Mercurial > vim
annotate src/ex_eval.c @ 15810:5523665fdf80 v8.1.0912
patch 8.1.0912: MS-Windows: warning for signed/unsigned
commit https://github.com/vim/vim/commit/18442cbcc0d335a8ea6947e94eee9a2ab9552690
Author: Bram Moolenaar <Bram@vim.org>
Date: Wed Feb 13 21:22:12 2019 +0100
patch 8.1.0912: MS-Windows: warning for signed/unsigned
Problem: MS-Windows: warning for signed/unsigned.
Solution: Add type cast. (Nobuhiro Takasaki, closes https://github.com/vim/vim/issues/3945)
author | Bram Moolenaar <Bram@vim.org> |
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date | Wed, 13 Feb 2019 21:30:07 +0100 |
parents | dd725a8ab112 |
children | ef00b6bc186b |
rev | line source |
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1 /* vi:set ts=8 sts=4 sw=4 noet: |
7 | 2 * |
3 * VIM - Vi IMproved by Bram Moolenaar | |
4 * | |
5 * Do ":help uganda" in Vim to read copying and usage conditions. | |
6 * Do ":help credits" in Vim to see a list of people who contributed. | |
7 * See README.txt for an overview of the Vim source code. | |
8 */ | |
9 | |
10 /* | |
11 * ex_eval.c: functions for Ex command line for the +eval feature. | |
12 */ | |
13 | |
14 #include "vim.h" | |
15 | |
16 #if defined(FEAT_EVAL) || defined(PROTO) | |
17 | |
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18 static int throw_exception(void *, except_type_T, char_u *); |
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19 static char *get_end_emsg(struct condstack *cstack); |
7 | 20 |
21 /* | |
22 * Exception handling terms: | |
23 * | |
24 * :try ":try" command \ | |
25 * ... try block | | |
26 * :catch RE ":catch" command | | |
27 * ... catch clause |- try conditional | |
28 * :finally ":finally" command | | |
29 * ... finally clause | | |
30 * :endtry ":endtry" command / | |
31 * | |
32 * The try conditional may have any number of catch clauses and at most one | |
33 * finally clause. A ":throw" command can be inside the try block, a catch | |
34 * clause, the finally clause, or in a function called or script sourced from | |
35 * there or even outside the try conditional. Try conditionals may be nested. | |
36 */ | |
37 | |
38 /* | |
39 * Configuration whether an exception is thrown on error or interrupt. When | |
40 * the preprocessor macros below evaluate to FALSE, an error (did_emsg) or | |
41 * interrupt (got_int) under an active try conditional terminates the script | |
42 * after the non-active finally clauses of all active try conditionals have been | |
43 * executed. Otherwise, errors and/or interrupts are converted into catchable | |
44 * exceptions (did_throw additionally set), which terminate the script only if | |
45 * not caught. For user exceptions, only did_throw is set. (Note: got_int can | |
4352 | 46 * be set asynchronously afterwards by a SIGINT, so did_throw && got_int is not |
7 | 47 * a reliant test that the exception currently being thrown is an interrupt |
48 * exception. Similarly, did_emsg can be set afterwards on an error in an | |
49 * (unskipped) conditional command inside an inactive conditional, so did_throw | |
50 * && did_emsg is not a reliant test that the exception currently being thrown | |
51 * is an error exception.) - The macros can be defined as expressions checking | |
52 * for a variable that is allowed to be changed during execution of a script. | |
53 */ | |
54 #if 0 | |
55 /* Expressions used for testing during the development phase. */ | |
56 # define THROW_ON_ERROR (!eval_to_number("$VIMNOERRTHROW")) | |
57 # define THROW_ON_INTERRUPT (!eval_to_number("$VIMNOINTTHROW")) | |
58 # define THROW_TEST | |
59 #else | |
60 /* Values used for the Vim release. */ | |
61 # define THROW_ON_ERROR TRUE | |
1880 | 62 # define THROW_ON_ERROR_TRUE |
7 | 63 # define THROW_ON_INTERRUPT TRUE |
1880 | 64 # define THROW_ON_INTERRUPT_TRUE |
7 | 65 #endif |
66 | |
67 /* | |
68 * When several errors appear in a row, setting "force_abort" is delayed until | |
69 * the failing command returned. "cause_abort" is set to TRUE meanwhile, in | |
70 * order to indicate that situation. This is useful when "force_abort" was set | |
71 * during execution of a function call from an expression: the aborting of the | |
72 * expression evaluation is done without producing any error messages, but all | |
73 * error messages on parsing errors during the expression evaluation are given | |
74 * (even if a try conditional is active). | |
75 */ | |
76 static int cause_abort = FALSE; | |
77 | |
78 /* | |
1214 | 79 * Return TRUE when immediately aborting on error, or when an interrupt |
7 | 80 * occurred or an exception was thrown but not caught. Use for ":{range}call" |
81 * to check whether an aborted function that does not handle a range itself | |
82 * should be called again for the next line in the range. Also used for | |
83 * cancelling expression evaluation after a function call caused an immediate | |
84 * abort. Note that the first emsg() call temporarily resets "force_abort" | |
85 * until the throw point for error messages has been reached. That is, during | |
86 * cancellation of an expression evaluation after an aborting function call or | |
87 * due to a parsing error, aborting() always returns the same value. | |
88 */ | |
89 int | |
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90 aborting(void) |
7 | 91 { |
92 return (did_emsg && force_abort) || got_int || did_throw; | |
93 } | |
94 | |
95 /* | |
96 * The value of "force_abort" is temporarily reset by the first emsg() call | |
97 * during an expression evaluation, and "cause_abort" is used instead. It might | |
98 * be necessary to restore "force_abort" even before the throw point for the | |
99 * error message has been reached. update_force_abort() should be called then. | |
100 */ | |
101 void | |
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102 update_force_abort(void) |
7 | 103 { |
104 if (cause_abort) | |
105 force_abort = TRUE; | |
106 } | |
107 | |
108 /* | |
109 * Return TRUE if a command with a subcommand resulting in "retcode" should | |
110 * abort the script processing. Can be used to suppress an autocommand after | |
111 * execution of a failing subcommand as long as the error message has not been | |
112 * displayed and actually caused the abortion. | |
113 */ | |
114 int | |
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115 should_abort(int retcode) |
7 | 116 { |
117 return ((retcode == FAIL && trylevel != 0 && !emsg_silent) || aborting()); | |
118 } | |
119 | |
120 /* | |
121 * Return TRUE if a function with the "abort" flag should not be considered | |
122 * ended on an error. This means that parsing commands is continued in order | |
123 * to find finally clauses to be executed, and that some errors in skipped | |
124 * commands are still reported. | |
125 */ | |
126 int | |
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127 aborted_in_try(void) |
7 | 128 { |
129 /* This function is only called after an error. In this case, "force_abort" | |
130 * determines whether searching for finally clauses is necessary. */ | |
131 return force_abort; | |
132 } | |
133 | |
134 /* | |
135 * cause_errthrow(): Cause a throw of an error exception if appropriate. | |
136 * Return TRUE if the error message should not be displayed by emsg(). | |
137 * Sets "ignore", if the emsg() call should be ignored completely. | |
138 * | |
139 * When several messages appear in the same command, the first is usually the | |
140 * most specific one and used as the exception value. The "severe" flag can be | |
141 * set to TRUE, if a later but severer message should be used instead. | |
142 */ | |
143 int | |
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144 cause_errthrow( |
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145 char_u *mesg, |
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146 int severe, |
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147 int *ignore) |
7 | 148 { |
149 struct msglist *elem; | |
150 struct msglist **plist; | |
151 | |
152 /* | |
839 | 153 * Do nothing when displaying the interrupt message or reporting an |
154 * uncaught exception (which has already been discarded then) at the top | |
155 * level. Also when no exception can be thrown. The message will be | |
156 * displayed by emsg(). | |
7 | 157 */ |
158 if (suppress_errthrow) | |
159 return FALSE; | |
160 | |
161 /* | |
839 | 162 * If emsg() has not been called previously, temporarily reset |
163 * "force_abort" until the throw point for error messages has been | |
164 * reached. This ensures that aborting() returns the same value for all | |
165 * errors that appear in the same command. This means particularly that | |
166 * for parsing errors during expression evaluation emsg() will be called | |
167 * multiply, even when the expression is evaluated from a finally clause | |
168 * that was activated due to an aborting error, interrupt, or exception. | |
7 | 169 */ |
170 if (!did_emsg) | |
171 { | |
172 cause_abort = force_abort; | |
173 force_abort = FALSE; | |
174 } | |
175 | |
176 /* | |
177 * If no try conditional is active and no exception is being thrown and | |
178 * there has not been an error in a try conditional or a throw so far, do | |
839 | 179 * nothing (for compatibility of non-EH scripts). The message will then |
180 * be displayed by emsg(). When ":silent!" was used and we are not | |
181 * currently throwing an exception, do nothing. The message text will | |
182 * then be stored to v:errmsg by emsg() without displaying it. | |
7 | 183 */ |
184 if (((trylevel == 0 && !cause_abort) || emsg_silent) && !did_throw) | |
185 return FALSE; | |
186 | |
187 /* | |
188 * Ignore an interrupt message when inside a try conditional or when an | |
839 | 189 * exception is being thrown or when an error in a try conditional or |
190 * throw has been detected previously. This is important in order that an | |
7 | 191 * interrupt exception is catchable by the innermost try conditional and |
192 * not replaced by an interrupt message error exception. | |
193 */ | |
194 if (mesg == (char_u *)_(e_interr)) | |
195 { | |
196 *ignore = TRUE; | |
197 return TRUE; | |
198 } | |
199 | |
200 /* | |
201 * Ensure that all commands in nested function calls and sourced files | |
202 * are aborted immediately. | |
203 */ | |
204 cause_abort = TRUE; | |
205 | |
206 /* | |
207 * When an exception is being thrown, some commands (like conditionals) are | |
208 * not skipped. Errors in those commands may affect what of the subsequent | |
209 * commands are regarded part of catch and finally clauses. Catching the | |
210 * exception would then cause execution of commands not intended by the | |
211 * user, who wouldn't even get aware of the problem. Therefor, discard the | |
212 * exception currently being thrown to prevent it from being caught. Just | |
213 * execute finally clauses and terminate. | |
214 */ | |
215 if (did_throw) | |
216 { | |
217 /* When discarding an interrupt exception, reset got_int to prevent the | |
218 * same interrupt being converted to an exception again and discarding | |
219 * the error exception we are about to throw here. */ | |
220 if (current_exception->type == ET_INTERRUPT) | |
221 got_int = FALSE; | |
222 discard_current_exception(); | |
223 } | |
224 | |
225 #ifdef THROW_TEST | |
226 if (!THROW_ON_ERROR) | |
227 { | |
228 /* | |
229 * Print error message immediately without searching for a matching | |
230 * catch clause; just finally clauses are executed before the script | |
231 * is terminated. | |
232 */ | |
233 return FALSE; | |
234 } | |
235 else | |
236 #endif | |
237 { | |
238 /* | |
239 * Prepare the throw of an error exception, so that everything will | |
240 * be aborted (except for executing finally clauses), until the error | |
241 * exception is caught; if still uncaught at the top level, the error | |
242 * message will be displayed and the script processing terminated | |
243 * then. - This function has no access to the conditional stack. | |
244 * Thus, the actual throw is made after the failing command has | |
245 * returned. - Throw only the first of several errors in a row, except | |
246 * a severe error is following. | |
247 */ | |
248 if (msg_list != NULL) | |
249 { | |
250 plist = msg_list; | |
251 while (*plist != NULL) | |
252 plist = &(*plist)->next; | |
253 | |
254 elem = (struct msglist *)alloc((unsigned)sizeof(struct msglist)); | |
255 if (elem == NULL) | |
256 { | |
257 suppress_errthrow = TRUE; | |
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258 emsg(_(e_outofmem)); |
7 | 259 } |
260 else | |
261 { | |
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262 elem->msg = (char *)vim_strsave(mesg); |
7 | 263 if (elem->msg == NULL) |
264 { | |
265 vim_free(elem); | |
266 suppress_errthrow = TRUE; | |
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267 emsg(_(e_outofmem)); |
7 | 268 } |
269 else | |
270 { | |
271 elem->next = NULL; | |
272 elem->throw_msg = NULL; | |
273 *plist = elem; | |
274 if (plist == msg_list || severe) | |
275 { | |
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276 char *tmsg; |
7 | 277 |
278 /* Skip the extra "Vim " prefix for message "E458". */ | |
279 tmsg = elem->msg; | |
280 if (STRNCMP(tmsg, "Vim E", 5) == 0 | |
281 && VIM_ISDIGIT(tmsg[5]) | |
282 && VIM_ISDIGIT(tmsg[6]) | |
283 && VIM_ISDIGIT(tmsg[7]) | |
284 && tmsg[8] == ':' | |
285 && tmsg[9] == ' ') | |
286 (*msg_list)->throw_msg = &tmsg[4]; | |
287 else | |
288 (*msg_list)->throw_msg = tmsg; | |
289 } | |
290 } | |
291 } | |
292 } | |
293 return TRUE; | |
294 } | |
295 } | |
296 | |
297 /* | |
298 * Free a "msg_list" and the messages it contains. | |
299 */ | |
300 static void | |
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301 free_msglist(struct msglist *l) |
7 | 302 { |
303 struct msglist *messages, *next; | |
304 | |
305 messages = l; | |
306 while (messages != NULL) | |
307 { | |
308 next = messages->next; | |
309 vim_free(messages->msg); | |
310 vim_free(messages); | |
311 messages = next; | |
312 } | |
313 } | |
314 | |
315 /* | |
5517 | 316 * Free global "*msg_list" and the messages it contains, then set "*msg_list" |
317 * to NULL. | |
318 */ | |
319 void | |
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320 free_global_msglist(void) |
5517 | 321 { |
322 free_msglist(*msg_list); | |
323 *msg_list = NULL; | |
324 } | |
325 | |
326 /* | |
7 | 327 * Throw the message specified in the call to cause_errthrow() above as an |
328 * error exception. If cstack is NULL, postpone the throw until do_cmdline() | |
329 * has returned (see do_one_cmd()). | |
330 */ | |
331 void | |
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332 do_errthrow(struct condstack *cstack, char_u *cmdname) |
7 | 333 { |
334 /* | |
335 * Ensure that all commands in nested function calls and sourced files | |
336 * are aborted immediately. | |
337 */ | |
338 if (cause_abort) | |
339 { | |
340 cause_abort = FALSE; | |
341 force_abort = TRUE; | |
342 } | |
343 | |
344 /* If no exception is to be thrown or the conversion should be done after | |
345 * returning to a previous invocation of do_one_cmd(), do nothing. */ | |
1046 | 346 if (msg_list == NULL || *msg_list == NULL) |
7 | 347 return; |
348 | |
349 if (throw_exception(*msg_list, ET_ERROR, cmdname) == FAIL) | |
350 free_msglist(*msg_list); | |
351 else | |
352 { | |
353 if (cstack != NULL) | |
354 do_throw(cstack); | |
355 else | |
356 need_rethrow = TRUE; | |
357 } | |
358 *msg_list = NULL; | |
359 } | |
360 | |
361 /* | |
362 * do_intthrow(): Replace the current exception by an interrupt or interrupt | |
363 * exception if appropriate. Return TRUE if the current exception is discarded, | |
364 * FALSE otherwise. | |
365 */ | |
366 int | |
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367 do_intthrow(struct condstack *cstack) |
7 | 368 { |
369 /* | |
370 * If no interrupt occurred or no try conditional is active and no exception | |
371 * is being thrown, do nothing (for compatibility of non-EH scripts). | |
372 */ | |
373 if (!got_int || (trylevel == 0 && !did_throw)) | |
374 return FALSE; | |
375 | |
376 #ifdef THROW_TEST /* avoid warning for condition always true */ | |
377 if (!THROW_ON_INTERRUPT) | |
378 { | |
379 /* | |
380 * The interrupt aborts everything except for executing finally clauses. | |
381 * Discard any user or error or interrupt exception currently being | |
382 * thrown. | |
383 */ | |
384 if (did_throw) | |
385 discard_current_exception(); | |
386 } | |
387 else | |
388 #endif | |
389 { | |
390 /* | |
391 * Throw an interrupt exception, so that everything will be aborted | |
392 * (except for executing finally clauses), until the interrupt exception | |
393 * is caught; if still uncaught at the top level, the script processing | |
394 * will be terminated then. - If an interrupt exception is already | |
395 * being thrown, do nothing. | |
396 * | |
397 */ | |
398 if (did_throw) | |
399 { | |
400 if (current_exception->type == ET_INTERRUPT) | |
401 return FALSE; | |
402 | |
403 /* An interrupt exception replaces any user or error exception. */ | |
404 discard_current_exception(); | |
405 } | |
406 if (throw_exception("Vim:Interrupt", ET_INTERRUPT, NULL) != FAIL) | |
407 do_throw(cstack); | |
408 } | |
409 | |
410 return TRUE; | |
411 } | |
412 | |
413 /* | |
5517 | 414 * Get an exception message that is to be stored in current_exception->value. |
7 | 415 */ |
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416 char * |
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417 get_exception_string( |
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418 void *value, |
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419 except_type_T type, |
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420 char_u *cmdname, |
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421 int *should_free) |
7 | 422 { |
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423 char *ret; |
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424 char *mesg; |
7 | 425 int cmdlen; |
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426 char *p, *val; |
7 | 427 |
428 if (type == ET_ERROR) | |
429 { | |
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430 *should_free = TRUE; |
5517 | 431 mesg = ((struct msglist *)value)->throw_msg; |
7 | 432 if (cmdname != NULL && *cmdname != NUL) |
433 { | |
835 | 434 cmdlen = (int)STRLEN(cmdname); |
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435 ret = (char *)vim_strnsave((char_u *)"Vim(", |
7 | 436 4 + cmdlen + 2 + (int)STRLEN(mesg)); |
5517 | 437 if (ret == NULL) |
438 return ret; | |
439 STRCPY(&ret[4], cmdname); | |
440 STRCPY(&ret[4 + cmdlen], "):"); | |
441 val = ret + 4 + cmdlen + 2; | |
7 | 442 } |
443 else | |
444 { | |
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445 ret = (char *)vim_strnsave((char_u *)"Vim:", 4 + (int)STRLEN(mesg)); |
5517 | 446 if (ret == NULL) |
447 return ret; | |
448 val = ret + 4; | |
7 | 449 } |
450 | |
451 /* msg_add_fname may have been used to prefix the message with a file | |
452 * name in quotes. In the exception value, put the file name in | |
453 * parentheses and move it to the end. */ | |
454 for (p = mesg; ; p++) | |
455 { | |
456 if (*p == NUL | |
457 || (*p == 'E' | |
458 && VIM_ISDIGIT(p[1]) | |
459 && (p[2] == ':' | |
460 || (VIM_ISDIGIT(p[2]) | |
461 && (p[3] == ':' | |
462 || (VIM_ISDIGIT(p[3]) | |
463 && p[4] == ':')))))) | |
464 { | |
273 | 465 if (*p == NUL || p == mesg) |
466 STRCAT(val, mesg); /* 'E123' missing or at beginning */ | |
7 | 467 else |
468 { | |
469 /* '"filename" E123: message text' */ | |
470 if (mesg[0] != '"' || p-2 < &mesg[1] || | |
471 p[-2] != '"' || p[-1] != ' ') | |
472 /* "E123:" is part of the file name. */ | |
473 continue; | |
474 | |
475 STRCAT(val, p); | |
476 p[-2] = NUL; | |
477 sprintf((char *)(val + STRLEN(p)), " (%s)", &mesg[1]); | |
478 p[-2] = '"'; | |
479 } | |
480 break; | |
481 } | |
482 } | |
483 } | |
484 else | |
5517 | 485 { |
486 *should_free = FALSE; | |
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487 ret = value; |
5517 | 488 } |
489 | |
490 return ret; | |
491 } | |
492 | |
493 | |
494 /* | |
495 * Throw a new exception. Return FAIL when out of memory or it was tried to | |
496 * throw an illegal user exception. "value" is the exception string for a | |
497 * user or interrupt exception, or points to a message list in case of an | |
498 * error exception. | |
499 */ | |
500 static int | |
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501 throw_exception(void *value, except_type_T type, char_u *cmdname) |
5517 | 502 { |
503 except_T *excp; | |
504 int should_free; | |
505 | |
506 /* | |
507 * Disallow faking Interrupt or error exceptions as user exceptions. They | |
508 * would be treated differently from real interrupt or error exceptions | |
509 * when no active try block is found, see do_cmdline(). | |
510 */ | |
511 if (type == ET_USER) | |
512 { | |
513 if (STRNCMP((char_u *)value, "Vim", 3) == 0 | |
514 && (((char_u *)value)[3] == NUL || ((char_u *)value)[3] == ':' | |
515 || ((char_u *)value)[3] == '(')) | |
516 { | |
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517 emsg(_("E608: Cannot :throw exceptions with 'Vim' prefix")); |
5517 | 518 goto fail; |
519 } | |
520 } | |
521 | |
522 excp = (except_T *)alloc((unsigned)sizeof(except_T)); | |
523 if (excp == NULL) | |
524 goto nomem; | |
525 | |
526 if (type == ET_ERROR) | |
527 /* Store the original message and prefix the exception value with | |
528 * "Vim:" or, if a command name is given, "Vim(cmdname):". */ | |
529 excp->messages = (struct msglist *)value; | |
530 | |
531 excp->value = get_exception_string(value, type, cmdname, &should_free); | |
532 if (excp->value == NULL && should_free) | |
533 goto nomem; | |
7 | 534 |
535 excp->type = type; | |
536 excp->throw_name = vim_strsave(sourcing_name == NULL | |
537 ? (char_u *)"" : sourcing_name); | |
538 if (excp->throw_name == NULL) | |
539 { | |
5517 | 540 if (should_free) |
7 | 541 vim_free(excp->value); |
542 goto nomem; | |
543 } | |
544 excp->throw_lnum = sourcing_lnum; | |
545 | |
546 if (p_verbose >= 13 || debug_break_level > 0) | |
547 { | |
548 int save_msg_silent = msg_silent; | |
549 | |
550 if (debug_break_level > 0) | |
551 msg_silent = FALSE; /* display messages */ | |
293 | 552 else |
553 verbose_enter(); | |
7 | 554 ++no_wait_return; |
293 | 555 if (debug_break_level > 0 || *p_vfile == NUL) |
556 msg_scroll = TRUE; /* always scroll up, don't overwrite */ | |
557 | |
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558 smsg(_("Exception thrown: %s"), excp->value); |
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559 msg_puts("\n"); /* don't overwrite this either */ |
293 | 560 |
561 if (debug_break_level > 0 || *p_vfile == NUL) | |
562 cmdline_row = msg_row; | |
7 | 563 --no_wait_return; |
564 if (debug_break_level > 0) | |
565 msg_silent = save_msg_silent; | |
293 | 566 else |
567 verbose_leave(); | |
7 | 568 } |
569 | |
570 current_exception = excp; | |
571 return OK; | |
572 | |
573 nomem: | |
574 vim_free(excp); | |
575 suppress_errthrow = TRUE; | |
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576 emsg(_(e_outofmem)); |
7 | 577 fail: |
578 current_exception = NULL; | |
579 return FAIL; | |
580 } | |
581 | |
582 /* | |
583 * Discard an exception. "was_finished" is set when the exception has been | |
584 * caught and the catch clause has been ended normally. | |
585 */ | |
586 static void | |
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587 discard_exception(except_T *excp, int was_finished) |
7 | 588 { |
589 char_u *saved_IObuff; | |
590 | |
591 if (excp == NULL) | |
592 { | |
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593 internal_error("discard_exception()"); |
7 | 594 return; |
595 } | |
596 | |
597 if (p_verbose >= 13 || debug_break_level > 0) | |
598 { | |
599 int save_msg_silent = msg_silent; | |
600 | |
601 saved_IObuff = vim_strsave(IObuff); | |
602 if (debug_break_level > 0) | |
603 msg_silent = FALSE; /* display messages */ | |
293 | 604 else |
605 verbose_enter(); | |
7 | 606 ++no_wait_return; |
293 | 607 if (debug_break_level > 0 || *p_vfile == NUL) |
608 msg_scroll = TRUE; /* always scroll up, don't overwrite */ | |
273 | 609 smsg(was_finished |
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610 ? _("Exception finished: %s") |
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611 : _("Exception discarded: %s"), |
7 | 612 excp->value); |
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613 msg_puts("\n"); /* don't overwrite this either */ |
293 | 614 if (debug_break_level > 0 || *p_vfile == NUL) |
615 cmdline_row = msg_row; | |
7 | 616 --no_wait_return; |
617 if (debug_break_level > 0) | |
618 msg_silent = save_msg_silent; | |
293 | 619 else |
620 verbose_leave(); | |
7 | 621 STRCPY(IObuff, saved_IObuff); |
622 vim_free(saved_IObuff); | |
623 } | |
624 if (excp->type != ET_INTERRUPT) | |
625 vim_free(excp->value); | |
626 if (excp->type == ET_ERROR) | |
627 free_msglist(excp->messages); | |
628 vim_free(excp->throw_name); | |
629 vim_free(excp); | |
630 } | |
631 | |
632 /* | |
633 * Discard the exception currently being thrown. | |
634 */ | |
635 void | |
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636 discard_current_exception(void) |
7 | 637 { |
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638 if (current_exception != NULL) |
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639 { |
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640 discard_exception(current_exception, FALSE); |
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641 current_exception = NULL; |
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642 } |
7 | 643 did_throw = FALSE; |
644 need_rethrow = FALSE; | |
645 } | |
646 | |
647 /* | |
648 * Put an exception on the caught stack. | |
649 */ | |
650 static void | |
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651 catch_exception(except_T *excp) |
7 | 652 { |
653 excp->caught = caught_stack; | |
654 caught_stack = excp; | |
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655 set_vim_var_string(VV_EXCEPTION, (char_u *)excp->value, -1); |
7 | 656 if (*excp->throw_name != NUL) |
657 { | |
658 if (excp->throw_lnum != 0) | |
273 | 659 vim_snprintf((char *)IObuff, IOSIZE, _("%s, line %ld"), |
660 excp->throw_name, (long)excp->throw_lnum); | |
7 | 661 else |
273 | 662 vim_snprintf((char *)IObuff, IOSIZE, "%s", excp->throw_name); |
7 | 663 set_vim_var_string(VV_THROWPOINT, IObuff, -1); |
664 } | |
665 else | |
666 /* throw_name not set on an exception from a command that was typed. */ | |
667 set_vim_var_string(VV_THROWPOINT, NULL, -1); | |
668 | |
669 if (p_verbose >= 13 || debug_break_level > 0) | |
670 { | |
671 int save_msg_silent = msg_silent; | |
672 | |
673 if (debug_break_level > 0) | |
674 msg_silent = FALSE; /* display messages */ | |
293 | 675 else |
676 verbose_enter(); | |
7 | 677 ++no_wait_return; |
293 | 678 if (debug_break_level > 0 || *p_vfile == NUL) |
679 msg_scroll = TRUE; /* always scroll up, don't overwrite */ | |
680 | |
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681 smsg(_("Exception caught: %s"), excp->value); |
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682 msg_puts("\n"); /* don't overwrite this either */ |
293 | 683 |
684 if (debug_break_level > 0 || *p_vfile == NUL) | |
685 cmdline_row = msg_row; | |
7 | 686 --no_wait_return; |
687 if (debug_break_level > 0) | |
688 msg_silent = save_msg_silent; | |
293 | 689 else |
690 verbose_leave(); | |
7 | 691 } |
692 } | |
693 | |
694 /* | |
695 * Remove an exception from the caught stack. | |
696 */ | |
697 static void | |
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698 finish_exception(except_T *excp) |
7 | 699 { |
700 if (excp != caught_stack) | |
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701 internal_error("finish_exception()"); |
7 | 702 caught_stack = caught_stack->caught; |
703 if (caught_stack != NULL) | |
704 { | |
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705 set_vim_var_string(VV_EXCEPTION, (char_u *)caught_stack->value, -1); |
7 | 706 if (*caught_stack->throw_name != NUL) |
707 { | |
708 if (caught_stack->throw_lnum != 0) | |
273 | 709 vim_snprintf((char *)IObuff, IOSIZE, |
7 | 710 _("%s, line %ld"), caught_stack->throw_name, |
711 (long)caught_stack->throw_lnum); | |
712 else | |
273 | 713 vim_snprintf((char *)IObuff, IOSIZE, "%s", |
714 caught_stack->throw_name); | |
7 | 715 set_vim_var_string(VV_THROWPOINT, IObuff, -1); |
716 } | |
717 else | |
718 /* throw_name not set on an exception from a command that was | |
719 * typed. */ | |
720 set_vim_var_string(VV_THROWPOINT, NULL, -1); | |
721 } | |
722 else | |
723 { | |
724 set_vim_var_string(VV_EXCEPTION, NULL, -1); | |
725 set_vim_var_string(VV_THROWPOINT, NULL, -1); | |
726 } | |
727 | |
728 /* Discard the exception, but use the finish message for 'verbose'. */ | |
729 discard_exception(excp, TRUE); | |
730 } | |
731 | |
732 /* | |
733 * Flags specifying the message displayed by report_pending. | |
734 */ | |
735 #define RP_MAKE 0 | |
736 #define RP_RESUME 1 | |
737 #define RP_DISCARD 2 | |
738 | |
739 /* | |
740 * Report information about something pending in a finally clause if required by | |
741 * the 'verbose' option or when debugging. "action" tells whether something is | |
742 * made pending or something pending is resumed or discarded. "pending" tells | |
743 * what is pending. "value" specifies the return value for a pending ":return" | |
744 * or the exception value for a pending exception. | |
745 */ | |
746 static void | |
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747 report_pending(int action, int pending, void *value) |
7 | 748 { |
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749 char *mesg; |
7 | 750 char *s; |
751 int save_msg_silent; | |
752 | |
753 | |
754 switch (action) | |
755 { | |
756 case RP_MAKE: | |
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757 mesg = _("%s made pending"); |
7 | 758 break; |
759 case RP_RESUME: | |
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760 mesg = _("%s resumed"); |
7 | 761 break; |
762 /* case RP_DISCARD: */ | |
763 default: | |
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764 mesg = _("%s discarded"); |
7 | 765 break; |
766 } | |
767 | |
768 switch (pending) | |
769 { | |
770 case CSTP_NONE: | |
771 return; | |
772 | |
773 case CSTP_CONTINUE: | |
774 s = ":continue"; | |
775 break; | |
776 case CSTP_BREAK: | |
777 s = ":break"; | |
778 break; | |
779 case CSTP_FINISH: | |
780 s = ":finish"; | |
781 break; | |
782 case CSTP_RETURN: | |
783 /* ":return" command producing value, allocated */ | |
784 s = (char *)get_return_cmd(value); | |
785 break; | |
786 | |
787 default: | |
788 if (pending & CSTP_THROW) | |
789 { | |
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790 vim_snprintf((char *)IObuff, IOSIZE, mesg, _("Exception")); |
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791 mesg = (char *)vim_strnsave(IObuff, (int)STRLEN(IObuff) + 4); |
7 | 792 STRCAT(mesg, ": %s"); |
793 s = (char *)((except_T *)value)->value; | |
794 } | |
795 else if ((pending & CSTP_ERROR) && (pending & CSTP_INTERRUPT)) | |
796 s = _("Error and interrupt"); | |
797 else if (pending & CSTP_ERROR) | |
798 s = _("Error"); | |
799 else /* if (pending & CSTP_INTERRUPT) */ | |
800 s = _("Interrupt"); | |
801 } | |
802 | |
803 save_msg_silent = msg_silent; | |
804 if (debug_break_level > 0) | |
805 msg_silent = FALSE; /* display messages */ | |
806 ++no_wait_return; | |
807 msg_scroll = TRUE; /* always scroll up, don't overwrite */ | |
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808 smsg(mesg, s); |
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809 msg_puts("\n"); /* don't overwrite this either */ |
7 | 810 cmdline_row = msg_row; |
811 --no_wait_return; | |
812 if (debug_break_level > 0) | |
813 msg_silent = save_msg_silent; | |
814 | |
815 if (pending == CSTP_RETURN) | |
816 vim_free(s); | |
817 else if (pending & CSTP_THROW) | |
818 vim_free(mesg); | |
819 } | |
820 | |
821 /* | |
822 * If something is made pending in a finally clause, report it if required by | |
823 * the 'verbose' option or when debugging. | |
824 */ | |
825 void | |
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826 report_make_pending(int pending, void *value) |
7 | 827 { |
828 if (p_verbose >= 14 || debug_break_level > 0) | |
293 | 829 { |
830 if (debug_break_level <= 0) | |
831 verbose_enter(); | |
7 | 832 report_pending(RP_MAKE, pending, value); |
293 | 833 if (debug_break_level <= 0) |
834 verbose_leave(); | |
835 } | |
7 | 836 } |
837 | |
838 /* | |
839 * If something pending in a finally clause is resumed at the ":endtry", report | |
840 * it if required by the 'verbose' option or when debugging. | |
841 */ | |
842 void | |
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843 report_resume_pending(int pending, void *value) |
7 | 844 { |
845 if (p_verbose >= 14 || debug_break_level > 0) | |
293 | 846 { |
847 if (debug_break_level <= 0) | |
848 verbose_enter(); | |
7 | 849 report_pending(RP_RESUME, pending, value); |
293 | 850 if (debug_break_level <= 0) |
851 verbose_leave(); | |
852 } | |
7 | 853 } |
854 | |
855 /* | |
856 * If something pending in a finally clause is discarded, report it if required | |
857 * by the 'verbose' option or when debugging. | |
858 */ | |
859 void | |
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860 report_discard_pending(int pending, void *value) |
7 | 861 { |
862 if (p_verbose >= 14 || debug_break_level > 0) | |
293 | 863 { |
864 if (debug_break_level <= 0) | |
865 verbose_enter(); | |
7 | 866 report_pending(RP_DISCARD, pending, value); |
293 | 867 if (debug_break_level <= 0) |
868 verbose_leave(); | |
869 } | |
7 | 870 } |
871 | |
872 | |
873 /* | |
874 * ":if". | |
875 */ | |
876 void | |
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877 ex_if(exarg_T *eap) |
7 | 878 { |
879 int error; | |
880 int skip; | |
881 int result; | |
882 struct condstack *cstack = eap->cstack; | |
883 | |
884 if (cstack->cs_idx == CSTACK_LEN - 1) | |
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|
885 eap->errmsg = N_("E579: :if nesting too deep"); |
7 | 886 else |
887 { | |
888 ++cstack->cs_idx; | |
889 cstack->cs_flags[cstack->cs_idx] = 0; | |
890 | |
891 /* | |
892 * Don't do something after an error, interrupt, or throw, or when there | |
893 * is a surrounding conditional and it was not active. | |
894 */ | |
895 skip = did_emsg || got_int || did_throw || (cstack->cs_idx > 0 | |
896 && !(cstack->cs_flags[cstack->cs_idx - 1] & CSF_ACTIVE)); | |
897 | |
898 result = eval_to_bool(eap->arg, &error, &eap->nextcmd, skip); | |
899 | |
900 if (!skip && !error) | |
901 { | |
902 if (result) | |
903 cstack->cs_flags[cstack->cs_idx] = CSF_ACTIVE | CSF_TRUE; | |
904 } | |
905 else | |
906 /* set TRUE, so this conditional will never get active */ | |
907 cstack->cs_flags[cstack->cs_idx] = CSF_TRUE; | |
908 } | |
909 } | |
910 | |
911 /* | |
912 * ":endif". | |
913 */ | |
914 void | |
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915 ex_endif(exarg_T *eap) |
7 | 916 { |
917 did_endif = TRUE; | |
918 if (eap->cstack->cs_idx < 0 | |
79 | 919 || (eap->cstack->cs_flags[eap->cstack->cs_idx] |
920 & (CSF_WHILE | CSF_FOR | CSF_TRY))) | |
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921 eap->errmsg = N_("E580: :endif without :if"); |
7 | 922 else |
923 { | |
924 /* | |
925 * When debugging or a breakpoint was encountered, display the debug | |
926 * prompt (if not already done). This shows the user that an ":endif" | |
927 * is executed when the ":if" or a previous ":elseif" was not TRUE. | |
928 * Handle a ">quit" debug command as if an interrupt had occurred before | |
929 * the ":endif". That is, throw an interrupt exception if appropriate. | |
930 * Doing this here prevents an exception for a parsing error being | |
931 * discarded by throwing the interrupt exception later on. | |
932 */ | |
359 | 933 if (!(eap->cstack->cs_flags[eap->cstack->cs_idx] & CSF_TRUE) |
934 && dbg_check_skipped(eap)) | |
7 | 935 (void)do_intthrow(eap->cstack); |
936 | |
937 --eap->cstack->cs_idx; | |
938 } | |
939 } | |
940 | |
941 /* | |
942 * ":else" and ":elseif". | |
943 */ | |
944 void | |
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945 ex_else(exarg_T *eap) |
7 | 946 { |
947 int error; | |
948 int skip; | |
949 int result; | |
950 struct condstack *cstack = eap->cstack; | |
951 | |
952 /* | |
953 * Don't do something after an error, interrupt, or throw, or when there is | |
954 * a surrounding conditional and it was not active. | |
955 */ | |
956 skip = did_emsg || got_int || did_throw || (cstack->cs_idx > 0 | |
957 && !(cstack->cs_flags[cstack->cs_idx - 1] & CSF_ACTIVE)); | |
958 | |
959 if (cstack->cs_idx < 0 | |
75 | 960 || (cstack->cs_flags[cstack->cs_idx] |
961 & (CSF_WHILE | CSF_FOR | CSF_TRY))) | |
7 | 962 { |
963 if (eap->cmdidx == CMD_else) | |
964 { | |
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965 eap->errmsg = N_("E581: :else without :if"); |
7 | 966 return; |
967 } | |
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968 eap->errmsg = N_("E582: :elseif without :if"); |
7 | 969 skip = TRUE; |
970 } | |
971 else if (cstack->cs_flags[cstack->cs_idx] & CSF_ELSE) | |
972 { | |
973 if (eap->cmdidx == CMD_else) | |
974 { | |
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975 eap->errmsg = N_("E583: multiple :else"); |
7 | 976 return; |
977 } | |
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978 eap->errmsg = N_("E584: :elseif after :else"); |
7 | 979 skip = TRUE; |
980 } | |
981 | |
982 /* if skipping or the ":if" was TRUE, reset ACTIVE, otherwise set it */ | |
983 if (skip || cstack->cs_flags[cstack->cs_idx] & CSF_TRUE) | |
984 { | |
985 if (eap->errmsg == NULL) | |
986 cstack->cs_flags[cstack->cs_idx] = CSF_TRUE; | |
987 skip = TRUE; /* don't evaluate an ":elseif" */ | |
988 } | |
989 else | |
990 cstack->cs_flags[cstack->cs_idx] = CSF_ACTIVE; | |
991 | |
992 /* | |
993 * When debugging or a breakpoint was encountered, display the debug prompt | |
994 * (if not already done). This shows the user that an ":else" or ":elseif" | |
995 * is executed when the ":if" or previous ":elseif" was not TRUE. Handle | |
996 * a ">quit" debug command as if an interrupt had occurred before the | |
997 * ":else" or ":elseif". That is, set "skip" and throw an interrupt | |
998 * exception if appropriate. Doing this here prevents that an exception | |
999 * for a parsing errors is discarded when throwing the interrupt exception | |
1000 * later on. | |
1001 */ | |
1002 if (!skip && dbg_check_skipped(eap) && got_int) | |
1003 { | |
1004 (void)do_intthrow(cstack); | |
1005 skip = TRUE; | |
1006 } | |
1007 | |
1008 if (eap->cmdidx == CMD_elseif) | |
1009 { | |
1010 result = eval_to_bool(eap->arg, &error, &eap->nextcmd, skip); | |
1011 /* When throwing error exceptions, we want to throw always the first | |
1012 * of several errors in a row. This is what actually happens when | |
1013 * a conditional error was detected above and there is another failure | |
1014 * when parsing the expression. Since the skip flag is set in this | |
1015 * case, the parsing error will be ignored by emsg(). */ | |
1016 | |
1017 if (!skip && !error) | |
1018 { | |
1019 if (result) | |
1020 cstack->cs_flags[cstack->cs_idx] = CSF_ACTIVE | CSF_TRUE; | |
1021 else | |
1022 cstack->cs_flags[cstack->cs_idx] = 0; | |
1023 } | |
1024 else if (eap->errmsg == NULL) | |
1025 /* set TRUE, so this conditional will never get active */ | |
1026 cstack->cs_flags[cstack->cs_idx] = CSF_TRUE; | |
1027 } | |
1028 else | |
1029 cstack->cs_flags[cstack->cs_idx] |= CSF_ELSE; | |
1030 } | |
1031 | |
1032 /* | |
75 | 1033 * Handle ":while" and ":for". |
7 | 1034 */ |
1035 void | |
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1036 ex_while(exarg_T *eap) |
7 | 1037 { |
1038 int error; | |
1039 int skip; | |
1040 int result; | |
1041 struct condstack *cstack = eap->cstack; | |
1042 | |
1043 if (cstack->cs_idx == CSTACK_LEN - 1) | |
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1044 eap->errmsg = N_("E585: :while/:for nesting too deep"); |
7 | 1045 else |
1046 { | |
1047 /* | |
75 | 1048 * The loop flag is set when we have jumped back from the matching |
1049 * ":endwhile" or ":endfor". When not set, need to initialise this | |
1050 * cstack entry. | |
7 | 1051 */ |
75 | 1052 if ((cstack->cs_lflags & CSL_HAD_LOOP) == 0) |
7 | 1053 { |
1054 ++cstack->cs_idx; | |
75 | 1055 ++cstack->cs_looplevel; |
7 | 1056 cstack->cs_line[cstack->cs_idx] = -1; |
1057 } | |
75 | 1058 cstack->cs_flags[cstack->cs_idx] = |
1059 eap->cmdidx == CMD_while ? CSF_WHILE : CSF_FOR; | |
7 | 1060 |
1061 /* | |
75 | 1062 * Don't do something after an error, interrupt, or throw, or when |
1063 * there is a surrounding conditional and it was not active. | |
7 | 1064 */ |
1065 skip = did_emsg || got_int || did_throw || (cstack->cs_idx > 0 | |
1066 && !(cstack->cs_flags[cstack->cs_idx - 1] & CSF_ACTIVE)); | |
75 | 1067 if (eap->cmdidx == CMD_while) |
1068 { | |
1069 /* | |
1070 * ":while bool-expr" | |
1071 */ | |
1072 result = eval_to_bool(eap->arg, &error, &eap->nextcmd, skip); | |
1073 } | |
1074 else | |
1075 { | |
1076 void *fi; | |
1077 | |
1078 /* | |
1079 * ":for var in list-expr" | |
1080 */ | |
1081 if ((cstack->cs_lflags & CSL_HAD_LOOP) != 0) | |
1082 { | |
1083 /* Jumping here from a ":continue" or ":endfor": use the | |
1084 * previously evaluated list. */ | |
79 | 1085 fi = cstack->cs_forinfo[cstack->cs_idx]; |
75 | 1086 error = FALSE; |
1087 } | |
1088 else | |
1089 { | |
1090 /* Evaluate the argument and get the info in a structure. */ | |
1091 fi = eval_for_line(eap->arg, &error, &eap->nextcmd, skip); | |
79 | 1092 cstack->cs_forinfo[cstack->cs_idx] = fi; |
75 | 1093 } |
1094 | |
1095 /* use the element at the start of the list and advance */ | |
1096 if (!error && fi != NULL && !skip) | |
1097 result = next_for_item(fi, eap->arg); | |
1098 else | |
1099 result = FALSE; | |
1100 | |
1101 if (!result) | |
1102 { | |
1103 free_for_info(fi); | |
79 | 1104 cstack->cs_forinfo[cstack->cs_idx] = NULL; |
75 | 1105 } |
1106 } | |
7 | 1107 |
1108 /* | |
75 | 1109 * If this cstack entry was just initialised and is active, set the |
1110 * loop flag, so do_cmdline() will set the line number in cs_line[]. | |
1111 * If executing the command a second time, clear the loop flag. | |
7 | 1112 */ |
1113 if (!skip && !error && result) | |
1114 { | |
75 | 1115 cstack->cs_flags[cstack->cs_idx] |= (CSF_ACTIVE | CSF_TRUE); |
1116 cstack->cs_lflags ^= CSL_HAD_LOOP; | |
7 | 1117 } |
1118 else | |
1119 { | |
75 | 1120 cstack->cs_lflags &= ~CSL_HAD_LOOP; |
1121 /* If the ":while" evaluates to FALSE or ":for" is past the end of | |
1122 * the list, show the debug prompt at the ":endwhile"/":endfor" as | |
1123 * if there was a ":break" in a ":while"/":for" evaluating to | |
1124 * TRUE. */ | |
7 | 1125 if (!skip && !error) |
1126 cstack->cs_flags[cstack->cs_idx] |= CSF_TRUE; | |
1127 } | |
1128 } | |
1129 } | |
1130 | |
1131 /* | |
1132 * ":continue" | |
1133 */ | |
1134 void | |
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1135 ex_continue(exarg_T *eap) |
7 | 1136 { |
1137 int idx; | |
1138 struct condstack *cstack = eap->cstack; | |
1139 | |
75 | 1140 if (cstack->cs_looplevel <= 0 || cstack->cs_idx < 0) |
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1141 eap->errmsg = N_("E586: :continue without :while or :for"); |
7 | 1142 else |
1143 { | |
1144 /* Try to find the matching ":while". This might stop at a try | |
1145 * conditional not in its finally clause (which is then to be executed | |
1146 * next). Therefor, inactivate all conditionals except the ":while" | |
1147 * itself (if reached). */ | |
75 | 1148 idx = cleanup_conditionals(cstack, CSF_WHILE | CSF_FOR, FALSE); |
840 | 1149 if (idx >= 0 && (cstack->cs_flags[idx] & (CSF_WHILE | CSF_FOR))) |
7 | 1150 { |
79 | 1151 rewind_conditionals(cstack, idx, CSF_TRY, &cstack->cs_trylevel); |
7 | 1152 |
1153 /* | |
75 | 1154 * Set CSL_HAD_CONT, so do_cmdline() will jump back to the |
7 | 1155 * matching ":while". |
1156 */ | |
75 | 1157 cstack->cs_lflags |= CSL_HAD_CONT; /* let do_cmdline() handle it */ |
7 | 1158 } |
1159 else | |
1160 { | |
1161 /* If a try conditional not in its finally clause is reached first, | |
1162 * make the ":continue" pending for execution at the ":endtry". */ | |
1163 cstack->cs_pending[idx] = CSTP_CONTINUE; | |
1164 report_make_pending(CSTP_CONTINUE, NULL); | |
1165 } | |
1166 } | |
1167 } | |
1168 | |
1169 /* | |
1170 * ":break" | |
1171 */ | |
1172 void | |
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1173 ex_break(exarg_T *eap) |
7 | 1174 { |
1175 int idx; | |
1176 struct condstack *cstack = eap->cstack; | |
1177 | |
75 | 1178 if (cstack->cs_looplevel <= 0 || cstack->cs_idx < 0) |
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1179 eap->errmsg = N_("E587: :break without :while or :for"); |
7 | 1180 else |
1181 { | |
1182 /* Inactivate conditionals until the matching ":while" or a try | |
1183 * conditional not in its finally clause (which is then to be | |
1184 * executed next) is found. In the latter case, make the ":break" | |
1185 * pending for execution at the ":endtry". */ | |
75 | 1186 idx = cleanup_conditionals(cstack, CSF_WHILE | CSF_FOR, TRUE); |
840 | 1187 if (idx >= 0 && !(cstack->cs_flags[idx] & (CSF_WHILE | CSF_FOR))) |
7 | 1188 { |
1189 cstack->cs_pending[idx] = CSTP_BREAK; | |
1190 report_make_pending(CSTP_BREAK, NULL); | |
1191 } | |
1192 } | |
1193 } | |
1194 | |
1195 /* | |
75 | 1196 * ":endwhile" and ":endfor" |
7 | 1197 */ |
1198 void | |
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1199 ex_endwhile(exarg_T *eap) |
7 | 1200 { |
1201 struct condstack *cstack = eap->cstack; | |
75 | 1202 int idx; |
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1203 char *err; |
75 | 1204 int csf; |
1205 int fl; | |
7 | 1206 |
75 | 1207 if (eap->cmdidx == CMD_endwhile) |
1208 { | |
1209 err = e_while; | |
1210 csf = CSF_WHILE; | |
1211 } | |
1212 else | |
1213 { | |
1214 err = e_for; | |
1215 csf = CSF_FOR; | |
1216 } | |
1217 | |
1218 if (cstack->cs_looplevel <= 0 || cstack->cs_idx < 0) | |
1219 eap->errmsg = err; | |
7 | 1220 else |
1221 { | |
75 | 1222 fl = cstack->cs_flags[cstack->cs_idx]; |
1223 if (!(fl & csf)) | |
7 | 1224 { |
114 | 1225 /* If we are in a ":while" or ":for" but used the wrong endloop |
1226 * command, do not rewind to the next enclosing ":for"/":while". */ | |
75 | 1227 if (fl & CSF_WHILE) |
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1228 eap->errmsg = _("E732: Using :endfor with :while"); |
75 | 1229 else if (fl & CSF_FOR) |
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1230 eap->errmsg = _("E733: Using :endwhile with :for"); |
114 | 1231 } |
1232 if (!(fl & (CSF_WHILE | CSF_FOR))) | |
1233 { | |
1234 if (!(fl & CSF_TRY)) | |
75 | 1235 eap->errmsg = e_endif; |
1236 else if (fl & CSF_FINALLY) | |
1237 eap->errmsg = e_endtry; | |
7 | 1238 /* Try to find the matching ":while" and report what's missing. */ |
1239 for (idx = cstack->cs_idx; idx > 0; --idx) | |
1240 { | |
75 | 1241 fl = cstack->cs_flags[idx]; |
1242 if ((fl & CSF_TRY) && !(fl & CSF_FINALLY)) | |
7 | 1243 { |
1244 /* Give up at a try conditional not in its finally clause. | |
75 | 1245 * Ignore the ":endwhile"/":endfor". */ |
1246 eap->errmsg = err; | |
7 | 1247 return; |
1248 } | |
75 | 1249 if (fl & csf) |
7 | 1250 break; |
1251 } | |
1252 /* Cleanup and rewind all contained (and unclosed) conditionals. */ | |
75 | 1253 (void)cleanup_conditionals(cstack, CSF_WHILE | CSF_FOR, FALSE); |
7 | 1254 rewind_conditionals(cstack, idx, CSF_TRY, &cstack->cs_trylevel); |
1255 } | |
1256 | |
1257 /* | |
1258 * When debugging or a breakpoint was encountered, display the debug | |
1259 * prompt (if not already done). This shows the user that an | |
75 | 1260 * ":endwhile"/":endfor" is executed when the ":while" was not TRUE or |
1261 * after a ":break". Handle a ">quit" debug command as if an | |
1262 * interrupt had occurred before the ":endwhile"/":endfor". That is, | |
1263 * throw an interrupt exception if appropriate. Doing this here | |
1264 * prevents that an exception for a parsing error is discarded when | |
1265 * throwing the interrupt exception later on. | |
7 | 1266 */ |
1267 else if (cstack->cs_flags[cstack->cs_idx] & CSF_TRUE | |
1268 && !(cstack->cs_flags[cstack->cs_idx] & CSF_ACTIVE) | |
1269 && dbg_check_skipped(eap)) | |
1270 (void)do_intthrow(cstack); | |
1271 | |
1272 /* | |
75 | 1273 * Set loop flag, so do_cmdline() will jump back to the matching |
1274 * ":while" or ":for". | |
7 | 1275 */ |
75 | 1276 cstack->cs_lflags |= CSL_HAD_ENDLOOP; |
7 | 1277 } |
1278 } | |
1279 | |
1280 | |
1281 /* | |
1282 * ":throw expr" | |
1283 */ | |
1284 void | |
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1285 ex_throw(exarg_T *eap) |
7 | 1286 { |
1287 char_u *arg = eap->arg; | |
1288 char_u *value; | |
1289 | |
1290 if (*arg != NUL && *arg != '|' && *arg != '\n') | |
1291 value = eval_to_string_skip(arg, &eap->nextcmd, eap->skip); | |
1292 else | |
1293 { | |
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1294 emsg(_(e_argreq)); |
7 | 1295 value = NULL; |
1296 } | |
1297 | |
1298 /* On error or when an exception is thrown during argument evaluation, do | |
1299 * not throw. */ | |
1300 if (!eap->skip && value != NULL) | |
1301 { | |
1302 if (throw_exception(value, ET_USER, NULL) == FAIL) | |
1303 vim_free(value); | |
1304 else | |
1305 do_throw(eap->cstack); | |
1306 } | |
1307 } | |
1308 | |
1309 /* | |
21 | 1310 * Throw the current exception through the specified cstack. Common routine |
1311 * for ":throw" (user exception) and error and interrupt exceptions. Also | |
1312 * used for rethrowing an uncaught exception. | |
7 | 1313 */ |
1314 void | |
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1315 do_throw(struct condstack *cstack) |
7 | 1316 { |
1317 int idx; | |
1318 int inactivate_try = FALSE; | |
1319 | |
1320 /* | |
1321 * Cleanup and inactivate up to the next surrounding try conditional that | |
1322 * is not in its finally clause. Normally, do not inactivate the try | |
1323 * conditional itself, so that its ACTIVE flag can be tested below. But | |
1324 * if a previous error or interrupt has not been converted to an exception, | |
1325 * inactivate the try conditional, too, as if the conversion had been done, | |
21 | 1326 * and reset the did_emsg or got_int flag, so this won't happen again at |
1327 * the next surrounding try conditional. | |
7 | 1328 */ |
1880 | 1329 #ifndef THROW_ON_ERROR_TRUE |
7 | 1330 if (did_emsg && !THROW_ON_ERROR) |
1331 { | |
1332 inactivate_try = TRUE; | |
1333 did_emsg = FALSE; | |
1334 } | |
1880 | 1335 #endif |
1336 #ifndef THROW_ON_INTERRUPT_TRUE | |
7 | 1337 if (got_int && !THROW_ON_INTERRUPT) |
1338 { | |
1339 inactivate_try = TRUE; | |
1340 got_int = FALSE; | |
1341 } | |
1880 | 1342 #endif |
7 | 1343 idx = cleanup_conditionals(cstack, 0, inactivate_try); |
1344 if (idx >= 0) | |
1345 { | |
1346 /* | |
1347 * If this try conditional is active and we are before its first | |
21 | 1348 * ":catch", set THROWN so that the ":catch" commands will check |
1349 * whether the exception matches. When the exception came from any of | |
1350 * the catch clauses, it will be made pending at the ":finally" (if | |
1351 * present) and rethrown at the ":endtry". This will also happen if | |
1352 * the try conditional is inactive. This is the case when we are | |
1353 * throwing an exception due to an error or interrupt on the way from | |
1354 * a preceding ":continue", ":break", ":return", ":finish", error or | |
1355 * interrupt (not converted to an exception) to the finally clause or | |
1356 * from a preceding throw of a user or error or interrupt exception to | |
1357 * the matching catch clause or the finally clause. | |
7 | 1358 */ |
1359 if (!(cstack->cs_flags[idx] & CSF_CAUGHT)) | |
1360 { | |
1361 if (cstack->cs_flags[idx] & CSF_ACTIVE) | |
1362 cstack->cs_flags[idx] |= CSF_THROWN; | |
1363 else | |
1364 /* THROWN may have already been set for a catchable exception | |
1365 * that has been discarded. Ensure it is reset for the new | |
1366 * exception. */ | |
1367 cstack->cs_flags[idx] &= ~CSF_THROWN; | |
1368 } | |
1369 cstack->cs_flags[idx] &= ~CSF_ACTIVE; | |
1370 cstack->cs_exception[idx] = current_exception; | |
1371 } | |
1372 #if 0 | |
21 | 1373 /* TODO: Add optimization below. Not yet done because of interface |
1374 * problems to eval.c and ex_cmds2.c. (Servatius) */ | |
7 | 1375 else |
1376 { | |
1377 /* | |
1378 * There are no catch clauses to check or finally clauses to execute. | |
1379 * End the current script or function. The exception will be rethrown | |
1380 * in the caller. | |
1381 */ | |
1382 if (getline_equal(eap->getline, eap->cookie, get_func_line)) | |
1383 current_funccal->returned = TRUE; | |
1384 elseif (eap->get_func_line == getsourceline) | |
1385 ((struct source_cookie *)eap->cookie)->finished = TRUE; | |
1386 } | |
1387 #endif | |
1388 | |
1389 did_throw = TRUE; | |
1390 } | |
1391 | |
1392 /* | |
1393 * ":try" | |
1394 */ | |
1395 void | |
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|
1396 ex_try(exarg_T *eap) |
7 | 1397 { |
1398 int skip; | |
1399 struct condstack *cstack = eap->cstack; | |
1400 | |
1401 if (cstack->cs_idx == CSTACK_LEN - 1) | |
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1402 eap->errmsg = N_("E601: :try nesting too deep"); |
7 | 1403 else |
1404 { | |
1405 ++cstack->cs_idx; | |
1406 ++cstack->cs_trylevel; | |
1407 cstack->cs_flags[cstack->cs_idx] = CSF_TRY; | |
1408 cstack->cs_pending[cstack->cs_idx] = CSTP_NONE; | |
1409 | |
1410 /* | |
1411 * Don't do something after an error, interrupt, or throw, or when there | |
1412 * is a surrounding conditional and it was not active. | |
1413 */ | |
1414 skip = did_emsg || got_int || did_throw || (cstack->cs_idx > 0 | |
1415 && !(cstack->cs_flags[cstack->cs_idx - 1] & CSF_ACTIVE)); | |
1416 | |
1417 if (!skip) | |
1418 { | |
1419 /* Set ACTIVE and TRUE. TRUE means that the corresponding ":catch" | |
1420 * commands should check for a match if an exception is thrown and | |
1421 * that the finally clause needs to be executed. */ | |
1422 cstack->cs_flags[cstack->cs_idx] |= CSF_ACTIVE | CSF_TRUE; | |
1423 | |
1424 /* | |
1425 * ":silent!", even when used in a try conditional, disables | |
1426 * displaying of error messages and conversion of errors to | |
1427 * exceptions. When the silent commands again open a try | |
1428 * conditional, save "emsg_silent" and reset it so that errors are | |
1429 * again converted to exceptions. The value is restored when that | |
1430 * try conditional is left. If it is left normally, the commands | |
1431 * following the ":endtry" are again silent. If it is left by | |
1432 * a ":continue", ":break", ":return", or ":finish", the commands | |
1433 * executed next are again silent. If it is left due to an | |
1434 * aborting error, an interrupt, or an exception, restoring | |
1435 * "emsg_silent" does not matter since we are already in the | |
1436 * aborting state and/or the exception has already been thrown. | |
1437 * The effect is then just freeing the memory that was allocated | |
1438 * to save the value. | |
1439 */ | |
1440 if (emsg_silent) | |
1441 { | |
1442 eslist_T *elem; | |
1443 | |
1444 elem = (eslist_T *)alloc((unsigned)sizeof(struct eslist_elem)); | |
1445 if (elem == NULL) | |
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1446 emsg(_(e_outofmem)); |
7 | 1447 else |
1448 { | |
1449 elem->saved_emsg_silent = emsg_silent; | |
1450 elem->next = cstack->cs_emsg_silent_list; | |
1451 cstack->cs_emsg_silent_list = elem; | |
1452 cstack->cs_flags[cstack->cs_idx] |= CSF_SILENT; | |
1453 emsg_silent = 0; | |
1454 } | |
1455 } | |
1456 } | |
1457 | |
1458 } | |
1459 } | |
1460 | |
1461 /* | |
1462 * ":catch /{pattern}/" and ":catch" | |
1463 */ | |
1464 void | |
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|
1465 ex_catch(exarg_T *eap) |
7 | 1466 { |
1467 int idx = 0; | |
1468 int give_up = FALSE; | |
1469 int skip = FALSE; | |
1470 int caught = FALSE; | |
1471 char_u *end; | |
1472 int save_char = 0; | |
1473 char_u *save_cpo; | |
1474 regmatch_T regmatch; | |
1475 int prev_got_int; | |
1476 struct condstack *cstack = eap->cstack; | |
1477 char_u *pat; | |
1478 | |
1479 if (cstack->cs_trylevel <= 0 || cstack->cs_idx < 0) | |
1480 { | |
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1481 eap->errmsg = N_("E603: :catch without :try"); |
7 | 1482 give_up = TRUE; |
1483 } | |
1484 else | |
1485 { | |
1486 if (!(cstack->cs_flags[cstack->cs_idx] & CSF_TRY)) | |
1487 { | |
1488 /* Report what's missing if the matching ":try" is not in its | |
1489 * finally clause. */ | |
75 | 1490 eap->errmsg = get_end_emsg(cstack); |
7 | 1491 skip = TRUE; |
1492 } | |
1493 for (idx = cstack->cs_idx; idx > 0; --idx) | |
1494 if (cstack->cs_flags[idx] & CSF_TRY) | |
1495 break; | |
1496 if (cstack->cs_flags[idx] & CSF_FINALLY) | |
1497 { | |
1498 /* Give up for a ":catch" after ":finally" and ignore it. | |
1499 * Just parse. */ | |
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1500 eap->errmsg = N_("E604: :catch after :finally"); |
7 | 1501 give_up = TRUE; |
1502 } | |
79 | 1503 else |
75 | 1504 rewind_conditionals(cstack, idx, CSF_WHILE | CSF_FOR, |
1505 &cstack->cs_looplevel); | |
7 | 1506 } |
1507 | |
1508 if (ends_excmd(*eap->arg)) /* no argument, catch all errors */ | |
1509 { | |
1510 pat = (char_u *)".*"; | |
1511 end = NULL; | |
1512 eap->nextcmd = find_nextcmd(eap->arg); | |
1513 } | |
1514 else | |
1515 { | |
1516 pat = eap->arg + 1; | |
1517 end = skip_regexp(pat, *eap->arg, TRUE, NULL); | |
1518 } | |
1519 | |
1520 if (!give_up) | |
1521 { | |
1522 /* | |
1523 * Don't do something when no exception has been thrown or when the | |
1524 * corresponding try block never got active (because of an inactive | |
1525 * surrounding conditional or after an error or interrupt or throw). | |
1526 */ | |
1527 if (!did_throw || !(cstack->cs_flags[idx] & CSF_TRUE)) | |
1528 skip = TRUE; | |
1529 | |
1530 /* | |
1531 * Check for a match only if an exception is thrown but not caught by | |
1532 * a previous ":catch". An exception that has replaced a discarded | |
1533 * exception is not checked (THROWN is not set then). | |
1534 */ | |
1535 if (!skip && (cstack->cs_flags[idx] & CSF_THROWN) | |
1536 && !(cstack->cs_flags[idx] & CSF_CAUGHT)) | |
1537 { | |
1538 if (end != NULL && *end != NUL && !ends_excmd(*skipwhite(end + 1))) | |
1539 { | |
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1540 emsg(_(e_trailing)); |
7 | 1541 return; |
1542 } | |
1543 | |
1544 /* When debugging or a breakpoint was encountered, display the | |
1545 * debug prompt (if not already done) before checking for a match. | |
1546 * This is a helpful hint for the user when the regular expression | |
1547 * matching fails. Handle a ">quit" debug command as if an | |
1548 * interrupt had occurred before the ":catch". That is, discard | |
1549 * the original exception, replace it by an interrupt exception, | |
1550 * and don't catch it in this try block. */ | |
1551 if (!dbg_check_skipped(eap) || !do_intthrow(cstack)) | |
1552 { | |
1553 /* Terminate the pattern and avoid the 'l' flag in 'cpoptions' | |
1554 * while compiling it. */ | |
1555 if (end != NULL) | |
1556 { | |
1557 save_char = *end; | |
1558 *end = NUL; | |
1559 } | |
1560 save_cpo = p_cpo; | |
1561 p_cpo = (char_u *)""; | |
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1562 /* Disable error messages, it will make current_exception |
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1563 * invalid. */ |
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1564 ++emsg_off; |
1333 | 1565 regmatch.regprog = vim_regcomp(pat, RE_MAGIC + RE_STRING); |
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|
1566 --emsg_off; |
7 | 1567 regmatch.rm_ic = FALSE; |
1568 if (end != NULL) | |
1569 *end = save_char; | |
1570 p_cpo = save_cpo; | |
1571 if (regmatch.regprog == NULL) | |
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1572 semsg(_(e_invarg2), pat); |
7 | 1573 else |
1574 { | |
1575 /* | |
1576 * Save the value of got_int and reset it. We don't want | |
1577 * a previous interruption cancel matching, only hitting | |
1578 * CTRL-C while matching should abort it. | |
1579 */ | |
1580 prev_got_int = got_int; | |
1581 got_int = FALSE; | |
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1582 caught = vim_regexec_nl(®match, |
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1583 (char_u *)current_exception->value, (colnr_T)0); |
7 | 1584 got_int |= prev_got_int; |
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1585 vim_regfree(regmatch.regprog); |
7 | 1586 } |
1587 } | |
1588 } | |
1589 | |
1590 if (caught) | |
1591 { | |
1592 /* Make this ":catch" clause active and reset did_emsg, got_int, | |
1593 * and did_throw. Put the exception on the caught stack. */ | |
1594 cstack->cs_flags[idx] |= CSF_ACTIVE | CSF_CAUGHT; | |
1595 did_emsg = got_int = did_throw = FALSE; | |
1596 catch_exception((except_T *)cstack->cs_exception[idx]); | |
1597 /* It's mandatory that the current exception is stored in the cstack | |
1598 * so that it can be discarded at the next ":catch", ":finally", or | |
1599 * ":endtry" or when the catch clause is left by a ":continue", | |
1600 * ":break", ":return", ":finish", error, interrupt, or another | |
1601 * exception. */ | |
1602 if (cstack->cs_exception[cstack->cs_idx] != current_exception) | |
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|
1603 internal_error("ex_catch()"); |
7 | 1604 } |
1605 else | |
1606 { | |
1607 /* | |
1608 * If there is a preceding catch clause and it caught the exception, | |
1609 * finish the exception now. This happens also after errors except | |
1610 * when this ":catch" was after the ":finally" or not within | |
1611 * a ":try". Make the try conditional inactive so that the | |
1612 * following catch clauses are skipped. On an error or interrupt | |
1613 * after the preceding try block or catch clause was left by | |
1614 * a ":continue", ":break", ":return", or ":finish", discard the | |
1615 * pending action. | |
1616 */ | |
1617 cleanup_conditionals(cstack, CSF_TRY, TRUE); | |
1618 } | |
1619 } | |
1620 | |
1621 if (end != NULL) | |
1622 eap->nextcmd = find_nextcmd(end); | |
1623 } | |
1624 | |
1625 /* | |
1626 * ":finally" | |
1627 */ | |
1628 void | |
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changeset
|
1629 ex_finally(exarg_T *eap) |
7 | 1630 { |
1631 int idx; | |
1632 int skip = FALSE; | |
1633 int pending = CSTP_NONE; | |
1634 struct condstack *cstack = eap->cstack; | |
1635 | |
1636 if (cstack->cs_trylevel <= 0 || cstack->cs_idx < 0) | |
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1637 eap->errmsg = N_("E606: :finally without :try"); |
7 | 1638 else |
1639 { | |
1640 if (!(cstack->cs_flags[cstack->cs_idx] & CSF_TRY)) | |
1641 { | |
75 | 1642 eap->errmsg = get_end_emsg(cstack); |
7 | 1643 for (idx = cstack->cs_idx - 1; idx > 0; --idx) |
1644 if (cstack->cs_flags[idx] & CSF_TRY) | |
1645 break; | |
1646 /* Make this error pending, so that the commands in the following | |
1647 * finally clause can be executed. This overrules also a pending | |
1648 * ":continue", ":break", ":return", or ":finish". */ | |
1649 pending = CSTP_ERROR; | |
1650 } | |
1651 else | |
1652 idx = cstack->cs_idx; | |
1653 | |
1654 if (cstack->cs_flags[idx] & CSF_FINALLY) | |
1655 { | |
1656 /* Give up for a multiple ":finally" and ignore it. */ | |
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1657 eap->errmsg = N_("E607: multiple :finally"); |
7 | 1658 return; |
1659 } | |
79 | 1660 rewind_conditionals(cstack, idx, CSF_WHILE | CSF_FOR, |
75 | 1661 &cstack->cs_looplevel); |
7 | 1662 |
1663 /* | |
1664 * Don't do something when the corresponding try block never got active | |
1665 * (because of an inactive surrounding conditional or after an error or | |
1666 * interrupt or throw) or for a ":finally" without ":try" or a multiple | |
1667 * ":finally". After every other error (did_emsg or the conditional | |
1668 * errors detected above) or after an interrupt (got_int) or an | |
1669 * exception (did_throw), the finally clause must be executed. | |
1670 */ | |
1671 skip = !(cstack->cs_flags[cstack->cs_idx] & CSF_TRUE); | |
1672 | |
1673 if (!skip) | |
1674 { | |
1675 /* When debugging or a breakpoint was encountered, display the | |
1676 * debug prompt (if not already done). The user then knows that the | |
1677 * finally clause is executed. */ | |
1678 if (dbg_check_skipped(eap)) | |
1679 { | |
1680 /* Handle a ">quit" debug command as if an interrupt had | |
1681 * occurred before the ":finally". That is, discard the | |
1682 * original exception and replace it by an interrupt | |
1683 * exception. */ | |
1684 (void)do_intthrow(cstack); | |
1685 } | |
1686 | |
1687 /* | |
1688 * If there is a preceding catch clause and it caught the exception, | |
1689 * finish the exception now. This happens also after errors except | |
1690 * when this is a multiple ":finally" or one not within a ":try". | |
1691 * After an error or interrupt, this also discards a pending | |
1692 * ":continue", ":break", ":finish", or ":return" from the preceding | |
1693 * try block or catch clause. | |
1694 */ | |
1695 cleanup_conditionals(cstack, CSF_TRY, FALSE); | |
1696 | |
1697 /* | |
1698 * Make did_emsg, got_int, did_throw pending. If set, they overrule | |
1699 * a pending ":continue", ":break", ":return", or ":finish". Then | |
1700 * we have particularly to discard a pending return value (as done | |
1701 * by the call to cleanup_conditionals() above when did_emsg or | |
1702 * got_int is set). The pending values are restored by the | |
1703 * ":endtry", except if there is a new error, interrupt, exception, | |
1704 * ":continue", ":break", ":return", or ":finish" in the following | |
75 | 1705 * finally clause. A missing ":endwhile", ":endfor" or ":endif" |
1706 * detected here is treated as if did_emsg and did_throw had | |
1707 * already been set, respectively in case that the error is not | |
1708 * converted to an exception, did_throw had already been unset. | |
1709 * We must not set did_emsg here since that would suppress the | |
1710 * error message. | |
7 | 1711 */ |
1712 if (pending == CSTP_ERROR || did_emsg || got_int || did_throw) | |
1713 { | |
1714 if (cstack->cs_pending[cstack->cs_idx] == CSTP_RETURN) | |
1715 { | |
1716 report_discard_pending(CSTP_RETURN, | |
68 | 1717 cstack->cs_rettv[cstack->cs_idx]); |
1718 discard_pending_return(cstack->cs_rettv[cstack->cs_idx]); | |
7 | 1719 } |
1720 if (pending == CSTP_ERROR && !did_emsg) | |
1721 pending |= (THROW_ON_ERROR) ? CSTP_THROW : 0; | |
1722 else | |
1723 pending |= did_throw ? CSTP_THROW : 0; | |
1724 pending |= did_emsg ? CSTP_ERROR : 0; | |
1725 pending |= got_int ? CSTP_INTERRUPT : 0; | |
1726 cstack->cs_pending[cstack->cs_idx] = pending; | |
1727 | |
1728 /* It's mandatory that the current exception is stored in the | |
1729 * cstack so that it can be rethrown at the ":endtry" or be | |
1730 * discarded if the finally clause is left by a ":continue", | |
1731 * ":break", ":return", ":finish", error, interrupt, or another | |
1732 * exception. When emsg() is called for a missing ":endif" or | |
75 | 1733 * a missing ":endwhile"/":endfor" detected here, the |
1734 * exception will be discarded. */ | |
79 | 1735 if (did_throw && cstack->cs_exception[cstack->cs_idx] |
1736 != current_exception) | |
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diff
changeset
|
1737 internal_error("ex_finally()"); |
7 | 1738 } |
1739 | |
1740 /* | |
75 | 1741 * Set CSL_HAD_FINA, so do_cmdline() will reset did_emsg, |
22 | 1742 * got_int, and did_throw and make the finally clause active. |
1743 * This will happen after emsg() has been called for a missing | |
75 | 1744 * ":endif" or a missing ":endwhile"/":endfor" detected here, so |
1745 * that the following finally clause will be executed even then. | |
7 | 1746 */ |
75 | 1747 cstack->cs_lflags |= CSL_HAD_FINA; |
7 | 1748 } |
1749 } | |
1750 } | |
1751 | |
1752 /* | |
1753 * ":endtry" | |
1754 */ | |
1755 void | |
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diff
changeset
|
1756 ex_endtry(exarg_T *eap) |
7 | 1757 { |
1758 int idx; | |
1759 int skip; | |
1760 int rethrow = FALSE; | |
1761 int pending = CSTP_NONE; | |
68 | 1762 void *rettv = NULL; |
7 | 1763 struct condstack *cstack = eap->cstack; |
1764 | |
1765 if (cstack->cs_trylevel <= 0 || cstack->cs_idx < 0) | |
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1766 eap->errmsg = N_("E602: :endtry without :try"); |
7 | 1767 else |
1768 { | |
1769 /* | |
1770 * Don't do something after an error, interrupt or throw in the try | |
1771 * block, catch clause, or finally clause preceding this ":endtry" or | |
1772 * when an error or interrupt occurred after a ":continue", ":break", | |
1773 * ":return", or ":finish" in a try block or catch clause preceding this | |
1774 * ":endtry" or when the try block never got active (because of an | |
1775 * inactive surrounding conditional or after an error or interrupt or | |
1776 * throw) or when there is a surrounding conditional and it has been | |
1777 * made inactive by a ":continue", ":break", ":return", or ":finish" in | |
1778 * the finally clause. The latter case need not be tested since then | |
1779 * anything pending has already been discarded. */ | |
1780 skip = did_emsg || got_int || did_throw || | |
1781 !(cstack->cs_flags[cstack->cs_idx] & CSF_TRUE); | |
1782 | |
1783 if (!(cstack->cs_flags[cstack->cs_idx] & CSF_TRY)) | |
1784 { | |
75 | 1785 eap->errmsg = get_end_emsg(cstack); |
7 | 1786 /* Find the matching ":try" and report what's missing. */ |
1787 idx = cstack->cs_idx; | |
1788 do | |
1789 --idx; | |
1790 while (idx > 0 && !(cstack->cs_flags[idx] & CSF_TRY)); | |
75 | 1791 rewind_conditionals(cstack, idx, CSF_WHILE | CSF_FOR, |
1792 &cstack->cs_looplevel); | |
7 | 1793 skip = TRUE; |
1794 | |
1795 /* | |
1796 * If an exception is being thrown, discard it to prevent it from | |
1797 * being rethrown at the end of this function. It would be | |
1798 * discarded by the error message, anyway. Resets did_throw. | |
1799 * This does not affect the script termination due to the error | |
1800 * since "trylevel" is decremented after emsg() has been called. | |
1801 */ | |
1802 if (did_throw) | |
1803 discard_current_exception(); | |
1804 } | |
1805 else | |
1806 { | |
1807 idx = cstack->cs_idx; | |
1808 | |
1809 /* | |
1810 * If we stopped with the exception currently being thrown at this | |
1811 * try conditional since we didn't know that it doesn't have | |
1812 * a finally clause, we need to rethrow it after closing the try | |
1813 * conditional. | |
1814 */ | |
1815 if (did_throw && (cstack->cs_flags[idx] & CSF_TRUE) | |
1816 && !(cstack->cs_flags[idx] & CSF_FINALLY)) | |
1817 rethrow = TRUE; | |
1818 } | |
1819 | |
1820 /* If there was no finally clause, show the user when debugging or | |
1821 * a breakpoint was encountered that the end of the try conditional has | |
1822 * been reached: display the debug prompt (if not already done). Do | |
1823 * this on normal control flow or when an exception was thrown, but not | |
1824 * on an interrupt or error not converted to an exception or when | |
1825 * a ":break", ":continue", ":return", or ":finish" is pending. These | |
1826 * actions are carried out immediately. | |
1827 */ | |
1828 if ((rethrow || (!skip | |
1829 && !(cstack->cs_flags[idx] & CSF_FINALLY) | |
1830 && !cstack->cs_pending[idx])) | |
1831 && dbg_check_skipped(eap)) | |
1832 { | |
1833 /* Handle a ">quit" debug command as if an interrupt had occurred | |
1834 * before the ":endtry". That is, throw an interrupt exception and | |
1835 * set "skip" and "rethrow". */ | |
1836 if (got_int) | |
1837 { | |
1838 skip = TRUE; | |
1839 (void)do_intthrow(cstack); | |
1840 /* The do_intthrow() call may have reset did_throw or | |
1841 * cstack->cs_pending[idx].*/ | |
1842 rethrow = FALSE; | |
1843 if (did_throw && !(cstack->cs_flags[idx] & CSF_FINALLY)) | |
1844 rethrow = TRUE; | |
1845 } | |
1846 } | |
1847 | |
1848 /* | |
1849 * If a ":return" is pending, we need to resume it after closing the | |
1850 * try conditional; remember the return value. If there was a finally | |
1851 * clause making an exception pending, we need to rethrow it. Make it | |
1852 * the exception currently being thrown. | |
1853 */ | |
1854 if (!skip) | |
1855 { | |
1856 pending = cstack->cs_pending[idx]; | |
1857 cstack->cs_pending[idx] = CSTP_NONE; | |
1858 if (pending == CSTP_RETURN) | |
68 | 1859 rettv = cstack->cs_rettv[idx]; |
7 | 1860 else if (pending & CSTP_THROW) |
1861 current_exception = cstack->cs_exception[idx]; | |
1862 } | |
1863 | |
1864 /* | |
1865 * Discard anything pending on an error, interrupt, or throw in the | |
1866 * finally clause. If there was no ":finally", discard a pending | |
1867 * ":continue", ":break", ":return", or ":finish" if an error or | |
1868 * interrupt occurred afterwards, but before the ":endtry" was reached. | |
1869 * If an exception was caught by the last of the catch clauses and there | |
1870 * was no finally clause, finish the exception now. This happens also | |
1871 * after errors except when this ":endtry" is not within a ":try". | |
1872 * Restore "emsg_silent" if it has been reset by this try conditional. | |
1873 */ | |
840 | 1874 (void)cleanup_conditionals(cstack, CSF_TRY | CSF_SILENT, TRUE); |
7 | 1875 |
1876 --cstack->cs_idx; | |
1877 --cstack->cs_trylevel; | |
1878 | |
1879 if (!skip) | |
1880 { | |
1881 report_resume_pending(pending, | |
68 | 1882 (pending == CSTP_RETURN) ? rettv : |
7 | 1883 (pending & CSTP_THROW) ? (void *)current_exception : NULL); |
1884 switch (pending) | |
1885 { | |
1886 case CSTP_NONE: | |
1887 break; | |
1888 | |
1889 /* Reactivate a pending ":continue", ":break", ":return", | |
1890 * ":finish" from the try block or a catch clause of this try | |
1891 * conditional. This is skipped, if there was an error in an | |
1892 * (unskipped) conditional command or an interrupt afterwards | |
1893 * or if the finally clause is present and executed a new error, | |
1894 * interrupt, throw, ":continue", ":break", ":return", or | |
1895 * ":finish". */ | |
1896 case CSTP_CONTINUE: | |
1897 ex_continue(eap); | |
1898 break; | |
1899 case CSTP_BREAK: | |
1900 ex_break(eap); | |
1901 break; | |
1902 case CSTP_RETURN: | |
68 | 1903 do_return(eap, FALSE, FALSE, rettv); |
7 | 1904 break; |
1905 case CSTP_FINISH: | |
1906 do_finish(eap, FALSE); | |
1907 break; | |
1908 | |
1909 /* When the finally clause was entered due to an error, | |
1910 * interrupt or throw (as opposed to a ":continue", ":break", | |
1911 * ":return", or ":finish"), restore the pending values of | |
1912 * did_emsg, got_int, and did_throw. This is skipped, if there | |
1913 * was a new error, interrupt, throw, ":continue", ":break", | |
1914 * ":return", or ":finish". in the finally clause. */ | |
1915 default: | |
1916 if (pending & CSTP_ERROR) | |
1917 did_emsg = TRUE; | |
1918 if (pending & CSTP_INTERRUPT) | |
1919 got_int = TRUE; | |
1920 if (pending & CSTP_THROW) | |
1921 rethrow = TRUE; | |
1922 break; | |
1923 } | |
1924 } | |
1925 | |
1926 if (rethrow) | |
1927 /* Rethrow the current exception (within this cstack). */ | |
1928 do_throw(cstack); | |
1929 } | |
1930 } | |
1931 | |
1932 /* | |
36 | 1933 * enter_cleanup() and leave_cleanup() |
1934 * | |
1935 * Functions to be called before/after invoking a sequence of autocommands for | |
1936 * cleanup for a failed command. (Failure means here that a call to emsg() | |
1937 * has been made, an interrupt occurred, or there is an uncaught exception | |
1938 * from a previous autocommand execution of the same command.) | |
24 | 1939 * |
36 | 1940 * Call enter_cleanup() with a pointer to a cleanup_T and pass the same |
1941 * pointer to leave_cleanup(). The cleanup_T structure stores the pending | |
1942 * error/interrupt/exception state. | |
1943 */ | |
1944 | |
1945 /* | |
1946 * This function works a bit like ex_finally() except that there was not | |
1947 * actually an extra try block around the part that failed and an error or | |
1948 * interrupt has not (yet) been converted to an exception. This function | |
1949 * saves the error/interrupt/ exception state and prepares for the call to | |
1950 * do_cmdline() that is going to be made for the cleanup autocommand | |
1951 * execution. | |
24 | 1952 */ |
1953 void | |
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1954 enter_cleanup(cleanup_T *csp) |
24 | 1955 { |
1956 int pending = CSTP_NONE; | |
1957 | |
1958 /* | |
1959 * Postpone did_emsg, got_int, did_throw. The pending values will be | |
1960 * restored by leave_cleanup() except if there was an aborting error, | |
1961 * interrupt, or uncaught exception after this function ends. | |
1962 */ | |
1963 if (did_emsg || got_int || did_throw || need_rethrow) | |
1964 { | |
1965 csp->pending = (did_emsg ? CSTP_ERROR : 0) | |
1966 | (got_int ? CSTP_INTERRUPT : 0) | |
1967 | (did_throw ? CSTP_THROW : 0) | |
1968 | (need_rethrow ? CSTP_THROW : 0); | |
1969 | |
1970 /* If we are currently throwing an exception (did_throw), save it as | |
1971 * well. On an error not yet converted to an exception, update | |
1972 * "force_abort" and reset "cause_abort" (as do_errthrow() would do). | |
1973 * This is needed for the do_cmdline() call that is going to be made | |
1974 * for autocommand execution. We need not save *msg_list because | |
1975 * there is an extra instance for every call of do_cmdline(), anyway. | |
1976 */ | |
1977 if (did_throw || need_rethrow) | |
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1978 { |
24 | 1979 csp->exception = current_exception; |
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1980 current_exception = NULL; |
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1981 } |
24 | 1982 else |
1983 { | |
1984 csp->exception = NULL; | |
1985 if (did_emsg) | |
1986 { | |
1987 force_abort |= cause_abort; | |
1988 cause_abort = FALSE; | |
1989 } | |
1990 } | |
1991 did_emsg = got_int = did_throw = need_rethrow = FALSE; | |
1992 | |
1993 /* Report if required by the 'verbose' option or when debugging. */ | |
1994 report_make_pending(pending, csp->exception); | |
1995 } | |
1996 else | |
1997 { | |
1998 csp->pending = CSTP_NONE; | |
1999 csp->exception = NULL; | |
2000 } | |
2001 } | |
2002 | |
2003 /* | |
36 | 2004 * See comment above enter_cleanup() for how this function is used. |
2005 * | |
2006 * This function is a bit like ex_endtry() except that there was not actually | |
2007 * an extra try block around the part that failed and an error or interrupt | |
2008 * had not (yet) been converted to an exception when the cleanup autocommand | |
2009 * sequence was invoked. | |
2010 * | |
2011 * This function has to be called with the address of the cleanup_T structure | |
2012 * filled by enter_cleanup() as an argument; it restores the error/interrupt/ | |
2013 * exception state saved by that function - except there was an aborting | |
2014 * error, an interrupt or an uncaught exception during execution of the | |
2015 * cleanup autocommands. In the latter case, the saved error/interrupt/ | |
2016 * exception state is discarded. | |
24 | 2017 */ |
2018 void | |
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2019 leave_cleanup(cleanup_T *csp) |
24 | 2020 { |
2021 int pending = csp->pending; | |
2022 | |
2023 if (pending == CSTP_NONE) /* nothing to do */ | |
2024 return; | |
2025 | |
2026 /* If there was an aborting error, an interrupt, or an uncaught exception | |
2027 * after the corresponding call to enter_cleanup(), discard what has been | |
2028 * made pending by it. Report this to the user if required by the | |
2029 * 'verbose' option or when debugging. */ | |
2030 if (aborting() || need_rethrow) | |
2031 { | |
2032 if (pending & CSTP_THROW) | |
2033 /* Cancel the pending exception (includes report). */ | |
2034 discard_exception((except_T *)csp->exception, FALSE); | |
2035 else | |
2036 report_discard_pending(pending, NULL); | |
2037 | |
2038 /* If an error was about to be converted to an exception when | |
2039 * enter_cleanup() was called, free the message list. */ | |
1046 | 2040 if (msg_list != NULL) |
5517 | 2041 free_global_msglist(); |
24 | 2042 } |
2043 | |
2044 /* | |
2045 * If there was no new error, interrupt, or throw between the calls | |
2046 * to enter_cleanup() and leave_cleanup(), restore the pending | |
2047 * error/interrupt/exception state. | |
2048 */ | |
2049 else | |
2050 { | |
2051 /* | |
2052 * If there was an exception being thrown when enter_cleanup() was | |
2053 * called, we need to rethrow it. Make it the exception currently | |
2054 * being thrown. | |
2055 */ | |
2056 if (pending & CSTP_THROW) | |
2057 current_exception = csp->exception; | |
2058 | |
2059 /* | |
2060 * If an error was about to be converted to an exception when | |
2061 * enter_cleanup() was called, let "cause_abort" take the part of | |
2062 * "force_abort" (as done by cause_errthrow()). | |
2063 */ | |
2064 else if (pending & CSTP_ERROR) | |
2065 { | |
2066 cause_abort = force_abort; | |
2067 force_abort = FALSE; | |
2068 } | |
2069 | |
2070 /* | |
2071 * Restore the pending values of did_emsg, got_int, and did_throw. | |
2072 */ | |
2073 if (pending & CSTP_ERROR) | |
2074 did_emsg = TRUE; | |
2075 if (pending & CSTP_INTERRUPT) | |
2076 got_int = TRUE; | |
2077 if (pending & CSTP_THROW) | |
2078 need_rethrow = TRUE; /* did_throw will be set by do_one_cmd() */ | |
2079 | |
2080 /* Report if required by the 'verbose' option or when debugging. */ | |
2081 report_resume_pending(pending, | |
36 | 2082 (pending & CSTP_THROW) ? (void *)current_exception : NULL); |
24 | 2083 } |
2084 } | |
2085 | |
2086 | |
2087 /* | |
7 | 2088 * Make conditionals inactive and discard what's pending in finally clauses |
2089 * until the conditional type searched for or a try conditional not in its | |
79 | 2090 * finally clause is reached. If this is in an active catch clause, finish |
2091 * the caught exception. | |
2092 * Return the cstack index where the search stopped. | |
75 | 2093 * Values used for "searched_cond" are (CSF_WHILE | CSF_FOR) or CSF_TRY or 0, |
2094 * the latter meaning the innermost try conditional not in its finally clause. | |
2095 * "inclusive" tells whether the conditional searched for should be made | |
4352 | 2096 * inactive itself (a try conditional not in its finally clause possibly find |
75 | 2097 * before is always made inactive). If "inclusive" is TRUE and |
2098 * "searched_cond" is CSF_TRY|CSF_SILENT, the saved former value of | |
2099 * "emsg_silent", if reset when the try conditional finally reached was | |
4352 | 2100 * entered, is restored (used by ex_endtry()). This is normally done only |
75 | 2101 * when such a try conditional is left. |
7 | 2102 */ |
2103 int | |
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2104 cleanup_conditionals( |
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2105 struct condstack *cstack, |
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2106 int searched_cond, |
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2107 int inclusive) |
7 | 2108 { |
2109 int idx; | |
2110 int stop = FALSE; | |
2111 | |
2112 for (idx = cstack->cs_idx; idx >= 0; --idx) | |
2113 { | |
2114 if (cstack->cs_flags[idx] & CSF_TRY) | |
2115 { | |
2116 /* | |
2117 * Discard anything pending in a finally clause and continue the | |
2118 * search. There may also be a pending ":continue", ":break", | |
2119 * ":return", or ":finish" before the finally clause. We must not | |
2120 * discard it, unless an error or interrupt occurred afterwards. | |
2121 */ | |
359 | 2122 if (did_emsg || got_int || (cstack->cs_flags[idx] & CSF_FINALLY)) |
7 | 2123 { |
2124 switch (cstack->cs_pending[idx]) | |
2125 { | |
2126 case CSTP_NONE: | |
2127 break; | |
2128 | |
2129 case CSTP_CONTINUE: | |
2130 case CSTP_BREAK: | |
2131 case CSTP_FINISH: | |
2132 report_discard_pending(cstack->cs_pending[idx], NULL); | |
2133 cstack->cs_pending[idx] = CSTP_NONE; | |
2134 break; | |
2135 | |
2136 case CSTP_RETURN: | |
2137 report_discard_pending(CSTP_RETURN, | |
68 | 2138 cstack->cs_rettv[idx]); |
2139 discard_pending_return(cstack->cs_rettv[idx]); | |
7 | 2140 cstack->cs_pending[idx] = CSTP_NONE; |
2141 break; | |
2142 | |
2143 default: | |
2144 if (cstack->cs_flags[idx] & CSF_FINALLY) | |
2145 { | |
2146 if (cstack->cs_pending[idx] & CSTP_THROW) | |
2147 { | |
2148 /* Cancel the pending exception. This is in the | |
2149 * finally clause, so that the stack of the | |
2150 * caught exceptions is not involved. */ | |
2151 discard_exception((except_T *) | |
2152 cstack->cs_exception[idx], | |
2153 FALSE); | |
2154 } | |
2155 else | |
2156 report_discard_pending(cstack->cs_pending[idx], | |
2157 NULL); | |
2158 cstack->cs_pending[idx] = CSTP_NONE; | |
2159 } | |
2160 break; | |
2161 } | |
2162 } | |
2163 | |
2164 /* | |
2165 * Stop at a try conditional not in its finally clause. If this try | |
2166 * conditional is in an active catch clause, finish the caught | |
2167 * exception. | |
2168 */ | |
2169 if (!(cstack->cs_flags[idx] & CSF_FINALLY)) | |
2170 { | |
2171 if ((cstack->cs_flags[idx] & CSF_ACTIVE) | |
2172 && (cstack->cs_flags[idx] & CSF_CAUGHT)) | |
2173 finish_exception((except_T *)cstack->cs_exception[idx]); | |
2174 /* Stop at this try conditional - except the try block never | |
2175 * got active (because of an inactive surrounding conditional | |
2176 * or when the ":try" appeared after an error or interrupt or | |
2177 * throw). */ | |
2178 if (cstack->cs_flags[idx] & CSF_TRUE) | |
2179 { | |
2180 if (searched_cond == 0 && !inclusive) | |
2181 break; | |
2182 stop = TRUE; | |
2183 } | |
2184 } | |
2185 } | |
2186 | |
2187 /* Stop on the searched conditional type (even when the surrounding | |
2188 * conditional is not active or something has been made pending). | |
2189 * If "inclusive" is TRUE and "searched_cond" is CSF_TRY|CSF_SILENT, | |
2190 * check first whether "emsg_silent" needs to be restored. */ | |
2191 if (cstack->cs_flags[idx] & searched_cond) | |
2192 { | |
2193 if (!inclusive) | |
2194 break; | |
2195 stop = TRUE; | |
2196 } | |
2197 cstack->cs_flags[idx] &= ~CSF_ACTIVE; | |
2198 if (stop && searched_cond != (CSF_TRY | CSF_SILENT)) | |
2199 break; | |
2200 | |
2201 /* | |
1214 | 2202 * When leaving a try conditional that reset "emsg_silent" on its |
2203 * entry after saving the original value, restore that value here and | |
2204 * free the memory used to store it. | |
7 | 2205 */ |
2206 if ((cstack->cs_flags[idx] & CSF_TRY) | |
359 | 2207 && (cstack->cs_flags[idx] & CSF_SILENT)) |
7 | 2208 { |
2209 eslist_T *elem; | |
2210 | |
2211 elem = cstack->cs_emsg_silent_list; | |
2212 cstack->cs_emsg_silent_list = elem->next; | |
2213 emsg_silent = elem->saved_emsg_silent; | |
2214 vim_free(elem); | |
2215 cstack->cs_flags[idx] &= ~CSF_SILENT; | |
2216 } | |
2217 if (stop) | |
2218 break; | |
2219 } | |
2220 return idx; | |
2221 } | |
2222 | |
2223 /* | |
75 | 2224 * Return an appropriate error message for a missing endwhile/endfor/endif. |
2225 */ | |
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2226 static char * |
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2227 get_end_emsg(struct condstack *cstack) |
75 | 2228 { |
2229 if (cstack->cs_flags[cstack->cs_idx] & CSF_WHILE) | |
2230 return e_endwhile; | |
2231 if (cstack->cs_flags[cstack->cs_idx] & CSF_FOR) | |
2232 return e_endfor; | |
2233 return e_endif; | |
2234 } | |
2235 | |
2236 | |
2237 /* | |
7 | 2238 * Rewind conditionals until index "idx" is reached. "cond_type" and |
2239 * "cond_level" specify a conditional type and the address of a level variable | |
2240 * which is to be decremented with each skipped conditional of the specified | |
2241 * type. | |
79 | 2242 * Also free "for info" structures where needed. |
7 | 2243 */ |
79 | 2244 void |
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2245 rewind_conditionals( |
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2246 struct condstack *cstack, |
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2247 int idx, |
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2248 int cond_type, |
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2249 int *cond_level) |
7 | 2250 { |
2251 while (cstack->cs_idx > idx) | |
2252 { | |
2253 if (cstack->cs_flags[cstack->cs_idx] & cond_type) | |
2254 --*cond_level; | |
79 | 2255 if (cstack->cs_flags[cstack->cs_idx] & CSF_FOR) |
2256 free_for_info(cstack->cs_forinfo[cstack->cs_idx]); | |
7 | 2257 --cstack->cs_idx; |
2258 } | |
2259 } | |
2260 | |
2261 /* | |
2262 * ":endfunction" when not after a ":function" | |
2263 */ | |
2264 void | |
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2265 ex_endfunction(exarg_T *eap UNUSED) |
7 | 2266 { |
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2267 emsg(_("E193: :endfunction not inside a function")); |
7 | 2268 } |
2269 | |
2270 /* | |
75 | 2271 * Return TRUE if the string "p" looks like a ":while" or ":for" command. |
7 | 2272 */ |
2273 int | |
7819
f86adafb28d4
commit https://github.com/vim/vim/commit/78c0b7d43e5048fd71d12816659667834170c76d
Christian Brabandt <cb@256bit.org>
parents:
7801
diff
changeset
|
2274 has_loop_cmd(char_u *p) |
7 | 2275 { |
1447 | 2276 int len; |
2277 | |
2278 /* skip modifiers, white space and ':' */ | |
2279 for (;;) | |
2280 { | |
2281 while (*p == ' ' || *p == '\t' || *p == ':') | |
2282 ++p; | |
2283 len = modifier_len(p); | |
2284 if (len == 0) | |
2285 break; | |
2286 p += len; | |
2287 } | |
75 | 2288 if ((p[0] == 'w' && p[1] == 'h') |
2289 || (p[0] == 'f' && p[1] == 'o' && p[2] == 'r')) | |
7 | 2290 return TRUE; |
2291 return FALSE; | |
2292 } | |
2293 | |
2294 #endif /* FEAT_EVAL */ |