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Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001/* 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 * vim9compile.c: :def and dealing with 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#define DEFINE_VIM9_GLOBALS
24#include "vim9.h"
25
26/*
27 * Chain of jump instructions where the end label needs to be set.
28 */
29typedef struct endlabel_S endlabel_T;
30struct endlabel_S {
31 endlabel_T *el_next; // chain end_label locations
32 int el_end_label; // instruction idx where to set end
33};
34
35/*
36 * info specific for the scope of :if / elseif / else
37 */
38typedef struct {
39 int is_if_label; // instruction idx at IF or ELSEIF
40 endlabel_T *is_end_label; // instructions to set end label
41} ifscope_T;
42
43/*
44 * info specific for the scope of :while
45 */
46typedef struct {
47 int ws_top_label; // instruction idx at WHILE
48 endlabel_T *ws_end_label; // instructions to set end
49} whilescope_T;
50
51/*
52 * info specific for the scope of :for
53 */
54typedef struct {
55 int fs_top_label; // instruction idx at FOR
56 endlabel_T *fs_end_label; // break instructions
57} forscope_T;
58
59/*
60 * info specific for the scope of :try
61 */
62typedef struct {
63 int ts_try_label; // instruction idx at TRY
64 endlabel_T *ts_end_label; // jump to :finally or :endtry
65 int ts_catch_label; // instruction idx of last CATCH
66 int ts_caught_all; // "catch" without argument encountered
67} tryscope_T;
68
69typedef enum {
70 NO_SCOPE,
71 IF_SCOPE,
72 WHILE_SCOPE,
73 FOR_SCOPE,
74 TRY_SCOPE,
75 BLOCK_SCOPE
76} scopetype_T;
77
78/*
79 * Info for one scope, pointed to by "ctx_scope".
80 */
81typedef struct scope_S scope_T;
82struct scope_S {
83 scope_T *se_outer; // scope containing this one
84 scopetype_T se_type;
85 int se_local_count; // ctx_locals.ga_len before scope
86 union {
87 ifscope_T se_if;
88 whilescope_T se_while;
89 forscope_T se_for;
90 tryscope_T se_try;
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +010091 } se_u;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +010092};
93
94/*
95 * Entry for "ctx_locals". Used for arguments and local variables.
96 */
97typedef struct {
98 char_u *lv_name;
99 type_T *lv_type;
100 int lv_const; // when TRUE cannot be assigned to
101 int lv_arg; // when TRUE this is an argument
102} lvar_T;
103
104/*
105 * Context for compiling lines of Vim script.
106 * Stores info about the local variables and condition stack.
107 */
108struct cctx_S {
109 ufunc_T *ctx_ufunc; // current function
110 int ctx_lnum; // line number in current function
111 garray_T ctx_instr; // generated instructions
112
113 garray_T ctx_locals; // currently visible local variables
114 int ctx_max_local; // maximum number of locals at one time
115
116 garray_T ctx_imports; // imported items
117
Bram Moolenaara259d8d2020-01-31 20:10:50 +0100118 int ctx_skip; // when TRUE skip commands, when FALSE skip
119 // commands after "else"
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100120 scope_T *ctx_scope; // current scope, NULL at toplevel
121
122 garray_T ctx_type_stack; // type of each item on the stack
123 garray_T *ctx_type_list; // space for adding types
124};
125
126static char e_var_notfound[] = N_("E1001: variable not found: %s");
127static char e_syntax_at[] = N_("E1002: Syntax error at %s");
128
129static int compile_expr1(char_u **arg, cctx_T *cctx);
130static int compile_expr2(char_u **arg, cctx_T *cctx);
131static int compile_expr3(char_u **arg, cctx_T *cctx);
132
133/*
134 * Lookup variable "name" in the local scope and return the index.
135 */
136 static int
137lookup_local(char_u *name, size_t len, cctx_T *cctx)
138{
139 int idx;
140
141 if (len <= 0)
142 return -1;
143 for (idx = 0; idx < cctx->ctx_locals.ga_len; ++idx)
144 {
145 lvar_T *lvar = ((lvar_T *)cctx->ctx_locals.ga_data) + idx;
146
147 if (STRNCMP(name, lvar->lv_name, len) == 0
148 && STRLEN(lvar->lv_name) == len)
149 return idx;
150 }
151 return -1;
152}
153
154/*
155 * Lookup an argument in the current function.
156 * Returns the argument index or -1 if not found.
157 */
158 static int
159lookup_arg(char_u *name, size_t len, cctx_T *cctx)
160{
161 int idx;
162
163 if (len <= 0)
164 return -1;
165 for (idx = 0; idx < cctx->ctx_ufunc->uf_args.ga_len; ++idx)
166 {
167 char_u *arg = FUNCARG(cctx->ctx_ufunc, idx);
168
169 if (STRNCMP(name, arg, len) == 0 && STRLEN(arg) == len)
170 return idx;
171 }
172 return -1;
173}
174
175/*
176 * Lookup a vararg argument in the current function.
177 * Returns TRUE if there is a match.
178 */
179 static int
180lookup_vararg(char_u *name, size_t len, cctx_T *cctx)
181{
182 char_u *va_name = cctx->ctx_ufunc->uf_va_name;
183
184 return len > 0 && va_name != NULL
185 && STRNCMP(name, va_name, len) == 0 && STRLEN(va_name) == len;
186}
187
188/*
189 * Lookup a variable in the current script.
190 * Returns OK or FAIL.
191 */
192 static int
193lookup_script(char_u *name, size_t len)
194{
195 int cc;
196 hashtab_T *ht = &SCRIPT_VARS(current_sctx.sc_sid);
197 dictitem_T *di;
198
199 cc = name[len];
200 name[len] = NUL;
201 di = find_var_in_ht(ht, 0, name, TRUE);
202 name[len] = cc;
203 return di == NULL ? FAIL: OK;
204}
205
206 static type_T *
207get_list_type(type_T *member_type, garray_T *type_list)
208{
209 type_T *type;
210
211 // recognize commonly used types
212 if (member_type->tt_type == VAR_UNKNOWN)
213 return &t_list_any;
214 if (member_type->tt_type == VAR_NUMBER)
215 return &t_list_number;
216 if (member_type->tt_type == VAR_STRING)
217 return &t_list_string;
218
219 // Not a common type, create a new entry.
220 if (ga_grow(type_list, 1) == FAIL)
221 return FAIL;
222 type = ((type_T *)type_list->ga_data) + type_list->ga_len;
223 ++type_list->ga_len;
224 type->tt_type = VAR_LIST;
225 type->tt_member = member_type;
226 return type;
227}
228
229 static type_T *
230get_dict_type(type_T *member_type, garray_T *type_list)
231{
232 type_T *type;
233
234 // recognize commonly used types
235 if (member_type->tt_type == VAR_UNKNOWN)
236 return &t_dict_any;
237 if (member_type->tt_type == VAR_NUMBER)
238 return &t_dict_number;
239 if (member_type->tt_type == VAR_STRING)
240 return &t_dict_string;
241
242 // Not a common type, create a new entry.
243 if (ga_grow(type_list, 1) == FAIL)
244 return FAIL;
245 type = ((type_T *)type_list->ga_data) + type_list->ga_len;
246 ++type_list->ga_len;
247 type->tt_type = VAR_DICT;
248 type->tt_member = member_type;
249 return type;
250}
251
252/////////////////////////////////////////////////////////////////////
253// Following generate_ functions expect the caller to call ga_grow().
254
255/*
256 * Generate an instruction without arguments.
257 * Returns a pointer to the new instruction, NULL if failed.
258 */
259 static isn_T *
260generate_instr(cctx_T *cctx, isntype_T isn_type)
261{
262 garray_T *instr = &cctx->ctx_instr;
263 isn_T *isn;
264
265 if (ga_grow(instr, 1) == FAIL)
266 return NULL;
267 isn = ((isn_T *)instr->ga_data) + instr->ga_len;
268 isn->isn_type = isn_type;
269 isn->isn_lnum = cctx->ctx_lnum + 1;
270 ++instr->ga_len;
271
272 return isn;
273}
274
275/*
276 * Generate an instruction without arguments.
277 * "drop" will be removed from the stack.
278 * Returns a pointer to the new instruction, NULL if failed.
279 */
280 static isn_T *
281generate_instr_drop(cctx_T *cctx, isntype_T isn_type, int drop)
282{
283 garray_T *stack = &cctx->ctx_type_stack;
284
285 stack->ga_len -= drop;
286 return generate_instr(cctx, isn_type);
287}
288
289/*
290 * Generate instruction "isn_type" and put "type" on the type stack.
291 */
292 static isn_T *
293generate_instr_type(cctx_T *cctx, isntype_T isn_type, type_T *type)
294{
295 isn_T *isn;
296 garray_T *stack = &cctx->ctx_type_stack;
297
298 if ((isn = generate_instr(cctx, isn_type)) == NULL)
299 return NULL;
300
301 if (ga_grow(stack, 1) == FAIL)
302 return NULL;
303 ((type_T **)stack->ga_data)[stack->ga_len] = type;
304 ++stack->ga_len;
305
306 return isn;
307}
308
309/*
310 * If type at "offset" isn't already VAR_STRING then generate ISN_2STRING.
311 */
312 static int
313may_generate_2STRING(int offset, cctx_T *cctx)
314{
315 isn_T *isn;
316 garray_T *stack = &cctx->ctx_type_stack;
317 type_T **type = ((type_T **)stack->ga_data) + stack->ga_len + offset;
318
319 if ((*type)->tt_type == VAR_STRING)
320 return OK;
321 *type = &t_string;
322
323 if ((isn = generate_instr(cctx, ISN_2STRING)) == NULL)
324 return FAIL;
325 isn->isn_arg.number = offset;
326
327 return OK;
328}
329
330 static int
331check_number_or_float(vartype_T type1, vartype_T type2, char_u *op)
332{
333 if (!((type1 == VAR_NUMBER || type1 == VAR_FLOAT || type1 == VAR_UNKNOWN)
334 && (type2 == VAR_NUMBER || type2 == VAR_FLOAT
335 || type2 == VAR_UNKNOWN)))
336 {
337 if (*op == '+')
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100338 emsg(_("E1035: wrong argument type for +"));
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100339 else
340 semsg(_("E1036: %c requires number or float arguments"), *op);
341 return FAIL;
342 }
343 return OK;
344}
345
346/*
347 * Generate an instruction with two arguments. The instruction depends on the
348 * type of the arguments.
349 */
350 static int
351generate_two_op(cctx_T *cctx, char_u *op)
352{
353 garray_T *stack = &cctx->ctx_type_stack;
354 type_T *type1;
355 type_T *type2;
356 vartype_T vartype;
357 isn_T *isn;
358
359 // Get the known type of the two items on the stack. If they are matching
360 // use a type-specific instruction. Otherwise fall back to runtime type
361 // checking.
362 type1 = ((type_T **)stack->ga_data)[stack->ga_len - 2];
363 type2 = ((type_T **)stack->ga_data)[stack->ga_len - 1];
364 vartype = VAR_UNKNOWN;
365 if (type1->tt_type == type2->tt_type
366 && (type1->tt_type == VAR_NUMBER
367 || type1->tt_type == VAR_LIST
368#ifdef FEAT_FLOAT
369 || type1->tt_type == VAR_FLOAT
370#endif
371 || type1->tt_type == VAR_BLOB))
372 vartype = type1->tt_type;
373
374 switch (*op)
375 {
376 case '+': if (vartype != VAR_LIST && vartype != VAR_BLOB
377 && check_number_or_float(
378 type1->tt_type, type2->tt_type, op) == FAIL)
379 return FAIL;
380 isn = generate_instr_drop(cctx,
381 vartype == VAR_NUMBER ? ISN_OPNR
382 : vartype == VAR_LIST ? ISN_ADDLIST
383 : vartype == VAR_BLOB ? ISN_ADDBLOB
384#ifdef FEAT_FLOAT
385 : vartype == VAR_FLOAT ? ISN_OPFLOAT
386#endif
387 : ISN_OPANY, 1);
388 if (isn != NULL)
389 isn->isn_arg.op.op_type = EXPR_ADD;
390 break;
391
392 case '-':
393 case '*':
394 case '/': if (check_number_or_float(type1->tt_type, type2->tt_type,
395 op) == FAIL)
396 return FAIL;
397 if (vartype == VAR_NUMBER)
398 isn = generate_instr_drop(cctx, ISN_OPNR, 1);
399#ifdef FEAT_FLOAT
400 else if (vartype == VAR_FLOAT)
401 isn = generate_instr_drop(cctx, ISN_OPFLOAT, 1);
402#endif
403 else
404 isn = generate_instr_drop(cctx, ISN_OPANY, 1);
405 if (isn != NULL)
406 isn->isn_arg.op.op_type = *op == '*'
407 ? EXPR_MULT : *op == '/'? EXPR_DIV : EXPR_SUB;
408 break;
409
410 case '%': if ((type1->tt_type != VAR_UNKNOWN
411 && type1->tt_type != VAR_NUMBER)
412 || (type2->tt_type != VAR_UNKNOWN
413 && type2->tt_type != VAR_NUMBER))
414 {
415 emsg(_("E1035: % requires number arguments"));
416 return FAIL;
417 }
418 isn = generate_instr_drop(cctx,
419 vartype == VAR_NUMBER ? ISN_OPNR : ISN_OPANY, 1);
420 if (isn != NULL)
421 isn->isn_arg.op.op_type = EXPR_REM;
422 break;
423 }
424
425 // correct type of result
426 if (vartype == VAR_UNKNOWN)
427 {
428 type_T *type = &t_any;
429
430#ifdef FEAT_FLOAT
431 // float+number and number+float results in float
432 if ((type1->tt_type == VAR_NUMBER || type1->tt_type == VAR_FLOAT)
433 && (type2->tt_type == VAR_NUMBER || type2->tt_type == VAR_FLOAT))
434 type = &t_float;
435#endif
436 ((type_T **)stack->ga_data)[stack->ga_len - 1] = type;
437 }
438
439 return OK;
440}
441
442/*
443 * Generate an ISN_COMPARE* instruction with a boolean result.
444 */
445 static int
446generate_COMPARE(cctx_T *cctx, exptype_T exptype, int ic)
447{
448 isntype_T isntype = ISN_DROP;
449 isn_T *isn;
450 garray_T *stack = &cctx->ctx_type_stack;
451 vartype_T type1;
452 vartype_T type2;
453
454 // Get the known type of the two items on the stack. If they are matching
455 // use a type-specific instruction. Otherwise fall back to runtime type
456 // checking.
457 type1 = ((type_T **)stack->ga_data)[stack->ga_len - 2]->tt_type;
458 type2 = ((type_T **)stack->ga_data)[stack->ga_len - 1]->tt_type;
459 if (type1 == type2)
460 {
461 switch (type1)
462 {
463 case VAR_BOOL: isntype = ISN_COMPAREBOOL; break;
464 case VAR_SPECIAL: isntype = ISN_COMPARESPECIAL; break;
465 case VAR_NUMBER: isntype = ISN_COMPARENR; break;
466 case VAR_FLOAT: isntype = ISN_COMPAREFLOAT; break;
467 case VAR_STRING: isntype = ISN_COMPARESTRING; break;
468 case VAR_BLOB: isntype = ISN_COMPAREBLOB; break;
469 case VAR_LIST: isntype = ISN_COMPARELIST; break;
470 case VAR_DICT: isntype = ISN_COMPAREDICT; break;
471 case VAR_FUNC: isntype = ISN_COMPAREFUNC; break;
472 case VAR_PARTIAL: isntype = ISN_COMPAREPARTIAL; break;
473 default: isntype = ISN_COMPAREANY; break;
474 }
475 }
476 else if (type1 == VAR_UNKNOWN || type2 == VAR_UNKNOWN
477 || ((type1 == VAR_NUMBER || type1 == VAR_FLOAT)
478 && (type2 == VAR_NUMBER || type2 ==VAR_FLOAT)))
479 isntype = ISN_COMPAREANY;
480
481 if ((exptype == EXPR_IS || exptype == EXPR_ISNOT)
482 && (isntype == ISN_COMPAREBOOL
483 || isntype == ISN_COMPARESPECIAL
484 || isntype == ISN_COMPARENR
485 || isntype == ISN_COMPAREFLOAT))
486 {
487 semsg(_("E1037: Cannot use \"%s\" with %s"),
488 exptype == EXPR_IS ? "is" : "isnot" , vartype_name(type1));
489 return FAIL;
490 }
491 if (isntype == ISN_DROP
492 || ((exptype != EXPR_EQUAL && exptype != EXPR_NEQUAL
493 && (type1 == VAR_BOOL || type1 == VAR_SPECIAL
494 || type2 == VAR_BOOL || type2 == VAR_SPECIAL)))
495 || ((exptype != EXPR_EQUAL && exptype != EXPR_NEQUAL
496 && exptype != EXPR_IS && exptype != EXPR_ISNOT
497 && (type1 == VAR_BLOB || type2 == VAR_BLOB
498 || type1 == VAR_LIST || type2 == VAR_LIST))))
499 {
500 semsg(_("E1037: Cannot compare %s with %s"),
501 vartype_name(type1), vartype_name(type2));
502 return FAIL;
503 }
504
505 if ((isn = generate_instr(cctx, isntype)) == NULL)
506 return FAIL;
507 isn->isn_arg.op.op_type = exptype;
508 isn->isn_arg.op.op_ic = ic;
509
510 // takes two arguments, puts one bool back
511 if (stack->ga_len >= 2)
512 {
513 --stack->ga_len;
514 ((type_T **)stack->ga_data)[stack->ga_len - 1] = &t_bool;
515 }
516
517 return OK;
518}
519
520/*
521 * Generate an ISN_2BOOL instruction.
522 */
523 static int
524generate_2BOOL(cctx_T *cctx, int invert)
525{
526 isn_T *isn;
527 garray_T *stack = &cctx->ctx_type_stack;
528
529 if ((isn = generate_instr(cctx, ISN_2BOOL)) == NULL)
530 return FAIL;
531 isn->isn_arg.number = invert;
532
533 // type becomes bool
534 ((type_T **)stack->ga_data)[stack->ga_len - 1] = &t_bool;
535
536 return OK;
537}
538
539 static int
540generate_TYPECHECK(cctx_T *cctx, type_T *vartype, int offset)
541{
542 isn_T *isn;
543 garray_T *stack = &cctx->ctx_type_stack;
544
545 if ((isn = generate_instr(cctx, ISN_CHECKTYPE)) == NULL)
546 return FAIL;
547 isn->isn_arg.type.ct_type = vartype->tt_type; // TODO: whole type
548 isn->isn_arg.type.ct_off = offset;
549
550 // type becomes vartype
551 ((type_T **)stack->ga_data)[stack->ga_len - 1] = vartype;
552
553 return OK;
554}
555
556/*
557 * Generate an ISN_PUSHNR instruction.
558 */
559 static int
560generate_PUSHNR(cctx_T *cctx, varnumber_T number)
561{
562 isn_T *isn;
563
564 if ((isn = generate_instr_type(cctx, ISN_PUSHNR, &t_number)) == NULL)
565 return FAIL;
566 isn->isn_arg.number = number;
567
568 return OK;
569}
570
571/*
572 * Generate an ISN_PUSHBOOL instruction.
573 */
574 static int
575generate_PUSHBOOL(cctx_T *cctx, varnumber_T number)
576{
577 isn_T *isn;
578
579 if ((isn = generate_instr_type(cctx, ISN_PUSHBOOL, &t_bool)) == NULL)
580 return FAIL;
581 isn->isn_arg.number = number;
582
583 return OK;
584}
585
586/*
587 * Generate an ISN_PUSHSPEC instruction.
588 */
589 static int
590generate_PUSHSPEC(cctx_T *cctx, varnumber_T number)
591{
592 isn_T *isn;
593
594 if ((isn = generate_instr_type(cctx, ISN_PUSHSPEC, &t_special)) == NULL)
595 return FAIL;
596 isn->isn_arg.number = number;
597
598 return OK;
599}
600
601#ifdef FEAT_FLOAT
602/*
603 * Generate an ISN_PUSHF instruction.
604 */
605 static int
606generate_PUSHF(cctx_T *cctx, float_T fnumber)
607{
608 isn_T *isn;
609
610 if ((isn = generate_instr_type(cctx, ISN_PUSHF, &t_float)) == NULL)
611 return FAIL;
612 isn->isn_arg.fnumber = fnumber;
613
614 return OK;
615}
616#endif
617
618/*
619 * Generate an ISN_PUSHS instruction.
620 * Consumes "str".
621 */
622 static int
623generate_PUSHS(cctx_T *cctx, char_u *str)
624{
625 isn_T *isn;
626
627 if ((isn = generate_instr_type(cctx, ISN_PUSHS, &t_string)) == NULL)
628 return FAIL;
629 isn->isn_arg.string = str;
630
631 return OK;
632}
633
634/*
635 * Generate an ISN_PUSHBLOB instruction.
636 * Consumes "blob".
637 */
638 static int
639generate_PUSHBLOB(cctx_T *cctx, blob_T *blob)
640{
641 isn_T *isn;
642
643 if ((isn = generate_instr_type(cctx, ISN_PUSHBLOB, &t_blob)) == NULL)
644 return FAIL;
645 isn->isn_arg.blob = blob;
646
647 return OK;
648}
649
650/*
651 * Generate an ISN_STORE instruction.
652 */
653 static int
654generate_STORE(cctx_T *cctx, isntype_T isn_type, int idx, char_u *name)
655{
656 isn_T *isn;
657
658 if ((isn = generate_instr_drop(cctx, isn_type, 1)) == NULL)
659 return FAIL;
660 if (name != NULL)
661 isn->isn_arg.string = vim_strsave(name);
662 else
663 isn->isn_arg.number = idx;
664
665 return OK;
666}
667
668/*
669 * Generate an ISN_STORENR instruction (short for ISN_PUSHNR + ISN_STORE)
670 */
671 static int
672generate_STORENR(cctx_T *cctx, int idx, varnumber_T value)
673{
674 isn_T *isn;
675
676 if ((isn = generate_instr(cctx, ISN_STORENR)) == NULL)
677 return FAIL;
678 isn->isn_arg.storenr.str_idx = idx;
679 isn->isn_arg.storenr.str_val = value;
680
681 return OK;
682}
683
684/*
685 * Generate an ISN_STOREOPT instruction
686 */
687 static int
688generate_STOREOPT(cctx_T *cctx, char_u *name, int opt_flags)
689{
690 isn_T *isn;
691
692 if ((isn = generate_instr(cctx, ISN_STOREOPT)) == NULL)
693 return FAIL;
694 isn->isn_arg.storeopt.so_name = vim_strsave(name);
695 isn->isn_arg.storeopt.so_flags = opt_flags;
696
697 return OK;
698}
699
700/*
701 * Generate an ISN_LOAD or similar instruction.
702 */
703 static int
704generate_LOAD(
705 cctx_T *cctx,
706 isntype_T isn_type,
707 int idx,
708 char_u *name,
709 type_T *type)
710{
711 isn_T *isn;
712
713 if ((isn = generate_instr_type(cctx, isn_type, type)) == NULL)
714 return FAIL;
715 if (name != NULL)
716 isn->isn_arg.string = vim_strsave(name);
717 else
718 isn->isn_arg.number = idx;
719
720 return OK;
721}
722
723/*
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100724 * Generate an ISN_LOADV instruction.
725 */
726 static int
727generate_LOADV(
728 cctx_T *cctx,
729 char_u *name,
730 int error)
731{
732 // load v:var
733 int vidx = find_vim_var(name);
734
735 if (vidx < 0)
736 {
737 if (error)
738 semsg(_(e_var_notfound), name);
739 return FAIL;
740 }
741
742 // TODO: get actual type
743 return generate_LOAD(cctx, ISN_LOADV, vidx, NULL, &t_any);
744}
745
746/*
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100747 * Generate an ISN_LOADS instruction.
748 */
749 static int
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100750generate_OLDSCRIPT(
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100751 cctx_T *cctx,
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100752 isntype_T isn_type,
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100753 char_u *name,
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100754 int sid,
755 type_T *type)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100756{
757 isn_T *isn;
758
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100759 if (isn_type == ISN_LOADS)
760 isn = generate_instr_type(cctx, isn_type, type);
761 else
762 isn = generate_instr_drop(cctx, isn_type, 1);
763 if (isn == NULL)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100764 return FAIL;
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100765 isn->isn_arg.loadstore.ls_name = vim_strsave(name);
766 isn->isn_arg.loadstore.ls_sid = sid;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100767
768 return OK;
769}
770
771/*
772 * Generate an ISN_LOADSCRIPT or ISN_STORESCRIPT instruction.
773 */
774 static int
Bram Moolenaarb283a8a2020-02-02 22:24:04 +0100775generate_VIM9SCRIPT(
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100776 cctx_T *cctx,
777 isntype_T isn_type,
778 int sid,
779 int idx,
780 type_T *type)
781{
782 isn_T *isn;
783
784 if (isn_type == ISN_LOADSCRIPT)
785 isn = generate_instr_type(cctx, isn_type, type);
786 else
787 isn = generate_instr_drop(cctx, isn_type, 1);
788 if (isn == NULL)
789 return FAIL;
790 isn->isn_arg.script.script_sid = sid;
791 isn->isn_arg.script.script_idx = idx;
792 return OK;
793}
794
795/*
796 * Generate an ISN_NEWLIST instruction.
797 */
798 static int
799generate_NEWLIST(cctx_T *cctx, int count)
800{
801 isn_T *isn;
802 garray_T *stack = &cctx->ctx_type_stack;
803 garray_T *type_list = cctx->ctx_type_list;
804 type_T *type;
805 type_T *member;
806
807 if ((isn = generate_instr(cctx, ISN_NEWLIST)) == NULL)
808 return FAIL;
809 isn->isn_arg.number = count;
810
811 // drop the value types
812 stack->ga_len -= count;
813
814 // use the first value type for the list member type
815 if (count > 0)
816 member = ((type_T **)stack->ga_data)[stack->ga_len];
817 else
818 member = &t_any;
819 type = get_list_type(member, type_list);
820
821 // add the list type to the type stack
822 if (ga_grow(stack, 1) == FAIL)
823 return FAIL;
824 ((type_T **)stack->ga_data)[stack->ga_len] = type;
825 ++stack->ga_len;
826
827 return OK;
828}
829
830/*
831 * Generate an ISN_NEWDICT instruction.
832 */
833 static int
834generate_NEWDICT(cctx_T *cctx, int count)
835{
836 isn_T *isn;
837 garray_T *stack = &cctx->ctx_type_stack;
838 garray_T *type_list = cctx->ctx_type_list;
839 type_T *type;
840 type_T *member;
841
842 if ((isn = generate_instr(cctx, ISN_NEWDICT)) == NULL)
843 return FAIL;
844 isn->isn_arg.number = count;
845
846 // drop the key and value types
847 stack->ga_len -= 2 * count;
848
849 // use the first value type for the list member type
850 if (count > 0)
851 member = ((type_T **)stack->ga_data)[stack->ga_len + 1];
852 else
853 member = &t_any;
854 type = get_dict_type(member, type_list);
855
856 // add the dict type to the type stack
857 if (ga_grow(stack, 1) == FAIL)
858 return FAIL;
859 ((type_T **)stack->ga_data)[stack->ga_len] = type;
860 ++stack->ga_len;
861
862 return OK;
863}
864
865/*
866 * Generate an ISN_FUNCREF instruction.
867 */
868 static int
869generate_FUNCREF(cctx_T *cctx, int dfunc_idx)
870{
871 isn_T *isn;
872 garray_T *stack = &cctx->ctx_type_stack;
873
874 if ((isn = generate_instr(cctx, ISN_FUNCREF)) == NULL)
875 return FAIL;
876 isn->isn_arg.number = dfunc_idx;
877
878 if (ga_grow(stack, 1) == FAIL)
879 return FAIL;
880 ((type_T **)stack->ga_data)[stack->ga_len] = &t_partial_any;
881 // TODO: argument and return types
882 ++stack->ga_len;
883
884 return OK;
885}
886
887/*
888 * Generate an ISN_JUMP instruction.
889 */
890 static int
891generate_JUMP(cctx_T *cctx, jumpwhen_T when, int where)
892{
893 isn_T *isn;
894 garray_T *stack = &cctx->ctx_type_stack;
895
896 if ((isn = generate_instr(cctx, ISN_JUMP)) == NULL)
897 return FAIL;
898 isn->isn_arg.jump.jump_when = when;
899 isn->isn_arg.jump.jump_where = where;
900
901 if (when != JUMP_ALWAYS && stack->ga_len > 0)
902 --stack->ga_len;
903
904 return OK;
905}
906
907 static int
908generate_FOR(cctx_T *cctx, int loop_idx)
909{
910 isn_T *isn;
911 garray_T *stack = &cctx->ctx_type_stack;
912
913 if ((isn = generate_instr(cctx, ISN_FOR)) == NULL)
914 return FAIL;
915 isn->isn_arg.forloop.for_idx = loop_idx;
916
917 if (ga_grow(stack, 1) == FAIL)
918 return FAIL;
919 // type doesn't matter, will be stored next
920 ((type_T **)stack->ga_data)[stack->ga_len] = &t_any;
921 ++stack->ga_len;
922
923 return OK;
924}
925
926/*
927 * Generate an ISN_BCALL instruction.
928 * Return FAIL if the number of arguments is wrong.
929 */
930 static int
931generate_BCALL(cctx_T *cctx, int func_idx, int argcount)
932{
933 isn_T *isn;
934 garray_T *stack = &cctx->ctx_type_stack;
935
936 if (check_internal_func(func_idx, argcount) == FAIL)
937 return FAIL;
938
939 if ((isn = generate_instr(cctx, ISN_BCALL)) == NULL)
940 return FAIL;
941 isn->isn_arg.bfunc.cbf_idx = func_idx;
942 isn->isn_arg.bfunc.cbf_argcount = argcount;
943
944 stack->ga_len -= argcount; // drop the arguments
945 if (ga_grow(stack, 1) == FAIL)
946 return FAIL;
947 ((type_T **)stack->ga_data)[stack->ga_len] =
948 internal_func_ret_type(func_idx, argcount);
949 ++stack->ga_len; // add return value
950
951 return OK;
952}
953
954/*
955 * Generate an ISN_DCALL or ISN_UCALL instruction.
956 * Return FAIL if the number of arguments is wrong.
957 */
958 static int
Bram Moolenaar170fcfc2020-02-06 17:51:35 +0100959generate_CALL(cctx_T *cctx, ufunc_T *ufunc, int pushed_argcount)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100960{
961 isn_T *isn;
962 garray_T *stack = &cctx->ctx_type_stack;
963 int regular_args = ufunc->uf_args.ga_len;
Bram Moolenaar170fcfc2020-02-06 17:51:35 +0100964 int argcount = pushed_argcount;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100965
966 if (argcount > regular_args && !has_varargs(ufunc))
967 {
968 semsg(_(e_toomanyarg), ufunc->uf_name);
969 return FAIL;
970 }
971 if (argcount < regular_args - ufunc->uf_def_args.ga_len)
972 {
973 semsg(_(e_toofewarg), ufunc->uf_name);
974 return FAIL;
975 }
976
977 // Turn varargs into a list.
978 if (ufunc->uf_va_name != NULL)
979 {
980 int count = argcount - regular_args;
981
Bram Moolenaar170fcfc2020-02-06 17:51:35 +0100982 // If count is negative an empty list will be added after evaluating
983 // default values for missing optional arguments.
984 if (count >= 0)
985 {
986 generate_NEWLIST(cctx, count);
987 argcount = regular_args + 1;
988 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +0100989 }
990
991 if ((isn = generate_instr(cctx,
992 ufunc->uf_dfunc_idx >= 0 ? ISN_DCALL : ISN_UCALL)) == NULL)
993 return FAIL;
994 if (ufunc->uf_dfunc_idx >= 0)
995 {
996 isn->isn_arg.dfunc.cdf_idx = ufunc->uf_dfunc_idx;
997 isn->isn_arg.dfunc.cdf_argcount = argcount;
998 }
999 else
1000 {
1001 // A user function may be deleted and redefined later, can't use the
1002 // ufunc pointer, need to look it up again at runtime.
1003 isn->isn_arg.ufunc.cuf_name = vim_strsave(ufunc->uf_name);
1004 isn->isn_arg.ufunc.cuf_argcount = argcount;
1005 }
1006
1007 stack->ga_len -= argcount; // drop the arguments
1008 if (ga_grow(stack, 1) == FAIL)
1009 return FAIL;
1010 // add return value
1011 ((type_T **)stack->ga_data)[stack->ga_len] = ufunc->uf_ret_type;
1012 ++stack->ga_len;
1013
1014 return OK;
1015}
1016
1017/*
1018 * Generate an ISN_UCALL instruction when the function isn't defined yet.
1019 */
1020 static int
1021generate_UCALL(cctx_T *cctx, char_u *name, int argcount)
1022{
1023 isn_T *isn;
1024 garray_T *stack = &cctx->ctx_type_stack;
1025
1026 if ((isn = generate_instr(cctx, ISN_UCALL)) == NULL)
1027 return FAIL;
1028 isn->isn_arg.ufunc.cuf_name = vim_strsave(name);
1029 isn->isn_arg.ufunc.cuf_argcount = argcount;
1030
1031 stack->ga_len -= argcount; // drop the arguments
Bram Moolenaar26e117e2020-02-04 21:24:15 +01001032 if (ga_grow(stack, 1) == FAIL)
1033 return FAIL;
1034 // add return value
1035 ((type_T **)stack->ga_data)[stack->ga_len] = &t_any;
1036 ++stack->ga_len;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001037
1038 return OK;
1039}
1040
1041/*
1042 * Generate an ISN_PCALL instruction.
1043 */
1044 static int
1045generate_PCALL(cctx_T *cctx, int argcount, int at_top)
1046{
1047 isn_T *isn;
1048 garray_T *stack = &cctx->ctx_type_stack;
1049
1050 if ((isn = generate_instr(cctx, ISN_PCALL)) == NULL)
1051 return FAIL;
1052 isn->isn_arg.pfunc.cpf_top = at_top;
1053 isn->isn_arg.pfunc.cpf_argcount = argcount;
1054
1055 stack->ga_len -= argcount; // drop the arguments
1056
1057 // drop the funcref/partial, get back the return value
1058 ((type_T **)stack->ga_data)[stack->ga_len - 1] = &t_any;
1059
1060 return OK;
1061}
1062
1063/*
1064 * Generate an ISN_MEMBER instruction.
1065 */
1066 static int
1067generate_MEMBER(cctx_T *cctx, char_u *name, size_t len)
1068{
1069 isn_T *isn;
1070 garray_T *stack = &cctx->ctx_type_stack;
1071 type_T *type;
1072
1073 if ((isn = generate_instr(cctx, ISN_MEMBER)) == NULL)
1074 return FAIL;
1075 isn->isn_arg.string = vim_strnsave(name, (int)len);
1076
1077 // change dict type to dict member type
1078 type = ((type_T **)stack->ga_data)[stack->ga_len - 1];
1079 ((type_T **)stack->ga_data)[stack->ga_len - 1] = type->tt_member;
1080
1081 return OK;
1082}
1083
1084/*
1085 * Generate an ISN_ECHO instruction.
1086 */
1087 static int
1088generate_ECHO(cctx_T *cctx, int with_white, int count)
1089{
1090 isn_T *isn;
1091
1092 if ((isn = generate_instr_drop(cctx, ISN_ECHO, count)) == NULL)
1093 return FAIL;
1094 isn->isn_arg.echo.echo_with_white = with_white;
1095 isn->isn_arg.echo.echo_count = count;
1096
1097 return OK;
1098}
1099
1100 static int
1101generate_EXEC(cctx_T *cctx, char_u *line)
1102{
1103 isn_T *isn;
1104
1105 if ((isn = generate_instr(cctx, ISN_EXEC)) == NULL)
1106 return FAIL;
1107 isn->isn_arg.string = vim_strsave(line);
1108 return OK;
1109}
1110
1111static char e_white_both[] =
1112 N_("E1004: white space required before and after '%s'");
1113
1114/*
1115 * Reserve space for a local variable.
1116 * Return the index or -1 if it failed.
1117 */
1118 static int
1119reserve_local(cctx_T *cctx, char_u *name, size_t len, int isConst, type_T *type)
1120{
1121 int idx;
1122 lvar_T *lvar;
1123
1124 if (lookup_arg(name, len, cctx) >= 0 || lookup_vararg(name, len, cctx))
1125 {
1126 emsg_namelen(_("E1006: %s is used as an argument"), name, (int)len);
1127 return -1;
1128 }
1129
1130 if (ga_grow(&cctx->ctx_locals, 1) == FAIL)
1131 return -1;
1132 idx = cctx->ctx_locals.ga_len;
1133 if (cctx->ctx_max_local < idx + 1)
1134 cctx->ctx_max_local = idx + 1;
1135 ++cctx->ctx_locals.ga_len;
1136
1137 lvar = ((lvar_T *)cctx->ctx_locals.ga_data) + idx;
1138 lvar->lv_name = vim_strnsave(name, (int)(len == 0 ? STRLEN(name) : len));
1139 lvar->lv_const = isConst;
1140 lvar->lv_type = type;
1141
1142 return idx;
1143}
1144
1145/*
1146 * Skip over a type definition and return a pointer to just after it.
1147 */
1148 char_u *
1149skip_type(char_u *start)
1150{
1151 char_u *p = start;
1152
1153 while (ASCII_ISALNUM(*p) || *p == '_')
1154 ++p;
1155
1156 // Skip over "<type>"; this is permissive about white space.
1157 if (*skipwhite(p) == '<')
1158 {
1159 p = skipwhite(p);
1160 p = skip_type(skipwhite(p + 1));
1161 p = skipwhite(p);
1162 if (*p == '>')
1163 ++p;
1164 }
1165 return p;
1166}
1167
1168/*
1169 * Parse the member type: "<type>" and return "type" with the member set.
1170 * Use "type_list" if a new type needs to be added.
1171 * Returns NULL in case of failure.
1172 */
1173 static type_T *
1174parse_type_member(char_u **arg, type_T *type, garray_T *type_list)
1175{
1176 type_T *member_type;
1177
1178 if (**arg != '<')
1179 {
1180 if (*skipwhite(*arg) == '<')
1181 emsg(_("E1007: No white space allowed before <"));
1182 else
1183 emsg(_("E1008: Missing <type>"));
1184 return NULL;
1185 }
1186 *arg = skipwhite(*arg + 1);
1187
1188 member_type = parse_type(arg, type_list);
1189 if (member_type == NULL)
1190 return NULL;
1191
1192 *arg = skipwhite(*arg);
1193 if (**arg != '>')
1194 {
1195 emsg(_("E1009: Missing > after type"));
1196 return NULL;
1197 }
1198 ++*arg;
1199
1200 if (type->tt_type == VAR_LIST)
1201 return get_list_type(member_type, type_list);
1202 return get_dict_type(member_type, type_list);
1203}
1204
1205/*
1206 * Parse a type at "arg" and advance over it.
1207 * Return NULL for failure.
1208 */
1209 type_T *
1210parse_type(char_u **arg, garray_T *type_list)
1211{
1212 char_u *p = *arg;
1213 size_t len;
1214
1215 // skip over the first word
1216 while (ASCII_ISALNUM(*p) || *p == '_')
1217 ++p;
1218 len = p - *arg;
1219
1220 switch (**arg)
1221 {
1222 case 'a':
1223 if (len == 3 && STRNCMP(*arg, "any", len) == 0)
1224 {
1225 *arg += len;
1226 return &t_any;
1227 }
1228 break;
1229 case 'b':
1230 if (len == 4 && STRNCMP(*arg, "bool", len) == 0)
1231 {
1232 *arg += len;
1233 return &t_bool;
1234 }
1235 if (len == 4 && STRNCMP(*arg, "blob", len) == 0)
1236 {
1237 *arg += len;
1238 return &t_blob;
1239 }
1240 break;
1241 case 'c':
1242 if (len == 7 && STRNCMP(*arg, "channel", len) == 0)
1243 {
1244 *arg += len;
1245 return &t_channel;
1246 }
1247 break;
1248 case 'd':
1249 if (len == 4 && STRNCMP(*arg, "dict", len) == 0)
1250 {
1251 *arg += len;
1252 return parse_type_member(arg, &t_dict_any, type_list);
1253 }
1254 break;
1255 case 'f':
1256 if (len == 5 && STRNCMP(*arg, "float", len) == 0)
1257 {
Bram Moolenaara5d59532020-01-26 21:42:03 +01001258#ifdef FEAT_FLOAT
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001259 *arg += len;
1260 return &t_float;
Bram Moolenaara5d59532020-01-26 21:42:03 +01001261#else
1262 emsg(_("E1055: This Vim is not compiled with float support"));
1263 return &t_any;
1264#endif
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001265 }
1266 if (len == 4 && STRNCMP(*arg, "func", len) == 0)
1267 {
1268 *arg += len;
1269 // TODO: arguments and return type
1270 return &t_func_any;
1271 }
1272 break;
1273 case 'j':
1274 if (len == 3 && STRNCMP(*arg, "job", len) == 0)
1275 {
1276 *arg += len;
1277 return &t_job;
1278 }
1279 break;
1280 case 'l':
1281 if (len == 4 && STRNCMP(*arg, "list", len) == 0)
1282 {
1283 *arg += len;
1284 return parse_type_member(arg, &t_list_any, type_list);
1285 }
1286 break;
1287 case 'n':
1288 if (len == 6 && STRNCMP(*arg, "number", len) == 0)
1289 {
1290 *arg += len;
1291 return &t_number;
1292 }
1293 break;
1294 case 'p':
1295 if (len == 4 && STRNCMP(*arg, "partial", len) == 0)
1296 {
1297 *arg += len;
1298 // TODO: arguments and return type
1299 return &t_partial_any;
1300 }
1301 break;
1302 case 's':
1303 if (len == 6 && STRNCMP(*arg, "string", len) == 0)
1304 {
1305 *arg += len;
1306 return &t_string;
1307 }
1308 break;
1309 case 'v':
1310 if (len == 4 && STRNCMP(*arg, "void", len) == 0)
1311 {
1312 *arg += len;
1313 return &t_void;
1314 }
1315 break;
1316 }
1317
1318 semsg(_("E1010: Type not recognized: %s"), *arg);
1319 return &t_any;
1320}
1321
1322/*
1323 * Check if "type1" and "type2" are exactly the same.
1324 */
1325 static int
1326equal_type(type_T *type1, type_T *type2)
1327{
1328 if (type1->tt_type != type2->tt_type)
1329 return FALSE;
1330 switch (type1->tt_type)
1331 {
1332 case VAR_VOID:
1333 case VAR_UNKNOWN:
1334 case VAR_SPECIAL:
1335 case VAR_BOOL:
1336 case VAR_NUMBER:
1337 case VAR_FLOAT:
1338 case VAR_STRING:
1339 case VAR_BLOB:
1340 case VAR_JOB:
1341 case VAR_CHANNEL:
1342 return TRUE; // not composite is always OK
1343 case VAR_LIST:
1344 case VAR_DICT:
1345 return equal_type(type1->tt_member, type2->tt_member);
1346 case VAR_FUNC:
1347 case VAR_PARTIAL:
1348 // TODO; check argument types.
1349 return equal_type(type1->tt_member, type2->tt_member)
1350 && type1->tt_argcount == type2->tt_argcount;
1351 }
1352 return TRUE;
1353}
1354
1355/*
1356 * Find the common type of "type1" and "type2" and put it in "dest".
1357 * "type2" and "dest" may be the same.
1358 */
1359 static void
1360common_type(type_T *type1, type_T *type2, type_T *dest)
1361{
1362 if (equal_type(type1, type2))
1363 {
1364 if (dest != type2)
1365 *dest = *type2;
1366 return;
1367 }
1368
1369 if (type1->tt_type == type2->tt_type)
1370 {
1371 dest->tt_type = type1->tt_type;
1372 if (type1->tt_type == VAR_LIST || type2->tt_type == VAR_DICT)
1373 {
1374 common_type(type1->tt_member, type2->tt_member, dest->tt_member);
1375 return;
1376 }
1377 // TODO: VAR_FUNC and VAR_PARTIAL
1378 }
1379
1380 dest->tt_type = VAR_UNKNOWN; // "any"
1381}
1382
1383 char *
1384vartype_name(vartype_T type)
1385{
1386 switch (type)
1387 {
1388 case VAR_VOID: return "void";
1389 case VAR_UNKNOWN: return "any";
1390 case VAR_SPECIAL: return "special";
1391 case VAR_BOOL: return "bool";
1392 case VAR_NUMBER: return "number";
1393 case VAR_FLOAT: return "float";
1394 case VAR_STRING: return "string";
1395 case VAR_BLOB: return "blob";
1396 case VAR_JOB: return "job";
1397 case VAR_CHANNEL: return "channel";
1398 case VAR_LIST: return "list";
1399 case VAR_DICT: return "dict";
1400 case VAR_FUNC: return "function";
1401 case VAR_PARTIAL: return "partial";
1402 }
1403 return "???";
1404}
1405
1406/*
1407 * Return the name of a type.
1408 * The result may be in allocated memory, in which case "tofree" is set.
1409 */
1410 char *
1411type_name(type_T *type, char **tofree)
1412{
1413 char *name = vartype_name(type->tt_type);
1414
1415 *tofree = NULL;
1416 if (type->tt_type == VAR_LIST || type->tt_type == VAR_DICT)
1417 {
1418 char *member_free;
1419 char *member_name = type_name(type->tt_member, &member_free);
1420 size_t len;
1421
1422 len = STRLEN(name) + STRLEN(member_name) + 3;
1423 *tofree = alloc(len);
1424 if (*tofree != NULL)
1425 {
1426 vim_snprintf(*tofree, len, "%s<%s>", name, member_name);
1427 vim_free(member_free);
1428 return *tofree;
1429 }
1430 }
1431 // TODO: function and partial argument types
1432
1433 return name;
1434}
1435
1436/*
1437 * Find "name" in script-local items of script "sid".
1438 * Returns the index in "sn_var_vals" if found.
1439 * If found but not in "sn_var_vals" returns -1.
1440 * If not found returns -2.
1441 */
1442 int
1443get_script_item_idx(int sid, char_u *name, int check_writable)
1444{
1445 hashtab_T *ht;
1446 dictitem_T *di;
Bram Moolenaar21b9e972020-01-26 19:26:46 +01001447 scriptitem_T *si = SCRIPT_ITEM(sid);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001448 int idx;
1449
1450 // First look the name up in the hashtable.
1451 if (sid <= 0 || sid > script_items.ga_len)
1452 return -1;
1453 ht = &SCRIPT_VARS(sid);
1454 di = find_var_in_ht(ht, 0, name, TRUE);
1455 if (di == NULL)
1456 return -2;
1457
1458 // Now find the svar_T index in sn_var_vals.
1459 for (idx = 0; idx < si->sn_var_vals.ga_len; ++idx)
1460 {
1461 svar_T *sv = ((svar_T *)si->sn_var_vals.ga_data) + idx;
1462
1463 if (sv->sv_tv == &di->di_tv)
1464 {
1465 if (check_writable && sv->sv_const)
1466 semsg(_(e_readonlyvar), name);
1467 return idx;
1468 }
1469 }
1470 return -1;
1471}
1472
1473/*
1474 * Find "name" in imported items of the current script/
1475 */
1476 imported_T *
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01001477find_imported(char_u *name, size_t len, cctx_T *cctx)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001478{
Bram Moolenaar21b9e972020-01-26 19:26:46 +01001479 scriptitem_T *si = SCRIPT_ITEM(current_sctx.sc_sid);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001480 int idx;
1481
1482 if (cctx != NULL)
1483 for (idx = 0; idx < cctx->ctx_imports.ga_len; ++idx)
1484 {
1485 imported_T *import = ((imported_T *)cctx->ctx_imports.ga_data)
1486 + idx;
1487
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01001488 if (len == 0 ? STRCMP(name, import->imp_name) == 0
1489 : STRLEN(import->imp_name) == len
1490 && STRNCMP(name, import->imp_name, len) == 0)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001491 return import;
1492 }
1493
1494 for (idx = 0; idx < si->sn_imports.ga_len; ++idx)
1495 {
1496 imported_T *import = ((imported_T *)si->sn_imports.ga_data) + idx;
1497
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01001498 if (len == 0 ? STRCMP(name, import->imp_name) == 0
1499 : STRLEN(import->imp_name) == len
1500 && STRNCMP(name, import->imp_name, len) == 0)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001501 return import;
1502 }
1503 return NULL;
1504}
1505
1506/*
1507 * Generate an instruction to load script-local variable "name".
1508 */
1509 static int
1510compile_load_scriptvar(cctx_T *cctx, char_u *name)
1511{
Bram Moolenaar21b9e972020-01-26 19:26:46 +01001512 scriptitem_T *si = SCRIPT_ITEM(current_sctx.sc_sid);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001513 int idx = get_script_item_idx(current_sctx.sc_sid, name, FALSE);
1514 imported_T *import;
1515
1516 if (idx == -1)
1517 {
1518 // variable exists but is not in sn_var_vals: old style script.
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01001519 return generate_OLDSCRIPT(cctx, ISN_LOADS, name, current_sctx.sc_sid,
1520 &t_any);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001521 }
1522 if (idx >= 0)
1523 {
1524 svar_T *sv = ((svar_T *)si->sn_var_vals.ga_data) + idx;
1525
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01001526 generate_VIM9SCRIPT(cctx, ISN_LOADSCRIPT,
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001527 current_sctx.sc_sid, idx, sv->sv_type);
1528 return OK;
1529 }
1530
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01001531 import = find_imported(name, 0, cctx);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001532 if (import != NULL)
1533 {
1534 // TODO: check this is a variable, not a function
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01001535 generate_VIM9SCRIPT(cctx, ISN_LOADSCRIPT,
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001536 import->imp_sid,
1537 import->imp_var_vals_idx,
1538 import->imp_type);
1539 return OK;
1540 }
1541
1542 semsg(_("E1050: Item not found: %s"), name);
1543 return FAIL;
1544}
1545
1546/*
1547 * Compile a variable name into a load instruction.
1548 * "end" points to just after the name.
1549 * When "error" is FALSE do not give an error when not found.
1550 */
1551 static int
1552compile_load(char_u **arg, char_u *end, cctx_T *cctx, int error)
1553{
1554 type_T *type;
1555 char_u *name;
1556 int res = FAIL;
1557
1558 if (*(*arg + 1) == ':')
1559 {
1560 // load namespaced variable
1561 name = vim_strnsave(*arg + 2, end - (*arg + 2));
1562 if (name == NULL)
1563 return FAIL;
1564
1565 if (**arg == 'v')
1566 {
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01001567 res = generate_LOADV(cctx, name, error);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001568 }
1569 else if (**arg == 'g')
1570 {
1571 // Global variables can be defined later, thus we don't check if it
1572 // exists, give error at runtime.
1573 res = generate_LOAD(cctx, ISN_LOADG, 0, name, &t_any);
1574 }
1575 else if (**arg == 's')
1576 {
1577 res = compile_load_scriptvar(cctx, name);
1578 }
1579 else
1580 {
1581 semsg("Namespace not supported yet: %s", **arg);
1582 goto theend;
1583 }
1584 }
1585 else
1586 {
1587 size_t len = end - *arg;
1588 int idx;
1589 int gen_load = FALSE;
1590
1591 name = vim_strnsave(*arg, end - *arg);
1592 if (name == NULL)
1593 return FAIL;
1594
1595 idx = lookup_arg(*arg, len, cctx);
1596 if (idx >= 0)
1597 {
1598 if (cctx->ctx_ufunc->uf_arg_types != NULL)
1599 type = cctx->ctx_ufunc->uf_arg_types[idx];
1600 else
1601 type = &t_any;
1602
1603 // Arguments are located above the frame pointer.
1604 idx -= cctx->ctx_ufunc->uf_args.ga_len + STACK_FRAME_SIZE;
1605 if (cctx->ctx_ufunc->uf_va_name != NULL)
1606 --idx;
1607 gen_load = TRUE;
1608 }
1609 else if (lookup_vararg(*arg, len, cctx))
1610 {
1611 // varargs is always the last argument
1612 idx = -STACK_FRAME_SIZE - 1;
1613 type = cctx->ctx_ufunc->uf_va_type;
1614 gen_load = TRUE;
1615 }
1616 else
1617 {
1618 idx = lookup_local(*arg, len, cctx);
1619 if (idx >= 0)
1620 {
1621 type = (((lvar_T *)cctx->ctx_locals.ga_data) + idx)->lv_type;
1622 gen_load = TRUE;
1623 }
1624 else
1625 {
1626 if ((len == 4 && STRNCMP("true", *arg, 4) == 0)
1627 || (len == 5 && STRNCMP("false", *arg, 5) == 0))
1628 res = generate_PUSHBOOL(cctx, **arg == 't'
1629 ? VVAL_TRUE : VVAL_FALSE);
1630 else
1631 res = compile_load_scriptvar(cctx, name);
1632 }
1633 }
1634 if (gen_load)
1635 res = generate_LOAD(cctx, ISN_LOAD, idx, NULL, type);
1636 }
1637
1638 *arg = end;
1639
1640theend:
1641 if (res == FAIL && error)
1642 semsg(_(e_var_notfound), name);
1643 vim_free(name);
1644 return res;
1645}
1646
1647/*
1648 * Compile the argument expressions.
1649 * "arg" points to just after the "(" and is advanced to after the ")"
1650 */
1651 static int
1652compile_arguments(char_u **arg, cctx_T *cctx, int *argcount)
1653{
1654 char_u *p = *arg;
1655
1656 while (*p != NUL && *p != ')')
1657 {
1658 if (compile_expr1(&p, cctx) == FAIL)
1659 return FAIL;
1660 ++*argcount;
1661 if (*p == ',')
1662 p = skipwhite(p + 1);
1663 }
1664 if (*p != ')')
1665 {
1666 emsg(_(e_missing_close));
1667 return FAIL;
1668 }
1669 *arg = p + 1;
1670 return OK;
1671}
1672
1673/*
1674 * Compile a function call: name(arg1, arg2)
1675 * "arg" points to "name", "arg + varlen" to the "(".
1676 * "argcount_init" is 1 for "value->method()"
1677 * Instructions:
1678 * EVAL arg1
1679 * EVAL arg2
1680 * BCALL / DCALL / UCALL
1681 */
1682 static int
1683compile_call(char_u **arg, size_t varlen, cctx_T *cctx, int argcount_init)
1684{
1685 char_u *name = *arg;
Bram Moolenaar0b76ad52020-01-31 21:20:51 +01001686 char_u *p;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001687 int argcount = argcount_init;
1688 char_u namebuf[100];
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001689 char_u fname_buf[FLEN_FIXED + 1];
1690 char_u *tofree = NULL;
1691 int error = FCERR_NONE;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001692 ufunc_T *ufunc;
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001693 int res = FAIL;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001694
1695 if (varlen >= sizeof(namebuf))
1696 {
1697 semsg(_("E1011: name too long: %s"), name);
1698 return FAIL;
1699 }
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001700 vim_strncpy(namebuf, *arg, varlen);
1701 name = fname_trans_sid(namebuf, fname_buf, &tofree, &error);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001702
1703 *arg = skipwhite(*arg + varlen + 1);
1704 if (compile_arguments(arg, cctx, &argcount) == FAIL)
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001705 goto theend;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001706
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001707 if (ASCII_ISLOWER(*name) && name[1] != ':')
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001708 {
1709 int idx;
1710
1711 // builtin function
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001712 idx = find_internal_func(name);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001713 if (idx >= 0)
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001714 {
1715 res = generate_BCALL(cctx, idx, argcount);
1716 goto theend;
1717 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001718 semsg(_(e_unknownfunc), namebuf);
1719 }
1720
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001721 // If we can find the function by name generate the right call.
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001722 ufunc = find_func(name, cctx);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001723 if (ufunc != NULL)
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001724 {
1725 res = generate_CALL(cctx, ufunc, argcount);
1726 goto theend;
1727 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001728
1729 // If the name is a variable, load it and use PCALL.
1730 p = namebuf;
1731 if (compile_load(&p, namebuf + varlen, cctx, FALSE) == OK)
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001732 {
1733 res = generate_PCALL(cctx, argcount, FALSE);
1734 goto theend;
1735 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001736
1737 // The function may be defined only later. Need to figure out at runtime.
Bram Moolenaar5cab73f2020-02-06 19:25:19 +01001738 res = generate_UCALL(cctx, name, argcount);
1739
1740theend:
1741 vim_free(tofree);
1742 return res;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01001743}
1744
1745// like NAMESPACE_CHAR but with 'a' and 'l'.
1746#define VIM9_NAMESPACE_CHAR (char_u *)"bgstvw"
1747
1748/*
1749 * Find the end of a variable or function name. Unlike find_name_end() this
1750 * does not recognize magic braces.
1751 * Return a pointer to just after the name. Equal to "arg" if there is no
1752 * valid name.
1753 */
1754 char_u *
1755to_name_end(char_u *arg)
1756{
1757 char_u *p;
1758
1759 // Quick check for valid starting character.
1760 if (!eval_isnamec1(*arg))
1761 return arg;
1762
1763 for (p = arg + 1; *p != NUL && eval_isnamec(*p); MB_PTR_ADV(p))
1764 // Include a namespace such as "s:var" and "v:var". But "n:" is not
1765 // and can be used in slice "[n:]".
1766 if (*p == ':' && (p != arg + 1
1767 || vim_strchr(VIM9_NAMESPACE_CHAR, *arg) == NULL))
1768 break;
1769 return p;
1770}
1771
1772/*
1773 * Like to_name_end() but also skip over a list or dict constant.
1774 */
1775 char_u *
1776to_name_const_end(char_u *arg)
1777{
1778 char_u *p = to_name_end(arg);
1779 typval_T rettv;
1780
1781 if (p == arg && *arg == '[')
1782 {
1783
1784 // Can be "[1, 2, 3]->Func()".
1785 if (get_list_tv(&p, &rettv, FALSE, FALSE) == FAIL)
1786 p = arg;
1787 }
1788 else if (p == arg && *arg == '#' && arg[1] == '{')
1789 {
1790 ++p;
1791 if (eval_dict(&p, &rettv, FALSE, TRUE) == FAIL)
1792 p = arg;
1793 }
1794 else if (p == arg && *arg == '{')
1795 {
1796 int ret = get_lambda_tv(&p, &rettv, FALSE);
1797
1798 if (ret == NOTDONE)
1799 ret = eval_dict(&p, &rettv, FALSE, FALSE);
1800 if (ret != OK)
1801 p = arg;
1802 }
1803
1804 return p;
1805}
1806
1807 static void
1808type_mismatch(type_T *expected, type_T *actual)
1809{
1810 char *tofree1, *tofree2;
1811
1812 semsg(_("E1013: type mismatch, expected %s but got %s"),
1813 type_name(expected, &tofree1), type_name(actual, &tofree2));
1814 vim_free(tofree1);
1815 vim_free(tofree2);
1816}
1817
1818/*
1819 * Check if the expected and actual types match.
1820 */
1821 static int
1822check_type(type_T *expected, type_T *actual, int give_msg)
1823{
1824 if (expected->tt_type != VAR_UNKNOWN)
1825 {
1826 if (expected->tt_type != actual->tt_type)
1827 {
1828 if (give_msg)
1829 type_mismatch(expected, actual);
1830 return FAIL;
1831 }
1832 if (expected->tt_type == VAR_DICT || expected->tt_type == VAR_LIST)
1833 {
1834 int ret = check_type(expected->tt_member, actual->tt_member,
1835 FALSE);
1836 if (ret == FAIL && give_msg)
1837 type_mismatch(expected, actual);
1838 return ret;
1839 }
1840 }
1841 return OK;
1842}
1843
1844/*
1845 * Check that
1846 * - "actual" is "expected" type or
1847 * - "actual" is a type that can be "expected" type: add a runtime check; or
1848 * - return FAIL.
1849 */
1850 static int
1851need_type(type_T *actual, type_T *expected, int offset, cctx_T *cctx)
1852{
1853 if (equal_type(actual, expected) || expected->tt_type == VAR_UNKNOWN)
1854 return OK;
1855 if (actual->tt_type != VAR_UNKNOWN)
1856 {
1857 type_mismatch(expected, actual);
1858 return FAIL;
1859 }
1860 generate_TYPECHECK(cctx, expected, offset);
1861 return OK;
1862}
1863
1864/*
1865 * parse a list: [expr, expr]
1866 * "*arg" points to the '['.
1867 */
1868 static int
1869compile_list(char_u **arg, cctx_T *cctx)
1870{
1871 char_u *p = skipwhite(*arg + 1);
1872 int count = 0;
1873
1874 while (*p != ']')
1875 {
1876 if (*p == NUL)
1877 return FAIL;
1878 if (compile_expr1(&p, cctx) == FAIL)
1879 break;
1880 ++count;
1881 if (*p == ',')
1882 ++p;
1883 p = skipwhite(p);
1884 }
1885 *arg = p + 1;
1886
1887 generate_NEWLIST(cctx, count);
1888 return OK;
1889}
1890
1891/*
1892 * parse a lambda: {arg, arg -> expr}
1893 * "*arg" points to the '{'.
1894 */
1895 static int
1896compile_lambda(char_u **arg, cctx_T *cctx)
1897{
1898 garray_T *instr = &cctx->ctx_instr;
1899 typval_T rettv;
1900 ufunc_T *ufunc;
1901
1902 // Get the funcref in "rettv".
1903 if (get_lambda_tv(arg, &rettv, TRUE) == FAIL)
1904 return FAIL;
1905 ufunc = rettv.vval.v_partial->pt_func;
1906
1907 // The function will have one line: "return {expr}".
1908 // Compile it into instructions.
1909 compile_def_function(ufunc, TRUE);
1910
1911 if (ufunc->uf_dfunc_idx >= 0)
1912 {
1913 if (ga_grow(instr, 1) == FAIL)
1914 return FAIL;
1915 generate_FUNCREF(cctx, ufunc->uf_dfunc_idx);
1916 return OK;
1917 }
1918 return FAIL;
1919}
1920
1921/*
1922 * Compile a lamda call: expr->{lambda}(args)
1923 * "arg" points to the "{".
1924 */
1925 static int
1926compile_lambda_call(char_u **arg, cctx_T *cctx)
1927{
1928 ufunc_T *ufunc;
1929 typval_T rettv;
1930 int argcount = 1;
1931 int ret = FAIL;
1932
1933 // Get the funcref in "rettv".
1934 if (get_lambda_tv(arg, &rettv, TRUE) == FAIL)
1935 return FAIL;
1936
1937 if (**arg != '(')
1938 {
1939 if (*skipwhite(*arg) == '(')
1940 semsg(_(e_nowhitespace));
1941 else
1942 semsg(_(e_missing_paren), "lambda");
1943 clear_tv(&rettv);
1944 return FAIL;
1945 }
1946
1947 // The function will have one line: "return {expr}".
1948 // Compile it into instructions.
1949 ufunc = rettv.vval.v_partial->pt_func;
1950 ++ufunc->uf_refcount;
1951 compile_def_function(ufunc, TRUE);
1952
1953 // compile the arguments
1954 *arg = skipwhite(*arg + 1);
1955 if (compile_arguments(arg, cctx, &argcount) == OK)
1956 // call the compiled function
1957 ret = generate_CALL(cctx, ufunc, argcount);
1958
1959 clear_tv(&rettv);
1960 return ret;
1961}
1962
1963/*
1964 * parse a dict: {'key': val} or #{key: val}
1965 * "*arg" points to the '{'.
1966 */
1967 static int
1968compile_dict(char_u **arg, cctx_T *cctx, int literal)
1969{
1970 garray_T *instr = &cctx->ctx_instr;
1971 int count = 0;
1972 dict_T *d = dict_alloc();
1973 dictitem_T *item;
1974
1975 if (d == NULL)
1976 return FAIL;
1977 *arg = skipwhite(*arg + 1);
1978 while (**arg != '}' && **arg != NUL)
1979 {
1980 char_u *key = NULL;
1981
1982 if (literal)
1983 {
1984 char_u *p = to_name_end(*arg);
1985
1986 if (p == *arg)
1987 {
1988 semsg(_("E1014: Invalid key: %s"), *arg);
1989 return FAIL;
1990 }
1991 key = vim_strnsave(*arg, p - *arg);
1992 if (generate_PUSHS(cctx, key) == FAIL)
1993 return FAIL;
1994 *arg = p;
1995 }
1996 else
1997 {
1998 isn_T *isn;
1999
2000 if (compile_expr1(arg, cctx) == FAIL)
2001 return FAIL;
2002 // TODO: check type is string
2003 isn = ((isn_T *)instr->ga_data) + instr->ga_len - 1;
2004 if (isn->isn_type == ISN_PUSHS)
2005 key = isn->isn_arg.string;
2006 }
2007
2008 // Check for duplicate keys, if using string keys.
2009 if (key != NULL)
2010 {
2011 item = dict_find(d, key, -1);
2012 if (item != NULL)
2013 {
2014 semsg(_(e_duplicate_key), key);
2015 goto failret;
2016 }
2017 item = dictitem_alloc(key);
2018 if (item != NULL)
2019 {
2020 item->di_tv.v_type = VAR_UNKNOWN;
2021 item->di_tv.v_lock = 0;
2022 if (dict_add(d, item) == FAIL)
2023 dictitem_free(item);
2024 }
2025 }
2026
2027 *arg = skipwhite(*arg);
2028 if (**arg != ':')
2029 {
2030 semsg(_(e_missing_dict_colon), *arg);
2031 return FAIL;
2032 }
2033
2034 *arg = skipwhite(*arg + 1);
2035 if (compile_expr1(arg, cctx) == FAIL)
2036 return FAIL;
2037 ++count;
2038
2039 if (**arg == '}')
2040 break;
2041 if (**arg != ',')
2042 {
2043 semsg(_(e_missing_dict_comma), *arg);
2044 goto failret;
2045 }
2046 *arg = skipwhite(*arg + 1);
2047 }
2048
2049 if (**arg != '}')
2050 {
2051 semsg(_(e_missing_dict_end), *arg);
2052 goto failret;
2053 }
2054 *arg = *arg + 1;
2055
2056 dict_unref(d);
2057 return generate_NEWDICT(cctx, count);
2058
2059failret:
2060 dict_unref(d);
2061 return FAIL;
2062}
2063
2064/*
2065 * Compile "&option".
2066 */
2067 static int
2068compile_get_option(char_u **arg, cctx_T *cctx)
2069{
2070 typval_T rettv;
2071 char_u *start = *arg;
2072 int ret;
2073
2074 // parse the option and get the current value to get the type.
2075 rettv.v_type = VAR_UNKNOWN;
2076 ret = get_option_tv(arg, &rettv, TRUE);
2077 if (ret == OK)
2078 {
2079 // include the '&' in the name, get_option_tv() expects it.
2080 char_u *name = vim_strnsave(start, *arg - start);
2081 type_T *type = rettv.v_type == VAR_NUMBER ? &t_number : &t_string;
2082
2083 ret = generate_LOAD(cctx, ISN_LOADOPT, 0, name, type);
2084 vim_free(name);
2085 }
2086 clear_tv(&rettv);
2087
2088 return ret;
2089}
2090
2091/*
2092 * Compile "$VAR".
2093 */
2094 static int
2095compile_get_env(char_u **arg, cctx_T *cctx)
2096{
2097 char_u *start = *arg;
2098 int len;
2099 int ret;
2100 char_u *name;
2101
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01002102 ++*arg;
2103 len = get_env_len(arg);
2104 if (len == 0)
2105 {
2106 semsg(_(e_syntax_at), start - 1);
2107 return FAIL;
2108 }
2109
2110 // include the '$' in the name, get_env_tv() expects it.
2111 name = vim_strnsave(start, len + 1);
2112 ret = generate_LOAD(cctx, ISN_LOADENV, 0, name, &t_string);
2113 vim_free(name);
2114 return ret;
2115}
2116
2117/*
2118 * Compile "@r".
2119 */
2120 static int
2121compile_get_register(char_u **arg, cctx_T *cctx)
2122{
2123 int ret;
2124
2125 ++*arg;
2126 if (**arg == NUL)
2127 {
2128 semsg(_(e_syntax_at), *arg - 1);
2129 return FAIL;
2130 }
2131 if (!valid_yank_reg(**arg, TRUE))
2132 {
2133 emsg_invreg(**arg);
2134 return FAIL;
2135 }
2136 ret = generate_LOAD(cctx, ISN_LOADREG, **arg, NULL, &t_string);
2137 ++*arg;
2138 return ret;
2139}
2140
2141/*
2142 * Apply leading '!', '-' and '+' to constant "rettv".
2143 */
2144 static int
2145apply_leader(typval_T *rettv, char_u *start, char_u *end)
2146{
2147 char_u *p = end;
2148
2149 // this works from end to start
2150 while (p > start)
2151 {
2152 --p;
2153 if (*p == '-' || *p == '+')
2154 {
2155 // only '-' has an effect, for '+' we only check the type
2156#ifdef FEAT_FLOAT
2157 if (rettv->v_type == VAR_FLOAT)
2158 {
2159 if (*p == '-')
2160 rettv->vval.v_float = -rettv->vval.v_float;
2161 }
2162 else
2163#endif
2164 {
2165 varnumber_T val;
2166 int error = FALSE;
2167
2168 // tv_get_number_chk() accepts a string, but we don't want that
2169 // here
2170 if (check_not_string(rettv) == FAIL)
2171 return FAIL;
2172 val = tv_get_number_chk(rettv, &error);
2173 clear_tv(rettv);
2174 if (error)
2175 return FAIL;
2176 if (*p == '-')
2177 val = -val;
2178 rettv->v_type = VAR_NUMBER;
2179 rettv->vval.v_number = val;
2180 }
2181 }
2182 else
2183 {
2184 int v = tv2bool(rettv);
2185
2186 // '!' is permissive in the type.
2187 clear_tv(rettv);
2188 rettv->v_type = VAR_BOOL;
2189 rettv->vval.v_number = v ? VVAL_FALSE : VVAL_TRUE;
2190 }
2191 }
2192 return OK;
2193}
2194
2195/*
2196 * Recognize v: variables that are constants and set "rettv".
2197 */
2198 static void
2199get_vim_constant(char_u **arg, typval_T *rettv)
2200{
2201 if (STRNCMP(*arg, "v:true", 6) == 0)
2202 {
2203 rettv->v_type = VAR_BOOL;
2204 rettv->vval.v_number = VVAL_TRUE;
2205 *arg += 6;
2206 }
2207 else if (STRNCMP(*arg, "v:false", 7) == 0)
2208 {
2209 rettv->v_type = VAR_BOOL;
2210 rettv->vval.v_number = VVAL_FALSE;
2211 *arg += 7;
2212 }
2213 else if (STRNCMP(*arg, "v:null", 6) == 0)
2214 {
2215 rettv->v_type = VAR_SPECIAL;
2216 rettv->vval.v_number = VVAL_NULL;
2217 *arg += 6;
2218 }
2219 else if (STRNCMP(*arg, "v:none", 6) == 0)
2220 {
2221 rettv->v_type = VAR_SPECIAL;
2222 rettv->vval.v_number = VVAL_NONE;
2223 *arg += 6;
2224 }
2225}
2226
2227/*
2228 * Compile code to apply '-', '+' and '!'.
2229 */
2230 static int
2231compile_leader(cctx_T *cctx, char_u *start, char_u *end)
2232{
2233 char_u *p = end;
2234
2235 // this works from end to start
2236 while (p > start)
2237 {
2238 --p;
2239 if (*p == '-' || *p == '+')
2240 {
2241 int negate = *p == '-';
2242 isn_T *isn;
2243
2244 // TODO: check type
2245 while (p > start && (p[-1] == '-' || p[-1] == '+'))
2246 {
2247 --p;
2248 if (*p == '-')
2249 negate = !negate;
2250 }
2251 // only '-' has an effect, for '+' we only check the type
2252 if (negate)
2253 isn = generate_instr(cctx, ISN_NEGATENR);
2254 else
2255 isn = generate_instr(cctx, ISN_CHECKNR);
2256 if (isn == NULL)
2257 return FAIL;
2258 }
2259 else
2260 {
2261 int invert = TRUE;
2262
2263 while (p > start && p[-1] == '!')
2264 {
2265 --p;
2266 invert = !invert;
2267 }
2268 if (generate_2BOOL(cctx, invert) == FAIL)
2269 return FAIL;
2270 }
2271 }
2272 return OK;
2273}
2274
2275/*
2276 * Compile whatever comes after "name" or "name()".
2277 */
2278 static int
2279compile_subscript(
2280 char_u **arg,
2281 cctx_T *cctx,
2282 char_u **start_leader,
2283 char_u *end_leader)
2284{
2285 for (;;)
2286 {
2287 if (**arg == '(')
2288 {
2289 int argcount = 0;
2290
2291 // funcref(arg)
2292 *arg = skipwhite(*arg + 1);
2293 if (compile_arguments(arg, cctx, &argcount) == FAIL)
2294 return FAIL;
2295 if (generate_PCALL(cctx, argcount, TRUE) == FAIL)
2296 return FAIL;
2297 }
2298 else if (**arg == '-' && (*arg)[1] == '>')
2299 {
2300 char_u *p;
2301
2302 // something->method()
2303 // Apply the '!', '-' and '+' first:
2304 // -1.0->func() works like (-1.0)->func()
2305 if (compile_leader(cctx, *start_leader, end_leader) == FAIL)
2306 return FAIL;
2307 *start_leader = end_leader; // don't apply again later
2308
2309 *arg = skipwhite(*arg + 2);
2310 if (**arg == '{')
2311 {
2312 // lambda call: list->{lambda}
2313 if (compile_lambda_call(arg, cctx) == FAIL)
2314 return FAIL;
2315 }
2316 else
2317 {
2318 // method call: list->method()
2319 for (p = *arg; eval_isnamec1(*p); ++p)
2320 ;
2321 if (*p != '(')
2322 {
2323 semsg(_(e_missing_paren), arg);
2324 return FAIL;
2325 }
2326 // TODO: base value may not be the first argument
2327 if (compile_call(arg, p - *arg, cctx, 1) == FAIL)
2328 return FAIL;
2329 }
2330 }
2331 else if (**arg == '[')
2332 {
2333 // list index: list[123]
2334 // TODO: more arguments
2335 // TODO: dict member dict['name']
2336 *arg = skipwhite(*arg + 1);
2337 if (compile_expr1(arg, cctx) == FAIL)
2338 return FAIL;
2339
2340 if (**arg != ']')
2341 {
2342 emsg(_(e_missbrac));
2343 return FAIL;
2344 }
2345 *arg = skipwhite(*arg + 1);
2346
2347 if (generate_instr_drop(cctx, ISN_INDEX, 1) == FAIL)
2348 return FAIL;
2349 }
2350 else if (**arg == '.' && (*arg)[1] != '.')
2351 {
2352 char_u *p;
2353
2354 ++*arg;
2355 p = *arg;
2356 // dictionary member: dict.name
2357 if (eval_isnamec1(*p))
2358 while (eval_isnamec(*p))
2359 MB_PTR_ADV(p);
2360 if (p == *arg)
2361 {
2362 semsg(_(e_syntax_at), *arg);
2363 return FAIL;
2364 }
2365 // TODO: check type is dict
2366 if (generate_MEMBER(cctx, *arg, p - *arg) == FAIL)
2367 return FAIL;
2368 *arg = p;
2369 }
2370 else
2371 break;
2372 }
2373
2374 // TODO - see handle_subscript():
2375 // Turn "dict.Func" into a partial for "Func" bound to "dict".
2376 // Don't do this when "Func" is already a partial that was bound
2377 // explicitly (pt_auto is FALSE).
2378
2379 return OK;
2380}
2381
2382/*
2383 * Compile an expression at "*p" and add instructions to "instr".
2384 * "p" is advanced until after the expression, skipping white space.
2385 *
2386 * This is the equivalent of eval1(), eval2(), etc.
2387 */
2388
2389/*
2390 * number number constant
2391 * 0zFFFFFFFF Blob constant
2392 * "string" string constant
2393 * 'string' literal string constant
2394 * &option-name option value
2395 * @r register contents
2396 * identifier variable value
2397 * function() function call
2398 * $VAR environment variable
2399 * (expression) nested expression
2400 * [expr, expr] List
2401 * {key: val, key: val} Dictionary
2402 * #{key: val, key: val} Dictionary with literal keys
2403 *
2404 * Also handle:
2405 * ! in front logical NOT
2406 * - in front unary minus
2407 * + in front unary plus (ignored)
2408 * trailing (arg) funcref/partial call
2409 * trailing [] subscript in String or List
2410 * trailing .name entry in Dictionary
2411 * trailing ->name() method call
2412 */
2413 static int
2414compile_expr7(char_u **arg, cctx_T *cctx)
2415{
2416 typval_T rettv;
2417 char_u *start_leader, *end_leader;
2418 int ret = OK;
2419
2420 /*
2421 * Skip '!', '-' and '+' characters. They are handled later.
2422 */
2423 start_leader = *arg;
2424 while (**arg == '!' || **arg == '-' || **arg == '+')
2425 *arg = skipwhite(*arg + 1);
2426 end_leader = *arg;
2427
2428 rettv.v_type = VAR_UNKNOWN;
2429 switch (**arg)
2430 {
2431 /*
2432 * Number constant.
2433 */
2434 case '0': // also for blob starting with 0z
2435 case '1':
2436 case '2':
2437 case '3':
2438 case '4':
2439 case '5':
2440 case '6':
2441 case '7':
2442 case '8':
2443 case '9':
2444 case '.': if (get_number_tv(arg, &rettv, TRUE, FALSE) == FAIL)
2445 return FAIL;
2446 break;
2447
2448 /*
2449 * String constant: "string".
2450 */
2451 case '"': if (get_string_tv(arg, &rettv, TRUE) == FAIL)
2452 return FAIL;
2453 break;
2454
2455 /*
2456 * Literal string constant: 'str''ing'.
2457 */
2458 case '\'': if (get_lit_string_tv(arg, &rettv, TRUE) == FAIL)
2459 return FAIL;
2460 break;
2461
2462 /*
2463 * Constant Vim variable.
2464 */
2465 case 'v': get_vim_constant(arg, &rettv);
2466 ret = NOTDONE;
2467 break;
2468
2469 /*
2470 * List: [expr, expr]
2471 */
2472 case '[': ret = compile_list(arg, cctx);
2473 break;
2474
2475 /*
2476 * Dictionary: #{key: val, key: val}
2477 */
2478 case '#': if ((*arg)[1] == '{')
2479 {
2480 ++*arg;
2481 ret = compile_dict(arg, cctx, TRUE);
2482 }
2483 else
2484 ret = NOTDONE;
2485 break;
2486
2487 /*
2488 * Lambda: {arg, arg -> expr}
2489 * Dictionary: {'key': val, 'key': val}
2490 */
2491 case '{': {
2492 char_u *start = skipwhite(*arg + 1);
2493
2494 // Find out what comes after the arguments.
2495 ret = get_function_args(&start, '-', NULL,
2496 NULL, NULL, NULL, TRUE);
2497 if (ret != FAIL && *start == '>')
2498 ret = compile_lambda(arg, cctx);
2499 else
2500 ret = compile_dict(arg, cctx, FALSE);
2501 }
2502 break;
2503
2504 /*
2505 * Option value: &name
2506 */
2507 case '&': ret = compile_get_option(arg, cctx);
2508 break;
2509
2510 /*
2511 * Environment variable: $VAR.
2512 */
2513 case '$': ret = compile_get_env(arg, cctx);
2514 break;
2515
2516 /*
2517 * Register contents: @r.
2518 */
2519 case '@': ret = compile_get_register(arg, cctx);
2520 break;
2521 /*
2522 * nested expression: (expression).
2523 */
2524 case '(': *arg = skipwhite(*arg + 1);
2525 ret = compile_expr1(arg, cctx); // recursive!
2526 *arg = skipwhite(*arg);
2527 if (**arg == ')')
2528 ++*arg;
2529 else if (ret == OK)
2530 {
2531 emsg(_(e_missing_close));
2532 ret = FAIL;
2533 }
2534 break;
2535
2536 default: ret = NOTDONE;
2537 break;
2538 }
2539 if (ret == FAIL)
2540 return FAIL;
2541
2542 if (rettv.v_type != VAR_UNKNOWN)
2543 {
2544 // apply the '!', '-' and '+' before the constant
2545 if (apply_leader(&rettv, start_leader, end_leader) == FAIL)
2546 {
2547 clear_tv(&rettv);
2548 return FAIL;
2549 }
2550 start_leader = end_leader; // don't apply again below
2551
2552 // push constant
2553 switch (rettv.v_type)
2554 {
2555 case VAR_BOOL:
2556 generate_PUSHBOOL(cctx, rettv.vval.v_number);
2557 break;
2558 case VAR_SPECIAL:
2559 generate_PUSHSPEC(cctx, rettv.vval.v_number);
2560 break;
2561 case VAR_NUMBER:
2562 generate_PUSHNR(cctx, rettv.vval.v_number);
2563 break;
2564#ifdef FEAT_FLOAT
2565 case VAR_FLOAT:
2566 generate_PUSHF(cctx, rettv.vval.v_float);
2567 break;
2568#endif
2569 case VAR_BLOB:
2570 generate_PUSHBLOB(cctx, rettv.vval.v_blob);
2571 rettv.vval.v_blob = NULL;
2572 break;
2573 case VAR_STRING:
2574 generate_PUSHS(cctx, rettv.vval.v_string);
2575 rettv.vval.v_string = NULL;
2576 break;
2577 default:
2578 iemsg("constant type missing");
2579 return FAIL;
2580 }
2581 }
2582 else if (ret == NOTDONE)
2583 {
2584 char_u *p;
2585 int r;
2586
2587 if (!eval_isnamec1(**arg))
2588 {
2589 semsg(_("E1015: Name expected: %s"), *arg);
2590 return FAIL;
2591 }
2592
2593 // "name" or "name()"
2594 p = to_name_end(*arg);
2595 if (*p == '(')
2596 r = compile_call(arg, p - *arg, cctx, 0);
2597 else
2598 r = compile_load(arg, p, cctx, TRUE);
2599 if (r == FAIL)
2600 return FAIL;
2601 }
2602
2603 if (compile_subscript(arg, cctx, &start_leader, end_leader) == FAIL)
2604 return FAIL;
2605
2606 // Now deal with prefixed '-', '+' and '!', if not done already.
2607 return compile_leader(cctx, start_leader, end_leader);
2608}
2609
2610/*
2611 * * number multiplication
2612 * / number division
2613 * % number modulo
2614 */
2615 static int
2616compile_expr6(char_u **arg, cctx_T *cctx)
2617{
2618 char_u *op;
2619
2620 // get the first variable
2621 if (compile_expr7(arg, cctx) == FAIL)
2622 return FAIL;
2623
2624 /*
2625 * Repeat computing, until no "*", "/" or "%" is following.
2626 */
2627 for (;;)
2628 {
2629 op = skipwhite(*arg);
2630 if (*op != '*' && *op != '/' && *op != '%')
2631 break;
2632 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(op[1]))
2633 {
2634 char_u buf[3];
2635
2636 vim_strncpy(buf, op, 1);
2637 semsg(_(e_white_both), buf);
2638 }
2639 *arg = skipwhite(op + 1);
2640
2641 // get the second variable
2642 if (compile_expr7(arg, cctx) == FAIL)
2643 return FAIL;
2644
2645 generate_two_op(cctx, op);
2646 }
2647
2648 return OK;
2649}
2650
2651/*
2652 * + number addition
2653 * - number subtraction
2654 * .. string concatenation
2655 */
2656 static int
2657compile_expr5(char_u **arg, cctx_T *cctx)
2658{
2659 char_u *op;
2660 int oplen;
2661
2662 // get the first variable
2663 if (compile_expr6(arg, cctx) == FAIL)
2664 return FAIL;
2665
2666 /*
2667 * Repeat computing, until no "+", "-" or ".." is following.
2668 */
2669 for (;;)
2670 {
2671 op = skipwhite(*arg);
2672 if (*op != '+' && *op != '-' && !(*op == '.' && (*(*arg + 1) == '.')))
2673 break;
2674 oplen = (*op == '.' ? 2 : 1);
2675
2676 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(op[oplen]))
2677 {
2678 char_u buf[3];
2679
2680 vim_strncpy(buf, op, oplen);
2681 semsg(_(e_white_both), buf);
2682 }
2683
2684 *arg = skipwhite(op + oplen);
2685
2686 // get the second variable
2687 if (compile_expr6(arg, cctx) == FAIL)
2688 return FAIL;
2689
2690 if (*op == '.')
2691 {
2692 if (may_generate_2STRING(-2, cctx) == FAIL
2693 || may_generate_2STRING(-1, cctx) == FAIL)
2694 return FAIL;
2695 generate_instr_drop(cctx, ISN_CONCAT, 1);
2696 }
2697 else
2698 generate_two_op(cctx, op);
2699 }
2700
2701 return OK;
2702}
2703
2704/*
2705 * expr5a == expr5b
2706 * expr5a =~ expr5b
2707 * expr5a != expr5b
2708 * expr5a !~ expr5b
2709 * expr5a > expr5b
2710 * expr5a >= expr5b
2711 * expr5a < expr5b
2712 * expr5a <= expr5b
2713 * expr5a is expr5b
2714 * expr5a isnot expr5b
2715 *
2716 * Produces instructions:
2717 * EVAL expr5a Push result of "expr5a"
2718 * EVAL expr5b Push result of "expr5b"
2719 * COMPARE one of the compare instructions
2720 */
2721 static int
2722compile_expr4(char_u **arg, cctx_T *cctx)
2723{
2724 exptype_T type = EXPR_UNKNOWN;
2725 char_u *p;
2726 int len = 2;
2727 int i;
2728 int type_is = FALSE;
2729
2730 // get the first variable
2731 if (compile_expr5(arg, cctx) == FAIL)
2732 return FAIL;
2733
2734 p = skipwhite(*arg);
2735 switch (p[0])
2736 {
2737 case '=': if (p[1] == '=')
2738 type = EXPR_EQUAL;
2739 else if (p[1] == '~')
2740 type = EXPR_MATCH;
2741 break;
2742 case '!': if (p[1] == '=')
2743 type = EXPR_NEQUAL;
2744 else if (p[1] == '~')
2745 type = EXPR_NOMATCH;
2746 break;
2747 case '>': if (p[1] != '=')
2748 {
2749 type = EXPR_GREATER;
2750 len = 1;
2751 }
2752 else
2753 type = EXPR_GEQUAL;
2754 break;
2755 case '<': if (p[1] != '=')
2756 {
2757 type = EXPR_SMALLER;
2758 len = 1;
2759 }
2760 else
2761 type = EXPR_SEQUAL;
2762 break;
2763 case 'i': if (p[1] == 's')
2764 {
2765 // "is" and "isnot"; but not a prefix of a name
2766 if (p[2] == 'n' && p[3] == 'o' && p[4] == 't')
2767 len = 5;
2768 i = p[len];
2769 if (!isalnum(i) && i != '_')
2770 {
2771 type = len == 2 ? EXPR_IS : EXPR_ISNOT;
2772 type_is = TRUE;
2773 }
2774 }
2775 break;
2776 }
2777
2778 /*
2779 * If there is a comparative operator, use it.
2780 */
2781 if (type != EXPR_UNKNOWN)
2782 {
2783 int ic = FALSE; // Default: do not ignore case
2784
2785 if (type_is && (p[len] == '?' || p[len] == '#'))
2786 {
2787 semsg(_(e_invexpr2), *arg);
2788 return FAIL;
2789 }
2790 // extra question mark appended: ignore case
2791 if (p[len] == '?')
2792 {
2793 ic = TRUE;
2794 ++len;
2795 }
2796 // extra '#' appended: match case (ignored)
2797 else if (p[len] == '#')
2798 ++len;
2799 // nothing appended: match case
2800
2801 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(p[len]))
2802 {
2803 char_u buf[7];
2804
2805 vim_strncpy(buf, p, len);
2806 semsg(_(e_white_both), buf);
2807 }
2808
2809 // get the second variable
2810 *arg = skipwhite(p + len);
2811 if (compile_expr5(arg, cctx) == FAIL)
2812 return FAIL;
2813
2814 generate_COMPARE(cctx, type, ic);
2815 }
2816
2817 return OK;
2818}
2819
2820/*
2821 * Compile || or &&.
2822 */
2823 static int
2824compile_and_or(char_u **arg, cctx_T *cctx, char *op)
2825{
2826 char_u *p = skipwhite(*arg);
2827 int opchar = *op;
2828
2829 if (p[0] == opchar && p[1] == opchar)
2830 {
2831 garray_T *instr = &cctx->ctx_instr;
2832 garray_T end_ga;
2833
2834 /*
2835 * Repeat until there is no following "||" or "&&"
2836 */
2837 ga_init2(&end_ga, sizeof(int), 10);
2838 while (p[0] == opchar && p[1] == opchar)
2839 {
2840 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(p[2]))
2841 semsg(_(e_white_both), op);
2842
2843 if (ga_grow(&end_ga, 1) == FAIL)
2844 {
2845 ga_clear(&end_ga);
2846 return FAIL;
2847 }
2848 *(((int *)end_ga.ga_data) + end_ga.ga_len) = instr->ga_len;
2849 ++end_ga.ga_len;
2850 generate_JUMP(cctx, opchar == '|'
2851 ? JUMP_AND_KEEP_IF_TRUE : JUMP_AND_KEEP_IF_FALSE, 0);
2852
2853 // eval the next expression
2854 *arg = skipwhite(p + 2);
2855 if ((opchar == '|' ? compile_expr3(arg, cctx)
2856 : compile_expr4(arg, cctx)) == FAIL)
2857 {
2858 ga_clear(&end_ga);
2859 return FAIL;
2860 }
2861 p = skipwhite(*arg);
2862 }
2863
2864 // Fill in the end label in all jumps.
2865 while (end_ga.ga_len > 0)
2866 {
2867 isn_T *isn;
2868
2869 --end_ga.ga_len;
2870 isn = ((isn_T *)instr->ga_data)
2871 + *(((int *)end_ga.ga_data) + end_ga.ga_len);
2872 isn->isn_arg.jump.jump_where = instr->ga_len;
2873 }
2874 ga_clear(&end_ga);
2875 }
2876
2877 return OK;
2878}
2879
2880/*
2881 * expr4a && expr4a && expr4a logical AND
2882 *
2883 * Produces instructions:
2884 * EVAL expr4a Push result of "expr4a"
2885 * JUMP_AND_KEEP_IF_FALSE end
2886 * EVAL expr4b Push result of "expr4b"
2887 * JUMP_AND_KEEP_IF_FALSE end
2888 * EVAL expr4c Push result of "expr4c"
2889 * end:
2890 */
2891 static int
2892compile_expr3(char_u **arg, cctx_T *cctx)
2893{
2894 // get the first variable
2895 if (compile_expr4(arg, cctx) == FAIL)
2896 return FAIL;
2897
2898 // || and && work almost the same
2899 return compile_and_or(arg, cctx, "&&");
2900}
2901
2902/*
2903 * expr3a || expr3b || expr3c logical OR
2904 *
2905 * Produces instructions:
2906 * EVAL expr3a Push result of "expr3a"
2907 * JUMP_AND_KEEP_IF_TRUE end
2908 * EVAL expr3b Push result of "expr3b"
2909 * JUMP_AND_KEEP_IF_TRUE end
2910 * EVAL expr3c Push result of "expr3c"
2911 * end:
2912 */
2913 static int
2914compile_expr2(char_u **arg, cctx_T *cctx)
2915{
2916 // eval the first expression
2917 if (compile_expr3(arg, cctx) == FAIL)
2918 return FAIL;
2919
2920 // || and && work almost the same
2921 return compile_and_or(arg, cctx, "||");
2922}
2923
2924/*
2925 * Toplevel expression: expr2 ? expr1a : expr1b
2926 *
2927 * Produces instructions:
2928 * EVAL expr2 Push result of "expr"
2929 * JUMP_IF_FALSE alt jump if false
2930 * EVAL expr1a
2931 * JUMP_ALWAYS end
2932 * alt: EVAL expr1b
2933 * end:
2934 */
2935 static int
2936compile_expr1(char_u **arg, cctx_T *cctx)
2937{
2938 char_u *p;
2939
2940 // evaluate the first expression
2941 if (compile_expr2(arg, cctx) == FAIL)
2942 return FAIL;
2943
2944 p = skipwhite(*arg);
2945 if (*p == '?')
2946 {
2947 garray_T *instr = &cctx->ctx_instr;
2948 garray_T *stack = &cctx->ctx_type_stack;
2949 int alt_idx = instr->ga_len;
2950 int end_idx;
2951 isn_T *isn;
2952 type_T *type1;
2953 type_T *type2;
2954
2955 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(p[1]))
2956 semsg(_(e_white_both), "?");
2957
2958 generate_JUMP(cctx, JUMP_IF_FALSE, 0);
2959
2960 // evaluate the second expression; any type is accepted
2961 *arg = skipwhite(p + 1);
Bram Moolenaara6d53682020-01-28 23:04:06 +01002962 if (compile_expr1(arg, cctx) == FAIL)
2963 return FAIL;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01002964
2965 // remember the type and drop it
2966 --stack->ga_len;
2967 type1 = ((type_T **)stack->ga_data)[stack->ga_len];
2968
2969 end_idx = instr->ga_len;
2970 generate_JUMP(cctx, JUMP_ALWAYS, 0);
2971
2972 // jump here from JUMP_IF_FALSE
2973 isn = ((isn_T *)instr->ga_data) + alt_idx;
2974 isn->isn_arg.jump.jump_where = instr->ga_len;
2975
2976 // Check for the ":".
2977 p = skipwhite(*arg);
2978 if (*p != ':')
2979 {
2980 emsg(_(e_missing_colon));
2981 return FAIL;
2982 }
2983 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(p[1]))
2984 semsg(_(e_white_both), ":");
2985
2986 // evaluate the third expression
2987 *arg = skipwhite(p + 1);
Bram Moolenaara6d53682020-01-28 23:04:06 +01002988 if (compile_expr1(arg, cctx) == FAIL)
2989 return FAIL;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01002990
2991 // If the types differ, the result has a more generic type.
2992 type2 = ((type_T **)stack->ga_data)[stack->ga_len - 1];
2993 common_type(type1, type2, type2);
2994
2995 // jump here from JUMP_ALWAYS
2996 isn = ((isn_T *)instr->ga_data) + end_idx;
2997 isn->isn_arg.jump.jump_where = instr->ga_len;
2998 }
2999 return OK;
3000}
3001
3002/*
3003 * compile "return [expr]"
3004 */
3005 static char_u *
3006compile_return(char_u *arg, int set_return_type, cctx_T *cctx)
3007{
3008 char_u *p = arg;
3009 garray_T *stack = &cctx->ctx_type_stack;
3010 type_T *stack_type;
3011
3012 if (*p != NUL && *p != '|' && *p != '\n')
3013 {
3014 // compile return argument into instructions
3015 if (compile_expr1(&p, cctx) == FAIL)
3016 return NULL;
3017
3018 stack_type = ((type_T **)stack->ga_data)[stack->ga_len - 1];
3019 if (set_return_type)
3020 cctx->ctx_ufunc->uf_ret_type = stack_type;
3021 else if (need_type(stack_type, cctx->ctx_ufunc->uf_ret_type, -1, cctx)
3022 == FAIL)
3023 return NULL;
3024 }
3025 else
3026 {
3027 if (set_return_type)
3028 cctx->ctx_ufunc->uf_ret_type = &t_void;
3029 else if (cctx->ctx_ufunc->uf_ret_type->tt_type != VAR_VOID)
3030 {
3031 emsg(_("E1003: Missing return value"));
3032 return NULL;
3033 }
3034
3035 // No argument, return zero.
3036 generate_PUSHNR(cctx, 0);
3037 }
3038
3039 if (generate_instr(cctx, ISN_RETURN) == NULL)
3040 return NULL;
3041
3042 // "return val | endif" is possible
3043 return skipwhite(p);
3044}
3045
3046/*
3047 * Return the length of an assignment operator, or zero if there isn't one.
3048 */
3049 int
3050assignment_len(char_u *p, int *heredoc)
3051{
3052 if (*p == '=')
3053 {
3054 if (p[1] == '<' && p[2] == '<')
3055 {
3056 *heredoc = TRUE;
3057 return 3;
3058 }
3059 return 1;
3060 }
3061 if (vim_strchr((char_u *)"+-*/%", *p) != NULL && p[1] == '=')
3062 return 2;
3063 if (STRNCMP(p, "..=", 3) == 0)
3064 return 3;
3065 return 0;
3066}
3067
3068// words that cannot be used as a variable
3069static char *reserved[] = {
3070 "true",
3071 "false",
3072 NULL
3073};
3074
3075/*
3076 * Get a line for "=<<".
3077 * Return a pointer to the line in allocated memory.
3078 * Return NULL for end-of-file or some error.
3079 */
3080 static char_u *
3081heredoc_getline(
3082 int c UNUSED,
3083 void *cookie,
3084 int indent UNUSED,
3085 int do_concat UNUSED)
3086{
3087 cctx_T *cctx = (cctx_T *)cookie;
3088
3089 if (cctx->ctx_lnum == cctx->ctx_ufunc->uf_lines.ga_len)
3090 NULL;
3091 ++cctx->ctx_lnum;
3092 return vim_strsave(((char_u **)cctx->ctx_ufunc->uf_lines.ga_data)
3093 [cctx->ctx_lnum]);
3094}
3095
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003096typedef enum {
3097 dest_local,
3098 dest_option,
3099 dest_env,
3100 dest_global,
3101 dest_vimvar,
3102 dest_script,
3103 dest_reg,
3104} assign_dest_T;
3105
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003106/*
3107 * compile "let var [= expr]", "const var = expr" and "var = expr"
3108 * "arg" points to "var".
3109 */
3110 static char_u *
3111compile_assignment(char_u *arg, exarg_T *eap, cmdidx_T cmdidx, cctx_T *cctx)
3112{
3113 char_u *p;
3114 char_u *ret = NULL;
3115 int var_count = 0;
3116 int semicolon = 0;
3117 size_t varlen;
3118 garray_T *instr = &cctx->ctx_instr;
3119 int idx = -1;
3120 char_u *op;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003121 int opt_type;
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003122 assign_dest_T dest = dest_local;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003123 int opt_flags = 0;
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003124 int vimvaridx = -1;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003125 int oplen = 0;
3126 int heredoc = FALSE;
3127 type_T *type;
3128 lvar_T *lvar;
3129 char_u *name;
3130 char_u *sp;
3131 int has_type = FALSE;
3132 int is_decl = cmdidx == CMD_let || cmdidx == CMD_const;
3133 int instr_count = -1;
3134
3135 p = skip_var_list(arg, FALSE, &var_count, &semicolon);
3136 if (p == NULL)
3137 return NULL;
3138 if (var_count > 0)
3139 {
3140 // TODO: let [var, var] = list
3141 emsg("Cannot handle a list yet");
3142 return NULL;
3143 }
3144
3145 varlen = p - arg;
3146 name = vim_strnsave(arg, (int)varlen);
3147 if (name == NULL)
3148 return NULL;
3149
3150 if (*arg == '&')
3151 {
3152 int cc;
3153 long numval;
3154 char_u *stringval = NULL;
3155
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003156 dest = dest_option;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003157 if (cmdidx == CMD_const)
3158 {
3159 emsg(_(e_const_option));
3160 return NULL;
3161 }
3162 if (is_decl)
3163 {
3164 semsg(_("E1052: Cannot declare an option: %s"), arg);
3165 goto theend;
3166 }
3167 p = arg;
3168 p = find_option_end(&p, &opt_flags);
3169 if (p == NULL)
3170 {
3171 emsg(_(e_letunexp));
3172 return NULL;
3173 }
3174 cc = *p;
3175 *p = NUL;
3176 opt_type = get_option_value(arg + 1, &numval, &stringval, opt_flags);
3177 *p = cc;
3178 if (opt_type == -3)
3179 {
3180 semsg(_(e_unknown_option), *arg);
3181 return NULL;
3182 }
3183 if (opt_type == -2 || opt_type == 0)
3184 type = &t_string;
3185 else
3186 type = &t_number; // both number and boolean option
3187 }
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003188 else if (*arg == '$')
3189 {
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003190 dest = dest_env;
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003191 if (is_decl)
3192 {
3193 semsg(_("E1065: Cannot declare an environment variable: %s"), name);
3194 goto theend;
3195 }
3196 }
3197 else if (*arg == '@')
3198 {
3199 if (!valid_yank_reg(arg[1], TRUE))
3200 {
3201 emsg_invreg(arg[1]);
3202 return FAIL;
3203 }
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003204 dest = dest_reg;
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003205 if (is_decl)
3206 {
3207 semsg(_("E1066: Cannot declare a register: %s"), name);
3208 goto theend;
3209 }
3210 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003211 else if (STRNCMP(arg, "g:", 2) == 0)
3212 {
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003213 dest = dest_global;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003214 if (is_decl)
3215 {
3216 semsg(_("E1016: Cannot declare a global variable: %s"), name);
3217 goto theend;
3218 }
3219 }
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003220 else if (STRNCMP(arg, "v:", 2) == 0)
3221 {
3222 vimvaridx = find_vim_var(name + 2);
3223 if (vimvaridx < 0)
3224 {
3225 semsg(_(e_var_notfound), arg);
3226 goto theend;
3227 }
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003228 dest = dest_vimvar;
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003229 if (is_decl)
3230 {
3231 semsg(_("E1064: Cannot declare a v: variable: %s"), name);
3232 goto theend;
3233 }
3234 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003235 else
3236 {
3237 for (idx = 0; reserved[idx] != NULL; ++idx)
3238 if (STRCMP(reserved[idx], name) == 0)
3239 {
3240 semsg(_("E1034: Cannot use reserved name %s"), name);
3241 goto theend;
3242 }
3243
3244 idx = lookup_local(arg, varlen, cctx);
3245 if (idx >= 0)
3246 {
3247 if (is_decl)
3248 {
3249 semsg(_("E1017: Variable already declared: %s"), name);
3250 goto theend;
3251 }
3252 else
3253 {
3254 lvar = ((lvar_T *)cctx->ctx_locals.ga_data) + idx;
3255 if (lvar->lv_const)
3256 {
3257 semsg(_("E1018: Cannot assign to a constant: %s"), name);
3258 goto theend;
3259 }
3260 }
3261 }
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003262 else if ((STRNCMP(arg, "s:", 2) == 0
3263 ? lookup_script(arg + 2, varlen - 2)
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003264 : lookup_script(arg, varlen)) == OK
3265 || find_imported(arg, varlen, cctx) != NULL)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003266 {
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003267 dest = dest_script;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003268 if (is_decl)
3269 {
3270 semsg(_("E1054: Variable already declared in the script: %s"),
3271 name);
3272 goto theend;
3273 }
3274 }
3275 }
3276
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003277 if (dest != dest_option)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003278 {
3279 if (is_decl && *p == ':')
3280 {
3281 // parse optional type: "let var: type = expr"
3282 p = skipwhite(p + 1);
3283 type = parse_type(&p, cctx->ctx_type_list);
3284 if (type == NULL)
3285 goto theend;
3286 has_type = TRUE;
3287 }
3288 else if (idx < 0)
3289 {
3290 // global and new local default to "any" type
3291 type = &t_any;
3292 }
3293 else
3294 {
3295 lvar = ((lvar_T *)cctx->ctx_locals.ga_data) + idx;
3296 type = lvar->lv_type;
3297 }
3298 }
3299
3300 sp = p;
3301 p = skipwhite(p);
3302 op = p;
3303 oplen = assignment_len(p, &heredoc);
3304 if (oplen > 0 && (!VIM_ISWHITE(*sp) || !VIM_ISWHITE(op[oplen])))
3305 {
3306 char_u buf[4];
3307
3308 vim_strncpy(buf, op, oplen);
3309 semsg(_(e_white_both), buf);
3310 }
3311
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003312 if (oplen == 3 && !heredoc && dest != dest_global
3313 && type->tt_type != VAR_STRING && type->tt_type != VAR_UNKNOWN)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003314 {
3315 emsg("E1019: Can only concatenate to string");
3316 goto theend;
3317 }
3318
3319 // +=, /=, etc. require an existing variable
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003320 if (idx < 0 && dest == dest_local)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003321 {
3322 if (oplen > 1 && !heredoc)
3323 {
3324 semsg(_("E1020: cannot use an operator on a new variable: %s"),
3325 name);
3326 goto theend;
3327 }
3328
3329 // new local variable
3330 idx = reserve_local(cctx, arg, varlen, cmdidx == CMD_const, type);
3331 if (idx < 0)
3332 goto theend;
3333 }
3334
3335 if (heredoc)
3336 {
3337 list_T *l;
3338 listitem_T *li;
3339
3340 // [let] varname =<< [trim] {end}
3341 eap->getline = heredoc_getline;
3342 eap->cookie = cctx;
3343 l = heredoc_get(eap, op + 3);
3344
3345 // Push each line and the create the list.
3346 for (li = l->lv_first; li != NULL; li = li->li_next)
3347 {
3348 generate_PUSHS(cctx, li->li_tv.vval.v_string);
3349 li->li_tv.vval.v_string = NULL;
3350 }
3351 generate_NEWLIST(cctx, l->lv_len);
3352 type = &t_list_string;
3353 list_free(l);
3354 p += STRLEN(p);
3355 }
3356 else if (oplen > 0)
3357 {
3358 // for "+=", "*=", "..=" etc. first load the current value
3359 if (*op != '=')
3360 {
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003361 switch (dest)
3362 {
3363 case dest_option:
3364 // TODO: check the option exists
3365 generate_LOAD(cctx, ISN_LOADOPT, 0, name + 1, type);
3366 break;
3367 case dest_global:
3368 generate_LOAD(cctx, ISN_LOADG, 0, name + 2, type);
3369 break;
3370 case dest_script:
3371 compile_load_scriptvar(cctx, name);
3372 break;
3373 case dest_env:
3374 // Include $ in the name here
3375 generate_LOAD(cctx, ISN_LOADENV, 0, name, type);
3376 break;
3377 case dest_reg:
3378 generate_LOAD(cctx, ISN_LOADREG, arg[1], NULL, &t_string);
3379 break;
3380 case dest_vimvar:
3381 generate_LOADV(cctx, name + 2, TRUE);
3382 break;
3383 case dest_local:
3384 generate_LOAD(cctx, ISN_LOAD, idx, NULL, type);
3385 break;
3386 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003387 }
3388
3389 // compile the expression
3390 instr_count = instr->ga_len;
3391 p = skipwhite(p + oplen);
3392 if (compile_expr1(&p, cctx) == FAIL)
3393 goto theend;
3394
3395 if (idx >= 0 && (is_decl || !has_type))
3396 {
3397 garray_T *stack = &cctx->ctx_type_stack;
3398 type_T *stacktype =
3399 ((type_T **)stack->ga_data)[stack->ga_len - 1];
3400
3401 lvar = ((lvar_T *)cctx->ctx_locals.ga_data) + idx;
3402 if (!has_type)
3403 {
3404 if (stacktype->tt_type == VAR_VOID)
3405 {
3406 emsg(_("E1031: Cannot use void value"));
3407 goto theend;
3408 }
3409 else
3410 lvar->lv_type = stacktype;
3411 }
3412 else
3413 if (check_type(lvar->lv_type, stacktype, TRUE) == FAIL)
3414 goto theend;
3415 }
3416 }
3417 else if (cmdidx == CMD_const)
3418 {
3419 emsg(_("E1021: const requires a value"));
3420 goto theend;
3421 }
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003422 else if (!has_type || dest == dest_option)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003423 {
3424 emsg(_("E1022: type or initialization required"));
3425 goto theend;
3426 }
3427 else
3428 {
3429 // variables are always initialized
3430 // TODO: support more types
3431 if (ga_grow(instr, 1) == FAIL)
3432 goto theend;
3433 if (type->tt_type == VAR_STRING)
3434 generate_PUSHS(cctx, vim_strsave((char_u *)""));
3435 else
3436 generate_PUSHNR(cctx, 0);
3437 }
3438
3439 if (oplen > 0 && *op != '=')
3440 {
3441 type_T *expected = &t_number;
3442 garray_T *stack = &cctx->ctx_type_stack;
3443 type_T *stacktype;
3444
3445 // TODO: if type is known use float or any operation
3446
3447 if (*op == '.')
3448 expected = &t_string;
3449 stacktype = ((type_T **)stack->ga_data)[stack->ga_len - 1];
3450 if (need_type(stacktype, expected, -1, cctx) == FAIL)
3451 goto theend;
3452
3453 if (*op == '.')
3454 generate_instr_drop(cctx, ISN_CONCAT, 1);
3455 else
3456 {
3457 isn_T *isn = generate_instr_drop(cctx, ISN_OPNR, 1);
3458
3459 if (isn == NULL)
3460 goto theend;
3461 switch (*op)
3462 {
3463 case '+': isn->isn_arg.op.op_type = EXPR_ADD; break;
3464 case '-': isn->isn_arg.op.op_type = EXPR_SUB; break;
3465 case '*': isn->isn_arg.op.op_type = EXPR_MULT; break;
3466 case '/': isn->isn_arg.op.op_type = EXPR_DIV; break;
3467 case '%': isn->isn_arg.op.op_type = EXPR_REM; break;
3468 }
3469 }
3470 }
3471
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003472 switch (dest)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003473 {
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003474 case dest_option:
3475 generate_STOREOPT(cctx, name + 1, opt_flags);
3476 break;
3477 case dest_global:
3478 // include g: with the name, easier to execute that way
3479 generate_STORE(cctx, ISN_STOREG, 0, name);
3480 break;
3481 case dest_env:
3482 generate_STORE(cctx, ISN_STOREENV, 0, name + 1);
3483 break;
3484 case dest_reg:
3485 generate_STORE(cctx, ISN_STOREREG, name[1], NULL);
3486 break;
3487 case dest_vimvar:
3488 generate_STORE(cctx, ISN_STOREV, vimvaridx, NULL);
3489 break;
3490 case dest_script:
3491 {
3492 char_u *rawname = name + (name[1] == ':' ? 2 : 0);
3493 imported_T *import = NULL;
3494 int sid = current_sctx.sc_sid;
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01003495
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003496 if (name[1] != ':')
3497 {
3498 import = find_imported(name, 0, cctx);
3499 if (import != NULL)
3500 sid = import->imp_sid;
3501 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003502
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003503 idx = get_script_item_idx(sid, rawname, TRUE);
3504 // TODO: specific type
3505 if (idx < 0)
3506 generate_OLDSCRIPT(cctx, ISN_STORES, rawname, sid, &t_any);
3507 else
3508 generate_VIM9SCRIPT(cctx, ISN_STORESCRIPT,
3509 sid, idx, &t_any);
3510 }
3511 break;
3512 case dest_local:
3513 {
3514 isn_T *isn = ((isn_T *)instr->ga_data) + instr->ga_len - 1;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003515
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01003516 // optimization: turn "var = 123" from ISN_PUSHNR + ISN_STORE
3517 // into ISN_STORENR
3518 if (instr->ga_len == instr_count + 1
3519 && isn->isn_type == ISN_PUSHNR)
3520 {
3521 varnumber_T val = isn->isn_arg.number;
3522 garray_T *stack = &cctx->ctx_type_stack;
3523
3524 isn->isn_type = ISN_STORENR;
3525 isn->isn_arg.storenr.str_idx = idx;
3526 isn->isn_arg.storenr.str_val = val;
3527 if (stack->ga_len > 0)
3528 --stack->ga_len;
3529 }
3530 else
3531 generate_STORE(cctx, ISN_STORE, idx, NULL);
3532 }
3533 break;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003534 }
3535 ret = p;
3536
3537theend:
3538 vim_free(name);
3539 return ret;
3540}
3541
3542/*
3543 * Compile an :import command.
3544 */
3545 static char_u *
3546compile_import(char_u *arg, cctx_T *cctx)
3547{
3548 return handle_import(arg, &cctx->ctx_imports, 0);
3549}
3550
3551/*
3552 * generate a jump to the ":endif"/":endfor"/":endwhile"/":finally"/":endtry".
3553 */
3554 static int
3555compile_jump_to_end(endlabel_T **el, jumpwhen_T when, cctx_T *cctx)
3556{
3557 garray_T *instr = &cctx->ctx_instr;
3558 endlabel_T *endlabel = ALLOC_CLEAR_ONE(endlabel_T);
3559
3560 if (endlabel == NULL)
3561 return FAIL;
3562 endlabel->el_next = *el;
3563 *el = endlabel;
3564 endlabel->el_end_label = instr->ga_len;
3565
3566 generate_JUMP(cctx, when, 0);
3567 return OK;
3568}
3569
3570 static void
3571compile_fill_jump_to_end(endlabel_T **el, cctx_T *cctx)
3572{
3573 garray_T *instr = &cctx->ctx_instr;
3574
3575 while (*el != NULL)
3576 {
3577 endlabel_T *cur = (*el);
3578 isn_T *isn;
3579
3580 isn = ((isn_T *)instr->ga_data) + cur->el_end_label;
3581 isn->isn_arg.jump.jump_where = instr->ga_len;
3582 *el = cur->el_next;
3583 vim_free(cur);
3584 }
3585}
3586
3587/*
3588 * Create a new scope and set up the generic items.
3589 */
3590 static scope_T *
3591new_scope(cctx_T *cctx, scopetype_T type)
3592{
3593 scope_T *scope = ALLOC_CLEAR_ONE(scope_T);
3594
3595 if (scope == NULL)
3596 return NULL;
3597 scope->se_outer = cctx->ctx_scope;
3598 cctx->ctx_scope = scope;
3599 scope->se_type = type;
3600 scope->se_local_count = cctx->ctx_locals.ga_len;
3601 return scope;
3602}
3603
3604/*
Bram Moolenaar7f829ca2020-01-31 22:12:41 +01003605 * Evaluate an expression that is a constant:
3606 * has(arg)
3607 *
3608 * Also handle:
3609 * ! in front logical NOT
3610 *
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003611 * Return FAIL if the expression is not a constant.
3612 */
3613 static int
Bram Moolenaar7f829ca2020-01-31 22:12:41 +01003614evaluate_const_expr7(char_u **arg, cctx_T *cctx UNUSED, typval_T *tv)
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003615{
3616 typval_T argvars[2];
Bram Moolenaar7f829ca2020-01-31 22:12:41 +01003617 char_u *start_leader, *end_leader;
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003618
Bram Moolenaar7f829ca2020-01-31 22:12:41 +01003619 /*
3620 * Skip '!' characters. They are handled later.
3621 */
3622 start_leader = *arg;
3623 while (**arg == '!')
3624 *arg = skipwhite(*arg + 1);
3625 end_leader = *arg;
3626
3627 /*
3628 * Recognize only has() for now.
3629 */
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003630 if (STRNCMP("has(", *arg, 4) != 0)
3631 return FAIL;
3632 *arg = skipwhite(*arg + 4);
3633
3634 if (**arg == '"')
3635 {
3636 if (get_string_tv(arg, tv, TRUE) == FAIL)
3637 return FAIL;
3638 }
3639 else if (**arg == '\'')
3640 {
3641 if (get_lit_string_tv(arg, tv, TRUE) == FAIL)
3642 return FAIL;
3643 }
3644 else
3645 return FAIL;
3646
3647 *arg = skipwhite(*arg);
3648 if (**arg != ')')
3649 return FAIL;
3650 *arg = skipwhite(*arg + 1);
3651
3652 argvars[0] = *tv;
3653 argvars[1].v_type = VAR_UNKNOWN;
3654 tv->v_type = VAR_NUMBER;
3655 tv->vval.v_number = 0;
3656 f_has(argvars, tv);
3657 clear_tv(&argvars[0]);
3658
Bram Moolenaar7f829ca2020-01-31 22:12:41 +01003659 while (start_leader < end_leader)
3660 {
3661 if (*start_leader == '!')
3662 tv->vval.v_number = !tv->vval.v_number;
3663 ++start_leader;
3664 }
3665
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003666 return OK;
3667}
3668
3669static int evaluate_const_expr3(char_u **arg, cctx_T *cctx, typval_T *tv);
3670
3671/*
3672 * Compile constant || or &&.
3673 */
3674 static int
3675evaluate_const_and_or(char_u **arg, cctx_T *cctx, char *op, typval_T *tv)
3676{
3677 char_u *p = skipwhite(*arg);
3678 int opchar = *op;
3679
3680 if (p[0] == opchar && p[1] == opchar)
3681 {
3682 int val = tv2bool(tv);
3683
3684 /*
3685 * Repeat until there is no following "||" or "&&"
3686 */
3687 while (p[0] == opchar && p[1] == opchar)
3688 {
3689 typval_T tv2;
3690
3691 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(p[2]))
3692 return FAIL;
3693
3694 // eval the next expression
3695 *arg = skipwhite(p + 2);
3696 tv2.v_type = VAR_UNKNOWN;
Bram Moolenaareed35712020-02-04 23:08:14 +01003697 tv2.v_lock = 0;
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003698 if ((opchar == '|' ? evaluate_const_expr3(arg, cctx, &tv2)
Bram Moolenaar7f829ca2020-01-31 22:12:41 +01003699 : evaluate_const_expr7(arg, cctx, &tv2)) == FAIL)
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003700 {
3701 clear_tv(&tv2);
3702 return FAIL;
3703 }
3704 if ((opchar == '&') == val)
3705 {
3706 // false || tv2 or true && tv2: use tv2
3707 clear_tv(tv);
3708 *tv = tv2;
3709 val = tv2bool(tv);
3710 }
3711 else
3712 clear_tv(&tv2);
3713 p = skipwhite(*arg);
3714 }
3715 }
3716
3717 return OK;
3718}
3719
3720/*
3721 * Evaluate an expression that is a constant: expr4 && expr4 && expr4
3722 * Return FAIL if the expression is not a constant.
3723 */
3724 static int
3725evaluate_const_expr3(char_u **arg, cctx_T *cctx, typval_T *tv)
3726{
3727 // evaluate the first expression
Bram Moolenaar7f829ca2020-01-31 22:12:41 +01003728 if (evaluate_const_expr7(arg, cctx, tv) == FAIL)
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003729 return FAIL;
3730
3731 // || and && work almost the same
3732 return evaluate_const_and_or(arg, cctx, "&&", tv);
3733}
3734
3735/*
3736 * Evaluate an expression that is a constant: expr3 || expr3 || expr3
3737 * Return FAIL if the expression is not a constant.
3738 */
3739 static int
3740evaluate_const_expr2(char_u **arg, cctx_T *cctx, typval_T *tv)
3741{
3742 // evaluate the first expression
3743 if (evaluate_const_expr3(arg, cctx, tv) == FAIL)
3744 return FAIL;
3745
3746 // || and && work almost the same
3747 return evaluate_const_and_or(arg, cctx, "||", tv);
3748}
3749
3750/*
3751 * Evaluate an expression that is a constant: expr2 ? expr1 : expr1
3752 * E.g. for "has('feature')".
3753 * This does not produce error messages. "tv" should be cleared afterwards.
3754 * Return FAIL if the expression is not a constant.
3755 */
3756 static int
3757evaluate_const_expr1(char_u **arg, cctx_T *cctx, typval_T *tv)
3758{
3759 char_u *p;
3760
3761 // evaluate the first expression
3762 if (evaluate_const_expr2(arg, cctx, tv) == FAIL)
3763 return FAIL;
3764
3765 p = skipwhite(*arg);
3766 if (*p == '?')
3767 {
3768 int val = tv2bool(tv);
3769 typval_T tv2;
3770
3771 if (!VIM_ISWHITE(**arg) || !VIM_ISWHITE(p[1]))
3772 return FAIL;
3773
3774 // evaluate the second expression; any type is accepted
3775 clear_tv(tv);
3776 *arg = skipwhite(p + 1);
3777 if (evaluate_const_expr1(arg, cctx, tv) == FAIL)
3778 return FAIL;
3779
3780 // Check for the ":".
3781 p = skipwhite(*arg);
3782 if (*p != ':' || !VIM_ISWHITE(**arg) || !VIM_ISWHITE(p[1]))
3783 return FAIL;
3784
3785 // evaluate the third expression
3786 *arg = skipwhite(p + 1);
3787 tv2.v_type = VAR_UNKNOWN;
3788 if (evaluate_const_expr1(arg, cctx, &tv2) == FAIL)
3789 {
3790 clear_tv(&tv2);
3791 return FAIL;
3792 }
3793 if (val)
3794 {
3795 // use the expr after "?"
3796 clear_tv(&tv2);
3797 }
3798 else
3799 {
3800 // use the expr after ":"
3801 clear_tv(tv);
3802 *tv = tv2;
3803 }
3804 }
3805 return OK;
3806}
3807
3808/*
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003809 * compile "if expr"
3810 *
3811 * "if expr" Produces instructions:
3812 * EVAL expr Push result of "expr"
3813 * JUMP_IF_FALSE end
3814 * ... body ...
3815 * end:
3816 *
3817 * "if expr | else" Produces instructions:
3818 * EVAL expr Push result of "expr"
3819 * JUMP_IF_FALSE else
3820 * ... body ...
3821 * JUMP_ALWAYS end
3822 * else:
3823 * ... body ...
3824 * end:
3825 *
3826 * "if expr1 | elseif expr2 | else" Produces instructions:
3827 * EVAL expr Push result of "expr"
3828 * JUMP_IF_FALSE elseif
3829 * ... body ...
3830 * JUMP_ALWAYS end
3831 * elseif:
3832 * EVAL expr Push result of "expr"
3833 * JUMP_IF_FALSE else
3834 * ... body ...
3835 * JUMP_ALWAYS end
3836 * else:
3837 * ... body ...
3838 * end:
3839 */
3840 static char_u *
3841compile_if(char_u *arg, cctx_T *cctx)
3842{
3843 char_u *p = arg;
3844 garray_T *instr = &cctx->ctx_instr;
3845 scope_T *scope;
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003846 typval_T tv;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003847
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003848 // compile "expr"; if we know it evaluates to FALSE skip the block
3849 tv.v_type = VAR_UNKNOWN;
3850 if (evaluate_const_expr1(&p, cctx, &tv) == OK)
3851 cctx->ctx_skip = tv2bool(&tv) ? FALSE : TRUE;
3852 else
3853 cctx->ctx_skip = MAYBE;
3854 clear_tv(&tv);
3855 if (cctx->ctx_skip == MAYBE)
3856 {
3857 p = arg;
3858 if (compile_expr1(&p, cctx) == FAIL)
3859 return NULL;
3860 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003861
3862 scope = new_scope(cctx, IF_SCOPE);
3863 if (scope == NULL)
3864 return NULL;
3865
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003866 if (cctx->ctx_skip == MAYBE)
3867 {
3868 // "where" is set when ":elseif", "else" or ":endif" is found
3869 scope->se_u.se_if.is_if_label = instr->ga_len;
3870 generate_JUMP(cctx, JUMP_IF_FALSE, 0);
3871 }
3872 else
3873 scope->se_u.se_if.is_if_label = -1;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003874
3875 return p;
3876}
3877
3878 static char_u *
3879compile_elseif(char_u *arg, cctx_T *cctx)
3880{
3881 char_u *p = arg;
3882 garray_T *instr = &cctx->ctx_instr;
3883 isn_T *isn;
3884 scope_T *scope = cctx->ctx_scope;
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003885 typval_T tv;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003886
3887 if (scope == NULL || scope->se_type != IF_SCOPE)
3888 {
3889 emsg(_(e_elseif_without_if));
3890 return NULL;
3891 }
3892 cctx->ctx_locals.ga_len = scope->se_local_count;
3893
Bram Moolenaar158906c2020-02-06 20:39:45 +01003894 if (cctx->ctx_skip == MAYBE)
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003895 {
3896 if (compile_jump_to_end(&scope->se_u.se_if.is_end_label,
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003897 JUMP_ALWAYS, cctx) == FAIL)
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003898 return NULL;
3899 // previous "if" or "elseif" jumps here
3900 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_if.is_if_label;
3901 isn->isn_arg.jump.jump_where = instr->ga_len;
3902 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003903
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003904 // compile "expr"; if we know it evaluates to FALSE skip the block
3905 tv.v_type = VAR_UNKNOWN;
3906 if (evaluate_const_expr1(&p, cctx, &tv) == OK)
3907 cctx->ctx_skip = tv2bool(&tv) ? FALSE : TRUE;
3908 else
3909 cctx->ctx_skip = MAYBE;
3910 clear_tv(&tv);
3911 if (cctx->ctx_skip == MAYBE)
3912 {
3913 p = arg;
3914 if (compile_expr1(&p, cctx) == FAIL)
3915 return NULL;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003916
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003917 // "where" is set when ":elseif", "else" or ":endif" is found
3918 scope->se_u.se_if.is_if_label = instr->ga_len;
3919 generate_JUMP(cctx, JUMP_IF_FALSE, 0);
3920 }
3921 else
3922 scope->se_u.se_if.is_if_label = -1;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003923
3924 return p;
3925}
3926
3927 static char_u *
3928compile_else(char_u *arg, cctx_T *cctx)
3929{
3930 char_u *p = arg;
3931 garray_T *instr = &cctx->ctx_instr;
3932 isn_T *isn;
3933 scope_T *scope = cctx->ctx_scope;
3934
3935 if (scope == NULL || scope->se_type != IF_SCOPE)
3936 {
3937 emsg(_(e_else_without_if));
3938 return NULL;
3939 }
3940 cctx->ctx_locals.ga_len = scope->se_local_count;
3941
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003942 // jump from previous block to the end, unless the else block is empty
3943 if (cctx->ctx_skip == MAYBE)
3944 {
3945 if (compile_jump_to_end(&scope->se_u.se_if.is_end_label,
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003946 JUMP_ALWAYS, cctx) == FAIL)
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003947 return NULL;
3948 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003949
Bram Moolenaar158906c2020-02-06 20:39:45 +01003950 if (cctx->ctx_skip == MAYBE)
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003951 {
3952 if (scope->se_u.se_if.is_if_label >= 0)
3953 {
3954 // previous "if" or "elseif" jumps here
3955 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_if.is_if_label;
3956 isn->isn_arg.jump.jump_where = instr->ga_len;
Bram Moolenaar158906c2020-02-06 20:39:45 +01003957 scope->se_u.se_if.is_if_label = -1;
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003958 }
3959 }
3960
3961 if (cctx->ctx_skip != MAYBE)
3962 cctx->ctx_skip = !cctx->ctx_skip;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003963
3964 return p;
3965}
3966
3967 static char_u *
3968compile_endif(char_u *arg, cctx_T *cctx)
3969{
3970 scope_T *scope = cctx->ctx_scope;
3971 ifscope_T *ifscope;
3972 garray_T *instr = &cctx->ctx_instr;
3973 isn_T *isn;
3974
3975 if (scope == NULL || scope->se_type != IF_SCOPE)
3976 {
3977 emsg(_(e_endif_without_if));
3978 return NULL;
3979 }
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01003980 ifscope = &scope->se_u.se_if;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003981 cctx->ctx_scope = scope->se_outer;
3982 cctx->ctx_locals.ga_len = scope->se_local_count;
3983
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003984 if (scope->se_u.se_if.is_if_label >= 0)
3985 {
3986 // previous "if" or "elseif" jumps here
3987 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_if.is_if_label;
3988 isn->isn_arg.jump.jump_where = instr->ga_len;
3989 }
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003990 // Fill in the "end" label in jumps at the end of the blocks.
3991 compile_fill_jump_to_end(&ifscope->is_end_label, cctx);
Bram Moolenaara259d8d2020-01-31 20:10:50 +01003992 cctx->ctx_skip = FALSE;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01003993
3994 vim_free(scope);
3995 return arg;
3996}
3997
3998/*
3999 * compile "for var in expr"
4000 *
4001 * Produces instructions:
4002 * PUSHNR -1
4003 * STORE loop-idx Set index to -1
4004 * EVAL expr Push result of "expr"
4005 * top: FOR loop-idx, end Increment index, use list on bottom of stack
4006 * - if beyond end, jump to "end"
4007 * - otherwise get item from list and push it
4008 * STORE var Store item in "var"
4009 * ... body ...
4010 * JUMP top Jump back to repeat
4011 * end: DROP Drop the result of "expr"
4012 *
4013 */
4014 static char_u *
4015compile_for(char_u *arg, cctx_T *cctx)
4016{
4017 char_u *p;
4018 size_t varlen;
4019 garray_T *instr = &cctx->ctx_instr;
4020 garray_T *stack = &cctx->ctx_type_stack;
4021 scope_T *scope;
4022 int loop_idx; // index of loop iteration variable
4023 int var_idx; // index of "var"
4024 type_T *vartype;
4025
4026 // TODO: list of variables: "for [key, value] in dict"
4027 // parse "var"
4028 for (p = arg; eval_isnamec1(*p); ++p)
4029 ;
4030 varlen = p - arg;
4031 var_idx = lookup_local(arg, varlen, cctx);
4032 if (var_idx >= 0)
4033 {
4034 semsg(_("E1023: variable already defined: %s"), arg);
4035 return NULL;
4036 }
4037
4038 // consume "in"
4039 p = skipwhite(p);
4040 if (STRNCMP(p, "in", 2) != 0 || !VIM_ISWHITE(p[2]))
4041 {
4042 emsg(_(e_missing_in));
4043 return NULL;
4044 }
4045 p = skipwhite(p + 2);
4046
4047
4048 scope = new_scope(cctx, FOR_SCOPE);
4049 if (scope == NULL)
4050 return NULL;
4051
4052 // Reserve a variable to store the loop iteration counter.
4053 loop_idx = reserve_local(cctx, (char_u *)"", 0, FALSE, &t_number);
4054 if (loop_idx < 0)
4055 return NULL;
4056
4057 // Reserve a variable to store "var"
4058 var_idx = reserve_local(cctx, arg, varlen, FALSE, &t_any);
4059 if (var_idx < 0)
4060 return NULL;
4061
4062 generate_STORENR(cctx, loop_idx, -1);
4063
4064 // compile "expr", it remains on the stack until "endfor"
4065 arg = p;
4066 if (compile_expr1(&arg, cctx) == FAIL)
4067 return NULL;
4068
4069 // now we know the type of "var"
4070 vartype = ((type_T **)stack->ga_data)[stack->ga_len - 1];
4071 if (vartype->tt_type != VAR_LIST)
4072 {
4073 emsg(_("E1024: need a List to iterate over"));
4074 return NULL;
4075 }
4076 if (vartype->tt_member->tt_type != VAR_UNKNOWN)
4077 {
4078 lvar_T *lvar = ((lvar_T *)cctx->ctx_locals.ga_data) + var_idx;
4079
4080 lvar->lv_type = vartype->tt_member;
4081 }
4082
4083 // "for_end" is set when ":endfor" is found
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004084 scope->se_u.se_for.fs_top_label = instr->ga_len;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004085
4086 generate_FOR(cctx, loop_idx);
4087 generate_STORE(cctx, ISN_STORE, var_idx, NULL);
4088
4089 return arg;
4090}
4091
4092/*
4093 * compile "endfor"
4094 */
4095 static char_u *
4096compile_endfor(char_u *arg, cctx_T *cctx)
4097{
4098 garray_T *instr = &cctx->ctx_instr;
4099 scope_T *scope = cctx->ctx_scope;
4100 forscope_T *forscope;
4101 isn_T *isn;
4102
4103 if (scope == NULL || scope->se_type != FOR_SCOPE)
4104 {
4105 emsg(_(e_for));
4106 return NULL;
4107 }
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004108 forscope = &scope->se_u.se_for;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004109 cctx->ctx_scope = scope->se_outer;
4110 cctx->ctx_locals.ga_len = scope->se_local_count;
4111
4112 // At end of ":for" scope jump back to the FOR instruction.
4113 generate_JUMP(cctx, JUMP_ALWAYS, forscope->fs_top_label);
4114
4115 // Fill in the "end" label in the FOR statement so it can jump here
4116 isn = ((isn_T *)instr->ga_data) + forscope->fs_top_label;
4117 isn->isn_arg.forloop.for_end = instr->ga_len;
4118
4119 // Fill in the "end" label any BREAK statements
4120 compile_fill_jump_to_end(&forscope->fs_end_label, cctx);
4121
4122 // Below the ":for" scope drop the "expr" list from the stack.
4123 if (generate_instr_drop(cctx, ISN_DROP, 1) == NULL)
4124 return NULL;
4125
4126 vim_free(scope);
4127
4128 return arg;
4129}
4130
4131/*
4132 * compile "while expr"
4133 *
4134 * Produces instructions:
4135 * top: EVAL expr Push result of "expr"
4136 * JUMP_IF_FALSE end jump if false
4137 * ... body ...
4138 * JUMP top Jump back to repeat
4139 * end:
4140 *
4141 */
4142 static char_u *
4143compile_while(char_u *arg, cctx_T *cctx)
4144{
4145 char_u *p = arg;
4146 garray_T *instr = &cctx->ctx_instr;
4147 scope_T *scope;
4148
4149 scope = new_scope(cctx, WHILE_SCOPE);
4150 if (scope == NULL)
4151 return NULL;
4152
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004153 scope->se_u.se_while.ws_top_label = instr->ga_len;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004154
4155 // compile "expr"
4156 if (compile_expr1(&p, cctx) == FAIL)
4157 return NULL;
4158
4159 // "while_end" is set when ":endwhile" is found
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004160 if (compile_jump_to_end(&scope->se_u.se_while.ws_end_label,
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004161 JUMP_IF_FALSE, cctx) == FAIL)
4162 return FAIL;
4163
4164 return p;
4165}
4166
4167/*
4168 * compile "endwhile"
4169 */
4170 static char_u *
4171compile_endwhile(char_u *arg, cctx_T *cctx)
4172{
4173 scope_T *scope = cctx->ctx_scope;
4174
4175 if (scope == NULL || scope->se_type != WHILE_SCOPE)
4176 {
4177 emsg(_(e_while));
4178 return NULL;
4179 }
4180 cctx->ctx_scope = scope->se_outer;
4181 cctx->ctx_locals.ga_len = scope->se_local_count;
4182
4183 // At end of ":for" scope jump back to the FOR instruction.
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004184 generate_JUMP(cctx, JUMP_ALWAYS, scope->se_u.se_while.ws_top_label);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004185
4186 // Fill in the "end" label in the WHILE statement so it can jump here.
4187 // And in any jumps for ":break"
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004188 compile_fill_jump_to_end(&scope->se_u.se_while.ws_end_label, cctx);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004189
4190 vim_free(scope);
4191
4192 return arg;
4193}
4194
4195/*
4196 * compile "continue"
4197 */
4198 static char_u *
4199compile_continue(char_u *arg, cctx_T *cctx)
4200{
4201 scope_T *scope = cctx->ctx_scope;
4202
4203 for (;;)
4204 {
4205 if (scope == NULL)
4206 {
4207 emsg(_(e_continue));
4208 return NULL;
4209 }
4210 if (scope->se_type == FOR_SCOPE || scope->se_type == WHILE_SCOPE)
4211 break;
4212 scope = scope->se_outer;
4213 }
4214
4215 // Jump back to the FOR or WHILE instruction.
4216 generate_JUMP(cctx, JUMP_ALWAYS,
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004217 scope->se_type == FOR_SCOPE ? scope->se_u.se_for.fs_top_label
4218 : scope->se_u.se_while.ws_top_label);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004219 return arg;
4220}
4221
4222/*
4223 * compile "break"
4224 */
4225 static char_u *
4226compile_break(char_u *arg, cctx_T *cctx)
4227{
4228 scope_T *scope = cctx->ctx_scope;
4229 endlabel_T **el;
4230
4231 for (;;)
4232 {
4233 if (scope == NULL)
4234 {
4235 emsg(_(e_break));
4236 return NULL;
4237 }
4238 if (scope->se_type == FOR_SCOPE || scope->se_type == WHILE_SCOPE)
4239 break;
4240 scope = scope->se_outer;
4241 }
4242
4243 // Jump to the end of the FOR or WHILE loop.
4244 if (scope->se_type == FOR_SCOPE)
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004245 el = &scope->se_u.se_for.fs_end_label;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004246 else
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004247 el = &scope->se_u.se_while.ws_end_label;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004248 if (compile_jump_to_end(el, JUMP_ALWAYS, cctx) == FAIL)
4249 return FAIL;
4250
4251 return arg;
4252}
4253
4254/*
4255 * compile "{" start of block
4256 */
4257 static char_u *
4258compile_block(char_u *arg, cctx_T *cctx)
4259{
4260 if (new_scope(cctx, BLOCK_SCOPE) == NULL)
4261 return NULL;
4262 return skipwhite(arg + 1);
4263}
4264
4265/*
4266 * compile end of block: drop one scope
4267 */
4268 static void
4269compile_endblock(cctx_T *cctx)
4270{
4271 scope_T *scope = cctx->ctx_scope;
4272
4273 cctx->ctx_scope = scope->se_outer;
4274 cctx->ctx_locals.ga_len = scope->se_local_count;
4275 vim_free(scope);
4276}
4277
4278/*
4279 * compile "try"
4280 * Creates a new scope for the try-endtry, pointing to the first catch and
4281 * finally.
4282 * Creates another scope for the "try" block itself.
4283 * TRY instruction sets up exception handling at runtime.
4284 *
4285 * "try"
4286 * TRY -> catch1, -> finally push trystack entry
4287 * ... try block
4288 * "throw {exception}"
4289 * EVAL {exception}
4290 * THROW create exception
4291 * ... try block
4292 * " catch {expr}"
4293 * JUMP -> finally
4294 * catch1: PUSH exeception
4295 * EVAL {expr}
4296 * MATCH
4297 * JUMP nomatch -> catch2
4298 * CATCH remove exception
4299 * ... catch block
4300 * " catch"
4301 * JUMP -> finally
4302 * catch2: CATCH remove exception
4303 * ... catch block
4304 * " finally"
4305 * finally:
4306 * ... finally block
4307 * " endtry"
4308 * ENDTRY pop trystack entry, may rethrow
4309 */
4310 static char_u *
4311compile_try(char_u *arg, cctx_T *cctx)
4312{
4313 garray_T *instr = &cctx->ctx_instr;
4314 scope_T *try_scope;
4315 scope_T *scope;
4316
4317 // scope that holds the jumps that go to catch/finally/endtry
4318 try_scope = new_scope(cctx, TRY_SCOPE);
4319 if (try_scope == NULL)
4320 return NULL;
4321
4322 // "catch" is set when the first ":catch" is found.
4323 // "finally" is set when ":finally" or ":endtry" is found
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004324 try_scope->se_u.se_try.ts_try_label = instr->ga_len;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004325 if (generate_instr(cctx, ISN_TRY) == NULL)
4326 return NULL;
4327
4328 // scope for the try block itself
4329 scope = new_scope(cctx, BLOCK_SCOPE);
4330 if (scope == NULL)
4331 return NULL;
4332
4333 return arg;
4334}
4335
4336/*
4337 * compile "catch {expr}"
4338 */
4339 static char_u *
4340compile_catch(char_u *arg, cctx_T *cctx UNUSED)
4341{
4342 scope_T *scope = cctx->ctx_scope;
4343 garray_T *instr = &cctx->ctx_instr;
4344 char_u *p;
4345 isn_T *isn;
4346
4347 // end block scope from :try or :catch
4348 if (scope != NULL && scope->se_type == BLOCK_SCOPE)
4349 compile_endblock(cctx);
4350 scope = cctx->ctx_scope;
4351
4352 // Error if not in a :try scope
4353 if (scope == NULL || scope->se_type != TRY_SCOPE)
4354 {
4355 emsg(_(e_catch));
4356 return NULL;
4357 }
4358
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004359 if (scope->se_u.se_try.ts_caught_all)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004360 {
4361 emsg(_("E1033: catch unreachable after catch-all"));
4362 return NULL;
4363 }
4364
4365 // Jump from end of previous block to :finally or :endtry
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004366 if (compile_jump_to_end(&scope->se_u.se_try.ts_end_label,
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004367 JUMP_ALWAYS, cctx) == FAIL)
4368 return NULL;
4369
4370 // End :try or :catch scope: set value in ISN_TRY instruction
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004371 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_try.ts_try_label;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004372 if (isn->isn_arg.try.try_catch == 0)
4373 isn->isn_arg.try.try_catch = instr->ga_len;
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004374 if (scope->se_u.se_try.ts_catch_label != 0)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004375 {
4376 // Previous catch without match jumps here
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004377 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_try.ts_catch_label;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004378 isn->isn_arg.jump.jump_where = instr->ga_len;
4379 }
4380
4381 p = skipwhite(arg);
4382 if (ends_excmd(*p))
4383 {
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004384 scope->se_u.se_try.ts_caught_all = TRUE;
4385 scope->se_u.se_try.ts_catch_label = 0;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004386 }
4387 else
4388 {
Bram Moolenaarff80cb62020-02-05 22:10:05 +01004389 char_u *end;
4390 char_u *pat;
4391 char_u *tofree = NULL;
4392 size_t len;
4393
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004394 // Push v:exception, push {expr} and MATCH
4395 generate_instr_type(cctx, ISN_PUSHEXC, &t_string);
4396
Bram Moolenaarff80cb62020-02-05 22:10:05 +01004397 end = skip_regexp(p + 1, *p, TRUE, &tofree);
4398 if (*end != *p)
4399 {
4400 semsg(_("E1067: Separator mismatch: %s"), p);
4401 vim_free(tofree);
4402 return FAIL;
4403 }
4404 if (tofree == NULL)
4405 len = end - (p + 1);
4406 else
4407 len = end - (tofree + 1);
4408 pat = vim_strnsave(p + 1, len);
4409 vim_free(tofree);
4410 p += len + 2;
4411 if (pat == NULL)
4412 return FAIL;
4413 if (generate_PUSHS(cctx, pat) == FAIL)
4414 return FAIL;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004415
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004416 if (generate_COMPARE(cctx, EXPR_MATCH, FALSE) == FAIL)
4417 return NULL;
4418
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004419 scope->se_u.se_try.ts_catch_label = instr->ga_len;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004420 if (generate_JUMP(cctx, JUMP_IF_FALSE, 0) == FAIL)
4421 return NULL;
4422 }
4423
4424 if (generate_instr(cctx, ISN_CATCH) == NULL)
4425 return NULL;
4426
4427 if (new_scope(cctx, BLOCK_SCOPE) == NULL)
4428 return NULL;
4429 return p;
4430}
4431
4432 static char_u *
4433compile_finally(char_u *arg, cctx_T *cctx)
4434{
4435 scope_T *scope = cctx->ctx_scope;
4436 garray_T *instr = &cctx->ctx_instr;
4437 isn_T *isn;
4438
4439 // end block scope from :try or :catch
4440 if (scope != NULL && scope->se_type == BLOCK_SCOPE)
4441 compile_endblock(cctx);
4442 scope = cctx->ctx_scope;
4443
4444 // Error if not in a :try scope
4445 if (scope == NULL || scope->se_type != TRY_SCOPE)
4446 {
4447 emsg(_(e_finally));
4448 return NULL;
4449 }
4450
4451 // End :catch or :finally scope: set value in ISN_TRY instruction
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004452 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_try.ts_try_label;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004453 if (isn->isn_arg.try.try_finally != 0)
4454 {
4455 emsg(_(e_finally_dup));
4456 return NULL;
4457 }
4458
4459 // Fill in the "end" label in jumps at the end of the blocks.
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004460 compile_fill_jump_to_end(&scope->se_u.se_try.ts_end_label, cctx);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004461
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004462 if (scope->se_u.se_try.ts_catch_label != 0)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004463 {
4464 // Previous catch without match jumps here
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004465 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_try.ts_catch_label;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004466 isn->isn_arg.jump.jump_where = instr->ga_len;
4467 }
4468
4469 isn->isn_arg.try.try_finally = instr->ga_len;
4470 // TODO: set index in ts_finally_label jumps
4471
4472 return arg;
4473}
4474
4475 static char_u *
4476compile_endtry(char_u *arg, cctx_T *cctx)
4477{
4478 scope_T *scope = cctx->ctx_scope;
4479 garray_T *instr = &cctx->ctx_instr;
4480 isn_T *isn;
4481
4482 // end block scope from :catch or :finally
4483 if (scope != NULL && scope->se_type == BLOCK_SCOPE)
4484 compile_endblock(cctx);
4485 scope = cctx->ctx_scope;
4486
4487 // Error if not in a :try scope
4488 if (scope == NULL || scope->se_type != TRY_SCOPE)
4489 {
4490 if (scope == NULL)
4491 emsg(_(e_no_endtry));
4492 else if (scope->se_type == WHILE_SCOPE)
4493 emsg(_(e_endwhile));
Bram Moolenaar5b18c242020-01-28 22:30:32 +01004494 else if (scope->se_type == FOR_SCOPE)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004495 emsg(_(e_endfor));
4496 else
4497 emsg(_(e_endif));
4498 return NULL;
4499 }
4500
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004501 isn = ((isn_T *)instr->ga_data) + scope->se_u.se_try.ts_try_label;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004502 if (isn->isn_arg.try.try_catch == 0 && isn->isn_arg.try.try_finally == 0)
4503 {
4504 emsg(_("E1032: missing :catch or :finally"));
4505 return NULL;
4506 }
4507
4508 // Fill in the "end" label in jumps at the end of the blocks, if not done
4509 // by ":finally".
Bram Moolenaar0ff6aad2020-01-29 21:27:21 +01004510 compile_fill_jump_to_end(&scope->se_u.se_try.ts_end_label, cctx);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004511
4512 // End :catch or :finally scope: set value in ISN_TRY instruction
4513 if (isn->isn_arg.try.try_finally == 0)
4514 isn->isn_arg.try.try_finally = instr->ga_len;
4515 compile_endblock(cctx);
4516
4517 if (generate_instr(cctx, ISN_ENDTRY) == NULL)
4518 return NULL;
4519 return arg;
4520}
4521
4522/*
4523 * compile "throw {expr}"
4524 */
4525 static char_u *
4526compile_throw(char_u *arg, cctx_T *cctx UNUSED)
4527{
4528 char_u *p = skipwhite(arg);
4529
4530 if (ends_excmd(*p))
4531 {
4532 emsg(_(e_argreq));
4533 return NULL;
4534 }
4535 if (compile_expr1(&p, cctx) == FAIL)
4536 return NULL;
4537 if (may_generate_2STRING(-1, cctx) == FAIL)
4538 return NULL;
4539 if (generate_instr_drop(cctx, ISN_THROW, 1) == NULL)
4540 return NULL;
4541
4542 return p;
4543}
4544
4545/*
4546 * compile "echo expr"
4547 */
4548 static char_u *
4549compile_echo(char_u *arg, int with_white, cctx_T *cctx)
4550{
4551 char_u *p = arg;
4552 int count = 0;
4553
4554 // for ()
4555 {
4556 if (compile_expr1(&p, cctx) == FAIL)
4557 return NULL;
4558 ++count;
4559 }
4560
4561 generate_ECHO(cctx, with_white, count);
4562
4563 return p;
4564}
4565
4566/*
4567 * After ex_function() has collected all the function lines: parse and compile
4568 * the lines into instructions.
4569 * Adds the function to "def_functions".
4570 * When "set_return_type" is set then set ufunc->uf_ret_type to the type of the
4571 * return statement (used for lambda).
4572 */
4573 void
4574compile_def_function(ufunc_T *ufunc, int set_return_type)
4575{
4576 dfunc_T *dfunc;
4577 char_u *line = NULL;
4578 char_u *p;
4579 exarg_T ea;
4580 char *errormsg = NULL; // error message
4581 int had_return = FALSE;
4582 cctx_T cctx;
4583 garray_T *instr;
4584 int called_emsg_before = called_emsg;
4585 int ret = FAIL;
4586 sctx_T save_current_sctx = current_sctx;
4587
4588 if (ufunc->uf_dfunc_idx >= 0)
4589 {
4590 // redefining a function that was compiled before
4591 dfunc = ((dfunc_T *)def_functions.ga_data) + ufunc->uf_dfunc_idx;
4592 dfunc->df_deleted = FALSE;
4593 }
4594 else
4595 {
4596 // Add the function to "def_functions".
4597 if (ga_grow(&def_functions, 1) == FAIL)
4598 return;
4599 dfunc = ((dfunc_T *)def_functions.ga_data) + def_functions.ga_len;
4600 vim_memset(dfunc, 0, sizeof(dfunc_T));
4601 dfunc->df_idx = def_functions.ga_len;
4602 ufunc->uf_dfunc_idx = dfunc->df_idx;
4603 dfunc->df_ufunc = ufunc;
4604 ++def_functions.ga_len;
4605 }
4606
4607 vim_memset(&cctx, 0, sizeof(cctx));
4608 cctx.ctx_ufunc = ufunc;
4609 cctx.ctx_lnum = -1;
4610 ga_init2(&cctx.ctx_locals, sizeof(lvar_T), 10);
4611 ga_init2(&cctx.ctx_type_stack, sizeof(type_T *), 50);
4612 ga_init2(&cctx.ctx_imports, sizeof(imported_T), 10);
4613 cctx.ctx_type_list = &ufunc->uf_type_list;
4614 ga_init2(&cctx.ctx_instr, sizeof(isn_T), 50);
4615 instr = &cctx.ctx_instr;
4616
4617 // Most modern script version.
4618 current_sctx.sc_version = SCRIPT_VERSION_VIM9;
4619
Bram Moolenaar170fcfc2020-02-06 17:51:35 +01004620 if (ufunc->uf_def_args.ga_len > 0)
4621 {
4622 int count = ufunc->uf_def_args.ga_len;
4623 int i;
4624 char_u *arg;
4625 int off = STACK_FRAME_SIZE + (ufunc->uf_va_name != NULL ? 1 : 0);
4626
4627 // Produce instructions for the default values of optional arguments.
4628 // Store the instruction index in uf_def_arg_idx[] so that we know
4629 // where to start when the function is called, depending on the number
4630 // of arguments.
4631 ufunc->uf_def_arg_idx = ALLOC_CLEAR_MULT(int, count + 1);
4632 if (ufunc->uf_def_arg_idx == NULL)
4633 goto erret;
4634 for (i = 0; i < count; ++i)
4635 {
4636 ufunc->uf_def_arg_idx[i] = instr->ga_len;
4637 arg = ((char_u **)(ufunc->uf_def_args.ga_data))[i];
4638 if (compile_expr1(&arg, &cctx) == FAIL
4639 || generate_STORE(&cctx, ISN_STORE,
4640 i - count - off, NULL) == FAIL)
4641 goto erret;
4642 }
4643
4644 // If a varargs is following, push an empty list.
4645 if (ufunc->uf_va_name != NULL)
4646 {
4647 if (generate_NEWLIST(&cctx, 0) == FAIL
4648 || generate_STORE(&cctx, ISN_STORE, -off, NULL) == FAIL)
4649 goto erret;
4650 }
4651
4652 ufunc->uf_def_arg_idx[count] = instr->ga_len;
4653 }
4654
4655 /*
4656 * Loop over all the lines of the function and generate instructions.
4657 */
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004658 for (;;)
4659 {
4660 if (line != NULL && *line == '|')
4661 // the line continues after a '|'
4662 ++line;
4663 else if (line != NULL && *line != NUL)
4664 {
4665 semsg(_("E488: Trailing characters: %s"), line);
4666 goto erret;
4667 }
4668 else
4669 {
4670 do
4671 {
4672 ++cctx.ctx_lnum;
4673 if (cctx.ctx_lnum == ufunc->uf_lines.ga_len)
4674 break;
4675 line = ((char_u **)ufunc->uf_lines.ga_data)[cctx.ctx_lnum];
4676 } while (line == NULL);
4677 if (cctx.ctx_lnum == ufunc->uf_lines.ga_len)
4678 break;
4679 SOURCING_LNUM = ufunc->uf_script_ctx.sc_lnum + cctx.ctx_lnum + 1;
4680 }
4681
4682 had_return = FALSE;
4683 vim_memset(&ea, 0, sizeof(ea));
4684 ea.cmdlinep = &line;
4685 ea.cmd = skipwhite(line);
4686
4687 // "}" ends a block scope
4688 if (*ea.cmd == '}')
4689 {
4690 scopetype_T stype = cctx.ctx_scope == NULL
4691 ? NO_SCOPE : cctx.ctx_scope->se_type;
4692
4693 if (stype == BLOCK_SCOPE)
4694 {
4695 compile_endblock(&cctx);
4696 line = ea.cmd;
4697 }
4698 else
4699 {
4700 emsg("E1025: using } outside of a block scope");
4701 goto erret;
4702 }
4703 if (line != NULL)
4704 line = skipwhite(ea.cmd + 1);
4705 continue;
4706 }
4707
4708 // "{" starts a block scope
4709 if (*ea.cmd == '{')
4710 {
4711 line = compile_block(ea.cmd, &cctx);
4712 continue;
4713 }
4714
4715 /*
4716 * COMMAND MODIFIERS
4717 */
4718 if (parse_command_modifiers(&ea, &errormsg, FALSE) == FAIL)
4719 {
4720 if (errormsg != NULL)
4721 goto erret;
4722 // empty line or comment
4723 line = (char_u *)"";
4724 continue;
4725 }
4726
4727 // Skip ":call" to get to the function name.
4728 if (checkforcmd(&ea.cmd, "call", 3))
4729 ea.cmd = skipwhite(ea.cmd);
4730
4731 // Assuming the command starts with a variable or function name, find
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01004732 // what follows. Also "&opt = val", "$ENV = val" and "@r = val".
4733 p = (*ea.cmd == '&' || *ea.cmd == '$' || *ea.cmd == '@')
4734 ? ea.cmd + 1 : ea.cmd;
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004735 p = to_name_end(p);
4736 if (p > ea.cmd && *p != NUL)
4737 {
4738 int oplen;
4739 int heredoc;
4740
4741 // "funcname(" is always a function call.
4742 // "varname[]" is an expression.
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004743 // "varname->expr" is an expression.
4744 if (*p == '('
4745 || *p == '['
4746 || ((p - ea.cmd) > 2 && ea.cmd[1] == ':')
4747 || (*p == '-' && p[1] == '>'))
4748 {
4749 // TODO
4750 }
4751
4752 oplen = assignment_len(skipwhite(p), &heredoc);
4753 if (oplen > 0)
4754 {
4755 // Recognize an assignment if we recognize the variable name:
4756 // "g:var = expr"
4757 // "var = expr" where "var" is a local var name.
4758 // "&opt = expr"
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01004759 // "$ENV = expr"
4760 // "@r = expr"
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004761 if (*ea.cmd == '&'
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01004762 || *ea.cmd == '$'
4763 || *ea.cmd == '@'
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004764 || ((p - ea.cmd) > 2 && ea.cmd[1] == ':')
4765 || lookup_local(ea.cmd, p - ea.cmd, &cctx) >= 0
Bram Moolenaar4e12a5d2020-02-03 20:50:59 +01004766 || lookup_script(ea.cmd, p - ea.cmd) == OK
4767 || find_imported(ea.cmd, p - ea.cmd, &cctx) != NULL)
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004768 {
4769 line = compile_assignment(ea.cmd, &ea, CMD_SIZE, &cctx);
4770 if (line == NULL)
4771 goto erret;
4772 continue;
4773 }
4774 }
4775 }
4776
4777 /*
4778 * COMMAND after range
4779 */
4780 ea.cmd = skip_range(ea.cmd, NULL);
4781 p = find_ex_command(&ea, NULL, lookup_local, &cctx);
4782
4783 if (p == ea.cmd && ea.cmdidx != CMD_SIZE)
4784 {
Bram Moolenaara259d8d2020-01-31 20:10:50 +01004785 if (cctx.ctx_skip == TRUE)
4786 {
4787 line += STRLEN(line);
4788 continue;
4789 }
4790
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004791 // Expression or function call.
4792 if (ea.cmdidx == CMD_eval)
4793 {
4794 p = ea.cmd;
4795 if (compile_expr1(&p, &cctx) == FAIL)
4796 goto erret;
4797
4798 // drop the return value
4799 generate_instr_drop(&cctx, ISN_DROP, 1);
4800 line = p;
4801 continue;
4802 }
4803 if (ea.cmdidx == CMD_let)
4804 {
4805 line = compile_assignment(ea.cmd, &ea, CMD_SIZE, &cctx);
4806 if (line == NULL)
4807 goto erret;
4808 continue;
4809 }
4810 iemsg("Command from find_ex_command() not handled");
4811 goto erret;
4812 }
4813
4814 p = skipwhite(p);
4815
Bram Moolenaara259d8d2020-01-31 20:10:50 +01004816 if (cctx.ctx_skip == TRUE
4817 && ea.cmdidx != CMD_elseif
4818 && ea.cmdidx != CMD_else
4819 && ea.cmdidx != CMD_endif)
4820 {
4821 line += STRLEN(line);
4822 continue;
4823 }
4824
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004825 switch (ea.cmdidx)
4826 {
4827 case CMD_def:
4828 case CMD_function:
4829 // TODO: Nested function
4830 emsg("Nested function not implemented yet");
4831 goto erret;
4832
4833 case CMD_return:
4834 line = compile_return(p, set_return_type, &cctx);
4835 had_return = TRUE;
4836 break;
4837
4838 case CMD_let:
4839 case CMD_const:
4840 line = compile_assignment(p, &ea, ea.cmdidx, &cctx);
4841 break;
4842
4843 case CMD_import:
4844 line = compile_import(p, &cctx);
4845 break;
4846
4847 case CMD_if:
4848 line = compile_if(p, &cctx);
4849 break;
4850 case CMD_elseif:
4851 line = compile_elseif(p, &cctx);
4852 break;
4853 case CMD_else:
4854 line = compile_else(p, &cctx);
4855 break;
4856 case CMD_endif:
4857 line = compile_endif(p, &cctx);
4858 break;
4859
4860 case CMD_while:
4861 line = compile_while(p, &cctx);
4862 break;
4863 case CMD_endwhile:
4864 line = compile_endwhile(p, &cctx);
4865 break;
4866
4867 case CMD_for:
4868 line = compile_for(p, &cctx);
4869 break;
4870 case CMD_endfor:
4871 line = compile_endfor(p, &cctx);
4872 break;
4873 case CMD_continue:
4874 line = compile_continue(p, &cctx);
4875 break;
4876 case CMD_break:
4877 line = compile_break(p, &cctx);
4878 break;
4879
4880 case CMD_try:
4881 line = compile_try(p, &cctx);
4882 break;
4883 case CMD_catch:
4884 line = compile_catch(p, &cctx);
4885 break;
4886 case CMD_finally:
4887 line = compile_finally(p, &cctx);
4888 break;
4889 case CMD_endtry:
4890 line = compile_endtry(p, &cctx);
4891 break;
4892 case CMD_throw:
4893 line = compile_throw(p, &cctx);
4894 break;
4895
4896 case CMD_echo:
4897 line = compile_echo(p, TRUE, &cctx);
4898 break;
4899 case CMD_echon:
4900 line = compile_echo(p, FALSE, &cctx);
4901 break;
4902
4903 default:
4904 // Not recognized, execute with do_cmdline_cmd().
4905 generate_EXEC(&cctx, line);
4906 line = (char_u *)"";
4907 break;
4908 }
4909 if (line == NULL)
4910 goto erret;
4911
4912 if (cctx.ctx_type_stack.ga_len < 0)
4913 {
4914 iemsg("Type stack underflow");
4915 goto erret;
4916 }
4917 }
4918
4919 if (cctx.ctx_scope != NULL)
4920 {
4921 if (cctx.ctx_scope->se_type == IF_SCOPE)
4922 emsg(_(e_endif));
4923 else if (cctx.ctx_scope->se_type == WHILE_SCOPE)
4924 emsg(_(e_endwhile));
4925 else if (cctx.ctx_scope->se_type == FOR_SCOPE)
4926 emsg(_(e_endfor));
4927 else
4928 emsg(_("E1026: Missing }"));
4929 goto erret;
4930 }
4931
4932 if (!had_return)
4933 {
4934 if (ufunc->uf_ret_type->tt_type != VAR_VOID)
4935 {
4936 emsg(_("E1027: Missing return statement"));
4937 goto erret;
4938 }
4939
4940 // Return zero if there is no return at the end.
4941 generate_PUSHNR(&cctx, 0);
4942 generate_instr(&cctx, ISN_RETURN);
4943 }
4944
4945 dfunc->df_instr = instr->ga_data;
4946 dfunc->df_instr_count = instr->ga_len;
4947 dfunc->df_varcount = cctx.ctx_max_local;
4948
4949 ret = OK;
4950
4951erret:
4952 if (ret == FAIL)
4953 {
4954 ga_clear(instr);
4955 ufunc->uf_dfunc_idx = -1;
4956 --def_functions.ga_len;
4957 if (errormsg != NULL)
4958 emsg(errormsg);
4959 else if (called_emsg == called_emsg_before)
4960 emsg("E1028: compile_def_function failed");
4961
4962 // don't execute this function body
4963 ufunc->uf_lines.ga_len = 0;
4964 }
4965
4966 current_sctx = save_current_sctx;
4967 ga_clear(&cctx.ctx_type_stack);
4968 ga_clear(&cctx.ctx_locals);
4969}
4970
4971/*
4972 * Delete an instruction, free what it contains.
4973 */
4974 static void
4975delete_instr(isn_T *isn)
4976{
4977 switch (isn->isn_type)
4978 {
4979 case ISN_EXEC:
4980 case ISN_LOADENV:
4981 case ISN_LOADG:
4982 case ISN_LOADOPT:
4983 case ISN_MEMBER:
4984 case ISN_PUSHEXC:
4985 case ISN_PUSHS:
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01004986 case ISN_STOREENV:
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004987 case ISN_STOREG:
4988 vim_free(isn->isn_arg.string);
4989 break;
4990
4991 case ISN_LOADS:
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01004992 case ISN_STORES:
4993 vim_free(isn->isn_arg.loadstore.ls_name);
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01004994 break;
4995
4996 case ISN_STOREOPT:
4997 vim_free(isn->isn_arg.storeopt.so_name);
4998 break;
4999
5000 case ISN_PUSHBLOB: // push blob isn_arg.blob
5001 blob_unref(isn->isn_arg.blob);
5002 break;
5003
5004 case ISN_UCALL:
5005 vim_free(isn->isn_arg.ufunc.cuf_name);
5006 break;
5007
5008 case ISN_2BOOL:
5009 case ISN_2STRING:
5010 case ISN_ADDBLOB:
5011 case ISN_ADDLIST:
5012 case ISN_BCALL:
5013 case ISN_CATCH:
5014 case ISN_CHECKNR:
5015 case ISN_CHECKTYPE:
5016 case ISN_COMPAREANY:
5017 case ISN_COMPAREBLOB:
5018 case ISN_COMPAREBOOL:
5019 case ISN_COMPAREDICT:
5020 case ISN_COMPAREFLOAT:
5021 case ISN_COMPAREFUNC:
5022 case ISN_COMPARELIST:
5023 case ISN_COMPARENR:
5024 case ISN_COMPAREPARTIAL:
5025 case ISN_COMPARESPECIAL:
5026 case ISN_COMPARESTRING:
5027 case ISN_CONCAT:
5028 case ISN_DCALL:
5029 case ISN_DROP:
5030 case ISN_ECHO:
5031 case ISN_ENDTRY:
5032 case ISN_FOR:
5033 case ISN_FUNCREF:
5034 case ISN_INDEX:
5035 case ISN_JUMP:
5036 case ISN_LOAD:
5037 case ISN_LOADSCRIPT:
5038 case ISN_LOADREG:
5039 case ISN_LOADV:
5040 case ISN_NEGATENR:
5041 case ISN_NEWDICT:
5042 case ISN_NEWLIST:
5043 case ISN_OPNR:
5044 case ISN_OPFLOAT:
5045 case ISN_OPANY:
5046 case ISN_PCALL:
5047 case ISN_PUSHF:
5048 case ISN_PUSHNR:
5049 case ISN_PUSHBOOL:
5050 case ISN_PUSHSPEC:
5051 case ISN_RETURN:
5052 case ISN_STORE:
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01005053 case ISN_STOREV:
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01005054 case ISN_STORENR:
Bram Moolenaarb283a8a2020-02-02 22:24:04 +01005055 case ISN_STOREREG:
Bram Moolenaar8a7d6542020-01-26 15:56:19 +01005056 case ISN_STORESCRIPT:
5057 case ISN_THROW:
5058 case ISN_TRY:
5059 // nothing allocated
5060 break;
5061 }
5062}
5063
5064/*
5065 * When a user function is deleted, delete any associated def function.
5066 */
5067 void
5068delete_def_function(ufunc_T *ufunc)
5069{
5070 int idx;
5071
5072 if (ufunc->uf_dfunc_idx >= 0)
5073 {
5074 dfunc_T *dfunc = ((dfunc_T *)def_functions.ga_data)
5075 + ufunc->uf_dfunc_idx;
5076 ga_clear(&dfunc->df_def_args_isn);
5077
5078 for (idx = 0; idx < dfunc->df_instr_count; ++idx)
5079 delete_instr(dfunc->df_instr + idx);
5080 VIM_CLEAR(dfunc->df_instr);
5081
5082 dfunc->df_deleted = TRUE;
5083 }
5084}
5085
5086#if defined(EXITFREE) || defined(PROTO)
5087 void
5088free_def_functions(void)
5089{
5090 vim_free(def_functions.ga_data);
5091}
5092#endif
5093
5094
5095#endif // FEAT_EVAL