for.c revision 1.164 1 1.164 rillig /* $NetBSD: for.c,v 1.164 2022/01/09 14:06:00 rillig Exp $ */
2 1.3 christos
3 1.1 cgd /*
4 1.1 cgd * Copyright (c) 1992, The Regents of the University of California.
5 1.1 cgd * All rights reserved.
6 1.1 cgd *
7 1.1 cgd * Redistribution and use in source and binary forms, with or without
8 1.1 cgd * modification, are permitted provided that the following conditions
9 1.1 cgd * are met:
10 1.1 cgd * 1. Redistributions of source code must retain the above copyright
11 1.1 cgd * notice, this list of conditions and the following disclaimer.
12 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 cgd * notice, this list of conditions and the following disclaimer in the
14 1.1 cgd * documentation and/or other materials provided with the distribution.
15 1.15 agc * 3. Neither the name of the University nor the names of its contributors
16 1.1 cgd * may be used to endorse or promote products derived from this software
17 1.1 cgd * without specific prior written permission.
18 1.1 cgd *
19 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
20 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
23 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 cgd * SUCH DAMAGE.
30 1.1 cgd */
31 1.1 cgd
32 1.135 rillig /*
33 1.80 rillig * Handling of .for/.endfor loops in a makefile.
34 1.80 rillig *
35 1.123 rillig * For loops have the form:
36 1.80 rillig *
37 1.123 rillig * .for <varname...> in <value...>
38 1.123 rillig * # the body
39 1.123 rillig * .endfor
40 1.123 rillig *
41 1.123 rillig * When a .for line is parsed, the following lines are copied to the body of
42 1.123 rillig * the .for loop, until the corresponding .endfor line is reached. In this
43 1.123 rillig * phase, the body is not yet evaluated. This also applies to any nested
44 1.123 rillig * .for loops.
45 1.123 rillig *
46 1.123 rillig * After reaching the .endfor, the values from the .for line are grouped
47 1.123 rillig * according to the number of variables. For each such group, the unexpanded
48 1.149 rillig * body is scanned for variable expressions, and those that match the
49 1.149 rillig * variable names are replaced with expressions of the form ${:U...}. After
50 1.149 rillig * that, the body is treated like a file from an .include directive.
51 1.1 cgd *
52 1.1 cgd * Interface:
53 1.88 rillig * For_Eval Evaluate the loop in the passed line.
54 1.88 rillig *
55 1.1 cgd * For_Run Run accumulated loop
56 1.1 cgd */
57 1.1 cgd
58 1.112 rillig #include "make.h"
59 1.1 cgd
60 1.83 rillig /* "@(#)for.c 8.1 (Berkeley) 6/6/93" */
61 1.164 rillig MAKE_RCSID("$NetBSD: for.c,v 1.164 2022/01/09 14:06:00 rillig Exp $");
62 1.42 dsl
63 1.1 cgd
64 1.136 rillig typedef struct ForLoop {
65 1.155 rillig Vector /* of 'char *' */ vars; /* Iteration variables */
66 1.148 rillig SubstringWords items; /* Substitution items */
67 1.157 rillig Buffer body; /* Unexpanded body of the loop */
68 1.149 rillig unsigned int nextItem; /* Where to continue iterating */
69 1.136 rillig } ForLoop;
70 1.1 cgd
71 1.137 rillig
72 1.143 rillig static ForLoop *accumFor; /* Loop being accumulated */
73 1.1 cgd
74 1.137 rillig
75 1.137 rillig static ForLoop *
76 1.137 rillig ForLoop_New(void)
77 1.96 rillig {
78 1.137 rillig ForLoop *f = bmake_malloc(sizeof *f);
79 1.137 rillig
80 1.155 rillig Vector_Init(&f->vars, sizeof(char *));
81 1.148 rillig SubstringWords_Init(&f->items);
82 1.157 rillig Buf_Init(&f->body);
83 1.149 rillig f->nextItem = 0;
84 1.137 rillig
85 1.137 rillig return f;
86 1.96 rillig }
87 1.96 rillig
88 1.163 rillig void
89 1.136 rillig ForLoop_Free(ForLoop *f)
90 1.96 rillig {
91 1.155 rillig while (f->vars.len > 0)
92 1.155 rillig free(*(char **)Vector_Pop(&f->vars));
93 1.118 rillig Vector_Done(&f->vars);
94 1.96 rillig
95 1.148 rillig SubstringWords_Free(f->items);
96 1.157 rillig Buf_Done(&f->body);
97 1.96 rillig
98 1.118 rillig free(f);
99 1.43 dsl }
100 1.43 dsl
101 1.161 rillig char *
102 1.161 rillig ForLoop_Details(ForLoop *f)
103 1.161 rillig {
104 1.163 rillig size_t i, n;
105 1.163 rillig const char **vars;
106 1.163 rillig const Substring *items;
107 1.161 rillig Buffer buf;
108 1.161 rillig
109 1.163 rillig n = f->vars.len;
110 1.163 rillig vars = f->vars.items;
111 1.163 rillig assert(f->nextItem >= n);
112 1.163 rillig items = f->items.words + f->nextItem - n;
113 1.163 rillig
114 1.161 rillig Buf_Init(&buf);
115 1.161 rillig for (i = 0; i < n; i++) {
116 1.161 rillig if (i > 0)
117 1.161 rillig Buf_AddStr(&buf, ", ");
118 1.161 rillig Buf_AddStr(&buf, vars[i]);
119 1.161 rillig Buf_AddStr(&buf, " = ");
120 1.161 rillig Buf_AddBytesBetween(&buf, items[i].start, items[i].end);
121 1.161 rillig }
122 1.161 rillig return Buf_DoneData(&buf);
123 1.161 rillig }
124 1.161 rillig
125 1.142 rillig static bool
126 1.138 rillig ForLoop_ParseVarnames(ForLoop *f, const char **pp)
127 1.138 rillig {
128 1.138 rillig const char *p = *pp;
129 1.138 rillig
130 1.138 rillig for (;;) {
131 1.138 rillig size_t len;
132 1.138 rillig
133 1.138 rillig cpp_skip_whitespace(&p);
134 1.138 rillig if (*p == '\0') {
135 1.138 rillig Parse_Error(PARSE_FATAL, "missing `in' in for");
136 1.142 rillig return false;
137 1.138 rillig }
138 1.138 rillig
139 1.138 rillig /*
140 1.138 rillig * XXX: This allows arbitrary variable names;
141 1.138 rillig * see directive-for.mk.
142 1.138 rillig */
143 1.138 rillig for (len = 1; p[len] != '\0' && !ch_isspace(p[len]); len++)
144 1.138 rillig continue;
145 1.138 rillig
146 1.138 rillig if (len == 2 && p[0] == 'i' && p[1] == 'n') {
147 1.138 rillig p += 2;
148 1.138 rillig break;
149 1.138 rillig }
150 1.138 rillig
151 1.155 rillig *(char **)Vector_Push(&f->vars) = bmake_strldup(p, len);
152 1.138 rillig p += len;
153 1.138 rillig }
154 1.138 rillig
155 1.138 rillig if (f->vars.len == 0) {
156 1.138 rillig Parse_Error(PARSE_FATAL, "no iteration variables in for");
157 1.142 rillig return false;
158 1.138 rillig }
159 1.138 rillig
160 1.138 rillig *pp = p;
161 1.142 rillig return true;
162 1.138 rillig }
163 1.138 rillig
164 1.142 rillig static bool
165 1.138 rillig ForLoop_ParseItems(ForLoop *f, const char *p)
166 1.138 rillig {
167 1.138 rillig char *items;
168 1.138 rillig
169 1.138 rillig cpp_skip_whitespace(&p);
170 1.138 rillig
171 1.141 rillig if (Var_Subst(p, SCOPE_GLOBAL, VARE_WANTRES, &items) != VPR_OK) {
172 1.138 rillig Parse_Error(PARSE_FATAL, "Error in .for loop items");
173 1.142 rillig return false;
174 1.138 rillig }
175 1.138 rillig
176 1.148 rillig f->items = Substring_Words(items, false);
177 1.138 rillig free(items);
178 1.138 rillig
179 1.148 rillig if (f->items.len == 1 && Substring_IsEmpty(f->items.words[0]))
180 1.151 rillig f->items.len = 0; /* .for var in ${:U} */
181 1.138 rillig
182 1.157 rillig if (f->items.len % f->vars.len != 0) {
183 1.138 rillig Parse_Error(PARSE_FATAL,
184 1.138 rillig "Wrong number of words (%u) in .for "
185 1.138 rillig "substitution list with %u variables",
186 1.138 rillig (unsigned)f->items.len, (unsigned)f->vars.len);
187 1.142 rillig return false;
188 1.138 rillig }
189 1.138 rillig
190 1.142 rillig return true;
191 1.138 rillig }
192 1.138 rillig
193 1.142 rillig static bool
194 1.106 rillig IsFor(const char *p)
195 1.106 rillig {
196 1.118 rillig return p[0] == 'f' && p[1] == 'o' && p[2] == 'r' && ch_isspace(p[3]);
197 1.106 rillig }
198 1.106 rillig
199 1.142 rillig static bool
200 1.106 rillig IsEndfor(const char *p)
201 1.106 rillig {
202 1.118 rillig return p[0] == 'e' && strncmp(p, "endfor", 6) == 0 &&
203 1.118 rillig (p[6] == '\0' || ch_isspace(p[6]));
204 1.106 rillig }
205 1.106 rillig
206 1.122 rillig /*
207 1.122 rillig * Evaluate the for loop in the passed line. The line looks like this:
208 1.70 rillig * .for <varname...> in <value...>
209 1.1 cgd *
210 1.1 cgd * Results:
211 1.157 rillig * 0 not a .for directive
212 1.157 rillig * 1 found a .for directive
213 1.157 rillig * -1 erroneous .for directive
214 1.1 cgd */
215 1.1 cgd int
216 1.73 rillig For_Eval(const char *line)
217 1.1 cgd {
218 1.158 rillig const char *p;
219 1.136 rillig ForLoop *f;
220 1.33 dsl
221 1.118 rillig p = line + 1; /* skip the '.' */
222 1.118 rillig cpp_skip_whitespace(&p);
223 1.43 dsl
224 1.158 rillig if (IsFor(p)) {
225 1.158 rillig p += 3;
226 1.158 rillig
227 1.158 rillig f = ForLoop_New();
228 1.158 rillig if (!ForLoop_ParseVarnames(f, &p)) {
229 1.158 rillig ForLoop_Free(f);
230 1.118 rillig return -1;
231 1.118 rillig }
232 1.158 rillig if (!ForLoop_ParseItems(f, p))
233 1.158 rillig f->items.len = 0; /* don't iterate */
234 1.118 rillig
235 1.158 rillig accumFor = f;
236 1.158 rillig return 1;
237 1.158 rillig } else if (IsEndfor(p)) {
238 1.158 rillig Parse_Error(PARSE_FATAL, "for-less endfor");
239 1.118 rillig return -1;
240 1.158 rillig } else
241 1.158 rillig return 0;
242 1.32 dsl }
243 1.7 christos
244 1.35 dsl /*
245 1.136 rillig * Add another line to the .for loop that is being built up.
246 1.142 rillig * Returns false when the matching .endfor is reached.
247 1.35 dsl */
248 1.142 rillig bool
249 1.156 rillig For_Accum(const char *line, int *forLevel)
250 1.32 dsl {
251 1.140 rillig const char *p = line;
252 1.26 dsl
253 1.140 rillig if (*p == '.') {
254 1.140 rillig p++;
255 1.140 rillig cpp_skip_whitespace(&p);
256 1.118 rillig
257 1.140 rillig if (IsEndfor(p)) {
258 1.156 rillig DEBUG1(FOR, "For: end for %d\n", *forLevel);
259 1.157 rillig if (--*forLevel == 0)
260 1.142 rillig return false;
261 1.140 rillig } else if (IsFor(p)) {
262 1.156 rillig (*forLevel)++;
263 1.156 rillig DEBUG1(FOR, "For: new loop %d\n", *forLevel);
264 1.118 rillig }
265 1.118 rillig }
266 1.118 rillig
267 1.118 rillig Buf_AddStr(&accumFor->body, line);
268 1.118 rillig Buf_AddByte(&accumFor->body, '\n');
269 1.142 rillig return true;
270 1.1 cgd }
271 1.1 cgd
272 1.42 dsl
273 1.59 rillig static size_t
274 1.148 rillig ExprLen(const char *s, const char *e)
275 1.45 dsl {
276 1.148 rillig char expr_open, expr_close;
277 1.118 rillig int depth;
278 1.148 rillig const char *p;
279 1.45 dsl
280 1.148 rillig if (s == e)
281 1.148 rillig return 0; /* just escape the '$' */
282 1.118 rillig
283 1.148 rillig expr_open = s[0];
284 1.147 rillig if (expr_open == '(')
285 1.147 rillig expr_close = ')';
286 1.147 rillig else if (expr_open == '{')
287 1.147 rillig expr_close = '}';
288 1.118 rillig else
289 1.118 rillig return 1; /* Single char variable */
290 1.118 rillig
291 1.118 rillig depth = 1;
292 1.148 rillig for (p = s + 1; p != e; p++) {
293 1.148 rillig if (*p == expr_open)
294 1.118 rillig depth++;
295 1.148 rillig else if (*p == expr_close && --depth == 0)
296 1.148 rillig return (size_t)(p + 1 - s);
297 1.118 rillig }
298 1.45 dsl
299 1.147 rillig /* Expression end not found, escape the $ */
300 1.118 rillig return 0;
301 1.45 dsl }
302 1.45 dsl
303 1.122 rillig /*
304 1.122 rillig * The .for loop substitutes the items as ${:U<value>...}, which means
305 1.122 rillig * that characters that break this syntax must be backslash-escaped.
306 1.122 rillig */
307 1.142 rillig static bool
308 1.148 rillig NeedsEscapes(Substring value, char endc)
309 1.115 rillig {
310 1.118 rillig const char *p;
311 1.115 rillig
312 1.148 rillig for (p = value.start; p != value.end; p++) {
313 1.144 rillig if (*p == ':' || *p == '$' || *p == '\\' || *p == endc ||
314 1.144 rillig *p == '\n')
315 1.142 rillig return true;
316 1.118 rillig }
317 1.142 rillig return false;
318 1.115 rillig }
319 1.115 rillig
320 1.122 rillig /*
321 1.122 rillig * While expanding the body of a .for loop, write the item in the ${:U...}
322 1.115 rillig * expression, escaping characters as needed.
323 1.115 rillig *
324 1.122 rillig * The result is later unescaped by ApplyModifier_Defined.
325 1.122 rillig */
326 1.42 dsl static void
327 1.157 rillig AddEscaped(Buffer *cmds, Substring item, char endc)
328 1.42 dsl {
329 1.148 rillig const char *p;
330 1.118 rillig char ch;
331 1.118 rillig
332 1.127 rillig if (!NeedsEscapes(item, endc)) {
333 1.148 rillig Buf_AddBytesBetween(cmds, item.start, item.end);
334 1.118 rillig return;
335 1.118 rillig }
336 1.61 rillig
337 1.151 rillig /*
338 1.151 rillig * Escape ':', '$', '\\' and 'endc' - these will be removed later by
339 1.151 rillig * :U processing, see ApplyModifier_Defined.
340 1.151 rillig */
341 1.148 rillig for (p = item.start; p != item.end; p++) {
342 1.148 rillig ch = *p;
343 1.118 rillig if (ch == '$') {
344 1.148 rillig size_t len = ExprLen(p + 1, item.end);
345 1.118 rillig if (len != 0) {
346 1.147 rillig /*
347 1.147 rillig * XXX: Should a '\' be added here?
348 1.147 rillig * See directive-for-escape.mk, ExprLen.
349 1.147 rillig */
350 1.148 rillig Buf_AddBytes(cmds, p, 1 + len);
351 1.148 rillig p += len;
352 1.118 rillig continue;
353 1.118 rillig }
354 1.118 rillig Buf_AddByte(cmds, '\\');
355 1.127 rillig } else if (ch == ':' || ch == '\\' || ch == endc)
356 1.118 rillig Buf_AddByte(cmds, '\\');
357 1.144 rillig else if (ch == '\n') {
358 1.144 rillig Parse_Error(PARSE_FATAL, "newline in .for value");
359 1.144 rillig ch = ' '; /* prevent newline injection */
360 1.144 rillig }
361 1.118 rillig Buf_AddByte(cmds, ch);
362 1.118 rillig }
363 1.42 dsl }
364 1.42 dsl
365 1.122 rillig /*
366 1.146 rillig * When expanding the body of a .for loop, replace the variable name of an
367 1.123 rillig * expression like ${i} or ${i:...} or $(i) or $(i:...) with ":Uvalue".
368 1.122 rillig */
369 1.97 rillig static void
370 1.164 rillig ForLoop_SubstVarLong(ForLoop *f, unsigned int firstItem, Buffer *body,
371 1.164 rillig const char **pp, char endc, const char **inout_mark)
372 1.97 rillig {
373 1.118 rillig size_t i;
374 1.155 rillig const char *start = *pp;
375 1.155 rillig const char **vars = Vector_Get(&f->vars, 0);
376 1.97 rillig
377 1.118 rillig for (i = 0; i < f->vars.len; i++) {
378 1.155 rillig const char *p = start;
379 1.155 rillig const char *varname = vars[i];
380 1.118 rillig
381 1.162 rillig while (*varname != '\0' && *p == *varname)
382 1.155 rillig p++, varname++;
383 1.155 rillig if (*varname != '\0')
384 1.118 rillig continue;
385 1.118 rillig /* XXX: why test for backslash here? */
386 1.155 rillig if (*p != ':' && *p != endc && *p != '\\')
387 1.118 rillig continue;
388 1.118 rillig
389 1.131 rillig /*
390 1.131 rillig * Found a variable match. Skip over the variable name and
391 1.131 rillig * instead add ':U<value>' to the current body.
392 1.131 rillig */
393 1.155 rillig Buf_AddBytesBetween(body, *inout_mark, start);
394 1.153 rillig Buf_AddStr(body, ":U");
395 1.164 rillig AddEscaped(body, f->items.words[firstItem + i], endc);
396 1.118 rillig
397 1.118 rillig *inout_mark = p;
398 1.131 rillig *pp = p;
399 1.131 rillig return;
400 1.118 rillig }
401 1.97 rillig }
402 1.97 rillig
403 1.122 rillig /*
404 1.146 rillig * When expanding the body of a .for loop, replace single-character
405 1.122 rillig * variable expressions like $i with their ${:U...} expansion.
406 1.122 rillig */
407 1.98 rillig static void
408 1.164 rillig ForLoop_SubstVarShort(ForLoop *f, unsigned int firstItem, Buffer *body,
409 1.153 rillig const char *p, const char **inout_mark)
410 1.98 rillig {
411 1.123 rillig const char ch = *p;
412 1.155 rillig const char **vars;
413 1.118 rillig size_t i;
414 1.118 rillig
415 1.130 rillig /* Skip $$ and stupid ones. */
416 1.146 rillig if (ch == '}' || ch == ')' || ch == ':' || ch == '$')
417 1.118 rillig return;
418 1.98 rillig
419 1.130 rillig vars = Vector_Get(&f->vars, 0);
420 1.118 rillig for (i = 0; i < f->vars.len; i++) {
421 1.155 rillig const char *varname = vars[i];
422 1.130 rillig if (varname[0] == ch && varname[1] == '\0')
423 1.130 rillig goto found;
424 1.130 rillig }
425 1.130 rillig return;
426 1.130 rillig
427 1.130 rillig found:
428 1.153 rillig Buf_AddBytesBetween(body, *inout_mark, p);
429 1.147 rillig *inout_mark = p + 1;
430 1.147 rillig
431 1.130 rillig /* Replace $<ch> with ${:U<value>} */
432 1.153 rillig Buf_AddStr(body, "{:U");
433 1.164 rillig AddEscaped(body, f->items.words[firstItem + i], '}');
434 1.153 rillig Buf_AddByte(body, '}');
435 1.98 rillig }
436 1.98 rillig
437 1.95 rillig /*
438 1.128 rillig * Compute the body for the current iteration by copying the unexpanded body,
439 1.128 rillig * replacing the expressions for the iteration variables on the way.
440 1.129 rillig *
441 1.129 rillig * Using variable expressions ensures that the .for loop can't generate
442 1.129 rillig * syntax, and that the later parsing will still see a variable.
443 1.129 rillig * This code assumes that the variable with the empty name will never be
444 1.129 rillig * defined, see unit-tests/varname-empty.mk for more details.
445 1.129 rillig *
446 1.140 rillig * The detection of substitutions of the loop control variables is naive.
447 1.147 rillig * Many of the modifiers use '\$' instead of '$$' to escape '$', so it is
448 1.147 rillig * possible to contrive a makefile where an unwanted substitution happens.
449 1.128 rillig */
450 1.128 rillig static void
451 1.164 rillig ForLoop_SubstBody(ForLoop *f, unsigned int firstItem, Buffer *body)
452 1.128 rillig {
453 1.153 rillig const char *p, *end;
454 1.146 rillig const char *mark; /* where the last substitution left off */
455 1.128 rillig
456 1.159 rillig Buf_Clear(body);
457 1.128 rillig
458 1.128 rillig mark = f->body.data;
459 1.153 rillig end = f->body.data + f->body.len;
460 1.128 rillig for (p = mark; (p = strchr(p, '$')) != NULL;) {
461 1.128 rillig if (p[1] == '{' || p[1] == '(') {
462 1.146 rillig char endc = p[1] == '{' ? '}' : ')';
463 1.128 rillig p += 2;
464 1.164 rillig ForLoop_SubstVarLong(f, firstItem, body,
465 1.164 rillig &p, endc, &mark);
466 1.128 rillig } else if (p[1] != '\0') {
467 1.164 rillig ForLoop_SubstVarShort(f, firstItem, body,
468 1.164 rillig p + 1, &mark);
469 1.130 rillig p += 2;
470 1.128 rillig } else
471 1.128 rillig break;
472 1.128 rillig }
473 1.128 rillig
474 1.153 rillig Buf_AddBytesBetween(body, mark, end);
475 1.128 rillig }
476 1.128 rillig
477 1.128 rillig /*
478 1.129 rillig * Compute the body for the current iteration by copying the unexpanded body,
479 1.129 rillig * replacing the expressions for the iteration variables on the way.
480 1.95 rillig */
481 1.154 rillig bool
482 1.154 rillig For_NextIteration(ForLoop *f, Buffer *body)
483 1.1 cgd {
484 1.163 rillig if (f->nextItem == f->items.len)
485 1.154 rillig return false;
486 1.118 rillig
487 1.164 rillig f->nextItem += (unsigned int)f->vars.len;
488 1.164 rillig ForLoop_SubstBody(f, f->nextItem - (unsigned int)f->vars.len, body);
489 1.154 rillig DEBUG1(FOR, "For: loop body:\n%s", body->data);
490 1.154 rillig return true;
491 1.43 dsl }
492 1.7 christos
493 1.120 rillig /* Run the .for loop, imitating the actions of an include file. */
494 1.43 dsl void
495 1.160 rillig For_Run(int headLineno, int bodyReadLines)
496 1.54 rillig {
497 1.154 rillig Buffer buf;
498 1.136 rillig ForLoop *f = accumFor;
499 1.118 rillig accumFor = NULL;
500 1.1 cgd
501 1.154 rillig if (f->items.len > 0) {
502 1.154 rillig Buf_Init(&buf);
503 1.160 rillig Parse_PushInput(NULL, headLineno, bodyReadLines, buf, f);
504 1.154 rillig } else
505 1.136 rillig ForLoop_Free(f);
506 1.1 cgd }
507