xref: /vim-8.2.3635/src/userfunc.c (revision f573c6e1)
1 /* vi:set ts=8 sts=4 sw=4 noet:
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  * userfunc.c: User defined function support
12  */
13 
14 #include "vim.h"
15 
16 #if defined(FEAT_EVAL) || defined(PROTO)
17 /*
18  * All user-defined functions are found in this hashtable.
19  */
20 static hashtab_T	func_hashtab;
21 
22 // Used by get_func_tv()
23 static garray_T funcargs = GA_EMPTY;
24 
25 // pointer to funccal for currently active function
26 static funccall_T *current_funccal = NULL;
27 
28 // Pointer to list of previously used funccal, still around because some
29 // item in it is still being used.
30 static funccall_T *previous_funccal = NULL;
31 
32 static char *e_funcexts = N_("E122: Function %s already exists, add ! to replace it");
33 static char *e_funcdict = N_("E717: Dictionary entry already exists");
34 static char *e_funcref = N_("E718: Funcref required");
35 static char *e_nofunc = N_("E130: Unknown function: %s");
36 
37 static void funccal_unref(funccall_T *fc, ufunc_T *fp, int force);
38 static void func_clear(ufunc_T *fp, int force);
39 static int func_free(ufunc_T *fp, int force);
40 
41     void
42 func_init()
43 {
44     hash_init(&func_hashtab);
45 }
46 
47 /*
48  * Return the function hash table
49  */
50     hashtab_T *
51 func_tbl_get(void)
52 {
53     return &func_hashtab;
54 }
55 
56 /*
57  * Get one function argument.
58  * If "argtypes" is not NULL also get the type: "arg: type" (:def function).
59  * If "types_optional" is TRUE a missing type is OK, use "any".
60  * If "evalarg" is not NULL use it to check for an already declared name.
61  * Return a pointer to after the type.
62  * When something is wrong return "arg".
63  */
64     static char_u *
65 one_function_arg(
66 	char_u	    *arg,
67 	garray_T    *newargs,
68 	garray_T    *argtypes,
69 	int	    types_optional,
70 	evalarg_T   *evalarg,
71 	int	    is_vararg,
72 	int	    skip)
73 {
74     char_u	*p = arg;
75     char_u	*arg_copy = NULL;
76     int		is_underscore = FALSE;
77 
78     while (ASCII_ISALNUM(*p) || *p == '_')
79 	++p;
80     if (arg == p || isdigit(*arg)
81 	    || (argtypes == NULL
82 		&& ((p - arg == 9 && STRNCMP(arg, "firstline", 9) == 0)
83 		    || (p - arg == 8 && STRNCMP(arg, "lastline", 8) == 0))))
84     {
85 	if (!skip)
86 	    semsg(_("E125: Illegal argument: %s"), arg);
87 	return arg;
88     }
89 
90     // Vim9 script: cannot use script var name for argument. In function: also
91     // check local vars and arguments.
92     if (!skip && argtypes != NULL && check_defined(arg, p - arg,
93 		    evalarg == NULL ? NULL : evalarg->eval_cctx, TRUE) == FAIL)
94 	return arg;
95 
96     if (newargs != NULL && ga_grow(newargs, 1) == FAIL)
97 	return arg;
98     if (newargs != NULL)
99     {
100 	int	c;
101 	int	i;
102 
103 	c = *p;
104 	*p = NUL;
105 	arg_copy = vim_strsave(arg);
106 	if (arg_copy == NULL)
107 	{
108 	    *p = c;
109 	    return arg;
110 	}
111 	is_underscore = arg_copy[0] == '_' && arg_copy[1] == NUL;
112 	if (argtypes == NULL || !is_underscore)
113 	    // Check for duplicate argument name.
114 	    for (i = 0; i < newargs->ga_len; ++i)
115 		if (STRCMP(((char_u **)(newargs->ga_data))[i], arg_copy) == 0)
116 		{
117 		    semsg(_("E853: Duplicate argument name: %s"), arg_copy);
118 		    vim_free(arg_copy);
119 		    return arg;
120 		}
121 	((char_u **)(newargs->ga_data))[newargs->ga_len] = arg_copy;
122 	newargs->ga_len++;
123 
124 	*p = c;
125     }
126 
127     // get any type from "arg: type"
128     if (argtypes != NULL && (skip || ga_grow(argtypes, 1) == OK))
129     {
130 	char_u *type = NULL;
131 
132 	if (VIM_ISWHITE(*p) && *skipwhite(p) == ':')
133 	{
134 	    semsg(_(e_no_white_space_allowed_before_colon_str),
135 					    arg_copy == NULL ? arg : arg_copy);
136 	    p = skipwhite(p);
137 	}
138 	if (*p == ':')
139 	{
140 	    ++p;
141 	    if (!skip && !VIM_ISWHITE(*p))
142 	    {
143 		semsg(_(e_white_space_required_after_str_str), ":", p - 1);
144 		return arg;
145 	    }
146 	    type = skipwhite(p);
147 	    p = skip_type(type, TRUE);
148 	    if (!skip)
149 		type = vim_strnsave(type, p - type);
150 	}
151 	else if (*skipwhite(p) != '=' && !types_optional && !is_underscore)
152 	{
153 	    semsg(_(e_missing_argument_type_for_str),
154 					    arg_copy == NULL ? arg : arg_copy);
155 	    return arg;
156 	}
157 	if (!skip)
158 	{
159 	    if (type == NULL && types_optional)
160 		// lambda arguments default to "any" type
161 		type = vim_strsave((char_u *)
162 					    (is_vararg ? "list<any>" : "any"));
163 	    ((char_u **)argtypes->ga_data)[argtypes->ga_len++] = type;
164 	}
165     }
166 
167     return p;
168 }
169 
170 /*
171  * Get function arguments.
172  * "argp" should point to just after the "(", possibly to white space.
173  * "argp" is advanced just after "endchar".
174  */
175     static int
176 get_function_args(
177     char_u	**argp,
178     char_u	endchar,
179     garray_T	*newargs,
180     garray_T	*argtypes,	// NULL unless using :def
181     int		types_optional,	// types optional if "argtypes" is not NULL
182     evalarg_T	*evalarg,	// context or NULL
183     int		*varargs,
184     garray_T	*default_args,
185     int		skip,
186     exarg_T	*eap,
187     char_u	**line_to_free)
188 {
189     int		mustend = FALSE;
190     char_u	*arg;
191     char_u	*p;
192     int		c;
193     int		any_default = FALSE;
194     char_u	*expr;
195     char_u	*whitep = *argp;
196 
197     if (newargs != NULL)
198 	ga_init2(newargs, (int)sizeof(char_u *), 3);
199     if (argtypes != NULL)
200 	ga_init2(argtypes, (int)sizeof(char_u *), 3);
201     if (default_args != NULL)
202 	ga_init2(default_args, (int)sizeof(char_u *), 3);
203 
204     if (varargs != NULL)
205 	*varargs = FALSE;
206 
207     /*
208      * Isolate the arguments: "arg1, arg2, ...)"
209      */
210     arg = skipwhite(*argp);
211     p = arg;
212     while (*p != endchar)
213     {
214 	while (eap != NULL && eap->getline != NULL
215 			 && (*p == NUL || (VIM_ISWHITE(*whitep) && *p == '#')))
216 	{
217 	    char_u *theline;
218 
219 	    // End of the line, get the next one.
220 	    theline = eap->getline(':', eap->cookie, 0, TRUE);
221 	    if (theline == NULL)
222 		break;
223 	    vim_free(*line_to_free);
224 	    *line_to_free = theline;
225 	    whitep = (char_u *)" ";
226 	    p = skipwhite(theline);
227 	}
228 
229 	if (mustend && *p != endchar)
230 	{
231 	    if (!skip)
232 		semsg(_(e_invarg2), *argp);
233 	    goto err_ret;
234 	}
235 	if (*p == endchar)
236 	    break;
237 
238 	if (p[0] == '.' && p[1] == '.' && p[2] == '.')
239 	{
240 	    if (varargs != NULL)
241 		*varargs = TRUE;
242 	    p += 3;
243 	    mustend = TRUE;
244 
245 	    if (argtypes != NULL)
246 	    {
247 		// ...name: list<type>
248 		if (!eval_isnamec1(*p))
249 		{
250 		    if (!skip)
251 			emsg(_(e_missing_name_after_dots));
252 		    goto err_ret;
253 		}
254 
255 		arg = p;
256 		p = one_function_arg(p, newargs, argtypes, types_optional,
257 							  evalarg, TRUE, skip);
258 		if (p == arg)
259 		    break;
260 		if (*skipwhite(p) == '=')
261 		{
262 		    emsg(_(e_cannot_use_default_for_variable_arguments));
263 		    break;
264 		}
265 	    }
266 	}
267 	else
268 	{
269 	    arg = p;
270 	    p = one_function_arg(p, newargs, argtypes, types_optional,
271 							 evalarg, FALSE, skip);
272 	    if (p == arg)
273 		break;
274 
275 	    if (*skipwhite(p) == '=' && default_args != NULL)
276 	    {
277 		typval_T	rettv;
278 
279 		// find the end of the expression (doesn't evaluate it)
280 		any_default = TRUE;
281 		p = skipwhite(p) + 1;
282 		whitep = p;
283 		p = skipwhite(p);
284 		expr = p;
285 		if (eval1(&p, &rettv, NULL) != FAIL)
286 		{
287 		    if (ga_grow(default_args, 1) == FAIL)
288 			goto err_ret;
289 
290 		    // trim trailing whitespace
291 		    while (p > expr && VIM_ISWHITE(p[-1]))
292 			p--;
293 		    c = *p;
294 		    *p = NUL;
295 		    expr = vim_strsave(expr);
296 		    if (expr == NULL)
297 		    {
298 			*p = c;
299 			goto err_ret;
300 		    }
301 		    ((char_u **)(default_args->ga_data))
302 						 [default_args->ga_len] = expr;
303 		    default_args->ga_len++;
304 		    *p = c;
305 		}
306 		else
307 		    mustend = TRUE;
308 	    }
309 	    else if (any_default)
310 	    {
311 		emsg(_("E989: Non-default argument follows default argument"));
312 		goto err_ret;
313 	    }
314 
315 	    if (VIM_ISWHITE(*p) && *skipwhite(p) == ',')
316 	    {
317 		// Be tolerant when skipping
318 		if (!skip)
319 		{
320 		    semsg(_(e_no_white_space_allowed_before_str_str), ",", p);
321 		    goto err_ret;
322 		}
323 		p = skipwhite(p);
324 	    }
325 	    if (*p == ',')
326 	    {
327 		++p;
328 		// Don't give this error when skipping, it makes the "->" not
329 		// found in "{k,v -> x}" and give a confusing error.
330 		// Allow missing space after comma in legacy functions.
331 		if (!skip && argtypes != NULL
332 				      && !IS_WHITE_OR_NUL(*p) && *p != endchar)
333 		{
334 		    semsg(_(e_white_space_required_after_str_str), ",", p - 1);
335 		    goto err_ret;
336 		}
337 	    }
338 	    else
339 		mustend = TRUE;
340 	}
341 	whitep = p;
342 	p = skipwhite(p);
343     }
344 
345     if (*p != endchar)
346 	goto err_ret;
347     ++p;	// skip "endchar"
348 
349     *argp = p;
350     return OK;
351 
352 err_ret:
353     if (newargs != NULL)
354 	ga_clear_strings(newargs);
355     if (default_args != NULL)
356 	ga_clear_strings(default_args);
357     return FAIL;
358 }
359 
360 /*
361  * Parse the argument types, filling "fp->uf_arg_types".
362  * Return OK or FAIL.
363  */
364     static int
365 parse_argument_types(ufunc_T *fp, garray_T *argtypes, int varargs)
366 {
367     int len = 0;
368 
369     ga_init2(&fp->uf_type_list, sizeof(type_T *), 10);
370     if (argtypes->ga_len > 0)
371     {
372 	// When "varargs" is set the last name/type goes into uf_va_name
373 	// and uf_va_type.
374 	len = argtypes->ga_len - (varargs ? 1 : 0);
375 
376 	if (len > 0)
377 	    fp->uf_arg_types = ALLOC_CLEAR_MULT(type_T *, len);
378 	if (fp->uf_arg_types != NULL)
379 	{
380 	    int	i;
381 	    type_T	*type;
382 
383 	    for (i = 0; i < len; ++ i)
384 	    {
385 		char_u *p = ((char_u **)argtypes->ga_data)[i];
386 
387 		if (p == NULL)
388 		    // will get the type from the default value
389 		    type = &t_unknown;
390 		else
391 		    type = parse_type(&p, &fp->uf_type_list, TRUE);
392 		if (type == NULL)
393 		    return FAIL;
394 		fp->uf_arg_types[i] = type;
395 	    }
396 	}
397     }
398 
399     if (varargs)
400     {
401 	char_u *p;
402 
403 	// Move the last argument "...name: type" to uf_va_name and
404 	// uf_va_type.
405 	fp->uf_va_name = ((char_u **)fp->uf_args.ga_data)
406 					      [fp->uf_args.ga_len - 1];
407 	--fp->uf_args.ga_len;
408 	p = ((char_u **)argtypes->ga_data)[len];
409 	if (p == NULL)
410 	    // TODO: get type from default value
411 	    fp->uf_va_type = &t_list_any;
412 	else
413 	{
414 	    fp->uf_va_type = parse_type(&p, &fp->uf_type_list, TRUE);
415 	    if (fp->uf_va_type != NULL && fp->uf_va_type->tt_type != VAR_LIST)
416 	    {
417 		semsg(_(e_variable_arguments_type_must_be_list_str),
418 					  ((char_u **)argtypes->ga_data)[len]);
419 		return FAIL;
420 	    }
421 	}
422 	if (fp->uf_va_type == NULL)
423 	    return FAIL;
424     }
425 
426     return OK;
427 }
428 
429     static int
430 parse_return_type(ufunc_T *fp, char_u *ret_type)
431 {
432     if (ret_type == NULL)
433 	fp->uf_ret_type = &t_void;
434     else
435     {
436 	char_u *p = ret_type;
437 
438 	fp->uf_ret_type = parse_type(&p, &fp->uf_type_list, TRUE);
439 	if (fp->uf_ret_type == NULL)
440 	{
441 	    fp->uf_ret_type = &t_void;
442 	    return FAIL;
443 	}
444     }
445     return OK;
446 }
447 
448 /*
449  * Register function "fp" as using "current_funccal" as its scope.
450  */
451     static int
452 register_closure(ufunc_T *fp)
453 {
454     if (fp->uf_scoped == current_funccal)
455 	// no change
456 	return OK;
457     funccal_unref(fp->uf_scoped, fp, FALSE);
458     fp->uf_scoped = current_funccal;
459     current_funccal->fc_refcount++;
460 
461     if (ga_grow(&current_funccal->fc_funcs, 1) == FAIL)
462 	return FAIL;
463     ((ufunc_T **)current_funccal->fc_funcs.ga_data)
464 	[current_funccal->fc_funcs.ga_len++] = fp;
465     return OK;
466 }
467 
468     static void
469 set_ufunc_name(ufunc_T *fp, char_u *name)
470 {
471     // Add a type cast to avoid a warning for an overflow, the uf_name[] array
472     // actually extends beyond the struct.
473     STRCPY((void *)fp->uf_name, name);
474 
475     if (name[0] == K_SPECIAL)
476     {
477 	fp->uf_name_exp = alloc(STRLEN(name) + 3);
478 	if (fp->uf_name_exp != NULL)
479 	{
480 	    STRCPY(fp->uf_name_exp, "<SNR>");
481 	    STRCAT(fp->uf_name_exp, fp->uf_name + 3);
482 	}
483     }
484 }
485 
486 /*
487  * Get a name for a lambda.  Returned in static memory.
488  */
489     char_u *
490 get_lambda_name(void)
491 {
492     static char_u   name[30];
493     static int	    lambda_no = 0;
494 
495     sprintf((char*)name, "<lambda>%d", ++lambda_no);
496     return name;
497 }
498 
499 #if defined(FEAT_LUA) || defined(PROTO)
500 /*
501  * Registers a native C callback which can be called from Vim script.
502  * Returns the name of the Vim script function.
503  */
504     char_u *
505 register_cfunc(cfunc_T cb, cfunc_free_T cb_free, void *state)
506 {
507     char_u	*name = get_lambda_name();
508     ufunc_T	*fp;
509 
510     fp = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(name) + 1);
511     if (fp == NULL)
512 	return NULL;
513 
514     fp->uf_def_status = UF_NOT_COMPILED;
515     fp->uf_refcount = 1;
516     fp->uf_varargs = TRUE;
517     fp->uf_flags = FC_CFUNC;
518     fp->uf_calls = 0;
519     fp->uf_script_ctx = current_sctx;
520     fp->uf_cb = cb;
521     fp->uf_cb_free = cb_free;
522     fp->uf_cb_state = state;
523 
524     set_ufunc_name(fp, name);
525     hash_add(&func_hashtab, UF2HIKEY(fp));
526 
527     return name;
528 }
529 #endif
530 
531 /*
532  * Skip over "->" or "=>" after the arguments of a lambda.
533  * If ": type" is found make "ret_type" point to "type".
534  * If "white_error" is not NULL check for correct use of white space and set
535  * "white_error" to TRUE if there is an error.
536  * Return NULL if no valid arrow found.
537  */
538     static char_u *
539 skip_arrow(
540 	char_u	*start,
541 	int	equal_arrow,
542 	char_u	**ret_type,
543 	int	*white_error)
544 {
545     char_u  *s = start;
546     char_u  *bef = start - 2; // "start" points to > of ->
547 
548     if (equal_arrow)
549     {
550 	if (*s == ':')
551 	{
552 	    if (white_error != NULL && !VIM_ISWHITE(s[1]))
553 	    {
554 		*white_error = TRUE;
555 		semsg(_(e_white_space_required_after_str_str), ":", s);
556 		return NULL;
557 	    }
558 	    s = skipwhite(s + 1);
559 	    *ret_type = s;
560 	    s = skip_type(s, TRUE);
561 	    if (s == *ret_type)
562 	    {
563 		emsg(_(e_missing_return_type));
564 		return NULL;
565 	    }
566 	}
567 	bef = s;
568 	s = skipwhite(s);
569 	if (*s != '=')
570 	    return NULL;
571 	++s;
572     }
573     if (*s != '>')
574 	return NULL;
575     if (white_error != NULL && ((!VIM_ISWHITE(*bef) && *bef != '{')
576 		|| !IS_WHITE_OR_NUL(s[1])))
577     {
578 	*white_error = TRUE;
579 	semsg(_(e_white_space_required_before_and_after_str_at_str),
580 					       equal_arrow ? "=>" : "->", bef);
581 	return NULL;
582     }
583     return skipwhite(s + 1);
584 }
585 
586 /*
587  * Check if "*cmd" points to a function command and if so advance "*cmd" and
588  * return TRUE.
589  * Otherwise return FALSE;
590  * Do not consider "function(" to be a command.
591  */
592     static int
593 is_function_cmd(char_u **cmd)
594 {
595     char_u *p = *cmd;
596 
597     if (checkforcmd(&p, "function", 2))
598     {
599 	if (*p == '(')
600 	    return FALSE;
601 	*cmd = p;
602 	return TRUE;
603     }
604     return FALSE;
605 }
606 
607 /*
608  * Read the body of a function, put every line in "newlines".
609  * This stops at "}", "endfunction" or "enddef".
610  * "newlines" must already have been initialized.
611  * "eap->cmdidx" is CMD_function, CMD_def or CMD_block;
612  */
613     static int
614 get_function_body(
615 	exarg_T	    *eap,
616 	garray_T    *newlines,
617 	char_u	    *line_arg_in,
618 	char_u	    **line_to_free)
619 {
620     linenr_T	sourcing_lnum_top = SOURCING_LNUM;
621     linenr_T	sourcing_lnum_off;
622     int		saved_wait_return = need_wait_return;
623     char_u	*line_arg = line_arg_in;
624     int		vim9_function = eap->cmdidx == CMD_def
625 						   || eap->cmdidx == CMD_block;
626 #define MAX_FUNC_NESTING 50
627     char	nesting_def[MAX_FUNC_NESTING];
628     int		nesting = 0;
629     getline_opt_T getline_options;
630     int		indent = 2;
631     char_u	*skip_until = NULL;
632     int		ret = FAIL;
633     int		is_heredoc = FALSE;
634     int		heredoc_concat_len = 0;
635     garray_T	heredoc_ga;
636     char_u	*heredoc_trimmed = NULL;
637 
638     ga_init2(&heredoc_ga, 1, 500);
639 
640     // Detect having skipped over comment lines to find the return
641     // type.  Add NULL lines to keep the line count correct.
642     sourcing_lnum_off = get_sourced_lnum(eap->getline, eap->cookie);
643     if (SOURCING_LNUM < sourcing_lnum_off)
644     {
645 	sourcing_lnum_off -= SOURCING_LNUM;
646 	if (ga_grow(newlines, sourcing_lnum_off) == FAIL)
647 	    goto theend;
648 	while (sourcing_lnum_off-- > 0)
649 	    ((char_u **)(newlines->ga_data))[newlines->ga_len++] = NULL;
650     }
651 
652     nesting_def[nesting] = vim9_function;
653     getline_options = vim9_function
654 				? GETLINE_CONCAT_CONTBAR : GETLINE_CONCAT_CONT;
655     for (;;)
656     {
657 	char_u	*theline;
658 	char_u	*p;
659 	char_u	*arg;
660 
661 	if (KeyTyped)
662 	{
663 	    msg_scroll = TRUE;
664 	    saved_wait_return = FALSE;
665 	}
666 	need_wait_return = FALSE;
667 
668 	if (line_arg != NULL)
669 	{
670 	    // Use eap->arg, split up in parts by line breaks.
671 	    theline = line_arg;
672 	    p = vim_strchr(theline, '\n');
673 	    if (p == NULL)
674 		line_arg += STRLEN(line_arg);
675 	    else
676 	    {
677 		*p = NUL;
678 		line_arg = p + 1;
679 	    }
680 	}
681 	else
682 	{
683 	    vim_free(*line_to_free);
684 	    if (eap->getline == NULL)
685 		theline = getcmdline(':', 0L, indent, getline_options);
686 	    else
687 		theline = eap->getline(':', eap->cookie, indent,
688 							      getline_options);
689 	    *line_to_free = theline;
690 	}
691 	if (KeyTyped)
692 	    lines_left = Rows - 1;
693 	if (theline == NULL)
694 	{
695 	    // Use the start of the function for the line number.
696 	    SOURCING_LNUM = sourcing_lnum_top;
697 	    if (skip_until != NULL)
698 		semsg(_(e_missing_heredoc_end_marker_str), skip_until);
699 	    else if (eap->cmdidx == CMD_def)
700 		emsg(_(e_missing_enddef));
701 	    else if (eap->cmdidx == CMD_block)
702 		emsg(_(e_missing_end_block));
703 	    else
704 		emsg(_("E126: Missing :endfunction"));
705 	    goto theend;
706 	}
707 
708 	// Detect line continuation: SOURCING_LNUM increased more than one.
709 	sourcing_lnum_off = get_sourced_lnum(eap->getline, eap->cookie);
710 	if (SOURCING_LNUM < sourcing_lnum_off)
711 	    sourcing_lnum_off -= SOURCING_LNUM;
712 	else
713 	    sourcing_lnum_off = 0;
714 
715 	if (skip_until != NULL)
716 	{
717 	    // Don't check for ":endfunc"/":enddef" between
718 	    // * ":append" and "."
719 	    // * ":python <<EOF" and "EOF"
720 	    // * ":let {var-name} =<< [trim] {marker}" and "{marker}"
721 	    if (heredoc_trimmed == NULL
722 		    || (is_heredoc && skipwhite(theline) == theline)
723 		    || STRNCMP(theline, heredoc_trimmed,
724 						 STRLEN(heredoc_trimmed)) == 0)
725 	    {
726 		if (heredoc_trimmed == NULL)
727 		    p = theline;
728 		else if (is_heredoc)
729 		    p = skipwhite(theline) == theline
730 				 ? theline : theline + STRLEN(heredoc_trimmed);
731 		else
732 		    p = theline + STRLEN(heredoc_trimmed);
733 		if (STRCMP(p, skip_until) == 0)
734 		{
735 		    VIM_CLEAR(skip_until);
736 		    VIM_CLEAR(heredoc_trimmed);
737 		    getline_options = vim9_function
738 				? GETLINE_CONCAT_CONTBAR : GETLINE_CONCAT_CONT;
739 		    is_heredoc = FALSE;
740 
741 		    if (heredoc_concat_len > 0)
742 		    {
743 			// Replace the starting line with all the concatenated
744 			// lines.
745 			ga_concat(&heredoc_ga, theline);
746 			vim_free(((char_u **)(newlines->ga_data))[
747 						      heredoc_concat_len - 1]);
748 			((char_u **)(newlines->ga_data))[
749 				  heredoc_concat_len - 1] = heredoc_ga.ga_data;
750 			ga_init(&heredoc_ga);
751 			heredoc_concat_len = 0;
752 			theline += STRLEN(theline);  // skip the "EOF"
753 		    }
754 		}
755 	    }
756 	}
757 	else
758 	{
759 	    int c;
760 
761 	    // skip ':' and blanks
762 	    for (p = theline; VIM_ISWHITE(*p) || *p == ':'; ++p)
763 		;
764 
765 	    // Check for "endfunction", "enddef" or "}".
766 	    // When a ":" follows it must be a dict key; "enddef: value,"
767 	    if ((nesting == 0 && eap->cmdidx == CMD_block)
768 		    ? *p == '}'
769 		    : (checkforcmd(&p, nesting_def[nesting]
770 						? "enddef" : "endfunction", 4)
771 			&& *p != ':'))
772 	    {
773 		if (nesting-- == 0)
774 		{
775 		    char_u *nextcmd = NULL;
776 
777 		    if (*p == '|' || *p == '}')
778 			nextcmd = p + 1;
779 		    else if (line_arg != NULL && *skipwhite(line_arg) != NUL)
780 			nextcmd = line_arg;
781 		    else if (*p != NUL && *p != (vim9_function ? '#' : '"')
782 					   && (vim9_function || p_verbose > 0))
783 		    {
784 			if (eap->cmdidx == CMD_def)
785 			    semsg(_(e_text_found_after_enddef_str), p);
786 			else
787 			    give_warning2((char_u *)
788 				   _("W22: Text found after :endfunction: %s"),
789 				   p, TRUE);
790 		    }
791 		    if (nextcmd != NULL && *skipwhite(nextcmd) != NUL)
792 		    {
793 			// Another command follows. If the line came from "eap"
794 			// we can simply point into it, otherwise we need to
795 			// change "eap->cmdlinep".
796 			eap->nextcmd = nextcmd;
797 			if (*line_to_free != NULL)
798 			{
799 			    vim_free(*eap->cmdlinep);
800 			    *eap->cmdlinep = *line_to_free;
801 			    *line_to_free = NULL;
802 			}
803 		    }
804 		    break;
805 		}
806 	    }
807 
808 	    // Check for mismatched "endfunc" or "enddef".
809 	    // We don't check for "def" inside "func" thus we also can't check
810 	    // for "enddef".
811 	    // We continue to find the end of the function, although we might
812 	    // not find it.
813 	    else if (nesting_def[nesting])
814 	    {
815 		if (checkforcmd(&p, "endfunction", 4) && *p != ':')
816 		    emsg(_(e_mismatched_endfunction));
817 	    }
818 	    else if (eap->cmdidx == CMD_def && checkforcmd(&p, "enddef", 4))
819 		emsg(_(e_mismatched_enddef));
820 
821 	    // Increase indent inside "if", "while", "for" and "try", decrease
822 	    // at "end".
823 	    if (indent > 2 && (*p == '}' || STRNCMP(p, "end", 3) == 0))
824 		indent -= 2;
825 	    else if (STRNCMP(p, "if", 2) == 0
826 		    || STRNCMP(p, "wh", 2) == 0
827 		    || STRNCMP(p, "for", 3) == 0
828 		    || STRNCMP(p, "try", 3) == 0)
829 		indent += 2;
830 
831 	    // Check for defining a function inside this function.
832 	    // Only recognize "def" inside "def", not inside "function",
833 	    // For backwards compatibility, see Test_function_python().
834 	    c = *p;
835 	    if (is_function_cmd(&p)
836 		    || (eap->cmdidx == CMD_def && checkforcmd(&p, "def", 3)))
837 	    {
838 		if (*p == '!')
839 		    p = skipwhite(p + 1);
840 		p += eval_fname_script(p);
841 		vim_free(trans_function_name(&p, NULL, TRUE, 0, NULL,
842 								  NULL, NULL));
843 		if (*skipwhite(p) == '(')
844 		{
845 		    if (nesting == MAX_FUNC_NESTING - 1)
846 			emsg(_(e_function_nesting_too_deep));
847 		    else
848 		    {
849 			++nesting;
850 			nesting_def[nesting] = (c == 'd');
851 			indent += 2;
852 		    }
853 		}
854 	    }
855 
856 	    // Check for ":append", ":change", ":insert".  Not for :def.
857 	    p = skip_range(p, FALSE, NULL);
858 	    if (!vim9_function
859 		&& ((p[0] == 'a' && (!ASCII_ISALPHA(p[1]) || p[1] == 'p'))
860 		    || (p[0] == 'c'
861 			&& (!ASCII_ISALPHA(p[1]) || (p[1] == 'h'
862 				&& (!ASCII_ISALPHA(p[2]) || (p[2] == 'a'
863 					&& (STRNCMP(&p[3], "nge", 3) != 0
864 					    || !ASCII_ISALPHA(p[6])))))))
865 		    || (p[0] == 'i'
866 			&& (!ASCII_ISALPHA(p[1]) || (p[1] == 'n'
867 				&& (!ASCII_ISALPHA(p[2])
868 				    || (p[2] == 's'
869 					&& (!ASCII_ISALPHA(p[3])
870 						|| p[3] == 'e'))))))))
871 		skip_until = vim_strsave((char_u *)".");
872 
873 	    // Check for ":python <<EOF", ":tcl <<EOF", etc.
874 	    arg = skipwhite(skiptowhite(p));
875 	    if (arg[0] == '<' && arg[1] =='<'
876 		    && ((p[0] == 'p' && p[1] == 'y'
877 				    && (!ASCII_ISALNUM(p[2]) || p[2] == 't'
878 					|| ((p[2] == '3' || p[2] == 'x')
879 						   && !ASCII_ISALPHA(p[3]))))
880 			|| (p[0] == 'p' && p[1] == 'e'
881 				    && (!ASCII_ISALPHA(p[2]) || p[2] == 'r'))
882 			|| (p[0] == 't' && p[1] == 'c'
883 				    && (!ASCII_ISALPHA(p[2]) || p[2] == 'l'))
884 			|| (p[0] == 'l' && p[1] == 'u' && p[2] == 'a'
885 				    && !ASCII_ISALPHA(p[3]))
886 			|| (p[0] == 'r' && p[1] == 'u' && p[2] == 'b'
887 				    && (!ASCII_ISALPHA(p[3]) || p[3] == 'y'))
888 			|| (p[0] == 'm' && p[1] == 'z'
889 				    && (!ASCII_ISALPHA(p[2]) || p[2] == 's'))
890 			))
891 	    {
892 		// ":python <<" continues until a dot, like ":append"
893 		p = skipwhite(arg + 2);
894 		if (STRNCMP(p, "trim", 4) == 0)
895 		{
896 		    // Ignore leading white space.
897 		    p = skipwhite(p + 4);
898 		    heredoc_trimmed = vim_strnsave(theline,
899 						 skipwhite(theline) - theline);
900 		}
901 		if (*p == NUL)
902 		    skip_until = vim_strsave((char_u *)".");
903 		else
904 		    skip_until = vim_strnsave(p, skiptowhite(p) - p);
905 		getline_options = GETLINE_NONE;
906 		is_heredoc = TRUE;
907 		if (eap->cmdidx == CMD_def)
908 		    heredoc_concat_len = newlines->ga_len + 1;
909 	    }
910 
911 	    // Check for ":cmd v =<< [trim] EOF"
912 	    //       and ":cmd [a, b] =<< [trim] EOF"
913 	    //       and "lines =<< [trim] EOF" for Vim9
914 	    // Where "cmd" can be "let", "var", "final" or "const".
915 	    arg = skipwhite(skiptowhite(p));
916 	    if (*arg == '[')
917 		arg = vim_strchr(arg, ']');
918 	    if (arg != NULL)
919 	    {
920 		int found = (eap->cmdidx == CMD_def && arg[0] == '='
921 					     && arg[1] == '<' && arg[2] =='<');
922 
923 		if (!found)
924 		    // skip over the argument after "cmd"
925 		    arg = skipwhite(skiptowhite(arg));
926 		if (found || (arg[0] == '=' && arg[1] == '<' && arg[2] =='<'
927 			&& (checkforcmd(&p, "let", 2)
928 			    || checkforcmd(&p, "var", 3)
929 			    || checkforcmd(&p, "final", 5)
930 			    || checkforcmd(&p, "const", 5))))
931 		{
932 		    p = skipwhite(arg + 3);
933 		    if (STRNCMP(p, "trim", 4) == 0)
934 		    {
935 			// Ignore leading white space.
936 			p = skipwhite(p + 4);
937 			heredoc_trimmed = vim_strnsave(theline,
938 						 skipwhite(theline) - theline);
939 		    }
940 		    skip_until = vim_strnsave(p, skiptowhite(p) - p);
941 		    getline_options = GETLINE_NONE;
942 		    is_heredoc = TRUE;
943 		}
944 	    }
945 	}
946 
947 	// Add the line to the function.
948 	if (ga_grow(newlines, 1 + sourcing_lnum_off) == FAIL)
949 	    goto theend;
950 
951 	if (heredoc_concat_len > 0)
952 	{
953 	    // For a :def function "python << EOF" concatenats all the lines,
954 	    // to be used for the instruction later.
955 	    ga_concat(&heredoc_ga, theline);
956 	    ga_concat(&heredoc_ga, (char_u *)"\n");
957 	    p = vim_strsave((char_u *)"");
958 	}
959 	else
960 	{
961 	    // Copy the line to newly allocated memory.  get_one_sourceline()
962 	    // allocates 250 bytes per line, this saves 80% on average.  The
963 	    // cost is an extra alloc/free.
964 	    p = vim_strsave(theline);
965 	}
966 	if (p == NULL)
967 	    goto theend;
968 	((char_u **)(newlines->ga_data))[newlines->ga_len++] = p;
969 
970 	// Add NULL lines for continuation lines, so that the line count is
971 	// equal to the index in the growarray.
972 	while (sourcing_lnum_off-- > 0)
973 	    ((char_u **)(newlines->ga_data))[newlines->ga_len++] = NULL;
974 
975 	// Check for end of eap->arg.
976 	if (line_arg != NULL && *line_arg == NUL)
977 	    line_arg = NULL;
978     }
979 
980     // Return OK when no error was detected.
981     if (!did_emsg)
982 	ret = OK;
983 
984 theend:
985     vim_free(skip_until);
986     vim_free(heredoc_trimmed);
987     vim_free(heredoc_ga.ga_data);
988     need_wait_return |= saved_wait_return;
989     return ret;
990 }
991 
992 /*
993  * Handle the body of a lambda.  *arg points to the "{", process statements
994  * until the matching "}".
995  * When not evaluating "newargs" is NULL.
996  * When successful "rettv" is set to a funcref.
997  */
998     static int
999 lambda_function_body(
1000 	char_u	    **arg,
1001 	typval_T    *rettv,
1002 	evalarg_T   *evalarg,
1003 	garray_T    *newargs,
1004 	garray_T    *argtypes,
1005 	int	    varargs,
1006 	garray_T    *default_args,
1007 	char_u	    *ret_type)
1008 {
1009     int		evaluate = (evalarg->eval_flags & EVAL_EVALUATE);
1010     garray_T	*gap = &evalarg->eval_ga;
1011     garray_T	*freegap = &evalarg->eval_freega;
1012     ufunc_T	*ufunc = NULL;
1013     exarg_T	eap;
1014     garray_T	newlines;
1015     char_u	*cmdline = NULL;
1016     int		ret = FAIL;
1017     char_u	*line_to_free = NULL;
1018     partial_T	*pt;
1019     char_u	*name;
1020     int		lnum_save = -1;
1021     linenr_T	sourcing_lnum_top = SOURCING_LNUM;
1022 
1023     if (!ends_excmd2(*arg, skipwhite(*arg + 1)))
1024     {
1025 	semsg(_(e_trailing_arg), *arg + 1);
1026 	return FAIL;
1027     }
1028 
1029     CLEAR_FIELD(eap);
1030     eap.cmdidx = CMD_block;
1031     eap.forceit = FALSE;
1032     eap.cmdlinep = &cmdline;
1033     eap.skip = !evaluate;
1034     if (evalarg->eval_cctx != NULL)
1035 	fill_exarg_from_cctx(&eap, evalarg->eval_cctx);
1036     else
1037     {
1038 	eap.getline = evalarg->eval_getline;
1039 	eap.cookie = evalarg->eval_cookie;
1040     }
1041 
1042     ga_init2(&newlines, (int)sizeof(char_u *), 10);
1043     if (get_function_body(&eap, &newlines, NULL, &line_to_free) == FAIL)
1044     {
1045 	vim_free(cmdline);
1046 	goto erret;
1047     }
1048 
1049     // When inside a lambda must add the function lines to evalarg.eval_ga.
1050     evalarg->eval_break_count += newlines.ga_len;
1051     if (gap->ga_itemsize > 0)
1052     {
1053 	int	idx;
1054 	char_u	*last;
1055 	size_t  plen;
1056 	char_u  *pnl;
1057 
1058 	for (idx = 0; idx < newlines.ga_len; ++idx)
1059 	{
1060 	    char_u  *p = skipwhite(((char_u **)newlines.ga_data)[idx]);
1061 
1062 	    if (ga_grow(gap, 1) == FAIL || ga_grow(freegap, 1) == FAIL)
1063 		goto erret;
1064 
1065 	    // Going to concatenate the lines after parsing.  For an empty or
1066 	    // comment line use an empty string.
1067 	    // Insert NL characters at the start of each line, the string will
1068 	    // be split again later in .get_lambda_tv().
1069 	    if (*p == NUL || vim9_comment_start(p))
1070 		p = (char_u *)"";
1071 	    plen = STRLEN(p);
1072 	    pnl = vim_strnsave((char_u *)"\n", plen + 1);
1073 	    if (pnl != NULL)
1074 		mch_memmove(pnl + 1, p, plen + 1);
1075 	    ((char_u **)gap->ga_data)[gap->ga_len++] = pnl;
1076 	    ((char_u **)freegap->ga_data)[freegap->ga_len++] = pnl;
1077 	}
1078 	if (ga_grow(gap, 1) == FAIL || ga_grow(freegap, 1) == FAIL)
1079 	    goto erret;
1080 	if (cmdline != NULL)
1081 	    // more is following after the "}", which was skipped
1082 	    last = cmdline;
1083 	else
1084 	    // nothing is following the "}"
1085 	    last = (char_u *)"}";
1086 	plen = STRLEN(last);
1087 	pnl = vim_strnsave((char_u *)"\n", plen + 1);
1088 	if (pnl != NULL)
1089 	    mch_memmove(pnl + 1, last, plen + 1);
1090 	((char_u **)gap->ga_data)[gap->ga_len++] = pnl;
1091 	((char_u **)freegap->ga_data)[freegap->ga_len++] = pnl;
1092     }
1093 
1094     if (cmdline != NULL)
1095     {
1096 	// Something comes after the "}".
1097 	*arg = eap.nextcmd;
1098 
1099 	// "arg" points into cmdline, need to keep the line and free it later.
1100 	vim_free(evalarg->eval_tofree_cmdline);
1101 	evalarg->eval_tofree_cmdline = cmdline;
1102     }
1103     else
1104 	*arg = (char_u *)"";
1105 
1106     if (!evaluate)
1107     {
1108 	ret = OK;
1109 	goto erret;
1110     }
1111 
1112     name = get_lambda_name();
1113     ufunc = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(name) + 1);
1114     if (ufunc == NULL)
1115 	goto erret;
1116     set_ufunc_name(ufunc, name);
1117     if (hash_add(&func_hashtab, UF2HIKEY(ufunc)) == FAIL)
1118 	goto erret;
1119     ufunc->uf_refcount = 1;
1120     ufunc->uf_args = *newargs;
1121     newargs->ga_data = NULL;
1122     ufunc->uf_def_args = *default_args;
1123     default_args->ga_data = NULL;
1124     ufunc->uf_func_type = &t_func_any;
1125 
1126     // error messages are for the first function line
1127     lnum_save = SOURCING_LNUM;
1128     SOURCING_LNUM = sourcing_lnum_top;
1129 
1130     // parse argument types
1131     if (parse_argument_types(ufunc, argtypes, varargs) == FAIL)
1132     {
1133 	SOURCING_LNUM = lnum_save;
1134 	goto erret;
1135     }
1136 
1137     // parse the return type, if any
1138     if (parse_return_type(ufunc, ret_type) == FAIL)
1139 	goto erret;
1140 
1141     pt = ALLOC_CLEAR_ONE(partial_T);
1142     if (pt == NULL)
1143 	goto erret;
1144     pt->pt_func = ufunc;
1145     pt->pt_refcount = 1;
1146 
1147     ufunc->uf_lines = newlines;
1148     newlines.ga_data = NULL;
1149     if (sandbox)
1150 	ufunc->uf_flags |= FC_SANDBOX;
1151     if (!ASCII_ISUPPER(*ufunc->uf_name))
1152 	ufunc->uf_flags |= FC_VIM9;
1153     ufunc->uf_script_ctx = current_sctx;
1154     ufunc->uf_script_ctx_version = current_sctx.sc_version;
1155     ufunc->uf_script_ctx.sc_lnum += sourcing_lnum_top;
1156     set_function_type(ufunc);
1157 
1158     rettv->vval.v_partial = pt;
1159     rettv->v_type = VAR_PARTIAL;
1160     ufunc = NULL;
1161     ret = OK;
1162 
1163 erret:
1164     if (lnum_save >= 0)
1165 	SOURCING_LNUM = lnum_save;
1166     vim_free(line_to_free);
1167     ga_clear_strings(&newlines);
1168     if (newargs != NULL)
1169 	ga_clear_strings(newargs);
1170     ga_clear_strings(default_args);
1171     if (ufunc != NULL)
1172     {
1173 	func_clear(ufunc, TRUE);
1174 	func_free(ufunc, TRUE);
1175     }
1176     return ret;
1177 }
1178 
1179 /*
1180  * Parse a lambda expression and get a Funcref from "*arg" into "rettv".
1181  * "arg" points to the { in "{arg -> expr}" or the ( in "(arg) => expr"
1182  * When "types_optional" is TRUE optionally take argument types.
1183  * Return OK or FAIL.  Returns NOTDONE for dict or {expr}.
1184  */
1185     int
1186 get_lambda_tv(
1187 	char_u	    **arg,
1188 	typval_T    *rettv,
1189 	int	    types_optional,
1190 	evalarg_T   *evalarg)
1191 {
1192     int		evaluate = evalarg != NULL
1193 				      && (evalarg->eval_flags & EVAL_EVALUATE);
1194     garray_T	newargs;
1195     garray_T	newlines;
1196     garray_T	*pnewargs;
1197     garray_T	argtypes;
1198     garray_T	default_args;
1199     ufunc_T	*fp = NULL;
1200     partial_T   *pt = NULL;
1201     int		varargs;
1202     char_u	*ret_type = NULL;
1203     int		ret;
1204     char_u	*s;
1205     char_u	*start, *end;
1206     int		*old_eval_lavars = eval_lavars_used;
1207     int		eval_lavars = FALSE;
1208     char_u	*tofree1 = NULL;
1209     char_u	*tofree2 = NULL;
1210     int		equal_arrow = **arg == '(';
1211     int		white_error = FALSE;
1212     int		called_emsg_start = called_emsg;
1213 
1214     if (equal_arrow && !in_vim9script())
1215 	return NOTDONE;
1216 
1217     ga_init(&newargs);
1218     ga_init(&newlines);
1219 
1220     // First, check if this is really a lambda expression. "->" or "=>" must
1221     // be found after the arguments.
1222     s = *arg + 1;
1223     ret = get_function_args(&s, equal_arrow ? ')' : '-', NULL,
1224 	    types_optional ? &argtypes : NULL, types_optional, evalarg,
1225 						 NULL, NULL, TRUE, NULL, NULL);
1226     if (ret == FAIL || skip_arrow(s, equal_arrow, &ret_type, NULL) == NULL)
1227     {
1228 	if (types_optional)
1229 	    ga_clear_strings(&argtypes);
1230 	return called_emsg == called_emsg_start ? NOTDONE : FAIL;
1231     }
1232 
1233     // Parse the arguments for real.
1234     if (evaluate)
1235 	pnewargs = &newargs;
1236     else
1237 	pnewargs = NULL;
1238     *arg += 1;
1239     ret = get_function_args(arg, equal_arrow ? ')' : '-', pnewargs,
1240 	    types_optional ? &argtypes : NULL, types_optional, evalarg,
1241 					    &varargs, &default_args,
1242 					    FALSE, NULL, NULL);
1243     if (ret == FAIL
1244 		  || (s = skip_arrow(*arg, equal_arrow, &ret_type,
1245 		equal_arrow || in_vim9script() ? &white_error : NULL)) == NULL)
1246     {
1247 	if (types_optional)
1248 	    ga_clear_strings(&argtypes);
1249 	ga_clear_strings(&newargs);
1250 	return white_error ? FAIL : NOTDONE;
1251     }
1252     *arg = s;
1253 
1254     // Skipping over linebreaks may make "ret_type" invalid, make a copy.
1255     if (ret_type != NULL)
1256     {
1257 	ret_type = vim_strsave(ret_type);
1258 	tofree2 = ret_type;
1259     }
1260 
1261     // Set up a flag for checking local variables and arguments.
1262     if (evaluate)
1263 	eval_lavars_used = &eval_lavars;
1264 
1265     *arg = skipwhite_and_linebreak(*arg, evalarg);
1266 
1267     // Recognize "{" as the start of a function body.
1268     if (equal_arrow && **arg == '{')
1269     {
1270 	if (evalarg == NULL)
1271 	    // cannot happen?
1272 	    goto theend;
1273 	if (lambda_function_body(arg, rettv, evalarg, pnewargs,
1274 			   types_optional ? &argtypes : NULL, varargs,
1275 			   &default_args, ret_type) == FAIL)
1276 	    goto errret;
1277 	goto theend;
1278     }
1279     if (default_args.ga_len > 0)
1280     {
1281 	emsg(_(e_cannot_use_default_values_in_lambda));
1282 	goto errret;
1283     }
1284 
1285     // Get the start and the end of the expression.
1286     start = *arg;
1287     ret = skip_expr_concatenate(arg, &start, &end, evalarg);
1288     if (ret == FAIL)
1289 	goto errret;
1290     if (evalarg != NULL)
1291     {
1292 	// avoid that the expression gets freed when another line break follows
1293 	tofree1 = evalarg->eval_tofree;
1294 	evalarg->eval_tofree = NULL;
1295     }
1296 
1297     if (!equal_arrow)
1298     {
1299 	*arg = skipwhite_and_linebreak(*arg, evalarg);
1300 	if (**arg != '}')
1301 	{
1302 	    semsg(_("E451: Expected }: %s"), *arg);
1303 	    goto errret;
1304 	}
1305 	++*arg;
1306     }
1307 
1308     if (evaluate)
1309     {
1310 	int	    len;
1311 	int	    flags = 0;
1312 	char_u	    *p;
1313 	char_u	    *line_end;
1314 	char_u	    *name = get_lambda_name();
1315 
1316 	fp = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(name) + 1);
1317 	if (fp == NULL)
1318 	    goto errret;
1319 	fp->uf_def_status = UF_NOT_COMPILED;
1320 	pt = ALLOC_CLEAR_ONE(partial_T);
1321 	if (pt == NULL)
1322 	    goto errret;
1323 
1324 	ga_init2(&newlines, (int)sizeof(char_u *), 1);
1325 	if (ga_grow(&newlines, 1) == FAIL)
1326 	    goto errret;
1327 
1328 	// If there are line breaks, we need to split up the string.
1329 	line_end = vim_strchr(start, '\n');
1330 	if (line_end == NULL)
1331 	    line_end = end;
1332 
1333 	// Add "return " before the expression (or the first line).
1334 	len = 7 + (int)(line_end - start) + 1;
1335 	p = alloc(len);
1336 	if (p == NULL)
1337 	    goto errret;
1338 	((char_u **)(newlines.ga_data))[newlines.ga_len++] = p;
1339 	STRCPY(p, "return ");
1340 	vim_strncpy(p + 7, start, line_end - start);
1341 
1342 	if (line_end != end)
1343 	{
1344 	    // Add more lines, split by line breaks.  Thus is used when a
1345 	    // lambda with { cmds } is encountered.
1346 	    while (*line_end == '\n')
1347 	    {
1348 		if (ga_grow(&newlines, 1) == FAIL)
1349 		    goto errret;
1350 		start = line_end + 1;
1351 		line_end = vim_strchr(start, '\n');
1352 		if (line_end == NULL)
1353 		    line_end = end;
1354 		((char_u **)(newlines.ga_data))[newlines.ga_len++] =
1355 					 vim_strnsave(start, line_end - start);
1356 	    }
1357 	}
1358 
1359 	if (strstr((char *)p + 7, "a:") == NULL)
1360 	    // No a: variables are used for sure.
1361 	    flags |= FC_NOARGS;
1362 
1363 	fp->uf_refcount = 1;
1364 	set_ufunc_name(fp, name);
1365 	fp->uf_args = newargs;
1366 	ga_init(&fp->uf_def_args);
1367 	if (types_optional)
1368 	{
1369 	    if (parse_argument_types(fp, &argtypes,
1370 					   in_vim9script() && varargs) == FAIL)
1371 		goto errret;
1372 	    if (ret_type != NULL)
1373 	    {
1374 		fp->uf_ret_type = parse_type(&ret_type,
1375 						      &fp->uf_type_list, TRUE);
1376 		if (fp->uf_ret_type == NULL)
1377 		    goto errret;
1378 	    }
1379 	    else
1380 		fp->uf_ret_type = &t_unknown;
1381 	}
1382 
1383 	fp->uf_lines = newlines;
1384 	if (current_funccal != NULL && eval_lavars)
1385 	{
1386 	    flags |= FC_CLOSURE;
1387 	    if (register_closure(fp) == FAIL)
1388 		goto errret;
1389 	}
1390 
1391 #ifdef FEAT_PROFILE
1392 	if (prof_def_func())
1393 	    func_do_profile(fp);
1394 #endif
1395 	if (sandbox)
1396 	    flags |= FC_SANDBOX;
1397 	// In legacy script a lambda can be called with more args than
1398 	// uf_args.ga_len.  In Vim9 script "...name" has to be used.
1399 	fp->uf_varargs = !in_vim9script() || varargs;
1400 	fp->uf_flags = flags;
1401 	fp->uf_calls = 0;
1402 	fp->uf_script_ctx = current_sctx;
1403 	fp->uf_script_ctx.sc_lnum += SOURCING_LNUM - newlines.ga_len;
1404 
1405 	pt->pt_func = fp;
1406 	pt->pt_refcount = 1;
1407 	rettv->vval.v_partial = pt;
1408 	rettv->v_type = VAR_PARTIAL;
1409 
1410 	hash_add(&func_hashtab, UF2HIKEY(fp));
1411     }
1412 
1413 theend:
1414     eval_lavars_used = old_eval_lavars;
1415     if (evalarg != NULL && evalarg->eval_tofree == NULL)
1416 	evalarg->eval_tofree = tofree1;
1417     else
1418 	vim_free(tofree1);
1419     vim_free(tofree2);
1420     if (types_optional)
1421 	ga_clear_strings(&argtypes);
1422     return OK;
1423 
1424 errret:
1425     ga_clear_strings(&newargs);
1426     ga_clear_strings(&newlines);
1427     ga_clear_strings(&default_args);
1428     if (types_optional)
1429     {
1430 	ga_clear_strings(&argtypes);
1431 	if (fp != NULL)
1432 	    vim_free(fp->uf_arg_types);
1433     }
1434     vim_free(fp);
1435     vim_free(pt);
1436     if (evalarg != NULL && evalarg->eval_tofree == NULL)
1437 	evalarg->eval_tofree = tofree1;
1438     else
1439 	vim_free(tofree1);
1440     vim_free(tofree2);
1441     eval_lavars_used = old_eval_lavars;
1442     return FAIL;
1443 }
1444 
1445 /*
1446  * Check if "name" is a variable of type VAR_FUNC.  If so, return the function
1447  * name it contains, otherwise return "name".
1448  * If "partialp" is not NULL, and "name" is of type VAR_PARTIAL also set
1449  * "partialp".
1450  * If "type" is not NULL and a Vim9 script-local variable is found look up the
1451  * type of the variable.
1452  */
1453     char_u *
1454 deref_func_name(
1455 	char_u	    *name,
1456 	int	    *lenp,
1457 	partial_T   **partialp,
1458 	type_T	    **type,
1459 	int	    no_autoload)
1460 {
1461     dictitem_T	*v;
1462     int		cc;
1463     char_u	*s = NULL;
1464     hashtab_T	*ht;
1465 
1466     if (partialp != NULL)
1467 	*partialp = NULL;
1468 
1469     cc = name[*lenp];
1470     name[*lenp] = NUL;
1471 
1472     v = find_var(name, &ht, no_autoload);
1473     name[*lenp] = cc;
1474     if (v != NULL)
1475     {
1476 	if (v->di_tv.v_type == VAR_FUNC)
1477 	{
1478 	    if (v->di_tv.vval.v_string == NULL)
1479 	    {
1480 		*lenp = 0;
1481 		return (char_u *)"";	// just in case
1482 	    }
1483 	    s = v->di_tv.vval.v_string;
1484 	    *lenp = (int)STRLEN(s);
1485 	}
1486 
1487 	if (v->di_tv.v_type == VAR_PARTIAL)
1488 	{
1489 	    partial_T *pt = v->di_tv.vval.v_partial;
1490 
1491 	    if (pt == NULL)
1492 	    {
1493 		*lenp = 0;
1494 		return (char_u *)"";	// just in case
1495 	    }
1496 	    if (partialp != NULL)
1497 		*partialp = pt;
1498 	    s = partial_name(pt);
1499 	    *lenp = (int)STRLEN(s);
1500 	}
1501 
1502 	if (s != NULL)
1503 	{
1504 	    if (type != NULL && ht == get_script_local_ht())
1505 	    {
1506 		svar_T  *sv = find_typval_in_script(&v->di_tv);
1507 
1508 		if (sv != NULL)
1509 		    *type = sv->sv_type;
1510 	    }
1511 	    return s;
1512 	}
1513     }
1514 
1515     return name;
1516 }
1517 
1518 /*
1519  * Give an error message with a function name.  Handle <SNR> things.
1520  * "ermsg" is to be passed without translation, use N_() instead of _().
1521  */
1522     void
1523 emsg_funcname(char *ermsg, char_u *name)
1524 {
1525     char_u	*p;
1526 
1527     if (*name == K_SPECIAL)
1528 	p = concat_str((char_u *)"<SNR>", name + 3);
1529     else
1530 	p = name;
1531     semsg(_(ermsg), p);
1532     if (p != name)
1533 	vim_free(p);
1534 }
1535 
1536 /*
1537  * Allocate a variable for the result of a function.
1538  * Return OK or FAIL.
1539  */
1540     int
1541 get_func_tv(
1542     char_u	*name,		// name of the function
1543     int		len,		// length of "name" or -1 to use strlen()
1544     typval_T	*rettv,
1545     char_u	**arg,		// argument, pointing to the '('
1546     evalarg_T	*evalarg,	// for line continuation
1547     funcexe_T	*funcexe)	// various values
1548 {
1549     char_u	*argp;
1550     int		ret = OK;
1551     typval_T	argvars[MAX_FUNC_ARGS + 1];	// vars for arguments
1552     int		argcount = 0;		// number of arguments found
1553     int		vim9script = in_vim9script();
1554 
1555     /*
1556      * Get the arguments.
1557      */
1558     argp = *arg;
1559     while (argcount < MAX_FUNC_ARGS - (funcexe->partial == NULL ? 0
1560 						  : funcexe->partial->pt_argc))
1561     {
1562 	// skip the '(' or ',' and possibly line breaks
1563 	argp = skipwhite_and_linebreak(argp + 1, evalarg);
1564 
1565 	if (*argp == ')' || *argp == ',' || *argp == NUL)
1566 	    break;
1567 	if (eval1(&argp, &argvars[argcount], evalarg) == FAIL)
1568 	{
1569 	    ret = FAIL;
1570 	    break;
1571 	}
1572 	++argcount;
1573 	// The comma should come right after the argument, but this wasn't
1574 	// checked previously, thus only enforce it in Vim9 script.
1575 	if (vim9script)
1576 	{
1577 	    if (*argp != ',' && *skipwhite(argp) == ',')
1578 	    {
1579 		semsg(_(e_no_white_space_allowed_before_str_str), ",", argp);
1580 		ret = FAIL;
1581 		break;
1582 	    }
1583 	}
1584 	else
1585 	    argp = skipwhite(argp);
1586 	if (*argp != ',')
1587 	    break;
1588 	if (vim9script && !IS_WHITE_OR_NUL(argp[1]))
1589 	{
1590 	    semsg(_(e_white_space_required_after_str_str), ",", argp);
1591 	    ret = FAIL;
1592 	    break;
1593 	}
1594     }
1595     argp = skipwhite_and_linebreak(argp, evalarg);
1596     if (*argp == ')')
1597 	++argp;
1598     else
1599 	ret = FAIL;
1600 
1601     if (ret == OK)
1602     {
1603 	int		i = 0;
1604 
1605 	if (get_vim_var_nr(VV_TESTING))
1606 	{
1607 	    // Prepare for calling test_garbagecollect_now(), need to know
1608 	    // what variables are used on the call stack.
1609 	    if (funcargs.ga_itemsize == 0)
1610 		ga_init2(&funcargs, (int)sizeof(typval_T *), 50);
1611 	    for (i = 0; i < argcount; ++i)
1612 		if (ga_grow(&funcargs, 1) == OK)
1613 		    ((typval_T **)funcargs.ga_data)[funcargs.ga_len++] =
1614 								  &argvars[i];
1615 	}
1616 
1617 	ret = call_func(name, len, rettv, argcount, argvars, funcexe);
1618 
1619 	funcargs.ga_len -= i;
1620     }
1621     else if (!aborting())
1622     {
1623 	if (argcount == MAX_FUNC_ARGS)
1624 	    emsg_funcname(N_("E740: Too many arguments for function %s"), name);
1625 	else
1626 	    emsg_funcname(N_("E116: Invalid arguments for function %s"), name);
1627     }
1628 
1629     while (--argcount >= 0)
1630 	clear_tv(&argvars[argcount]);
1631 
1632     if (in_vim9script())
1633 	*arg = argp;
1634     else
1635 	*arg = skipwhite(argp);
1636     return ret;
1637 }
1638 
1639 /*
1640  * Return TRUE if "p" starts with "<SID>" or "s:".
1641  * Only works if eval_fname_script() returned non-zero for "p"!
1642  */
1643     static int
1644 eval_fname_sid(char_u *p)
1645 {
1646     return (*p == 's' || TOUPPER_ASC(p[2]) == 'I');
1647 }
1648 
1649 /*
1650  * In a script change <SID>name() and s:name() to K_SNR 123_name().
1651  * Change <SNR>123_name() to K_SNR 123_name().
1652  * Use "fname_buf[FLEN_FIXED + 1]" when it fits, otherwise allocate memory
1653  * (slow).
1654  */
1655     char_u *
1656 fname_trans_sid(char_u *name, char_u *fname_buf, char_u **tofree, int *error)
1657 {
1658     int		llen;
1659     char_u	*fname;
1660     int		i;
1661 
1662     llen = eval_fname_script(name);
1663     if (llen > 0)
1664     {
1665 	fname_buf[0] = K_SPECIAL;
1666 	fname_buf[1] = KS_EXTRA;
1667 	fname_buf[2] = (int)KE_SNR;
1668 	i = 3;
1669 	if (eval_fname_sid(name))	// "<SID>" or "s:"
1670 	{
1671 	    if (current_sctx.sc_sid <= 0)
1672 		*error = FCERR_SCRIPT;
1673 	    else
1674 	    {
1675 		sprintf((char *)fname_buf + 3, "%ld_",
1676 						    (long)current_sctx.sc_sid);
1677 		i = (int)STRLEN(fname_buf);
1678 	    }
1679 	}
1680 	if (i + STRLEN(name + llen) < FLEN_FIXED)
1681 	{
1682 	    STRCPY(fname_buf + i, name + llen);
1683 	    fname = fname_buf;
1684 	}
1685 	else
1686 	{
1687 	    fname = alloc(i + STRLEN(name + llen) + 1);
1688 	    if (fname == NULL)
1689 		*error = FCERR_OTHER;
1690 	    else
1691 	    {
1692 		*tofree = fname;
1693 		mch_memmove(fname, fname_buf, (size_t)i);
1694 		STRCPY(fname + i, name + llen);
1695 	    }
1696 	}
1697     }
1698     else
1699 	fname = name;
1700     return fname;
1701 }
1702 
1703 /*
1704  * Find a function "name" in script "sid".
1705  */
1706     static ufunc_T *
1707 find_func_with_sid(char_u *name, int sid)
1708 {
1709     hashitem_T	*hi;
1710     char_u	buffer[200];
1711 
1712     buffer[0] = K_SPECIAL;
1713     buffer[1] = KS_EXTRA;
1714     buffer[2] = (int)KE_SNR;
1715     vim_snprintf((char *)buffer + 3, sizeof(buffer) - 3, "%ld_%s",
1716 							      (long)sid, name);
1717     hi = hash_find(&func_hashtab, buffer);
1718     if (!HASHITEM_EMPTY(hi))
1719 	return HI2UF(hi);
1720 
1721     return NULL;
1722 }
1723 
1724 /*
1725  * Find a function by name, return pointer to it in ufuncs.
1726  * When "is_global" is true don't find script-local or imported functions.
1727  * Return NULL for unknown function.
1728  */
1729     ufunc_T *
1730 find_func_even_dead(char_u *name, int is_global, cctx_T *cctx)
1731 {
1732     hashitem_T	*hi;
1733     ufunc_T	*func;
1734     imported_T	*imported;
1735 
1736     if (!is_global)
1737     {
1738 	char_u	*after_script = NULL;
1739 	long	sid = 0;
1740 	int	find_script_local = in_vim9script()
1741 				     && eval_isnamec1(*name) && name[1] != ':';
1742 
1743 	if (find_script_local)
1744 	{
1745 	    // Find script-local function before global one.
1746 	    func = find_func_with_sid(name, current_sctx.sc_sid);
1747 	    if (func != NULL)
1748 		return func;
1749 	}
1750 
1751 	if (name[0] == K_SPECIAL
1752 		&& name[1] == KS_EXTRA
1753 		&& name[2] == KE_SNR)
1754 	{
1755 	    // Caller changes s: to <SNR>99_name.
1756 
1757 	    after_script = name + 3;
1758 	    sid = getdigits(&after_script);
1759 	    if (*after_script == '_')
1760 		++after_script;
1761 	    else
1762 		after_script = NULL;
1763 	}
1764 	if (find_script_local || after_script != NULL)
1765 	{
1766 	    // Find imported function before global one.
1767 	    if (after_script != NULL && sid != current_sctx.sc_sid)
1768 		imported = find_imported_in_script(after_script, 0, sid);
1769 	    else
1770 		imported = find_imported(after_script == NULL
1771 					       ? name : after_script, 0, cctx);
1772 	    if (imported != NULL && imported->imp_funcname != NULL)
1773 	    {
1774 		hi = hash_find(&func_hashtab, imported->imp_funcname);
1775 		if (!HASHITEM_EMPTY(hi))
1776 		    return HI2UF(hi);
1777 	    }
1778 	}
1779     }
1780 
1781     hi = hash_find(&func_hashtab,
1782 				STRNCMP(name, "g:", 2) == 0 ? name + 2 : name);
1783     if (!HASHITEM_EMPTY(hi))
1784 	return HI2UF(hi);
1785 
1786     return NULL;
1787 }
1788 
1789 /*
1790  * Find a function by name, return pointer to it in ufuncs.
1791  * "cctx" is passed in a :def function to find imported functions.
1792  * Return NULL for unknown or dead function.
1793  */
1794     ufunc_T *
1795 find_func(char_u *name, int is_global, cctx_T *cctx)
1796 {
1797     ufunc_T	*fp = find_func_even_dead(name, is_global, cctx);
1798 
1799     if (fp != NULL && (fp->uf_flags & FC_DEAD) == 0)
1800 	return fp;
1801     return NULL;
1802 }
1803 
1804 /*
1805  * Return TRUE if "ufunc" is a global function.
1806  */
1807     int
1808 func_is_global(ufunc_T *ufunc)
1809 {
1810     return ufunc->uf_name[0] != K_SPECIAL;
1811 }
1812 
1813 /*
1814  * Copy the function name of "fp" to buffer "buf".
1815  * "buf" must be able to hold the function name plus three bytes.
1816  * Takes care of script-local function names.
1817  */
1818     static void
1819 cat_func_name(char_u *buf, ufunc_T *fp)
1820 {
1821     if (!func_is_global(fp))
1822     {
1823 	STRCPY(buf, "<SNR>");
1824 	STRCAT(buf, fp->uf_name + 3);
1825     }
1826     else
1827 	STRCPY(buf, fp->uf_name);
1828 }
1829 
1830 /*
1831  * Add a number variable "name" to dict "dp" with value "nr".
1832  */
1833     static void
1834 add_nr_var(
1835     dict_T	*dp,
1836     dictitem_T	*v,
1837     char	*name,
1838     varnumber_T nr)
1839 {
1840     STRCPY(v->di_key, name);
1841     v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX;
1842     hash_add(&dp->dv_hashtab, DI2HIKEY(v));
1843     v->di_tv.v_type = VAR_NUMBER;
1844     v->di_tv.v_lock = VAR_FIXED;
1845     v->di_tv.vval.v_number = nr;
1846 }
1847 
1848 /*
1849  * Free "fc".
1850  */
1851     static void
1852 free_funccal(funccall_T *fc)
1853 {
1854     int	i;
1855 
1856     for (i = 0; i < fc->fc_funcs.ga_len; ++i)
1857     {
1858 	ufunc_T *fp = ((ufunc_T **)(fc->fc_funcs.ga_data))[i];
1859 
1860 	// When garbage collecting a funccall_T may be freed before the
1861 	// function that references it, clear its uf_scoped field.
1862 	// The function may have been redefined and point to another
1863 	// funccall_T, don't clear it then.
1864 	if (fp != NULL && fp->uf_scoped == fc)
1865 	    fp->uf_scoped = NULL;
1866     }
1867     ga_clear(&fc->fc_funcs);
1868 
1869     func_ptr_unref(fc->func);
1870     vim_free(fc);
1871 }
1872 
1873 /*
1874  * Free "fc" and what it contains.
1875  * Can be called only when "fc" is kept beyond the period of it called,
1876  * i.e. after cleanup_function_call(fc).
1877  */
1878    static void
1879 free_funccal_contents(funccall_T *fc)
1880 {
1881     listitem_T	*li;
1882 
1883     // Free all l: variables.
1884     vars_clear(&fc->l_vars.dv_hashtab);
1885 
1886     // Free all a: variables.
1887     vars_clear(&fc->l_avars.dv_hashtab);
1888 
1889     // Free the a:000 variables.
1890     FOR_ALL_LIST_ITEMS(&fc->l_varlist, li)
1891 	clear_tv(&li->li_tv);
1892 
1893     free_funccal(fc);
1894 }
1895 
1896 /*
1897  * Handle the last part of returning from a function: free the local hashtable.
1898  * Unless it is still in use by a closure.
1899  */
1900     static void
1901 cleanup_function_call(funccall_T *fc)
1902 {
1903     int	may_free_fc = fc->fc_refcount <= 0;
1904     int	free_fc = TRUE;
1905 
1906     current_funccal = fc->caller;
1907 
1908     // Free all l: variables if not referred.
1909     if (may_free_fc && fc->l_vars.dv_refcount == DO_NOT_FREE_CNT)
1910 	vars_clear(&fc->l_vars.dv_hashtab);
1911     else
1912 	free_fc = FALSE;
1913 
1914     // If the a:000 list and the l: and a: dicts are not referenced and
1915     // there is no closure using it, we can free the funccall_T and what's
1916     // in it.
1917     if (may_free_fc && fc->l_avars.dv_refcount == DO_NOT_FREE_CNT)
1918 	vars_clear_ext(&fc->l_avars.dv_hashtab, FALSE);
1919     else
1920     {
1921 	int	    todo;
1922 	hashitem_T  *hi;
1923 	dictitem_T  *di;
1924 
1925 	free_fc = FALSE;
1926 
1927 	// Make a copy of the a: variables, since we didn't do that above.
1928 	todo = (int)fc->l_avars.dv_hashtab.ht_used;
1929 	for (hi = fc->l_avars.dv_hashtab.ht_array; todo > 0; ++hi)
1930 	{
1931 	    if (!HASHITEM_EMPTY(hi))
1932 	    {
1933 		--todo;
1934 		di = HI2DI(hi);
1935 		copy_tv(&di->di_tv, &di->di_tv);
1936 	    }
1937 	}
1938     }
1939 
1940     if (may_free_fc && fc->l_varlist.lv_refcount == DO_NOT_FREE_CNT)
1941 	fc->l_varlist.lv_first = NULL;
1942     else
1943     {
1944 	listitem_T *li;
1945 
1946 	free_fc = FALSE;
1947 
1948 	// Make a copy of the a:000 items, since we didn't do that above.
1949 	FOR_ALL_LIST_ITEMS(&fc->l_varlist, li)
1950 	    copy_tv(&li->li_tv, &li->li_tv);
1951     }
1952 
1953     if (free_fc)
1954 	free_funccal(fc);
1955     else
1956     {
1957 	static int made_copy = 0;
1958 
1959 	// "fc" is still in use.  This can happen when returning "a:000",
1960 	// assigning "l:" to a global variable or defining a closure.
1961 	// Link "fc" in the list for garbage collection later.
1962 	fc->caller = previous_funccal;
1963 	previous_funccal = fc;
1964 
1965 	if (want_garbage_collect)
1966 	    // If garbage collector is ready, clear count.
1967 	    made_copy = 0;
1968 	else if (++made_copy >= (int)((4096 * 1024) / sizeof(*fc)))
1969 	{
1970 	    // We have made a lot of copies, worth 4 Mbyte.  This can happen
1971 	    // when repetitively calling a function that creates a reference to
1972 	    // itself somehow.  Call the garbage collector soon to avoid using
1973 	    // too much memory.
1974 	    made_copy = 0;
1975 	    want_garbage_collect = TRUE;
1976 	}
1977     }
1978 }
1979 
1980 /*
1981  * There are two kinds of function names:
1982  * 1. ordinary names, function defined with :function or :def
1983  * 2. numbered functions and lambdas
1984  * For the first we only count the name stored in func_hashtab as a reference,
1985  * using function() does not count as a reference, because the function is
1986  * looked up by name.
1987  */
1988     int
1989 func_name_refcount(char_u *name)
1990 {
1991     return isdigit(*name) || *name == '<';
1992 }
1993 
1994 /*
1995  * Unreference "fc": decrement the reference count and free it when it
1996  * becomes zero.  "fp" is detached from "fc".
1997  * When "force" is TRUE we are exiting.
1998  */
1999     static void
2000 funccal_unref(funccall_T *fc, ufunc_T *fp, int force)
2001 {
2002     funccall_T	**pfc;
2003     int		i;
2004 
2005     if (fc == NULL)
2006 	return;
2007 
2008     if (--fc->fc_refcount <= 0 && (force || (
2009 		fc->l_varlist.lv_refcount == DO_NOT_FREE_CNT
2010 		&& fc->l_vars.dv_refcount == DO_NOT_FREE_CNT
2011 		&& fc->l_avars.dv_refcount == DO_NOT_FREE_CNT)))
2012 	for (pfc = &previous_funccal; *pfc != NULL; pfc = &(*pfc)->caller)
2013 	{
2014 	    if (fc == *pfc)
2015 	    {
2016 		*pfc = fc->caller;
2017 		free_funccal_contents(fc);
2018 		return;
2019 	    }
2020 	}
2021     for (i = 0; i < fc->fc_funcs.ga_len; ++i)
2022 	if (((ufunc_T **)(fc->fc_funcs.ga_data))[i] == fp)
2023 	    ((ufunc_T **)(fc->fc_funcs.ga_data))[i] = NULL;
2024 }
2025 
2026 /*
2027  * Remove the function from the function hashtable.  If the function was
2028  * deleted while it still has references this was already done.
2029  * Return TRUE if the entry was deleted, FALSE if it wasn't found.
2030  */
2031     static int
2032 func_remove(ufunc_T *fp)
2033 {
2034     hashitem_T	*hi;
2035 
2036     // Return if it was already virtually deleted.
2037     if (fp->uf_flags & FC_DEAD)
2038 	return FALSE;
2039 
2040     hi = hash_find(&func_hashtab, UF2HIKEY(fp));
2041     if (!HASHITEM_EMPTY(hi))
2042     {
2043 	// When there is a def-function index do not actually remove the
2044 	// function, so we can find the index when defining the function again.
2045 	// Do remove it when it's a copy.
2046 	if (fp->uf_def_status == UF_COMPILED && (fp->uf_flags & FC_COPY) == 0)
2047 	{
2048 	    fp->uf_flags |= FC_DEAD;
2049 	    return FALSE;
2050 	}
2051 	hash_remove(&func_hashtab, hi);
2052 	fp->uf_flags |= FC_DELETED;
2053 	return TRUE;
2054     }
2055     return FALSE;
2056 }
2057 
2058     static void
2059 func_clear_items(ufunc_T *fp)
2060 {
2061     ga_clear_strings(&(fp->uf_args));
2062     ga_clear_strings(&(fp->uf_def_args));
2063     ga_clear_strings(&(fp->uf_lines));
2064     VIM_CLEAR(fp->uf_arg_types);
2065     VIM_CLEAR(fp->uf_block_ids);
2066     VIM_CLEAR(fp->uf_va_name);
2067     clear_type_list(&fp->uf_type_list);
2068 
2069     // Increment the refcount of this function to avoid it being freed
2070     // recursively when the partial is freed.
2071     fp->uf_refcount += 3;
2072     partial_unref(fp->uf_partial);
2073     fp->uf_partial = NULL;
2074     fp->uf_refcount -= 3;
2075 
2076 #ifdef FEAT_LUA
2077     if (fp->uf_cb_free != NULL)
2078     {
2079 	fp->uf_cb_free(fp->uf_cb_state);
2080 	fp->uf_cb_free = NULL;
2081     }
2082 
2083     fp->uf_cb_state = NULL;
2084     fp->uf_cb = NULL;
2085 #endif
2086 #ifdef FEAT_PROFILE
2087     VIM_CLEAR(fp->uf_tml_count);
2088     VIM_CLEAR(fp->uf_tml_total);
2089     VIM_CLEAR(fp->uf_tml_self);
2090 #endif
2091 }
2092 
2093 /*
2094  * Free all things that a function contains.  Does not free the function
2095  * itself, use func_free() for that.
2096  * When "force" is TRUE we are exiting.
2097  */
2098     static void
2099 func_clear(ufunc_T *fp, int force)
2100 {
2101     if (fp->uf_cleared)
2102 	return;
2103     fp->uf_cleared = TRUE;
2104 
2105     // clear this function
2106     func_clear_items(fp);
2107     funccal_unref(fp->uf_scoped, fp, force);
2108     unlink_def_function(fp);
2109 }
2110 
2111 /*
2112  * Free a function and remove it from the list of functions.  Does not free
2113  * what a function contains, call func_clear() first.
2114  * When "force" is TRUE we are exiting.
2115  * Returns OK when the function was actually freed.
2116  */
2117     static int
2118 func_free(ufunc_T *fp, int force)
2119 {
2120     // Only remove it when not done already, otherwise we would remove a newer
2121     // version of the function with the same name.
2122     if ((fp->uf_flags & (FC_DELETED | FC_REMOVED)) == 0)
2123 	func_remove(fp);
2124 
2125     if ((fp->uf_flags & FC_DEAD) == 0 || force)
2126     {
2127 	if (fp->uf_dfunc_idx > 0)
2128 	    unlink_def_function(fp);
2129 	VIM_CLEAR(fp->uf_name_exp);
2130 	vim_free(fp);
2131 	return OK;
2132     }
2133     return FAIL;
2134 }
2135 
2136 /*
2137  * Free all things that a function contains and free the function itself.
2138  * When "force" is TRUE we are exiting.
2139  */
2140     static void
2141 func_clear_free(ufunc_T *fp, int force)
2142 {
2143     func_clear(fp, force);
2144     if (force || fp->uf_dfunc_idx == 0 || func_name_refcount(fp->uf_name)
2145 						   || (fp->uf_flags & FC_COPY))
2146 	func_free(fp, force);
2147     else
2148 	fp->uf_flags |= FC_DEAD;
2149 }
2150 
2151 /*
2152  * Copy already defined function "lambda" to a new function with name "global".
2153  * This is for when a compiled function defines a global function.
2154  */
2155     int
2156 copy_func(char_u *lambda, char_u *global, ectx_T *ectx)
2157 {
2158     ufunc_T *ufunc = find_func_even_dead(lambda, TRUE, NULL);
2159     ufunc_T *fp = NULL;
2160 
2161     if (ufunc == NULL)
2162     {
2163 	semsg(_(e_lambda_function_not_found_str), lambda);
2164 	return FAIL;
2165     }
2166 
2167     fp = find_func(global, TRUE, NULL);
2168     if (fp != NULL)
2169     {
2170 	// TODO: handle ! to overwrite
2171 	semsg(_(e_funcexts), global);
2172 	return FAIL;
2173     }
2174 
2175     fp = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(global) + 1);
2176     if (fp == NULL)
2177 	return FAIL;
2178 
2179     fp->uf_varargs = ufunc->uf_varargs;
2180     fp->uf_flags = (ufunc->uf_flags & ~FC_VIM9) | FC_COPY;
2181     fp->uf_def_status = ufunc->uf_def_status;
2182     fp->uf_dfunc_idx = ufunc->uf_dfunc_idx;
2183     if (ga_copy_strings(&ufunc->uf_args, &fp->uf_args) == FAIL
2184 	    || ga_copy_strings(&ufunc->uf_def_args, &fp->uf_def_args)
2185 								    == FAIL
2186 	    || ga_copy_strings(&ufunc->uf_lines, &fp->uf_lines) == FAIL)
2187 	goto failed;
2188 
2189     fp->uf_name_exp = ufunc->uf_name_exp == NULL ? NULL
2190 					 : vim_strsave(ufunc->uf_name_exp);
2191     if (ufunc->uf_arg_types != NULL)
2192     {
2193 	fp->uf_arg_types = ALLOC_MULT(type_T *, fp->uf_args.ga_len);
2194 	if (fp->uf_arg_types == NULL)
2195 	    goto failed;
2196 	mch_memmove(fp->uf_arg_types, ufunc->uf_arg_types,
2197 				    sizeof(type_T *) * fp->uf_args.ga_len);
2198     }
2199     if (ufunc->uf_va_name != NULL)
2200     {
2201 	fp->uf_va_name = vim_strsave(ufunc->uf_va_name);
2202 	if (fp->uf_va_name == NULL)
2203 	    goto failed;
2204     }
2205     fp->uf_ret_type = ufunc->uf_ret_type;
2206 
2207     fp->uf_refcount = 1;
2208     STRCPY(fp->uf_name, global);
2209     hash_add(&func_hashtab, UF2HIKEY(fp));
2210 
2211     // the referenced dfunc_T is now used one more time
2212     link_def_function(fp);
2213 
2214     // Create a partial to store the context of the function where it was
2215     // instantiated.  Only needs to be done once.  Do this on the original
2216     // function, "dfunc->df_ufunc" will point to it.
2217     if ((ufunc->uf_flags & FC_CLOSURE) && ufunc->uf_partial == NULL)
2218     {
2219 	partial_T   *pt = ALLOC_CLEAR_ONE(partial_T);
2220 
2221 	if (pt == NULL)
2222 	    goto failed;
2223 	if (fill_partial_and_closure(pt, ufunc, ectx) == FAIL)
2224 	{
2225             vim_free(pt);
2226 	    goto failed;
2227 	}
2228 	ufunc->uf_partial = pt;
2229 	--pt->pt_refcount;  // not actually referenced here
2230     }
2231 
2232     return OK;
2233 
2234 failed:
2235     func_clear_free(fp, TRUE);
2236     return FAIL;
2237 }
2238 
2239 static int	funcdepth = 0;
2240 
2241 /*
2242  * Increment the function call depth count.
2243  * Return FAIL when going over 'maxfuncdepth'.
2244  * Otherwise return OK, must call funcdepth_decrement() later!
2245  */
2246     int
2247 funcdepth_increment(void)
2248 {
2249     if (funcdepth >= p_mfd)
2250     {
2251 	emsg(_("E132: Function call depth is higher than 'maxfuncdepth'"));
2252 	return FAIL;
2253     }
2254     ++funcdepth;
2255     return OK;
2256 }
2257 
2258     void
2259 funcdepth_decrement(void)
2260 {
2261     --funcdepth;
2262 }
2263 
2264 /*
2265  * Get the current function call depth.
2266  */
2267     int
2268 funcdepth_get(void)
2269 {
2270     return funcdepth;
2271 }
2272 
2273 /*
2274  * Restore the function call depth.  This is for cases where there is no
2275  * guarantee funcdepth_decrement() can be called exactly the same number of
2276  * times as funcdepth_increment().
2277  */
2278     void
2279 funcdepth_restore(int depth)
2280 {
2281     funcdepth = depth;
2282 }
2283 
2284 /*
2285  * Call a user function.
2286  */
2287     static void
2288 call_user_func(
2289     ufunc_T	*fp,		// pointer to function
2290     int		argcount,	// nr of args
2291     typval_T	*argvars,	// arguments
2292     typval_T	*rettv,		// return value
2293     funcexe_T	*funcexe,	// context
2294     dict_T	*selfdict)	// Dictionary for "self"
2295 {
2296     sctx_T	save_current_sctx;
2297     int		using_sandbox = FALSE;
2298     funccall_T	*fc;
2299     int		save_did_emsg;
2300     int		default_arg_err = FALSE;
2301     dictitem_T	*v;
2302     int		fixvar_idx = 0;	// index in fixvar[]
2303     int		i;
2304     int		ai;
2305     int		islambda = FALSE;
2306     char_u	numbuf[NUMBUFLEN];
2307     char_u	*name;
2308     typval_T	*tv_to_free[MAX_FUNC_ARGS];
2309     int		tv_to_free_len = 0;
2310 #ifdef FEAT_PROFILE
2311     profinfo_T	profile_info;
2312 #endif
2313     ESTACK_CHECK_DECLARATION
2314 
2315 #ifdef FEAT_PROFILE
2316     CLEAR_FIELD(profile_info);
2317 #endif
2318 
2319     // If depth of calling is getting too high, don't execute the function.
2320     if (funcdepth_increment() == FAIL)
2321     {
2322 	rettv->v_type = VAR_NUMBER;
2323 	rettv->vval.v_number = -1;
2324 	return;
2325     }
2326 
2327     line_breakcheck();		// check for CTRL-C hit
2328 
2329     fc = ALLOC_CLEAR_ONE(funccall_T);
2330     if (fc == NULL)
2331 	return;
2332     fc->caller = current_funccal;
2333     current_funccal = fc;
2334     fc->func = fp;
2335     fc->rettv = rettv;
2336     fc->level = ex_nesting_level;
2337     // Check if this function has a breakpoint.
2338     fc->breakpoint = dbg_find_breakpoint(FALSE, fp->uf_name, (linenr_T)0);
2339     fc->dbg_tick = debug_tick;
2340     // Set up fields for closure.
2341     ga_init2(&fc->fc_funcs, sizeof(ufunc_T *), 1);
2342     func_ptr_ref(fp);
2343 
2344     if (fp->uf_def_status != UF_NOT_COMPILED)
2345     {
2346 #ifdef FEAT_PROFILE
2347 	ufunc_T *caller = fc->caller == NULL ? NULL : fc->caller->func;
2348 #endif
2349 	// Execute the function, possibly compiling it first.
2350 #ifdef FEAT_PROFILE
2351 	if (do_profiling == PROF_YES)
2352 	    profile_may_start_func(&profile_info, fp, caller);
2353 #endif
2354 	call_def_function(fp, argcount, argvars, funcexe->partial, rettv);
2355 	funcdepth_decrement();
2356 #ifdef FEAT_PROFILE
2357 	if (do_profiling == PROF_YES && (fp->uf_profiling
2358 				  || (caller != NULL && caller->uf_profiling)))
2359 	    profile_may_end_func(&profile_info, fp, caller);
2360 #endif
2361 	current_funccal = fc->caller;
2362 	free_funccal(fc);
2363 	return;
2364     }
2365 
2366     if (STRNCMP(fp->uf_name, "<lambda>", 8) == 0)
2367 	islambda = TRUE;
2368 
2369     /*
2370      * Note about using fc->fixvar[]: This is an array of FIXVAR_CNT variables
2371      * with names up to VAR_SHORT_LEN long.  This avoids having to alloc/free
2372      * each argument variable and saves a lot of time.
2373      */
2374     /*
2375      * Init l: variables.
2376      */
2377     init_var_dict(&fc->l_vars, &fc->l_vars_var, VAR_DEF_SCOPE);
2378     if (selfdict != NULL)
2379     {
2380 	// Set l:self to "selfdict".  Use "name" to avoid a warning from
2381 	// some compiler that checks the destination size.
2382 	v = &fc->fixvar[fixvar_idx++].var;
2383 	name = v->di_key;
2384 	STRCPY(name, "self");
2385 	v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX;
2386 	hash_add(&fc->l_vars.dv_hashtab, DI2HIKEY(v));
2387 	v->di_tv.v_type = VAR_DICT;
2388 	v->di_tv.v_lock = 0;
2389 	v->di_tv.vval.v_dict = selfdict;
2390 	++selfdict->dv_refcount;
2391     }
2392 
2393     /*
2394      * Init a: variables, unless none found (in lambda).
2395      * Set a:0 to "argcount" less number of named arguments, if >= 0.
2396      * Set a:000 to a list with room for the "..." arguments.
2397      */
2398     init_var_dict(&fc->l_avars, &fc->l_avars_var, VAR_SCOPE);
2399     if ((fp->uf_flags & FC_NOARGS) == 0)
2400 	add_nr_var(&fc->l_avars, &fc->fixvar[fixvar_idx++].var, "0",
2401 				(varnumber_T)(argcount >= fp->uf_args.ga_len
2402 				    ? argcount - fp->uf_args.ga_len : 0));
2403     fc->l_avars.dv_lock = VAR_FIXED;
2404     if ((fp->uf_flags & FC_NOARGS) == 0)
2405     {
2406 	// Use "name" to avoid a warning from some compiler that checks the
2407 	// destination size.
2408 	v = &fc->fixvar[fixvar_idx++].var;
2409 	name = v->di_key;
2410 	STRCPY(name, "000");
2411 	v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX;
2412 	hash_add(&fc->l_avars.dv_hashtab, DI2HIKEY(v));
2413 	v->di_tv.v_type = VAR_LIST;
2414 	v->di_tv.v_lock = VAR_FIXED;
2415 	v->di_tv.vval.v_list = &fc->l_varlist;
2416     }
2417     CLEAR_FIELD(fc->l_varlist);
2418     fc->l_varlist.lv_refcount = DO_NOT_FREE_CNT;
2419     fc->l_varlist.lv_lock = VAR_FIXED;
2420 
2421     /*
2422      * Set a:firstline to "firstline" and a:lastline to "lastline".
2423      * Set a:name to named arguments.
2424      * Set a:N to the "..." arguments.
2425      * Skipped when no a: variables used (in lambda).
2426      */
2427     if ((fp->uf_flags & FC_NOARGS) == 0)
2428     {
2429 	add_nr_var(&fc->l_avars, &fc->fixvar[fixvar_idx++].var, "firstline",
2430 					      (varnumber_T)funcexe->firstline);
2431 	add_nr_var(&fc->l_avars, &fc->fixvar[fixvar_idx++].var, "lastline",
2432 					       (varnumber_T)funcexe->lastline);
2433     }
2434     for (i = 0; i < argcount || i < fp->uf_args.ga_len; ++i)
2435     {
2436 	int	    addlocal = FALSE;
2437 	typval_T    def_rettv;
2438 	int	    isdefault = FALSE;
2439 
2440 	ai = i - fp->uf_args.ga_len;
2441 	if (ai < 0)
2442 	{
2443 	    // named argument a:name
2444 	    name = FUNCARG(fp, i);
2445 	    if (islambda)
2446 		addlocal = TRUE;
2447 
2448 	    // evaluate named argument default expression
2449 	    isdefault = ai + fp->uf_def_args.ga_len >= 0
2450 		       && (i >= argcount || (argvars[i].v_type == VAR_SPECIAL
2451 				   && argvars[i].vval.v_number == VVAL_NONE));
2452 	    if (isdefault)
2453 	    {
2454 		char_u	    *default_expr = NULL;
2455 
2456 		def_rettv.v_type = VAR_NUMBER;
2457 		def_rettv.vval.v_number = -1;
2458 
2459 		default_expr = ((char_u **)(fp->uf_def_args.ga_data))
2460 						 [ai + fp->uf_def_args.ga_len];
2461 		if (eval1(&default_expr, &def_rettv, &EVALARG_EVALUATE) == FAIL)
2462 		{
2463 		    default_arg_err = 1;
2464 		    break;
2465 		}
2466 	    }
2467 	}
2468 	else
2469 	{
2470 	    if ((fp->uf_flags & FC_NOARGS) != 0)
2471 		// Bail out if no a: arguments used (in lambda).
2472 		break;
2473 
2474 	    // "..." argument a:1, a:2, etc.
2475 	    sprintf((char *)numbuf, "%d", ai + 1);
2476 	    name = numbuf;
2477 	}
2478 	if (fixvar_idx < FIXVAR_CNT && STRLEN(name) <= VAR_SHORT_LEN)
2479 	{
2480 	    v = &fc->fixvar[fixvar_idx++].var;
2481 	    v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX;
2482 	    STRCPY(v->di_key, name);
2483 	}
2484 	else
2485 	{
2486 	    v = dictitem_alloc(name);
2487 	    if (v == NULL)
2488 		break;
2489 	    v->di_flags |= DI_FLAGS_RO | DI_FLAGS_FIX;
2490 	}
2491 
2492 	// Note: the values are copied directly to avoid alloc/free.
2493 	// "argvars" must have VAR_FIXED for v_lock.
2494 	v->di_tv = isdefault ? def_rettv : argvars[i];
2495 	v->di_tv.v_lock = VAR_FIXED;
2496 
2497 	if (isdefault)
2498 	    // Need to free this later, no matter where it's stored.
2499 	    tv_to_free[tv_to_free_len++] = &v->di_tv;
2500 
2501 	if (addlocal)
2502 	{
2503 	    // Named arguments should be accessed without the "a:" prefix in
2504 	    // lambda expressions.  Add to the l: dict.
2505 	    copy_tv(&v->di_tv, &v->di_tv);
2506 	    hash_add(&fc->l_vars.dv_hashtab, DI2HIKEY(v));
2507 	}
2508 	else
2509 	    hash_add(&fc->l_avars.dv_hashtab, DI2HIKEY(v));
2510 
2511 	if (ai >= 0 && ai < MAX_FUNC_ARGS)
2512 	{
2513 	    listitem_T *li = &fc->l_listitems[ai];
2514 
2515 	    li->li_tv = argvars[i];
2516 	    li->li_tv.v_lock = VAR_FIXED;
2517 	    list_append(&fc->l_varlist, li);
2518 	}
2519     }
2520 
2521     // Don't redraw while executing the function.
2522     ++RedrawingDisabled;
2523 
2524     if (fp->uf_flags & FC_SANDBOX)
2525     {
2526 	using_sandbox = TRUE;
2527 	++sandbox;
2528     }
2529 
2530     estack_push_ufunc(fp, 1);
2531     ESTACK_CHECK_SETUP
2532     if (p_verbose >= 12)
2533     {
2534 	++no_wait_return;
2535 	verbose_enter_scroll();
2536 
2537 	smsg(_("calling %s"), SOURCING_NAME);
2538 	if (p_verbose >= 14)
2539 	{
2540 	    char_u	buf[MSG_BUF_LEN];
2541 	    char_u	numbuf2[NUMBUFLEN];
2542 	    char_u	*tofree;
2543 	    char_u	*s;
2544 
2545 	    msg_puts("(");
2546 	    for (i = 0; i < argcount; ++i)
2547 	    {
2548 		if (i > 0)
2549 		    msg_puts(", ");
2550 		if (argvars[i].v_type == VAR_NUMBER)
2551 		    msg_outnum((long)argvars[i].vval.v_number);
2552 		else
2553 		{
2554 		    // Do not want errors such as E724 here.
2555 		    ++emsg_off;
2556 		    s = tv2string(&argvars[i], &tofree, numbuf2, 0);
2557 		    --emsg_off;
2558 		    if (s != NULL)
2559 		    {
2560 			if (vim_strsize(s) > MSG_BUF_CLEN)
2561 			{
2562 			    trunc_string(s, buf, MSG_BUF_CLEN, MSG_BUF_LEN);
2563 			    s = buf;
2564 			}
2565 			msg_puts((char *)s);
2566 			vim_free(tofree);
2567 		    }
2568 		}
2569 	    }
2570 	    msg_puts(")");
2571 	}
2572 	msg_puts("\n");   // don't overwrite this either
2573 
2574 	verbose_leave_scroll();
2575 	--no_wait_return;
2576     }
2577 #ifdef FEAT_PROFILE
2578     if (do_profiling == PROF_YES)
2579 	profile_may_start_func(&profile_info, fp,
2580 				 fc->caller == NULL ? NULL : fc->caller->func);
2581 #endif
2582 
2583     save_current_sctx = current_sctx;
2584     current_sctx = fp->uf_script_ctx;
2585     save_did_emsg = did_emsg;
2586     did_emsg = FALSE;
2587 
2588     if (default_arg_err && (fp->uf_flags & FC_ABORT))
2589 	did_emsg = TRUE;
2590     else if (islambda)
2591     {
2592 	char_u *p = *(char_u **)fp->uf_lines.ga_data + 7;
2593 
2594 	// A Lambda always has the command "return {expr}".  It is much faster
2595 	// to evaluate {expr} directly.
2596 	++ex_nesting_level;
2597 	(void)eval1(&p, rettv, &EVALARG_EVALUATE);
2598 	--ex_nesting_level;
2599     }
2600     else
2601 	// call do_cmdline() to execute the lines
2602 	do_cmdline(NULL, get_func_line, (void *)fc,
2603 				     DOCMD_NOWAIT|DOCMD_VERBOSE|DOCMD_REPEAT);
2604 
2605     --RedrawingDisabled;
2606 
2607     // when the function was aborted because of an error, return -1
2608     if ((did_emsg && (fp->uf_flags & FC_ABORT)) || rettv->v_type == VAR_UNKNOWN)
2609     {
2610 	clear_tv(rettv);
2611 	rettv->v_type = VAR_NUMBER;
2612 	rettv->vval.v_number = -1;
2613     }
2614 
2615 #ifdef FEAT_PROFILE
2616     if (do_profiling == PROF_YES)
2617     {
2618 	ufunc_T *caller = fc->caller == NULL ? NULL : fc->caller->func;
2619 
2620 	if (fp->uf_profiling || (caller != NULL && caller->uf_profiling))
2621 	    profile_may_end_func(&profile_info, fp, caller);
2622     }
2623 #endif
2624 
2625     // when being verbose, mention the return value
2626     if (p_verbose >= 12)
2627     {
2628 	++no_wait_return;
2629 	verbose_enter_scroll();
2630 
2631 	if (aborting())
2632 	    smsg(_("%s aborted"), SOURCING_NAME);
2633 	else if (fc->rettv->v_type == VAR_NUMBER)
2634 	    smsg(_("%s returning #%ld"), SOURCING_NAME,
2635 					       (long)fc->rettv->vval.v_number);
2636 	else
2637 	{
2638 	    char_u	buf[MSG_BUF_LEN];
2639 	    char_u	numbuf2[NUMBUFLEN];
2640 	    char_u	*tofree;
2641 	    char_u	*s;
2642 
2643 	    // The value may be very long.  Skip the middle part, so that we
2644 	    // have some idea how it starts and ends. smsg() would always
2645 	    // truncate it at the end. Don't want errors such as E724 here.
2646 	    ++emsg_off;
2647 	    s = tv2string(fc->rettv, &tofree, numbuf2, 0);
2648 	    --emsg_off;
2649 	    if (s != NULL)
2650 	    {
2651 		if (vim_strsize(s) > MSG_BUF_CLEN)
2652 		{
2653 		    trunc_string(s, buf, MSG_BUF_CLEN, MSG_BUF_LEN);
2654 		    s = buf;
2655 		}
2656 		smsg(_("%s returning %s"), SOURCING_NAME, s);
2657 		vim_free(tofree);
2658 	    }
2659 	}
2660 	msg_puts("\n");   // don't overwrite this either
2661 
2662 	verbose_leave_scroll();
2663 	--no_wait_return;
2664     }
2665 
2666     ESTACK_CHECK_NOW
2667     estack_pop();
2668     current_sctx = save_current_sctx;
2669 #ifdef FEAT_PROFILE
2670     if (do_profiling == PROF_YES)
2671 	script_prof_restore(&profile_info.pi_wait_start);
2672 #endif
2673     if (using_sandbox)
2674 	--sandbox;
2675 
2676     if (p_verbose >= 12 && SOURCING_NAME != NULL)
2677     {
2678 	++no_wait_return;
2679 	verbose_enter_scroll();
2680 
2681 	smsg(_("continuing in %s"), SOURCING_NAME);
2682 	msg_puts("\n");   // don't overwrite this either
2683 
2684 	verbose_leave_scroll();
2685 	--no_wait_return;
2686     }
2687 
2688     did_emsg |= save_did_emsg;
2689     funcdepth_decrement();
2690     for (i = 0; i < tv_to_free_len; ++i)
2691 	clear_tv(tv_to_free[i]);
2692     cleanup_function_call(fc);
2693 }
2694 
2695 /*
2696  * Check the argument count for user function "fp".
2697  * Return FCERR_UNKNOWN if OK, FCERR_TOOFEW or FCERR_TOOMANY otherwise.
2698  */
2699     int
2700 check_user_func_argcount(ufunc_T *fp, int argcount)
2701 {
2702     int regular_args = fp->uf_args.ga_len;
2703 
2704     if (argcount < regular_args - fp->uf_def_args.ga_len)
2705 	return FCERR_TOOFEW;
2706     else if (!has_varargs(fp) && argcount > regular_args)
2707 	return FCERR_TOOMANY;
2708     return FCERR_UNKNOWN;
2709 }
2710 
2711 /*
2712  * Call a user function after checking the arguments.
2713  */
2714     int
2715 call_user_func_check(
2716 	ufunc_T	    *fp,
2717 	int	    argcount,
2718 	typval_T    *argvars,
2719 	typval_T    *rettv,
2720 	funcexe_T   *funcexe,
2721 	dict_T	    *selfdict)
2722 {
2723     int error;
2724 
2725     if (fp->uf_flags & FC_RANGE && funcexe->doesrange != NULL)
2726 	*funcexe->doesrange = TRUE;
2727     error = check_user_func_argcount(fp, argcount);
2728     if (error != FCERR_UNKNOWN)
2729 	return error;
2730     if ((fp->uf_flags & FC_DICT) && selfdict == NULL)
2731 	error = FCERR_DICT;
2732     else
2733     {
2734 	int		did_save_redo = FALSE;
2735 	save_redo_T	save_redo;
2736 
2737 	/*
2738 	 * Call the user function.
2739 	 * Save and restore search patterns, script variables and
2740 	 * redo buffer.
2741 	 */
2742 	save_search_patterns();
2743 	if (!ins_compl_active())
2744 	{
2745 	    saveRedobuff(&save_redo);
2746 	    did_save_redo = TRUE;
2747 	}
2748 	++fp->uf_calls;
2749 	call_user_func(fp, argcount, argvars, rettv, funcexe,
2750 				   (fp->uf_flags & FC_DICT) ? selfdict : NULL);
2751 	if (--fp->uf_calls <= 0 && fp->uf_refcount <= 0)
2752 	    // Function was unreferenced while being used, free it now.
2753 	    func_clear_free(fp, FALSE);
2754 	if (did_save_redo)
2755 	    restoreRedobuff(&save_redo);
2756 	restore_search_patterns();
2757 	error = FCERR_NONE;
2758     }
2759     return error;
2760 }
2761 
2762 static funccal_entry_T *funccal_stack = NULL;
2763 
2764 /*
2765  * Save the current function call pointer, and set it to NULL.
2766  * Used when executing autocommands and for ":source".
2767  */
2768     void
2769 save_funccal(funccal_entry_T *entry)
2770 {
2771     entry->top_funccal = current_funccal;
2772     entry->next = funccal_stack;
2773     funccal_stack = entry;
2774     current_funccal = NULL;
2775 }
2776 
2777     void
2778 restore_funccal(void)
2779 {
2780     if (funccal_stack == NULL)
2781 	iemsg("INTERNAL: restore_funccal()");
2782     else
2783     {
2784 	current_funccal = funccal_stack->top_funccal;
2785 	funccal_stack = funccal_stack->next;
2786     }
2787 }
2788 
2789     funccall_T *
2790 get_current_funccal(void)
2791 {
2792     return current_funccal;
2793 }
2794 
2795 /*
2796  * Mark all functions of script "sid" as deleted.
2797  */
2798     void
2799 delete_script_functions(int sid)
2800 {
2801     hashitem_T	*hi;
2802     ufunc_T	*fp;
2803     long_u	todo = 1;
2804     char_u	buf[30];
2805     size_t	len;
2806 
2807     buf[0] = K_SPECIAL;
2808     buf[1] = KS_EXTRA;
2809     buf[2] = (int)KE_SNR;
2810     sprintf((char *)buf + 3, "%d_", sid);
2811     len = STRLEN(buf);
2812 
2813     while (todo > 0)
2814     {
2815 	todo = func_hashtab.ht_used;
2816 	for (hi = func_hashtab.ht_array; todo > 0; ++hi)
2817 	    if (!HASHITEM_EMPTY(hi))
2818 	    {
2819 		fp = HI2UF(hi);
2820 		if (STRNCMP(fp->uf_name, buf, len) == 0)
2821 		{
2822 		    int changed = func_hashtab.ht_changed;
2823 
2824 		    fp->uf_flags |= FC_DEAD;
2825 
2826 		    if (fp->uf_calls > 0)
2827 		    {
2828 			// Function is executing, don't free it but do remove
2829 			// it from the hashtable.
2830 			if (func_remove(fp))
2831 			    fp->uf_refcount--;
2832 		    }
2833 		    else
2834 		    {
2835 			func_clear(fp, TRUE);
2836 			// When clearing a function another function can be
2837 			// cleared as a side effect.  When that happens start
2838 			// over.
2839 			if (changed != func_hashtab.ht_changed)
2840 			    break;
2841 		    }
2842 		}
2843 		--todo;
2844 	    }
2845     }
2846 }
2847 
2848 #if defined(EXITFREE) || defined(PROTO)
2849     void
2850 free_all_functions(void)
2851 {
2852     hashitem_T	*hi;
2853     ufunc_T	*fp;
2854     long_u	skipped = 0;
2855     long_u	todo = 1;
2856     int		changed;
2857 
2858     // Clean up the current_funccal chain and the funccal stack.
2859     while (current_funccal != NULL)
2860     {
2861 	clear_tv(current_funccal->rettv);
2862 	cleanup_function_call(current_funccal);
2863 	if (current_funccal == NULL && funccal_stack != NULL)
2864 	    restore_funccal();
2865     }
2866 
2867     // First clear what the functions contain.  Since this may lower the
2868     // reference count of a function, it may also free a function and change
2869     // the hash table. Restart if that happens.
2870     while (todo > 0)
2871     {
2872 	todo = func_hashtab.ht_used;
2873 	for (hi = func_hashtab.ht_array; todo > 0; ++hi)
2874 	    if (!HASHITEM_EMPTY(hi))
2875 	    {
2876 		// clear the def function index now
2877 		fp = HI2UF(hi);
2878 		fp->uf_flags &= ~FC_DEAD;
2879 		fp->uf_def_status = UF_NOT_COMPILED;
2880 
2881 		// Only free functions that are not refcounted, those are
2882 		// supposed to be freed when no longer referenced.
2883 		if (func_name_refcount(fp->uf_name))
2884 		    ++skipped;
2885 		else
2886 		{
2887 		    changed = func_hashtab.ht_changed;
2888 		    func_clear(fp, TRUE);
2889 		    if (changed != func_hashtab.ht_changed)
2890 		    {
2891 			skipped = 0;
2892 			break;
2893 		    }
2894 		}
2895 		--todo;
2896 	    }
2897     }
2898 
2899     // Now actually free the functions.  Need to start all over every time,
2900     // because func_free() may change the hash table.
2901     skipped = 0;
2902     while (func_hashtab.ht_used > skipped)
2903     {
2904 	todo = func_hashtab.ht_used;
2905 	for (hi = func_hashtab.ht_array; todo > 0; ++hi)
2906 	    if (!HASHITEM_EMPTY(hi))
2907 	    {
2908 		--todo;
2909 		// Only free functions that are not refcounted, those are
2910 		// supposed to be freed when no longer referenced.
2911 		fp = HI2UF(hi);
2912 		if (func_name_refcount(fp->uf_name))
2913 		    ++skipped;
2914 		else
2915 		{
2916 		    if (func_free(fp, FALSE) == OK)
2917 		    {
2918 			skipped = 0;
2919 			break;
2920 		    }
2921 		    // did not actually free it
2922 		    ++skipped;
2923 		}
2924 	    }
2925     }
2926     if (skipped == 0)
2927 	hash_clear(&func_hashtab);
2928 
2929     free_def_functions();
2930 }
2931 #endif
2932 
2933 /*
2934  * Return TRUE if "name" looks like a builtin function name: starts with a
2935  * lower case letter and doesn't contain AUTOLOAD_CHAR or ':'.
2936  * "len" is the length of "name", or -1 for NUL terminated.
2937  */
2938     int
2939 builtin_function(char_u *name, int len)
2940 {
2941     char_u *p;
2942 
2943     if (!ASCII_ISLOWER(name[0]) || name[1] == ':')
2944 	return FALSE;
2945     p = vim_strchr(name, AUTOLOAD_CHAR);
2946     return p == NULL || (len > 0 && p > name + len);
2947 }
2948 
2949     int
2950 func_call(
2951     char_u	*name,
2952     typval_T	*args,
2953     partial_T	*partial,
2954     dict_T	*selfdict,
2955     typval_T	*rettv)
2956 {
2957     list_T	*l = args->vval.v_list;
2958     listitem_T	*item;
2959     typval_T	argv[MAX_FUNC_ARGS + 1];
2960     int		argc = 0;
2961     int		r = 0;
2962 
2963     CHECK_LIST_MATERIALIZE(l);
2964     FOR_ALL_LIST_ITEMS(l, item)
2965     {
2966 	if (argc == MAX_FUNC_ARGS - (partial == NULL ? 0 : partial->pt_argc))
2967 	{
2968 	    emsg(_("E699: Too many arguments"));
2969 	    break;
2970 	}
2971 	// Make a copy of each argument.  This is needed to be able to set
2972 	// v_lock to VAR_FIXED in the copy without changing the original list.
2973 	copy_tv(&item->li_tv, &argv[argc++]);
2974     }
2975 
2976     if (item == NULL)
2977     {
2978 	funcexe_T funcexe;
2979 
2980 	CLEAR_FIELD(funcexe);
2981 	funcexe.firstline = curwin->w_cursor.lnum;
2982 	funcexe.lastline = curwin->w_cursor.lnum;
2983 	funcexe.evaluate = TRUE;
2984 	funcexe.partial = partial;
2985 	funcexe.selfdict = selfdict;
2986 	r = call_func(name, -1, rettv, argc, argv, &funcexe);
2987     }
2988 
2989     // Free the arguments.
2990     while (argc > 0)
2991 	clear_tv(&argv[--argc]);
2992 
2993     return r;
2994 }
2995 
2996 static int callback_depth = 0;
2997 
2998     int
2999 get_callback_depth(void)
3000 {
3001     return callback_depth;
3002 }
3003 
3004 /*
3005  * Invoke call_func() with a callback.
3006  */
3007     int
3008 call_callback(
3009     callback_T	*callback,
3010     int		len,		// length of "name" or -1 to use strlen()
3011     typval_T	*rettv,		// return value goes here
3012     int		argcount,	// number of "argvars"
3013     typval_T	*argvars)	// vars for arguments, must have "argcount"
3014 				// PLUS ONE elements!
3015 {
3016     funcexe_T	funcexe;
3017     int		ret;
3018 
3019     CLEAR_FIELD(funcexe);
3020     funcexe.evaluate = TRUE;
3021     funcexe.partial = callback->cb_partial;
3022     ++callback_depth;
3023     ret = call_func(callback->cb_name, len, rettv, argcount, argvars, &funcexe);
3024     --callback_depth;
3025     return ret;
3026 }
3027 
3028 /*
3029  * Give an error message for the result of a function.
3030  * Nothing if "error" is FCERR_NONE.
3031  */
3032     void
3033 user_func_error(int error, char_u *name)
3034 {
3035     switch (error)
3036     {
3037 	case FCERR_UNKNOWN:
3038 		emsg_funcname(e_unknownfunc, name);
3039 		break;
3040 	case FCERR_NOTMETHOD:
3041 		emsg_funcname(
3042 			N_("E276: Cannot use function as a method: %s"), name);
3043 		break;
3044 	case FCERR_DELETED:
3045 		emsg_funcname(N_(e_func_deleted), name);
3046 		break;
3047 	case FCERR_TOOMANY:
3048 		emsg_funcname((char *)e_toomanyarg, name);
3049 		break;
3050 	case FCERR_TOOFEW:
3051 		emsg_funcname((char *)e_toofewarg, name);
3052 		break;
3053 	case FCERR_SCRIPT:
3054 		emsg_funcname(
3055 		    N_("E120: Using <SID> not in a script context: %s"), name);
3056 		break;
3057 	case FCERR_DICT:
3058 		emsg_funcname(
3059 		      N_("E725: Calling dict function without Dictionary: %s"),
3060 			name);
3061 		break;
3062     }
3063 }
3064 
3065 /*
3066  * Call a function with its resolved parameters
3067  *
3068  * Return FAIL when the function can't be called,  OK otherwise.
3069  * Also returns OK when an error was encountered while executing the function.
3070  */
3071     int
3072 call_func(
3073     char_u	*funcname,	// name of the function
3074     int		len,		// length of "name" or -1 to use strlen()
3075     typval_T	*rettv,		// return value goes here
3076     int		argcount_in,	// number of "argvars"
3077     typval_T	*argvars_in,	// vars for arguments, must have "argcount"
3078 				// PLUS ONE elements!
3079     funcexe_T	*funcexe)	// more arguments
3080 {
3081     int		ret = FAIL;
3082     int		error = FCERR_NONE;
3083     int		i;
3084     ufunc_T	*fp = NULL;
3085     char_u	fname_buf[FLEN_FIXED + 1];
3086     char_u	*tofree = NULL;
3087     char_u	*fname = NULL;
3088     char_u	*name = NULL;
3089     int		argcount = argcount_in;
3090     typval_T	*argvars = argvars_in;
3091     dict_T	*selfdict = funcexe->selfdict;
3092     typval_T	argv[MAX_FUNC_ARGS + 1]; // used when "partial" or
3093 					 // "funcexe->basetv" is not NULL
3094     int		argv_clear = 0;
3095     int		argv_base = 0;
3096     partial_T	*partial = funcexe->partial;
3097 
3098     // Initialize rettv so that it is safe for caller to invoke clear_tv(rettv)
3099     // even when call_func() returns FAIL.
3100     rettv->v_type = VAR_UNKNOWN;
3101 
3102     if (partial != NULL)
3103 	fp = partial->pt_func;
3104     if (fp == NULL)
3105     {
3106 	// Make a copy of the name, if it comes from a funcref variable it
3107 	// could be changed or deleted in the called function.
3108 	name = len > 0 ? vim_strnsave(funcname, len) : vim_strsave(funcname);
3109 	if (name == NULL)
3110 	    return ret;
3111 
3112 	fname = fname_trans_sid(name, fname_buf, &tofree, &error);
3113     }
3114 
3115     if (funcexe->doesrange != NULL)
3116 	*funcexe->doesrange = FALSE;
3117 
3118     if (partial != NULL)
3119     {
3120 	// When the function has a partial with a dict and there is a dict
3121 	// argument, use the dict argument.  That is backwards compatible.
3122 	// When the dict was bound explicitly use the one from the partial.
3123 	if (partial->pt_dict != NULL && (selfdict == NULL || !partial->pt_auto))
3124 	    selfdict = partial->pt_dict;
3125 	if (error == FCERR_NONE && partial->pt_argc > 0)
3126 	{
3127 	    for (argv_clear = 0; argv_clear < partial->pt_argc; ++argv_clear)
3128 	    {
3129 		if (argv_clear + argcount_in >= MAX_FUNC_ARGS)
3130 		{
3131 		    error = FCERR_TOOMANY;
3132 		    goto theend;
3133 		}
3134 		copy_tv(&partial->pt_argv[argv_clear], &argv[argv_clear]);
3135 	    }
3136 	    for (i = 0; i < argcount_in; ++i)
3137 		argv[i + argv_clear] = argvars_in[i];
3138 	    argvars = argv;
3139 	    argcount = partial->pt_argc + argcount_in;
3140 	}
3141     }
3142 
3143     if (error == FCERR_NONE && funcexe->check_type != NULL && funcexe->evaluate)
3144     {
3145 	// Check that the argument types are OK for the types of the funcref.
3146 	if (check_argument_types(funcexe->check_type, argvars, argcount,
3147 				     (name != NULL) ? name : funcname) == FAIL)
3148 	    error = FCERR_OTHER;
3149     }
3150 
3151     if (error == FCERR_NONE && funcexe->evaluate)
3152     {
3153 	char_u *rfname = fname;
3154 	int	is_global = FALSE;
3155 
3156 	// Skip "g:" before a function name.
3157 	if (fp == NULL && fname[0] == 'g' && fname[1] == ':')
3158 	{
3159 	    is_global = TRUE;
3160 	    rfname = fname + 2;
3161 	}
3162 
3163 	rettv->v_type = VAR_NUMBER;	// default rettv is number zero
3164 	rettv->vval.v_number = 0;
3165 	error = FCERR_UNKNOWN;
3166 
3167 	if (fp != NULL || !builtin_function(rfname, -1))
3168 	{
3169 	    /*
3170 	     * User defined function.
3171 	     */
3172 	    if (fp == NULL)
3173 		fp = find_func(rfname, is_global, NULL);
3174 
3175 	    // Trigger FuncUndefined event, may load the function.
3176 	    if (fp == NULL
3177 		    && apply_autocmds(EVENT_FUNCUNDEFINED,
3178 						    rfname, rfname, TRUE, NULL)
3179 		    && !aborting())
3180 	    {
3181 		// executed an autocommand, search for the function again
3182 		fp = find_func(rfname, is_global, NULL);
3183 	    }
3184 	    // Try loading a package.
3185 	    if (fp == NULL && script_autoload(rfname, TRUE) && !aborting())
3186 	    {
3187 		// loaded a package, search for the function again
3188 		fp = find_func(rfname, is_global, NULL);
3189 	    }
3190 	    if (fp == NULL)
3191 	    {
3192 		char_u *p = untrans_function_name(rfname);
3193 
3194 		// If using Vim9 script try not local to the script.
3195 		// Don't do this if the name starts with "s:".
3196 		if (p != NULL && (funcname[0] != 's' || funcname[1] != ':'))
3197 		    fp = find_func(p, is_global, NULL);
3198 	    }
3199 
3200 	    if (fp != NULL && (fp->uf_flags & FC_DELETED))
3201 		error = FCERR_DELETED;
3202 #ifdef FEAT_LUA
3203 	    else if (fp != NULL && (fp->uf_flags & FC_CFUNC))
3204 	    {
3205 		cfunc_T cb = fp->uf_cb;
3206 
3207 		error = (*cb)(argcount, argvars, rettv, fp->uf_cb_state);
3208 	    }
3209 #endif
3210 	    else if (fp != NULL)
3211 	    {
3212 		if (funcexe->argv_func != NULL)
3213 		    // postponed filling in the arguments, do it now
3214 		    argcount = funcexe->argv_func(argcount, argvars, argv_clear,
3215 							   fp->uf_args.ga_len);
3216 
3217 		if (funcexe->basetv != NULL)
3218 		{
3219 		    // Method call: base->Method()
3220 		    mch_memmove(&argv[1], argvars, sizeof(typval_T) * argcount);
3221 		    argv[0] = *funcexe->basetv;
3222 		    argcount++;
3223 		    argvars = argv;
3224 		    argv_base = 1;
3225 		}
3226 
3227 		error = call_user_func_check(fp, argcount, argvars, rettv,
3228 							    funcexe, selfdict);
3229 	    }
3230 	}
3231 	else if (funcexe->basetv != NULL)
3232 	{
3233 	    /*
3234 	     * expr->method(): Find the method name in the table, call its
3235 	     * implementation with the base as one of the arguments.
3236 	     */
3237 	    error = call_internal_method(fname, argcount, argvars, rettv,
3238 							      funcexe->basetv);
3239 	}
3240 	else
3241 	{
3242 	    /*
3243 	     * Find the function name in the table, call its implementation.
3244 	     */
3245 	    error = call_internal_func(fname, argcount, argvars, rettv);
3246 	}
3247 
3248 	/*
3249 	 * The function call (or "FuncUndefined" autocommand sequence) might
3250 	 * have been aborted by an error, an interrupt, or an explicitly thrown
3251 	 * exception that has not been caught so far.  This situation can be
3252 	 * tested for by calling aborting().  For an error in an internal
3253 	 * function or for the "E132" error in call_user_func(), however, the
3254 	 * throw point at which the "force_abort" flag (temporarily reset by
3255 	 * emsg()) is normally updated has not been reached yet. We need to
3256 	 * update that flag first to make aborting() reliable.
3257 	 */
3258 	update_force_abort();
3259     }
3260     if (error == FCERR_NONE)
3261 	ret = OK;
3262 
3263 theend:
3264     /*
3265      * Report an error unless the argument evaluation or function call has been
3266      * cancelled due to an aborting error, an interrupt, or an exception.
3267      */
3268     if (!aborting())
3269     {
3270 	user_func_error(error, (name != NULL) ? name : funcname);
3271     }
3272 
3273     // clear the copies made from the partial
3274     while (argv_clear > 0)
3275 	clear_tv(&argv[--argv_clear + argv_base]);
3276 
3277     vim_free(tofree);
3278     vim_free(name);
3279 
3280     return ret;
3281 }
3282 
3283     char_u *
3284 printable_func_name(ufunc_T *fp)
3285 {
3286     return fp->uf_name_exp != NULL ? fp->uf_name_exp : fp->uf_name;
3287 }
3288 
3289 /*
3290  * List the head of the function: "function name(arg1, arg2)".
3291  */
3292     static void
3293 list_func_head(ufunc_T *fp, int indent)
3294 {
3295     int		j;
3296 
3297     msg_start();
3298     if (indent)
3299 	msg_puts("   ");
3300     if (fp->uf_def_status != UF_NOT_COMPILED)
3301 	msg_puts("def ");
3302     else
3303 	msg_puts("function ");
3304     msg_puts((char *)printable_func_name(fp));
3305     msg_putchar('(');
3306     for (j = 0; j < fp->uf_args.ga_len; ++j)
3307     {
3308 	if (j)
3309 	    msg_puts(", ");
3310 	msg_puts((char *)FUNCARG(fp, j));
3311 	if (fp->uf_arg_types != NULL)
3312 	{
3313 	    char *tofree;
3314 
3315 	    msg_puts(": ");
3316 	    msg_puts(type_name(fp->uf_arg_types[j], &tofree));
3317 	    vim_free(tofree);
3318 	}
3319 	if (j >= fp->uf_args.ga_len - fp->uf_def_args.ga_len)
3320 	{
3321 	    msg_puts(" = ");
3322 	    msg_puts(((char **)(fp->uf_def_args.ga_data))
3323 		       [j - fp->uf_args.ga_len + fp->uf_def_args.ga_len]);
3324 	}
3325     }
3326     if (fp->uf_varargs)
3327     {
3328 	if (j)
3329 	    msg_puts(", ");
3330 	msg_puts("...");
3331     }
3332     if (fp->uf_va_name != NULL)
3333     {
3334 	if (j)
3335 	    msg_puts(", ");
3336 	msg_puts("...");
3337 	msg_puts((char *)fp->uf_va_name);
3338 	if (fp->uf_va_type != NULL)
3339 	{
3340 	    char *tofree;
3341 
3342 	    msg_puts(": ");
3343 	    msg_puts(type_name(fp->uf_va_type, &tofree));
3344 	    vim_free(tofree);
3345 	}
3346     }
3347     msg_putchar(')');
3348 
3349     if (fp->uf_def_status != UF_NOT_COMPILED)
3350     {
3351 	if (fp->uf_ret_type != &t_void)
3352 	{
3353 	    char *tofree;
3354 
3355 	    msg_puts(": ");
3356 	    msg_puts(type_name(fp->uf_ret_type, &tofree));
3357 	    vim_free(tofree);
3358 	}
3359     }
3360     else if (fp->uf_flags & FC_ABORT)
3361 	msg_puts(" abort");
3362     if (fp->uf_flags & FC_RANGE)
3363 	msg_puts(" range");
3364     if (fp->uf_flags & FC_DICT)
3365 	msg_puts(" dict");
3366     if (fp->uf_flags & FC_CLOSURE)
3367 	msg_puts(" closure");
3368     msg_clr_eos();
3369     if (p_verbose > 0)
3370 	last_set_msg(fp->uf_script_ctx);
3371 }
3372 
3373 /*
3374  * Get a function name, translating "<SID>" and "<SNR>".
3375  * Also handles a Funcref in a List or Dictionary.
3376  * Returns the function name in allocated memory, or NULL for failure.
3377  * Set "*is_global" to TRUE when the function must be global, unless
3378  * "is_global" is NULL.
3379  * flags:
3380  * TFN_INT:	    internal function name OK
3381  * TFN_QUIET:	    be quiet
3382  * TFN_NO_AUTOLOAD: do not use script autoloading
3383  * TFN_NO_DEREF:    do not dereference a Funcref
3384  * Advances "pp" to just after the function name (if no error).
3385  */
3386     char_u *
3387 trans_function_name(
3388     char_u	**pp,
3389     int		*is_global,
3390     int		skip,		// only find the end, don't evaluate
3391     int		flags,
3392     funcdict_T	*fdp,		// return: info about dictionary used
3393     partial_T	**partial,	// return: partial of a FuncRef
3394     type_T	**type)		// return: type of funcref if not NULL
3395 {
3396     char_u	*name = NULL;
3397     char_u	*start;
3398     char_u	*end;
3399     int		lead;
3400     char_u	sid_buf[20];
3401     int		len;
3402     int		extra = 0;
3403     lval_T	lv;
3404     int		vim9script;
3405     static char *e_function_name = N_("E129: Function name required");
3406 
3407     if (fdp != NULL)
3408 	CLEAR_POINTER(fdp);
3409     start = *pp;
3410 
3411     // Check for hard coded <SNR>: already translated function ID (from a user
3412     // command).
3413     if ((*pp)[0] == K_SPECIAL && (*pp)[1] == KS_EXTRA
3414 						   && (*pp)[2] == (int)KE_SNR)
3415     {
3416 	*pp += 3;
3417 	len = get_id_len(pp) + 3;
3418 	return vim_strnsave(start, len);
3419     }
3420 
3421     // A name starting with "<SID>" or "<SNR>" is local to a script.  But
3422     // don't skip over "s:", get_lval() needs it for "s:dict.func".
3423     lead = eval_fname_script(start);
3424     if (lead > 2)
3425 	start += lead;
3426 
3427     // Note that TFN_ flags use the same values as GLV_ flags.
3428     end = get_lval(start, NULL, &lv, FALSE, skip, flags | GLV_READ_ONLY,
3429 					      lead > 2 ? 0 : FNE_CHECK_START);
3430     if (end == start)
3431     {
3432 	if (!skip)
3433 	    emsg(_(e_function_name));
3434 	goto theend;
3435     }
3436     if (end == NULL || (lv.ll_tv != NULL && (lead > 2 || lv.ll_range)))
3437     {
3438 	/*
3439 	 * Report an invalid expression in braces, unless the expression
3440 	 * evaluation has been cancelled due to an aborting error, an
3441 	 * interrupt, or an exception.
3442 	 */
3443 	if (!aborting())
3444 	{
3445 	    if (end != NULL)
3446 		semsg(_(e_invarg2), start);
3447 	}
3448 	else
3449 	    *pp = find_name_end(start, NULL, NULL, FNE_INCL_BR);
3450 	goto theend;
3451     }
3452 
3453     if (lv.ll_tv != NULL)
3454     {
3455 	if (fdp != NULL)
3456 	{
3457 	    fdp->fd_dict = lv.ll_dict;
3458 	    fdp->fd_newkey = lv.ll_newkey;
3459 	    lv.ll_newkey = NULL;
3460 	    fdp->fd_di = lv.ll_di;
3461 	}
3462 	if (lv.ll_tv->v_type == VAR_FUNC && lv.ll_tv->vval.v_string != NULL)
3463 	{
3464 	    name = vim_strsave(lv.ll_tv->vval.v_string);
3465 	    *pp = end;
3466 	}
3467 	else if (lv.ll_tv->v_type == VAR_PARTIAL
3468 					  && lv.ll_tv->vval.v_partial != NULL)
3469 	{
3470 	    name = vim_strsave(partial_name(lv.ll_tv->vval.v_partial));
3471 	    *pp = end;
3472 	    if (partial != NULL)
3473 		*partial = lv.ll_tv->vval.v_partial;
3474 	}
3475 	else
3476 	{
3477 	    if (!skip && !(flags & TFN_QUIET) && (fdp == NULL
3478 			     || lv.ll_dict == NULL || fdp->fd_newkey == NULL))
3479 		emsg(_(e_funcref));
3480 	    else
3481 		*pp = end;
3482 	    name = NULL;
3483 	}
3484 	goto theend;
3485     }
3486 
3487     if (lv.ll_name == NULL)
3488     {
3489 	// Error found, but continue after the function name.
3490 	*pp = end;
3491 	goto theend;
3492     }
3493 
3494     // Check if the name is a Funcref.  If so, use the value.
3495     if (lv.ll_exp_name != NULL)
3496     {
3497 	len = (int)STRLEN(lv.ll_exp_name);
3498 	name = deref_func_name(lv.ll_exp_name, &len, partial, type,
3499 						     flags & TFN_NO_AUTOLOAD);
3500 	if (name == lv.ll_exp_name)
3501 	    name = NULL;
3502     }
3503     else if (!(flags & TFN_NO_DEREF))
3504     {
3505 	len = (int)(end - *pp);
3506 	name = deref_func_name(*pp, &len, partial, type,
3507 						      flags & TFN_NO_AUTOLOAD);
3508 	if (name == *pp)
3509 	    name = NULL;
3510     }
3511     if (name != NULL)
3512     {
3513 	name = vim_strsave(name);
3514 	*pp = end;
3515 	if (STRNCMP(name, "<SNR>", 5) == 0)
3516 	{
3517 	    // Change "<SNR>" to the byte sequence.
3518 	    name[0] = K_SPECIAL;
3519 	    name[1] = KS_EXTRA;
3520 	    name[2] = (int)KE_SNR;
3521 	    mch_memmove(name + 3, name + 5, STRLEN(name + 5) + 1);
3522 	}
3523 	goto theend;
3524     }
3525 
3526     if (lv.ll_exp_name != NULL)
3527     {
3528 	len = (int)STRLEN(lv.ll_exp_name);
3529 	if (lead <= 2 && lv.ll_name == lv.ll_exp_name
3530 					 && STRNCMP(lv.ll_name, "s:", 2) == 0)
3531 	{
3532 	    // When there was "s:" already or the name expanded to get a
3533 	    // leading "s:" then remove it.
3534 	    lv.ll_name += 2;
3535 	    len -= 2;
3536 	    lead = 2;
3537 	}
3538     }
3539     else
3540     {
3541 	// skip over "s:" and "g:"
3542 	if (lead == 2 || (lv.ll_name[0] == 'g' && lv.ll_name[1] == ':'))
3543 	{
3544 	    if (is_global != NULL && lv.ll_name[0] == 'g')
3545 		*is_global = TRUE;
3546 	    lv.ll_name += 2;
3547 	}
3548 	len = (int)(end - lv.ll_name);
3549     }
3550     if (len <= 0)
3551     {
3552 	if (!skip)
3553 	    emsg(_(e_function_name));
3554 	goto theend;
3555     }
3556 
3557     // In Vim9 script a user function is script-local by default, unless it
3558     // starts with a lower case character: dict.func().
3559     vim9script = ASCII_ISUPPER(*start) && in_vim9script();
3560     if (vim9script)
3561     {
3562 	char_u *p;
3563 
3564 	// SomeScript#func() is a global function.
3565 	for (p = start; *p != NUL && *p != '('; ++p)
3566 	    if (*p == AUTOLOAD_CHAR)
3567 		vim9script = FALSE;
3568     }
3569 
3570     /*
3571      * Copy the function name to allocated memory.
3572      * Accept <SID>name() inside a script, translate into <SNR>123_name().
3573      * Accept <SNR>123_name() outside a script.
3574      */
3575     if (skip)
3576 	lead = 0;	// do nothing
3577     else if (lead > 0 || vim9script)
3578     {
3579 	if (!vim9script)
3580 	    lead = 3;
3581 	if (vim9script || (lv.ll_exp_name != NULL
3582 					     && eval_fname_sid(lv.ll_exp_name))
3583 						       || eval_fname_sid(*pp))
3584 	{
3585 	    // It's script-local, "s:" or "<SID>"
3586 	    if (current_sctx.sc_sid <= 0)
3587 	    {
3588 		emsg(_(e_usingsid));
3589 		goto theend;
3590 	    }
3591 	    sprintf((char *)sid_buf, "%ld_", (long)current_sctx.sc_sid);
3592 	    if (vim9script)
3593 		extra = 3 + (int)STRLEN(sid_buf);
3594 	    else
3595 		lead += (int)STRLEN(sid_buf);
3596 	}
3597     }
3598     else if (!(flags & TFN_INT) && builtin_function(lv.ll_name, len))
3599     {
3600 	semsg(_("E128: Function name must start with a capital or \"s:\": %s"),
3601 								       start);
3602 	goto theend;
3603     }
3604     if (!skip && !(flags & TFN_QUIET) && !(flags & TFN_NO_DEREF))
3605     {
3606 	char_u *cp = vim_strchr(lv.ll_name, ':');
3607 
3608 	if (cp != NULL && cp < end)
3609 	{
3610 	    semsg(_("E884: Function name cannot contain a colon: %s"), start);
3611 	    goto theend;
3612 	}
3613     }
3614 
3615     name = alloc(len + lead + extra + 1);
3616     if (name != NULL)
3617     {
3618 	if (!skip && (lead > 0 || vim9script))
3619 	{
3620 	    name[0] = K_SPECIAL;
3621 	    name[1] = KS_EXTRA;
3622 	    name[2] = (int)KE_SNR;
3623 	    if (vim9script || lead > 3)	// If it's "<SID>"
3624 		STRCPY(name + 3, sid_buf);
3625 	}
3626 	mch_memmove(name + lead + extra, lv.ll_name, (size_t)len);
3627 	name[lead + extra + len] = NUL;
3628     }
3629     *pp = end;
3630 
3631 theend:
3632     clear_lval(&lv);
3633     return name;
3634 }
3635 
3636 /*
3637  * Assuming "name" is the result of trans_function_name() and it was prefixed
3638  * to use the script-local name, return the unmodified name (points into
3639  * "name").  Otherwise return NULL.
3640  * This can be used to first search for a script-local function and fall back
3641  * to the global function if not found.
3642  */
3643     char_u *
3644 untrans_function_name(char_u *name)
3645 {
3646     char_u *p;
3647 
3648     if (*name == K_SPECIAL && in_vim9script())
3649     {
3650 	p = vim_strchr(name, '_');
3651 	if (p != NULL)
3652 	    return p + 1;
3653     }
3654     return NULL;
3655 }
3656 
3657 /*
3658  * List functions.  When "regmatch" is NULL all of then.
3659  * Otherwise functions matching "regmatch".
3660  */
3661     void
3662 list_functions(regmatch_T *regmatch)
3663 {
3664     int		changed = func_hashtab.ht_changed;
3665     long_u	todo = func_hashtab.ht_used;
3666     hashitem_T	*hi;
3667 
3668     for (hi = func_hashtab.ht_array; todo > 0 && !got_int; ++hi)
3669     {
3670 	if (!HASHITEM_EMPTY(hi))
3671 	{
3672 	    ufunc_T	*fp = HI2UF(hi);
3673 
3674 	    --todo;
3675 	    if ((fp->uf_flags & FC_DEAD) == 0
3676 		    && (regmatch == NULL
3677 			? !message_filtered(fp->uf_name)
3678 			    && !func_name_refcount(fp->uf_name)
3679 			: !isdigit(*fp->uf_name)
3680 			    && vim_regexec(regmatch, fp->uf_name, 0)))
3681 	    {
3682 		list_func_head(fp, FALSE);
3683 		if (changed != func_hashtab.ht_changed)
3684 		{
3685 		    emsg(_("E454: function list was modified"));
3686 		    return;
3687 		}
3688 	    }
3689 	}
3690     }
3691 }
3692 
3693 /*
3694  * ":function" also supporting nested ":def".
3695  * When "name_arg" is not NULL this is a nested function, using "name_arg" for
3696  * the function name.
3697  * Returns a pointer to the function or NULL if no function defined.
3698  */
3699     ufunc_T *
3700 define_function(exarg_T *eap, char_u *name_arg)
3701 {
3702     char_u	*line_to_free = NULL;
3703     int		j;
3704     int		c;
3705     int		saved_did_emsg;
3706     char_u	*name = name_arg;
3707     int		is_global = FALSE;
3708     char_u	*p;
3709     char_u	*arg;
3710     char_u	*whitep;
3711     char_u	*line_arg = NULL;
3712     garray_T	newargs;
3713     garray_T	argtypes;
3714     garray_T	default_args;
3715     garray_T	newlines;
3716     int		varargs = FALSE;
3717     int		flags = 0;
3718     char_u	*ret_type = NULL;
3719     ufunc_T	*fp = NULL;
3720     int		overwrite = FALSE;
3721     dictitem_T	*v;
3722     funcdict_T	fudi;
3723     static int	func_nr = 0;	    // number for nameless function
3724     int		paren;
3725     hashitem_T	*hi;
3726     linenr_T	sourcing_lnum_top;
3727     int		vim9script = in_vim9script();
3728     imported_T	*import = NULL;
3729 
3730     /*
3731      * ":function" without argument: list functions.
3732      */
3733     if (ends_excmd2(eap->cmd, eap->arg))
3734     {
3735 	if (!eap->skip)
3736 	    list_functions(NULL);
3737 	eap->nextcmd = check_nextcmd(eap->arg);
3738 	return NULL;
3739     }
3740 
3741     /*
3742      * ":function /pat": list functions matching pattern.
3743      */
3744     if (*eap->arg == '/')
3745     {
3746 	p = skip_regexp(eap->arg + 1, '/', TRUE);
3747 	if (!eap->skip)
3748 	{
3749 	    regmatch_T	regmatch;
3750 
3751 	    c = *p;
3752 	    *p = NUL;
3753 	    regmatch.regprog = vim_regcomp(eap->arg + 1, RE_MAGIC);
3754 	    *p = c;
3755 	    if (regmatch.regprog != NULL)
3756 	    {
3757 		regmatch.rm_ic = p_ic;
3758 		list_functions(&regmatch);
3759 		vim_regfree(regmatch.regprog);
3760 	    }
3761 	}
3762 	if (*p == '/')
3763 	    ++p;
3764 	eap->nextcmd = check_nextcmd(p);
3765 	return NULL;
3766     }
3767 
3768     ga_init(&newargs);
3769     ga_init(&argtypes);
3770     ga_init(&default_args);
3771 
3772     /*
3773      * Get the function name.  There are these situations:
3774      * func	    normal function name
3775      *		    "name" == func, "fudi.fd_dict" == NULL
3776      * dict.func    new dictionary entry
3777      *		    "name" == NULL, "fudi.fd_dict" set,
3778      *		    "fudi.fd_di" == NULL, "fudi.fd_newkey" == func
3779      * dict.func    existing dict entry with a Funcref
3780      *		    "name" == func, "fudi.fd_dict" set,
3781      *		    "fudi.fd_di" set, "fudi.fd_newkey" == NULL
3782      * dict.func    existing dict entry that's not a Funcref
3783      *		    "name" == NULL, "fudi.fd_dict" set,
3784      *		    "fudi.fd_di" set, "fudi.fd_newkey" == NULL
3785      * s:func	    script-local function name
3786      * g:func	    global function name, same as "func"
3787      */
3788     p = eap->arg;
3789     if (name_arg != NULL)
3790     {
3791 	// nested function, argument is (args).
3792 	paren = TRUE;
3793 	CLEAR_FIELD(fudi);
3794     }
3795     else
3796     {
3797 	if (STRNCMP(p, "<lambda>", 8) == 0)
3798 	{
3799 	    p += 8;
3800 	    (void)getdigits(&p);
3801 	    name = vim_strnsave(eap->arg, p - eap->arg);
3802 	    CLEAR_FIELD(fudi);
3803 	}
3804 	else
3805 	    name = trans_function_name(&p, &is_global, eap->skip,
3806 					   TFN_NO_AUTOLOAD, &fudi, NULL, NULL);
3807 	paren = (vim_strchr(p, '(') != NULL);
3808 	if (name == NULL && (fudi.fd_dict == NULL || !paren) && !eap->skip)
3809 	{
3810 	    /*
3811 	     * Return on an invalid expression in braces, unless the expression
3812 	     * evaluation has been cancelled due to an aborting error, an
3813 	     * interrupt, or an exception.
3814 	     */
3815 	    if (!aborting())
3816 	    {
3817 		if (!eap->skip && fudi.fd_newkey != NULL)
3818 		    semsg(_(e_dictkey), fudi.fd_newkey);
3819 		vim_free(fudi.fd_newkey);
3820 		return NULL;
3821 	    }
3822 	    else
3823 		eap->skip = TRUE;
3824 	}
3825     }
3826 
3827     // An error in a function call during evaluation of an expression in magic
3828     // braces should not cause the function not to be defined.
3829     saved_did_emsg = did_emsg;
3830     did_emsg = FALSE;
3831 
3832     /*
3833      * ":function func" with only function name: list function.
3834      */
3835     if (!paren)
3836     {
3837 	if (!ends_excmd(*skipwhite(p)))
3838 	{
3839 	    semsg(_(e_trailing_arg), p);
3840 	    goto ret_free;
3841 	}
3842 	eap->nextcmd = check_nextcmd(p);
3843 	if (eap->nextcmd != NULL)
3844 	    *p = NUL;
3845 	if (!eap->skip && !got_int)
3846 	{
3847 	    fp = find_func(name, is_global, NULL);
3848 	    if (fp == NULL && ASCII_ISUPPER(*eap->arg))
3849 	    {
3850 		char_u *up = untrans_function_name(name);
3851 
3852 		// With Vim9 script the name was made script-local, if not
3853 		// found try again with the original name.
3854 		if (up != NULL)
3855 		    fp = find_func(up, FALSE, NULL);
3856 	    }
3857 
3858 	    if (fp != NULL)
3859 	    {
3860 		list_func_head(fp, TRUE);
3861 		for (j = 0; j < fp->uf_lines.ga_len && !got_int; ++j)
3862 		{
3863 		    if (FUNCLINE(fp, j) == NULL)
3864 			continue;
3865 		    msg_putchar('\n');
3866 		    msg_outnum((long)(j + 1));
3867 		    if (j < 9)
3868 			msg_putchar(' ');
3869 		    if (j < 99)
3870 			msg_putchar(' ');
3871 		    msg_prt_line(FUNCLINE(fp, j), FALSE);
3872 		    out_flush();	// show a line at a time
3873 		    ui_breakcheck();
3874 		}
3875 		if (!got_int)
3876 		{
3877 		    msg_putchar('\n');
3878 		    if (fp->uf_def_status != UF_NOT_COMPILED)
3879 			msg_puts("   enddef");
3880 		    else
3881 			msg_puts("   endfunction");
3882 		}
3883 	    }
3884 	    else
3885 		emsg_funcname(N_("E123: Undefined function: %s"), eap->arg);
3886 	}
3887 	goto ret_free;
3888     }
3889 
3890     /*
3891      * ":function name(arg1, arg2)" Define function.
3892      */
3893     p = skipwhite(p);
3894     if (*p != '(')
3895     {
3896 	if (!eap->skip)
3897 	{
3898 	    semsg(_("E124: Missing '(': %s"), eap->arg);
3899 	    goto ret_free;
3900 	}
3901 	// attempt to continue by skipping some text
3902 	if (vim_strchr(p, '(') != NULL)
3903 	    p = vim_strchr(p, '(');
3904     }
3905 
3906     if ((vim9script || eap->cmdidx == CMD_def) && VIM_ISWHITE(p[-1]))
3907     {
3908 	semsg(_(e_no_white_space_allowed_before_str_str), "(", p - 1);
3909 	goto ret_free;
3910     }
3911 
3912     // In Vim9 script only global functions can be redefined.
3913     if (vim9script && eap->forceit && !is_global)
3914     {
3915 	emsg(_(e_nobang));
3916 	goto ret_free;
3917     }
3918 
3919     ga_init2(&newlines, (int)sizeof(char_u *), 10);
3920 
3921     if (!eap->skip && name_arg == NULL)
3922     {
3923 	// Check the name of the function.  Unless it's a dictionary function
3924 	// (that we are overwriting).
3925 	if (name != NULL)
3926 	    arg = name;
3927 	else
3928 	    arg = fudi.fd_newkey;
3929 	if (arg != NULL && (fudi.fd_di == NULL
3930 				     || (fudi.fd_di->di_tv.v_type != VAR_FUNC
3931 				 && fudi.fd_di->di_tv.v_type != VAR_PARTIAL)))
3932 	{
3933 	    if (*arg == K_SPECIAL)
3934 		j = 3;
3935 	    else
3936 		j = 0;
3937 	    while (arg[j] != NUL && (j == 0 ? eval_isnamec1(arg[j])
3938 						      : eval_isnamec(arg[j])))
3939 		++j;
3940 	    if (arg[j] != NUL)
3941 		emsg_funcname((char *)e_invarg2, arg);
3942 	}
3943 	// Disallow using the g: dict.
3944 	if (fudi.fd_dict != NULL && fudi.fd_dict->dv_scope == VAR_DEF_SCOPE)
3945 	    emsg(_("E862: Cannot use g: here"));
3946     }
3947 
3948     // This may get more lines and make the pointers into the first line
3949     // invalid.
3950     ++p;
3951     if (get_function_args(&p, ')', &newargs,
3952 			eap->cmdidx == CMD_def ? &argtypes : NULL, FALSE,
3953 			 NULL, &varargs, &default_args, eap->skip,
3954 			 eap, &line_to_free) == FAIL)
3955 	goto errret_2;
3956     whitep = p;
3957 
3958     if (eap->cmdidx == CMD_def)
3959     {
3960 	// find the return type: :def Func(): type
3961 	if (*p == ':')
3962 	{
3963 	    ret_type = skipwhite(p + 1);
3964 	    p = skip_type(ret_type, FALSE);
3965 	    if (p > ret_type)
3966 	    {
3967 		ret_type = vim_strnsave(ret_type, p - ret_type);
3968 		whitep = p;
3969 		p = skipwhite(p);
3970 	    }
3971 	    else
3972 	    {
3973 		semsg(_(e_expected_type_str), ret_type);
3974 		ret_type = NULL;
3975 	    }
3976 	}
3977 	p = skipwhite(p);
3978     }
3979     else
3980 	// find extra arguments "range", "dict", "abort" and "closure"
3981 	for (;;)
3982 	{
3983 	    whitep = p;
3984 	    p = skipwhite(p);
3985 	    if (STRNCMP(p, "range", 5) == 0)
3986 	    {
3987 		flags |= FC_RANGE;
3988 		p += 5;
3989 	    }
3990 	    else if (STRNCMP(p, "dict", 4) == 0)
3991 	    {
3992 		flags |= FC_DICT;
3993 		p += 4;
3994 	    }
3995 	    else if (STRNCMP(p, "abort", 5) == 0)
3996 	    {
3997 		flags |= FC_ABORT;
3998 		p += 5;
3999 	    }
4000 	    else if (STRNCMP(p, "closure", 7) == 0)
4001 	    {
4002 		flags |= FC_CLOSURE;
4003 		p += 7;
4004 		if (current_funccal == NULL)
4005 		{
4006 		    emsg_funcname(N_("E932: Closure function should not be at top level: %s"),
4007 			    name == NULL ? (char_u *)"" : name);
4008 		    goto erret;
4009 		}
4010 	    }
4011 	    else
4012 		break;
4013 	}
4014 
4015     // When there is a line break use what follows for the function body.
4016     // Makes 'exe "func Test()\n...\nendfunc"' work.
4017     if (*p == '\n')
4018 	line_arg = p + 1;
4019     else if (*p != NUL
4020 	    && !(*p == '"' && (!vim9script || eap->cmdidx == CMD_function)
4021 						     && eap->cmdidx != CMD_def)
4022 	    && !(VIM_ISWHITE(*whitep) && *p == '#'
4023 				     && (vim9script || eap->cmdidx == CMD_def))
4024 	    && !eap->skip
4025 	    && !did_emsg)
4026 	semsg(_(e_trailing_arg), p);
4027 
4028     /*
4029      * Read the body of the function, until "}", ":endfunction" or ":enddef" is
4030      * found.
4031      */
4032     if (KeyTyped)
4033     {
4034 	// Check if the function already exists, don't let the user type the
4035 	// whole function before telling him it doesn't work!  For a script we
4036 	// need to skip the body to be able to find what follows.
4037 	if (!eap->skip && !eap->forceit)
4038 	{
4039 	    if (fudi.fd_dict != NULL && fudi.fd_newkey == NULL)
4040 		emsg(_(e_funcdict));
4041 	    else if (name != NULL && find_func(name, is_global, NULL) != NULL)
4042 		emsg_funcname(e_funcexts, name);
4043 	}
4044 
4045 	if (!eap->skip && did_emsg)
4046 	    goto erret;
4047 
4048 	msg_putchar('\n');	    // don't overwrite the function name
4049 	cmdline_row = msg_row;
4050     }
4051 
4052     // Save the starting line number.
4053     sourcing_lnum_top = SOURCING_LNUM;
4054 
4055     // Do not define the function when getting the body fails and when
4056     // skipping.
4057     if (get_function_body(eap, &newlines, line_arg, &line_to_free) == FAIL
4058 	    || eap->skip)
4059 	goto erret;
4060 
4061     /*
4062      * If there are no errors, add the function
4063      */
4064     if (fudi.fd_dict == NULL)
4065     {
4066 	hashtab_T	*ht;
4067 
4068 	v = find_var(name, &ht, TRUE);
4069 	if (v != NULL && v->di_tv.v_type == VAR_FUNC)
4070 	{
4071 	    emsg_funcname(N_("E707: Function name conflicts with variable: %s"),
4072 									name);
4073 	    goto erret;
4074 	}
4075 
4076 	fp = find_func_even_dead(name, is_global, NULL);
4077 	if (vim9script)
4078 	{
4079 	    char_u *uname = untrans_function_name(name);
4080 
4081 	    import = find_imported(uname == NULL ? name : uname, 0, NULL);
4082 	}
4083 
4084 	if (fp != NULL || import != NULL)
4085 	{
4086 	    int dead = fp != NULL && (fp->uf_flags & FC_DEAD);
4087 
4088 	    // Function can be replaced with "function!" and when sourcing the
4089 	    // same script again, but only once.
4090 	    // A name that is used by an import can not be overruled.
4091 	    if (import != NULL
4092 		    || (!dead && !eap->forceit
4093 			&& (fp->uf_script_ctx.sc_sid != current_sctx.sc_sid
4094 			  || fp->uf_script_ctx.sc_seq == current_sctx.sc_seq)))
4095 	    {
4096 		if (vim9script)
4097 		    emsg_funcname(e_name_already_defined_str, name);
4098 		else
4099 		    emsg_funcname(e_funcexts, name);
4100 		goto erret;
4101 	    }
4102 	    if (fp->uf_calls > 0)
4103 	    {
4104 		emsg_funcname(
4105 			N_("E127: Cannot redefine function %s: It is in use"),
4106 									name);
4107 		goto erret;
4108 	    }
4109 	    if (fp->uf_refcount > 1)
4110 	    {
4111 		// This function is referenced somewhere, don't redefine it but
4112 		// create a new one.
4113 		--fp->uf_refcount;
4114 		fp->uf_flags |= FC_REMOVED;
4115 		fp = NULL;
4116 		overwrite = TRUE;
4117 	    }
4118 	    else
4119 	    {
4120 		char_u *exp_name = fp->uf_name_exp;
4121 
4122 		// redefine existing function, keep the expanded name
4123 		VIM_CLEAR(name);
4124 		fp->uf_name_exp = NULL;
4125 		func_clear_items(fp);
4126 		fp->uf_name_exp = exp_name;
4127 		fp->uf_flags &= ~FC_DEAD;
4128 #ifdef FEAT_PROFILE
4129 		fp->uf_profiling = FALSE;
4130 		fp->uf_prof_initialized = FALSE;
4131 #endif
4132 		fp->uf_def_status = UF_NOT_COMPILED;
4133 	    }
4134 	}
4135     }
4136     else
4137     {
4138 	char	numbuf[20];
4139 
4140 	fp = NULL;
4141 	if (fudi.fd_newkey == NULL && !eap->forceit)
4142 	{
4143 	    emsg(_(e_funcdict));
4144 	    goto erret;
4145 	}
4146 	if (fudi.fd_di == NULL)
4147 	{
4148 	    // Can't add a function to a locked dictionary
4149 	    if (value_check_lock(fudi.fd_dict->dv_lock, eap->arg, FALSE))
4150 		goto erret;
4151 	}
4152 	    // Can't change an existing function if it is locked
4153 	else if (value_check_lock(fudi.fd_di->di_tv.v_lock, eap->arg, FALSE))
4154 	    goto erret;
4155 
4156 	// Give the function a sequential number.  Can only be used with a
4157 	// Funcref!
4158 	vim_free(name);
4159 	sprintf(numbuf, "%d", ++func_nr);
4160 	name = vim_strsave((char_u *)numbuf);
4161 	if (name == NULL)
4162 	    goto erret;
4163     }
4164 
4165     if (fp == NULL)
4166     {
4167 	if (fudi.fd_dict == NULL && vim_strchr(name, AUTOLOAD_CHAR) != NULL)
4168 	{
4169 	    int	    slen, plen;
4170 	    char_u  *scriptname;
4171 
4172 	    // Check that the autoload name matches the script name.
4173 	    j = FAIL;
4174 	    if (SOURCING_NAME != NULL)
4175 	    {
4176 		scriptname = autoload_name(name);
4177 		if (scriptname != NULL)
4178 		{
4179 		    p = vim_strchr(scriptname, '/');
4180 		    plen = (int)STRLEN(p);
4181 		    slen = (int)STRLEN(SOURCING_NAME);
4182 		    if (slen > plen && fnamecmp(p,
4183 					    SOURCING_NAME + slen - plen) == 0)
4184 			j = OK;
4185 		    vim_free(scriptname);
4186 		}
4187 	    }
4188 	    if (j == FAIL)
4189 	    {
4190 		linenr_T save_lnum = SOURCING_LNUM;
4191 
4192 		SOURCING_LNUM = sourcing_lnum_top;
4193 		semsg(_("E746: Function name does not match script file name: %s"), name);
4194 		SOURCING_LNUM = save_lnum;
4195 		goto erret;
4196 	    }
4197 	}
4198 
4199 	fp = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(name) + 1);
4200 	if (fp == NULL)
4201 	    goto erret;
4202 
4203 	if (fudi.fd_dict != NULL)
4204 	{
4205 	    if (fudi.fd_di == NULL)
4206 	    {
4207 		// add new dict entry
4208 		fudi.fd_di = dictitem_alloc(fudi.fd_newkey);
4209 		if (fudi.fd_di == NULL)
4210 		{
4211 		    vim_free(fp);
4212 		    fp = NULL;
4213 		    goto erret;
4214 		}
4215 		if (dict_add(fudi.fd_dict, fudi.fd_di) == FAIL)
4216 		{
4217 		    vim_free(fudi.fd_di);
4218 		    vim_free(fp);
4219 		    fp = NULL;
4220 		    goto erret;
4221 		}
4222 	    }
4223 	    else
4224 		// overwrite existing dict entry
4225 		clear_tv(&fudi.fd_di->di_tv);
4226 	    fudi.fd_di->di_tv.v_type = VAR_FUNC;
4227 	    fudi.fd_di->di_tv.vval.v_string = vim_strsave(name);
4228 
4229 	    // behave like "dict" was used
4230 	    flags |= FC_DICT;
4231 	}
4232 
4233 	// insert the new function in the function list
4234 	set_ufunc_name(fp, name);
4235 	if (overwrite)
4236 	{
4237 	    hi = hash_find(&func_hashtab, name);
4238 	    hi->hi_key = UF2HIKEY(fp);
4239 	}
4240 	else if (hash_add(&func_hashtab, UF2HIKEY(fp)) == FAIL)
4241 	{
4242 	    vim_free(fp);
4243 	    fp = NULL;
4244 	    goto erret;
4245 	}
4246 	fp->uf_refcount = 1;
4247     }
4248     fp->uf_args = newargs;
4249     fp->uf_def_args = default_args;
4250     fp->uf_ret_type = &t_any;
4251     fp->uf_func_type = &t_func_any;
4252 
4253     if (eap->cmdidx == CMD_def)
4254     {
4255 	int	    lnum_save = SOURCING_LNUM;
4256 	cstack_T    *cstack = eap->cstack;
4257 
4258 	fp->uf_def_status = UF_TO_BE_COMPILED;
4259 
4260 	// error messages are for the first function line
4261 	SOURCING_LNUM = sourcing_lnum_top;
4262 
4263 	if (cstack != NULL && cstack->cs_idx >= 0)
4264 	{
4265 	    int	    count = cstack->cs_idx + 1;
4266 	    int	    i;
4267 
4268 	    // The block context may be needed for script variables declared in
4269 	    // a block that is visible now but not when the function is called
4270 	    // later.
4271 	    fp->uf_block_ids = ALLOC_MULT(int, count);
4272 	    if (fp->uf_block_ids != NULL)
4273 	    {
4274 		mch_memmove(fp->uf_block_ids, cstack->cs_block_id,
4275 							  sizeof(int) * count);
4276 		fp->uf_block_depth = count;
4277 	    }
4278 
4279 	    // Set flag in each block to indicate a function was defined.  This
4280 	    // is used to keep the variable when leaving the block, see
4281 	    // hide_script_var().
4282 	    for (i = 0; i <= cstack->cs_idx; ++i)
4283 		cstack->cs_flags[i] |= CSF_FUNC_DEF;
4284 	}
4285 
4286 	if (parse_argument_types(fp, &argtypes, varargs) == FAIL)
4287 	{
4288 	    SOURCING_LNUM = lnum_save;
4289 	    goto errret_2;
4290 	}
4291 	varargs = FALSE;
4292 
4293 	// parse the return type, if any
4294 	if (parse_return_type(fp, ret_type) == FAIL)
4295 	{
4296 	    SOURCING_LNUM = lnum_save;
4297 	    goto erret;
4298 	}
4299 	SOURCING_LNUM = lnum_save;
4300     }
4301     else
4302 	fp->uf_def_status = UF_NOT_COMPILED;
4303 
4304     fp->uf_lines = newlines;
4305     if ((flags & FC_CLOSURE) != 0)
4306     {
4307 	if (register_closure(fp) == FAIL)
4308 	    goto erret;
4309     }
4310     else
4311 	fp->uf_scoped = NULL;
4312 
4313 #ifdef FEAT_PROFILE
4314     if (prof_def_func())
4315 	func_do_profile(fp);
4316 #endif
4317     fp->uf_varargs = varargs;
4318     if (sandbox)
4319 	flags |= FC_SANDBOX;
4320     if (vim9script && !ASCII_ISUPPER(*fp->uf_name))
4321 	flags |= FC_VIM9;
4322     fp->uf_flags = flags;
4323     fp->uf_calls = 0;
4324     fp->uf_cleared = FALSE;
4325     fp->uf_script_ctx = current_sctx;
4326     fp->uf_script_ctx_version = current_sctx.sc_version;
4327     fp->uf_script_ctx.sc_lnum += sourcing_lnum_top;
4328     if (is_export)
4329     {
4330 	fp->uf_flags |= FC_EXPORT;
4331 	// let ex_export() know the export worked.
4332 	is_export = FALSE;
4333     }
4334 
4335     if (eap->cmdidx == CMD_def)
4336 	set_function_type(fp);
4337     else if (fp->uf_script_ctx.sc_version == SCRIPT_VERSION_VIM9)
4338 	// :func does not use Vim9 script syntax, even in a Vim9 script file
4339 	fp->uf_script_ctx.sc_version = SCRIPT_VERSION_MAX;
4340 
4341     goto ret_free;
4342 
4343 erret:
4344     ga_clear_strings(&newargs);
4345     ga_clear_strings(&default_args);
4346     if (fp != NULL)
4347     {
4348 	ga_init(&fp->uf_args);
4349 	ga_init(&fp->uf_def_args);
4350     }
4351 errret_2:
4352     ga_clear_strings(&newlines);
4353     if (fp != NULL)
4354 	VIM_CLEAR(fp->uf_arg_types);
4355 ret_free:
4356     ga_clear_strings(&argtypes);
4357     vim_free(line_to_free);
4358     vim_free(fudi.fd_newkey);
4359     if (name != name_arg)
4360 	vim_free(name);
4361     vim_free(ret_type);
4362     did_emsg |= saved_did_emsg;
4363 
4364     return fp;
4365 }
4366 
4367 /*
4368  * ":function"
4369  */
4370     void
4371 ex_function(exarg_T *eap)
4372 {
4373     (void)define_function(eap, NULL);
4374 }
4375 
4376 /*
4377  * :defcompile - compile all :def functions in the current script that need to
4378  * be compiled.  Except dead functions.  Doesn't do profiling.
4379  */
4380     void
4381 ex_defcompile(exarg_T *eap UNUSED)
4382 {
4383     long	todo = (long)func_hashtab.ht_used;
4384     int		changed = func_hashtab.ht_changed;
4385     hashitem_T	*hi;
4386     ufunc_T	*ufunc;
4387 
4388     for (hi = func_hashtab.ht_array; todo > 0 && !got_int; ++hi)
4389     {
4390 	if (!HASHITEM_EMPTY(hi))
4391 	{
4392 	    --todo;
4393 	    ufunc = HI2UF(hi);
4394 	    if (ufunc->uf_script_ctx.sc_sid == current_sctx.sc_sid
4395 		    && ufunc->uf_def_status == UF_TO_BE_COMPILED
4396 		    && (ufunc->uf_flags & FC_DEAD) == 0)
4397 	    {
4398 		(void)compile_def_function(ufunc, FALSE, CT_NONE, NULL);
4399 
4400 		if (func_hashtab.ht_changed != changed)
4401 		{
4402 		    // a function has been added or removed, need to start over
4403 		    todo = (long)func_hashtab.ht_used;
4404 		    changed = func_hashtab.ht_changed;
4405 		    hi = func_hashtab.ht_array;
4406 		    --hi;
4407 		}
4408 	    }
4409 	}
4410     }
4411 }
4412 
4413 /*
4414  * Return 5 if "p" starts with "<SID>" or "<SNR>" (ignoring case).
4415  * Return 2 if "p" starts with "s:".
4416  * Return 0 otherwise.
4417  */
4418     int
4419 eval_fname_script(char_u *p)
4420 {
4421     // Use MB_STRICMP() because in Turkish comparing the "I" may not work with
4422     // the standard library function.
4423     if (p[0] == '<' && (MB_STRNICMP(p + 1, "SID>", 4) == 0
4424 				       || MB_STRNICMP(p + 1, "SNR>", 4) == 0))
4425 	return 5;
4426     if (p[0] == 's' && p[1] == ':')
4427 	return 2;
4428     return 0;
4429 }
4430 
4431     int
4432 translated_function_exists(char_u *name, int is_global)
4433 {
4434     if (builtin_function(name, -1))
4435 	return has_internal_func(name);
4436     return find_func(name, is_global, NULL) != NULL;
4437 }
4438 
4439 /*
4440  * Return TRUE when "ufunc" has old-style "..." varargs
4441  * or named varargs "...name: type".
4442  */
4443     int
4444 has_varargs(ufunc_T *ufunc)
4445 {
4446     return ufunc->uf_varargs || ufunc->uf_va_name != NULL;
4447 }
4448 
4449 /*
4450  * Return TRUE if a function "name" exists.
4451  * If "no_defef" is TRUE, do not dereference a Funcref.
4452  */
4453     int
4454 function_exists(char_u *name, int no_deref)
4455 {
4456     char_u  *nm = name;
4457     char_u  *p;
4458     int	    n = FALSE;
4459     int	    flag;
4460     int	    is_global = FALSE;
4461 
4462     flag = TFN_INT | TFN_QUIET | TFN_NO_AUTOLOAD;
4463     if (no_deref)
4464 	flag |= TFN_NO_DEREF;
4465     p = trans_function_name(&nm, &is_global, FALSE, flag, NULL, NULL, NULL);
4466     nm = skipwhite(nm);
4467 
4468     // Only accept "funcname", "funcname ", "funcname (..." and
4469     // "funcname(...", not "funcname!...".
4470     if (p != NULL && (*nm == NUL || *nm == '('))
4471 	n = translated_function_exists(p, is_global);
4472     vim_free(p);
4473     return n;
4474 }
4475 
4476 #if defined(FEAT_PYTHON) || defined(FEAT_PYTHON3) || defined(PROTO)
4477     char_u *
4478 get_expanded_name(char_u *name, int check)
4479 {
4480     char_u	*nm = name;
4481     char_u	*p;
4482     int		is_global = FALSE;
4483 
4484     p = trans_function_name(&nm, &is_global, FALSE,
4485 					  TFN_INT|TFN_QUIET, NULL, NULL, NULL);
4486 
4487     if (p != NULL && *nm == NUL
4488 		       && (!check || translated_function_exists(p, is_global)))
4489 	return p;
4490 
4491     vim_free(p);
4492     return NULL;
4493 }
4494 #endif
4495 
4496 /*
4497  * Function given to ExpandGeneric() to obtain the list of user defined
4498  * function names.
4499  */
4500     char_u *
4501 get_user_func_name(expand_T *xp, int idx)
4502 {
4503     static long_u	done;
4504     static int		changed;
4505     static hashitem_T	*hi;
4506     ufunc_T		*fp;
4507 
4508     if (idx == 0)
4509     {
4510 	done = 0;
4511 	hi = func_hashtab.ht_array;
4512 	changed = func_hashtab.ht_changed;
4513     }
4514     if (changed == func_hashtab.ht_changed && done < func_hashtab.ht_used)
4515     {
4516 	if (done++ > 0)
4517 	    ++hi;
4518 	while (HASHITEM_EMPTY(hi))
4519 	    ++hi;
4520 	fp = HI2UF(hi);
4521 
4522 	// don't show dead, dict and lambda functions
4523 	if ((fp->uf_flags & FC_DEAD) || (fp->uf_flags & FC_DICT)
4524 				|| STRNCMP(fp->uf_name, "<lambda>", 8) == 0)
4525 	    return (char_u *)"";
4526 
4527 	if (STRLEN(fp->uf_name) + 4 >= IOSIZE)
4528 	    return fp->uf_name;	// prevents overflow
4529 
4530 	cat_func_name(IObuff, fp);
4531 	if (xp->xp_context != EXPAND_USER_FUNC)
4532 	{
4533 	    STRCAT(IObuff, "(");
4534 	    if (!has_varargs(fp) && fp->uf_args.ga_len == 0)
4535 		STRCAT(IObuff, ")");
4536 	}
4537 	return IObuff;
4538     }
4539     return NULL;
4540 }
4541 
4542 /*
4543  * ":delfunction {name}"
4544  */
4545     void
4546 ex_delfunction(exarg_T *eap)
4547 {
4548     ufunc_T	*fp = NULL;
4549     char_u	*p;
4550     char_u	*name;
4551     funcdict_T	fudi;
4552     int		is_global = FALSE;
4553 
4554     p = eap->arg;
4555     name = trans_function_name(&p, &is_global, eap->skip, 0, &fudi,
4556 								   NULL, NULL);
4557     vim_free(fudi.fd_newkey);
4558     if (name == NULL)
4559     {
4560 	if (fudi.fd_dict != NULL && !eap->skip)
4561 	    emsg(_(e_funcref));
4562 	return;
4563     }
4564     if (!ends_excmd(*skipwhite(p)))
4565     {
4566 	vim_free(name);
4567 	semsg(_(e_trailing_arg), p);
4568 	return;
4569     }
4570     eap->nextcmd = check_nextcmd(p);
4571     if (eap->nextcmd != NULL)
4572 	*p = NUL;
4573 
4574     if (!eap->skip)
4575 	fp = find_func(name, is_global, NULL);
4576     vim_free(name);
4577 
4578     if (!eap->skip)
4579     {
4580 	if (fp == NULL)
4581 	{
4582 	    if (!eap->forceit)
4583 		semsg(_(e_nofunc), eap->arg);
4584 	    return;
4585 	}
4586 	if (fp->uf_calls > 0)
4587 	{
4588 	    semsg(_("E131: Cannot delete function %s: It is in use"), eap->arg);
4589 	    return;
4590 	}
4591 	if (fp->uf_flags & FC_VIM9)
4592 	{
4593 	    semsg(_(e_cannot_delete_vim9_script_function_str), eap->arg);
4594 	    return;
4595 	}
4596 
4597 	if (fudi.fd_dict != NULL)
4598 	{
4599 	    // Delete the dict item that refers to the function, it will
4600 	    // invoke func_unref() and possibly delete the function.
4601 	    dictitem_remove(fudi.fd_dict, fudi.fd_di);
4602 	}
4603 	else
4604 	{
4605 	    // A normal function (not a numbered function or lambda) has a
4606 	    // refcount of 1 for the entry in the hashtable.  When deleting
4607 	    // it and the refcount is more than one, it should be kept.
4608 	    // A numbered function and lambda should be kept if the refcount is
4609 	    // one or more.
4610 	    if (fp->uf_refcount > (func_name_refcount(fp->uf_name) ? 0 : 1))
4611 	    {
4612 		// Function is still referenced somewhere.  Don't free it but
4613 		// do remove it from the hashtable.
4614 		if (func_remove(fp))
4615 		    fp->uf_refcount--;
4616 	    }
4617 	    else
4618 		func_clear_free(fp, FALSE);
4619 	}
4620     }
4621 }
4622 
4623 /*
4624  * Unreference a Function: decrement the reference count and free it when it
4625  * becomes zero.
4626  */
4627     void
4628 func_unref(char_u *name)
4629 {
4630     ufunc_T *fp = NULL;
4631 
4632     if (name == NULL || !func_name_refcount(name))
4633 	return;
4634     fp = find_func(name, FALSE, NULL);
4635     if (fp == NULL && isdigit(*name))
4636     {
4637 #ifdef EXITFREE
4638 	if (!entered_free_all_mem)
4639 #endif
4640 	    internal_error("func_unref()");
4641     }
4642     func_ptr_unref(fp);
4643 }
4644 
4645 /*
4646  * Unreference a Function: decrement the reference count and free it when it
4647  * becomes zero.
4648  * Also when it becomes one and uf_partial points to the function.
4649  */
4650     void
4651 func_ptr_unref(ufunc_T *fp)
4652 {
4653     if (fp != NULL && (--fp->uf_refcount <= 0
4654 		|| (fp->uf_refcount == 1 && fp->uf_partial != NULL
4655 					 && fp->uf_partial->pt_refcount <= 1
4656 					 && fp->uf_partial->pt_func == fp)))
4657     {
4658 	// Only delete it when it's not being used.  Otherwise it's done
4659 	// when "uf_calls" becomes zero.
4660 	if (fp->uf_calls == 0)
4661 	    func_clear_free(fp, FALSE);
4662     }
4663 }
4664 
4665 /*
4666  * Count a reference to a Function.
4667  */
4668     void
4669 func_ref(char_u *name)
4670 {
4671     ufunc_T *fp;
4672 
4673     if (name == NULL || !func_name_refcount(name))
4674 	return;
4675     fp = find_func(name, FALSE, NULL);
4676     if (fp != NULL)
4677 	++fp->uf_refcount;
4678     else if (isdigit(*name))
4679 	// Only give an error for a numbered function.
4680 	// Fail silently, when named or lambda function isn't found.
4681 	internal_error("func_ref()");
4682 }
4683 
4684 /*
4685  * Count a reference to a Function.
4686  */
4687     void
4688 func_ptr_ref(ufunc_T *fp)
4689 {
4690     if (fp != NULL)
4691 	++fp->uf_refcount;
4692 }
4693 
4694 /*
4695  * Return TRUE if items in "fc" do not have "copyID".  That means they are not
4696  * referenced from anywhere that is in use.
4697  */
4698     static int
4699 can_free_funccal(funccall_T *fc, int copyID)
4700 {
4701     return (fc->l_varlist.lv_copyID != copyID
4702 	    && fc->l_vars.dv_copyID != copyID
4703 	    && fc->l_avars.dv_copyID != copyID
4704 	    && fc->fc_copyID != copyID);
4705 }
4706 
4707 /*
4708  * ":return [expr]"
4709  */
4710     void
4711 ex_return(exarg_T *eap)
4712 {
4713     char_u	*arg = eap->arg;
4714     typval_T	rettv;
4715     int		returning = FALSE;
4716     evalarg_T	evalarg;
4717 
4718     if (current_funccal == NULL)
4719     {
4720 	emsg(_("E133: :return not inside a function"));
4721 	return;
4722     }
4723 
4724     CLEAR_FIELD(evalarg);
4725     evalarg.eval_flags = eap->skip ? 0 : EVAL_EVALUATE;
4726 
4727     if (eap->skip)
4728 	++emsg_skip;
4729 
4730     eap->nextcmd = NULL;
4731     if ((*arg != NUL && *arg != '|' && *arg != '\n')
4732 				  && eval0(arg, &rettv, eap, &evalarg) != FAIL)
4733     {
4734 	if (!eap->skip)
4735 	    returning = do_return(eap, FALSE, TRUE, &rettv);
4736 	else
4737 	    clear_tv(&rettv);
4738     }
4739     // It's safer to return also on error.
4740     else if (!eap->skip)
4741     {
4742 	// In return statement, cause_abort should be force_abort.
4743 	update_force_abort();
4744 
4745 	/*
4746 	 * Return unless the expression evaluation has been cancelled due to an
4747 	 * aborting error, an interrupt, or an exception.
4748 	 */
4749 	if (!aborting())
4750 	    returning = do_return(eap, FALSE, TRUE, NULL);
4751     }
4752 
4753     // When skipping or the return gets pending, advance to the next command
4754     // in this line (!returning).  Otherwise, ignore the rest of the line.
4755     // Following lines will be ignored by get_func_line().
4756     if (returning)
4757 	eap->nextcmd = NULL;
4758     else if (eap->nextcmd == NULL)	    // no argument
4759 	eap->nextcmd = check_nextcmd(arg);
4760 
4761     if (eap->skip)
4762 	--emsg_skip;
4763     clear_evalarg(&evalarg, eap);
4764 }
4765 
4766 /*
4767  * ":1,25call func(arg1, arg2)"	function call.
4768  */
4769     void
4770 ex_call(exarg_T *eap)
4771 {
4772     char_u	*arg = eap->arg;
4773     char_u	*startarg;
4774     char_u	*name;
4775     char_u	*tofree;
4776     int		len;
4777     typval_T	rettv;
4778     linenr_T	lnum;
4779     int		doesrange;
4780     int		failed = FALSE;
4781     funcdict_T	fudi;
4782     partial_T	*partial = NULL;
4783     evalarg_T	evalarg;
4784     type_T	*type = NULL;
4785 
4786     fill_evalarg_from_eap(&evalarg, eap, eap->skip);
4787     if (eap->skip)
4788     {
4789 	// trans_function_name() doesn't work well when skipping, use eval0()
4790 	// instead to skip to any following command, e.g. for:
4791 	//   :if 0 | call dict.foo().bar() | endif
4792 	++emsg_skip;
4793 	if (eval0(eap->arg, &rettv, eap, &evalarg) != FAIL)
4794 	    clear_tv(&rettv);
4795 	--emsg_skip;
4796 	clear_evalarg(&evalarg, eap);
4797 	return;
4798     }
4799 
4800     tofree = trans_function_name(&arg, NULL, eap->skip, TFN_INT,
4801 			      &fudi, &partial, in_vim9script() ? &type : NULL);
4802     if (fudi.fd_newkey != NULL)
4803     {
4804 	// Still need to give an error message for missing key.
4805 	semsg(_(e_dictkey), fudi.fd_newkey);
4806 	vim_free(fudi.fd_newkey);
4807     }
4808     if (tofree == NULL)
4809 	return;
4810 
4811     // Increase refcount on dictionary, it could get deleted when evaluating
4812     // the arguments.
4813     if (fudi.fd_dict != NULL)
4814 	++fudi.fd_dict->dv_refcount;
4815 
4816     // If it is the name of a variable of type VAR_FUNC or VAR_PARTIAL use its
4817     // contents.  For VAR_PARTIAL get its partial, unless we already have one
4818     // from trans_function_name().
4819     len = (int)STRLEN(tofree);
4820     name = deref_func_name(tofree, &len, partial != NULL ? NULL : &partial,
4821 			in_vim9script() && type == NULL ? &type : NULL, FALSE);
4822 
4823     // Skip white space to allow ":call func ()".  Not good, but required for
4824     // backward compatibility.
4825     startarg = skipwhite(arg);
4826     rettv.v_type = VAR_UNKNOWN;	// clear_tv() uses this
4827 
4828     if (*startarg != '(')
4829     {
4830 	semsg(_(e_missing_paren), eap->arg);
4831 	goto end;
4832     }
4833 
4834     /*
4835      * When skipping, evaluate the function once, to find the end of the
4836      * arguments.
4837      * When the function takes a range, this is discovered after the first
4838      * call, and the loop is broken.
4839      */
4840     if (eap->skip)
4841     {
4842 	++emsg_skip;
4843 	lnum = eap->line2;	// do it once, also with an invalid range
4844     }
4845     else
4846 	lnum = eap->line1;
4847     for ( ; lnum <= eap->line2; ++lnum)
4848     {
4849 	funcexe_T funcexe;
4850 
4851 	if (!eap->skip && eap->addr_count > 0)
4852 	{
4853 	    if (lnum > curbuf->b_ml.ml_line_count)
4854 	    {
4855 		// If the function deleted lines or switched to another buffer
4856 		// the line number may become invalid.
4857 		emsg(_(e_invrange));
4858 		break;
4859 	    }
4860 	    curwin->w_cursor.lnum = lnum;
4861 	    curwin->w_cursor.col = 0;
4862 	    curwin->w_cursor.coladd = 0;
4863 	}
4864 	arg = startarg;
4865 
4866 	CLEAR_FIELD(funcexe);
4867 	funcexe.firstline = eap->line1;
4868 	funcexe.lastline = eap->line2;
4869 	funcexe.doesrange = &doesrange;
4870 	funcexe.evaluate = !eap->skip;
4871 	funcexe.partial = partial;
4872 	funcexe.selfdict = fudi.fd_dict;
4873 	funcexe.check_type = type;
4874 	if (get_func_tv(name, -1, &rettv, &arg, &evalarg, &funcexe) == FAIL)
4875 	{
4876 	    failed = TRUE;
4877 	    break;
4878 	}
4879 	if (has_watchexpr())
4880 	    dbg_check_breakpoint(eap);
4881 
4882 	// Handle a function returning a Funcref, Dictionary or List.
4883 	if (handle_subscript(&arg, &rettv,
4884 			   eap->skip ? NULL : &EVALARG_EVALUATE, TRUE) == FAIL)
4885 	{
4886 	    failed = TRUE;
4887 	    break;
4888 	}
4889 
4890 	clear_tv(&rettv);
4891 	if (doesrange || eap->skip)
4892 	    break;
4893 
4894 	// Stop when immediately aborting on error, or when an interrupt
4895 	// occurred or an exception was thrown but not caught.
4896 	// get_func_tv() returned OK, so that the check for trailing
4897 	// characters below is executed.
4898 	if (aborting())
4899 	    break;
4900     }
4901     if (eap->skip)
4902 	--emsg_skip;
4903     clear_evalarg(&evalarg, eap);
4904 
4905     // When inside :try we need to check for following "| catch".
4906     if (!failed || eap->cstack->cs_trylevel > 0)
4907     {
4908 	// Check for trailing illegal characters and a following command.
4909 	arg = skipwhite(arg);
4910 	if (!ends_excmd2(eap->arg, arg))
4911 	{
4912 	    if (!failed)
4913 	    {
4914 		emsg_severe = TRUE;
4915 		semsg(_(e_trailing_arg), arg);
4916 	    }
4917 	}
4918 	else
4919 	    eap->nextcmd = check_nextcmd(arg);
4920     }
4921 
4922 end:
4923     dict_unref(fudi.fd_dict);
4924     vim_free(tofree);
4925 }
4926 
4927 /*
4928  * Return from a function.  Possibly makes the return pending.  Also called
4929  * for a pending return at the ":endtry" or after returning from an extra
4930  * do_cmdline().  "reanimate" is used in the latter case.  "is_cmd" is set
4931  * when called due to a ":return" command.  "rettv" may point to a typval_T
4932  * with the return rettv.  Returns TRUE when the return can be carried out,
4933  * FALSE when the return gets pending.
4934  */
4935     int
4936 do_return(
4937     exarg_T	*eap,
4938     int		reanimate,
4939     int		is_cmd,
4940     void	*rettv)
4941 {
4942     int		idx;
4943     cstack_T	*cstack = eap->cstack;
4944 
4945     if (reanimate)
4946 	// Undo the return.
4947 	current_funccal->returned = FALSE;
4948 
4949     /*
4950      * Cleanup (and inactivate) conditionals, but stop when a try conditional
4951      * not in its finally clause (which then is to be executed next) is found.
4952      * In this case, make the ":return" pending for execution at the ":endtry".
4953      * Otherwise, return normally.
4954      */
4955     idx = cleanup_conditionals(eap->cstack, 0, TRUE);
4956     if (idx >= 0)
4957     {
4958 	cstack->cs_pending[idx] = CSTP_RETURN;
4959 
4960 	if (!is_cmd && !reanimate)
4961 	    // A pending return again gets pending.  "rettv" points to an
4962 	    // allocated variable with the rettv of the original ":return"'s
4963 	    // argument if present or is NULL else.
4964 	    cstack->cs_rettv[idx] = rettv;
4965 	else
4966 	{
4967 	    // When undoing a return in order to make it pending, get the stored
4968 	    // return rettv.
4969 	    if (reanimate)
4970 		rettv = current_funccal->rettv;
4971 
4972 	    if (rettv != NULL)
4973 	    {
4974 		// Store the value of the pending return.
4975 		if ((cstack->cs_rettv[idx] = alloc_tv()) != NULL)
4976 		    *(typval_T *)cstack->cs_rettv[idx] = *(typval_T *)rettv;
4977 		else
4978 		    emsg(_(e_outofmem));
4979 	    }
4980 	    else
4981 		cstack->cs_rettv[idx] = NULL;
4982 
4983 	    if (reanimate)
4984 	    {
4985 		// The pending return value could be overwritten by a ":return"
4986 		// without argument in a finally clause; reset the default
4987 		// return value.
4988 		current_funccal->rettv->v_type = VAR_NUMBER;
4989 		current_funccal->rettv->vval.v_number = 0;
4990 	    }
4991 	}
4992 	report_make_pending(CSTP_RETURN, rettv);
4993     }
4994     else
4995     {
4996 	current_funccal->returned = TRUE;
4997 
4998 	// If the return is carried out now, store the return value.  For
4999 	// a return immediately after reanimation, the value is already
5000 	// there.
5001 	if (!reanimate && rettv != NULL)
5002 	{
5003 	    clear_tv(current_funccal->rettv);
5004 	    *current_funccal->rettv = *(typval_T *)rettv;
5005 	    if (!is_cmd)
5006 		vim_free(rettv);
5007 	}
5008     }
5009 
5010     return idx < 0;
5011 }
5012 
5013 /*
5014  * Free the variable with a pending return value.
5015  */
5016     void
5017 discard_pending_return(void *rettv)
5018 {
5019     free_tv((typval_T *)rettv);
5020 }
5021 
5022 /*
5023  * Generate a return command for producing the value of "rettv".  The result
5024  * is an allocated string.  Used by report_pending() for verbose messages.
5025  */
5026     char_u *
5027 get_return_cmd(void *rettv)
5028 {
5029     char_u	*s = NULL;
5030     char_u	*tofree = NULL;
5031     char_u	numbuf[NUMBUFLEN];
5032 
5033     if (rettv != NULL)
5034 	s = echo_string((typval_T *)rettv, &tofree, numbuf, 0);
5035     if (s == NULL)
5036 	s = (char_u *)"";
5037 
5038     STRCPY(IObuff, ":return ");
5039     STRNCPY(IObuff + 8, s, IOSIZE - 8);
5040     if (STRLEN(s) + 8 >= IOSIZE)
5041 	STRCPY(IObuff + IOSIZE - 4, "...");
5042     vim_free(tofree);
5043     return vim_strsave(IObuff);
5044 }
5045 
5046 /*
5047  * Get next function line.
5048  * Called by do_cmdline() to get the next line.
5049  * Returns allocated string, or NULL for end of function.
5050  */
5051     char_u *
5052 get_func_line(
5053     int	    c UNUSED,
5054     void    *cookie,
5055     int	    indent UNUSED,
5056     getline_opt_T options UNUSED)
5057 {
5058     funccall_T	*fcp = (funccall_T *)cookie;
5059     ufunc_T	*fp = fcp->func;
5060     char_u	*retval;
5061     garray_T	*gap;  // growarray with function lines
5062 
5063     // If breakpoints have been added/deleted need to check for it.
5064     if (fcp->dbg_tick != debug_tick)
5065     {
5066 	fcp->breakpoint = dbg_find_breakpoint(FALSE, fp->uf_name,
5067 							       SOURCING_LNUM);
5068 	fcp->dbg_tick = debug_tick;
5069     }
5070 #ifdef FEAT_PROFILE
5071     if (do_profiling == PROF_YES)
5072 	func_line_end(cookie);
5073 #endif
5074 
5075     gap = &fp->uf_lines;
5076     if (((fp->uf_flags & FC_ABORT) && did_emsg && !aborted_in_try())
5077 	    || fcp->returned)
5078 	retval = NULL;
5079     else
5080     {
5081 	// Skip NULL lines (continuation lines).
5082 	while (fcp->linenr < gap->ga_len
5083 			  && ((char_u **)(gap->ga_data))[fcp->linenr] == NULL)
5084 	    ++fcp->linenr;
5085 	if (fcp->linenr >= gap->ga_len)
5086 	    retval = NULL;
5087 	else
5088 	{
5089 	    retval = vim_strsave(((char_u **)(gap->ga_data))[fcp->linenr++]);
5090 	    SOURCING_LNUM = fcp->linenr;
5091 #ifdef FEAT_PROFILE
5092 	    if (do_profiling == PROF_YES)
5093 		func_line_start(cookie, SOURCING_LNUM);
5094 #endif
5095 	}
5096     }
5097 
5098     // Did we encounter a breakpoint?
5099     if (fcp->breakpoint != 0 && fcp->breakpoint <= SOURCING_LNUM)
5100     {
5101 	dbg_breakpoint(fp->uf_name, SOURCING_LNUM);
5102 	// Find next breakpoint.
5103 	fcp->breakpoint = dbg_find_breakpoint(FALSE, fp->uf_name,
5104 							       SOURCING_LNUM);
5105 	fcp->dbg_tick = debug_tick;
5106     }
5107 
5108     return retval;
5109 }
5110 
5111 /*
5112  * Return TRUE if the currently active function should be ended, because a
5113  * return was encountered or an error occurred.  Used inside a ":while".
5114  */
5115     int
5116 func_has_ended(void *cookie)
5117 {
5118     funccall_T  *fcp = (funccall_T *)cookie;
5119 
5120     // Ignore the "abort" flag if the abortion behavior has been changed due to
5121     // an error inside a try conditional.
5122     return (((fcp->func->uf_flags & FC_ABORT) && did_emsg && !aborted_in_try())
5123 	    || fcp->returned);
5124 }
5125 
5126 /*
5127  * return TRUE if cookie indicates a function which "abort"s on errors.
5128  */
5129     int
5130 func_has_abort(
5131     void    *cookie)
5132 {
5133     return ((funccall_T *)cookie)->func->uf_flags & FC_ABORT;
5134 }
5135 
5136 
5137 /*
5138  * Turn "dict.Func" into a partial for "Func" bound to "dict".
5139  * Don't do this when "Func" is already a partial that was bound
5140  * explicitly (pt_auto is FALSE).
5141  * Changes "rettv" in-place.
5142  * Returns the updated "selfdict_in".
5143  */
5144     dict_T *
5145 make_partial(dict_T *selfdict_in, typval_T *rettv)
5146 {
5147     char_u	*fname;
5148     char_u	*tofree = NULL;
5149     ufunc_T	*fp;
5150     char_u	fname_buf[FLEN_FIXED + 1];
5151     int		error;
5152     dict_T	*selfdict = selfdict_in;
5153 
5154     if (rettv->v_type == VAR_PARTIAL && rettv->vval.v_partial->pt_func != NULL)
5155 	fp = rettv->vval.v_partial->pt_func;
5156     else
5157     {
5158 	fname = rettv->v_type == VAR_FUNC ? rettv->vval.v_string
5159 					      : rettv->vval.v_partial->pt_name;
5160 	// Translate "s:func" to the stored function name.
5161 	fname = fname_trans_sid(fname, fname_buf, &tofree, &error);
5162 	fp = find_func(fname, FALSE, NULL);
5163 	vim_free(tofree);
5164     }
5165 
5166     if (fp != NULL && (fp->uf_flags & FC_DICT))
5167     {
5168 	partial_T	*pt = ALLOC_CLEAR_ONE(partial_T);
5169 
5170 	if (pt != NULL)
5171 	{
5172 	    pt->pt_refcount = 1;
5173 	    pt->pt_dict = selfdict;
5174 	    pt->pt_auto = TRUE;
5175 	    selfdict = NULL;
5176 	    if (rettv->v_type == VAR_FUNC)
5177 	    {
5178 		// Just a function: Take over the function name and use
5179 		// selfdict.
5180 		pt->pt_name = rettv->vval.v_string;
5181 	    }
5182 	    else
5183 	    {
5184 		partial_T	*ret_pt = rettv->vval.v_partial;
5185 		int		i;
5186 
5187 		// Partial: copy the function name, use selfdict and copy
5188 		// args.  Can't take over name or args, the partial might
5189 		// be referenced elsewhere.
5190 		if (ret_pt->pt_name != NULL)
5191 		{
5192 		    pt->pt_name = vim_strsave(ret_pt->pt_name);
5193 		    func_ref(pt->pt_name);
5194 		}
5195 		else
5196 		{
5197 		    pt->pt_func = ret_pt->pt_func;
5198 		    func_ptr_ref(pt->pt_func);
5199 		}
5200 		if (ret_pt->pt_argc > 0)
5201 		{
5202 		    pt->pt_argv = ALLOC_MULT(typval_T, ret_pt->pt_argc);
5203 		    if (pt->pt_argv == NULL)
5204 			// out of memory: drop the arguments
5205 			pt->pt_argc = 0;
5206 		    else
5207 		    {
5208 			pt->pt_argc = ret_pt->pt_argc;
5209 			for (i = 0; i < pt->pt_argc; i++)
5210 			    copy_tv(&ret_pt->pt_argv[i], &pt->pt_argv[i]);
5211 		    }
5212 		}
5213 		partial_unref(ret_pt);
5214 	    }
5215 	    rettv->v_type = VAR_PARTIAL;
5216 	    rettv->vval.v_partial = pt;
5217 	}
5218     }
5219     return selfdict;
5220 }
5221 
5222 /*
5223  * Return the name of the executed function.
5224  */
5225     char_u *
5226 func_name(void *cookie)
5227 {
5228     return ((funccall_T *)cookie)->func->uf_name;
5229 }
5230 
5231 /*
5232  * Return the address holding the next breakpoint line for a funccall cookie.
5233  */
5234     linenr_T *
5235 func_breakpoint(void *cookie)
5236 {
5237     return &((funccall_T *)cookie)->breakpoint;
5238 }
5239 
5240 /*
5241  * Return the address holding the debug tick for a funccall cookie.
5242  */
5243     int *
5244 func_dbg_tick(void *cookie)
5245 {
5246     return &((funccall_T *)cookie)->dbg_tick;
5247 }
5248 
5249 /*
5250  * Return the nesting level for a funccall cookie.
5251  */
5252     int
5253 func_level(void *cookie)
5254 {
5255     return ((funccall_T *)cookie)->level;
5256 }
5257 
5258 /*
5259  * Return TRUE when a function was ended by a ":return" command.
5260  */
5261     int
5262 current_func_returned(void)
5263 {
5264     return current_funccal->returned;
5265 }
5266 
5267     int
5268 free_unref_funccal(int copyID, int testing)
5269 {
5270     int		did_free = FALSE;
5271     int		did_free_funccal = FALSE;
5272     funccall_T	*fc, **pfc;
5273 
5274     for (pfc = &previous_funccal; *pfc != NULL; )
5275     {
5276 	if (can_free_funccal(*pfc, copyID))
5277 	{
5278 	    fc = *pfc;
5279 	    *pfc = fc->caller;
5280 	    free_funccal_contents(fc);
5281 	    did_free = TRUE;
5282 	    did_free_funccal = TRUE;
5283 	}
5284 	else
5285 	    pfc = &(*pfc)->caller;
5286     }
5287     if (did_free_funccal)
5288 	// When a funccal was freed some more items might be garbage
5289 	// collected, so run again.
5290 	(void)garbage_collect(testing);
5291 
5292     return did_free;
5293 }
5294 
5295 /*
5296  * Get function call environment based on backtrace debug level
5297  */
5298     static funccall_T *
5299 get_funccal(void)
5300 {
5301     int		i;
5302     funccall_T	*funccal;
5303     funccall_T	*temp_funccal;
5304 
5305     funccal = current_funccal;
5306     if (debug_backtrace_level > 0)
5307     {
5308 	for (i = 0; i < debug_backtrace_level; i++)
5309 	{
5310 	    temp_funccal = funccal->caller;
5311 	    if (temp_funccal)
5312 		funccal = temp_funccal;
5313 	    else
5314 		// backtrace level overflow. reset to max
5315 		debug_backtrace_level = i;
5316 	}
5317     }
5318     return funccal;
5319 }
5320 
5321 /*
5322  * Return the hashtable used for local variables in the current funccal.
5323  * Return NULL if there is no current funccal.
5324  */
5325     hashtab_T *
5326 get_funccal_local_ht()
5327 {
5328     if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0)
5329 	return NULL;
5330     return &get_funccal()->l_vars.dv_hashtab;
5331 }
5332 
5333 /*
5334  * Return the l: scope variable.
5335  * Return NULL if there is no current funccal.
5336  */
5337     dictitem_T *
5338 get_funccal_local_var()
5339 {
5340     if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0)
5341 	return NULL;
5342     return &get_funccal()->l_vars_var;
5343 }
5344 
5345 /*
5346  * Return the hashtable used for argument in the current funccal.
5347  * Return NULL if there is no current funccal.
5348  */
5349     hashtab_T *
5350 get_funccal_args_ht()
5351 {
5352     if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0)
5353 	return NULL;
5354     return &get_funccal()->l_avars.dv_hashtab;
5355 }
5356 
5357 /*
5358  * Return the a: scope variable.
5359  * Return NULL if there is no current funccal.
5360  */
5361     dictitem_T *
5362 get_funccal_args_var()
5363 {
5364     if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0)
5365 	return NULL;
5366     return &get_funccal()->l_avars_var;
5367 }
5368 
5369 /*
5370  * List function variables, if there is a function.
5371  */
5372     void
5373 list_func_vars(int *first)
5374 {
5375     if (current_funccal != NULL && current_funccal->l_vars.dv_refcount > 0)
5376 	list_hashtable_vars(&current_funccal->l_vars.dv_hashtab,
5377 							   "l:", FALSE, first);
5378 }
5379 
5380 /*
5381  * If "ht" is the hashtable for local variables in the current funccal, return
5382  * the dict that contains it.
5383  * Otherwise return NULL.
5384  */
5385     dict_T *
5386 get_current_funccal_dict(hashtab_T *ht)
5387 {
5388     if (current_funccal != NULL
5389 	    && ht == &current_funccal->l_vars.dv_hashtab)
5390 	return &current_funccal->l_vars;
5391     return NULL;
5392 }
5393 
5394 /*
5395  * Search hashitem in parent scope.
5396  */
5397     hashitem_T *
5398 find_hi_in_scoped_ht(char_u *name, hashtab_T **pht)
5399 {
5400     funccall_T	*old_current_funccal = current_funccal;
5401     hashtab_T	*ht;
5402     hashitem_T	*hi = NULL;
5403     char_u	*varname;
5404 
5405     if (current_funccal == NULL || current_funccal->func->uf_scoped == NULL)
5406       return NULL;
5407 
5408     // Search in parent scope, which can be referenced from a lambda.
5409     current_funccal = current_funccal->func->uf_scoped;
5410     while (current_funccal != NULL)
5411     {
5412 	ht = find_var_ht(name, &varname);
5413 	if (ht != NULL && *varname != NUL)
5414 	{
5415 	    hi = hash_find(ht, varname);
5416 	    if (!HASHITEM_EMPTY(hi))
5417 	    {
5418 		*pht = ht;
5419 		break;
5420 	    }
5421 	}
5422 	if (current_funccal == current_funccal->func->uf_scoped)
5423 	    break;
5424 	current_funccal = current_funccal->func->uf_scoped;
5425     }
5426     current_funccal = old_current_funccal;
5427 
5428     return hi;
5429 }
5430 
5431 /*
5432  * Search variable in parent scope.
5433  */
5434     dictitem_T *
5435 find_var_in_scoped_ht(char_u *name, int no_autoload)
5436 {
5437     dictitem_T	*v = NULL;
5438     funccall_T	*old_current_funccal = current_funccal;
5439     hashtab_T	*ht;
5440     char_u	*varname;
5441 
5442     if (current_funccal == NULL || current_funccal->func->uf_scoped == NULL)
5443 	return NULL;
5444 
5445     // Search in parent scope which is possible to reference from lambda
5446     current_funccal = current_funccal->func->uf_scoped;
5447     while (current_funccal)
5448     {
5449 	ht = find_var_ht(name, &varname);
5450 	if (ht != NULL && *varname != NUL)
5451 	{
5452 	    v = find_var_in_ht(ht, *name, varname, no_autoload);
5453 	    if (v != NULL)
5454 		break;
5455 	}
5456 	if (current_funccal == current_funccal->func->uf_scoped)
5457 	    break;
5458 	current_funccal = current_funccal->func->uf_scoped;
5459     }
5460     current_funccal = old_current_funccal;
5461 
5462     return v;
5463 }
5464 
5465 /*
5466  * Set "copyID + 1" in previous_funccal and callers.
5467  */
5468     int
5469 set_ref_in_previous_funccal(int copyID)
5470 {
5471     int		abort = FALSE;
5472     funccall_T	*fc;
5473 
5474     for (fc = previous_funccal; !abort && fc != NULL; fc = fc->caller)
5475     {
5476 	fc->fc_copyID = copyID + 1;
5477 	abort = abort
5478 	    || set_ref_in_ht(&fc->l_vars.dv_hashtab, copyID + 1, NULL)
5479 	    || set_ref_in_ht(&fc->l_avars.dv_hashtab, copyID + 1, NULL)
5480 	    || set_ref_in_list_items(&fc->l_varlist, copyID + 1, NULL);
5481     }
5482     return abort;
5483 }
5484 
5485     static int
5486 set_ref_in_funccal(funccall_T *fc, int copyID)
5487 {
5488     int abort = FALSE;
5489 
5490     if (fc->fc_copyID != copyID)
5491     {
5492 	fc->fc_copyID = copyID;
5493 	abort = abort
5494 	    || set_ref_in_ht(&fc->l_vars.dv_hashtab, copyID, NULL)
5495 	    || set_ref_in_ht(&fc->l_avars.dv_hashtab, copyID, NULL)
5496 	    || set_ref_in_list_items(&fc->l_varlist, copyID, NULL)
5497 	    || set_ref_in_func(NULL, fc->func, copyID);
5498     }
5499     return abort;
5500 }
5501 
5502 /*
5503  * Set "copyID" in all local vars and arguments in the call stack.
5504  */
5505     int
5506 set_ref_in_call_stack(int copyID)
5507 {
5508     int			abort = FALSE;
5509     funccall_T		*fc;
5510     funccal_entry_T	*entry;
5511 
5512     for (fc = current_funccal; !abort && fc != NULL; fc = fc->caller)
5513 	abort = abort || set_ref_in_funccal(fc, copyID);
5514 
5515     // Also go through the funccal_stack.
5516     for (entry = funccal_stack; !abort && entry != NULL; entry = entry->next)
5517 	for (fc = entry->top_funccal; !abort && fc != NULL; fc = fc->caller)
5518 	    abort = abort || set_ref_in_funccal(fc, copyID);
5519 
5520     return abort;
5521 }
5522 
5523 /*
5524  * Set "copyID" in all functions available by name.
5525  */
5526     int
5527 set_ref_in_functions(int copyID)
5528 {
5529     int		todo;
5530     hashitem_T	*hi = NULL;
5531     int		abort = FALSE;
5532     ufunc_T	*fp;
5533 
5534     todo = (int)func_hashtab.ht_used;
5535     for (hi = func_hashtab.ht_array; todo > 0 && !got_int; ++hi)
5536     {
5537 	if (!HASHITEM_EMPTY(hi))
5538 	{
5539 	    --todo;
5540 	    fp = HI2UF(hi);
5541 	    if (!func_name_refcount(fp->uf_name))
5542 		abort = abort || set_ref_in_func(NULL, fp, copyID);
5543 	}
5544     }
5545     return abort;
5546 }
5547 
5548 /*
5549  * Set "copyID" in all function arguments.
5550  */
5551     int
5552 set_ref_in_func_args(int copyID)
5553 {
5554     int i;
5555     int abort = FALSE;
5556 
5557     for (i = 0; i < funcargs.ga_len; ++i)
5558 	abort = abort || set_ref_in_item(((typval_T **)funcargs.ga_data)[i],
5559 							  copyID, NULL, NULL);
5560     return abort;
5561 }
5562 
5563 /*
5564  * Mark all lists and dicts referenced through function "name" with "copyID".
5565  * Returns TRUE if setting references failed somehow.
5566  */
5567     int
5568 set_ref_in_func(char_u *name, ufunc_T *fp_in, int copyID)
5569 {
5570     ufunc_T	*fp = fp_in;
5571     funccall_T	*fc;
5572     int		error = FCERR_NONE;
5573     char_u	fname_buf[FLEN_FIXED + 1];
5574     char_u	*tofree = NULL;
5575     char_u	*fname;
5576     int		abort = FALSE;
5577 
5578     if (name == NULL && fp_in == NULL)
5579 	return FALSE;
5580 
5581     if (fp_in == NULL)
5582     {
5583 	fname = fname_trans_sid(name, fname_buf, &tofree, &error);
5584 	fp = find_func(fname, FALSE, NULL);
5585     }
5586     if (fp != NULL)
5587     {
5588 	for (fc = fp->uf_scoped; fc != NULL; fc = fc->func->uf_scoped)
5589 	    abort = abort || set_ref_in_funccal(fc, copyID);
5590     }
5591 
5592     vim_free(tofree);
5593     return abort;
5594 }
5595 
5596 #endif // FEAT_EVAL
5597