xref: /vim-8.2.3635/src/vim9execute.c (revision 90df4b9d)
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  * vim9execute.c: execute Vim9 script instructions
12  */
13 
14 #define USING_FLOAT_STUFF
15 #include "vim.h"
16 
17 #if defined(FEAT_EVAL) || defined(PROTO)
18 
19 #ifdef VMS
20 # include <float.h>
21 #endif
22 
23 #include "vim9.h"
24 
25 // Structure put on ec_trystack when ISN_TRY is encountered.
26 typedef struct {
27     int	    tcd_frame_idx;	// ec_frame_idx at ISN_TRY
28     int	    tcd_stack_len;	// size of ectx.ec_stack at ISN_TRY
29     int	    tcd_in_catch;	// in catch or finally block
30     int	    tcd_did_throw;	// set did_throw in :endtry
31     int	    tcd_catch_idx;	// instruction of the first :catch or :finally
32     int	    tcd_finally_idx;	// instruction of the :finally block or zero
33     int	    tcd_endtry_idx;	// instruction of the :endtry
34     int	    tcd_caught;		// catch block entered
35     int	    tcd_cont;		// :continue encountered, jump here (minus one)
36     int	    tcd_return;		// when TRUE return from end of :finally
37 } trycmd_T;
38 
39 // Data local to a function.
40 // On a function call, if not empty, is saved on the stack and restored when
41 // returning.
42 typedef struct {
43     int		floc_restore_cmdmod;
44     cmdmod_T	floc_save_cmdmod;
45     int		floc_restore_cmdmod_stacklen;
46 } funclocal_T;
47 
48 // Structure to hold a reference to an outer_T, with information of whether it
49 // was allocated.
50 typedef struct {
51     outer_T	*or_outer;
52     partial_T	*or_partial;	// decrement "or_partial->pt_refcount" later
53     int		or_outer_allocated;  // free "or_outer" later
54 } outer_ref_T;
55 
56 // A stack is used to store:
57 // - arguments passed to a :def function
58 // - info about the calling function, to use when returning
59 // - local variables
60 // - temporary values
61 //
62 // In detail (FP == Frame Pointer):
63 //	  arg1		first argument from caller (if present)
64 //	  arg2		second argument from caller (if present)
65 //	  extra_arg1	any missing optional argument default value
66 // FP ->  cur_func	calling function
67 //        current	previous instruction pointer
68 //        frame_ptr	previous Frame Pointer
69 //        var1		space for local variable
70 //        var2		space for local variable
71 //        ....		fixed space for max. number of local variables
72 //        temp		temporary values
73 //        ....		flexible space for temporary values (can grow big)
74 
75 /*
76  * Execution context.
77  */
78 struct ectx_S {
79     garray_T	ec_stack;	// stack of typval_T values
80     int		ec_frame_idx;	// index in ec_stack: context of ec_dfunc_idx
81     int		ec_initial_frame_idx;	// frame index when called
82 
83     outer_ref_T	*ec_outer_ref;	// outer scope used for closures, allocated
84     funclocal_T ec_funclocal;
85 
86     garray_T	ec_trystack;	// stack of trycmd_T values
87 
88     int		ec_dfunc_idx;	// current function index
89     isn_T	*ec_instr;	// array with instructions
90     int		ec_iidx;	// index in ec_instr: instruction to execute
91 
92     garray_T	ec_funcrefs;	// partials that might be a closure
93 
94     int		ec_did_emsg_before;
95     int		ec_trylevel_at_start;
96     where_T	ec_where;
97 };
98 
99 #ifdef FEAT_PROFILE
100 // stack of profinfo_T used when profiling.
101 static garray_T profile_info_ga = {0, 0, sizeof(profinfo_T), 20, NULL};
102 #endif
103 
104 // Get pointer to item relative to the bottom of the stack, -1 is the last one.
105 #define STACK_TV_BOT(idx) (((typval_T *)ectx->ec_stack.ga_data) + ectx->ec_stack.ga_len + (idx))
106 
107     void
108 to_string_error(vartype_T vartype)
109 {
110     semsg(_(e_cannot_convert_str_to_string), vartype_name(vartype));
111 }
112 
113 /*
114  * Return the number of arguments, including optional arguments and any vararg.
115  */
116     static int
117 ufunc_argcount(ufunc_T *ufunc)
118 {
119     return ufunc->uf_args.ga_len + (ufunc->uf_va_name != NULL ? 1 : 0);
120 }
121 
122 /*
123  * Create a new list from "count" items at the bottom of the stack.
124  * When "count" is zero an empty list is added to the stack.
125  */
126     static int
127 exe_newlist(int count, ectx_T *ectx)
128 {
129     list_T	*list = list_alloc_with_items(count);
130     int		idx;
131     typval_T	*tv;
132 
133     if (list == NULL)
134 	return FAIL;
135     for (idx = 0; idx < count; ++idx)
136 	list_set_item(list, idx, STACK_TV_BOT(idx - count));
137 
138     if (count > 0)
139 	ectx->ec_stack.ga_len -= count - 1;
140     else if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
141 	return FAIL;
142     else
143 	++ectx->ec_stack.ga_len;
144     tv = STACK_TV_BOT(-1);
145     tv->v_type = VAR_LIST;
146     tv->vval.v_list = list;
147     ++list->lv_refcount;
148     return OK;
149 }
150 
151 /*
152  * If debug_tick changed check if "ufunc" has a breakpoint and update
153  * "uf_has_breakpoint".
154  */
155     static void
156 update_has_breakpoint(ufunc_T *ufunc)
157 {
158     if (ufunc->uf_debug_tick != debug_tick)
159     {
160 	linenr_T breakpoint;
161 
162 	ufunc->uf_debug_tick = debug_tick;
163 	breakpoint = dbg_find_breakpoint(FALSE, ufunc->uf_name, 0);
164 	ufunc->uf_has_breakpoint = breakpoint > 0;
165     }
166 }
167 
168 /*
169  * Call compiled function "cdf_idx" from compiled code.
170  * This adds a stack frame and sets the instruction pointer to the start of the
171  * called function.
172  * If "pt" is not null use "pt->pt_outer" for ec_outer_ref->or_outer.
173  *
174  * Stack has:
175  * - current arguments (already there)
176  * - omitted optional argument (default values) added here
177  * - stack frame:
178  *	- pointer to calling function
179  *	- Index of next instruction in calling function
180  *	- previous frame pointer
181  * - reserved space for local variables
182  */
183     static int
184 call_dfunc(
185 	int		cdf_idx,
186 	partial_T	*pt,
187 	int		argcount_arg,
188 	ectx_T		*ectx)
189 {
190     int		argcount = argcount_arg;
191     dfunc_T	*dfunc = ((dfunc_T *)def_functions.ga_data) + cdf_idx;
192     ufunc_T	*ufunc = dfunc->df_ufunc;
193     int		did_emsg_before = did_emsg_cumul + did_emsg;
194     int		arg_to_add;
195     int		vararg_count = 0;
196     int		varcount;
197     int		idx;
198     estack_T	*entry;
199     funclocal_T	*floc = NULL;
200 
201     if (dfunc->df_deleted)
202     {
203 	// don't use ufunc->uf_name, it may have been freed
204 	emsg_funcname(e_func_deleted,
205 		dfunc->df_name == NULL ? (char_u *)"unknown" : dfunc->df_name);
206 	return FAIL;
207     }
208 
209 #ifdef FEAT_PROFILE
210     if (do_profiling == PROF_YES)
211     {
212 	if (ga_grow(&profile_info_ga, 1) == OK)
213 	{
214 	    profinfo_T *info = ((profinfo_T *)profile_info_ga.ga_data)
215 						      + profile_info_ga.ga_len;
216 	    ++profile_info_ga.ga_len;
217 	    CLEAR_POINTER(info);
218 	    profile_may_start_func(info, ufunc,
219 			(((dfunc_T *)def_functions.ga_data)
220 					      + ectx->ec_dfunc_idx)->df_ufunc);
221 	}
222 
223 	// Profiling might be enabled/disabled along the way.  This should not
224 	// fail, since the function was compiled before and toggling profiling
225 	// doesn't change any errors.
226 	if (func_needs_compiling(ufunc, COMPILE_TYPE(ufunc))
227 		&& compile_def_function(ufunc, FALSE, COMPILE_TYPE(ufunc), NULL)
228 								       == FAIL)
229 	    return FAIL;
230     }
231 #endif
232 
233     // Update uf_has_breakpoint if needed.
234     update_has_breakpoint(ufunc);
235 
236     // When debugging and using "cont" switches to the not-debugged
237     // instructions, may need to still compile them.
238     if ((func_needs_compiling(ufunc, COMPILE_TYPE(ufunc))
239 	       && compile_def_function(ufunc, FALSE, COMPILE_TYPE(ufunc), NULL)
240 								      == FAIL)
241 	    || INSTRUCTIONS(dfunc) == NULL)
242     {
243 	if (did_emsg_cumul + did_emsg == did_emsg_before)
244 	    semsg(_(e_function_is_not_compiled_str),
245 						   printable_func_name(ufunc));
246 	return FAIL;
247     }
248 
249     if (ufunc->uf_va_name != NULL)
250     {
251 	// Need to make a list out of the vararg arguments.
252 	// Stack at time of call with 2 varargs:
253 	//   normal_arg
254 	//   optional_arg
255 	//   vararg_1
256 	//   vararg_2
257 	// After creating the list:
258 	//   normal_arg
259 	//   optional_arg
260 	//   vararg-list
261 	// With missing optional arguments we get:
262 	//    normal_arg
263 	// After creating the list
264 	//    normal_arg
265 	//    (space for optional_arg)
266 	//    vararg-list
267 	vararg_count = argcount - ufunc->uf_args.ga_len;
268 	if (vararg_count < 0)
269 	    vararg_count = 0;
270 	else
271 	    argcount -= vararg_count;
272 	if (exe_newlist(vararg_count, ectx) == FAIL)
273 	    return FAIL;
274 
275 	vararg_count = 1;
276     }
277 
278     arg_to_add = ufunc->uf_args.ga_len - argcount;
279     if (arg_to_add < 0)
280     {
281 	if (arg_to_add == -1)
282 	    emsg(_(e_one_argument_too_many));
283 	else
284 	    semsg(_(e_nr_arguments_too_many), -arg_to_add);
285 	return FAIL;
286     }
287 
288     // Reserve space for:
289     // - missing arguments
290     // - stack frame
291     // - local variables
292     // - if needed: a counter for number of closures created in
293     //   ectx->ec_funcrefs.
294     varcount = dfunc->df_varcount + dfunc->df_has_closure;
295     if (ga_grow(&ectx->ec_stack, arg_to_add + STACK_FRAME_SIZE + varcount)
296 								       == FAIL)
297 	return FAIL;
298 
299     // If depth of calling is getting too high, don't execute the function.
300     if (funcdepth_increment() == FAIL)
301 	return FAIL;
302     ++ex_nesting_level;
303 
304     // Only make a copy of funclocal if it contains something to restore.
305     if (ectx->ec_funclocal.floc_restore_cmdmod)
306     {
307 	floc = ALLOC_ONE(funclocal_T);
308 	if (floc == NULL)
309 	    return FAIL;
310 	*floc = ectx->ec_funclocal;
311 	ectx->ec_funclocal.floc_restore_cmdmod = FALSE;
312     }
313 
314     // Move the vararg-list to below the missing optional arguments.
315     if (vararg_count > 0 && arg_to_add > 0)
316 	*STACK_TV_BOT(arg_to_add - 1) = *STACK_TV_BOT(-1);
317 
318     // Reserve space for omitted optional arguments, filled in soon.
319     for (idx = 0; idx < arg_to_add; ++idx)
320 	STACK_TV_BOT(idx - vararg_count)->v_type = VAR_UNKNOWN;
321     ectx->ec_stack.ga_len += arg_to_add;
322 
323     // Store current execution state in stack frame for ISN_RETURN.
324     STACK_TV_BOT(STACK_FRAME_FUNC_OFF)->vval.v_number = ectx->ec_dfunc_idx;
325     STACK_TV_BOT(STACK_FRAME_IIDX_OFF)->vval.v_number = ectx->ec_iidx;
326     STACK_TV_BOT(STACK_FRAME_INSTR_OFF)->vval.v_string = (void *)ectx->ec_instr;
327     STACK_TV_BOT(STACK_FRAME_OUTER_OFF)->vval.v_string =
328 						    (void *)ectx->ec_outer_ref;
329     STACK_TV_BOT(STACK_FRAME_FUNCLOCAL_OFF)->vval.v_string = (void *)floc;
330     STACK_TV_BOT(STACK_FRAME_IDX_OFF)->vval.v_number = ectx->ec_frame_idx;
331     ectx->ec_frame_idx = ectx->ec_stack.ga_len;
332 
333     // Initialize local variables
334     for (idx = 0; idx < dfunc->df_varcount; ++idx)
335 	STACK_TV_BOT(STACK_FRAME_SIZE + idx)->v_type = VAR_UNKNOWN;
336     if (dfunc->df_has_closure)
337     {
338 	typval_T *tv = STACK_TV_BOT(STACK_FRAME_SIZE + dfunc->df_varcount);
339 
340 	tv->v_type = VAR_NUMBER;
341 	tv->vval.v_number = 0;
342     }
343     ectx->ec_stack.ga_len += STACK_FRAME_SIZE + varcount;
344 
345     if (pt != NULL || ufunc->uf_partial != NULL
346 					     || (ufunc->uf_flags & FC_CLOSURE))
347     {
348 	outer_ref_T *ref = ALLOC_CLEAR_ONE(outer_ref_T);
349 
350 	if (ref == NULL)
351 	    return FAIL;
352 	if (pt != NULL)
353 	{
354 	    ref->or_outer = &pt->pt_outer;
355 	    ++pt->pt_refcount;
356 	    ref->or_partial = pt;
357 	}
358 	else if (ufunc->uf_partial != NULL)
359 	{
360 	    ref->or_outer = &ufunc->uf_partial->pt_outer;
361 	    ++ufunc->uf_partial->pt_refcount;
362 	    ref->or_partial = ufunc->uf_partial;
363 	}
364 	else
365 	{
366 	    ref->or_outer = ALLOC_CLEAR_ONE(outer_T);
367 	    if (ref->or_outer == NULL)
368 	    {
369 		vim_free(ref);
370 		return FAIL;
371 	    }
372 	    ref->or_outer_allocated = TRUE;
373 	    ref->or_outer->out_stack = &ectx->ec_stack;
374 	    ref->or_outer->out_frame_idx = ectx->ec_frame_idx;
375 	    if (ectx->ec_outer_ref != NULL)
376 		ref->or_outer->out_up = ectx->ec_outer_ref->or_outer;
377 	}
378 	ectx->ec_outer_ref = ref;
379     }
380     else
381 	ectx->ec_outer_ref = NULL;
382 
383     ++ufunc->uf_calls;
384 
385     // Set execution state to the start of the called function.
386     ectx->ec_dfunc_idx = cdf_idx;
387     ectx->ec_instr = INSTRUCTIONS(dfunc);
388     entry = estack_push_ufunc(ufunc, 1);
389     if (entry != NULL)
390     {
391 	// Set the script context to the script where the function was defined.
392 	// Save the current context so it can be restored on return.
393 	entry->es_save_sctx = current_sctx;
394 	current_sctx = ufunc->uf_script_ctx;
395     }
396 
397     // Start execution at the first instruction.
398     ectx->ec_iidx = 0;
399 
400     return OK;
401 }
402 
403 // Get pointer to item in the stack.
404 #define STACK_TV(idx) (((typval_T *)ectx->ec_stack.ga_data) + idx)
405 
406 /*
407  * Used when returning from a function: Check if any closure is still
408  * referenced.  If so then move the arguments and variables to a separate piece
409  * of stack to be used when the closure is called.
410  * When "free_arguments" is TRUE the arguments are to be freed.
411  * Returns FAIL when out of memory.
412  */
413     static int
414 handle_closure_in_use(ectx_T *ectx, int free_arguments)
415 {
416     dfunc_T	*dfunc = ((dfunc_T *)def_functions.ga_data)
417 							  + ectx->ec_dfunc_idx;
418     int		argcount;
419     int		top;
420     int		idx;
421     typval_T	*tv;
422     int		closure_in_use = FALSE;
423     garray_T	*gap = &ectx->ec_funcrefs;
424     varnumber_T	closure_count;
425 
426     if (dfunc->df_ufunc == NULL)
427 	return OK;  // function was freed
428     if (dfunc->df_has_closure == 0)
429 	return OK;  // no closures
430     tv = STACK_TV(ectx->ec_frame_idx + STACK_FRAME_SIZE + dfunc->df_varcount);
431     closure_count = tv->vval.v_number;
432     if (closure_count == 0)
433 	return OK;  // no funcrefs created
434 
435     argcount = ufunc_argcount(dfunc->df_ufunc);
436     top = ectx->ec_frame_idx - argcount;
437 
438     // Check if any created closure is still in use.
439     for (idx = 0; idx < closure_count; ++idx)
440     {
441 	partial_T   *pt;
442 	int	    off = gap->ga_len - closure_count + idx;
443 
444 	if (off < 0)
445 	    continue;  // count is off or already done
446 	pt = ((partial_T **)gap->ga_data)[off];
447 	if (pt->pt_refcount > 1)
448 	{
449 	    int refcount = pt->pt_refcount;
450 	    int i;
451 
452 	    // A Reference in a local variables doesn't count, it gets
453 	    // unreferenced on return.
454 	    for (i = 0; i < dfunc->df_varcount; ++i)
455 	    {
456 		typval_T *stv = STACK_TV(ectx->ec_frame_idx
457 						       + STACK_FRAME_SIZE + i);
458 		if (stv->v_type == VAR_PARTIAL && pt == stv->vval.v_partial)
459 		    --refcount;
460 	    }
461 	    if (refcount > 1)
462 	    {
463 		closure_in_use = TRUE;
464 		break;
465 	    }
466 	}
467     }
468 
469     if (closure_in_use)
470     {
471 	funcstack_T *funcstack = ALLOC_CLEAR_ONE(funcstack_T);
472 	typval_T    *stack;
473 
474 	// A closure is using the arguments and/or local variables.
475 	// Move them to the called function.
476 	if (funcstack == NULL)
477 	    return FAIL;
478 	funcstack->fs_var_offset = argcount + STACK_FRAME_SIZE;
479 	funcstack->fs_ga.ga_len = funcstack->fs_var_offset + dfunc->df_varcount;
480 	stack = ALLOC_CLEAR_MULT(typval_T, funcstack->fs_ga.ga_len);
481 	funcstack->fs_ga.ga_data = stack;
482 	if (stack == NULL)
483 	{
484 	    vim_free(funcstack);
485 	    return FAIL;
486 	}
487 
488 	// Move or copy the arguments.
489 	for (idx = 0; idx < argcount; ++idx)
490 	{
491 	    tv = STACK_TV(top + idx);
492 	    if (free_arguments)
493 	    {
494 		*(stack + idx) = *tv;
495 		tv->v_type = VAR_UNKNOWN;
496 	    }
497 	    else
498 		copy_tv(tv, stack + idx);
499 	}
500 	// Move the local variables.
501 	for (idx = 0; idx < dfunc->df_varcount; ++idx)
502 	{
503 	    tv = STACK_TV(ectx->ec_frame_idx + STACK_FRAME_SIZE + idx);
504 
505 	    // A partial created for a local function, that is also used as a
506 	    // local variable, has a reference count for the variable, thus
507 	    // will never go down to zero.  When all these refcounts are one
508 	    // then the funcstack is unused.  We need to count how many we have
509 	    // so we need when to check.
510 	    if (tv->v_type == VAR_PARTIAL && tv->vval.v_partial != NULL)
511 	    {
512 		int	    i;
513 
514 		for (i = 0; i < closure_count; ++i)
515 		    if (tv->vval.v_partial == ((partial_T **)gap->ga_data)[
516 					      gap->ga_len - closure_count + i])
517 			++funcstack->fs_min_refcount;
518 	    }
519 
520 	    *(stack + funcstack->fs_var_offset + idx) = *tv;
521 	    tv->v_type = VAR_UNKNOWN;
522 	}
523 
524 	for (idx = 0; idx < closure_count; ++idx)
525 	{
526 	    partial_T *pt = ((partial_T **)gap->ga_data)[gap->ga_len
527 							- closure_count + idx];
528 	    if (pt->pt_refcount > 1)
529 	    {
530 		++funcstack->fs_refcount;
531 		pt->pt_funcstack = funcstack;
532 		pt->pt_outer.out_stack = &funcstack->fs_ga;
533 		pt->pt_outer.out_frame_idx = ectx->ec_frame_idx - top;
534 	    }
535 	}
536     }
537 
538     for (idx = 0; idx < closure_count; ++idx)
539 	partial_unref(((partial_T **)gap->ga_data)[gap->ga_len
540 						       - closure_count + idx]);
541     gap->ga_len -= closure_count;
542     if (gap->ga_len == 0)
543 	ga_clear(gap);
544 
545     return OK;
546 }
547 
548 /*
549  * Called when a partial is freed or its reference count goes down to one.  The
550  * funcstack may be the only reference to the partials in the local variables.
551  * Go over all of them, the funcref and can be freed if all partials
552  * referencing the funcstack have a reference count of one.
553  */
554     void
555 funcstack_check_refcount(funcstack_T *funcstack)
556 {
557     int		    i;
558     garray_T	    *gap = &funcstack->fs_ga;
559     int		    done = 0;
560 
561     if (funcstack->fs_refcount > funcstack->fs_min_refcount)
562 	return;
563     for (i = funcstack->fs_var_offset; i < gap->ga_len; ++i)
564     {
565 	typval_T *tv = ((typval_T *)gap->ga_data) + i;
566 
567 	if (tv->v_type == VAR_PARTIAL && tv->vval.v_partial != NULL
568 		&& tv->vval.v_partial->pt_funcstack == funcstack
569 		&& tv->vval.v_partial->pt_refcount == 1)
570 	    ++done;
571     }
572     if (done == funcstack->fs_min_refcount)
573     {
574 	typval_T	*stack = gap->ga_data;
575 
576 	// All partials referencing the funcstack have a reference count of
577 	// one, thus the funcstack is no longer of use.
578 	for (i = 0; i < gap->ga_len; ++i)
579 	    clear_tv(stack + i);
580 	vim_free(stack);
581 	vim_free(funcstack);
582     }
583 }
584 
585 /*
586  * Return from the current function.
587  */
588     static int
589 func_return(ectx_T *ectx)
590 {
591     int		idx;
592     int		ret_idx;
593     dfunc_T	*dfunc = ((dfunc_T *)def_functions.ga_data)
594 							  + ectx->ec_dfunc_idx;
595     int		argcount = ufunc_argcount(dfunc->df_ufunc);
596     int		top = ectx->ec_frame_idx - argcount;
597     estack_T	*entry;
598     int		prev_dfunc_idx = STACK_TV(ectx->ec_frame_idx
599 					+ STACK_FRAME_FUNC_OFF)->vval.v_number;
600     funclocal_T	*floc;
601 #ifdef FEAT_PROFILE
602     dfunc_T	*prev_dfunc = ((dfunc_T *)def_functions.ga_data)
603 							      + prev_dfunc_idx;
604 
605     if (do_profiling == PROF_YES)
606     {
607 	ufunc_T *caller = prev_dfunc->df_ufunc;
608 
609 	if (dfunc->df_ufunc->uf_profiling
610 				   || (caller != NULL && caller->uf_profiling))
611 	{
612 	    profile_may_end_func(((profinfo_T *)profile_info_ga.ga_data)
613 			+ profile_info_ga.ga_len - 1, dfunc->df_ufunc, caller);
614 	    --profile_info_ga.ga_len;
615 	}
616     }
617 #endif
618     // TODO: when is it safe to delete the function when it is no longer used?
619     --dfunc->df_ufunc->uf_calls;
620 
621     // execution context goes one level up
622     entry = estack_pop();
623     if (entry != NULL)
624 	current_sctx = entry->es_save_sctx;
625 
626     if (handle_closure_in_use(ectx, TRUE) == FAIL)
627 	return FAIL;
628 
629     // Clear the arguments.
630     for (idx = top; idx < ectx->ec_frame_idx; ++idx)
631 	clear_tv(STACK_TV(idx));
632 
633     // Clear local variables and temp values, but not the return value.
634     for (idx = ectx->ec_frame_idx + STACK_FRAME_SIZE;
635 					idx < ectx->ec_stack.ga_len - 1; ++idx)
636 	clear_tv(STACK_TV(idx));
637 
638     // The return value should be on top of the stack.  However, when aborting
639     // it may not be there and ec_frame_idx is the top of the stack.
640     ret_idx = ectx->ec_stack.ga_len - 1;
641     if (ret_idx == ectx->ec_frame_idx + STACK_FRAME_IDX_OFF)
642 	ret_idx = 0;
643 
644     if (ectx->ec_outer_ref != NULL)
645     {
646 	if (ectx->ec_outer_ref->or_outer_allocated)
647 	    vim_free(ectx->ec_outer_ref->or_outer);
648 	partial_unref(ectx->ec_outer_ref->or_partial);
649 	vim_free(ectx->ec_outer_ref);
650     }
651 
652     // Restore the previous frame.
653     ectx->ec_dfunc_idx = prev_dfunc_idx;
654     ectx->ec_iidx = STACK_TV(ectx->ec_frame_idx
655 					+ STACK_FRAME_IIDX_OFF)->vval.v_number;
656     ectx->ec_instr = (void *)STACK_TV(ectx->ec_frame_idx
657 				       + STACK_FRAME_INSTR_OFF)->vval.v_string;
658     ectx->ec_outer_ref = (void *)STACK_TV(ectx->ec_frame_idx
659 				       + STACK_FRAME_OUTER_OFF)->vval.v_string;
660     floc = (void *)STACK_TV(ectx->ec_frame_idx
661 				   + STACK_FRAME_FUNCLOCAL_OFF)->vval.v_string;
662     // restoring ec_frame_idx must be last
663     ectx->ec_frame_idx = STACK_TV(ectx->ec_frame_idx
664 				       + STACK_FRAME_IDX_OFF)->vval.v_number;
665 
666     if (floc == NULL)
667 	ectx->ec_funclocal.floc_restore_cmdmod = FALSE;
668     else
669     {
670 	ectx->ec_funclocal = *floc;
671 	vim_free(floc);
672     }
673 
674     if (ret_idx > 0)
675     {
676 	// Reset the stack to the position before the call, with a spot for the
677 	// return value, moved there from above the frame.
678 	ectx->ec_stack.ga_len = top + 1;
679 	*STACK_TV_BOT(-1) = *STACK_TV(ret_idx);
680     }
681     else
682 	// Reset the stack to the position before the call.
683 	ectx->ec_stack.ga_len = top;
684 
685     funcdepth_decrement();
686     --ex_nesting_level;
687     return OK;
688 }
689 
690 #undef STACK_TV
691 
692 /*
693  * Prepare arguments and rettv for calling a builtin or user function.
694  */
695     static int
696 call_prepare(int argcount, typval_T *argvars, ectx_T *ectx)
697 {
698     int		idx;
699     typval_T	*tv;
700 
701     // Move arguments from bottom of the stack to argvars[] and add terminator.
702     for (idx = 0; idx < argcount; ++idx)
703 	argvars[idx] = *STACK_TV_BOT(idx - argcount);
704     argvars[argcount].v_type = VAR_UNKNOWN;
705 
706     // Result replaces the arguments on the stack.
707     if (argcount > 0)
708 	ectx->ec_stack.ga_len -= argcount - 1;
709     else if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
710 	return FAIL;
711     else
712 	++ectx->ec_stack.ga_len;
713 
714     // Default return value is zero.
715     tv = STACK_TV_BOT(-1);
716     tv->v_type = VAR_NUMBER;
717     tv->vval.v_number = 0;
718 
719     return OK;
720 }
721 
722 // Ugly global to avoid passing the execution context around through many
723 // layers.
724 static ectx_T *current_ectx = NULL;
725 
726 /*
727  * Call a builtin function by index.
728  */
729     static int
730 call_bfunc(int func_idx, int argcount, ectx_T *ectx)
731 {
732     typval_T	argvars[MAX_FUNC_ARGS];
733     int		idx;
734     int		did_emsg_before = did_emsg;
735     ectx_T	*prev_ectx = current_ectx;
736 
737     if (call_prepare(argcount, argvars, ectx) == FAIL)
738 	return FAIL;
739 
740     // Call the builtin function.  Set "current_ectx" so that when it
741     // recursively invokes call_def_function() a closure context can be set.
742     current_ectx = ectx;
743     call_internal_func_by_idx(func_idx, argvars, STACK_TV_BOT(-1));
744     current_ectx = prev_ectx;
745 
746     // Clear the arguments.
747     for (idx = 0; idx < argcount; ++idx)
748 	clear_tv(&argvars[idx]);
749 
750     if (did_emsg > did_emsg_before)
751 	return FAIL;
752     return OK;
753 }
754 
755 /*
756  * Execute a user defined function.
757  * If the function is compiled this will add a stack frame and set the
758  * instruction pointer at the start of the function.
759  * Otherwise the function is called here.
760  * If "pt" is not null use "pt->pt_outer" for ec_outer_ref->or_outer.
761  * "iptr" can be used to replace the instruction with a more efficient one.
762  */
763     static int
764 call_ufunc(
765 	ufunc_T	    *ufunc,
766 	partial_T   *pt,
767 	int	    argcount,
768 	ectx_T	    *ectx,
769 	isn_T	    *iptr)
770 {
771     typval_T	argvars[MAX_FUNC_ARGS];
772     funcexe_T   funcexe;
773     int		error;
774     int		idx;
775     int		did_emsg_before = did_emsg;
776     compiletype_T compile_type = COMPILE_TYPE(ufunc);
777 
778     if (func_needs_compiling(ufunc, compile_type)
779 		&& compile_def_function(ufunc, FALSE, compile_type, NULL)
780 								       == FAIL)
781 	return FAIL;
782     if (ufunc->uf_def_status == UF_COMPILED)
783     {
784 	error = check_user_func_argcount(ufunc, argcount);
785 	if (error != FCERR_UNKNOWN)
786 	{
787 	    if (error == FCERR_TOOMANY)
788 		semsg(_(e_toomanyarg), ufunc->uf_name);
789 	    else
790 		semsg(_(e_toofewarg), ufunc->uf_name);
791 	    return FAIL;
792 	}
793 
794 	// The function has been compiled, can call it quickly.  For a function
795 	// that was defined later: we can call it directly next time.
796 	// TODO: what if the function was deleted and then defined again?
797 	if (iptr != NULL)
798 	{
799 	    delete_instr(iptr);
800 	    iptr->isn_type = ISN_DCALL;
801 	    iptr->isn_arg.dfunc.cdf_idx = ufunc->uf_dfunc_idx;
802 	    iptr->isn_arg.dfunc.cdf_argcount = argcount;
803 	}
804 	return call_dfunc(ufunc->uf_dfunc_idx, pt, argcount, ectx);
805     }
806 
807     if (call_prepare(argcount, argvars, ectx) == FAIL)
808 	return FAIL;
809     CLEAR_FIELD(funcexe);
810     funcexe.evaluate = TRUE;
811 
812     // Call the user function.  Result goes in last position on the stack.
813     // TODO: add selfdict if there is one
814     error = call_user_func_check(ufunc, argcount, argvars,
815 					     STACK_TV_BOT(-1), &funcexe, NULL);
816 
817     // Clear the arguments.
818     for (idx = 0; idx < argcount; ++idx)
819 	clear_tv(&argvars[idx]);
820 
821     if (error != FCERR_NONE)
822     {
823 	user_func_error(error, ufunc->uf_name);
824 	return FAIL;
825     }
826     if (did_emsg > did_emsg_before)
827 	// Error other than from calling the function itself.
828 	return FAIL;
829     return OK;
830 }
831 
832 /*
833  * If command modifiers were applied restore them.
834  */
835     static void
836 may_restore_cmdmod(funclocal_T *funclocal)
837 {
838     if (funclocal->floc_restore_cmdmod)
839     {
840 	cmdmod.cmod_filter_regmatch.regprog = NULL;
841 	undo_cmdmod(&cmdmod);
842 	cmdmod = funclocal->floc_save_cmdmod;
843 	funclocal->floc_restore_cmdmod = FALSE;
844     }
845 }
846 
847 /*
848  * Return TRUE if an error was given or CTRL-C was pressed.
849  */
850     static int
851 vim9_aborting(int prev_called_emsg)
852 {
853     return called_emsg > prev_called_emsg || got_int || did_throw;
854 }
855 
856 /*
857  * Execute a function by "name".
858  * This can be a builtin function or a user function.
859  * "iptr" can be used to replace the instruction with a more efficient one.
860  * Returns FAIL if not found without an error message.
861  */
862     static int
863 call_by_name(
864 	char_u	    *name,
865 	int	    argcount,
866 	ectx_T	    *ectx,
867 	isn_T	    *iptr)
868 {
869     ufunc_T *ufunc;
870 
871     if (builtin_function(name, -1))
872     {
873 	int func_idx = find_internal_func(name);
874 
875 	if (func_idx < 0)
876 	    return FAIL;
877 	if (check_internal_func(func_idx, argcount) < 0)
878 	    return FAIL;
879 	return call_bfunc(func_idx, argcount, ectx);
880     }
881 
882     ufunc = find_func(name, FALSE, NULL);
883 
884     if (ufunc == NULL)
885     {
886 	int called_emsg_before = called_emsg;
887 
888 	if (script_autoload(name, TRUE))
889 	    // loaded a package, search for the function again
890 	    ufunc = find_func(name, FALSE, NULL);
891 	if (vim9_aborting(called_emsg_before))
892 	    return FAIL;  // bail out if loading the script caused an error
893     }
894 
895     if (ufunc != NULL)
896     {
897 	if (ufunc->uf_arg_types != NULL)
898 	{
899 	    int i;
900 	    typval_T	*argv = STACK_TV_BOT(0) - argcount;
901 
902 	    // The function can change at runtime, check that the argument
903 	    // types are correct.
904 	    for (i = 0; i < argcount; ++i)
905 	    {
906 		type_T *type = NULL;
907 
908 		if (i < ufunc->uf_args.ga_len)
909 		    type = ufunc->uf_arg_types[i];
910 		else if (ufunc->uf_va_type != NULL)
911 		    type = ufunc->uf_va_type->tt_member;
912 		if (type != NULL && check_typval_arg_type(type,
913 						      &argv[i], i + 1) == FAIL)
914 		    return FAIL;
915 	    }
916 	}
917 
918 	return call_ufunc(ufunc, NULL, argcount, ectx, iptr);
919     }
920 
921     return FAIL;
922 }
923 
924     static int
925 call_partial(
926 	typval_T    *tv,
927 	int	    argcount_arg,
928 	ectx_T	    *ectx)
929 {
930     int		argcount = argcount_arg;
931     char_u	*name = NULL;
932     int		called_emsg_before = called_emsg;
933     int		res = FAIL;
934 
935     if (tv->v_type == VAR_PARTIAL)
936     {
937 	partial_T   *pt = tv->vval.v_partial;
938 	int	    i;
939 
940 	if (pt->pt_argc > 0)
941 	{
942 	    // Make space for arguments from the partial, shift the "argcount"
943 	    // arguments up.
944 	    if (ga_grow(&ectx->ec_stack, pt->pt_argc) == FAIL)
945 		return FAIL;
946 	    for (i = 1; i <= argcount; ++i)
947 		*STACK_TV_BOT(-i + pt->pt_argc) = *STACK_TV_BOT(-i);
948 	    ectx->ec_stack.ga_len += pt->pt_argc;
949 	    argcount += pt->pt_argc;
950 
951 	    // copy the arguments from the partial onto the stack
952 	    for (i = 0; i < pt->pt_argc; ++i)
953 		copy_tv(&pt->pt_argv[i], STACK_TV_BOT(-argcount + i));
954 	}
955 
956 	if (pt->pt_func != NULL)
957 	    return call_ufunc(pt->pt_func, pt, argcount, ectx, NULL);
958 
959 	name = pt->pt_name;
960     }
961     else if (tv->v_type == VAR_FUNC)
962 	name = tv->vval.v_string;
963     if (name != NULL)
964     {
965 	char_u	fname_buf[FLEN_FIXED + 1];
966 	char_u	*tofree = NULL;
967 	int	error = FCERR_NONE;
968 	char_u	*fname;
969 
970 	// May need to translate <SNR>123_ to K_SNR.
971 	fname = fname_trans_sid(name, fname_buf, &tofree, &error);
972 	if (error != FCERR_NONE)
973 	    res = FAIL;
974 	else
975 	    res = call_by_name(fname, argcount, ectx, NULL);
976 	vim_free(tofree);
977     }
978 
979     if (res == FAIL)
980     {
981 	if (called_emsg == called_emsg_before)
982 	    semsg(_(e_unknownfunc),
983 				  name == NULL ? (char_u *)"[unknown]" : name);
984 	return FAIL;
985     }
986     return OK;
987 }
988 
989 /*
990  * Check if "lock" is VAR_LOCKED or VAR_FIXED.  If so give an error and return
991  * TRUE.
992  */
993     static int
994 error_if_locked(int lock, char *error)
995 {
996     if (lock & (VAR_LOCKED | VAR_FIXED))
997     {
998 	emsg(_(error));
999 	return TRUE;
1000     }
1001     return FALSE;
1002 }
1003 
1004 /*
1005  * Give an error if "tv" is not a number and return FAIL.
1006  */
1007     static int
1008 check_for_number(typval_T *tv)
1009 {
1010     if (tv->v_type != VAR_NUMBER)
1011     {
1012 	semsg(_(e_expected_str_but_got_str),
1013 		vartype_name(VAR_NUMBER), vartype_name(tv->v_type));
1014 	return FAIL;
1015     }
1016     return OK;
1017 }
1018 
1019 /*
1020  * Store "tv" in variable "name".
1021  * This is for s: and g: variables.
1022  */
1023     static void
1024 store_var(char_u *name, typval_T *tv)
1025 {
1026     funccal_entry_T entry;
1027     int		    flags = ASSIGN_DECL;
1028 
1029     if (tv->v_lock)
1030 	flags |= ASSIGN_CONST;
1031     save_funccal(&entry);
1032     set_var_const(name, NULL, tv, FALSE, flags, 0);
1033     restore_funccal();
1034 }
1035 
1036 /*
1037  * Convert "tv" to a string.
1038  * Return FAIL if not allowed.
1039  */
1040     static int
1041 do_2string(typval_T *tv, int is_2string_any, int tolerant)
1042 {
1043     if (tv->v_type != VAR_STRING)
1044     {
1045 	char_u *str;
1046 
1047 	if (is_2string_any)
1048 	{
1049 	    switch (tv->v_type)
1050 	    {
1051 		case VAR_SPECIAL:
1052 		case VAR_BOOL:
1053 		case VAR_NUMBER:
1054 		case VAR_FLOAT:
1055 		case VAR_BLOB:	break;
1056 
1057 		case VAR_LIST:
1058 				if (tolerant)
1059 				{
1060 				    char_u	*s, *e, *p;
1061 				    garray_T	ga;
1062 
1063 				    ga_init2(&ga, sizeof(char_u *), 1);
1064 
1065 				    // Convert to NL separated items, then
1066 				    // escape the items and replace the NL with
1067 				    // a space.
1068 				    str = typval2string(tv, TRUE);
1069 				    if (str == NULL)
1070 					return FAIL;
1071 				    s = str;
1072 				    while ((e = vim_strchr(s, '\n')) != NULL)
1073 				    {
1074 					*e = NUL;
1075 					p = vim_strsave_fnameescape(s, FALSE);
1076 					if (p != NULL)
1077 					{
1078 					    ga_concat(&ga, p);
1079 					    ga_concat(&ga, (char_u *)" ");
1080 					    vim_free(p);
1081 					}
1082 					s = e + 1;
1083 				    }
1084 				    vim_free(str);
1085 				    clear_tv(tv);
1086 				    tv->v_type = VAR_STRING;
1087 				    tv->vval.v_string = ga.ga_data;
1088 				    return OK;
1089 				}
1090 				// FALLTHROUGH
1091 		default:	to_string_error(tv->v_type);
1092 				return FAIL;
1093 	    }
1094 	}
1095 	str = typval_tostring(tv, TRUE);
1096 	clear_tv(tv);
1097 	tv->v_type = VAR_STRING;
1098 	tv->vval.v_string = str;
1099     }
1100     return OK;
1101 }
1102 
1103 /*
1104  * When the value of "sv" is a null list of dict, allocate it.
1105  */
1106     static void
1107 allocate_if_null(typval_T *tv)
1108 {
1109     switch (tv->v_type)
1110     {
1111 	case VAR_LIST:
1112 	    if (tv->vval.v_list == NULL)
1113 		(void)rettv_list_alloc(tv);
1114 	    break;
1115 	case VAR_DICT:
1116 	    if (tv->vval.v_dict == NULL)
1117 		(void)rettv_dict_alloc(tv);
1118 	    break;
1119 	case VAR_BLOB:
1120 	    if (tv->vval.v_blob == NULL)
1121 		(void)rettv_blob_alloc(tv);
1122 	    break;
1123 	default:
1124 	    break;
1125     }
1126 }
1127 
1128 /*
1129  * Return the character "str[index]" where "index" is the character index,
1130  * including composing characters.
1131  * If "index" is out of range NULL is returned.
1132  */
1133     char_u *
1134 char_from_string(char_u *str, varnumber_T index)
1135 {
1136     size_t	    nbyte = 0;
1137     varnumber_T	    nchar = index;
1138     size_t	    slen;
1139 
1140     if (str == NULL)
1141 	return NULL;
1142     slen = STRLEN(str);
1143 
1144     // Do the same as for a list: a negative index counts from the end.
1145     // Optimization to check the first byte to be below 0x80 (and no composing
1146     // character follows) makes this a lot faster.
1147     if (index < 0)
1148     {
1149 	int	clen = 0;
1150 
1151 	for (nbyte = 0; nbyte < slen; ++clen)
1152 	{
1153 	    if (str[nbyte] < 0x80 && str[nbyte + 1] < 0x80)
1154 		++nbyte;
1155 	    else if (enc_utf8)
1156 		nbyte += utfc_ptr2len(str + nbyte);
1157 	    else
1158 		nbyte += mb_ptr2len(str + nbyte);
1159 	}
1160 	nchar = clen + index;
1161 	if (nchar < 0)
1162 	    // unlike list: index out of range results in empty string
1163 	    return NULL;
1164     }
1165 
1166     for (nbyte = 0; nchar > 0 && nbyte < slen; --nchar)
1167     {
1168 	if (str[nbyte] < 0x80 && str[nbyte + 1] < 0x80)
1169 	    ++nbyte;
1170 	else if (enc_utf8)
1171 	    nbyte += utfc_ptr2len(str + nbyte);
1172 	else
1173 	    nbyte += mb_ptr2len(str + nbyte);
1174     }
1175     if (nbyte >= slen)
1176 	return NULL;
1177     return vim_strnsave(str + nbyte, mb_ptr2len(str + nbyte));
1178 }
1179 
1180 /*
1181  * Get the byte index for character index "idx" in string "str" with length
1182  * "str_len".  Composing characters are included.
1183  * If going over the end return "str_len".
1184  * If "idx" is negative count from the end, -1 is the last character.
1185  * When going over the start return -1.
1186  */
1187     static long
1188 char_idx2byte(char_u *str, size_t str_len, varnumber_T idx)
1189 {
1190     varnumber_T nchar = idx;
1191     size_t	nbyte = 0;
1192 
1193     if (nchar >= 0)
1194     {
1195 	while (nchar > 0 && nbyte < str_len)
1196 	{
1197 	    nbyte += mb_ptr2len(str + nbyte);
1198 	    --nchar;
1199 	}
1200     }
1201     else
1202     {
1203 	nbyte = str_len;
1204 	while (nchar < 0 && nbyte > 0)
1205 	{
1206 	    --nbyte;
1207 	    nbyte -= mb_head_off(str, str + nbyte);
1208 	    ++nchar;
1209 	}
1210 	if (nchar < 0)
1211 	    return -1;
1212     }
1213     return (long)nbyte;
1214 }
1215 
1216 /*
1217  * Return the slice "str[first : last]" using character indexes.  Composing
1218  * characters are included.
1219  * "exclusive" is TRUE for slice().
1220  * Return NULL when the result is empty.
1221  */
1222     char_u *
1223 string_slice(char_u *str, varnumber_T first, varnumber_T last, int exclusive)
1224 {
1225     long	start_byte, end_byte;
1226     size_t	slen;
1227 
1228     if (str == NULL)
1229 	return NULL;
1230     slen = STRLEN(str);
1231     start_byte = char_idx2byte(str, slen, first);
1232     if (start_byte < 0)
1233 	start_byte = 0; // first index very negative: use zero
1234     if ((last == -1 && !exclusive) || last == VARNUM_MAX)
1235 	end_byte = (long)slen;
1236     else
1237     {
1238 	end_byte = char_idx2byte(str, slen, last);
1239 	if (!exclusive && end_byte >= 0 && end_byte < (long)slen)
1240 	    // end index is inclusive
1241 	    end_byte += mb_ptr2len(str + end_byte);
1242     }
1243 
1244     if (start_byte >= (long)slen || end_byte <= start_byte)
1245 	return NULL;
1246     return vim_strnsave(str + start_byte, end_byte - start_byte);
1247 }
1248 
1249     static svar_T *
1250 get_script_svar(scriptref_T *sref, ectx_T *ectx)
1251 {
1252     scriptitem_T    *si = SCRIPT_ITEM(sref->sref_sid);
1253     dfunc_T	    *dfunc = ((dfunc_T *)def_functions.ga_data)
1254 							  + ectx->ec_dfunc_idx;
1255     svar_T	    *sv;
1256 
1257     if (sref->sref_seq != si->sn_script_seq)
1258     {
1259 	// The script was reloaded after the function was
1260 	// compiled, the script_idx may not be valid.
1261 	semsg(_(e_script_variable_invalid_after_reload_in_function_str),
1262 						 dfunc->df_ufunc->uf_name_exp);
1263 	return NULL;
1264     }
1265     sv = ((svar_T *)si->sn_var_vals.ga_data) + sref->sref_idx;
1266     if (!equal_type(sv->sv_type, sref->sref_type))
1267     {
1268 	emsg(_(e_script_variable_type_changed));
1269 	return NULL;
1270     }
1271     return sv;
1272 }
1273 
1274 /*
1275  * Function passed to do_cmdline() for splitting a script joined by NL
1276  * characters.
1277  */
1278     static char_u *
1279 get_split_sourceline(
1280 	int c UNUSED,
1281 	void *cookie,
1282 	int indent UNUSED,
1283 	getline_opt_T options UNUSED)
1284 {
1285     source_cookie_T	*sp = (source_cookie_T *)cookie;
1286     char_u		*p;
1287     char_u		*line;
1288 
1289     if (*sp->nextline == NUL)
1290 	return NULL;
1291     p = vim_strchr(sp->nextline, '\n');
1292     if (p == NULL)
1293     {
1294 	line = vim_strsave(sp->nextline);
1295 	sp->nextline += STRLEN(sp->nextline);
1296     }
1297     else
1298     {
1299 	line = vim_strnsave(sp->nextline, p - sp->nextline);
1300 	sp->nextline = p + 1;
1301     }
1302     return line;
1303 }
1304 
1305 /*
1306  * Execute a function by "name".
1307  * This can be a builtin function, user function or a funcref.
1308  * "iptr" can be used to replace the instruction with a more efficient one.
1309  */
1310     static int
1311 call_eval_func(
1312 	char_u	    *name,
1313 	int	    argcount,
1314 	ectx_T	    *ectx,
1315 	isn_T	    *iptr)
1316 {
1317     int	    called_emsg_before = called_emsg;
1318     int	    res;
1319 
1320     res = call_by_name(name, argcount, ectx, iptr);
1321     if (res == FAIL && called_emsg == called_emsg_before)
1322     {
1323 	dictitem_T	*v;
1324 
1325 	v = find_var(name, NULL, FALSE);
1326 	if (v == NULL)
1327 	{
1328 	    semsg(_(e_unknownfunc), name);
1329 	    return FAIL;
1330 	}
1331 	if (v->di_tv.v_type != VAR_PARTIAL && v->di_tv.v_type != VAR_FUNC)
1332 	{
1333 	    semsg(_(e_unknownfunc), name);
1334 	    return FAIL;
1335 	}
1336 	return call_partial(&v->di_tv, argcount, ectx);
1337     }
1338     return res;
1339 }
1340 
1341 /*
1342  * When a function reference is used, fill a partial with the information
1343  * needed, especially when it is used as a closure.
1344  */
1345     int
1346 fill_partial_and_closure(partial_T *pt, ufunc_T *ufunc, ectx_T *ectx)
1347 {
1348     pt->pt_func = ufunc;
1349     pt->pt_refcount = 1;
1350 
1351     if (ufunc->uf_flags & FC_CLOSURE)
1352     {
1353 	dfunc_T	*dfunc = ((dfunc_T *)def_functions.ga_data)
1354 							  + ectx->ec_dfunc_idx;
1355 
1356 	// The closure may need to find arguments and local variables in the
1357 	// current stack.
1358 	pt->pt_outer.out_stack = &ectx->ec_stack;
1359 	pt->pt_outer.out_frame_idx = ectx->ec_frame_idx;
1360 	if (ectx->ec_outer_ref != NULL)
1361 	{
1362 	    // The current context already has a context, link to that one.
1363 	    pt->pt_outer.out_up = ectx->ec_outer_ref->or_outer;
1364 	    if (ectx->ec_outer_ref->or_partial != NULL)
1365 	    {
1366 		pt->pt_outer.out_up_partial = ectx->ec_outer_ref->or_partial;
1367 		++pt->pt_outer.out_up_partial->pt_refcount;
1368 	    }
1369 	}
1370 
1371 	// If this function returns and the closure is still being used, we
1372 	// need to make a copy of the context (arguments and local variables).
1373 	// Store a reference to the partial so we can handle that.
1374 	if (ga_grow(&ectx->ec_funcrefs, 1) == FAIL)
1375 	{
1376 	    vim_free(pt);
1377 	    return FAIL;
1378 	}
1379 	// Extra variable keeps the count of closures created in the current
1380 	// function call.
1381 	++(((typval_T *)ectx->ec_stack.ga_data) + ectx->ec_frame_idx
1382 		       + STACK_FRAME_SIZE + dfunc->df_varcount)->vval.v_number;
1383 
1384 	((partial_T **)ectx->ec_funcrefs.ga_data)
1385 			       [ectx->ec_funcrefs.ga_len] = pt;
1386 	++pt->pt_refcount;
1387 	++ectx->ec_funcrefs.ga_len;
1388     }
1389     ++ufunc->uf_refcount;
1390     return OK;
1391 }
1392 
1393 // used for v_instr of typval of VAR_INSTR
1394 struct instr_S {
1395     ectx_T	*instr_ectx;
1396     isn_T	*instr_instr;
1397 };
1398 
1399 // used for substitute_instr
1400 typedef struct subs_expr_S {
1401     ectx_T	*subs_ectx;
1402     isn_T	*subs_instr;
1403     int		subs_status;
1404 } subs_expr_T;
1405 
1406 // Get pointer to item in the stack.
1407 #define STACK_TV(idx) (((typval_T *)ectx->ec_stack.ga_data) + idx)
1408 
1409 // Get pointer to item at the bottom of the stack, -1 is the bottom.
1410 #undef STACK_TV_BOT
1411 #define STACK_TV_BOT(idx) (((typval_T *)ectx->ec_stack.ga_data) + ectx->ec_stack.ga_len + idx)
1412 
1413 // Get pointer to a local variable on the stack.  Negative for arguments.
1414 #define STACK_TV_VAR(idx) (((typval_T *)ectx->ec_stack.ga_data) + ectx->ec_frame_idx + STACK_FRAME_SIZE + idx)
1415 
1416 // Set when calling do_debug().
1417 static ectx_T	*debug_context = NULL;
1418 static int	debug_var_count;
1419 
1420 /*
1421  * When debugging lookup "name" and return the typeval.
1422  * When not found return NULL.
1423  */
1424     typval_T *
1425 lookup_debug_var(char_u *name)
1426 {
1427     int		    idx;
1428     dfunc_T	    *dfunc;
1429     ufunc_T	    *ufunc;
1430     ectx_T	    *ectx = debug_context;
1431     int		    varargs_off;
1432 
1433     if (ectx == NULL)
1434 	return NULL;
1435     dfunc = ((dfunc_T *)def_functions.ga_data) + ectx->ec_dfunc_idx;
1436 
1437     // Go through the local variable names, from last to first.
1438     for (idx = debug_var_count - 1; idx >= 0; --idx)
1439     {
1440 	if (STRCMP(((char_u **)dfunc->df_var_names.ga_data)[idx], name) == 0)
1441 	    return STACK_TV_VAR(idx);
1442     }
1443 
1444     // Go through argument names.
1445     ufunc = dfunc->df_ufunc;
1446     varargs_off = ufunc->uf_va_name == NULL ? 0 : 1;
1447     for (idx = 0; idx < ufunc->uf_args.ga_len; ++idx)
1448 	if (STRCMP(((char_u **)(ufunc->uf_args.ga_data))[idx], name) == 0)
1449 	    return STACK_TV(ectx->ec_frame_idx - ufunc->uf_args.ga_len
1450 							  - varargs_off + idx);
1451     if (ufunc->uf_va_name != NULL && STRCMP(ufunc->uf_va_name, name) == 0)
1452 	return STACK_TV(ectx->ec_frame_idx - 1);
1453 
1454     return NULL;
1455 }
1456 
1457     static void
1458 handle_debug(isn_T *iptr, ectx_T *ectx)
1459 {
1460     char_u	*line;
1461     ufunc_T	*ufunc = (((dfunc_T *)def_functions.ga_data)
1462 					       + ectx->ec_dfunc_idx)->df_ufunc;
1463     isn_T	*ni;
1464     int		end_lnum = iptr->isn_lnum;
1465     garray_T	ga;
1466     int		lnum;
1467 
1468     if (ex_nesting_level > debug_break_level)
1469     {
1470 	linenr_T breakpoint;
1471 
1472 	if (!ufunc->uf_has_breakpoint)
1473 	    return;
1474 
1475 	// check for the next breakpoint if needed
1476 	breakpoint = dbg_find_breakpoint(FALSE, ufunc->uf_name,
1477 					   iptr->isn_arg.debug.dbg_break_lnum);
1478 	if (breakpoint <= 0 || breakpoint > iptr->isn_lnum)
1479 	    return;
1480     }
1481 
1482     SOURCING_LNUM = iptr->isn_lnum;
1483     debug_context = ectx;
1484     debug_var_count = iptr->isn_arg.debug.dbg_var_names_len;
1485 
1486     for (ni = iptr + 1; ni->isn_type != ISN_FINISH; ++ni)
1487 	if (ni->isn_type == ISN_DEBUG
1488 		  || ni->isn_type == ISN_RETURN
1489 		  || ni->isn_type == ISN_RETURN_VOID)
1490 	{
1491 	    end_lnum = ni->isn_lnum;
1492 	    break;
1493 	}
1494 
1495     if (end_lnum > iptr->isn_lnum)
1496     {
1497 	ga_init2(&ga, sizeof(char_u *), 10);
1498 	for (lnum = iptr->isn_lnum; lnum < end_lnum; ++lnum)
1499 	{
1500 	    char_u *p = ((char_u **)ufunc->uf_lines.ga_data)[lnum - 1];
1501 
1502 	    if (p == NULL)
1503 		continue;  // left over from continuation line
1504 	    p = skipwhite(p);
1505 	    if (*p == '#')
1506 		break;
1507 	    if (ga_grow(&ga, 1) == OK)
1508 		((char_u **)(ga.ga_data))[ga.ga_len++] = p;
1509 	    if (STRNCMP(p, "def ", 4) == 0)
1510 		break;
1511 	}
1512 	line = ga_concat_strings(&ga, "  ");
1513 	vim_free(ga.ga_data);
1514     }
1515     else
1516 	line = ((char_u **)ufunc->uf_lines.ga_data)[iptr->isn_lnum - 1];
1517 
1518     do_debug(line == NULL ? (char_u *)"[empty]" : line);
1519     debug_context = NULL;
1520 
1521     if (end_lnum > iptr->isn_lnum)
1522 	vim_free(line);
1523 }
1524 
1525 /*
1526  * Execute instructions in execution context "ectx".
1527  * Return OK or FAIL;
1528  */
1529     static int
1530 exec_instructions(ectx_T *ectx)
1531 {
1532     int		breakcheck_count = 0;
1533     typval_T	*tv;
1534     int		ret = FAIL;
1535     int		save_trylevel_at_start = ectx->ec_trylevel_at_start;
1536 
1537     // Start execution at the first instruction.
1538     ectx->ec_iidx = 0;
1539 
1540     // Only catch exceptions in this instruction list.
1541     ectx->ec_trylevel_at_start = trylevel;
1542 
1543     for (;;)
1544     {
1545 	isn_T	    *iptr;
1546 
1547 	if (++breakcheck_count >= 100)
1548 	{
1549 	    line_breakcheck();
1550 	    breakcheck_count = 0;
1551 	}
1552 	if (got_int)
1553 	{
1554 	    // Turn CTRL-C into an exception.
1555 	    got_int = FALSE;
1556 	    if (throw_exception("Vim:Interrupt", ET_INTERRUPT, NULL) == FAIL)
1557 		goto theend;
1558 	    did_throw = TRUE;
1559 	}
1560 
1561 	if (did_emsg && msg_list != NULL && *msg_list != NULL)
1562 	{
1563 	    // Turn an error message into an exception.
1564 	    did_emsg = FALSE;
1565 	    if (throw_exception(*msg_list, ET_ERROR, NULL) == FAIL)
1566 		goto theend;
1567 	    did_throw = TRUE;
1568 	    *msg_list = NULL;
1569 	}
1570 
1571 	if (did_throw)
1572 	{
1573 	    garray_T	*trystack = &ectx->ec_trystack;
1574 	    trycmd_T    *trycmd = NULL;
1575 	    int		index = trystack->ga_len;
1576 
1577 	    // An exception jumps to the first catch, finally, or returns from
1578 	    // the current function.
1579 	    while (index > 0)
1580 	    {
1581 		trycmd = ((trycmd_T *)trystack->ga_data) + index - 1;
1582 		if (!trycmd->tcd_in_catch || trycmd->tcd_finally_idx != 0)
1583 		    break;
1584 		// In the catch and finally block of this try we have to go up
1585 		// one level.
1586 		--index;
1587 		trycmd = NULL;
1588 	    }
1589 	    if (trycmd != NULL && trycmd->tcd_frame_idx == ectx->ec_frame_idx)
1590 	    {
1591 		if (trycmd->tcd_in_catch)
1592 		{
1593 		    // exception inside ":catch", jump to ":finally" once
1594 		    ectx->ec_iidx = trycmd->tcd_finally_idx;
1595 		    trycmd->tcd_finally_idx = 0;
1596 		}
1597 		else
1598 		    // jump to first ":catch"
1599 		    ectx->ec_iidx = trycmd->tcd_catch_idx;
1600 		trycmd->tcd_in_catch = TRUE;
1601 		did_throw = FALSE;  // don't come back here until :endtry
1602 		trycmd->tcd_did_throw = TRUE;
1603 	    }
1604 	    else
1605 	    {
1606 		// Not inside try or need to return from current functions.
1607 		// Push a dummy return value.
1608 		if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1609 		    goto theend;
1610 		tv = STACK_TV_BOT(0);
1611 		tv->v_type = VAR_NUMBER;
1612 		tv->vval.v_number = 0;
1613 		++ectx->ec_stack.ga_len;
1614 		if (ectx->ec_frame_idx == ectx->ec_initial_frame_idx)
1615 		{
1616 		    // At the toplevel we are done.
1617 		    need_rethrow = TRUE;
1618 		    if (handle_closure_in_use(ectx, FALSE) == FAIL)
1619 			goto theend;
1620 		    goto done;
1621 		}
1622 
1623 		if (func_return(ectx) == FAIL)
1624 		    goto theend;
1625 	    }
1626 	    continue;
1627 	}
1628 
1629 	iptr = &ectx->ec_instr[ectx->ec_iidx++];
1630 	switch (iptr->isn_type)
1631 	{
1632 	    // execute Ex command line
1633 	    case ISN_EXEC:
1634 		{
1635 		    source_cookie_T cookie;
1636 
1637 		    SOURCING_LNUM = iptr->isn_lnum;
1638 		    // Pass getsourceline to get an error for a missing ":end"
1639 		    // command.
1640 		    CLEAR_FIELD(cookie);
1641 		    cookie.sourcing_lnum = iptr->isn_lnum - 1;
1642 		    if (do_cmdline(iptr->isn_arg.string,
1643 				getsourceline, &cookie,
1644 				   DOCMD_VERBOSE|DOCMD_NOWAIT|DOCMD_KEYTYPED)
1645 									== FAIL
1646 				|| did_emsg)
1647 			goto on_error;
1648 		}
1649 		break;
1650 
1651 	    // execute Ex command line split at NL characters.
1652 	    case ISN_EXEC_SPLIT:
1653 		{
1654 		    source_cookie_T cookie;
1655 		    char_u	    *line;
1656 
1657 		    SOURCING_LNUM = iptr->isn_lnum;
1658 		    CLEAR_FIELD(cookie);
1659 		    cookie.sourcing_lnum = iptr->isn_lnum - 1;
1660 		    cookie.nextline = iptr->isn_arg.string;
1661 		    line = get_split_sourceline(0, &cookie, 0, 0);
1662 		    if (do_cmdline(line,
1663 				get_split_sourceline, &cookie,
1664 				   DOCMD_VERBOSE|DOCMD_NOWAIT|DOCMD_KEYTYPED)
1665 									== FAIL
1666 				|| did_emsg)
1667 		    {
1668 			vim_free(line);
1669 			goto on_error;
1670 		    }
1671 		    vim_free(line);
1672 		}
1673 		break;
1674 
1675 	    // Evaluate an expression with legacy syntax, push it onto the
1676 	    // stack.
1677 	    case ISN_LEGACY_EVAL:
1678 		{
1679 		    char_u  *arg = iptr->isn_arg.string;
1680 		    int	    res;
1681 		    int	    save_flags = cmdmod.cmod_flags;
1682 
1683 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1684 			goto theend;
1685 		    tv = STACK_TV_BOT(0);
1686 		    init_tv(tv);
1687 		    cmdmod.cmod_flags |= CMOD_LEGACY;
1688 		    res = eval0(arg, tv, NULL, &EVALARG_EVALUATE);
1689 		    cmdmod.cmod_flags = save_flags;
1690 		    if (res == FAIL)
1691 			goto on_error;
1692 		    ++ectx->ec_stack.ga_len;
1693 		}
1694 		break;
1695 
1696 	    // push typeval VAR_INSTR with instructions to be executed
1697 	    case ISN_INSTR:
1698 		{
1699 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1700 			goto theend;
1701 		    tv = STACK_TV_BOT(0);
1702 		    tv->vval.v_instr = ALLOC_ONE(instr_T);
1703 		    if (tv->vval.v_instr == NULL)
1704 			goto on_error;
1705 		    ++ectx->ec_stack.ga_len;
1706 
1707 		    tv->v_type = VAR_INSTR;
1708 		    tv->vval.v_instr->instr_ectx = ectx;
1709 		    tv->vval.v_instr->instr_instr = iptr->isn_arg.instr;
1710 		}
1711 		break;
1712 
1713 	    // execute :substitute with an expression
1714 	    case ISN_SUBSTITUTE:
1715 		{
1716 		    subs_T		*subs = &iptr->isn_arg.subs;
1717 		    source_cookie_T	cookie;
1718 		    struct subs_expr_S	*save_instr = substitute_instr;
1719 		    struct subs_expr_S	subs_instr;
1720 		    int			res;
1721 
1722 		    subs_instr.subs_ectx = ectx;
1723 		    subs_instr.subs_instr = subs->subs_instr;
1724 		    subs_instr.subs_status = OK;
1725 		    substitute_instr = &subs_instr;
1726 
1727 		    SOURCING_LNUM = iptr->isn_lnum;
1728 		    // This is very much like ISN_EXEC
1729 		    CLEAR_FIELD(cookie);
1730 		    cookie.sourcing_lnum = iptr->isn_lnum - 1;
1731 		    res = do_cmdline(subs->subs_cmd,
1732 				getsourceline, &cookie,
1733 				   DOCMD_VERBOSE|DOCMD_NOWAIT|DOCMD_KEYTYPED);
1734 		    substitute_instr = save_instr;
1735 
1736 		    if (res == FAIL || did_emsg
1737 					     || subs_instr.subs_status == FAIL)
1738 			goto on_error;
1739 		}
1740 		break;
1741 
1742 	    case ISN_FINISH:
1743 		goto done;
1744 
1745 	    case ISN_REDIRSTART:
1746 		// create a dummy entry for var_redir_str()
1747 		if (alloc_redir_lval() == FAIL)
1748 		    goto on_error;
1749 
1750 		// The output is stored in growarray "redir_ga" until
1751 		// redirection ends.
1752 		init_redir_ga();
1753 		redir_vname = 1;
1754 		break;
1755 
1756 	    case ISN_REDIREND:
1757 		{
1758 		    char_u *res = get_clear_redir_ga();
1759 
1760 		    // End redirection, put redirected text on the stack.
1761 		    clear_redir_lval();
1762 		    redir_vname = 0;
1763 
1764 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1765 		    {
1766 			vim_free(res);
1767 			goto theend;
1768 		    }
1769 		    tv = STACK_TV_BOT(0);
1770 		    tv->v_type = VAR_STRING;
1771 		    tv->vval.v_string = res;
1772 		    ++ectx->ec_stack.ga_len;
1773 		}
1774 		break;
1775 
1776 	    case ISN_CEXPR_AUCMD:
1777 #ifdef FEAT_QUICKFIX
1778 		if (trigger_cexpr_autocmd(iptr->isn_arg.number) == FAIL)
1779 		    goto on_error;
1780 #endif
1781 		break;
1782 
1783 	    case ISN_CEXPR_CORE:
1784 #ifdef FEAT_QUICKFIX
1785 		{
1786 		    exarg_T ea;
1787 		    int	    res;
1788 
1789 		    CLEAR_FIELD(ea);
1790 		    ea.cmdidx = iptr->isn_arg.cexpr.cexpr_ref->cer_cmdidx;
1791 		    ea.forceit = iptr->isn_arg.cexpr.cexpr_ref->cer_forceit;
1792 		    ea.cmdlinep = &iptr->isn_arg.cexpr.cexpr_ref->cer_cmdline;
1793 		    --ectx->ec_stack.ga_len;
1794 		    tv = STACK_TV_BOT(0);
1795 		    res = cexpr_core(&ea, tv);
1796 		    clear_tv(tv);
1797 		    if (res == FAIL)
1798 			goto on_error;
1799 		}
1800 #endif
1801 		break;
1802 
1803 	    // execute Ex command from pieces on the stack
1804 	    case ISN_EXECCONCAT:
1805 		{
1806 		    int	    count = iptr->isn_arg.number;
1807 		    size_t  len = 0;
1808 		    int	    pass;
1809 		    int	    i;
1810 		    char_u  *cmd = NULL;
1811 		    char_u  *str;
1812 
1813 		    for (pass = 1; pass <= 2; ++pass)
1814 		    {
1815 			for (i = 0; i < count; ++i)
1816 			{
1817 			    tv = STACK_TV_BOT(i - count);
1818 			    str = tv->vval.v_string;
1819 			    if (str != NULL && *str != NUL)
1820 			    {
1821 				if (pass == 2)
1822 				    STRCPY(cmd + len, str);
1823 				len += STRLEN(str);
1824 			    }
1825 			    if (pass == 2)
1826 				clear_tv(tv);
1827 			}
1828 			if (pass == 1)
1829 			{
1830 			    cmd = alloc(len + 1);
1831 			    if (cmd == NULL)
1832 				goto theend;
1833 			    len = 0;
1834 			}
1835 		    }
1836 
1837 		    SOURCING_LNUM = iptr->isn_lnum;
1838 		    do_cmdline_cmd(cmd);
1839 		    vim_free(cmd);
1840 		}
1841 		break;
1842 
1843 	    // execute :echo {string} ...
1844 	    case ISN_ECHO:
1845 		{
1846 		    int count = iptr->isn_arg.echo.echo_count;
1847 		    int	atstart = TRUE;
1848 		    int needclr = TRUE;
1849 		    int	idx;
1850 
1851 		    for (idx = 0; idx < count; ++idx)
1852 		    {
1853 			tv = STACK_TV_BOT(idx - count);
1854 			echo_one(tv, iptr->isn_arg.echo.echo_with_white,
1855 							   &atstart, &needclr);
1856 			clear_tv(tv);
1857 		    }
1858 		    if (needclr)
1859 			msg_clr_eos();
1860 		    ectx->ec_stack.ga_len -= count;
1861 		}
1862 		break;
1863 
1864 	    // :execute {string} ...
1865 	    // :echomsg {string} ...
1866 	    // :echoerr {string} ...
1867 	    case ISN_EXECUTE:
1868 	    case ISN_ECHOMSG:
1869 	    case ISN_ECHOERR:
1870 		{
1871 		    int		count = iptr->isn_arg.number;
1872 		    garray_T	ga;
1873 		    char_u	buf[NUMBUFLEN];
1874 		    char_u	*p;
1875 		    int		len;
1876 		    int		failed = FALSE;
1877 		    int		idx;
1878 
1879 		    ga_init2(&ga, 1, 80);
1880 		    for (idx = 0; idx < count; ++idx)
1881 		    {
1882 			tv = STACK_TV_BOT(idx - count);
1883 			if (iptr->isn_type == ISN_EXECUTE)
1884 			{
1885 			    if (tv->v_type == VAR_CHANNEL
1886 						      || tv->v_type == VAR_JOB)
1887 			    {
1888 				SOURCING_LNUM = iptr->isn_lnum;
1889 				semsg(_(e_using_invalid_value_as_string_str),
1890 						    vartype_name(tv->v_type));
1891 				break;
1892 			    }
1893 			    else
1894 				p = tv_get_string_buf(tv, buf);
1895 			}
1896 			else
1897 			    p = tv_stringify(tv, buf);
1898 
1899 			len = (int)STRLEN(p);
1900 			if (ga_grow(&ga, len + 2) == FAIL)
1901 			    failed = TRUE;
1902 			else
1903 			{
1904 			    if (ga.ga_len > 0)
1905 				((char_u *)(ga.ga_data))[ga.ga_len++] = ' ';
1906 			    STRCPY((char_u *)(ga.ga_data) + ga.ga_len, p);
1907 			    ga.ga_len += len;
1908 			}
1909 			clear_tv(tv);
1910 		    }
1911 		    ectx->ec_stack.ga_len -= count;
1912 		    if (failed)
1913 		    {
1914 			ga_clear(&ga);
1915 			goto on_error;
1916 		    }
1917 
1918 		    if (ga.ga_data != NULL)
1919 		    {
1920 			if (iptr->isn_type == ISN_EXECUTE)
1921 			{
1922 			    SOURCING_LNUM = iptr->isn_lnum;
1923 			    do_cmdline_cmd((char_u *)ga.ga_data);
1924 			    if (did_emsg)
1925 			    {
1926 				ga_clear(&ga);
1927 				goto on_error;
1928 			    }
1929 			}
1930 			else
1931 			{
1932 			    msg_sb_eol();
1933 			    if (iptr->isn_type == ISN_ECHOMSG)
1934 			    {
1935 				msg_attr(ga.ga_data, echo_attr);
1936 				out_flush();
1937 			    }
1938 			    else
1939 			    {
1940 				SOURCING_LNUM = iptr->isn_lnum;
1941 				emsg(ga.ga_data);
1942 			    }
1943 			}
1944 		    }
1945 		    ga_clear(&ga);
1946 		}
1947 		break;
1948 
1949 	    // load local variable or argument
1950 	    case ISN_LOAD:
1951 		if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1952 		    goto theend;
1953 		copy_tv(STACK_TV_VAR(iptr->isn_arg.number), STACK_TV_BOT(0));
1954 		++ectx->ec_stack.ga_len;
1955 		break;
1956 
1957 	    // load v: variable
1958 	    case ISN_LOADV:
1959 		if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1960 		    goto theend;
1961 		copy_tv(get_vim_var_tv(iptr->isn_arg.number), STACK_TV_BOT(0));
1962 		++ectx->ec_stack.ga_len;
1963 		break;
1964 
1965 	    // load s: variable in Vim9 script
1966 	    case ISN_LOADSCRIPT:
1967 		{
1968 		    scriptref_T	*sref = iptr->isn_arg.script.scriptref;
1969 		    svar_T	 *sv;
1970 
1971 		    sv = get_script_svar(sref, ectx);
1972 		    if (sv == NULL)
1973 			goto theend;
1974 		    allocate_if_null(sv->sv_tv);
1975 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1976 			goto theend;
1977 		    copy_tv(sv->sv_tv, STACK_TV_BOT(0));
1978 		    ++ectx->ec_stack.ga_len;
1979 		}
1980 		break;
1981 
1982 	    // load s: variable in old script
1983 	    case ISN_LOADS:
1984 		{
1985 		    hashtab_T	*ht = &SCRIPT_VARS(
1986 					       iptr->isn_arg.loadstore.ls_sid);
1987 		    char_u	*name = iptr->isn_arg.loadstore.ls_name;
1988 		    dictitem_T	*di = find_var_in_ht(ht, 0, name, TRUE);
1989 
1990 		    if (di == NULL)
1991 		    {
1992 			SOURCING_LNUM = iptr->isn_lnum;
1993 			semsg(_(e_undefined_variable_str), name);
1994 			goto on_error;
1995 		    }
1996 		    else
1997 		    {
1998 			if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
1999 			    goto theend;
2000 			copy_tv(&di->di_tv, STACK_TV_BOT(0));
2001 			++ectx->ec_stack.ga_len;
2002 		    }
2003 		}
2004 		break;
2005 
2006 	    // load g:/b:/w:/t: variable
2007 	    case ISN_LOADG:
2008 	    case ISN_LOADB:
2009 	    case ISN_LOADW:
2010 	    case ISN_LOADT:
2011 		{
2012 		    dictitem_T *di = NULL;
2013 		    hashtab_T *ht = NULL;
2014 		    char namespace;
2015 
2016 		    switch (iptr->isn_type)
2017 		    {
2018 			case ISN_LOADG:
2019 			    ht = get_globvar_ht();
2020 			    namespace = 'g';
2021 			    break;
2022 			case ISN_LOADB:
2023 			    ht = &curbuf->b_vars->dv_hashtab;
2024 			    namespace = 'b';
2025 			    break;
2026 			case ISN_LOADW:
2027 			    ht = &curwin->w_vars->dv_hashtab;
2028 			    namespace = 'w';
2029 			    break;
2030 			case ISN_LOADT:
2031 			    ht = &curtab->tp_vars->dv_hashtab;
2032 			    namespace = 't';
2033 			    break;
2034 			default:  // Cannot reach here
2035 			    goto theend;
2036 		    }
2037 		    di = find_var_in_ht(ht, 0, iptr->isn_arg.string, TRUE);
2038 
2039 		    if (di == NULL)
2040 		    {
2041 			SOURCING_LNUM = iptr->isn_lnum;
2042 			semsg(_(e_undefined_variable_char_str),
2043 					     namespace, iptr->isn_arg.string);
2044 			goto on_error;
2045 		    }
2046 		    else
2047 		    {
2048 			if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2049 			    goto theend;
2050 			copy_tv(&di->di_tv, STACK_TV_BOT(0));
2051 			++ectx->ec_stack.ga_len;
2052 		    }
2053 		}
2054 		break;
2055 
2056 	    // load autoload variable
2057 	    case ISN_LOADAUTO:
2058 		{
2059 		    char_u *name = iptr->isn_arg.string;
2060 
2061 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2062 			goto theend;
2063 		    SOURCING_LNUM = iptr->isn_lnum;
2064 		    if (eval_variable(name, (int)STRLEN(name),
2065 			      STACK_TV_BOT(0), NULL, EVAL_VAR_VERBOSE) == FAIL)
2066 			goto on_error;
2067 		    ++ectx->ec_stack.ga_len;
2068 		}
2069 		break;
2070 
2071 	    // load g:/b:/w:/t: namespace
2072 	    case ISN_LOADGDICT:
2073 	    case ISN_LOADBDICT:
2074 	    case ISN_LOADWDICT:
2075 	    case ISN_LOADTDICT:
2076 		{
2077 		    dict_T *d = NULL;
2078 
2079 		    switch (iptr->isn_type)
2080 		    {
2081 			case ISN_LOADGDICT: d = get_globvar_dict(); break;
2082 			case ISN_LOADBDICT: d = curbuf->b_vars; break;
2083 			case ISN_LOADWDICT: d = curwin->w_vars; break;
2084 			case ISN_LOADTDICT: d = curtab->tp_vars; break;
2085 			default:  // Cannot reach here
2086 			    goto theend;
2087 		    }
2088 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2089 			goto theend;
2090 		    tv = STACK_TV_BOT(0);
2091 		    tv->v_type = VAR_DICT;
2092 		    tv->v_lock = 0;
2093 		    tv->vval.v_dict = d;
2094 		    ++d->dv_refcount;
2095 		    ++ectx->ec_stack.ga_len;
2096 		}
2097 		break;
2098 
2099 	    // load &option
2100 	    case ISN_LOADOPT:
2101 		{
2102 		    typval_T	optval;
2103 		    char_u	*name = iptr->isn_arg.string;
2104 
2105 		    // This is not expected to fail, name is checked during
2106 		    // compilation: don't set SOURCING_LNUM.
2107 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2108 			goto theend;
2109 		    if (eval_option(&name, &optval, TRUE) == FAIL)
2110 			goto theend;
2111 		    *STACK_TV_BOT(0) = optval;
2112 		    ++ectx->ec_stack.ga_len;
2113 		}
2114 		break;
2115 
2116 	    // load $ENV
2117 	    case ISN_LOADENV:
2118 		{
2119 		    typval_T	optval;
2120 		    char_u	*name = iptr->isn_arg.string;
2121 
2122 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2123 			goto theend;
2124 		    // name is always valid, checked when compiling
2125 		    (void)eval_env_var(&name, &optval, TRUE);
2126 		    *STACK_TV_BOT(0) = optval;
2127 		    ++ectx->ec_stack.ga_len;
2128 		}
2129 		break;
2130 
2131 	    // load @register
2132 	    case ISN_LOADREG:
2133 		if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2134 		    goto theend;
2135 		tv = STACK_TV_BOT(0);
2136 		tv->v_type = VAR_STRING;
2137 		tv->v_lock = 0;
2138 		// This may result in NULL, which should be equivalent to an
2139 		// empty string.
2140 		tv->vval.v_string = get_reg_contents(
2141 					  iptr->isn_arg.number, GREG_EXPR_SRC);
2142 		++ectx->ec_stack.ga_len;
2143 		break;
2144 
2145 	    // store local variable
2146 	    case ISN_STORE:
2147 		--ectx->ec_stack.ga_len;
2148 		tv = STACK_TV_VAR(iptr->isn_arg.number);
2149 		clear_tv(tv);
2150 		*tv = *STACK_TV_BOT(0);
2151 		break;
2152 
2153 	    // store s: variable in old script
2154 	    case ISN_STORES:
2155 		{
2156 		    hashtab_T	*ht = &SCRIPT_VARS(
2157 					       iptr->isn_arg.loadstore.ls_sid);
2158 		    char_u	*name = iptr->isn_arg.loadstore.ls_name;
2159 		    dictitem_T	*di = find_var_in_ht(ht, 0, name + 2, TRUE);
2160 
2161 		    --ectx->ec_stack.ga_len;
2162 		    if (di == NULL)
2163 			store_var(name, STACK_TV_BOT(0));
2164 		    else
2165 		    {
2166 			SOURCING_LNUM = iptr->isn_lnum;
2167 			if (var_check_permission(di, name) == FAIL)
2168 			{
2169 			    clear_tv(STACK_TV_BOT(0));
2170 			    goto on_error;
2171 			}
2172 			clear_tv(&di->di_tv);
2173 			di->di_tv = *STACK_TV_BOT(0);
2174 		    }
2175 		}
2176 		break;
2177 
2178 	    // store script-local variable in Vim9 script
2179 	    case ISN_STORESCRIPT:
2180 		{
2181 		    scriptref_T	    *sref = iptr->isn_arg.script.scriptref;
2182 		    svar_T	    *sv;
2183 
2184 		    sv = get_script_svar(sref, ectx);
2185 		    if (sv == NULL)
2186 			goto theend;
2187 		    --ectx->ec_stack.ga_len;
2188 
2189 		    // "const" and "final" are checked at compile time, locking
2190 		    // the value needs to be checked here.
2191 		    SOURCING_LNUM = iptr->isn_lnum;
2192 		    if (value_check_lock(sv->sv_tv->v_lock, sv->sv_name, FALSE))
2193 		    {
2194 			clear_tv(STACK_TV_BOT(0));
2195 			goto on_error;
2196 		    }
2197 
2198 		    clear_tv(sv->sv_tv);
2199 		    *sv->sv_tv = *STACK_TV_BOT(0);
2200 		}
2201 		break;
2202 
2203 	    // store option
2204 	    case ISN_STOREOPT:
2205 		{
2206 		    long	n = 0;
2207 		    char_u	*s = NULL;
2208 		    char	*msg;
2209 
2210 		    --ectx->ec_stack.ga_len;
2211 		    tv = STACK_TV_BOT(0);
2212 		    if (tv->v_type == VAR_STRING)
2213 		    {
2214 			s = tv->vval.v_string;
2215 			if (s == NULL)
2216 			    s = (char_u *)"";
2217 		    }
2218 		    else
2219 			// must be VAR_NUMBER, CHECKTYPE makes sure
2220 			n = tv->vval.v_number;
2221 		    msg = set_option_value(iptr->isn_arg.storeopt.so_name,
2222 					n, s, iptr->isn_arg.storeopt.so_flags);
2223 		    clear_tv(tv);
2224 		    if (msg != NULL)
2225 		    {
2226 			SOURCING_LNUM = iptr->isn_lnum;
2227 			emsg(_(msg));
2228 			goto on_error;
2229 		    }
2230 		}
2231 		break;
2232 
2233 	    // store $ENV
2234 	    case ISN_STOREENV:
2235 		--ectx->ec_stack.ga_len;
2236 		tv = STACK_TV_BOT(0);
2237 		vim_setenv_ext(iptr->isn_arg.string, tv_get_string(tv));
2238 		clear_tv(tv);
2239 		break;
2240 
2241 	    // store @r
2242 	    case ISN_STOREREG:
2243 		{
2244 		    int	reg = iptr->isn_arg.number;
2245 
2246 		    --ectx->ec_stack.ga_len;
2247 		    tv = STACK_TV_BOT(0);
2248 		    write_reg_contents(reg, tv_get_string(tv), -1, FALSE);
2249 		    clear_tv(tv);
2250 		}
2251 		break;
2252 
2253 	    // store v: variable
2254 	    case ISN_STOREV:
2255 		--ectx->ec_stack.ga_len;
2256 		if (set_vim_var_tv(iptr->isn_arg.number, STACK_TV_BOT(0))
2257 								       == FAIL)
2258 		    // should not happen, type is checked when compiling
2259 		    goto on_error;
2260 		break;
2261 
2262 	    // store g:/b:/w:/t: variable
2263 	    case ISN_STOREG:
2264 	    case ISN_STOREB:
2265 	    case ISN_STOREW:
2266 	    case ISN_STORET:
2267 		{
2268 		    dictitem_T	*di;
2269 		    hashtab_T	*ht;
2270 		    char_u	*name = iptr->isn_arg.string + 2;
2271 
2272 		    switch (iptr->isn_type)
2273 		    {
2274 			case ISN_STOREG:
2275 			    ht = get_globvar_ht();
2276 			    break;
2277 			case ISN_STOREB:
2278 			    ht = &curbuf->b_vars->dv_hashtab;
2279 			    break;
2280 			case ISN_STOREW:
2281 			    ht = &curwin->w_vars->dv_hashtab;
2282 			    break;
2283 			case ISN_STORET:
2284 			    ht = &curtab->tp_vars->dv_hashtab;
2285 			    break;
2286 			default:  // Cannot reach here
2287 			    goto theend;
2288 		    }
2289 
2290 		    --ectx->ec_stack.ga_len;
2291 		    di = find_var_in_ht(ht, 0, name, TRUE);
2292 		    if (di == NULL)
2293 			store_var(iptr->isn_arg.string, STACK_TV_BOT(0));
2294 		    else
2295 		    {
2296 			SOURCING_LNUM = iptr->isn_lnum;
2297 			if (var_check_permission(di, name) == FAIL)
2298 			    goto on_error;
2299 			clear_tv(&di->di_tv);
2300 			di->di_tv = *STACK_TV_BOT(0);
2301 		    }
2302 		}
2303 		break;
2304 
2305 	    // store an autoload variable
2306 	    case ISN_STOREAUTO:
2307 		SOURCING_LNUM = iptr->isn_lnum;
2308 		set_var(iptr->isn_arg.string, STACK_TV_BOT(-1), TRUE);
2309 		clear_tv(STACK_TV_BOT(-1));
2310 		--ectx->ec_stack.ga_len;
2311 		break;
2312 
2313 	    // store number in local variable
2314 	    case ISN_STORENR:
2315 		tv = STACK_TV_VAR(iptr->isn_arg.storenr.stnr_idx);
2316 		clear_tv(tv);
2317 		tv->v_type = VAR_NUMBER;
2318 		tv->vval.v_number = iptr->isn_arg.storenr.stnr_val;
2319 		break;
2320 
2321 	    // store value in list or dict variable
2322 	    case ISN_STOREINDEX:
2323 		{
2324 		    vartype_T	dest_type = iptr->isn_arg.vartype;
2325 		    typval_T	*tv_idx = STACK_TV_BOT(-2);
2326 		    typval_T	*tv_dest = STACK_TV_BOT(-1);
2327 		    int		status = OK;
2328 
2329 		    // Stack contains:
2330 		    // -3 value to be stored
2331 		    // -2 index
2332 		    // -1 dict or list
2333 		    tv = STACK_TV_BOT(-3);
2334 		    SOURCING_LNUM = iptr->isn_lnum;
2335 		    if (dest_type == VAR_ANY)
2336 		    {
2337 			dest_type = tv_dest->v_type;
2338 			if (dest_type == VAR_DICT)
2339 			    status = do_2string(tv_idx, TRUE, FALSE);
2340 			else if (dest_type == VAR_LIST
2341 					       && tv_idx->v_type != VAR_NUMBER)
2342 			{
2343 			    emsg(_(e_number_exp));
2344 			    status = FAIL;
2345 			}
2346 		    }
2347 		    else if (dest_type != tv_dest->v_type)
2348 		    {
2349 			// just in case, should be OK
2350 			semsg(_(e_expected_str_but_got_str),
2351 				    vartype_name(dest_type),
2352 				    vartype_name(tv_dest->v_type));
2353 			status = FAIL;
2354 		    }
2355 
2356 		    if (status == OK && dest_type == VAR_LIST)
2357 		    {
2358 			long	    lidx = (long)tv_idx->vval.v_number;
2359 			list_T	    *list = tv_dest->vval.v_list;
2360 
2361 			if (list == NULL)
2362 			{
2363 			    emsg(_(e_list_not_set));
2364 			    goto on_error;
2365 			}
2366 			if (lidx < 0 && list->lv_len + lidx >= 0)
2367 			    // negative index is relative to the end
2368 			    lidx = list->lv_len + lidx;
2369 			if (lidx < 0 || lidx > list->lv_len)
2370 			{
2371 			    semsg(_(e_listidx), lidx);
2372 			    goto on_error;
2373 			}
2374 			if (lidx < list->lv_len)
2375 			{
2376 			    listitem_T *li = list_find(list, lidx);
2377 
2378 			    if (error_if_locked(li->li_tv.v_lock,
2379 						    e_cannot_change_list_item))
2380 				goto on_error;
2381 			    // overwrite existing list item
2382 			    clear_tv(&li->li_tv);
2383 			    li->li_tv = *tv;
2384 			}
2385 			else
2386 			{
2387 			    if (error_if_locked(list->lv_lock,
2388 							 e_cannot_change_list))
2389 				goto on_error;
2390 			    // append to list, only fails when out of memory
2391 			    if (list_append_tv(list, tv) == FAIL)
2392 				goto theend;
2393 			    clear_tv(tv);
2394 			}
2395 		    }
2396 		    else if (status == OK && dest_type == VAR_DICT)
2397 		    {
2398 			char_u		*key = tv_idx->vval.v_string;
2399 			dict_T		*dict = tv_dest->vval.v_dict;
2400 			dictitem_T	*di;
2401 
2402 			SOURCING_LNUM = iptr->isn_lnum;
2403 			if (dict == NULL)
2404 			{
2405 			    emsg(_(e_dictionary_not_set));
2406 			    goto on_error;
2407 			}
2408 			if (key == NULL)
2409 			    key = (char_u *)"";
2410 			di = dict_find(dict, key, -1);
2411 			if (di != NULL)
2412 			{
2413 			    if (error_if_locked(di->di_tv.v_lock,
2414 						    e_cannot_change_dict_item))
2415 				goto on_error;
2416 			    // overwrite existing value
2417 			    clear_tv(&di->di_tv);
2418 			    di->di_tv = *tv;
2419 			}
2420 			else
2421 			{
2422 			    if (error_if_locked(dict->dv_lock,
2423 							 e_cannot_change_dict))
2424 				goto on_error;
2425 			    // add to dict, only fails when out of memory
2426 			    if (dict_add_tv(dict, (char *)key, tv) == FAIL)
2427 				goto theend;
2428 			    clear_tv(tv);
2429 			}
2430 		    }
2431 		    else if (status == OK && dest_type == VAR_BLOB)
2432 		    {
2433 			long	    lidx = (long)tv_idx->vval.v_number;
2434 			blob_T	    *blob = tv_dest->vval.v_blob;
2435 			varnumber_T nr;
2436 			int	    error = FALSE;
2437 			int	    len;
2438 
2439 			if (blob == NULL)
2440 			{
2441 			    emsg(_(e_blob_not_set));
2442 			    goto on_error;
2443 			}
2444 			len = blob_len(blob);
2445 			if (lidx < 0 && len + lidx >= 0)
2446 			    // negative index is relative to the end
2447 			    lidx = len + lidx;
2448 
2449 			// Can add one byte at the end.
2450 			if (lidx < 0 || lidx > len)
2451 			{
2452 			    semsg(_(e_blobidx), lidx);
2453 			    goto on_error;
2454 			}
2455 			if (value_check_lock(blob->bv_lock,
2456 						      (char_u *)"blob", FALSE))
2457 			    goto on_error;
2458 			nr = tv_get_number_chk(tv, &error);
2459 			if (error)
2460 			    goto on_error;
2461 			blob_set_append(blob, lidx, nr);
2462 		    }
2463 		    else
2464 		    {
2465 			status = FAIL;
2466 			semsg(_(e_cannot_index_str), vartype_name(dest_type));
2467 		    }
2468 
2469 		    clear_tv(tv_idx);
2470 		    clear_tv(tv_dest);
2471 		    ectx->ec_stack.ga_len -= 3;
2472 		    if (status == FAIL)
2473 		    {
2474 			clear_tv(tv);
2475 			goto on_error;
2476 		    }
2477 		}
2478 		break;
2479 
2480 	    // store value in blob range
2481 	    case ISN_STORERANGE:
2482 		{
2483 		    typval_T	*tv_idx1 = STACK_TV_BOT(-3);
2484 		    typval_T	*tv_idx2 = STACK_TV_BOT(-2);
2485 		    typval_T	*tv_dest = STACK_TV_BOT(-1);
2486 		    int		status = OK;
2487 
2488 		    // Stack contains:
2489 		    // -4 value to be stored
2490 		    // -3 first index or "none"
2491 		    // -2 second index or "none"
2492 		    // -1 destination blob
2493 		    tv = STACK_TV_BOT(-4);
2494 		    if (tv_dest->v_type != VAR_BLOB)
2495 		    {
2496 			status = FAIL;
2497 			emsg(_(e_blob_required));
2498 		    }
2499 		    else
2500 		    {
2501 			varnumber_T n1;
2502 			varnumber_T n2;
2503 			int	    error = FALSE;
2504 
2505 			n1 = tv_get_number_chk(tv_idx1, &error);
2506 			if (error)
2507 			    status = FAIL;
2508 			else
2509 			{
2510 			    if (tv_idx2->v_type == VAR_SPECIAL
2511 					&& tv_idx2->vval.v_number == VVAL_NONE)
2512 				n2 = blob_len(tv_dest->vval.v_blob) - 1;
2513 			    else
2514 				n2 = tv_get_number_chk(tv_idx2, &error);
2515 			    if (error)
2516 				status = FAIL;
2517 			    else
2518 			    {
2519 				long	bloblen = blob_len(tv_dest->vval.v_blob);
2520 
2521 				if (check_blob_index(bloblen,
2522 							     n1, FALSE) == FAIL
2523 					|| check_blob_range(bloblen,
2524 							n1, n2, FALSE) == FAIL)
2525 				    status = FAIL;
2526 				else
2527 				    status = blob_set_range(
2528 					     tv_dest->vval.v_blob, n1, n2, tv);
2529 			    }
2530 			}
2531 		    }
2532 
2533 		    clear_tv(tv_idx1);
2534 		    clear_tv(tv_idx2);
2535 		    clear_tv(tv_dest);
2536 		    ectx->ec_stack.ga_len -= 4;
2537 		    clear_tv(tv);
2538 
2539 		    if (status == FAIL)
2540 			goto on_error;
2541 		}
2542 		break;
2543 
2544 	    // load or store variable or argument from outer scope
2545 	    case ISN_LOADOUTER:
2546 	    case ISN_STOREOUTER:
2547 		{
2548 		    int		depth = iptr->isn_arg.outer.outer_depth;
2549 		    outer_T	*outer = ectx->ec_outer_ref == NULL ? NULL
2550 						: ectx->ec_outer_ref->or_outer;
2551 
2552 		    while (depth > 1 && outer != NULL)
2553 		    {
2554 			outer = outer->out_up;
2555 			--depth;
2556 		    }
2557 		    if (outer == NULL)
2558 		    {
2559 			SOURCING_LNUM = iptr->isn_lnum;
2560 			iemsg("LOADOUTER depth more than scope levels");
2561 			goto theend;
2562 		    }
2563 		    tv = ((typval_T *)outer->out_stack->ga_data)
2564 				    + outer->out_frame_idx + STACK_FRAME_SIZE
2565 				    + iptr->isn_arg.outer.outer_idx;
2566 		    if (iptr->isn_type == ISN_LOADOUTER)
2567 		    {
2568 			if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2569 			    goto theend;
2570 			copy_tv(tv, STACK_TV_BOT(0));
2571 			++ectx->ec_stack.ga_len;
2572 		    }
2573 		    else
2574 		    {
2575 			--ectx->ec_stack.ga_len;
2576 			clear_tv(tv);
2577 			*tv = *STACK_TV_BOT(0);
2578 		    }
2579 		}
2580 		break;
2581 
2582 	    // unlet item in list or dict variable
2583 	    case ISN_UNLETINDEX:
2584 		{
2585 		    typval_T	*tv_idx = STACK_TV_BOT(-2);
2586 		    typval_T	*tv_dest = STACK_TV_BOT(-1);
2587 		    int		status = OK;
2588 
2589 		    // Stack contains:
2590 		    // -2 index
2591 		    // -1 dict or list
2592 		    if (tv_dest->v_type == VAR_DICT)
2593 		    {
2594 			// unlet a dict item, index must be a string
2595 			if (tv_idx->v_type != VAR_STRING)
2596 			{
2597 			    SOURCING_LNUM = iptr->isn_lnum;
2598 			    semsg(_(e_expected_str_but_got_str),
2599 					vartype_name(VAR_STRING),
2600 					vartype_name(tv_idx->v_type));
2601 			    status = FAIL;
2602 			}
2603 			else
2604 			{
2605 			    dict_T	*d = tv_dest->vval.v_dict;
2606 			    char_u	*key = tv_idx->vval.v_string;
2607 			    dictitem_T  *di = NULL;
2608 
2609 			    if (key == NULL)
2610 				key = (char_u *)"";
2611 			    if (d != NULL)
2612 				di = dict_find(d, key, (int)STRLEN(key));
2613 			    if (di == NULL)
2614 			    {
2615 				// NULL dict is equivalent to empty dict
2616 				SOURCING_LNUM = iptr->isn_lnum;
2617 				semsg(_(e_dictkey), key);
2618 				status = FAIL;
2619 			    }
2620 			    else
2621 			    {
2622 				// TODO: check for dict or item locked
2623 				dictitem_remove(d, di);
2624 			    }
2625 			}
2626 		    }
2627 		    else if (tv_dest->v_type == VAR_LIST)
2628 		    {
2629 			// unlet a List item, index must be a number
2630 			SOURCING_LNUM = iptr->isn_lnum;
2631 			if (check_for_number(tv_idx) == FAIL)
2632 			{
2633 			    status = FAIL;
2634 			}
2635 			else
2636 			{
2637 			    list_T	*l = tv_dest->vval.v_list;
2638 			    long	n = (long)tv_idx->vval.v_number;
2639 			    listitem_T	*li = NULL;
2640 
2641 			    li = list_find(l, n);
2642 			    if (li == NULL)
2643 			    {
2644 				SOURCING_LNUM = iptr->isn_lnum;
2645 				semsg(_(e_listidx), n);
2646 				status = FAIL;
2647 			    }
2648 			    else
2649 				// TODO: check for list or item locked
2650 				listitem_remove(l, li);
2651 			}
2652 		    }
2653 		    else
2654 		    {
2655 			status = FAIL;
2656 			semsg(_(e_cannot_index_str),
2657 						vartype_name(tv_dest->v_type));
2658 		    }
2659 
2660 		    clear_tv(tv_idx);
2661 		    clear_tv(tv_dest);
2662 		    ectx->ec_stack.ga_len -= 2;
2663 		    if (status == FAIL)
2664 			goto on_error;
2665 		}
2666 		break;
2667 
2668 	    // unlet range of items in list variable
2669 	    case ISN_UNLETRANGE:
2670 		{
2671 		    // Stack contains:
2672 		    // -3 index1
2673 		    // -2 index2
2674 		    // -1 dict or list
2675 		    typval_T	*tv_idx1 = STACK_TV_BOT(-3);
2676 		    typval_T	*tv_idx2 = STACK_TV_BOT(-2);
2677 		    typval_T	*tv_dest = STACK_TV_BOT(-1);
2678 		    int		status = OK;
2679 
2680 		    if (tv_dest->v_type == VAR_LIST)
2681 		    {
2682 			// indexes must be a number
2683 			SOURCING_LNUM = iptr->isn_lnum;
2684 			if (check_for_number(tv_idx1) == FAIL
2685 				|| check_for_number(tv_idx2) == FAIL)
2686 			{
2687 			    status = FAIL;
2688 			}
2689 			else
2690 			{
2691 			    list_T	*l = tv_dest->vval.v_list;
2692 			    long	n1 = (long)tv_idx1->vval.v_number;
2693 			    long	n2 = (long)tv_idx2->vval.v_number;
2694 			    listitem_T	*li;
2695 
2696 			    li = list_find_index(l, &n1);
2697 			    if (li == NULL
2698 				     || list_unlet_range(l, li, NULL, n1,
2699 							    TRUE, n2) == FAIL)
2700 				status = FAIL;
2701 			}
2702 		    }
2703 		    else
2704 		    {
2705 			status = FAIL;
2706 			SOURCING_LNUM = iptr->isn_lnum;
2707 			semsg(_(e_cannot_index_str),
2708 						vartype_name(tv_dest->v_type));
2709 		    }
2710 
2711 		    clear_tv(tv_idx1);
2712 		    clear_tv(tv_idx2);
2713 		    clear_tv(tv_dest);
2714 		    ectx->ec_stack.ga_len -= 3;
2715 		    if (status == FAIL)
2716 			goto on_error;
2717 		}
2718 		break;
2719 
2720 	    // push constant
2721 	    case ISN_PUSHNR:
2722 	    case ISN_PUSHBOOL:
2723 	    case ISN_PUSHSPEC:
2724 	    case ISN_PUSHF:
2725 	    case ISN_PUSHS:
2726 	    case ISN_PUSHBLOB:
2727 	    case ISN_PUSHFUNC:
2728 	    case ISN_PUSHCHANNEL:
2729 	    case ISN_PUSHJOB:
2730 		if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2731 		    goto theend;
2732 		tv = STACK_TV_BOT(0);
2733 		tv->v_lock = 0;
2734 		++ectx->ec_stack.ga_len;
2735 		switch (iptr->isn_type)
2736 		{
2737 		    case ISN_PUSHNR:
2738 			tv->v_type = VAR_NUMBER;
2739 			tv->vval.v_number = iptr->isn_arg.number;
2740 			break;
2741 		    case ISN_PUSHBOOL:
2742 			tv->v_type = VAR_BOOL;
2743 			tv->vval.v_number = iptr->isn_arg.number;
2744 			break;
2745 		    case ISN_PUSHSPEC:
2746 			tv->v_type = VAR_SPECIAL;
2747 			tv->vval.v_number = iptr->isn_arg.number;
2748 			break;
2749 #ifdef FEAT_FLOAT
2750 		    case ISN_PUSHF:
2751 			tv->v_type = VAR_FLOAT;
2752 			tv->vval.v_float = iptr->isn_arg.fnumber;
2753 			break;
2754 #endif
2755 		    case ISN_PUSHBLOB:
2756 			blob_copy(iptr->isn_arg.blob, tv);
2757 			break;
2758 		    case ISN_PUSHFUNC:
2759 			tv->v_type = VAR_FUNC;
2760 			if (iptr->isn_arg.string == NULL)
2761 			    tv->vval.v_string = NULL;
2762 			else
2763 			    tv->vval.v_string =
2764 					     vim_strsave(iptr->isn_arg.string);
2765 			break;
2766 		    case ISN_PUSHCHANNEL:
2767 #ifdef FEAT_JOB_CHANNEL
2768 			tv->v_type = VAR_CHANNEL;
2769 			tv->vval.v_channel = iptr->isn_arg.channel;
2770 			if (tv->vval.v_channel != NULL)
2771 			    ++tv->vval.v_channel->ch_refcount;
2772 #endif
2773 			break;
2774 		    case ISN_PUSHJOB:
2775 #ifdef FEAT_JOB_CHANNEL
2776 			tv->v_type = VAR_JOB;
2777 			tv->vval.v_job = iptr->isn_arg.job;
2778 			if (tv->vval.v_job != NULL)
2779 			    ++tv->vval.v_job->jv_refcount;
2780 #endif
2781 			break;
2782 		    default:
2783 			tv->v_type = VAR_STRING;
2784 			tv->vval.v_string = vim_strsave(
2785 				iptr->isn_arg.string == NULL
2786 					? (char_u *)"" : iptr->isn_arg.string);
2787 		}
2788 		break;
2789 
2790 	    case ISN_UNLET:
2791 		if (do_unlet(iptr->isn_arg.unlet.ul_name,
2792 				       iptr->isn_arg.unlet.ul_forceit) == FAIL)
2793 		    goto on_error;
2794 		break;
2795 	    case ISN_UNLETENV:
2796 		vim_unsetenv(iptr->isn_arg.unlet.ul_name);
2797 		break;
2798 
2799 	    case ISN_LOCKCONST:
2800 		item_lock(STACK_TV_BOT(-1), 100, TRUE, TRUE);
2801 		break;
2802 
2803 	    // create a list from items on the stack; uses a single allocation
2804 	    // for the list header and the items
2805 	    case ISN_NEWLIST:
2806 		if (exe_newlist(iptr->isn_arg.number, ectx) == FAIL)
2807 		    goto theend;
2808 		break;
2809 
2810 	    // create a dict from items on the stack
2811 	    case ISN_NEWDICT:
2812 		{
2813 		    int		count = iptr->isn_arg.number;
2814 		    dict_T	*dict = dict_alloc();
2815 		    dictitem_T	*item;
2816 		    char_u	*key;
2817 		    int		idx;
2818 
2819 		    if (dict == NULL)
2820 			goto theend;
2821 		    for (idx = 0; idx < count; ++idx)
2822 		    {
2823 			// have already checked key type is VAR_STRING
2824 			tv = STACK_TV_BOT(2 * (idx - count));
2825 			// check key is unique
2826 			key = tv->vval.v_string == NULL
2827 					    ? (char_u *)"" : tv->vval.v_string;
2828 			item = dict_find(dict, key, -1);
2829 			if (item != NULL)
2830 			{
2831 			    SOURCING_LNUM = iptr->isn_lnum;
2832 			    semsg(_(e_duplicate_key), key);
2833 			    dict_unref(dict);
2834 			    goto on_error;
2835 			}
2836 			item = dictitem_alloc(key);
2837 			clear_tv(tv);
2838 			if (item == NULL)
2839 			{
2840 			    dict_unref(dict);
2841 			    goto theend;
2842 			}
2843 			item->di_tv = *STACK_TV_BOT(2 * (idx - count) + 1);
2844 			item->di_tv.v_lock = 0;
2845 			if (dict_add(dict, item) == FAIL)
2846 			{
2847 			    // can this ever happen?
2848 			    dict_unref(dict);
2849 			    goto theend;
2850 			}
2851 		    }
2852 
2853 		    if (count > 0)
2854 			ectx->ec_stack.ga_len -= 2 * count - 1;
2855 		    else if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2856 			goto theend;
2857 		    else
2858 			++ectx->ec_stack.ga_len;
2859 		    tv = STACK_TV_BOT(-1);
2860 		    tv->v_type = VAR_DICT;
2861 		    tv->v_lock = 0;
2862 		    tv->vval.v_dict = dict;
2863 		    ++dict->dv_refcount;
2864 		}
2865 		break;
2866 
2867 	    // call a :def function
2868 	    case ISN_DCALL:
2869 		SOURCING_LNUM = iptr->isn_lnum;
2870 		if (call_dfunc(iptr->isn_arg.dfunc.cdf_idx,
2871 				NULL,
2872 				iptr->isn_arg.dfunc.cdf_argcount,
2873 				ectx) == FAIL)
2874 		    goto on_error;
2875 		break;
2876 
2877 	    // call a builtin function
2878 	    case ISN_BCALL:
2879 		SOURCING_LNUM = iptr->isn_lnum;
2880 		if (call_bfunc(iptr->isn_arg.bfunc.cbf_idx,
2881 			      iptr->isn_arg.bfunc.cbf_argcount,
2882 			      ectx) == FAIL)
2883 		    goto on_error;
2884 		break;
2885 
2886 	    // call a funcref or partial
2887 	    case ISN_PCALL:
2888 		{
2889 		    cpfunc_T	*pfunc = &iptr->isn_arg.pfunc;
2890 		    int		r;
2891 		    typval_T	partial_tv;
2892 
2893 		    SOURCING_LNUM = iptr->isn_lnum;
2894 		    if (pfunc->cpf_top)
2895 		    {
2896 			// funcref is above the arguments
2897 			tv = STACK_TV_BOT(-pfunc->cpf_argcount - 1);
2898 		    }
2899 		    else
2900 		    {
2901 			// Get the funcref from the stack.
2902 			--ectx->ec_stack.ga_len;
2903 			partial_tv = *STACK_TV_BOT(0);
2904 			tv = &partial_tv;
2905 		    }
2906 		    r = call_partial(tv, pfunc->cpf_argcount, ectx);
2907 		    if (tv == &partial_tv)
2908 			clear_tv(&partial_tv);
2909 		    if (r == FAIL)
2910 			goto on_error;
2911 		}
2912 		break;
2913 
2914 	    case ISN_PCALL_END:
2915 		// PCALL finished, arguments have been consumed and replaced by
2916 		// the return value.  Now clear the funcref from the stack,
2917 		// and move the return value in its place.
2918 		--ectx->ec_stack.ga_len;
2919 		clear_tv(STACK_TV_BOT(-1));
2920 		*STACK_TV_BOT(-1) = *STACK_TV_BOT(0);
2921 		break;
2922 
2923 	    // call a user defined function or funcref/partial
2924 	    case ISN_UCALL:
2925 		{
2926 		    cufunc_T	*cufunc = &iptr->isn_arg.ufunc;
2927 
2928 		    SOURCING_LNUM = iptr->isn_lnum;
2929 		    if (call_eval_func(cufunc->cuf_name, cufunc->cuf_argcount,
2930 							   ectx, iptr) == FAIL)
2931 			goto on_error;
2932 		}
2933 		break;
2934 
2935 	    // return from a :def function call without a value
2936 	    case ISN_RETURN_VOID:
2937 		if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2938 		    goto theend;
2939 		tv = STACK_TV_BOT(0);
2940 		++ectx->ec_stack.ga_len;
2941 		tv->v_type = VAR_VOID;
2942 		tv->vval.v_number = 0;
2943 		tv->v_lock = 0;
2944 		// FALLTHROUGH
2945 
2946 	    // return from a :def function call with what is on the stack
2947 	    case ISN_RETURN:
2948 		{
2949 		    garray_T	*trystack = &ectx->ec_trystack;
2950 		    trycmd_T    *trycmd = NULL;
2951 
2952 		    if (trystack->ga_len > 0)
2953 			trycmd = ((trycmd_T *)trystack->ga_data)
2954 							+ trystack->ga_len - 1;
2955 		    if (trycmd != NULL
2956 				 && trycmd->tcd_frame_idx == ectx->ec_frame_idx)
2957 		    {
2958 			// jump to ":finally" or ":endtry"
2959 			if (trycmd->tcd_finally_idx != 0)
2960 			    ectx->ec_iidx = trycmd->tcd_finally_idx;
2961 			else
2962 			    ectx->ec_iidx = trycmd->tcd_endtry_idx;
2963 			trycmd->tcd_return = TRUE;
2964 		    }
2965 		    else
2966 			goto func_return;
2967 		}
2968 		break;
2969 
2970 	    // push a partial, a reference to a compiled function
2971 	    case ISN_FUNCREF:
2972 		{
2973 		    partial_T   *pt = ALLOC_CLEAR_ONE(partial_T);
2974 		    dfunc_T	*pt_dfunc = ((dfunc_T *)def_functions.ga_data)
2975 					       + iptr->isn_arg.funcref.fr_func;
2976 
2977 		    if (pt == NULL)
2978 			goto theend;
2979 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
2980 		    {
2981 			vim_free(pt);
2982 			goto theend;
2983 		    }
2984 		    if (fill_partial_and_closure(pt, pt_dfunc->df_ufunc,
2985 								 ectx) == FAIL)
2986 			goto theend;
2987 		    tv = STACK_TV_BOT(0);
2988 		    ++ectx->ec_stack.ga_len;
2989 		    tv->vval.v_partial = pt;
2990 		    tv->v_type = VAR_PARTIAL;
2991 		    tv->v_lock = 0;
2992 		}
2993 		break;
2994 
2995 	    // Create a global function from a lambda.
2996 	    case ISN_NEWFUNC:
2997 		{
2998 		    newfunc_T	*newfunc = &iptr->isn_arg.newfunc;
2999 
3000 		    if (copy_func(newfunc->nf_lambda, newfunc->nf_global,
3001 								 ectx) == FAIL)
3002 			goto theend;
3003 		}
3004 		break;
3005 
3006 	    // List functions
3007 	    case ISN_DEF:
3008 		if (iptr->isn_arg.string == NULL)
3009 		    list_functions(NULL);
3010 		else
3011 		{
3012 		    exarg_T ea;
3013 
3014 		    CLEAR_FIELD(ea);
3015 		    ea.cmd = ea.arg = iptr->isn_arg.string;
3016 		    define_function(&ea, NULL);
3017 		}
3018 		break;
3019 
3020 	    // jump if a condition is met
3021 	    case ISN_JUMP:
3022 		{
3023 		    jumpwhen_T	when = iptr->isn_arg.jump.jump_when;
3024 		    int		error = FALSE;
3025 		    int		jump = TRUE;
3026 
3027 		    if (when != JUMP_ALWAYS)
3028 		    {
3029 			tv = STACK_TV_BOT(-1);
3030 			if (when == JUMP_IF_COND_FALSE
3031 				|| when == JUMP_IF_FALSE
3032 				|| when == JUMP_IF_COND_TRUE)
3033 			{
3034 			    SOURCING_LNUM = iptr->isn_lnum;
3035 			    jump = tv_get_bool_chk(tv, &error);
3036 			    if (error)
3037 				goto on_error;
3038 			}
3039 			else
3040 			    jump = tv2bool(tv);
3041 			if (when == JUMP_IF_FALSE
3042 					     || when == JUMP_AND_KEEP_IF_FALSE
3043 					     || when == JUMP_IF_COND_FALSE)
3044 			    jump = !jump;
3045 			if (when == JUMP_IF_FALSE || !jump)
3046 			{
3047 			    // drop the value from the stack
3048 			    clear_tv(tv);
3049 			    --ectx->ec_stack.ga_len;
3050 			}
3051 		    }
3052 		    if (jump)
3053 			ectx->ec_iidx = iptr->isn_arg.jump.jump_where;
3054 		}
3055 		break;
3056 
3057 	    // Jump if an argument with a default value was already set and not
3058 	    // v:none.
3059 	    case ISN_JUMP_IF_ARG_SET:
3060 		tv = STACK_TV_VAR(iptr->isn_arg.jumparg.jump_arg_off);
3061 		if (tv->v_type != VAR_UNKNOWN
3062 			&& !(tv->v_type == VAR_SPECIAL
3063 					    && tv->vval.v_number == VVAL_NONE))
3064 		    ectx->ec_iidx = iptr->isn_arg.jumparg.jump_where;
3065 		break;
3066 
3067 	    // top of a for loop
3068 	    case ISN_FOR:
3069 		{
3070 		    typval_T	*ltv = STACK_TV_BOT(-1);
3071 		    typval_T	*idxtv =
3072 				   STACK_TV_VAR(iptr->isn_arg.forloop.for_idx);
3073 
3074 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
3075 			goto theend;
3076 		    if (ltv->v_type == VAR_LIST)
3077 		    {
3078 			list_T *list = ltv->vval.v_list;
3079 
3080 			// push the next item from the list
3081 			++idxtv->vval.v_number;
3082 			if (list == NULL
3083 				       || idxtv->vval.v_number >= list->lv_len)
3084 			{
3085 			    // past the end of the list, jump to "endfor"
3086 			    ectx->ec_iidx = iptr->isn_arg.forloop.for_end;
3087 			    may_restore_cmdmod(&ectx->ec_funclocal);
3088 			}
3089 			else if (list->lv_first == &range_list_item)
3090 			{
3091 			    // non-materialized range() list
3092 			    tv = STACK_TV_BOT(0);
3093 			    tv->v_type = VAR_NUMBER;
3094 			    tv->v_lock = 0;
3095 			    tv->vval.v_number = list_find_nr(
3096 					     list, idxtv->vval.v_number, NULL);
3097 			    ++ectx->ec_stack.ga_len;
3098 			}
3099 			else
3100 			{
3101 			    listitem_T *li = list_find(list,
3102 							 idxtv->vval.v_number);
3103 
3104 			    copy_tv(&li->li_tv, STACK_TV_BOT(0));
3105 			    ++ectx->ec_stack.ga_len;
3106 			}
3107 		    }
3108 		    else if (ltv->v_type == VAR_STRING)
3109 		    {
3110 			char_u	*str = ltv->vval.v_string;
3111 
3112 			// The index is for the last byte of the previous
3113 			// character.
3114 			++idxtv->vval.v_number;
3115 			if (str == NULL || str[idxtv->vval.v_number] == NUL)
3116 			{
3117 			    // past the end of the string, jump to "endfor"
3118 			    ectx->ec_iidx = iptr->isn_arg.forloop.for_end;
3119 			    may_restore_cmdmod(&ectx->ec_funclocal);
3120 			}
3121 			else
3122 			{
3123 			    int	clen = mb_ptr2len(str + idxtv->vval.v_number);
3124 
3125 			    // Push the next character from the string.
3126 			    tv = STACK_TV_BOT(0);
3127 			    tv->v_type = VAR_STRING;
3128 			    tv->vval.v_string = vim_strnsave(
3129 					     str + idxtv->vval.v_number, clen);
3130 			    ++ectx->ec_stack.ga_len;
3131 			    idxtv->vval.v_number += clen - 1;
3132 			}
3133 		    }
3134 		    else if (ltv->v_type == VAR_BLOB)
3135 		    {
3136 			blob_T	*blob = ltv->vval.v_blob;
3137 
3138 			// When we get here the first time make a copy of the
3139 			// blob, so that the iteration still works when it is
3140 			// changed.
3141 			if (idxtv->vval.v_number == -1 && blob != NULL)
3142 			{
3143 			    blob_copy(blob, ltv);
3144 			    blob_unref(blob);
3145 			    blob = ltv->vval.v_blob;
3146 			}
3147 
3148 			// The index is for the previous byte.
3149 			++idxtv->vval.v_number;
3150 			if (blob == NULL
3151 				     || idxtv->vval.v_number >= blob_len(blob))
3152 			{
3153 			    // past the end of the blob, jump to "endfor"
3154 			    ectx->ec_iidx = iptr->isn_arg.forloop.for_end;
3155 			    may_restore_cmdmod(&ectx->ec_funclocal);
3156 			}
3157 			else
3158 			{
3159 			    // Push the next byte from the blob.
3160 			    tv = STACK_TV_BOT(0);
3161 			    tv->v_type = VAR_NUMBER;
3162 			    tv->vval.v_number = blob_get(blob,
3163 							 idxtv->vval.v_number);
3164 			    ++ectx->ec_stack.ga_len;
3165 			}
3166 		    }
3167 		    else
3168 		    {
3169 			semsg(_(e_for_loop_on_str_not_supported),
3170 						    vartype_name(ltv->v_type));
3171 			goto theend;
3172 		    }
3173 		}
3174 		break;
3175 
3176 	    // start of ":try" block
3177 	    case ISN_TRY:
3178 		{
3179 		    trycmd_T    *trycmd = NULL;
3180 
3181 		    if (GA_GROW(&ectx->ec_trystack, 1) == FAIL)
3182 			goto theend;
3183 		    trycmd = ((trycmd_T *)ectx->ec_trystack.ga_data)
3184 						     + ectx->ec_trystack.ga_len;
3185 		    ++ectx->ec_trystack.ga_len;
3186 		    ++trylevel;
3187 		    CLEAR_POINTER(trycmd);
3188 		    trycmd->tcd_frame_idx = ectx->ec_frame_idx;
3189 		    trycmd->tcd_stack_len = ectx->ec_stack.ga_len;
3190 		    trycmd->tcd_catch_idx =
3191 					  iptr->isn_arg.try.try_ref->try_catch;
3192 		    trycmd->tcd_finally_idx =
3193 					iptr->isn_arg.try.try_ref->try_finally;
3194 		    trycmd->tcd_endtry_idx =
3195 					 iptr->isn_arg.try.try_ref->try_endtry;
3196 		}
3197 		break;
3198 
3199 	    case ISN_PUSHEXC:
3200 		if (current_exception == NULL)
3201 		{
3202 		    SOURCING_LNUM = iptr->isn_lnum;
3203 		    iemsg("Evaluating catch while current_exception is NULL");
3204 		    goto theend;
3205 		}
3206 		if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
3207 		    goto theend;
3208 		tv = STACK_TV_BOT(0);
3209 		++ectx->ec_stack.ga_len;
3210 		tv->v_type = VAR_STRING;
3211 		tv->v_lock = 0;
3212 		tv->vval.v_string = vim_strsave(
3213 					   (char_u *)current_exception->value);
3214 		break;
3215 
3216 	    case ISN_CATCH:
3217 		{
3218 		    garray_T	*trystack = &ectx->ec_trystack;
3219 
3220 		    may_restore_cmdmod(&ectx->ec_funclocal);
3221 		    if (trystack->ga_len > 0)
3222 		    {
3223 			trycmd_T    *trycmd = ((trycmd_T *)trystack->ga_data)
3224 							+ trystack->ga_len - 1;
3225 			trycmd->tcd_caught = TRUE;
3226 			trycmd->tcd_did_throw = FALSE;
3227 		    }
3228 		    did_emsg = got_int = did_throw = FALSE;
3229 		    force_abort = need_rethrow = FALSE;
3230 		    catch_exception(current_exception);
3231 		}
3232 		break;
3233 
3234 	    case ISN_TRYCONT:
3235 		{
3236 		    garray_T	*trystack = &ectx->ec_trystack;
3237 		    trycont_T	*trycont = &iptr->isn_arg.trycont;
3238 		    int		i;
3239 		    trycmd_T    *trycmd;
3240 		    int		iidx = trycont->tct_where;
3241 
3242 		    if (trystack->ga_len < trycont->tct_levels)
3243 		    {
3244 			siemsg("TRYCONT: expected %d levels, found %d",
3245 					trycont->tct_levels, trystack->ga_len);
3246 			goto theend;
3247 		    }
3248 		    // Make :endtry jump to any outer try block and the last
3249 		    // :endtry inside the loop to the loop start.
3250 		    for (i = trycont->tct_levels; i > 0; --i)
3251 		    {
3252 			trycmd = ((trycmd_T *)trystack->ga_data)
3253 							+ trystack->ga_len - i;
3254 			// Add one to tcd_cont to be able to jump to
3255 			// instruction with index zero.
3256 			trycmd->tcd_cont = iidx + 1;
3257 			iidx = trycmd->tcd_finally_idx == 0
3258 			    ? trycmd->tcd_endtry_idx : trycmd->tcd_finally_idx;
3259 		    }
3260 		    // jump to :finally or :endtry of current try statement
3261 		    ectx->ec_iidx = iidx;
3262 		}
3263 		break;
3264 
3265 	    case ISN_FINALLY:
3266 		{
3267 		    garray_T	*trystack = &ectx->ec_trystack;
3268 		    trycmd_T    *trycmd = ((trycmd_T *)trystack->ga_data)
3269 							+ trystack->ga_len - 1;
3270 
3271 		    // Reset the index to avoid a return statement jumps here
3272 		    // again.
3273 		    trycmd->tcd_finally_idx = 0;
3274 		    break;
3275 		}
3276 
3277 	    // end of ":try" block
3278 	    case ISN_ENDTRY:
3279 		{
3280 		    garray_T	*trystack = &ectx->ec_trystack;
3281 
3282 		    if (trystack->ga_len > 0)
3283 		    {
3284 			trycmd_T    *trycmd;
3285 
3286 			--trystack->ga_len;
3287 			--trylevel;
3288 			trycmd = ((trycmd_T *)trystack->ga_data)
3289 							    + trystack->ga_len;
3290 			if (trycmd->tcd_did_throw)
3291 			    did_throw = TRUE;
3292 			if (trycmd->tcd_caught && current_exception != NULL)
3293 			{
3294 			    // discard the exception
3295 			    if (caught_stack == current_exception)
3296 				caught_stack = caught_stack->caught;
3297 			    discard_current_exception();
3298 			}
3299 
3300 			if (trycmd->tcd_return)
3301 			    goto func_return;
3302 
3303 			while (ectx->ec_stack.ga_len > trycmd->tcd_stack_len)
3304 			{
3305 			    --ectx->ec_stack.ga_len;
3306 			    clear_tv(STACK_TV_BOT(0));
3307 			}
3308 			if (trycmd->tcd_cont != 0)
3309 			    // handling :continue: jump to outer try block or
3310 			    // start of the loop
3311 			    ectx->ec_iidx = trycmd->tcd_cont - 1;
3312 		    }
3313 		}
3314 		break;
3315 
3316 	    case ISN_THROW:
3317 		{
3318 		    garray_T	*trystack = &ectx->ec_trystack;
3319 
3320 		    if (trystack->ga_len == 0 && trylevel == 0 && emsg_silent)
3321 		    {
3322 			// throwing an exception while using "silent!" causes
3323 			// the function to abort but not display an error.
3324 			tv = STACK_TV_BOT(-1);
3325 			clear_tv(tv);
3326 			tv->v_type = VAR_NUMBER;
3327 			tv->vval.v_number = 0;
3328 			goto done;
3329 		    }
3330 		    --ectx->ec_stack.ga_len;
3331 		    tv = STACK_TV_BOT(0);
3332 		    if (tv->vval.v_string == NULL
3333 				       || *skipwhite(tv->vval.v_string) == NUL)
3334 		    {
3335 			vim_free(tv->vval.v_string);
3336 			SOURCING_LNUM = iptr->isn_lnum;
3337 			emsg(_(e_throw_with_empty_string));
3338 			goto theend;
3339 		    }
3340 
3341 		    // Inside a "catch" we need to first discard the caught
3342 		    // exception.
3343 		    if (trystack->ga_len > 0)
3344 		    {
3345 			trycmd_T    *trycmd = ((trycmd_T *)trystack->ga_data)
3346 							+ trystack->ga_len - 1;
3347 			if (trycmd->tcd_caught && current_exception != NULL)
3348 			{
3349 			    // discard the exception
3350 			    if (caught_stack == current_exception)
3351 				caught_stack = caught_stack->caught;
3352 			    discard_current_exception();
3353 			    trycmd->tcd_caught = FALSE;
3354 			}
3355 		    }
3356 
3357 		    if (throw_exception(tv->vval.v_string, ET_USER, NULL)
3358 								       == FAIL)
3359 		    {
3360 			vim_free(tv->vval.v_string);
3361 			goto theend;
3362 		    }
3363 		    did_throw = TRUE;
3364 		}
3365 		break;
3366 
3367 	    // compare with special values
3368 	    case ISN_COMPAREBOOL:
3369 	    case ISN_COMPARESPECIAL:
3370 		{
3371 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3372 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3373 		    varnumber_T arg1 = tv1->vval.v_number;
3374 		    varnumber_T arg2 = tv2->vval.v_number;
3375 		    int		res;
3376 
3377 		    switch (iptr->isn_arg.op.op_type)
3378 		    {
3379 			case EXPR_EQUAL: res = arg1 == arg2; break;
3380 			case EXPR_NEQUAL: res = arg1 != arg2; break;
3381 			default: res = 0; break;
3382 		    }
3383 
3384 		    --ectx->ec_stack.ga_len;
3385 		    tv1->v_type = VAR_BOOL;
3386 		    tv1->vval.v_number = res ? VVAL_TRUE : VVAL_FALSE;
3387 		}
3388 		break;
3389 
3390 	    // Operation with two number arguments
3391 	    case ISN_OPNR:
3392 	    case ISN_COMPARENR:
3393 		{
3394 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3395 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3396 		    varnumber_T arg1 = tv1->vval.v_number;
3397 		    varnumber_T arg2 = tv2->vval.v_number;
3398 		    varnumber_T res;
3399 
3400 		    switch (iptr->isn_arg.op.op_type)
3401 		    {
3402 			case EXPR_MULT: res = arg1 * arg2; break;
3403 			case EXPR_DIV: res = arg1 / arg2; break;
3404 			case EXPR_REM: res = arg1 % arg2; break;
3405 			case EXPR_SUB: res = arg1 - arg2; break;
3406 			case EXPR_ADD: res = arg1 + arg2; break;
3407 
3408 			case EXPR_EQUAL: res = arg1 == arg2; break;
3409 			case EXPR_NEQUAL: res = arg1 != arg2; break;
3410 			case EXPR_GREATER: res = arg1 > arg2; break;
3411 			case EXPR_GEQUAL: res = arg1 >= arg2; break;
3412 			case EXPR_SMALLER: res = arg1 < arg2; break;
3413 			case EXPR_SEQUAL: res = arg1 <= arg2; break;
3414 			default: res = 0; break;
3415 		    }
3416 
3417 		    --ectx->ec_stack.ga_len;
3418 		    if (iptr->isn_type == ISN_COMPARENR)
3419 		    {
3420 			tv1->v_type = VAR_BOOL;
3421 			tv1->vval.v_number = res ? VVAL_TRUE : VVAL_FALSE;
3422 		    }
3423 		    else
3424 			tv1->vval.v_number = res;
3425 		}
3426 		break;
3427 
3428 	    // Computation with two float arguments
3429 	    case ISN_OPFLOAT:
3430 	    case ISN_COMPAREFLOAT:
3431 #ifdef FEAT_FLOAT
3432 		{
3433 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3434 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3435 		    float_T	arg1 = tv1->vval.v_float;
3436 		    float_T	arg2 = tv2->vval.v_float;
3437 		    float_T	res = 0;
3438 		    int		cmp = FALSE;
3439 
3440 		    switch (iptr->isn_arg.op.op_type)
3441 		    {
3442 			case EXPR_MULT: res = arg1 * arg2; break;
3443 			case EXPR_DIV: res = arg1 / arg2; break;
3444 			case EXPR_SUB: res = arg1 - arg2; break;
3445 			case EXPR_ADD: res = arg1 + arg2; break;
3446 
3447 			case EXPR_EQUAL: cmp = arg1 == arg2; break;
3448 			case EXPR_NEQUAL: cmp = arg1 != arg2; break;
3449 			case EXPR_GREATER: cmp = arg1 > arg2; break;
3450 			case EXPR_GEQUAL: cmp = arg1 >= arg2; break;
3451 			case EXPR_SMALLER: cmp = arg1 < arg2; break;
3452 			case EXPR_SEQUAL: cmp = arg1 <= arg2; break;
3453 			default: cmp = 0; break;
3454 		    }
3455 		    --ectx->ec_stack.ga_len;
3456 		    if (iptr->isn_type == ISN_COMPAREFLOAT)
3457 		    {
3458 			tv1->v_type = VAR_BOOL;
3459 			tv1->vval.v_number = cmp ? VVAL_TRUE : VVAL_FALSE;
3460 		    }
3461 		    else
3462 			tv1->vval.v_float = res;
3463 		}
3464 #endif
3465 		break;
3466 
3467 	    case ISN_COMPARELIST:
3468 		{
3469 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3470 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3471 		    list_T	*arg1 = tv1->vval.v_list;
3472 		    list_T	*arg2 = tv2->vval.v_list;
3473 		    int		cmp = FALSE;
3474 		    int		ic = iptr->isn_arg.op.op_ic;
3475 
3476 		    switch (iptr->isn_arg.op.op_type)
3477 		    {
3478 			case EXPR_EQUAL: cmp =
3479 				      list_equal(arg1, arg2, ic, FALSE); break;
3480 			case EXPR_NEQUAL: cmp =
3481 				     !list_equal(arg1, arg2, ic, FALSE); break;
3482 			case EXPR_IS: cmp = arg1 == arg2; break;
3483 			case EXPR_ISNOT: cmp = arg1 != arg2; break;
3484 			default: cmp = 0; break;
3485 		    }
3486 		    --ectx->ec_stack.ga_len;
3487 		    clear_tv(tv1);
3488 		    clear_tv(tv2);
3489 		    tv1->v_type = VAR_BOOL;
3490 		    tv1->vval.v_number = cmp ? VVAL_TRUE : VVAL_FALSE;
3491 		}
3492 		break;
3493 
3494 	    case ISN_COMPAREBLOB:
3495 		{
3496 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3497 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3498 		    blob_T	*arg1 = tv1->vval.v_blob;
3499 		    blob_T	*arg2 = tv2->vval.v_blob;
3500 		    int		cmp = FALSE;
3501 
3502 		    switch (iptr->isn_arg.op.op_type)
3503 		    {
3504 			case EXPR_EQUAL: cmp = blob_equal(arg1, arg2); break;
3505 			case EXPR_NEQUAL: cmp = !blob_equal(arg1, arg2); break;
3506 			case EXPR_IS: cmp = arg1 == arg2; break;
3507 			case EXPR_ISNOT: cmp = arg1 != arg2; break;
3508 			default: cmp = 0; break;
3509 		    }
3510 		    --ectx->ec_stack.ga_len;
3511 		    clear_tv(tv1);
3512 		    clear_tv(tv2);
3513 		    tv1->v_type = VAR_BOOL;
3514 		    tv1->vval.v_number = cmp ? VVAL_TRUE : VVAL_FALSE;
3515 		}
3516 		break;
3517 
3518 		// TODO: handle separately
3519 	    case ISN_COMPARESTRING:
3520 	    case ISN_COMPAREDICT:
3521 	    case ISN_COMPAREFUNC:
3522 	    case ISN_COMPAREANY:
3523 		{
3524 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3525 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3526 		    exprtype_T	exprtype = iptr->isn_arg.op.op_type;
3527 		    int		ic = iptr->isn_arg.op.op_ic;
3528 
3529 		    SOURCING_LNUM = iptr->isn_lnum;
3530 		    typval_compare(tv1, tv2, exprtype, ic);
3531 		    clear_tv(tv2);
3532 		    --ectx->ec_stack.ga_len;
3533 		}
3534 		break;
3535 
3536 	    case ISN_ADDLIST:
3537 	    case ISN_ADDBLOB:
3538 		{
3539 		    typval_T *tv1 = STACK_TV_BOT(-2);
3540 		    typval_T *tv2 = STACK_TV_BOT(-1);
3541 
3542 		    // add two lists or blobs
3543 		    if (iptr->isn_type == ISN_ADDLIST)
3544 			eval_addlist(tv1, tv2);
3545 		    else
3546 			eval_addblob(tv1, tv2);
3547 		    clear_tv(tv2);
3548 		    --ectx->ec_stack.ga_len;
3549 		}
3550 		break;
3551 
3552 	    case ISN_LISTAPPEND:
3553 		{
3554 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3555 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3556 		    list_T	*l = tv1->vval.v_list;
3557 
3558 		    // add an item to a list
3559 		    if (l == NULL)
3560 		    {
3561 			SOURCING_LNUM = iptr->isn_lnum;
3562 			emsg(_(e_cannot_add_to_null_list));
3563 			goto on_error;
3564 		    }
3565 		    if (list_append_tv(l, tv2) == FAIL)
3566 			goto theend;
3567 		    clear_tv(tv2);
3568 		    --ectx->ec_stack.ga_len;
3569 		}
3570 		break;
3571 
3572 	    case ISN_BLOBAPPEND:
3573 		{
3574 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3575 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3576 		    blob_T	*b = tv1->vval.v_blob;
3577 		    int		error = FALSE;
3578 		    varnumber_T n;
3579 
3580 		    // add a number to a blob
3581 		    if (b == NULL)
3582 		    {
3583 			SOURCING_LNUM = iptr->isn_lnum;
3584 			emsg(_(e_cannot_add_to_null_blob));
3585 			goto on_error;
3586 		    }
3587 		    n = tv_get_number_chk(tv2, &error);
3588 		    if (error)
3589 			goto on_error;
3590 		    ga_append(&b->bv_ga, (int)n);
3591 		    --ectx->ec_stack.ga_len;
3592 		}
3593 		break;
3594 
3595 	    // Computation with two arguments of unknown type
3596 	    case ISN_OPANY:
3597 		{
3598 		    typval_T	*tv1 = STACK_TV_BOT(-2);
3599 		    typval_T	*tv2 = STACK_TV_BOT(-1);
3600 		    varnumber_T	n1, n2;
3601 #ifdef FEAT_FLOAT
3602 		    float_T	f1 = 0, f2 = 0;
3603 #endif
3604 		    int		error = FALSE;
3605 
3606 		    if (iptr->isn_arg.op.op_type == EXPR_ADD)
3607 		    {
3608 			if (tv1->v_type == VAR_LIST && tv2->v_type == VAR_LIST)
3609 			{
3610 			    eval_addlist(tv1, tv2);
3611 			    clear_tv(tv2);
3612 			    --ectx->ec_stack.ga_len;
3613 			    break;
3614 			}
3615 			else if (tv1->v_type == VAR_BLOB
3616 						    && tv2->v_type == VAR_BLOB)
3617 			{
3618 			    eval_addblob(tv1, tv2);
3619 			    clear_tv(tv2);
3620 			    --ectx->ec_stack.ga_len;
3621 			    break;
3622 			}
3623 		    }
3624 #ifdef FEAT_FLOAT
3625 		    if (tv1->v_type == VAR_FLOAT)
3626 		    {
3627 			f1 = tv1->vval.v_float;
3628 			n1 = 0;
3629 		    }
3630 		    else
3631 #endif
3632 		    {
3633 			SOURCING_LNUM = iptr->isn_lnum;
3634 			n1 = tv_get_number_chk(tv1, &error);
3635 			if (error)
3636 			    goto on_error;
3637 #ifdef FEAT_FLOAT
3638 			if (tv2->v_type == VAR_FLOAT)
3639 			    f1 = n1;
3640 #endif
3641 		    }
3642 #ifdef FEAT_FLOAT
3643 		    if (tv2->v_type == VAR_FLOAT)
3644 		    {
3645 			f2 = tv2->vval.v_float;
3646 			n2 = 0;
3647 		    }
3648 		    else
3649 #endif
3650 		    {
3651 			n2 = tv_get_number_chk(tv2, &error);
3652 			if (error)
3653 			    goto on_error;
3654 #ifdef FEAT_FLOAT
3655 			if (tv1->v_type == VAR_FLOAT)
3656 			    f2 = n2;
3657 #endif
3658 		    }
3659 #ifdef FEAT_FLOAT
3660 		    // if there is a float on either side the result is a float
3661 		    if (tv1->v_type == VAR_FLOAT || tv2->v_type == VAR_FLOAT)
3662 		    {
3663 			switch (iptr->isn_arg.op.op_type)
3664 			{
3665 			    case EXPR_MULT: f1 = f1 * f2; break;
3666 			    case EXPR_DIV:  f1 = f1 / f2; break;
3667 			    case EXPR_SUB:  f1 = f1 - f2; break;
3668 			    case EXPR_ADD:  f1 = f1 + f2; break;
3669 			    default: SOURCING_LNUM = iptr->isn_lnum;
3670 				     emsg(_(e_modulus));
3671 				     goto on_error;
3672 			}
3673 			clear_tv(tv1);
3674 			clear_tv(tv2);
3675 			tv1->v_type = VAR_FLOAT;
3676 			tv1->vval.v_float = f1;
3677 			--ectx->ec_stack.ga_len;
3678 		    }
3679 		    else
3680 #endif
3681 		    {
3682 			int failed = FALSE;
3683 
3684 			switch (iptr->isn_arg.op.op_type)
3685 			{
3686 			    case EXPR_MULT: n1 = n1 * n2; break;
3687 			    case EXPR_DIV:  n1 = num_divide(n1, n2, &failed);
3688 					    if (failed)
3689 						goto on_error;
3690 					    break;
3691 			    case EXPR_SUB:  n1 = n1 - n2; break;
3692 			    case EXPR_ADD:  n1 = n1 + n2; break;
3693 			    default:	    n1 = num_modulus(n1, n2, &failed);
3694 					    if (failed)
3695 						goto on_error;
3696 					    break;
3697 			}
3698 			clear_tv(tv1);
3699 			clear_tv(tv2);
3700 			tv1->v_type = VAR_NUMBER;
3701 			tv1->vval.v_number = n1;
3702 			--ectx->ec_stack.ga_len;
3703 		    }
3704 		}
3705 		break;
3706 
3707 	    case ISN_CONCAT:
3708 		{
3709 		    char_u *str1 = STACK_TV_BOT(-2)->vval.v_string;
3710 		    char_u *str2 = STACK_TV_BOT(-1)->vval.v_string;
3711 		    char_u *res;
3712 
3713 		    res = concat_str(str1, str2);
3714 		    clear_tv(STACK_TV_BOT(-2));
3715 		    clear_tv(STACK_TV_BOT(-1));
3716 		    --ectx->ec_stack.ga_len;
3717 		    STACK_TV_BOT(-1)->vval.v_string = res;
3718 		}
3719 		break;
3720 
3721 	    case ISN_STRINDEX:
3722 	    case ISN_STRSLICE:
3723 		{
3724 		    int		is_slice = iptr->isn_type == ISN_STRSLICE;
3725 		    varnumber_T	n1 = 0, n2;
3726 		    char_u	*res;
3727 
3728 		    // string index: string is at stack-2, index at stack-1
3729 		    // string slice: string is at stack-3, first index at
3730 		    // stack-2, second index at stack-1
3731 		    if (is_slice)
3732 		    {
3733 			tv = STACK_TV_BOT(-2);
3734 			n1 = tv->vval.v_number;
3735 		    }
3736 
3737 		    tv = STACK_TV_BOT(-1);
3738 		    n2 = tv->vval.v_number;
3739 
3740 		    ectx->ec_stack.ga_len -= is_slice ? 2 : 1;
3741 		    tv = STACK_TV_BOT(-1);
3742 		    if (is_slice)
3743 			// Slice: Select the characters from the string
3744 			res = string_slice(tv->vval.v_string, n1, n2, FALSE);
3745 		    else
3746 			// Index: The resulting variable is a string of a
3747 			// single character (including composing characters).
3748 			// If the index is too big or negative the result is
3749 			// empty.
3750 			res = char_from_string(tv->vval.v_string, n2);
3751 		    vim_free(tv->vval.v_string);
3752 		    tv->vval.v_string = res;
3753 		}
3754 		break;
3755 
3756 	    case ISN_LISTINDEX:
3757 	    case ISN_LISTSLICE:
3758 	    case ISN_BLOBINDEX:
3759 	    case ISN_BLOBSLICE:
3760 		{
3761 		    int		is_slice = iptr->isn_type == ISN_LISTSLICE
3762 					    || iptr->isn_type == ISN_BLOBSLICE;
3763 		    int		is_blob = iptr->isn_type == ISN_BLOBINDEX
3764 					    || iptr->isn_type == ISN_BLOBSLICE;
3765 		    varnumber_T	n1, n2;
3766 		    typval_T	*val_tv;
3767 
3768 		    // list index: list is at stack-2, index at stack-1
3769 		    // list slice: list is at stack-3, indexes at stack-2 and
3770 		    // stack-1
3771 		    // Same for blob.
3772 		    val_tv = is_slice ? STACK_TV_BOT(-3) : STACK_TV_BOT(-2);
3773 
3774 		    tv = STACK_TV_BOT(-1);
3775 		    n1 = n2 = tv->vval.v_number;
3776 		    clear_tv(tv);
3777 
3778 		    if (is_slice)
3779 		    {
3780 			tv = STACK_TV_BOT(-2);
3781 			n1 = tv->vval.v_number;
3782 			clear_tv(tv);
3783 		    }
3784 
3785 		    ectx->ec_stack.ga_len -= is_slice ? 2 : 1;
3786 		    tv = STACK_TV_BOT(-1);
3787 		    SOURCING_LNUM = iptr->isn_lnum;
3788 		    if (is_blob)
3789 		    {
3790 			if (blob_slice_or_index(val_tv->vval.v_blob, is_slice,
3791 						    n1, n2, FALSE, tv) == FAIL)
3792 			    goto on_error;
3793 		    }
3794 		    else
3795 		    {
3796 			if (list_slice_or_index(val_tv->vval.v_list, is_slice,
3797 					      n1, n2, FALSE, tv, TRUE) == FAIL)
3798 			    goto on_error;
3799 		    }
3800 		}
3801 		break;
3802 
3803 	    case ISN_ANYINDEX:
3804 	    case ISN_ANYSLICE:
3805 		{
3806 		    int		is_slice = iptr->isn_type == ISN_ANYSLICE;
3807 		    typval_T	*var1, *var2;
3808 		    int		res;
3809 
3810 		    // index: composite is at stack-2, index at stack-1
3811 		    // slice: composite is at stack-3, indexes at stack-2 and
3812 		    // stack-1
3813 		    tv = is_slice ? STACK_TV_BOT(-3) : STACK_TV_BOT(-2);
3814 		    SOURCING_LNUM = iptr->isn_lnum;
3815 		    if (check_can_index(tv, TRUE, TRUE) == FAIL)
3816 			goto on_error;
3817 		    var1 = is_slice ? STACK_TV_BOT(-2) : STACK_TV_BOT(-1);
3818 		    var2 = is_slice ? STACK_TV_BOT(-1) : NULL;
3819 		    res = eval_index_inner(tv, is_slice, var1, var2,
3820 							FALSE, NULL, -1, TRUE);
3821 		    clear_tv(var1);
3822 		    if (is_slice)
3823 			clear_tv(var2);
3824 		    ectx->ec_stack.ga_len -= is_slice ? 2 : 1;
3825 		    if (res == FAIL)
3826 			goto on_error;
3827 		}
3828 		break;
3829 
3830 	    case ISN_SLICE:
3831 		{
3832 		    list_T	*list;
3833 		    int		count = iptr->isn_arg.number;
3834 
3835 		    // type will have been checked to be a list
3836 		    tv = STACK_TV_BOT(-1);
3837 		    list = tv->vval.v_list;
3838 
3839 		    // no error for short list, expect it to be checked earlier
3840 		    if (list != NULL && list->lv_len >= count)
3841 		    {
3842 			list_T	*newlist = list_slice(list,
3843 						      count, list->lv_len - 1);
3844 
3845 			if (newlist != NULL)
3846 			{
3847 			    list_unref(list);
3848 			    tv->vval.v_list = newlist;
3849 			    ++newlist->lv_refcount;
3850 			}
3851 		    }
3852 		}
3853 		break;
3854 
3855 	    case ISN_GETITEM:
3856 		{
3857 		    listitem_T	*li;
3858 		    getitem_T	*gi = &iptr->isn_arg.getitem;
3859 
3860 		    // Get list item: list is at stack-1, push item.
3861 		    // List type and length is checked for when compiling.
3862 		    tv = STACK_TV_BOT(-1 - gi->gi_with_op);
3863 		    li = list_find(tv->vval.v_list, gi->gi_index);
3864 
3865 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
3866 			goto theend;
3867 		    ++ectx->ec_stack.ga_len;
3868 		    copy_tv(&li->li_tv, STACK_TV_BOT(-1));
3869 
3870 		    // Useful when used in unpack assignment.  Reset at
3871 		    // ISN_DROP.
3872 		    ectx->ec_where.wt_index = gi->gi_index + 1;
3873 		    ectx->ec_where.wt_variable = TRUE;
3874 		}
3875 		break;
3876 
3877 	    case ISN_MEMBER:
3878 		{
3879 		    dict_T	*dict;
3880 		    char_u	*key;
3881 		    dictitem_T	*di;
3882 		    typval_T	temp_tv;
3883 
3884 		    // dict member: dict is at stack-2, key at stack-1
3885 		    tv = STACK_TV_BOT(-2);
3886 		    // no need to check for VAR_DICT, CHECKTYPE will check.
3887 		    dict = tv->vval.v_dict;
3888 
3889 		    tv = STACK_TV_BOT(-1);
3890 		    // no need to check for VAR_STRING, 2STRING will check.
3891 		    key = tv->vval.v_string;
3892 		    if (key == NULL)
3893 			key = (char_u *)"";
3894 
3895 		    if ((di = dict_find(dict, key, -1)) == NULL)
3896 		    {
3897 			SOURCING_LNUM = iptr->isn_lnum;
3898 			semsg(_(e_dictkey), key);
3899 
3900 			// If :silent! is used we will continue, make sure the
3901 			// stack contents makes sense.
3902 			clear_tv(tv);
3903 			--ectx->ec_stack.ga_len;
3904 			tv = STACK_TV_BOT(-1);
3905 			clear_tv(tv);
3906 			tv->v_type = VAR_NUMBER;
3907 			tv->vval.v_number = 0;
3908 			goto on_fatal_error;
3909 		    }
3910 		    clear_tv(tv);
3911 		    --ectx->ec_stack.ga_len;
3912 		    // Clear the dict only after getting the item, to avoid
3913 		    // that it makes the item invalid.
3914 		    tv = STACK_TV_BOT(-1);
3915 		    temp_tv = *tv;
3916 		    copy_tv(&di->di_tv, tv);
3917 		    clear_tv(&temp_tv);
3918 		}
3919 		break;
3920 
3921 	    // dict member with string key
3922 	    case ISN_STRINGMEMBER:
3923 		{
3924 		    dict_T	*dict;
3925 		    dictitem_T	*di;
3926 		    typval_T	temp_tv;
3927 
3928 		    tv = STACK_TV_BOT(-1);
3929 		    if (tv->v_type != VAR_DICT || tv->vval.v_dict == NULL)
3930 		    {
3931 			SOURCING_LNUM = iptr->isn_lnum;
3932 			emsg(_(e_dictreq));
3933 			goto on_error;
3934 		    }
3935 		    dict = tv->vval.v_dict;
3936 
3937 		    if ((di = dict_find(dict, iptr->isn_arg.string, -1))
3938 								       == NULL)
3939 		    {
3940 			SOURCING_LNUM = iptr->isn_lnum;
3941 			semsg(_(e_dictkey), iptr->isn_arg.string);
3942 			goto on_error;
3943 		    }
3944 		    // Clear the dict after getting the item, to avoid that it
3945 		    // make the item invalid.
3946 		    temp_tv = *tv;
3947 		    copy_tv(&di->di_tv, tv);
3948 		    clear_tv(&temp_tv);
3949 		}
3950 		break;
3951 
3952 	    case ISN_NEGATENR:
3953 		tv = STACK_TV_BOT(-1);
3954 		if (tv->v_type != VAR_NUMBER
3955 #ifdef FEAT_FLOAT
3956 			&& tv->v_type != VAR_FLOAT
3957 #endif
3958 			)
3959 		{
3960 		    SOURCING_LNUM = iptr->isn_lnum;
3961 		    emsg(_(e_number_exp));
3962 		    goto on_error;
3963 		}
3964 #ifdef FEAT_FLOAT
3965 		if (tv->v_type == VAR_FLOAT)
3966 		    tv->vval.v_float = -tv->vval.v_float;
3967 		else
3968 #endif
3969 		    tv->vval.v_number = -tv->vval.v_number;
3970 		break;
3971 
3972 	    case ISN_CHECKNR:
3973 		{
3974 		    int		error = FALSE;
3975 
3976 		    tv = STACK_TV_BOT(-1);
3977 		    SOURCING_LNUM = iptr->isn_lnum;
3978 		    if (check_not_string(tv) == FAIL)
3979 			goto on_error;
3980 		    (void)tv_get_number_chk(tv, &error);
3981 		    if (error)
3982 			goto on_error;
3983 		}
3984 		break;
3985 
3986 	    case ISN_CHECKTYPE:
3987 		{
3988 		    checktype_T *ct = &iptr->isn_arg.type;
3989 
3990 		    tv = STACK_TV_BOT((int)ct->ct_off);
3991 		    SOURCING_LNUM = iptr->isn_lnum;
3992 		    if (!ectx->ec_where.wt_variable)
3993 			ectx->ec_where.wt_index = ct->ct_arg_idx;
3994 		    if (check_typval_type(ct->ct_type, tv, ectx->ec_where)
3995 								       == FAIL)
3996 			goto on_error;
3997 		    if (!ectx->ec_where.wt_variable)
3998 			ectx->ec_where.wt_index = 0;
3999 
4000 		    // number 0 is FALSE, number 1 is TRUE
4001 		    if (tv->v_type == VAR_NUMBER
4002 			    && ct->ct_type->tt_type == VAR_BOOL
4003 			    && (tv->vval.v_number == 0
4004 						|| tv->vval.v_number == 1))
4005 		    {
4006 			tv->v_type = VAR_BOOL;
4007 			tv->vval.v_number = tv->vval.v_number
4008 						      ? VVAL_TRUE : VVAL_FALSE;
4009 		    }
4010 		}
4011 		break;
4012 
4013 	    case ISN_CHECKLEN:
4014 		{
4015 		    int	    min_len = iptr->isn_arg.checklen.cl_min_len;
4016 		    list_T  *list = NULL;
4017 
4018 		    tv = STACK_TV_BOT(-1);
4019 		    if (tv->v_type == VAR_LIST)
4020 			    list = tv->vval.v_list;
4021 		    if (list == NULL || list->lv_len < min_len
4022 			    || (list->lv_len > min_len
4023 					&& !iptr->isn_arg.checklen.cl_more_OK))
4024 		    {
4025 			SOURCING_LNUM = iptr->isn_lnum;
4026 			semsg(_(e_expected_nr_items_but_got_nr),
4027 				     min_len, list == NULL ? 0 : list->lv_len);
4028 			goto on_error;
4029 		    }
4030 		}
4031 		break;
4032 
4033 	    case ISN_SETTYPE:
4034 		{
4035 		    checktype_T *ct = &iptr->isn_arg.type;
4036 
4037 		    tv = STACK_TV_BOT(-1);
4038 		    if (tv->v_type == VAR_DICT && tv->vval.v_dict != NULL)
4039 		    {
4040 			free_type(tv->vval.v_dict->dv_type);
4041 			tv->vval.v_dict->dv_type = alloc_type(ct->ct_type);
4042 		    }
4043 		    else if (tv->v_type == VAR_LIST && tv->vval.v_list != NULL)
4044 		    {
4045 			free_type(tv->vval.v_list->lv_type);
4046 			tv->vval.v_list->lv_type = alloc_type(ct->ct_type);
4047 		    }
4048 		}
4049 		break;
4050 
4051 	    case ISN_2BOOL:
4052 	    case ISN_COND2BOOL:
4053 		{
4054 		    int n;
4055 		    int error = FALSE;
4056 
4057 		    if (iptr->isn_type == ISN_2BOOL)
4058 		    {
4059 			tv = STACK_TV_BOT(iptr->isn_arg.tobool.offset);
4060 			n = tv2bool(tv);
4061 			if (iptr->isn_arg.tobool.invert)
4062 			    n = !n;
4063 		    }
4064 		    else
4065 		    {
4066 			tv = STACK_TV_BOT(-1);
4067 			SOURCING_LNUM = iptr->isn_lnum;
4068 			n = tv_get_bool_chk(tv, &error);
4069 			if (error)
4070 			    goto on_error;
4071 		    }
4072 		    clear_tv(tv);
4073 		    tv->v_type = VAR_BOOL;
4074 		    tv->vval.v_number = n ? VVAL_TRUE : VVAL_FALSE;
4075 		}
4076 		break;
4077 
4078 	    case ISN_2STRING:
4079 	    case ISN_2STRING_ANY:
4080 		SOURCING_LNUM = iptr->isn_lnum;
4081 		if (do_2string(STACK_TV_BOT(iptr->isn_arg.tostring.offset),
4082 				iptr->isn_type == ISN_2STRING_ANY,
4083 				      iptr->isn_arg.tostring.tolerant) == FAIL)
4084 			    goto on_error;
4085 		break;
4086 
4087 	    case ISN_RANGE:
4088 		{
4089 		    exarg_T	ea;
4090 		    char	*errormsg;
4091 
4092 		    ea.line2 = 0;
4093 		    ea.addr_count = 0;
4094 		    ea.addr_type = ADDR_LINES;
4095 		    ea.cmd = iptr->isn_arg.string;
4096 		    ea.skip = FALSE;
4097 		    if (parse_cmd_address(&ea, &errormsg, FALSE) == FAIL)
4098 			goto on_error;
4099 
4100 		    if (GA_GROW(&ectx->ec_stack, 1) == FAIL)
4101 			goto theend;
4102 		    ++ectx->ec_stack.ga_len;
4103 		    tv = STACK_TV_BOT(-1);
4104 		    tv->v_type = VAR_NUMBER;
4105 		    tv->v_lock = 0;
4106 		    if (ea.addr_count == 0)
4107 			tv->vval.v_number = curwin->w_cursor.lnum;
4108 		    else
4109 			tv->vval.v_number = ea.line2;
4110 		}
4111 		break;
4112 
4113 	    case ISN_PUT:
4114 		{
4115 		    int		regname = iptr->isn_arg.put.put_regname;
4116 		    linenr_T	lnum = iptr->isn_arg.put.put_lnum;
4117 		    char_u	*expr = NULL;
4118 		    int		dir = FORWARD;
4119 
4120 		    if (lnum < -2)
4121 		    {
4122 			// line number was put on the stack by ISN_RANGE
4123 			tv = STACK_TV_BOT(-1);
4124 			curwin->w_cursor.lnum = tv->vval.v_number;
4125 			if (lnum == LNUM_VARIABLE_RANGE_ABOVE)
4126 			    dir = BACKWARD;
4127 			--ectx->ec_stack.ga_len;
4128 		    }
4129 		    else if (lnum == -2)
4130 			// :put! above cursor
4131 			dir = BACKWARD;
4132 		    else if (lnum >= 0)
4133 			curwin->w_cursor.lnum = iptr->isn_arg.put.put_lnum;
4134 
4135 		    if (regname == '=')
4136 		    {
4137 			tv = STACK_TV_BOT(-1);
4138 			if (tv->v_type == VAR_STRING)
4139 			    expr = tv->vval.v_string;
4140 			else
4141 			{
4142 			    expr = typval2string(tv, TRUE); // allocates value
4143 			    clear_tv(tv);
4144 			}
4145 			--ectx->ec_stack.ga_len;
4146 		    }
4147 		    check_cursor();
4148 		    do_put(regname, expr, dir, 1L, PUT_LINE|PUT_CURSLINE);
4149 		    vim_free(expr);
4150 		}
4151 		break;
4152 
4153 	    case ISN_CMDMOD:
4154 		ectx->ec_funclocal.floc_save_cmdmod = cmdmod;
4155 		ectx->ec_funclocal.floc_restore_cmdmod = TRUE;
4156 		ectx->ec_funclocal.floc_restore_cmdmod_stacklen =
4157 							 ectx->ec_stack.ga_len;
4158 		cmdmod = *iptr->isn_arg.cmdmod.cf_cmdmod;
4159 		apply_cmdmod(&cmdmod);
4160 		break;
4161 
4162 	    case ISN_CMDMOD_REV:
4163 		// filter regprog is owned by the instruction, don't free it
4164 		cmdmod.cmod_filter_regmatch.regprog = NULL;
4165 		undo_cmdmod(&cmdmod);
4166 		cmdmod = ectx->ec_funclocal.floc_save_cmdmod;
4167 		ectx->ec_funclocal.floc_restore_cmdmod = FALSE;
4168 		break;
4169 
4170 	    case ISN_UNPACK:
4171 		{
4172 		    int		count = iptr->isn_arg.unpack.unp_count;
4173 		    int		semicolon = iptr->isn_arg.unpack.unp_semicolon;
4174 		    list_T	*l;
4175 		    listitem_T	*li;
4176 		    int		i;
4177 
4178 		    // Check there is a valid list to unpack.
4179 		    tv = STACK_TV_BOT(-1);
4180 		    if (tv->v_type != VAR_LIST)
4181 		    {
4182 			SOURCING_LNUM = iptr->isn_lnum;
4183 			emsg(_(e_for_argument_must_be_sequence_of_lists));
4184 			goto on_error;
4185 		    }
4186 		    l = tv->vval.v_list;
4187 		    if (l == NULL
4188 				|| l->lv_len < (semicolon ? count - 1 : count))
4189 		    {
4190 			SOURCING_LNUM = iptr->isn_lnum;
4191 			emsg(_(e_list_value_does_not_have_enough_items));
4192 			goto on_error;
4193 		    }
4194 		    else if (!semicolon && l->lv_len > count)
4195 		    {
4196 			SOURCING_LNUM = iptr->isn_lnum;
4197 			emsg(_(e_list_value_has_more_items_than_targets));
4198 			goto on_error;
4199 		    }
4200 
4201 		    CHECK_LIST_MATERIALIZE(l);
4202 		    if (GA_GROW(&ectx->ec_stack, count - 1) == FAIL)
4203 			goto theend;
4204 		    ectx->ec_stack.ga_len += count - 1;
4205 
4206 		    // Variable after semicolon gets a list with the remaining
4207 		    // items.
4208 		    if (semicolon)
4209 		    {
4210 			list_T	*rem_list =
4211 				  list_alloc_with_items(l->lv_len - count + 1);
4212 
4213 			if (rem_list == NULL)
4214 			    goto theend;
4215 			tv = STACK_TV_BOT(-count);
4216 			tv->vval.v_list = rem_list;
4217 			++rem_list->lv_refcount;
4218 			tv->v_lock = 0;
4219 			li = l->lv_first;
4220 			for (i = 0; i < count - 1; ++i)
4221 			    li = li->li_next;
4222 			for (i = 0; li != NULL; ++i)
4223 			{
4224 			    list_set_item(rem_list, i, &li->li_tv);
4225 			    li = li->li_next;
4226 			}
4227 			--count;
4228 		    }
4229 
4230 		    // Produce the values in reverse order, first item last.
4231 		    li = l->lv_first;
4232 		    for (i = 0; i < count; ++i)
4233 		    {
4234 			tv = STACK_TV_BOT(-i - 1);
4235 			copy_tv(&li->li_tv, tv);
4236 			li = li->li_next;
4237 		    }
4238 
4239 		    list_unref(l);
4240 		}
4241 		break;
4242 
4243 	    case ISN_PROF_START:
4244 	    case ISN_PROF_END:
4245 		{
4246 #ifdef FEAT_PROFILE
4247 		    funccall_T cookie;
4248 		    ufunc_T	    *cur_ufunc =
4249 				    (((dfunc_T *)def_functions.ga_data)
4250 					       + ectx->ec_dfunc_idx)->df_ufunc;
4251 
4252 		    cookie.func = cur_ufunc;
4253 		    if (iptr->isn_type == ISN_PROF_START)
4254 		    {
4255 			func_line_start(&cookie, iptr->isn_lnum);
4256 			// if we get here the instruction is executed
4257 			func_line_exec(&cookie);
4258 		    }
4259 		    else
4260 			func_line_end(&cookie);
4261 #endif
4262 		}
4263 		break;
4264 
4265 	    case ISN_DEBUG:
4266 		handle_debug(iptr, ectx);
4267 		break;
4268 
4269 	    case ISN_SHUFFLE:
4270 		{
4271 		    typval_T	tmp_tv;
4272 		    int		item = iptr->isn_arg.shuffle.shfl_item;
4273 		    int		up = iptr->isn_arg.shuffle.shfl_up;
4274 
4275 		    tmp_tv = *STACK_TV_BOT(-item);
4276 		    for ( ; up > 0 && item > 1; --up)
4277 		    {
4278 			*STACK_TV_BOT(-item) = *STACK_TV_BOT(-item + 1);
4279 			--item;
4280 		    }
4281 		    *STACK_TV_BOT(-item) = tmp_tv;
4282 		}
4283 		break;
4284 
4285 	    case ISN_DROP:
4286 		--ectx->ec_stack.ga_len;
4287 		clear_tv(STACK_TV_BOT(0));
4288 		ectx->ec_where.wt_index = 0;
4289 		ectx->ec_where.wt_variable = FALSE;
4290 		break;
4291 	}
4292 	continue;
4293 
4294 func_return:
4295 	// Restore previous function. If the frame pointer is where we started
4296 	// then there is none and we are done.
4297 	if (ectx->ec_frame_idx == ectx->ec_initial_frame_idx)
4298 	    goto done;
4299 
4300 	if (func_return(ectx) == FAIL)
4301 	    // only fails when out of memory
4302 	    goto theend;
4303 	continue;
4304 
4305 on_error:
4306 	// Jump here for an error that does not require aborting execution.
4307 	// If "emsg_silent" is set then ignore the error, unless it was set
4308 	// when calling the function.
4309 	if (did_emsg_cumul + did_emsg == ectx->ec_did_emsg_before
4310 					   && emsg_silent && did_emsg_def == 0)
4311 	{
4312 	    // If a sequence of instructions causes an error while ":silent!"
4313 	    // was used, restore the stack length and jump ahead to restoring
4314 	    // the cmdmod.
4315 	    if (ectx->ec_funclocal.floc_restore_cmdmod)
4316 	    {
4317 		while (ectx->ec_stack.ga_len
4318 			     > ectx->ec_funclocal.floc_restore_cmdmod_stacklen)
4319 		{
4320 		    --ectx->ec_stack.ga_len;
4321 		    clear_tv(STACK_TV_BOT(0));
4322 		}
4323 		while (ectx->ec_instr[ectx->ec_iidx].isn_type != ISN_CMDMOD_REV)
4324 		    ++ectx->ec_iidx;
4325 	    }
4326 	    continue;
4327 	}
4328 on_fatal_error:
4329 	// Jump here for an error that messes up the stack.
4330 	// If we are not inside a try-catch started here, abort execution.
4331 	if (trylevel <= ectx->ec_trylevel_at_start)
4332 	    goto theend;
4333     }
4334 
4335 done:
4336     ret = OK;
4337 theend:
4338     ectx->ec_trylevel_at_start = save_trylevel_at_start;
4339     return ret;
4340 }
4341 
4342 /*
4343  * Execute the instructions from a VAR_INSTR typeval and put the result in
4344  * "rettv".
4345  * Return OK or FAIL.
4346  */
4347     int
4348 exe_typval_instr(typval_T *tv, typval_T *rettv)
4349 {
4350     ectx_T	*ectx = tv->vval.v_instr->instr_ectx;
4351     isn_T	*save_instr = ectx->ec_instr;
4352     int		save_iidx = ectx->ec_iidx;
4353     int		res;
4354 
4355     ectx->ec_instr = tv->vval.v_instr->instr_instr;
4356     res = exec_instructions(ectx);
4357     if (res == OK)
4358     {
4359 	*rettv = *STACK_TV_BOT(-1);
4360 	--ectx->ec_stack.ga_len;
4361     }
4362 
4363     ectx->ec_instr = save_instr;
4364     ectx->ec_iidx = save_iidx;
4365 
4366     return res;
4367 }
4368 
4369 /*
4370  * Execute the instructions from an ISN_SUBSTITUTE command, which are in
4371  * "substitute_instr".
4372  */
4373     char_u *
4374 exe_substitute_instr(void)
4375 {
4376     ectx_T	*ectx = substitute_instr->subs_ectx;
4377     isn_T	*save_instr = ectx->ec_instr;
4378     int		save_iidx = ectx->ec_iidx;
4379     char_u	*res;
4380 
4381     ectx->ec_instr = substitute_instr->subs_instr;
4382     if (exec_instructions(ectx) == OK)
4383     {
4384 	typval_T *tv = STACK_TV_BOT(-1);
4385 
4386 	res = typval2string(tv, TRUE);
4387 	--ectx->ec_stack.ga_len;
4388 	clear_tv(tv);
4389     }
4390     else
4391     {
4392 	substitute_instr->subs_status = FAIL;
4393 	res = vim_strsave((char_u *)"");
4394     }
4395 
4396     ectx->ec_instr = save_instr;
4397     ectx->ec_iidx = save_iidx;
4398 
4399     return res;
4400 }
4401 
4402 /*
4403  * Call a "def" function from old Vim script.
4404  * Return OK or FAIL.
4405  */
4406     int
4407 call_def_function(
4408     ufunc_T	*ufunc,
4409     int		argc_arg,	// nr of arguments
4410     typval_T	*argv,		// arguments
4411     partial_T	*partial,	// optional partial for context
4412     typval_T	*rettv)		// return value
4413 {
4414     ectx_T	ectx;		// execution context
4415     int		argc = argc_arg;
4416     typval_T	*tv;
4417     int		idx;
4418     int		ret = FAIL;
4419     int		defcount = ufunc->uf_args.ga_len - argc;
4420     sctx_T	save_current_sctx = current_sctx;
4421     int		did_emsg_before = did_emsg_cumul + did_emsg;
4422     int		save_suppress_errthrow = suppress_errthrow;
4423     msglist_T	**saved_msg_list = NULL;
4424     msglist_T	*private_msg_list = NULL;
4425     int		save_emsg_silent_def = emsg_silent_def;
4426     int		save_did_emsg_def = did_emsg_def;
4427     int		orig_funcdepth;
4428     int		orig_nesting_level = ex_nesting_level;
4429 
4430 // Get pointer to item in the stack.
4431 #undef STACK_TV
4432 #define STACK_TV(idx) (((typval_T *)ectx.ec_stack.ga_data) + idx)
4433 
4434 // Get pointer to item at the bottom of the stack, -1 is the bottom.
4435 #undef STACK_TV_BOT
4436 #define STACK_TV_BOT(idx) (((typval_T *)ectx.ec_stack.ga_data) + ectx.ec_stack.ga_len + idx)
4437 
4438 // Get pointer to a local variable on the stack.  Negative for arguments.
4439 #undef STACK_TV_VAR
4440 #define STACK_TV_VAR(idx) (((typval_T *)ectx.ec_stack.ga_data) + ectx.ec_frame_idx + STACK_FRAME_SIZE + idx)
4441 
4442     // Update uf_has_breakpoint if needed.
4443     update_has_breakpoint(ufunc);
4444 
4445     if (ufunc->uf_def_status == UF_NOT_COMPILED
4446 	    || ufunc->uf_def_status == UF_COMPILE_ERROR
4447 	    || (func_needs_compiling(ufunc, COMPILE_TYPE(ufunc))
4448 		&& compile_def_function(ufunc, FALSE, COMPILE_TYPE(ufunc), NULL)
4449 								      == FAIL))
4450     {
4451 	if (did_emsg_cumul + did_emsg == did_emsg_before)
4452 	    semsg(_(e_function_is_not_compiled_str),
4453 						   printable_func_name(ufunc));
4454 	return FAIL;
4455     }
4456 
4457     {
4458 	// Check the function was really compiled.
4459 	dfunc_T	*dfunc = ((dfunc_T *)def_functions.ga_data)
4460 							 + ufunc->uf_dfunc_idx;
4461 	if (INSTRUCTIONS(dfunc) == NULL)
4462 	{
4463 	    iemsg("using call_def_function() on not compiled function");
4464 	    return FAIL;
4465 	}
4466     }
4467 
4468     // If depth of calling is getting too high, don't execute the function.
4469     orig_funcdepth = funcdepth_get();
4470     if (funcdepth_increment() == FAIL)
4471 	return FAIL;
4472 
4473     CLEAR_FIELD(ectx);
4474     ectx.ec_dfunc_idx = ufunc->uf_dfunc_idx;
4475     ga_init2(&ectx.ec_stack, sizeof(typval_T), 500);
4476     if (ga_grow(&ectx.ec_stack, 20) == FAIL)
4477     {
4478 	funcdepth_decrement();
4479 	return FAIL;
4480     }
4481     ga_init2(&ectx.ec_trystack, sizeof(trycmd_T), 10);
4482     ga_init2(&ectx.ec_funcrefs, sizeof(partial_T *), 10);
4483     ectx.ec_did_emsg_before = did_emsg_before;
4484     ++ex_nesting_level;
4485 
4486     idx = argc - ufunc->uf_args.ga_len;
4487     if (idx > 0 && ufunc->uf_va_name == NULL)
4488     {
4489 	if (idx == 1)
4490 	    emsg(_(e_one_argument_too_many));
4491 	else
4492 	    semsg(_(e_nr_arguments_too_many), idx);
4493 	goto failed_early;
4494     }
4495     idx = argc - ufunc->uf_args.ga_len + ufunc->uf_def_args.ga_len;
4496     if (idx < 0)
4497     {
4498 	if (idx == -1)
4499 	    emsg(_(e_one_argument_too_few));
4500 	else
4501 	    semsg(_(e_nr_arguments_too_few), -idx);
4502 	goto failed_early;
4503     }
4504 
4505     // Put arguments on the stack, but no more than what the function expects.
4506     // A lambda can be called with more arguments than it uses.
4507     for (idx = 0; idx < argc
4508 	    && (ufunc->uf_va_name != NULL || idx < ufunc->uf_args.ga_len);
4509 									 ++idx)
4510     {
4511 	if (idx >= ufunc->uf_args.ga_len - ufunc->uf_def_args.ga_len
4512 		&& argv[idx].v_type == VAR_SPECIAL
4513 		&& argv[idx].vval.v_number == VVAL_NONE)
4514 	{
4515 	    // Use the default value.
4516 	    STACK_TV_BOT(0)->v_type = VAR_UNKNOWN;
4517 	}
4518 	else
4519 	{
4520 	    if (ufunc->uf_arg_types != NULL && idx < ufunc->uf_args.ga_len
4521 		    && check_typval_arg_type(
4522 			ufunc->uf_arg_types[idx], &argv[idx], idx + 1) == FAIL)
4523 		goto failed_early;
4524 	    copy_tv(&argv[idx], STACK_TV_BOT(0));
4525 	}
4526 	++ectx.ec_stack.ga_len;
4527     }
4528 
4529     // Turn varargs into a list.  Empty list if no args.
4530     if (ufunc->uf_va_name != NULL)
4531     {
4532 	int vararg_count = argc - ufunc->uf_args.ga_len;
4533 
4534 	if (vararg_count < 0)
4535 	    vararg_count = 0;
4536 	else
4537 	    argc -= vararg_count;
4538 	if (exe_newlist(vararg_count, &ectx) == FAIL)
4539 	    goto failed_early;
4540 
4541 	// Check the type of the list items.
4542 	tv = STACK_TV_BOT(-1);
4543 	if (ufunc->uf_va_type != NULL
4544 		&& ufunc->uf_va_type != &t_list_any
4545 		&& ufunc->uf_va_type->tt_member != &t_any
4546 		&& tv->vval.v_list != NULL)
4547 	{
4548 	    type_T	*expected = ufunc->uf_va_type->tt_member;
4549 	    listitem_T	*li = tv->vval.v_list->lv_first;
4550 
4551 	    for (idx = 0; idx < vararg_count; ++idx)
4552 	    {
4553 		if (check_typval_arg_type(expected, &li->li_tv,
4554 						       argc + idx + 1) == FAIL)
4555 		    goto failed_early;
4556 		li = li->li_next;
4557 	    }
4558 	}
4559 
4560 	if (defcount > 0)
4561 	    // Move varargs list to below missing default arguments.
4562 	    *STACK_TV_BOT(defcount - 1) = *STACK_TV_BOT(-1);
4563 	--ectx.ec_stack.ga_len;
4564     }
4565 
4566     // Make space for omitted arguments, will store default value below.
4567     // Any varargs list goes after them.
4568     if (defcount > 0)
4569 	for (idx = 0; idx < defcount; ++idx)
4570 	{
4571 	    STACK_TV_BOT(0)->v_type = VAR_UNKNOWN;
4572 	    ++ectx.ec_stack.ga_len;
4573 	}
4574     if (ufunc->uf_va_name != NULL)
4575 	++ectx.ec_stack.ga_len;
4576 
4577     // Frame pointer points to just after arguments.
4578     ectx.ec_frame_idx = ectx.ec_stack.ga_len;
4579     ectx.ec_initial_frame_idx = ectx.ec_frame_idx;
4580 
4581     {
4582 	dfunc_T	*dfunc = ((dfunc_T *)def_functions.ga_data)
4583 							 + ufunc->uf_dfunc_idx;
4584 	ufunc_T *base_ufunc = dfunc->df_ufunc;
4585 
4586 	// "uf_partial" is on the ufunc that "df_ufunc" points to, as is done
4587 	// by copy_func().
4588 	if (partial != NULL || base_ufunc->uf_partial != NULL)
4589 	{
4590 	    ectx.ec_outer_ref = ALLOC_CLEAR_ONE(outer_ref_T);
4591 	    if (ectx.ec_outer_ref == NULL)
4592 		goto failed_early;
4593 	    if (partial != NULL)
4594 	    {
4595 		if (partial->pt_outer.out_stack == NULL && current_ectx != NULL)
4596 		{
4597 		    if (current_ectx->ec_outer_ref != NULL
4598 			    && current_ectx->ec_outer_ref->or_outer != NULL)
4599 			ectx.ec_outer_ref->or_outer =
4600 					  current_ectx->ec_outer_ref->or_outer;
4601 		}
4602 		else
4603 		{
4604 		    ectx.ec_outer_ref->or_outer = &partial->pt_outer;
4605 		    ++partial->pt_refcount;
4606 		    ectx.ec_outer_ref->or_partial = partial;
4607 		}
4608 	    }
4609 	    else
4610 	    {
4611 		ectx.ec_outer_ref->or_outer = &base_ufunc->uf_partial->pt_outer;
4612 		++base_ufunc->uf_partial->pt_refcount;
4613 		ectx.ec_outer_ref->or_partial = base_ufunc->uf_partial;
4614 	    }
4615 	}
4616     }
4617 
4618     // dummy frame entries
4619     for (idx = 0; idx < STACK_FRAME_SIZE; ++idx)
4620     {
4621 	STACK_TV(ectx.ec_stack.ga_len)->v_type = VAR_UNKNOWN;
4622 	++ectx.ec_stack.ga_len;
4623     }
4624 
4625     {
4626 	// Reserve space for local variables and any closure reference count.
4627 	dfunc_T	*dfunc = ((dfunc_T *)def_functions.ga_data)
4628 							 + ufunc->uf_dfunc_idx;
4629 
4630 	for (idx = 0; idx < dfunc->df_varcount; ++idx)
4631 	    STACK_TV_VAR(idx)->v_type = VAR_UNKNOWN;
4632 	ectx.ec_stack.ga_len += dfunc->df_varcount;
4633 	if (dfunc->df_has_closure)
4634 	{
4635 	    STACK_TV_VAR(idx)->v_type = VAR_NUMBER;
4636 	    STACK_TV_VAR(idx)->vval.v_number = 0;
4637 	    ++ectx.ec_stack.ga_len;
4638 	}
4639 
4640 	ectx.ec_instr = INSTRUCTIONS(dfunc);
4641     }
4642 
4643     // Following errors are in the function, not the caller.
4644     // Commands behave like vim9script.
4645     estack_push_ufunc(ufunc, 1);
4646     current_sctx = ufunc->uf_script_ctx;
4647     current_sctx.sc_version = SCRIPT_VERSION_VIM9;
4648 
4649     // Use a specific location for storing error messages to be converted to an
4650     // exception.
4651     saved_msg_list = msg_list;
4652     msg_list = &private_msg_list;
4653 
4654     // Do turn errors into exceptions.
4655     suppress_errthrow = FALSE;
4656 
4657     // Do not delete the function while executing it.
4658     ++ufunc->uf_calls;
4659 
4660     // When ":silent!" was used before calling then we still abort the
4661     // function.  If ":silent!" is used in the function then we don't.
4662     emsg_silent_def = emsg_silent;
4663     did_emsg_def = 0;
4664 
4665     ectx.ec_where.wt_index = 0;
4666     ectx.ec_where.wt_variable = FALSE;
4667 
4668     // Execute the instructions until done.
4669     ret = exec_instructions(&ectx);
4670     if (ret == OK)
4671     {
4672 	// function finished, get result from the stack.
4673 	if (ufunc->uf_ret_type == &t_void)
4674 	{
4675 	    rettv->v_type = VAR_VOID;
4676 	}
4677 	else
4678 	{
4679 	    tv = STACK_TV_BOT(-1);
4680 	    *rettv = *tv;
4681 	    tv->v_type = VAR_UNKNOWN;
4682 	}
4683     }
4684 
4685     // When failed need to unwind the call stack.
4686     while (ectx.ec_frame_idx != ectx.ec_initial_frame_idx)
4687 	func_return(&ectx);
4688 
4689     // Deal with any remaining closures, they may be in use somewhere.
4690     if (ectx.ec_funcrefs.ga_len > 0)
4691     {
4692 	handle_closure_in_use(&ectx, FALSE);
4693 	ga_clear(&ectx.ec_funcrefs);  // TODO: should not be needed?
4694     }
4695 
4696     estack_pop();
4697     current_sctx = save_current_sctx;
4698 
4699     // TODO: when is it safe to delete the function if it is no longer used?
4700     --ufunc->uf_calls;
4701 
4702     if (*msg_list != NULL && saved_msg_list != NULL)
4703     {
4704 	msglist_T **plist = saved_msg_list;
4705 
4706 	// Append entries from the current msg_list (uncaught exceptions) to
4707 	// the saved msg_list.
4708 	while (*plist != NULL)
4709 	    plist = &(*plist)->next;
4710 
4711 	*plist = *msg_list;
4712     }
4713     msg_list = saved_msg_list;
4714 
4715     if (ectx.ec_funclocal.floc_restore_cmdmod)
4716     {
4717 	cmdmod.cmod_filter_regmatch.regprog = NULL;
4718 	undo_cmdmod(&cmdmod);
4719 	cmdmod = ectx.ec_funclocal.floc_save_cmdmod;
4720     }
4721     emsg_silent_def = save_emsg_silent_def;
4722     did_emsg_def += save_did_emsg_def;
4723 
4724 failed_early:
4725     // Free all local variables, but not arguments.
4726     for (idx = 0; idx < ectx.ec_stack.ga_len; ++idx)
4727 	clear_tv(STACK_TV(idx));
4728     ex_nesting_level = orig_nesting_level;
4729 
4730     vim_free(ectx.ec_stack.ga_data);
4731     vim_free(ectx.ec_trystack.ga_data);
4732     if (ectx.ec_outer_ref != NULL)
4733     {
4734 	if (ectx.ec_outer_ref->or_outer_allocated)
4735 	    vim_free(ectx.ec_outer_ref->or_outer);
4736 	partial_unref(ectx.ec_outer_ref->or_partial);
4737 	vim_free(ectx.ec_outer_ref);
4738     }
4739 
4740     // Not sure if this is necessary.
4741     suppress_errthrow = save_suppress_errthrow;
4742 
4743     if (ret != OK && did_emsg_cumul + did_emsg == did_emsg_before)
4744 	semsg(_(e_unknown_error_while_executing_str),
4745 						   printable_func_name(ufunc));
4746     funcdepth_restore(orig_funcdepth);
4747     return ret;
4748 }
4749 
4750 /*
4751  * List instructions "instr" up to "instr_count" or until ISN_FINISH.
4752  * "ufunc" has the source lines, NULL for the instructions of ISN_SUBSTITUTE.
4753  * "pfx" is prefixed to every line.
4754  */
4755     static void
4756 list_instructions(char *pfx, isn_T *instr, int instr_count, ufunc_T *ufunc)
4757 {
4758     int		line_idx = 0;
4759     int		prev_current = 0;
4760     int		current;
4761     int		def_arg_idx = 0;
4762 
4763     for (current = 0; current < instr_count; ++current)
4764     {
4765 	isn_T	    *iptr = &instr[current];
4766 	char	    *line;
4767 
4768 	if (ufunc != NULL)
4769 	{
4770 	    while (line_idx < iptr->isn_lnum
4771 					  && line_idx < ufunc->uf_lines.ga_len)
4772 	    {
4773 		if (current > prev_current)
4774 		{
4775 		    msg_puts("\n\n");
4776 		    prev_current = current;
4777 		}
4778 		line = ((char **)ufunc->uf_lines.ga_data)[line_idx++];
4779 		if (line != NULL)
4780 		    msg(line);
4781 	    }
4782 	    if (iptr->isn_type == ISN_JUMP_IF_ARG_SET)
4783 	    {
4784 		int	first_def_arg = ufunc->uf_args.ga_len
4785 						   - ufunc->uf_def_args.ga_len;
4786 
4787 		if (def_arg_idx > 0)
4788 		    msg_puts("\n\n");
4789 		msg_start();
4790 		msg_puts("  ");
4791 		msg_puts(((char **)(ufunc->uf_args.ga_data))[
4792 						 first_def_arg + def_arg_idx]);
4793 		msg_puts(" = ");
4794 		msg_puts(((char **)(ufunc->uf_def_args.ga_data))[def_arg_idx++]);
4795 		msg_clr_eos();
4796 		msg_end();
4797 	    }
4798 	}
4799 
4800 	switch (iptr->isn_type)
4801 	{
4802 	    case ISN_EXEC:
4803 		smsg("%s%4d EXEC %s", pfx, current, iptr->isn_arg.string);
4804 		break;
4805 	    case ISN_EXEC_SPLIT:
4806 		smsg("%s%4d EXEC_SPLIT %s", pfx, current, iptr->isn_arg.string);
4807 		break;
4808 	    case ISN_LEGACY_EVAL:
4809 		smsg("%s%4d EVAL legacy %s", pfx, current,
4810 							 iptr->isn_arg.string);
4811 		break;
4812 	    case ISN_REDIRSTART:
4813 		smsg("%s%4d REDIR", pfx, current);
4814 		break;
4815 	    case ISN_REDIREND:
4816 		smsg("%s%4d REDIR END%s", pfx, current,
4817 					iptr->isn_arg.number ? " append" : "");
4818 		break;
4819 	    case ISN_CEXPR_AUCMD:
4820 #ifdef FEAT_QUICKFIX
4821 		smsg("%s%4d CEXPR pre %s", pfx, current,
4822 				       cexpr_get_auname(iptr->isn_arg.number));
4823 #endif
4824 		break;
4825 	    case ISN_CEXPR_CORE:
4826 #ifdef FEAT_QUICKFIX
4827 		{
4828 		    cexprref_T	    *cer = iptr->isn_arg.cexpr.cexpr_ref;
4829 
4830 		    smsg("%s%4d CEXPR core %s%s \"%s\"", pfx, current,
4831 				       cexpr_get_auname(cer->cer_cmdidx),
4832 				       cer->cer_forceit ? "!" : "",
4833 				       cer->cer_cmdline);
4834 		}
4835 #endif
4836 		break;
4837 	    case ISN_INSTR:
4838 		{
4839 		    smsg("%s%4d INSTR", pfx, current);
4840 		    list_instructions("    ", iptr->isn_arg.instr,
4841 								INT_MAX, NULL);
4842 		    msg("     -------------");
4843 		}
4844 		break;
4845 	    case ISN_SUBSTITUTE:
4846 		{
4847 		    subs_T *subs = &iptr->isn_arg.subs;
4848 
4849 		    smsg("%s%4d SUBSTITUTE %s", pfx, current, subs->subs_cmd);
4850 		    list_instructions("    ", subs->subs_instr, INT_MAX, NULL);
4851 		    msg("     -------------");
4852 		}
4853 		break;
4854 	    case ISN_EXECCONCAT:
4855 		smsg("%s%4d EXECCONCAT %lld", pfx, current,
4856 					      (varnumber_T)iptr->isn_arg.number);
4857 		break;
4858 	    case ISN_ECHO:
4859 		{
4860 		    echo_T *echo = &iptr->isn_arg.echo;
4861 
4862 		    smsg("%s%4d %s %d", pfx, current,
4863 			    echo->echo_with_white ? "ECHO" : "ECHON",
4864 			    echo->echo_count);
4865 		}
4866 		break;
4867 	    case ISN_EXECUTE:
4868 		smsg("%s%4d EXECUTE %lld", pfx, current,
4869 					    (varnumber_T)(iptr->isn_arg.number));
4870 		break;
4871 	    case ISN_ECHOMSG:
4872 		smsg("%s%4d ECHOMSG %lld", pfx, current,
4873 					    (varnumber_T)(iptr->isn_arg.number));
4874 		break;
4875 	    case ISN_ECHOERR:
4876 		smsg("%s%4d ECHOERR %lld", pfx, current,
4877 					    (varnumber_T)(iptr->isn_arg.number));
4878 		break;
4879 	    case ISN_LOAD:
4880 		{
4881 		    if (iptr->isn_arg.number < 0)
4882 			smsg("%s%4d LOAD arg[%lld]", pfx, current,
4883 				(varnumber_T)(iptr->isn_arg.number
4884 							  + STACK_FRAME_SIZE));
4885 		    else
4886 			smsg("%s%4d LOAD $%lld", pfx, current,
4887 					  (varnumber_T)(iptr->isn_arg.number));
4888 		}
4889 		break;
4890 	    case ISN_LOADOUTER:
4891 		{
4892 		    if (iptr->isn_arg.number < 0)
4893 			smsg("%s%4d LOADOUTER level %d arg[%d]", pfx, current,
4894 				iptr->isn_arg.outer.outer_depth,
4895 				iptr->isn_arg.outer.outer_idx
4896 							  + STACK_FRAME_SIZE);
4897 		    else
4898 			smsg("%s%4d LOADOUTER level %d $%d", pfx, current,
4899 					      iptr->isn_arg.outer.outer_depth,
4900 					      iptr->isn_arg.outer.outer_idx);
4901 		}
4902 		break;
4903 	    case ISN_LOADV:
4904 		smsg("%s%4d LOADV v:%s", pfx, current,
4905 				       get_vim_var_name(iptr->isn_arg.number));
4906 		break;
4907 	    case ISN_LOADSCRIPT:
4908 		{
4909 		    scriptref_T	*sref = iptr->isn_arg.script.scriptref;
4910 		    scriptitem_T *si = SCRIPT_ITEM(sref->sref_sid);
4911 		    svar_T *sv = ((svar_T *)si->sn_var_vals.ga_data)
4912 							      + sref->sref_idx;
4913 
4914 		    smsg("%s%4d LOADSCRIPT %s-%d from %s", pfx, current,
4915 					    sv->sv_name,
4916 					    sref->sref_idx,
4917 					    si->sn_name);
4918 		}
4919 		break;
4920 	    case ISN_LOADS:
4921 		{
4922 		    scriptitem_T *si = SCRIPT_ITEM(
4923 					       iptr->isn_arg.loadstore.ls_sid);
4924 
4925 		    smsg("%s%4d LOADS s:%s from %s", pfx, current,
4926 				 iptr->isn_arg.loadstore.ls_name, si->sn_name);
4927 		}
4928 		break;
4929 	    case ISN_LOADAUTO:
4930 		smsg("%s%4d LOADAUTO %s", pfx, current, iptr->isn_arg.string);
4931 		break;
4932 	    case ISN_LOADG:
4933 		smsg("%s%4d LOADG g:%s", pfx, current, iptr->isn_arg.string);
4934 		break;
4935 	    case ISN_LOADB:
4936 		smsg("%s%4d LOADB b:%s", pfx, current, iptr->isn_arg.string);
4937 		break;
4938 	    case ISN_LOADW:
4939 		smsg("%s%4d LOADW w:%s", pfx, current, iptr->isn_arg.string);
4940 		break;
4941 	    case ISN_LOADT:
4942 		smsg("%s%4d LOADT t:%s", pfx, current, iptr->isn_arg.string);
4943 		break;
4944 	    case ISN_LOADGDICT:
4945 		smsg("%s%4d LOAD g:", pfx, current);
4946 		break;
4947 	    case ISN_LOADBDICT:
4948 		smsg("%s%4d LOAD b:", pfx, current);
4949 		break;
4950 	    case ISN_LOADWDICT:
4951 		smsg("%s%4d LOAD w:", pfx, current);
4952 		break;
4953 	    case ISN_LOADTDICT:
4954 		smsg("%s%4d LOAD t:", pfx, current);
4955 		break;
4956 	    case ISN_LOADOPT:
4957 		smsg("%s%4d LOADOPT %s", pfx, current, iptr->isn_arg.string);
4958 		break;
4959 	    case ISN_LOADENV:
4960 		smsg("%s%4d LOADENV %s", pfx, current, iptr->isn_arg.string);
4961 		break;
4962 	    case ISN_LOADREG:
4963 		smsg("%s%4d LOADREG @%c", pfx, current, (int)(iptr->isn_arg.number));
4964 		break;
4965 
4966 	    case ISN_STORE:
4967 		if (iptr->isn_arg.number < 0)
4968 		    smsg("%s%4d STORE arg[%lld]", pfx, current,
4969 				      iptr->isn_arg.number + STACK_FRAME_SIZE);
4970 		else
4971 		    smsg("%s%4d STORE $%lld", pfx, current, iptr->isn_arg.number);
4972 		break;
4973 	    case ISN_STOREOUTER:
4974 		{
4975 		if (iptr->isn_arg.number < 0)
4976 		    smsg("%s%4d STOREOUTEr level %d arg[%d]", pfx, current,
4977 			    iptr->isn_arg.outer.outer_depth,
4978 			    iptr->isn_arg.outer.outer_idx + STACK_FRAME_SIZE);
4979 		else
4980 		    smsg("%s%4d STOREOUTER level %d $%d", pfx, current,
4981 			    iptr->isn_arg.outer.outer_depth,
4982 			    iptr->isn_arg.outer.outer_idx);
4983 		}
4984 		break;
4985 	    case ISN_STOREV:
4986 		smsg("%s%4d STOREV v:%s", pfx, current,
4987 				       get_vim_var_name(iptr->isn_arg.number));
4988 		break;
4989 	    case ISN_STOREAUTO:
4990 		smsg("%s%4d STOREAUTO %s", pfx, current, iptr->isn_arg.string);
4991 		break;
4992 	    case ISN_STOREG:
4993 		smsg("%s%4d STOREG %s", pfx, current, iptr->isn_arg.string);
4994 		break;
4995 	    case ISN_STOREB:
4996 		smsg("%s%4d STOREB %s", pfx, current, iptr->isn_arg.string);
4997 		break;
4998 	    case ISN_STOREW:
4999 		smsg("%s%4d STOREW %s", pfx, current, iptr->isn_arg.string);
5000 		break;
5001 	    case ISN_STORET:
5002 		smsg("%s%4d STORET %s", pfx, current, iptr->isn_arg.string);
5003 		break;
5004 	    case ISN_STORES:
5005 		{
5006 		    scriptitem_T *si = SCRIPT_ITEM(
5007 					       iptr->isn_arg.loadstore.ls_sid);
5008 
5009 		    smsg("%s%4d STORES %s in %s", pfx, current,
5010 				 iptr->isn_arg.loadstore.ls_name, si->sn_name);
5011 		}
5012 		break;
5013 	    case ISN_STORESCRIPT:
5014 		{
5015 		    scriptref_T	*sref = iptr->isn_arg.script.scriptref;
5016 		    scriptitem_T *si = SCRIPT_ITEM(sref->sref_sid);
5017 		    svar_T *sv = ((svar_T *)si->sn_var_vals.ga_data)
5018 							      + sref->sref_idx;
5019 
5020 		    smsg("%s%4d STORESCRIPT %s-%d in %s", pfx, current,
5021 					     sv->sv_name,
5022 					     sref->sref_idx,
5023 					     si->sn_name);
5024 		}
5025 		break;
5026 	    case ISN_STOREOPT:
5027 		smsg("%s%4d STOREOPT &%s", pfx, current,
5028 					       iptr->isn_arg.storeopt.so_name);
5029 		break;
5030 	    case ISN_STOREENV:
5031 		smsg("%s%4d STOREENV $%s", pfx, current, iptr->isn_arg.string);
5032 		break;
5033 	    case ISN_STOREREG:
5034 		smsg("%s%4d STOREREG @%c", pfx, current, (int)iptr->isn_arg.number);
5035 		break;
5036 	    case ISN_STORENR:
5037 		smsg("%s%4d STORE %lld in $%d", pfx, current,
5038 				iptr->isn_arg.storenr.stnr_val,
5039 				iptr->isn_arg.storenr.stnr_idx);
5040 		break;
5041 
5042 	    case ISN_STOREINDEX:
5043 		smsg("%s%4d STOREINDEX %s", pfx, current,
5044 					  vartype_name(iptr->isn_arg.vartype));
5045 		break;
5046 
5047 	    case ISN_STORERANGE:
5048 		smsg("%s%4d STORERANGE", pfx, current);
5049 		break;
5050 
5051 	    // constants
5052 	    case ISN_PUSHNR:
5053 		smsg("%s%4d PUSHNR %lld", pfx, current,
5054 					    (varnumber_T)(iptr->isn_arg.number));
5055 		break;
5056 	    case ISN_PUSHBOOL:
5057 	    case ISN_PUSHSPEC:
5058 		smsg("%s%4d PUSH %s", pfx, current,
5059 				   get_var_special_name(iptr->isn_arg.number));
5060 		break;
5061 	    case ISN_PUSHF:
5062 #ifdef FEAT_FLOAT
5063 		smsg("%s%4d PUSHF %g", pfx, current, iptr->isn_arg.fnumber);
5064 #endif
5065 		break;
5066 	    case ISN_PUSHS:
5067 		smsg("%s%4d PUSHS \"%s\"", pfx, current, iptr->isn_arg.string);
5068 		break;
5069 	    case ISN_PUSHBLOB:
5070 		{
5071 		    char_u	*r;
5072 		    char_u	numbuf[NUMBUFLEN];
5073 		    char_u	*tofree;
5074 
5075 		    r = blob2string(iptr->isn_arg.blob, &tofree, numbuf);
5076 		    smsg("%s%4d PUSHBLOB %s", pfx, current, r);
5077 		    vim_free(tofree);
5078 		}
5079 		break;
5080 	    case ISN_PUSHFUNC:
5081 		{
5082 		    char *name = (char *)iptr->isn_arg.string;
5083 
5084 		    smsg("%s%4d PUSHFUNC \"%s\"", pfx, current,
5085 					       name == NULL ? "[none]" : name);
5086 		}
5087 		break;
5088 	    case ISN_PUSHCHANNEL:
5089 #ifdef FEAT_JOB_CHANNEL
5090 		{
5091 		    channel_T *channel = iptr->isn_arg.channel;
5092 
5093 		    smsg("%s%4d PUSHCHANNEL %d", pfx, current,
5094 					 channel == NULL ? 0 : channel->ch_id);
5095 		}
5096 #endif
5097 		break;
5098 	    case ISN_PUSHJOB:
5099 #ifdef FEAT_JOB_CHANNEL
5100 		{
5101 		    typval_T	tv;
5102 		    char_u	*name;
5103 		    char_u	buf[NUMBUFLEN];
5104 
5105 		    tv.v_type = VAR_JOB;
5106 		    tv.vval.v_job = iptr->isn_arg.job;
5107 		    name = job_to_string_buf(&tv, buf);
5108 		    smsg("%s%4d PUSHJOB \"%s\"", pfx, current, name);
5109 		}
5110 #endif
5111 		break;
5112 	    case ISN_PUSHEXC:
5113 		smsg("%s%4d PUSH v:exception", pfx, current);
5114 		break;
5115 	    case ISN_UNLET:
5116 		smsg("%s%4d UNLET%s %s", pfx, current,
5117 			iptr->isn_arg.unlet.ul_forceit ? "!" : "",
5118 			iptr->isn_arg.unlet.ul_name);
5119 		break;
5120 	    case ISN_UNLETENV:
5121 		smsg("%s%4d UNLETENV%s $%s", pfx, current,
5122 			iptr->isn_arg.unlet.ul_forceit ? "!" : "",
5123 			iptr->isn_arg.unlet.ul_name);
5124 		break;
5125 	    case ISN_UNLETINDEX:
5126 		smsg("%s%4d UNLETINDEX", pfx, current);
5127 		break;
5128 	    case ISN_UNLETRANGE:
5129 		smsg("%s%4d UNLETRANGE", pfx, current);
5130 		break;
5131 	    case ISN_LOCKCONST:
5132 		smsg("%s%4d LOCKCONST", pfx, current);
5133 		break;
5134 	    case ISN_NEWLIST:
5135 		smsg("%s%4d NEWLIST size %lld", pfx, current,
5136 					    (varnumber_T)(iptr->isn_arg.number));
5137 		break;
5138 	    case ISN_NEWDICT:
5139 		smsg("%s%4d NEWDICT size %lld", pfx, current,
5140 					    (varnumber_T)(iptr->isn_arg.number));
5141 		break;
5142 
5143 	    // function call
5144 	    case ISN_BCALL:
5145 		{
5146 		    cbfunc_T	*cbfunc = &iptr->isn_arg.bfunc;
5147 
5148 		    smsg("%s%4d BCALL %s(argc %d)", pfx, current,
5149 			    internal_func_name(cbfunc->cbf_idx),
5150 			    cbfunc->cbf_argcount);
5151 		}
5152 		break;
5153 	    case ISN_DCALL:
5154 		{
5155 		    cdfunc_T	*cdfunc = &iptr->isn_arg.dfunc;
5156 		    dfunc_T	*df = ((dfunc_T *)def_functions.ga_data)
5157 							     + cdfunc->cdf_idx;
5158 
5159 		    smsg("%s%4d DCALL %s(argc %d)", pfx, current,
5160 			    df->df_ufunc->uf_name_exp != NULL
5161 				? df->df_ufunc->uf_name_exp
5162 				: df->df_ufunc->uf_name, cdfunc->cdf_argcount);
5163 		}
5164 		break;
5165 	    case ISN_UCALL:
5166 		{
5167 		    cufunc_T	*cufunc = &iptr->isn_arg.ufunc;
5168 
5169 		    smsg("%s%4d UCALL %s(argc %d)", pfx, current,
5170 				       cufunc->cuf_name, cufunc->cuf_argcount);
5171 		}
5172 		break;
5173 	    case ISN_PCALL:
5174 		{
5175 		    cpfunc_T	*cpfunc = &iptr->isn_arg.pfunc;
5176 
5177 		    smsg("%s%4d PCALL%s (argc %d)", pfx, current,
5178 			   cpfunc->cpf_top ? " top" : "", cpfunc->cpf_argcount);
5179 		}
5180 		break;
5181 	    case ISN_PCALL_END:
5182 		smsg("%s%4d PCALL end", pfx, current);
5183 		break;
5184 	    case ISN_RETURN:
5185 		smsg("%s%4d RETURN", pfx, current);
5186 		break;
5187 	    case ISN_RETURN_VOID:
5188 		smsg("%s%4d RETURN void", pfx, current);
5189 		break;
5190 	    case ISN_FUNCREF:
5191 		{
5192 		    funcref_T	*funcref = &iptr->isn_arg.funcref;
5193 		    dfunc_T	*df = ((dfunc_T *)def_functions.ga_data)
5194 							    + funcref->fr_func;
5195 
5196 		    smsg("%s%4d FUNCREF %s", pfx, current, df->df_ufunc->uf_name);
5197 		}
5198 		break;
5199 
5200 	    case ISN_NEWFUNC:
5201 		{
5202 		    newfunc_T	*newfunc = &iptr->isn_arg.newfunc;
5203 
5204 		    smsg("%s%4d NEWFUNC %s %s", pfx, current,
5205 				       newfunc->nf_lambda, newfunc->nf_global);
5206 		}
5207 		break;
5208 
5209 	    case ISN_DEF:
5210 		{
5211 		    char_u *name = iptr->isn_arg.string;
5212 
5213 		    smsg("%s%4d DEF %s", pfx, current,
5214 					   name == NULL ? (char_u *)"" : name);
5215 		}
5216 		break;
5217 
5218 	    case ISN_JUMP:
5219 		{
5220 		    char *when = "?";
5221 
5222 		    switch (iptr->isn_arg.jump.jump_when)
5223 		    {
5224 			case JUMP_ALWAYS:
5225 			    when = "JUMP";
5226 			    break;
5227 			case JUMP_AND_KEEP_IF_TRUE:
5228 			    when = "JUMP_AND_KEEP_IF_TRUE";
5229 			    break;
5230 			case JUMP_IF_FALSE:
5231 			    when = "JUMP_IF_FALSE";
5232 			    break;
5233 			case JUMP_AND_KEEP_IF_FALSE:
5234 			    when = "JUMP_AND_KEEP_IF_FALSE";
5235 			    break;
5236 			case JUMP_IF_COND_FALSE:
5237 			    when = "JUMP_IF_COND_FALSE";
5238 			    break;
5239 			case JUMP_IF_COND_TRUE:
5240 			    when = "JUMP_IF_COND_TRUE";
5241 			    break;
5242 		    }
5243 		    smsg("%s%4d %s -> %d", pfx, current, when,
5244 						iptr->isn_arg.jump.jump_where);
5245 		}
5246 		break;
5247 
5248 	    case ISN_JUMP_IF_ARG_SET:
5249 		smsg("%s%4d JUMP_IF_ARG_SET arg[%d] -> %d", pfx, current,
5250 			 iptr->isn_arg.jumparg.jump_arg_off + STACK_FRAME_SIZE,
5251 						iptr->isn_arg.jump.jump_where);
5252 		break;
5253 
5254 	    case ISN_FOR:
5255 		{
5256 		    forloop_T *forloop = &iptr->isn_arg.forloop;
5257 
5258 		    smsg("%s%4d FOR $%d -> %d", pfx, current,
5259 					   forloop->for_idx, forloop->for_end);
5260 		}
5261 		break;
5262 
5263 	    case ISN_TRY:
5264 		{
5265 		    try_T *try = &iptr->isn_arg.try;
5266 
5267 		    if (try->try_ref->try_finally == 0)
5268 			smsg("%s%4d TRY catch -> %d, endtry -> %d",
5269 				pfx, current,
5270 				try->try_ref->try_catch,
5271 				try->try_ref->try_endtry);
5272 		    else
5273 			smsg("%s%4d TRY catch -> %d, finally -> %d, endtry -> %d",
5274 				pfx, current,
5275 				try->try_ref->try_catch,
5276 				try->try_ref->try_finally,
5277 				try->try_ref->try_endtry);
5278 		}
5279 		break;
5280 	    case ISN_CATCH:
5281 		// TODO
5282 		smsg("%s%4d CATCH", pfx, current);
5283 		break;
5284 	    case ISN_TRYCONT:
5285 		{
5286 		    trycont_T *trycont = &iptr->isn_arg.trycont;
5287 
5288 		    smsg("%s%4d TRY-CONTINUE %d level%s -> %d", pfx, current,
5289 				      trycont->tct_levels,
5290 				      trycont->tct_levels == 1 ? "" : "s",
5291 				      trycont->tct_where);
5292 		}
5293 		break;
5294 	    case ISN_FINALLY:
5295 		smsg("%s%4d FINALLY", pfx, current);
5296 		break;
5297 	    case ISN_ENDTRY:
5298 		smsg("%s%4d ENDTRY", pfx, current);
5299 		break;
5300 	    case ISN_THROW:
5301 		smsg("%s%4d THROW", pfx, current);
5302 		break;
5303 
5304 	    // expression operations on number
5305 	    case ISN_OPNR:
5306 	    case ISN_OPFLOAT:
5307 	    case ISN_OPANY:
5308 		{
5309 		    char *what;
5310 		    char *ins;
5311 
5312 		    switch (iptr->isn_arg.op.op_type)
5313 		    {
5314 			case EXPR_MULT: what = "*"; break;
5315 			case EXPR_DIV: what = "/"; break;
5316 			case EXPR_REM: what = "%"; break;
5317 			case EXPR_SUB: what = "-"; break;
5318 			case EXPR_ADD: what = "+"; break;
5319 			default:       what = "???"; break;
5320 		    }
5321 		    switch (iptr->isn_type)
5322 		    {
5323 			case ISN_OPNR: ins = "OPNR"; break;
5324 			case ISN_OPFLOAT: ins = "OPFLOAT"; break;
5325 			case ISN_OPANY: ins = "OPANY"; break;
5326 			default: ins = "???"; break;
5327 		    }
5328 		    smsg("%s%4d %s %s", pfx, current, ins, what);
5329 		}
5330 		break;
5331 
5332 	    case ISN_COMPAREBOOL:
5333 	    case ISN_COMPARESPECIAL:
5334 	    case ISN_COMPARENR:
5335 	    case ISN_COMPAREFLOAT:
5336 	    case ISN_COMPARESTRING:
5337 	    case ISN_COMPAREBLOB:
5338 	    case ISN_COMPARELIST:
5339 	    case ISN_COMPAREDICT:
5340 	    case ISN_COMPAREFUNC:
5341 	    case ISN_COMPAREANY:
5342 		   {
5343 		       char *p;
5344 		       char buf[10];
5345 		       char *type;
5346 
5347 		       switch (iptr->isn_arg.op.op_type)
5348 		       {
5349 			   case EXPR_EQUAL:	 p = "=="; break;
5350 			   case EXPR_NEQUAL:    p = "!="; break;
5351 			   case EXPR_GREATER:   p = ">"; break;
5352 			   case EXPR_GEQUAL:    p = ">="; break;
5353 			   case EXPR_SMALLER:   p = "<"; break;
5354 			   case EXPR_SEQUAL:    p = "<="; break;
5355 			   case EXPR_MATCH:	 p = "=~"; break;
5356 			   case EXPR_IS:	 p = "is"; break;
5357 			   case EXPR_ISNOT:	 p = "isnot"; break;
5358 			   case EXPR_NOMATCH:	 p = "!~"; break;
5359 			   default:  p = "???"; break;
5360 		       }
5361 		       STRCPY(buf, p);
5362 		       if (iptr->isn_arg.op.op_ic == TRUE)
5363 			   strcat(buf, "?");
5364 		       switch(iptr->isn_type)
5365 		       {
5366 			   case ISN_COMPAREBOOL: type = "COMPAREBOOL"; break;
5367 			   case ISN_COMPARESPECIAL:
5368 						 type = "COMPARESPECIAL"; break;
5369 			   case ISN_COMPARENR: type = "COMPARENR"; break;
5370 			   case ISN_COMPAREFLOAT: type = "COMPAREFLOAT"; break;
5371 			   case ISN_COMPARESTRING:
5372 						  type = "COMPARESTRING"; break;
5373 			   case ISN_COMPAREBLOB: type = "COMPAREBLOB"; break;
5374 			   case ISN_COMPARELIST: type = "COMPARELIST"; break;
5375 			   case ISN_COMPAREDICT: type = "COMPAREDICT"; break;
5376 			   case ISN_COMPAREFUNC: type = "COMPAREFUNC"; break;
5377 			   case ISN_COMPAREANY: type = "COMPAREANY"; break;
5378 			   default: type = "???"; break;
5379 		       }
5380 
5381 		       smsg("%s%4d %s %s", pfx, current, type, buf);
5382 		   }
5383 		   break;
5384 
5385 	    case ISN_ADDLIST: smsg("%s%4d ADDLIST", pfx, current); break;
5386 	    case ISN_ADDBLOB: smsg("%s%4d ADDBLOB", pfx, current); break;
5387 
5388 	    // expression operations
5389 	    case ISN_CONCAT: smsg("%s%4d CONCAT", pfx, current); break;
5390 	    case ISN_STRINDEX: smsg("%s%4d STRINDEX", pfx, current); break;
5391 	    case ISN_STRSLICE: smsg("%s%4d STRSLICE", pfx, current); break;
5392 	    case ISN_BLOBINDEX: smsg("%s%4d BLOBINDEX", pfx, current); break;
5393 	    case ISN_BLOBSLICE: smsg("%s%4d BLOBSLICE", pfx, current); break;
5394 	    case ISN_LISTAPPEND: smsg("%s%4d LISTAPPEND", pfx, current); break;
5395 	    case ISN_BLOBAPPEND: smsg("%s%4d BLOBAPPEND", pfx, current); break;
5396 	    case ISN_LISTINDEX: smsg("%s%4d LISTINDEX", pfx, current); break;
5397 	    case ISN_LISTSLICE: smsg("%s%4d LISTSLICE", pfx, current); break;
5398 	    case ISN_ANYINDEX: smsg("%s%4d ANYINDEX", pfx, current); break;
5399 	    case ISN_ANYSLICE: smsg("%s%4d ANYSLICE", pfx, current); break;
5400 	    case ISN_SLICE: smsg("%s%4d SLICE %lld",
5401 					 pfx, current, iptr->isn_arg.number); break;
5402 	    case ISN_GETITEM: smsg("%s%4d ITEM %lld%s", pfx, current,
5403 					 iptr->isn_arg.getitem.gi_index,
5404 					 iptr->isn_arg.getitem.gi_with_op ?
5405 						       " with op" : ""); break;
5406 	    case ISN_MEMBER: smsg("%s%4d MEMBER", pfx, current); break;
5407 	    case ISN_STRINGMEMBER: smsg("%s%4d MEMBER %s", pfx, current,
5408 						  iptr->isn_arg.string); break;
5409 	    case ISN_NEGATENR: smsg("%s%4d NEGATENR", pfx, current); break;
5410 
5411 	    case ISN_CHECKNR: smsg("%s%4d CHECKNR", pfx, current); break;
5412 	    case ISN_CHECKTYPE:
5413 		  {
5414 		      checktype_T *ct = &iptr->isn_arg.type;
5415 		      char *tofree;
5416 
5417 		      if (ct->ct_arg_idx == 0)
5418 			  smsg("%s%4d CHECKTYPE %s stack[%d]", pfx, current,
5419 					  type_name(ct->ct_type, &tofree),
5420 					  (int)ct->ct_off);
5421 		      else
5422 			  smsg("%s%4d CHECKTYPE %s stack[%d] arg %d", pfx, current,
5423 					  type_name(ct->ct_type, &tofree),
5424 					  (int)ct->ct_off,
5425 					  (int)ct->ct_arg_idx);
5426 		      vim_free(tofree);
5427 		      break;
5428 		  }
5429 	    case ISN_CHECKLEN: smsg("%s%4d CHECKLEN %s%d", pfx, current,
5430 				iptr->isn_arg.checklen.cl_more_OK ? ">= " : "",
5431 				iptr->isn_arg.checklen.cl_min_len);
5432 			       break;
5433 	    case ISN_SETTYPE:
5434 		  {
5435 		      char *tofree;
5436 
5437 		      smsg("%s%4d SETTYPE %s", pfx, current,
5438 			      type_name(iptr->isn_arg.type.ct_type, &tofree));
5439 		      vim_free(tofree);
5440 		      break;
5441 		  }
5442 	    case ISN_COND2BOOL: smsg("%s%4d COND2BOOL", pfx, current); break;
5443 	    case ISN_2BOOL: if (iptr->isn_arg.tobool.invert)
5444 				smsg("%s%4d INVERT %d (!val)", pfx, current,
5445 					 iptr->isn_arg.tobool.offset);
5446 			    else
5447 				smsg("%s%4d 2BOOL %d (!!val)", pfx, current,
5448 					 iptr->isn_arg.tobool.offset);
5449 			    break;
5450 	    case ISN_2STRING: smsg("%s%4d 2STRING stack[%lld]", pfx, current,
5451 				 (varnumber_T)(iptr->isn_arg.tostring.offset));
5452 			      break;
5453 	    case ISN_2STRING_ANY: smsg("%s%4d 2STRING_ANY stack[%lld]",
5454 								  pfx, current,
5455 				 (varnumber_T)(iptr->isn_arg.tostring.offset));
5456 			      break;
5457 	    case ISN_RANGE: smsg("%s%4d RANGE %s", pfx, current,
5458 							 iptr->isn_arg.string);
5459 			    break;
5460 	    case ISN_PUT:
5461 	        if (iptr->isn_arg.put.put_lnum == LNUM_VARIABLE_RANGE_ABOVE)
5462 		    smsg("%s%4d PUT %c above range",
5463 				  pfx, current, iptr->isn_arg.put.put_regname);
5464 		else if (iptr->isn_arg.put.put_lnum == LNUM_VARIABLE_RANGE)
5465 		    smsg("%s%4d PUT %c range",
5466 				  pfx, current, iptr->isn_arg.put.put_regname);
5467 		else
5468 		    smsg("%s%4d PUT %c %ld", pfx, current,
5469 						 iptr->isn_arg.put.put_regname,
5470 					     (long)iptr->isn_arg.put.put_lnum);
5471 		break;
5472 
5473 		// TODO: summarize modifiers
5474 	    case ISN_CMDMOD:
5475 		{
5476 		    char_u  *buf;
5477 		    size_t  len = produce_cmdmods(
5478 				  NULL, iptr->isn_arg.cmdmod.cf_cmdmod, FALSE);
5479 
5480 		    buf = alloc(len + 1);
5481 		    if (buf != NULL)
5482 		    {
5483 			(void)produce_cmdmods(
5484 				   buf, iptr->isn_arg.cmdmod.cf_cmdmod, FALSE);
5485 			smsg("%s%4d CMDMOD %s", pfx, current, buf);
5486 			vim_free(buf);
5487 		    }
5488 		    break;
5489 		}
5490 	    case ISN_CMDMOD_REV: smsg("%s%4d CMDMOD_REV", pfx, current); break;
5491 
5492 	    case ISN_PROF_START:
5493 		 smsg("%s%4d PROFILE START line %d", pfx, current,
5494 							       iptr->isn_lnum);
5495 		 break;
5496 
5497 	    case ISN_PROF_END:
5498 		smsg("%s%4d PROFILE END", pfx, current);
5499 		break;
5500 
5501 	    case ISN_DEBUG:
5502 		smsg("%s%4d DEBUG line %d-%d varcount %lld", pfx, current,
5503 			iptr->isn_arg.debug.dbg_break_lnum + 1,
5504 			iptr->isn_lnum,
5505 			iptr->isn_arg.debug.dbg_var_names_len);
5506 		break;
5507 
5508 	    case ISN_UNPACK: smsg("%s%4d UNPACK %d%s", pfx, current,
5509 			iptr->isn_arg.unpack.unp_count,
5510 			iptr->isn_arg.unpack.unp_semicolon ? " semicolon" : "");
5511 			      break;
5512 	    case ISN_SHUFFLE: smsg("%s%4d SHUFFLE %d up %d", pfx, current,
5513 					 iptr->isn_arg.shuffle.shfl_item,
5514 					 iptr->isn_arg.shuffle.shfl_up);
5515 			      break;
5516 	    case ISN_DROP: smsg("%s%4d DROP", pfx, current); break;
5517 
5518 	    case ISN_FINISH: // End of list of instructions for ISN_SUBSTITUTE.
5519 			   return;
5520 	}
5521 
5522 	out_flush();	    // output one line at a time
5523 	ui_breakcheck();
5524 	if (got_int)
5525 	    break;
5526     }
5527 }
5528 
5529 /*
5530  * Handle command line completion for the :disassemble command.
5531  */
5532     void
5533 set_context_in_disassemble_cmd(expand_T *xp, char_u *arg)
5534 {
5535     char_u	*p;
5536 
5537     // Default: expand user functions, "debug" and "profile"
5538     xp->xp_context = EXPAND_DISASSEMBLE;
5539     xp->xp_pattern = arg;
5540 
5541     // first argument already typed: only user function names
5542     if (*arg != NUL && *(p = skiptowhite(arg)) != NUL)
5543     {
5544 	xp->xp_context = EXPAND_USER_FUNC;
5545 	xp->xp_pattern = skipwhite(p);
5546     }
5547 }
5548 
5549 /*
5550  * Function given to ExpandGeneric() to obtain the list of :disassemble
5551  * arguments.
5552  */
5553     char_u *
5554 get_disassemble_argument(expand_T *xp, int idx)
5555 {
5556     if (idx == 0)
5557 	return (char_u *)"debug";
5558     if (idx == 1)
5559 	return (char_u *)"profile";
5560     return get_user_func_name(xp, idx - 2);
5561 }
5562 
5563 /*
5564  * ":disassemble".
5565  * We don't really need this at runtime, but we do have tests that require it,
5566  * so always include this.
5567  */
5568     void
5569 ex_disassemble(exarg_T *eap)
5570 {
5571     char_u	*arg = eap->arg;
5572     char_u	*fname;
5573     ufunc_T	*ufunc;
5574     dfunc_T	*dfunc;
5575     isn_T	*instr;
5576     int		instr_count;
5577     int		is_global = FALSE;
5578     compiletype_T compile_type = CT_NONE;
5579 
5580     if (STRNCMP(arg, "profile", 7) == 0)
5581     {
5582 	compile_type = CT_PROFILE;
5583 	arg = skipwhite(arg + 7);
5584     }
5585     else if (STRNCMP(arg, "debug", 5) == 0)
5586     {
5587 	compile_type = CT_DEBUG;
5588 	arg = skipwhite(arg + 5);
5589     }
5590 
5591     if (STRNCMP(arg, "<lambda>", 8) == 0)
5592     {
5593 	arg += 8;
5594 	(void)getdigits(&arg);
5595 	fname = vim_strnsave(eap->arg, arg - eap->arg);
5596     }
5597     else
5598 	fname = trans_function_name(&arg, &is_global, FALSE,
5599 		      TFN_INT | TFN_QUIET | TFN_NO_AUTOLOAD, NULL, NULL, NULL);
5600     if (fname == NULL)
5601     {
5602 	semsg(_(e_invarg2), eap->arg);
5603 	return;
5604     }
5605 
5606     ufunc = find_func(fname, is_global, NULL);
5607     if (ufunc == NULL)
5608     {
5609 	char_u *p = untrans_function_name(fname);
5610 
5611 	if (p != NULL)
5612 	    // Try again without making it script-local.
5613 	    ufunc = find_func(p, FALSE, NULL);
5614     }
5615     vim_free(fname);
5616     if (ufunc == NULL)
5617     {
5618 	semsg(_(e_cannot_find_function_str), eap->arg);
5619 	return;
5620     }
5621     if (func_needs_compiling(ufunc, compile_type)
5622 	    && compile_def_function(ufunc, FALSE, compile_type, NULL) == FAIL)
5623 	return;
5624     if (ufunc->uf_def_status != UF_COMPILED)
5625     {
5626 	semsg(_(e_function_is_not_compiled_str), eap->arg);
5627 	return;
5628     }
5629     if (ufunc->uf_name_exp != NULL)
5630 	msg((char *)ufunc->uf_name_exp);
5631     else
5632 	msg((char *)ufunc->uf_name);
5633 
5634     dfunc = ((dfunc_T *)def_functions.ga_data) + ufunc->uf_dfunc_idx;
5635     switch (compile_type)
5636     {
5637 	case CT_PROFILE:
5638 #ifdef FEAT_PROFILE
5639 	    instr = dfunc->df_instr_prof;
5640 	    instr_count = dfunc->df_instr_prof_count;
5641 	    break;
5642 #endif
5643 	    // FALLTHROUGH
5644 	case CT_NONE:
5645 	    instr = dfunc->df_instr;
5646 	    instr_count = dfunc->df_instr_count;
5647 	    break;
5648 	case CT_DEBUG:
5649 	    instr = dfunc->df_instr_debug;
5650 	    instr_count = dfunc->df_instr_debug_count;
5651 	    break;
5652     }
5653 
5654     list_instructions("", instr, instr_count, ufunc);
5655 }
5656 
5657 /*
5658  * Return TRUE when "tv" is not falsy: non-zero, non-empty string, non-empty
5659  * list, etc.  Mostly like what JavaScript does, except that empty list and
5660  * empty dictionary are FALSE.
5661  */
5662     int
5663 tv2bool(typval_T *tv)
5664 {
5665     switch (tv->v_type)
5666     {
5667 	case VAR_NUMBER:
5668 	    return tv->vval.v_number != 0;
5669 	case VAR_FLOAT:
5670 #ifdef FEAT_FLOAT
5671 	    return tv->vval.v_float != 0.0;
5672 #else
5673 	    break;
5674 #endif
5675 	case VAR_PARTIAL:
5676 	    return tv->vval.v_partial != NULL;
5677 	case VAR_FUNC:
5678 	case VAR_STRING:
5679 	    return tv->vval.v_string != NULL && *tv->vval.v_string != NUL;
5680 	case VAR_LIST:
5681 	    return tv->vval.v_list != NULL && tv->vval.v_list->lv_len > 0;
5682 	case VAR_DICT:
5683 	    return tv->vval.v_dict != NULL
5684 				    && tv->vval.v_dict->dv_hashtab.ht_used > 0;
5685 	case VAR_BOOL:
5686 	case VAR_SPECIAL:
5687 	    return tv->vval.v_number == VVAL_TRUE ? TRUE : FALSE;
5688 	case VAR_JOB:
5689 #ifdef FEAT_JOB_CHANNEL
5690 	    return tv->vval.v_job != NULL;
5691 #else
5692 	    break;
5693 #endif
5694 	case VAR_CHANNEL:
5695 #ifdef FEAT_JOB_CHANNEL
5696 	    return tv->vval.v_channel != NULL;
5697 #else
5698 	    break;
5699 #endif
5700 	case VAR_BLOB:
5701 	    return tv->vval.v_blob != NULL && tv->vval.v_blob->bv_ga.ga_len > 0;
5702 	case VAR_UNKNOWN:
5703 	case VAR_ANY:
5704 	case VAR_VOID:
5705 	case VAR_INSTR:
5706 	    break;
5707     }
5708     return FALSE;
5709 }
5710 
5711     void
5712 emsg_using_string_as(typval_T *tv, int as_number)
5713 {
5714     semsg(_(as_number ? e_using_string_as_number_str
5715 						 : e_using_string_as_bool_str),
5716 		       tv->vval.v_string == NULL
5717 					   ? (char_u *)"" : tv->vval.v_string);
5718 }
5719 
5720 /*
5721  * If "tv" is a string give an error and return FAIL.
5722  */
5723     int
5724 check_not_string(typval_T *tv)
5725 {
5726     if (tv->v_type == VAR_STRING)
5727     {
5728 	emsg_using_string_as(tv, TRUE);
5729 	clear_tv(tv);
5730 	return FAIL;
5731     }
5732     return OK;
5733 }
5734 
5735 
5736 #endif // FEAT_EVAL
5737