULL;) {
419 1.114 rillig switch (*lex->condExpr) {
420 1.23 sjg case '\\':
421 1.114 rillig if (lex->condExpr[1] != '\0') {
422 1.114 rillig lex->condExpr++;
423 1.114 rillig Buf_AddByte(&buf, *lex->condExpr);
424 1.23 sjg }
425 1.119 rillig lex->condExpr++;
426 1.119 rillig continue;
427 1.23 sjg case '"':
428 1.23 sjg if (qt) {
429 1.114 rillig lex->condExpr++; /* we don't want the quotes */
430 1.23 sjg goto got_str;
431 1.23 sjg } else
432 1.114 rillig Buf_AddByte(&buf, *lex->condExpr); /* likely? */
433 1.119 rillig lex->condExpr++;
434 1.119 rillig continue;
435 1.23 sjg case ')':
436 1.23 sjg case '!':
437 1.23 sjg case '=':
438 1.23 sjg case '>':
439 1.23 sjg case '<':
440 1.23 sjg case ' ':
441 1.23 sjg case '\t':
442 1.23 sjg if (!qt)
443 1.23 sjg goto got_str;
444 1.23 sjg else
445 1.114 rillig Buf_AddByte(&buf, *lex->condExpr);
446 1.119 rillig lex->condExpr++;
447 1.119 rillig continue;
448 1.23 sjg case '$':
449 1.23 sjg /* if we are in quotes, then an undefined variable is ok */
450 1.98 rillig eflags = ((!qt && doEval) ? VARE_UNDEFERR : 0) |
451 1.98 rillig (doEval ? VARE_WANTRES : 0);
452 1.114 rillig str = Var_Parse(lex->condExpr, VAR_CMD, eflags, &len, freeIt);
453 1.23 sjg if (str == var_Error) {
454 1.30 christos if (*freeIt) {
455 1.30 christos free(*freeIt);
456 1.30 christos *freeIt = NULL;
457 1.30 christos }
458 1.23 sjg /*
459 1.23 sjg * Even if !doEval, we still report syntax errors, which
460 1.23 sjg * is what getting var_Error back with !doEval means.
461 1.23 sjg */
462 1.23 sjg str = NULL;
463 1.23 sjg goto cleanup;
464 1.23 sjg }
465 1.114 rillig lex->condExpr += len;
466 1.23 sjg /*
467 1.23 sjg * If the '$' was first char (no quotes), and we are
468 1.23 sjg * followed by space, the operator or end of expression,
469 1.23 sjg * we are done.
470 1.23 sjg */
471 1.114 rillig if ((lex->condExpr == start + len) &&
472 1.114 rillig (*lex->condExpr == '\0' ||
473 1.114 rillig isspace((unsigned char)*lex->condExpr) ||
474 1.114 rillig strchr("!=><)", *lex->condExpr))) {
475 1.23 sjg goto cleanup;
476 1.23 sjg }
477 1.113 rillig
478 1.113 rillig Buf_AddStr(&buf, str);
479 1.30 christos if (*freeIt) {
480 1.30 christos free(*freeIt);
481 1.30 christos *freeIt = NULL;
482 1.30 christos }
483 1.93 rillig str = NULL; /* not finished yet */
484 1.119 rillig continue;
485 1.23 sjg default:
486 1.68 sjg if (strictLHS && !qt && *start != '$' &&
487 1.93 rillig !isdigit((unsigned char)*start)) {
488 1.68 sjg /* lhs must be quoted, a variable reference or number */
489 1.68 sjg if (*freeIt) {
490 1.68 sjg free(*freeIt);
491 1.68 sjg *freeIt = NULL;
492 1.68 sjg }
493 1.68 sjg str = NULL;
494 1.68 sjg goto cleanup;
495 1.68 sjg }
496 1.114 rillig Buf_AddByte(&buf, *lex->condExpr);
497 1.119 rillig lex->condExpr++;
498 1.119 rillig continue;
499 1.23 sjg }
500 1.23 sjg }
501 1.93 rillig got_str:
502 1.92 rillig *freeIt = Buf_GetAll(&buf, NULL);
503 1.82 rillig str = *freeIt;
504 1.93 rillig cleanup:
505 1.50 dsl Buf_Destroy(&buf, FALSE);
506 1.23 sjg return str;
507 1.23 sjg }
508 1.89 rillig
509 1.117 rillig /* The different forms of .if directives. */
510 1.89 rillig static const struct If {
511 1.93 rillig const char *form; /* Form of if */
512 1.97 rillig size_t formlen; /* Length of form */
513 1.93 rillig Boolean doNot; /* TRUE if default function should be negated */
514 1.93 rillig Boolean (*defProc)(int, const char *); /* Default function to apply */
515 1.89 rillig } ifs[] = {
516 1.93 rillig { "def", 3, FALSE, CondDoDefined },
517 1.93 rillig { "ndef", 4, TRUE, CondDoDefined },
518 1.93 rillig { "make", 4, FALSE, CondDoMake },
519 1.93 rillig { "nmake", 5, TRUE, CondDoMake },
520 1.93 rillig { "", 0, FALSE, CondDoDefined },
521 1.93 rillig { NULL, 0, FALSE, NULL }
522 1.89 rillig };
523 1.89 rillig
524 1.1 cgd static Token
525 1.114 rillig compare_expression(CondLexer *lex, Boolean doEval)
526 1.44 dsl {
527 1.93 rillig Token t;
528 1.93 rillig const char *lhs;
529 1.93 rillig const char *rhs;
530 1.93 rillig const char *op;
531 1.93 rillig void *lhsFree;
532 1.93 rillig void *rhsFree;
533 1.44 dsl Boolean lhsQuoted;
534 1.44 dsl Boolean rhsQuoted;
535 1.93 rillig double left, right;
536 1.44 dsl
537 1.59 dsl t = TOK_ERROR;
538 1.44 dsl rhs = NULL;
539 1.95 rillig lhsFree = rhsFree = NULL;
540 1.44 dsl lhsQuoted = rhsQuoted = FALSE;
541 1.78 rillig
542 1.44 dsl /*
543 1.44 dsl * Parse the variable spec and skip over it, saving its
544 1.44 dsl * value in lhs.
545 1.44 dsl */
546 1.114 rillig lhs = CondGetString(lex, doEval, &lhsQuoted, &lhsFree, lhsStrict);
547 1.58 dsl if (!lhs)
548 1.58 dsl goto done;
549 1.58 dsl
550 1.116 rillig CondLexer_SkipWhitespace(lex);
551 1.44 dsl
552 1.44 dsl /*
553 1.44 dsl * Make sure the operator is a valid one. If it isn't a
554 1.44 dsl * known relational operator, pretend we got a
555 1.44 dsl * != 0 comparison.
556 1.44 dsl */
557 1.114 rillig op = lex->condExpr;
558 1.114 rillig switch (*lex->condExpr) {
559 1.93 rillig case '!':
560 1.93 rillig case '=':
561 1.93 rillig case '<':
562 1.93 rillig case '>':
563 1.114 rillig if (lex->condExpr[1] == '=') {
564 1.114 rillig lex->condExpr += 2;
565 1.93 rillig } else {
566 1.114 rillig lex->condExpr += 1;
567 1.93 rillig }
568 1.93 rillig break;
569 1.93 rillig default:
570 1.93 rillig if (!doEval) {
571 1.93 rillig t = TOK_FALSE;
572 1.93 rillig goto done;
573 1.93 rillig }
574 1.93 rillig /* For .ifxxx "..." check for non-empty string. */
575 1.93 rillig if (lhsQuoted) {
576 1.93 rillig t = lhs[0] != 0;
577 1.93 rillig goto done;
578 1.93 rillig }
579 1.93 rillig /* For .ifxxx <number> compare against zero */
580 1.93 rillig if (CondCvtArg(lhs, &left)) {
581 1.93 rillig t = left != 0.0;
582 1.93 rillig goto done;
583 1.93 rillig }
584 1.93 rillig /* For .if ${...} check for non-empty string (defProc is ifdef). */
585 1.114 rillig if (lex->if_info->form[0] == 0) {
586 1.93 rillig t = lhs[0] != 0;
587 1.58 dsl goto done;
588 1.93 rillig }
589 1.93 rillig /* Otherwise action default test ... */
590 1.114 rillig t = lex->if_info->defProc(strlen(lhs), lhs) != lex->if_info->doNot;
591 1.93 rillig goto done;
592 1.58 dsl }
593 1.44 dsl
594 1.116 rillig CondLexer_SkipWhitespace(lex);
595 1.58 dsl
596 1.114 rillig if (*lex->condExpr == '\0') {
597 1.44 dsl Parse_Error(PARSE_WARNING,
598 1.44 dsl "Missing right-hand-side of operator");
599 1.58 dsl goto done;
600 1.44 dsl }
601 1.58 dsl
602 1.114 rillig rhs = CondGetString(lex, doEval, &rhsQuoted, &rhsFree, FALSE);
603 1.58 dsl if (!rhs)
604 1.58 dsl goto done;
605 1.58 dsl
606 1.79 sjg if (!doEval) {
607 1.79 sjg t = TOK_FALSE;
608 1.79 sjg goto done;
609 1.79 sjg }
610 1.79 sjg
611 1.44 dsl if (rhsQuoted || lhsQuoted) {
612 1.93 rillig do_string_compare:
613 1.44 dsl if (((*op != '!') && (*op != '=')) || (op[1] != '=')) {
614 1.44 dsl Parse_Error(PARSE_WARNING,
615 1.93 rillig "String comparison operator should be either == or !=");
616 1.58 dsl goto done;
617 1.44 dsl }
618 1.44 dsl
619 1.44 dsl if (DEBUG(COND)) {
620 1.44 dsl fprintf(debug_file, "lhs = \"%s\", rhs = \"%s\", op = %.2s\n",
621 1.93 rillig lhs, rhs, op);
622 1.44 dsl }
623 1.44 dsl /*
624 1.44 dsl * Null-terminate rhs and perform the comparison.
625 1.44 dsl * t is set to the result.
626 1.44 dsl */
627 1.44 dsl if (*op == '=') {
628 1.60 dsl t = strcmp(lhs, rhs) == 0;
629 1.44 dsl } else {
630 1.60 dsl t = strcmp(lhs, rhs) != 0;
631 1.44 dsl }
632 1.44 dsl } else {
633 1.44 dsl /*
634 1.44 dsl * rhs is either a float or an integer. Convert both the
635 1.44 dsl * lhs and the rhs to a double and compare the two.
636 1.44 dsl */
637 1.78 rillig
638 1.46 dsl if (!CondCvtArg(lhs, &left) || !CondCvtArg(rhs, &right))
639 1.44 dsl goto do_string_compare;
640 1.44 dsl
641 1.44 dsl if (DEBUG(COND)) {
642 1.44 dsl fprintf(debug_file, "left = %f, right = %f, op = %.2s\n", left,
643 1.93 rillig right, op);
644 1.44 dsl }
645 1.93 rillig switch (op[0]) {
646 1.44 dsl case '!':
647 1.44 dsl if (op[1] != '=') {
648 1.44 dsl Parse_Error(PARSE_WARNING,
649 1.44 dsl "Unknown operator");
650 1.58 dsl goto done;
651 1.44 dsl }
652 1.60 dsl t = (left != right);
653 1.44 dsl break;
654 1.44 dsl case '=':
655 1.44 dsl if (op[1] != '=') {
656 1.44 dsl Parse_Error(PARSE_WARNING,
657 1.44 dsl "Unknown operator");
658 1.58 dsl goto done;
659 1.44 dsl }
660 1.60 dsl t = (left == right);
661 1.44 dsl break;
662 1.44 dsl case '<':
663 1.44 dsl if (op[1] == '=') {
664 1.60 dsl t = (left <= right);
665 1.44 dsl } else {
666 1.60 dsl t = (left < right);
667 1.44 dsl }
668 1.44 dsl break;
669 1.44 dsl case '>':
670 1.44 dsl if (op[1] == '=') {
671 1.60 dsl t = (left >= right);
672 1.44 dsl } else {
673 1.60 dsl t = (left > right);
674 1.44 dsl }
675 1.44 dsl break;
676 1.44 dsl }
677 1.44 dsl }
678 1.58 dsl
679 1.58 dsl done:
680 1.73 christos free(lhsFree);
681 1.73 christos free(rhsFree);
682 1.44 dsl return t;
683 1.44 dsl }
684 1.44 dsl
685 1.47 dsl static int
686 1.112 rillig ParseEmptyArg(Boolean doEval, const char **linePtr, char **argPtr,
687 1.112 rillig const char *func MAKE_ATTR_UNUSED)
688 1.47 dsl {
689 1.106 rillig void *val_freeIt;
690 1.82 rillig const char *val;
691 1.111 rillig int magic_res;
692 1.47 dsl
693 1.47 dsl /* We do all the work here and return the result as the length */
694 1.47 dsl *argPtr = NULL;
695 1.47 dsl
696 1.111 rillig (*linePtr)--; /* Make (*linePtr)[1] point to the '('. */
697 1.111 rillig val = Var_ParsePP(linePtr, VAR_CMD, doEval ? VARE_WANTRES : 0, &val_freeIt);
698 1.111 rillig /* If successful, *linePtr points beyond the closing ')' now. */
699 1.47 dsl
700 1.47 dsl if (val == var_Error) {
701 1.106 rillig free(val_freeIt);
702 1.47 dsl return -1;
703 1.47 dsl }
704 1.47 dsl
705 1.47 dsl /* A variable is empty when it just contains spaces... 4/15/92, christos */
706 1.82 rillig while (isspace((unsigned char)val[0]))
707 1.47 dsl val++;
708 1.47 dsl
709 1.47 dsl /*
710 1.47 dsl * For consistency with the other functions we can't generate the
711 1.47 dsl * true/false here.
712 1.47 dsl */
713 1.111 rillig magic_res = *val != '\0' ? 2 : 1;
714 1.106 rillig free(val_freeIt);
715 1.111 rillig return magic_res;
716 1.47 dsl }
717 1.47 dsl
718 1.47 dsl static Boolean
719 1.64 joerg CondDoEmpty(int arglen, const char *arg MAKE_ATTR_UNUSED)
720 1.47 dsl {
721 1.112 rillig /* Magic values ahead, see ParseEmptyArg. */
722 1.47 dsl return arglen == 1;
723 1.47 dsl }
724 1.47 dsl
725 1.44 dsl static Token
726 1.114 rillig compare_function(CondLexer *lex, Boolean doEval)
727 1.44 dsl {
728 1.47 dsl static const struct fn_def {
729 1.93 rillig const char *fn_name;
730 1.97 rillig size_t fn_name_len;
731 1.93 rillig int (*fn_getarg)(Boolean, const char **, char **, const char *);
732 1.93 rillig Boolean (*fn_proc)(int, const char *);
733 1.47 dsl } fn_defs[] = {
734 1.112 rillig { "defined", 7, ParseFuncArg, CondDoDefined },
735 1.112 rillig { "make", 4, ParseFuncArg, CondDoMake },
736 1.112 rillig { "exists", 6, ParseFuncArg, CondDoExists },
737 1.112 rillig { "empty", 5, ParseEmptyArg, CondDoEmpty },
738 1.112 rillig { "target", 6, ParseFuncArg, CondDoTarget },
739 1.112 rillig { "commands", 8, ParseFuncArg, CondDoCommands },
740 1.93 rillig { NULL, 0, NULL, NULL },
741 1.47 dsl };
742 1.47 dsl const struct fn_def *fn_def;
743 1.93 rillig Token t;
744 1.93 rillig char *arg = NULL;
745 1.93 rillig int arglen;
746 1.114 rillig const char *cp = lex->condExpr;
747 1.91 rillig const char *cp1;
748 1.44 dsl
749 1.47 dsl for (fn_def = fn_defs; fn_def->fn_name != NULL; fn_def++) {
750 1.47 dsl if (!istoken(cp, fn_def->fn_name, fn_def->fn_name_len))
751 1.47 dsl continue;
752 1.47 dsl cp += fn_def->fn_name_len;
753 1.47 dsl /* There can only be whitespace before the '(' */
754 1.91 rillig while (isspace((unsigned char)*cp))
755 1.47 dsl cp++;
756 1.47 dsl if (*cp != '(')
757 1.47 dsl break;
758 1.44 dsl
759 1.76 rillig arglen = fn_def->fn_getarg(doEval, &cp, &arg, fn_def->fn_name);
760 1.47 dsl if (arglen <= 0) {
761 1.114 rillig lex->condExpr = cp;
762 1.59 dsl return arglen < 0 ? TOK_ERROR : TOK_FALSE;
763 1.44 dsl }
764 1.47 dsl /* Evaluate the argument using the required function. */
765 1.60 dsl t = !doEval || fn_def->fn_proc(arglen, arg);
766 1.73 christos free(arg);
767 1.114 rillig lex->condExpr = cp;
768 1.44 dsl return t;
769 1.44 dsl }
770 1.44 dsl
771 1.47 dsl /* Push anything numeric through the compare expression */
772 1.114 rillig cp = lex->condExpr;
773 1.48 dsl if (isdigit((unsigned char)cp[0]) || strchr("+-", cp[0]))
774 1.114 rillig return compare_expression(lex, doEval);
775 1.47 dsl
776 1.44 dsl /*
777 1.48 dsl * Most likely we have a naked token to apply the default function to.
778 1.48 dsl * However ".if a == b" gets here when the "a" is unquoted and doesn't
779 1.58 dsl * start with a '$'. This surprises people.
780 1.48 dsl * If what follows the function argument is a '=' or '!' then the syntax
781 1.48 dsl * would be invalid if we did "defined(a)" - so instead treat as an
782 1.48 dsl * expression.
783 1.48 dsl */
784 1.112 rillig arglen = ParseFuncArg(doEval, &cp, &arg, NULL);
785 1.91 rillig for (cp1 = cp; isspace((unsigned char)*cp1); cp1++)
786 1.48 dsl continue;
787 1.48 dsl if (*cp1 == '=' || *cp1 == '!')
788 1.114 rillig return compare_expression(lex, doEval);
789 1.114 rillig lex->condExpr = cp;
790 1.48 dsl
791 1.48 dsl /*
792 1.58 dsl * Evaluate the argument using the default function.
793 1.117 rillig * This path always treats .if as .ifdef. To get here, the character
794 1.58 dsl * after .if must have been taken literally, so the argument cannot
795 1.58 dsl * be empty - even if it contained a variable expansion.
796 1.44 dsl */
797 1.114 rillig t = !doEval || lex->if_info->defProc(arglen, arg) != lex->if_info->doNot;
798 1.73 christos free(arg);
799 1.44 dsl return t;
800 1.44 dsl }
801 1.44 dsl
802 1.117 rillig /* Return the next token or comparison result from the lexer. */
803 1.44 dsl static Token
804 1.114 rillig CondToken(CondLexer *lex, Boolean doEval)
805 1.1 cgd {
806 1.47 dsl Token t;
807 1.47 dsl
808 1.115 rillig t = lex->curr;
809 1.59 dsl if (t != TOK_NONE) {
810 1.115 rillig lex->curr = TOK_NONE;
811 1.47 dsl return t;
812 1.47 dsl }
813 1.47 dsl
814 1.118 rillig while (lex->condExpr[0] == ' ' || lex->condExpr[0] == '\t') {
815 1.114 rillig lex->condExpr++;
816 1.47 dsl }
817 1.47 dsl
818 1.118 rillig switch (lex->condExpr[0]) {
819 1.47 dsl
820 1.47 dsl case '(':
821 1.114 rillig lex->condExpr++;
822 1.59 dsl return TOK_LPAREN;
823 1.47 dsl
824 1.47 dsl case ')':
825 1.114 rillig lex->condExpr++;
826 1.59 dsl return TOK_RPAREN;
827 1.47 dsl
828 1.47 dsl case '|':
829 1.118 rillig lex->condExpr++;
830 1.118 rillig if (lex->condExpr[0] == '|') {
831 1.114 rillig lex->condExpr++;
832 1.47 dsl }
833 1.59 dsl return TOK_OR;
834 1.1 cgd
835 1.47 dsl case '&':
836 1.118 rillig lex->condExpr++;
837 1.118 rillig if (lex->condExpr[0] == '&') {
838 1.114 rillig lex->condExpr++;
839 1.1 cgd }
840 1.59 dsl return TOK_AND;
841 1.47 dsl
842 1.47 dsl case '!':
843 1.114 rillig lex->condExpr++;
844 1.59 dsl return TOK_NOT;
845 1.4 cgd
846 1.47 dsl case '#':
847 1.47 dsl case '\n':
848 1.47 dsl case '\0':
849 1.59 dsl return TOK_EOF;
850 1.47 dsl
851 1.47 dsl case '"':
852 1.47 dsl case '$':
853 1.114 rillig return compare_expression(lex, doEval);
854 1.1 cgd
855 1.47 dsl default:
856 1.114 rillig return compare_function(lex, doEval);
857 1.1 cgd }
858 1.1 cgd }
859 1.47 dsl
860 1.117 rillig /* Parse a single term in the expression. This consists of a terminal symbol
861 1.117 rillig * or TOK_NOT and a term (not including the binary operators):
862 1.117 rillig *
863 1.117 rillig * T -> defined(variable) | make(target) | exists(file) | symbol
864 1.117 rillig * T -> ! T | ( E )
865 1.1 cgd *
866 1.1 cgd * Results:
867 1.59 dsl * TOK_TRUE, TOK_FALSE or TOK_ERROR.
868 1.1 cgd */
869 1.1 cgd static Token
870 1.114 rillig CondT(CondLexer *lex, Boolean doEval)
871 1.1 cgd {
872 1.93 rillig Token t;
873 1.1 cgd
874 1.114 rillig t = CondToken(lex, doEval);
875 1.1 cgd
876 1.59 dsl if (t == TOK_EOF) {
877 1.1 cgd /*
878 1.1 cgd * If we reached the end of the expression, the expression
879 1.1 cgd * is malformed...
880 1.1 cgd */
881 1.59 dsl t = TOK_ERROR;
882 1.59 dsl } else if (t == TOK_LPAREN) {
883 1.1 cgd /*
884 1.1 cgd * T -> ( E )
885 1.1 cgd */
886 1.114 rillig t = CondE(lex, doEval);
887 1.59 dsl if (t != TOK_ERROR) {
888 1.114 rillig if (CondToken(lex, doEval) != TOK_RPAREN) {
889 1.59 dsl t = TOK_ERROR;
890 1.1 cgd }
891 1.1 cgd }
892 1.59 dsl } else if (t == TOK_NOT) {
893 1.114 rillig t = CondT(lex, doEval);
894 1.59 dsl if (t == TOK_TRUE) {
895 1.59 dsl t = TOK_FALSE;
896 1.59 dsl } else if (t == TOK_FALSE) {
897 1.59 dsl t = TOK_TRUE;
898 1.1 cgd }
899 1.1 cgd }
900 1.77 rillig return t;
901 1.1 cgd }
902 1.90 rillig
903 1.117 rillig /* Parse a conjunctive factor (nice name, wot?)
904 1.117 rillig *
905 1.117 rillig * F -> T && F | T
906 1.1 cgd *
907 1.1 cgd * Results:
908 1.59 dsl * TOK_TRUE, TOK_FALSE or TOK_ERROR
909 1.1 cgd */
910 1.1 cgd static Token
911 1.114 rillig CondF(CondLexer *lex, Boolean doEval)
912 1.1 cgd {
913 1.93 rillig Token l, o;
914 1.1 cgd
915 1.114 rillig l = CondT(lex, doEval);
916 1.59 dsl if (l != TOK_ERROR) {
917 1.114 rillig o = CondToken(lex, doEval);
918 1.1 cgd
919 1.59 dsl if (o == TOK_AND) {
920 1.1 cgd /*
921 1.1 cgd * F -> T && F
922 1.1 cgd *
923 1.117 rillig * If T is TOK_FALSE, the whole thing will be TOK_FALSE, but we
924 1.117 rillig * have to parse the r.h.s. anyway (to throw it away).
925 1.117 rillig * If T is TOK_TRUE, the result is the r.h.s., be it a TOK_ERROR
926 1.117 rillig * or not.
927 1.1 cgd */
928 1.59 dsl if (l == TOK_TRUE) {
929 1.114 rillig l = CondF(lex, doEval);
930 1.1 cgd } else {
931 1.114 rillig (void)CondF(lex, FALSE);
932 1.1 cgd }
933 1.1 cgd } else {
934 1.1 cgd /*
935 1.1 cgd * F -> T
936 1.1 cgd */
937 1.115 rillig CondLexer_PushBack(lex, o);
938 1.1 cgd }
939 1.1 cgd }
940 1.77 rillig return l;
941 1.1 cgd }
942 1.90 rillig
943 1.117 rillig /* Main expression production.
944 1.117 rillig *
945 1.117 rillig * E -> F || E | F
946 1.1 cgd *
947 1.1 cgd * Results:
948 1.59 dsl * TOK_TRUE, TOK_FALSE or TOK_ERROR.
949 1.1 cgd */
950 1.1 cgd static Token
951 1.114 rillig CondE(CondLexer *lex, Boolean doEval)
952 1.1 cgd {
953 1.93 rillig Token l, o;
954 1.1 cgd
955 1.114 rillig l = CondF(lex, doEval);
956 1.59 dsl if (l != TOK_ERROR) {
957 1.114 rillig o = CondToken(lex, doEval);
958 1.1 cgd
959 1.59 dsl if (o == TOK_OR) {
960 1.1 cgd /*
961 1.1 cgd * E -> F || E
962 1.1 cgd *
963 1.1 cgd * A similar thing occurs for ||, except that here we make sure
964 1.59 dsl * the l.h.s. is TOK_FALSE before we bother to evaluate the r.h.s.
965 1.59 dsl * Once again, if l is TOK_FALSE, the result is the r.h.s. and once
966 1.59 dsl * again if l is TOK_TRUE, we parse the r.h.s. to throw it away.
967 1.1 cgd */
968 1.59 dsl if (l == TOK_FALSE) {
969 1.114 rillig l = CondE(lex, doEval);
970 1.1 cgd } else {
971 1.114 rillig (void)CondE(lex, FALSE);
972 1.1 cgd }
973 1.1 cgd } else {
974 1.1 cgd /*
975 1.1 cgd * E -> F
976 1.1 cgd */
977 1.115 rillig CondLexer_PushBack(lex, o);
978 1.1 cgd }
979 1.1 cgd }
980 1.77 rillig return l;
981 1.1 cgd }
982 1.10 christos
983 1.89 rillig static CondEvalResult
984 1.114 rillig do_Cond_EvalExpression(CondLexer *lex, Boolean *value)
985 1.89 rillig {
986 1.89 rillig
987 1.114 rillig switch (CondE(lex, TRUE)) {
988 1.89 rillig case TOK_TRUE:
989 1.114 rillig if (CondToken(lex, TRUE) == TOK_EOF) {
990 1.89 rillig *value = TRUE;
991 1.89 rillig return COND_PARSE;
992 1.89 rillig }
993 1.89 rillig break;
994 1.89 rillig case TOK_FALSE:
995 1.114 rillig if (CondToken(lex, TRUE) == TOK_EOF) {
996 1.89 rillig *value = FALSE;
997 1.89 rillig return COND_PARSE;
998 1.89 rillig }
999 1.89 rillig break;
1000 1.89 rillig default:
1001 1.89 rillig case TOK_ERROR:
1002 1.89 rillig break;
1003 1.89 rillig }
1004 1.89 rillig
1005 1.89 rillig return COND_INVALID;
1006 1.89 rillig }
1007 1.89 rillig
1008 1.108 rillig /* Evaluate the condition in the passed line, including any side effects from
1009 1.108 rillig * the variable expressions in the condition. The condition consists of &&,
1010 1.108 rillig * ||, !, function(arg), comparisons and parenthetical groupings thereof.
1011 1.10 christos *
1012 1.10 christos * Results:
1013 1.10 christos * COND_PARSE if the condition was valid grammatically
1014 1.10 christos * COND_INVALID if not a valid conditional.
1015 1.10 christos *
1016 1.10 christos * (*value) is set to the boolean value of the condition
1017 1.10 christos */
1018 1.86 rillig CondEvalResult
1019 1.107 rillig Cond_EvalExpression(const struct If *info, const char *line, Boolean *value,
1020 1.93 rillig int eprint, Boolean strictLHS)
1021 1.10 christos {
1022 1.56 dsl static const struct If *dflt_info;
1023 1.114 rillig CondLexer lex;
1024 1.56 dsl int rval;
1025 1.10 christos
1026 1.68 sjg lhsStrict = strictLHS;
1027 1.68 sjg
1028 1.11 christos while (*line == ' ' || *line == '\t')
1029 1.11 christos line++;
1030 1.10 christos
1031 1.56 dsl if (info == NULL && (info = dflt_info) == NULL) {
1032 1.56 dsl /* Scan for the entry for .if - it can't be first */
1033 1.93 rillig for (info = ifs;; info++)
1034 1.57 enami if (info->form[0] == 0)
1035 1.56 dsl break;
1036 1.56 dsl dflt_info = info;
1037 1.56 dsl }
1038 1.75 riastrad assert(info != NULL);
1039 1.56 dsl
1040 1.114 rillig lex.if_info = info;
1041 1.114 rillig lex.condExpr = line;
1042 1.115 rillig lex.curr = TOK_NONE;
1043 1.10 christos
1044 1.114 rillig rval = do_Cond_EvalExpression(&lex, value);
1045 1.56 dsl
1046 1.56 dsl if (rval == COND_INVALID && eprint)
1047 1.56 dsl Parse_Error(PARSE_FATAL, "Malformed conditional (%s)", line);
1048 1.56 dsl
1049 1.56 dsl return rval;
1050 1.56 dsl }
1051 1.56 dsl
1052 1.90 rillig
1053 1.108 rillig /* Evaluate the conditional in the passed line. The line looks like this:
1054 1.108 rillig * .<cond-type> <expr>
1055 1.108 rillig * In this line, <cond-type> is any of if, ifmake, ifnmake, ifdef, ifndef,
1056 1.108 rillig * elif, elifmake, elifnmake, elifdef, elifndef.
1057 1.108 rillig * In this line, <expr> consists of &&, ||, !, function(arg), comparisons
1058 1.108 rillig * and parenthetical groupings thereof.
1059 1.1 cgd *
1060 1.36 dsl * Note that the states IF_ACTIVE and ELSE_ACTIVE are only different in order
1061 1.86 rillig * to detect spurious .else lines (as are SKIP_TO_ELSE and SKIP_TO_ENDIF),
1062 1.36 dsl * otherwise .else could be treated as '.elif 1'.
1063 1.108 rillig *
1064 1.108 rillig * Results:
1065 1.108 rillig * COND_PARSE to continue parsing the lines after the conditional
1066 1.108 rillig * (when .if or .else returns TRUE)
1067 1.108 rillig * COND_SKIP to skip the lines after the conditional
1068 1.108 rillig * (when .if or .elif returns FALSE, or when a previous
1069 1.108 rillig * branch has already been taken)
1070 1.108 rillig * COND_INVALID if the conditional was not valid, either because of
1071 1.108 rillig * a syntax error or because some variable was undefined
1072 1.108 rillig * or because the condition could not be evaluated
1073 1.1 cgd */
1074 1.86 rillig CondEvalResult
1075 1.107 rillig Cond_Eval(const char *line)
1076 1.1 cgd {
1077 1.93 rillig enum { MAXIF = 128 }; /* maximum depth of .if'ing */
1078 1.93 rillig enum { MAXIF_BUMP = 32 }; /* how much to grow by */
1079 1.36 dsl enum if_states {
1080 1.36 dsl IF_ACTIVE, /* .if or .elif part active */
1081 1.36 dsl ELSE_ACTIVE, /* .else part active */
1082 1.36 dsl SEARCH_FOR_ELIF, /* searching for .elif/else to execute */
1083 1.93 rillig SKIP_TO_ELSE, /* has been true, but not seen '.else' */
1084 1.36 dsl SKIP_TO_ENDIF /* nothing else to execute */
1085 1.36 dsl };
1086 1.65 sjg static enum if_states *cond_state = NULL;
1087 1.66 pgoyette static unsigned int max_if_depth = MAXIF;
1088 1.36 dsl
1089 1.36 dsl const struct If *ifp;
1090 1.93 rillig Boolean isElif;
1091 1.93 rillig Boolean value;
1092 1.93 rillig int level; /* Level at which to report errors. */
1093 1.93 rillig enum if_states state;
1094 1.1 cgd
1095 1.1 cgd level = PARSE_FATAL;
1096 1.65 sjg if (!cond_state) {
1097 1.65 sjg cond_state = bmake_malloc(max_if_depth * sizeof(*cond_state));
1098 1.65 sjg cond_state[0] = IF_ACTIVE;
1099 1.65 sjg }
1100 1.36 dsl /* skip leading character (the '.') and any whitespace */
1101 1.36 dsl for (line++; *line == ' ' || *line == '\t'; line++)
1102 1.1 cgd continue;
1103 1.1 cgd
1104 1.36 dsl /* Find what type of if we're dealing with. */
1105 1.36 dsl if (line[0] == 'e') {
1106 1.36 dsl if (line[1] != 'l') {
1107 1.36 dsl if (!istoken(line + 1, "ndif", 4))
1108 1.36 dsl return COND_INVALID;
1109 1.36 dsl /* End of conditional section */
1110 1.37 dsl if (cond_depth == cond_min_depth) {
1111 1.36 dsl Parse_Error(level, "if-less endif");
1112 1.36 dsl return COND_PARSE;
1113 1.36 dsl }
1114 1.36 dsl /* Return state for previous conditional */
1115 1.36 dsl cond_depth--;
1116 1.93 rillig return cond_state[cond_depth] <= ELSE_ACTIVE
1117 1.93 rillig ? COND_PARSE : COND_SKIP;
1118 1.36 dsl }
1119 1.36 dsl
1120 1.36 dsl /* Quite likely this is 'else' or 'elif' */
1121 1.1 cgd line += 2;
1122 1.36 dsl if (istoken(line, "se", 2)) {
1123 1.36 dsl /* It is else... */
1124 1.37 dsl if (cond_depth == cond_min_depth) {
1125 1.36 dsl Parse_Error(level, "if-less else");
1126 1.43 dsl return COND_PARSE;
1127 1.36 dsl }
1128 1.36 dsl
1129 1.36 dsl state = cond_state[cond_depth];
1130 1.36 dsl switch (state) {
1131 1.36 dsl case SEARCH_FOR_ELIF:
1132 1.36 dsl state = ELSE_ACTIVE;
1133 1.36 dsl break;
1134 1.36 dsl case ELSE_ACTIVE:
1135 1.36 dsl case SKIP_TO_ENDIF:
1136 1.36 dsl Parse_Error(PARSE_WARNING, "extra else");
1137 1.36 dsl /* FALLTHROUGH */
1138 1.36 dsl default:
1139 1.36 dsl case IF_ACTIVE:
1140 1.36 dsl case SKIP_TO_ELSE:
1141 1.36 dsl state = SKIP_TO_ENDIF;
1142 1.36 dsl break;
1143 1.1 cgd }
1144 1.36 dsl cond_state[cond_depth] = state;
1145 1.36 dsl return state <= ELSE_ACTIVE ? COND_PARSE : COND_SKIP;
1146 1.1 cgd }
1147 1.36 dsl /* Assume for now it is an elif */
1148 1.36 dsl isElif = TRUE;
1149 1.36 dsl } else
1150 1.36 dsl isElif = FALSE;
1151 1.36 dsl
1152 1.36 dsl if (line[0] != 'i' || line[1] != 'f')
1153 1.36 dsl /* Not an ifxxx or elifxxx line */
1154 1.36 dsl return COND_INVALID;
1155 1.7 christos
1156 1.1 cgd /*
1157 1.1 cgd * Figure out what sort of conditional it is -- what its default
1158 1.1 cgd * function is, etc. -- by looking in the table of valid "ifs"
1159 1.1 cgd */
1160 1.36 dsl line += 2;
1161 1.93 rillig for (ifp = ifs;; ifp++) {
1162 1.36 dsl if (ifp->form == NULL)
1163 1.36 dsl return COND_INVALID;
1164 1.26 christos if (istoken(ifp->form, line, ifp->formlen)) {
1165 1.36 dsl line += ifp->formlen;
1166 1.1 cgd break;
1167 1.1 cgd }
1168 1.1 cgd }
1169 1.1 cgd
1170 1.36 dsl /* Now we know what sort of 'if' it is... */
1171 1.36 dsl
1172 1.36 dsl if (isElif) {
1173 1.37 dsl if (cond_depth == cond_min_depth) {
1174 1.36 dsl Parse_Error(level, "if-less elif");
1175 1.43 dsl return COND_PARSE;
1176 1.36 dsl }
1177 1.43 dsl state = cond_state[cond_depth];
1178 1.43 dsl if (state == SKIP_TO_ENDIF || state == ELSE_ACTIVE) {
1179 1.36 dsl Parse_Error(PARSE_WARNING, "extra elif");
1180 1.43 dsl cond_state[cond_depth] = SKIP_TO_ENDIF;
1181 1.43 dsl return COND_SKIP;
1182 1.43 dsl }
1183 1.36 dsl if (state != SEARCH_FOR_ELIF) {
1184 1.36 dsl /* Either just finished the 'true' block, or already SKIP_TO_ELSE */
1185 1.36 dsl cond_state[cond_depth] = SKIP_TO_ELSE;
1186 1.36 dsl return COND_SKIP;
1187 1.1 cgd }
1188 1.1 cgd } else {
1189 1.43 dsl /* Normal .if */
1190 1.67 christos if (cond_depth + 1 >= max_if_depth) {
1191 1.65 sjg /*
1192 1.65 sjg * This is rare, but not impossible.
1193 1.65 sjg * In meta mode, dirdeps.mk (only runs at level 0)
1194 1.65 sjg * can need more than the default.
1195 1.65 sjg */
1196 1.65 sjg max_if_depth += MAXIF_BUMP;
1197 1.93 rillig cond_state = bmake_realloc(cond_state,
1198 1.93 rillig max_if_depth * sizeof(*cond_state));
1199 1.1 cgd }
1200 1.43 dsl state = cond_state[cond_depth];
1201 1.36 dsl cond_depth++;
1202 1.36 dsl if (state > ELSE_ACTIVE) {
1203 1.36 dsl /* If we aren't parsing the data, treat as always false */
1204 1.36 dsl cond_state[cond_depth] = SKIP_TO_ELSE;
1205 1.36 dsl return COND_SKIP;
1206 1.32 christos }
1207 1.1 cgd }
1208 1.1 cgd
1209 1.109 rillig /* And evaluate the conditional expression */
1210 1.68 sjg if (Cond_EvalExpression(ifp, line, &value, 1, TRUE) == COND_INVALID) {
1211 1.43 dsl /* Syntax error in conditional, error message already output. */
1212 1.43 dsl /* Skip everything to matching .endif */
1213 1.43 dsl cond_state[cond_depth] = SKIP_TO_ELSE;
1214 1.43 dsl return COND_SKIP;
1215 1.36 dsl }
1216 1.36 dsl
1217 1.36 dsl if (!value) {
1218 1.36 dsl cond_state[cond_depth] = SEARCH_FOR_ELIF;
1219 1.36 dsl return COND_SKIP;
1220 1.36 dsl }
1221 1.36 dsl cond_state[cond_depth] = IF_ACTIVE;
1222 1.36 dsl return COND_PARSE;
1223 1.1 cgd }
1224 1.10 christos
1225 1.1 cgd void
1226 1.37 dsl Cond_restore_depth(unsigned int saved_depth)
1227 1.1 cgd {
1228 1.37 dsl int open_conds = cond_depth - cond_min_depth;
1229 1.37 dsl
1230 1.37 dsl if (open_conds != 0 || saved_depth > cond_depth) {
1231 1.37 dsl Parse_Error(PARSE_FATAL, "%d open conditional%s", open_conds,
1232 1.37 dsl open_conds == 1 ? "" : "s");
1233 1.37 dsl cond_depth = cond_min_depth;
1234 1.1 cgd }
1235 1.37 dsl
1236 1.37 dsl cond_min_depth = saved_depth;
1237 1.37 dsl }
1238 1.37 dsl
1239 1.37 dsl unsigned int
1240 1.37 dsl Cond_save_depth(void)
1241 1.37 dsl {
1242 1.37 dsl int depth = cond_min_depth;
1243 1.37 dsl
1244 1.37 dsl cond_min_depth = cond_depth;
1245 1.37 dsl return depth;
1246 1.1 cgd }
1247