1 /* vi:set ts=8 sts=4 sw=4 noet: 2 * 3 * VIM - Vi IMproved by Bram Moolenaar 4 * 5 * Do ":help uganda" in Vim to read copying and usage conditions. 6 * Do ":help credits" in Vim to see a list of people who contributed. 7 * See README.txt for an overview of the Vim source code. 8 */ 9 10 /* 11 * userfunc.c: User defined function support 12 */ 13 14 #include "vim.h" 15 16 #if defined(FEAT_EVAL) || defined(PROTO) 17 /* 18 * All user-defined functions are found in this hashtable. 19 */ 20 static hashtab_T func_hashtab; 21 22 // Used by get_func_tv() 23 static garray_T funcargs = GA_EMPTY; 24 25 // pointer to funccal for currently active function 26 static funccall_T *current_funccal = NULL; 27 28 // Pointer to list of previously used funccal, still around because some 29 // item in it is still being used. 30 static funccall_T *previous_funccal = NULL; 31 32 static char *e_funcexts = N_("E122: Function %s already exists, add ! to replace it"); 33 static char *e_funcdict = N_("E717: Dictionary entry already exists"); 34 static char *e_funcref = N_("E718: Funcref required"); 35 static char *e_nofunc = N_("E130: Unknown function: %s"); 36 37 static void funccal_unref(funccall_T *fc, ufunc_T *fp, int force); 38 39 void 40 func_init() 41 { 42 hash_init(&func_hashtab); 43 } 44 45 /* 46 * Return the function hash table 47 */ 48 hashtab_T * 49 func_tbl_get(void) 50 { 51 return &func_hashtab; 52 } 53 54 /* 55 * Get one function argument. 56 * If "argtypes" is not NULL also get the type: "arg: type". 57 * Return a pointer to after the type. 58 * When something is wrong return "arg". 59 */ 60 static char_u * 61 one_function_arg(char_u *arg, garray_T *newargs, garray_T *argtypes, int skip) 62 { 63 char_u *p = arg; 64 char_u *arg_copy = NULL; 65 66 while (ASCII_ISALNUM(*p) || *p == '_') 67 ++p; 68 if (arg == p || isdigit(*arg) 69 || (p - arg == 9 && STRNCMP(arg, "firstline", 9) == 0) 70 || (p - arg == 8 && STRNCMP(arg, "lastline", 8) == 0)) 71 { 72 if (!skip) 73 semsg(_("E125: Illegal argument: %s"), arg); 74 return arg; 75 } 76 if (newargs != NULL && ga_grow(newargs, 1) == FAIL) 77 return arg; 78 if (newargs != NULL) 79 { 80 int c; 81 int i; 82 83 c = *p; 84 *p = NUL; 85 arg_copy = vim_strsave(arg); 86 if (arg_copy == NULL) 87 { 88 *p = c; 89 return arg; 90 } 91 92 // Check for duplicate argument name. 93 for (i = 0; i < newargs->ga_len; ++i) 94 if (STRCMP(((char_u **)(newargs->ga_data))[i], arg_copy) == 0) 95 { 96 semsg(_("E853: Duplicate argument name: %s"), arg_copy); 97 vim_free(arg_copy); 98 return arg; 99 } 100 ((char_u **)(newargs->ga_data))[newargs->ga_len] = arg_copy; 101 newargs->ga_len++; 102 103 *p = c; 104 } 105 106 // get any type from "arg: type" 107 if (argtypes != NULL && ga_grow(argtypes, 1) == OK) 108 { 109 char_u *type = NULL; 110 111 if (VIM_ISWHITE(*p) && *skipwhite(p) == ':') 112 { 113 semsg(_("E1059: No white space allowed before colon: %s"), 114 arg_copy == NULL ? arg : arg_copy); 115 p = skipwhite(p); 116 } 117 if (*p == ':') 118 { 119 ++p; 120 if (!VIM_ISWHITE(*p)) 121 { 122 semsg(_(e_white_after), ":"); 123 return arg; 124 } 125 type = skipwhite(p); 126 p = skip_type(type); 127 type = vim_strnsave(type, p - type); 128 } 129 else if (*skipwhite(p) != '=') 130 { 131 semsg(_("E1077: Missing argument type for %s"), 132 arg_copy == NULL ? arg : arg_copy); 133 return arg; 134 } 135 ((char_u **)argtypes->ga_data)[argtypes->ga_len++] = type; 136 } 137 138 return p; 139 } 140 141 /* 142 * Get function arguments. 143 */ 144 int 145 get_function_args( 146 char_u **argp, 147 char_u endchar, 148 garray_T *newargs, 149 garray_T *argtypes, // NULL unless using :def 150 int *varargs, 151 garray_T *default_args, 152 int skip, 153 exarg_T *eap, 154 char_u **line_to_free) 155 { 156 int mustend = FALSE; 157 char_u *arg = *argp; 158 char_u *p = arg; 159 int c; 160 int any_default = FALSE; 161 char_u *expr; 162 char_u *whitep = arg; 163 164 if (newargs != NULL) 165 ga_init2(newargs, (int)sizeof(char_u *), 3); 166 if (argtypes != NULL) 167 ga_init2(argtypes, (int)sizeof(char_u *), 3); 168 if (default_args != NULL) 169 ga_init2(default_args, (int)sizeof(char_u *), 3); 170 171 if (varargs != NULL) 172 *varargs = FALSE; 173 174 /* 175 * Isolate the arguments: "arg1, arg2, ...)" 176 */ 177 while (*p != endchar) 178 { 179 while (eap != NULL && eap->getline != NULL 180 && (*p == NUL || (VIM_ISWHITE(*whitep) && *p == '#'))) 181 { 182 char_u *theline; 183 184 // End of the line, get the next one. 185 theline = eap->getline(':', eap->cookie, 0, TRUE); 186 if (theline == NULL) 187 break; 188 vim_free(*line_to_free); 189 *line_to_free = theline; 190 whitep = (char_u *)" "; 191 p = skipwhite(theline); 192 } 193 194 if (mustend && *p != endchar) 195 { 196 if (!skip) 197 semsg(_(e_invarg2), *argp); 198 break; 199 } 200 if (*p == endchar) 201 break; 202 203 if (p[0] == '.' && p[1] == '.' && p[2] == '.') 204 { 205 if (varargs != NULL) 206 *varargs = TRUE; 207 p += 3; 208 mustend = TRUE; 209 210 if (argtypes != NULL) 211 { 212 // ...name: list<type> 213 if (!ASCII_ISALPHA(*p)) 214 { 215 emsg(_("E1055: Missing name after ...")); 216 break; 217 } 218 219 arg = p; 220 p = one_function_arg(p, newargs, argtypes, skip); 221 if (p == arg) 222 break; 223 } 224 } 225 else 226 { 227 arg = p; 228 p = one_function_arg(p, newargs, argtypes, skip); 229 if (p == arg) 230 break; 231 232 if (*skipwhite(p) == '=' && default_args != NULL) 233 { 234 typval_T rettv; 235 236 // find the end of the expression (doesn't evaluate it) 237 any_default = TRUE; 238 p = skipwhite(p) + 1; 239 whitep = p; 240 p = skipwhite(p); 241 expr = p; 242 if (eval1(&p, &rettv, NULL) != FAIL) 243 { 244 if (ga_grow(default_args, 1) == FAIL) 245 goto err_ret; 246 247 // trim trailing whitespace 248 while (p > expr && VIM_ISWHITE(p[-1])) 249 p--; 250 c = *p; 251 *p = NUL; 252 expr = vim_strsave(expr); 253 if (expr == NULL) 254 { 255 *p = c; 256 goto err_ret; 257 } 258 ((char_u **)(default_args->ga_data)) 259 [default_args->ga_len] = expr; 260 default_args->ga_len++; 261 *p = c; 262 } 263 else 264 mustend = TRUE; 265 } 266 else if (any_default) 267 { 268 emsg(_("E989: Non-default argument follows default argument")); 269 goto err_ret; 270 } 271 if (*p == ',') 272 { 273 ++p; 274 // Don't give this error when skipping, it makes the "->" not 275 // found in "{k,v -> x}" and give a confusing error. 276 if (!skip && in_vim9script() 277 && !IS_WHITE_OR_NUL(*p) && *p != endchar) 278 { 279 semsg(_(e_white_after), ","); 280 goto err_ret; 281 } 282 } 283 else 284 mustend = TRUE; 285 } 286 whitep = p; 287 p = skipwhite(p); 288 } 289 290 if (*p != endchar) 291 goto err_ret; 292 ++p; // skip "endchar" 293 294 *argp = p; 295 return OK; 296 297 err_ret: 298 if (newargs != NULL) 299 ga_clear_strings(newargs); 300 if (default_args != NULL) 301 ga_clear_strings(default_args); 302 return FAIL; 303 } 304 305 /* 306 * Register function "fp" as using "current_funccal" as its scope. 307 */ 308 static int 309 register_closure(ufunc_T *fp) 310 { 311 if (fp->uf_scoped == current_funccal) 312 // no change 313 return OK; 314 funccal_unref(fp->uf_scoped, fp, FALSE); 315 fp->uf_scoped = current_funccal; 316 current_funccal->fc_refcount++; 317 318 if (ga_grow(¤t_funccal->fc_funcs, 1) == FAIL) 319 return FAIL; 320 ((ufunc_T **)current_funccal->fc_funcs.ga_data) 321 [current_funccal->fc_funcs.ga_len++] = fp; 322 return OK; 323 } 324 325 static void 326 set_ufunc_name(ufunc_T *fp, char_u *name) 327 { 328 STRCPY(fp->uf_name, name); 329 330 if (name[0] == K_SPECIAL) 331 { 332 fp->uf_name_exp = alloc(STRLEN(name) + 3); 333 if (fp->uf_name_exp != NULL) 334 { 335 STRCPY(fp->uf_name_exp, "<SNR>"); 336 STRCAT(fp->uf_name_exp, fp->uf_name + 3); 337 } 338 } 339 } 340 341 /* 342 * Get a name for a lambda. Returned in static memory. 343 */ 344 char_u * 345 get_lambda_name(void) 346 { 347 static char_u name[30]; 348 static int lambda_no = 0; 349 350 sprintf((char*)name, "<lambda>%d", ++lambda_no); 351 return name; 352 } 353 354 #if defined(FEAT_LUA) || defined(PROTO) 355 /* 356 * Registers a native C callback which can be called from Vim script. 357 * Returns the name of the Vim script function. 358 */ 359 char_u * 360 register_cfunc(cfunc_T cb, cfunc_free_T cb_free, void *state) 361 { 362 char_u *name = get_lambda_name(); 363 ufunc_T *fp; 364 365 fp = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(name) + 1); 366 if (fp == NULL) 367 return NULL; 368 369 fp->uf_dfunc_idx = UF_NOT_COMPILED; 370 fp->uf_refcount = 1; 371 fp->uf_varargs = TRUE; 372 fp->uf_flags = FC_CFUNC; 373 fp->uf_calls = 0; 374 fp->uf_script_ctx = current_sctx; 375 fp->uf_cb = cb; 376 fp->uf_cb_free = cb_free; 377 fp->uf_cb_state = state; 378 379 set_ufunc_name(fp, name); 380 hash_add(&func_hashtab, UF2HIKEY(fp)); 381 382 return name; 383 } 384 #endif 385 386 /* 387 * Parse a lambda expression and get a Funcref from "*arg". 388 * Return OK or FAIL. Returns NOTDONE for dict or {expr}. 389 */ 390 int 391 get_lambda_tv(char_u **arg, typval_T *rettv, evalarg_T *evalarg) 392 { 393 int evaluate = evalarg != NULL 394 && (evalarg->eval_flags & EVAL_EVALUATE); 395 garray_T newargs; 396 garray_T newlines; 397 garray_T *pnewargs; 398 ufunc_T *fp = NULL; 399 partial_T *pt = NULL; 400 int varargs; 401 int ret; 402 char_u *s; 403 char_u *start, *end; 404 int *old_eval_lavars = eval_lavars_used; 405 int eval_lavars = FALSE; 406 char_u *tofree = NULL; 407 408 ga_init(&newargs); 409 ga_init(&newlines); 410 411 // First, check if this is a lambda expression. "->" must exist. 412 s = skipwhite(*arg + 1); 413 ret = get_function_args(&s, '-', NULL, NULL, NULL, NULL, TRUE, 414 NULL, NULL); 415 if (ret == FAIL || *s != '>') 416 return NOTDONE; 417 418 // Parse the arguments again. 419 if (evaluate) 420 pnewargs = &newargs; 421 else 422 pnewargs = NULL; 423 *arg = skipwhite(*arg + 1); 424 // TODO: argument types 425 ret = get_function_args(arg, '-', pnewargs, NULL, &varargs, NULL, FALSE, 426 NULL, NULL); 427 if (ret == FAIL || **arg != '>') 428 goto errret; 429 430 // Set up a flag for checking local variables and arguments. 431 if (evaluate) 432 eval_lavars_used = &eval_lavars; 433 434 // Get the start and the end of the expression. 435 *arg = skipwhite_and_linebreak(*arg + 1, evalarg); 436 start = *arg; 437 ret = skip_expr_concatenate(arg, &start, &end, evalarg); 438 if (ret == FAIL) 439 goto errret; 440 if (evalarg != NULL) 441 { 442 // avoid that the expression gets freed when another line break follows 443 tofree = evalarg->eval_tofree; 444 evalarg->eval_tofree = NULL; 445 } 446 447 *arg = skipwhite_and_linebreak(*arg, evalarg); 448 if (**arg != '}') 449 { 450 semsg(_("E451: Expected }: %s"), *arg); 451 goto errret; 452 } 453 ++*arg; 454 455 if (evaluate) 456 { 457 int len; 458 int flags = 0; 459 char_u *p; 460 char_u *name = get_lambda_name(); 461 462 fp = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(name) + 1); 463 if (fp == NULL) 464 goto errret; 465 fp->uf_def_status = UF_NOT_COMPILED; 466 pt = ALLOC_CLEAR_ONE(partial_T); 467 if (pt == NULL) 468 goto errret; 469 470 ga_init2(&newlines, (int)sizeof(char_u *), 1); 471 if (ga_grow(&newlines, 1) == FAIL) 472 goto errret; 473 474 // Add "return " before the expression. 475 len = 7 + (int)(end - start) + 1; 476 p = alloc(len); 477 if (p == NULL) 478 goto errret; 479 ((char_u **)(newlines.ga_data))[newlines.ga_len++] = p; 480 STRCPY(p, "return "); 481 vim_strncpy(p + 7, start, end - start); 482 if (strstr((char *)p + 7, "a:") == NULL) 483 // No a: variables are used for sure. 484 flags |= FC_NOARGS; 485 486 fp->uf_refcount = 1; 487 set_ufunc_name(fp, name); 488 hash_add(&func_hashtab, UF2HIKEY(fp)); 489 fp->uf_args = newargs; 490 ga_init(&fp->uf_def_args); 491 fp->uf_lines = newlines; 492 if (current_funccal != NULL && eval_lavars) 493 { 494 flags |= FC_CLOSURE; 495 if (register_closure(fp) == FAIL) 496 goto errret; 497 } 498 else 499 fp->uf_scoped = NULL; 500 501 #ifdef FEAT_PROFILE 502 if (prof_def_func()) 503 func_do_profile(fp); 504 #endif 505 if (sandbox) 506 flags |= FC_SANDBOX; 507 // can be called with more args than uf_args.ga_len 508 fp->uf_varargs = TRUE; 509 fp->uf_flags = flags; 510 fp->uf_calls = 0; 511 fp->uf_script_ctx = current_sctx; 512 fp->uf_script_ctx.sc_lnum += SOURCING_LNUM - newlines.ga_len; 513 514 pt->pt_func = fp; 515 pt->pt_refcount = 1; 516 rettv->vval.v_partial = pt; 517 rettv->v_type = VAR_PARTIAL; 518 } 519 520 eval_lavars_used = old_eval_lavars; 521 if (evalarg != NULL && evalarg->eval_tofree == NULL) 522 evalarg->eval_tofree = tofree; 523 else 524 vim_free(tofree); 525 return OK; 526 527 errret: 528 ga_clear_strings(&newargs); 529 ga_clear_strings(&newlines); 530 vim_free(fp); 531 vim_free(pt); 532 if (evalarg != NULL && evalarg->eval_tofree == NULL) 533 evalarg->eval_tofree = tofree; 534 else 535 vim_free(tofree); 536 eval_lavars_used = old_eval_lavars; 537 return FAIL; 538 } 539 540 /* 541 * Check if "name" is a variable of type VAR_FUNC. If so, return the function 542 * name it contains, otherwise return "name". 543 * If "partialp" is not NULL, and "name" is of type VAR_PARTIAL also set 544 * "partialp". 545 */ 546 char_u * 547 deref_func_name(char_u *name, int *lenp, partial_T **partialp, int no_autoload) 548 { 549 dictitem_T *v; 550 int cc; 551 char_u *s; 552 553 if (partialp != NULL) 554 *partialp = NULL; 555 556 cc = name[*lenp]; 557 name[*lenp] = NUL; 558 v = find_var(name, NULL, no_autoload); 559 name[*lenp] = cc; 560 if (v != NULL && v->di_tv.v_type == VAR_FUNC) 561 { 562 if (v->di_tv.vval.v_string == NULL) 563 { 564 *lenp = 0; 565 return (char_u *)""; // just in case 566 } 567 s = v->di_tv.vval.v_string; 568 *lenp = (int)STRLEN(s); 569 return s; 570 } 571 572 if (v != NULL && v->di_tv.v_type == VAR_PARTIAL) 573 { 574 partial_T *pt = v->di_tv.vval.v_partial; 575 576 if (pt == NULL) 577 { 578 *lenp = 0; 579 return (char_u *)""; // just in case 580 } 581 if (partialp != NULL) 582 *partialp = pt; 583 s = partial_name(pt); 584 *lenp = (int)STRLEN(s); 585 return s; 586 } 587 588 return name; 589 } 590 591 /* 592 * Give an error message with a function name. Handle <SNR> things. 593 * "ermsg" is to be passed without translation, use N_() instead of _(). 594 */ 595 void 596 emsg_funcname(char *ermsg, char_u *name) 597 { 598 char_u *p; 599 600 if (*name == K_SPECIAL) 601 p = concat_str((char_u *)"<SNR>", name + 3); 602 else 603 p = name; 604 semsg(_(ermsg), p); 605 if (p != name) 606 vim_free(p); 607 } 608 609 /* 610 * Allocate a variable for the result of a function. 611 * Return OK or FAIL. 612 */ 613 int 614 get_func_tv( 615 char_u *name, // name of the function 616 int len, // length of "name" or -1 to use strlen() 617 typval_T *rettv, 618 char_u **arg, // argument, pointing to the '(' 619 evalarg_T *evalarg, // for line continuation 620 funcexe_T *funcexe) // various values 621 { 622 char_u *argp; 623 int ret = OK; 624 typval_T argvars[MAX_FUNC_ARGS + 1]; // vars for arguments 625 int argcount = 0; // number of arguments found 626 627 /* 628 * Get the arguments. 629 */ 630 argp = *arg; 631 while (argcount < MAX_FUNC_ARGS - (funcexe->partial == NULL ? 0 632 : funcexe->partial->pt_argc)) 633 { 634 // skip the '(' or ',' and possibly line breaks 635 argp = skipwhite_and_linebreak(argp + 1, evalarg); 636 637 if (*argp == ')' || *argp == ',' || *argp == NUL) 638 break; 639 if (eval1(&argp, &argvars[argcount], evalarg) == FAIL) 640 { 641 ret = FAIL; 642 break; 643 } 644 ++argcount; 645 if (*argp != ',') 646 break; 647 } 648 argp = skipwhite_and_linebreak(argp, evalarg); 649 if (*argp == ')') 650 ++argp; 651 else 652 ret = FAIL; 653 654 if (ret == OK) 655 { 656 int i = 0; 657 658 if (get_vim_var_nr(VV_TESTING)) 659 { 660 // Prepare for calling test_garbagecollect_now(), need to know 661 // what variables are used on the call stack. 662 if (funcargs.ga_itemsize == 0) 663 ga_init2(&funcargs, (int)sizeof(typval_T *), 50); 664 for (i = 0; i < argcount; ++i) 665 if (ga_grow(&funcargs, 1) == OK) 666 ((typval_T **)funcargs.ga_data)[funcargs.ga_len++] = 667 &argvars[i]; 668 } 669 670 ret = call_func(name, len, rettv, argcount, argvars, funcexe); 671 672 funcargs.ga_len -= i; 673 } 674 else if (!aborting()) 675 { 676 if (argcount == MAX_FUNC_ARGS) 677 emsg_funcname(N_("E740: Too many arguments for function %s"), name); 678 else 679 emsg_funcname(N_("E116: Invalid arguments for function %s"), name); 680 } 681 682 while (--argcount >= 0) 683 clear_tv(&argvars[argcount]); 684 685 *arg = skipwhite(argp); 686 return ret; 687 } 688 689 /* 690 * Return TRUE if "p" starts with "<SID>" or "s:". 691 * Only works if eval_fname_script() returned non-zero for "p"! 692 */ 693 static int 694 eval_fname_sid(char_u *p) 695 { 696 return (*p == 's' || TOUPPER_ASC(p[2]) == 'I'); 697 } 698 699 /* 700 * In a script change <SID>name() and s:name() to K_SNR 123_name(). 701 * Change <SNR>123_name() to K_SNR 123_name(). 702 * Use "fname_buf[FLEN_FIXED + 1]" when it fits, otherwise allocate memory 703 * (slow). 704 */ 705 char_u * 706 fname_trans_sid(char_u *name, char_u *fname_buf, char_u **tofree, int *error) 707 { 708 int llen; 709 char_u *fname; 710 int i; 711 712 llen = eval_fname_script(name); 713 if (llen > 0) 714 { 715 fname_buf[0] = K_SPECIAL; 716 fname_buf[1] = KS_EXTRA; 717 fname_buf[2] = (int)KE_SNR; 718 i = 3; 719 if (eval_fname_sid(name)) // "<SID>" or "s:" 720 { 721 if (current_sctx.sc_sid <= 0) 722 *error = FCERR_SCRIPT; 723 else 724 { 725 sprintf((char *)fname_buf + 3, "%ld_", 726 (long)current_sctx.sc_sid); 727 i = (int)STRLEN(fname_buf); 728 } 729 } 730 if (i + STRLEN(name + llen) < FLEN_FIXED) 731 { 732 STRCPY(fname_buf + i, name + llen); 733 fname = fname_buf; 734 } 735 else 736 { 737 fname = alloc(i + STRLEN(name + llen) + 1); 738 if (fname == NULL) 739 *error = FCERR_OTHER; 740 else 741 { 742 *tofree = fname; 743 mch_memmove(fname, fname_buf, (size_t)i); 744 STRCPY(fname + i, name + llen); 745 } 746 } 747 } 748 else 749 fname = name; 750 return fname; 751 } 752 753 /* 754 * Find a function "name" in script "sid". 755 */ 756 static ufunc_T * 757 find_func_with_sid(char_u *name, int sid) 758 { 759 hashitem_T *hi; 760 char_u buffer[200]; 761 762 buffer[0] = K_SPECIAL; 763 buffer[1] = KS_EXTRA; 764 buffer[2] = (int)KE_SNR; 765 vim_snprintf((char *)buffer + 3, sizeof(buffer) - 3, "%ld_%s", 766 (long)sid, name); 767 hi = hash_find(&func_hashtab, buffer); 768 if (!HASHITEM_EMPTY(hi)) 769 return HI2UF(hi); 770 771 return NULL; 772 } 773 774 /* 775 * Find a function by name, return pointer to it in ufuncs. 776 * When "is_global" is true don't find script-local or imported functions. 777 * Return NULL for unknown function. 778 */ 779 static ufunc_T * 780 find_func_even_dead(char_u *name, int is_global, cctx_T *cctx) 781 { 782 hashitem_T *hi; 783 ufunc_T *func; 784 imported_T *imported; 785 786 if (!is_global) 787 { 788 char_u *after_script = NULL; 789 790 if (in_vim9script()) 791 { 792 // Find script-local function before global one. 793 func = find_func_with_sid(name, current_sctx.sc_sid); 794 if (func != NULL) 795 return func; 796 } 797 798 if (!in_vim9script() 799 && name[0] == K_SPECIAL 800 && name[1] == KS_EXTRA 801 && name[2] == KE_SNR) 802 { 803 long sid; 804 805 // Caller changes s: to <SNR>99_name. 806 807 after_script = name + 3; 808 sid = getdigits(&after_script); 809 if (sid == current_sctx.sc_sid && *after_script == '_') 810 ++after_script; 811 else 812 after_script = NULL; 813 } 814 if (in_vim9script() || after_script != NULL) 815 { 816 // Find imported function before global one. 817 imported = find_imported( 818 after_script == NULL ? name : after_script, 0, cctx); 819 if (imported != NULL && imported->imp_funcname != NULL) 820 { 821 hi = hash_find(&func_hashtab, imported->imp_funcname); 822 if (!HASHITEM_EMPTY(hi)) 823 return HI2UF(hi); 824 } 825 } 826 } 827 828 hi = hash_find(&func_hashtab, 829 STRNCMP(name, "g:", 2) == 0 ? name + 2 : name); 830 if (!HASHITEM_EMPTY(hi)) 831 return HI2UF(hi); 832 833 return NULL; 834 } 835 836 /* 837 * Find a function by name, return pointer to it in ufuncs. 838 * "cctx" is passed in a :def function to find imported functions. 839 * Return NULL for unknown or dead function. 840 */ 841 ufunc_T * 842 find_func(char_u *name, int is_global, cctx_T *cctx) 843 { 844 ufunc_T *fp = find_func_even_dead(name, is_global, cctx); 845 846 if (fp != NULL && (fp->uf_flags & FC_DEAD) == 0) 847 return fp; 848 return NULL; 849 } 850 851 /* 852 * Copy the function name of "fp" to buffer "buf". 853 * "buf" must be able to hold the function name plus three bytes. 854 * Takes care of script-local function names. 855 */ 856 static void 857 cat_func_name(char_u *buf, ufunc_T *fp) 858 { 859 if (fp->uf_name[0] == K_SPECIAL) 860 { 861 STRCPY(buf, "<SNR>"); 862 STRCAT(buf, fp->uf_name + 3); 863 } 864 else 865 STRCPY(buf, fp->uf_name); 866 } 867 868 /* 869 * Add a number variable "name" to dict "dp" with value "nr". 870 */ 871 static void 872 add_nr_var( 873 dict_T *dp, 874 dictitem_T *v, 875 char *name, 876 varnumber_T nr) 877 { 878 STRCPY(v->di_key, name); 879 v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX; 880 hash_add(&dp->dv_hashtab, DI2HIKEY(v)); 881 v->di_tv.v_type = VAR_NUMBER; 882 v->di_tv.v_lock = VAR_FIXED; 883 v->di_tv.vval.v_number = nr; 884 } 885 886 /* 887 * Free "fc". 888 */ 889 static void 890 free_funccal(funccall_T *fc) 891 { 892 int i; 893 894 for (i = 0; i < fc->fc_funcs.ga_len; ++i) 895 { 896 ufunc_T *fp = ((ufunc_T **)(fc->fc_funcs.ga_data))[i]; 897 898 // When garbage collecting a funccall_T may be freed before the 899 // function that references it, clear its uf_scoped field. 900 // The function may have been redefined and point to another 901 // funccall_T, don't clear it then. 902 if (fp != NULL && fp->uf_scoped == fc) 903 fp->uf_scoped = NULL; 904 } 905 ga_clear(&fc->fc_funcs); 906 907 func_ptr_unref(fc->func); 908 vim_free(fc); 909 } 910 911 /* 912 * Free "fc" and what it contains. 913 * Can be called only when "fc" is kept beyond the period of it called, 914 * i.e. after cleanup_function_call(fc). 915 */ 916 static void 917 free_funccal_contents(funccall_T *fc) 918 { 919 listitem_T *li; 920 921 // Free all l: variables. 922 vars_clear(&fc->l_vars.dv_hashtab); 923 924 // Free all a: variables. 925 vars_clear(&fc->l_avars.dv_hashtab); 926 927 // Free the a:000 variables. 928 FOR_ALL_LIST_ITEMS(&fc->l_varlist, li) 929 clear_tv(&li->li_tv); 930 931 free_funccal(fc); 932 } 933 934 /* 935 * Handle the last part of returning from a function: free the local hashtable. 936 * Unless it is still in use by a closure. 937 */ 938 static void 939 cleanup_function_call(funccall_T *fc) 940 { 941 int may_free_fc = fc->fc_refcount <= 0; 942 int free_fc = TRUE; 943 944 current_funccal = fc->caller; 945 946 // Free all l: variables if not referred. 947 if (may_free_fc && fc->l_vars.dv_refcount == DO_NOT_FREE_CNT) 948 vars_clear(&fc->l_vars.dv_hashtab); 949 else 950 free_fc = FALSE; 951 952 // If the a:000 list and the l: and a: dicts are not referenced and 953 // there is no closure using it, we can free the funccall_T and what's 954 // in it. 955 if (may_free_fc && fc->l_avars.dv_refcount == DO_NOT_FREE_CNT) 956 vars_clear_ext(&fc->l_avars.dv_hashtab, FALSE); 957 else 958 { 959 int todo; 960 hashitem_T *hi; 961 dictitem_T *di; 962 963 free_fc = FALSE; 964 965 // Make a copy of the a: variables, since we didn't do that above. 966 todo = (int)fc->l_avars.dv_hashtab.ht_used; 967 for (hi = fc->l_avars.dv_hashtab.ht_array; todo > 0; ++hi) 968 { 969 if (!HASHITEM_EMPTY(hi)) 970 { 971 --todo; 972 di = HI2DI(hi); 973 copy_tv(&di->di_tv, &di->di_tv); 974 } 975 } 976 } 977 978 if (may_free_fc && fc->l_varlist.lv_refcount == DO_NOT_FREE_CNT) 979 fc->l_varlist.lv_first = NULL; 980 else 981 { 982 listitem_T *li; 983 984 free_fc = FALSE; 985 986 // Make a copy of the a:000 items, since we didn't do that above. 987 FOR_ALL_LIST_ITEMS(&fc->l_varlist, li) 988 copy_tv(&li->li_tv, &li->li_tv); 989 } 990 991 if (free_fc) 992 free_funccal(fc); 993 else 994 { 995 static int made_copy = 0; 996 997 // "fc" is still in use. This can happen when returning "a:000", 998 // assigning "l:" to a global variable or defining a closure. 999 // Link "fc" in the list for garbage collection later. 1000 fc->caller = previous_funccal; 1001 previous_funccal = fc; 1002 1003 if (want_garbage_collect) 1004 // If garbage collector is ready, clear count. 1005 made_copy = 0; 1006 else if (++made_copy >= (int)((4096 * 1024) / sizeof(*fc))) 1007 { 1008 // We have made a lot of copies, worth 4 Mbyte. This can happen 1009 // when repetitively calling a function that creates a reference to 1010 // itself somehow. Call the garbage collector soon to avoid using 1011 // too much memory. 1012 made_copy = 0; 1013 want_garbage_collect = TRUE; 1014 } 1015 } 1016 } 1017 /* 1018 * Unreference "fc": decrement the reference count and free it when it 1019 * becomes zero. "fp" is detached from "fc". 1020 * When "force" is TRUE we are exiting. 1021 */ 1022 static void 1023 funccal_unref(funccall_T *fc, ufunc_T *fp, int force) 1024 { 1025 funccall_T **pfc; 1026 int i; 1027 1028 if (fc == NULL) 1029 return; 1030 1031 if (--fc->fc_refcount <= 0 && (force || ( 1032 fc->l_varlist.lv_refcount == DO_NOT_FREE_CNT 1033 && fc->l_vars.dv_refcount == DO_NOT_FREE_CNT 1034 && fc->l_avars.dv_refcount == DO_NOT_FREE_CNT))) 1035 for (pfc = &previous_funccal; *pfc != NULL; pfc = &(*pfc)->caller) 1036 { 1037 if (fc == *pfc) 1038 { 1039 *pfc = fc->caller; 1040 free_funccal_contents(fc); 1041 return; 1042 } 1043 } 1044 for (i = 0; i < fc->fc_funcs.ga_len; ++i) 1045 if (((ufunc_T **)(fc->fc_funcs.ga_data))[i] == fp) 1046 ((ufunc_T **)(fc->fc_funcs.ga_data))[i] = NULL; 1047 } 1048 1049 /* 1050 * Remove the function from the function hashtable. If the function was 1051 * deleted while it still has references this was already done. 1052 * Return TRUE if the entry was deleted, FALSE if it wasn't found. 1053 */ 1054 static int 1055 func_remove(ufunc_T *fp) 1056 { 1057 hashitem_T *hi; 1058 1059 // Return if it was already virtually deleted. 1060 if (fp->uf_flags & FC_DEAD) 1061 return FALSE; 1062 1063 hi = hash_find(&func_hashtab, UF2HIKEY(fp)); 1064 if (!HASHITEM_EMPTY(hi)) 1065 { 1066 // When there is a def-function index do not actually remove the 1067 // function, so we can find the index when defining the function again. 1068 if (fp->uf_def_status == UF_COMPILED) 1069 fp->uf_flags |= FC_DEAD; 1070 else 1071 hash_remove(&func_hashtab, hi); 1072 return TRUE; 1073 } 1074 return FALSE; 1075 } 1076 1077 static void 1078 func_clear_items(ufunc_T *fp) 1079 { 1080 ga_clear_strings(&(fp->uf_args)); 1081 ga_clear_strings(&(fp->uf_def_args)); 1082 ga_clear_strings(&(fp->uf_lines)); 1083 VIM_CLEAR(fp->uf_name_exp); 1084 VIM_CLEAR(fp->uf_arg_types); 1085 VIM_CLEAR(fp->uf_def_arg_idx); 1086 VIM_CLEAR(fp->uf_va_name); 1087 clear_type_list(&fp->uf_type_list); 1088 1089 #ifdef FEAT_LUA 1090 if (fp->uf_cb_free != NULL) 1091 { 1092 fp->uf_cb_free(fp->uf_cb_state); 1093 fp->uf_cb_free = NULL; 1094 } 1095 1096 fp->uf_cb_state = NULL; 1097 fp->uf_cb = NULL; 1098 #endif 1099 #ifdef FEAT_PROFILE 1100 VIM_CLEAR(fp->uf_tml_count); 1101 VIM_CLEAR(fp->uf_tml_total); 1102 VIM_CLEAR(fp->uf_tml_self); 1103 #endif 1104 } 1105 1106 /* 1107 * Free all things that a function contains. Does not free the function 1108 * itself, use func_free() for that. 1109 * When "force" is TRUE we are exiting. 1110 */ 1111 static void 1112 func_clear(ufunc_T *fp, int force) 1113 { 1114 if (fp->uf_cleared) 1115 return; 1116 fp->uf_cleared = TRUE; 1117 1118 // clear this function 1119 func_clear_items(fp); 1120 funccal_unref(fp->uf_scoped, fp, force); 1121 clear_def_function(fp); 1122 } 1123 1124 /* 1125 * Free a function and remove it from the list of functions. Does not free 1126 * what a function contains, call func_clear() first. 1127 * When "force" is TRUE we are exiting. 1128 */ 1129 static void 1130 func_free(ufunc_T *fp, int force) 1131 { 1132 // Only remove it when not done already, otherwise we would remove a newer 1133 // version of the function with the same name. 1134 if ((fp->uf_flags & (FC_DELETED | FC_REMOVED)) == 0) 1135 func_remove(fp); 1136 1137 if ((fp->uf_flags & FC_DEAD) == 0 || force) 1138 vim_free(fp); 1139 } 1140 1141 /* 1142 * Free all things that a function contains and free the function itself. 1143 * When "force" is TRUE we are exiting. 1144 */ 1145 static void 1146 func_clear_free(ufunc_T *fp, int force) 1147 { 1148 func_clear(fp, force); 1149 if (force || fp->uf_dfunc_idx == 0) 1150 func_free(fp, force); 1151 } 1152 1153 1154 /* 1155 * Call a user function. 1156 */ 1157 static void 1158 call_user_func( 1159 ufunc_T *fp, // pointer to function 1160 int argcount, // nr of args 1161 typval_T *argvars, // arguments 1162 typval_T *rettv, // return value 1163 funcexe_T *funcexe, // context 1164 dict_T *selfdict) // Dictionary for "self" 1165 { 1166 sctx_T save_current_sctx; 1167 int using_sandbox = FALSE; 1168 funccall_T *fc; 1169 int save_did_emsg; 1170 int default_arg_err = FALSE; 1171 static int depth = 0; 1172 dictitem_T *v; 1173 int fixvar_idx = 0; // index in fixvar[] 1174 int i; 1175 int ai; 1176 int islambda = FALSE; 1177 char_u numbuf[NUMBUFLEN]; 1178 char_u *name; 1179 #ifdef FEAT_PROFILE 1180 proftime_T wait_start; 1181 proftime_T call_start; 1182 int started_profiling = FALSE; 1183 #endif 1184 ESTACK_CHECK_DECLARATION 1185 1186 // If depth of calling is getting too high, don't execute the function 1187 if (depth >= p_mfd) 1188 { 1189 emsg(_("E132: Function call depth is higher than 'maxfuncdepth'")); 1190 rettv->v_type = VAR_NUMBER; 1191 rettv->vval.v_number = -1; 1192 return; 1193 } 1194 ++depth; 1195 1196 line_breakcheck(); // check for CTRL-C hit 1197 1198 fc = ALLOC_CLEAR_ONE(funccall_T); 1199 if (fc == NULL) 1200 return; 1201 fc->caller = current_funccal; 1202 current_funccal = fc; 1203 fc->func = fp; 1204 fc->rettv = rettv; 1205 fc->level = ex_nesting_level; 1206 // Check if this function has a breakpoint. 1207 fc->breakpoint = dbg_find_breakpoint(FALSE, fp->uf_name, (linenr_T)0); 1208 fc->dbg_tick = debug_tick; 1209 // Set up fields for closure. 1210 ga_init2(&fc->fc_funcs, sizeof(ufunc_T *), 1); 1211 func_ptr_ref(fp); 1212 1213 if (fp->uf_def_status != UF_NOT_COMPILED) 1214 { 1215 estack_push_ufunc(fp, 1); 1216 save_current_sctx = current_sctx; 1217 current_sctx = fp->uf_script_ctx; 1218 1219 // Execute the function, possibly compiling it first. 1220 call_def_function(fp, argcount, argvars, funcexe->partial, rettv); 1221 --depth; 1222 current_funccal = fc->caller; 1223 1224 estack_pop(); 1225 current_sctx = save_current_sctx; 1226 free_funccal(fc); 1227 return; 1228 } 1229 1230 if (STRNCMP(fp->uf_name, "<lambda>", 8) == 0) 1231 islambda = TRUE; 1232 1233 /* 1234 * Note about using fc->fixvar[]: This is an array of FIXVAR_CNT variables 1235 * with names up to VAR_SHORT_LEN long. This avoids having to alloc/free 1236 * each argument variable and saves a lot of time. 1237 */ 1238 /* 1239 * Init l: variables. 1240 */ 1241 init_var_dict(&fc->l_vars, &fc->l_vars_var, VAR_DEF_SCOPE); 1242 if (selfdict != NULL) 1243 { 1244 // Set l:self to "selfdict". Use "name" to avoid a warning from 1245 // some compiler that checks the destination size. 1246 v = &fc->fixvar[fixvar_idx++].var; 1247 name = v->di_key; 1248 STRCPY(name, "self"); 1249 v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX; 1250 hash_add(&fc->l_vars.dv_hashtab, DI2HIKEY(v)); 1251 v->di_tv.v_type = VAR_DICT; 1252 v->di_tv.v_lock = 0; 1253 v->di_tv.vval.v_dict = selfdict; 1254 ++selfdict->dv_refcount; 1255 } 1256 1257 /* 1258 * Init a: variables, unless none found (in lambda). 1259 * Set a:0 to "argcount" less number of named arguments, if >= 0. 1260 * Set a:000 to a list with room for the "..." arguments. 1261 */ 1262 init_var_dict(&fc->l_avars, &fc->l_avars_var, VAR_SCOPE); 1263 if ((fp->uf_flags & FC_NOARGS) == 0) 1264 add_nr_var(&fc->l_avars, &fc->fixvar[fixvar_idx++].var, "0", 1265 (varnumber_T)(argcount >= fp->uf_args.ga_len 1266 ? argcount - fp->uf_args.ga_len : 0)); 1267 fc->l_avars.dv_lock = VAR_FIXED; 1268 if ((fp->uf_flags & FC_NOARGS) == 0) 1269 { 1270 // Use "name" to avoid a warning from some compiler that checks the 1271 // destination size. 1272 v = &fc->fixvar[fixvar_idx++].var; 1273 name = v->di_key; 1274 STRCPY(name, "000"); 1275 v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX; 1276 hash_add(&fc->l_avars.dv_hashtab, DI2HIKEY(v)); 1277 v->di_tv.v_type = VAR_LIST; 1278 v->di_tv.v_lock = VAR_FIXED; 1279 v->di_tv.vval.v_list = &fc->l_varlist; 1280 } 1281 CLEAR_FIELD(fc->l_varlist); 1282 fc->l_varlist.lv_refcount = DO_NOT_FREE_CNT; 1283 fc->l_varlist.lv_lock = VAR_FIXED; 1284 1285 /* 1286 * Set a:firstline to "firstline" and a:lastline to "lastline". 1287 * Set a:name to named arguments. 1288 * Set a:N to the "..." arguments. 1289 * Skipped when no a: variables used (in lambda). 1290 */ 1291 if ((fp->uf_flags & FC_NOARGS) == 0) 1292 { 1293 add_nr_var(&fc->l_avars, &fc->fixvar[fixvar_idx++].var, "firstline", 1294 (varnumber_T)funcexe->firstline); 1295 add_nr_var(&fc->l_avars, &fc->fixvar[fixvar_idx++].var, "lastline", 1296 (varnumber_T)funcexe->lastline); 1297 } 1298 for (i = 0; i < argcount || i < fp->uf_args.ga_len; ++i) 1299 { 1300 int addlocal = FALSE; 1301 typval_T def_rettv; 1302 int isdefault = FALSE; 1303 1304 ai = i - fp->uf_args.ga_len; 1305 if (ai < 0) 1306 { 1307 // named argument a:name 1308 name = FUNCARG(fp, i); 1309 if (islambda) 1310 addlocal = TRUE; 1311 1312 // evaluate named argument default expression 1313 isdefault = ai + fp->uf_def_args.ga_len >= 0 1314 && (i >= argcount || (argvars[i].v_type == VAR_SPECIAL 1315 && argvars[i].vval.v_number == VVAL_NONE)); 1316 if (isdefault) 1317 { 1318 char_u *default_expr = NULL; 1319 def_rettv.v_type = VAR_NUMBER; 1320 def_rettv.vval.v_number = -1; 1321 1322 default_expr = ((char_u **)(fp->uf_def_args.ga_data)) 1323 [ai + fp->uf_def_args.ga_len]; 1324 if (eval1(&default_expr, &def_rettv, &EVALARG_EVALUATE) == FAIL) 1325 { 1326 default_arg_err = 1; 1327 break; 1328 } 1329 } 1330 } 1331 else 1332 { 1333 if ((fp->uf_flags & FC_NOARGS) != 0) 1334 // Bail out if no a: arguments used (in lambda). 1335 break; 1336 1337 // "..." argument a:1, a:2, etc. 1338 sprintf((char *)numbuf, "%d", ai + 1); 1339 name = numbuf; 1340 } 1341 if (fixvar_idx < FIXVAR_CNT && STRLEN(name) <= VAR_SHORT_LEN) 1342 { 1343 v = &fc->fixvar[fixvar_idx++].var; 1344 v->di_flags = DI_FLAGS_RO | DI_FLAGS_FIX; 1345 STRCPY(v->di_key, name); 1346 } 1347 else 1348 { 1349 v = dictitem_alloc(name); 1350 if (v == NULL) 1351 break; 1352 v->di_flags |= DI_FLAGS_RO | DI_FLAGS_FIX; 1353 } 1354 1355 // Note: the values are copied directly to avoid alloc/free. 1356 // "argvars" must have VAR_FIXED for v_lock. 1357 v->di_tv = isdefault ? def_rettv : argvars[i]; 1358 v->di_tv.v_lock = VAR_FIXED; 1359 1360 if (addlocal) 1361 { 1362 // Named arguments should be accessed without the "a:" prefix in 1363 // lambda expressions. Add to the l: dict. 1364 copy_tv(&v->di_tv, &v->di_tv); 1365 hash_add(&fc->l_vars.dv_hashtab, DI2HIKEY(v)); 1366 } 1367 else 1368 hash_add(&fc->l_avars.dv_hashtab, DI2HIKEY(v)); 1369 1370 if (ai >= 0 && ai < MAX_FUNC_ARGS) 1371 { 1372 listitem_T *li = &fc->l_listitems[ai]; 1373 1374 li->li_tv = argvars[i]; 1375 li->li_tv.v_lock = VAR_FIXED; 1376 list_append(&fc->l_varlist, li); 1377 } 1378 } 1379 1380 // Don't redraw while executing the function. 1381 ++RedrawingDisabled; 1382 1383 if (fp->uf_flags & FC_SANDBOX) 1384 { 1385 using_sandbox = TRUE; 1386 ++sandbox; 1387 } 1388 1389 estack_push_ufunc(fp, 1); 1390 ESTACK_CHECK_SETUP 1391 if (p_verbose >= 12) 1392 { 1393 ++no_wait_return; 1394 verbose_enter_scroll(); 1395 1396 smsg(_("calling %s"), SOURCING_NAME); 1397 if (p_verbose >= 14) 1398 { 1399 char_u buf[MSG_BUF_LEN]; 1400 char_u numbuf2[NUMBUFLEN]; 1401 char_u *tofree; 1402 char_u *s; 1403 1404 msg_puts("("); 1405 for (i = 0; i < argcount; ++i) 1406 { 1407 if (i > 0) 1408 msg_puts(", "); 1409 if (argvars[i].v_type == VAR_NUMBER) 1410 msg_outnum((long)argvars[i].vval.v_number); 1411 else 1412 { 1413 // Do not want errors such as E724 here. 1414 ++emsg_off; 1415 s = tv2string(&argvars[i], &tofree, numbuf2, 0); 1416 --emsg_off; 1417 if (s != NULL) 1418 { 1419 if (vim_strsize(s) > MSG_BUF_CLEN) 1420 { 1421 trunc_string(s, buf, MSG_BUF_CLEN, MSG_BUF_LEN); 1422 s = buf; 1423 } 1424 msg_puts((char *)s); 1425 vim_free(tofree); 1426 } 1427 } 1428 } 1429 msg_puts(")"); 1430 } 1431 msg_puts("\n"); // don't overwrite this either 1432 1433 verbose_leave_scroll(); 1434 --no_wait_return; 1435 } 1436 #ifdef FEAT_PROFILE 1437 if (do_profiling == PROF_YES) 1438 { 1439 if (!fp->uf_profiling && has_profiling(FALSE, fp->uf_name, NULL)) 1440 { 1441 started_profiling = TRUE; 1442 func_do_profile(fp); 1443 } 1444 if (fp->uf_profiling 1445 || (fc->caller != NULL && fc->caller->func->uf_profiling)) 1446 { 1447 ++fp->uf_tm_count; 1448 profile_start(&call_start); 1449 profile_zero(&fp->uf_tm_children); 1450 } 1451 script_prof_save(&wait_start); 1452 } 1453 #endif 1454 1455 save_current_sctx = current_sctx; 1456 current_sctx = fp->uf_script_ctx; 1457 save_did_emsg = did_emsg; 1458 did_emsg = FALSE; 1459 1460 if (default_arg_err && (fp->uf_flags & FC_ABORT)) 1461 did_emsg = TRUE; 1462 else if (islambda) 1463 { 1464 char_u *p = *(char_u **)fp->uf_lines.ga_data + 7; 1465 1466 // A Lambda always has the command "return {expr}". It is much faster 1467 // to evaluate {expr} directly. 1468 ++ex_nesting_level; 1469 (void)eval1(&p, rettv, &EVALARG_EVALUATE); 1470 --ex_nesting_level; 1471 } 1472 else 1473 // call do_cmdline() to execute the lines 1474 do_cmdline(NULL, get_func_line, (void *)fc, 1475 DOCMD_NOWAIT|DOCMD_VERBOSE|DOCMD_REPEAT); 1476 1477 --RedrawingDisabled; 1478 1479 // when the function was aborted because of an error, return -1 1480 if ((did_emsg && (fp->uf_flags & FC_ABORT)) || rettv->v_type == VAR_UNKNOWN) 1481 { 1482 clear_tv(rettv); 1483 rettv->v_type = VAR_NUMBER; 1484 rettv->vval.v_number = -1; 1485 } 1486 1487 #ifdef FEAT_PROFILE 1488 if (do_profiling == PROF_YES && (fp->uf_profiling 1489 || (fc->caller != NULL && fc->caller->func->uf_profiling))) 1490 { 1491 profile_end(&call_start); 1492 profile_sub_wait(&wait_start, &call_start); 1493 profile_add(&fp->uf_tm_total, &call_start); 1494 profile_self(&fp->uf_tm_self, &call_start, &fp->uf_tm_children); 1495 if (fc->caller != NULL && fc->caller->func->uf_profiling) 1496 { 1497 profile_add(&fc->caller->func->uf_tm_children, &call_start); 1498 profile_add(&fc->caller->func->uf_tml_children, &call_start); 1499 } 1500 if (started_profiling) 1501 // make a ":profdel func" stop profiling the function 1502 fp->uf_profiling = FALSE; 1503 } 1504 #endif 1505 1506 // when being verbose, mention the return value 1507 if (p_verbose >= 12) 1508 { 1509 ++no_wait_return; 1510 verbose_enter_scroll(); 1511 1512 if (aborting()) 1513 smsg(_("%s aborted"), SOURCING_NAME); 1514 else if (fc->rettv->v_type == VAR_NUMBER) 1515 smsg(_("%s returning #%ld"), SOURCING_NAME, 1516 (long)fc->rettv->vval.v_number); 1517 else 1518 { 1519 char_u buf[MSG_BUF_LEN]; 1520 char_u numbuf2[NUMBUFLEN]; 1521 char_u *tofree; 1522 char_u *s; 1523 1524 // The value may be very long. Skip the middle part, so that we 1525 // have some idea how it starts and ends. smsg() would always 1526 // truncate it at the end. Don't want errors such as E724 here. 1527 ++emsg_off; 1528 s = tv2string(fc->rettv, &tofree, numbuf2, 0); 1529 --emsg_off; 1530 if (s != NULL) 1531 { 1532 if (vim_strsize(s) > MSG_BUF_CLEN) 1533 { 1534 trunc_string(s, buf, MSG_BUF_CLEN, MSG_BUF_LEN); 1535 s = buf; 1536 } 1537 smsg(_("%s returning %s"), SOURCING_NAME, s); 1538 vim_free(tofree); 1539 } 1540 } 1541 msg_puts("\n"); // don't overwrite this either 1542 1543 verbose_leave_scroll(); 1544 --no_wait_return; 1545 } 1546 1547 ESTACK_CHECK_NOW 1548 estack_pop(); 1549 current_sctx = save_current_sctx; 1550 #ifdef FEAT_PROFILE 1551 if (do_profiling == PROF_YES) 1552 script_prof_restore(&wait_start); 1553 #endif 1554 if (using_sandbox) 1555 --sandbox; 1556 1557 if (p_verbose >= 12 && SOURCING_NAME != NULL) 1558 { 1559 ++no_wait_return; 1560 verbose_enter_scroll(); 1561 1562 smsg(_("continuing in %s"), SOURCING_NAME); 1563 msg_puts("\n"); // don't overwrite this either 1564 1565 verbose_leave_scroll(); 1566 --no_wait_return; 1567 } 1568 1569 did_emsg |= save_did_emsg; 1570 --depth; 1571 1572 cleanup_function_call(fc); 1573 } 1574 1575 /* 1576 * Call a user function after checking the arguments. 1577 */ 1578 int 1579 call_user_func_check( 1580 ufunc_T *fp, 1581 int argcount, 1582 typval_T *argvars, 1583 typval_T *rettv, 1584 funcexe_T *funcexe, 1585 dict_T *selfdict) 1586 { 1587 int error; 1588 int regular_args = fp->uf_args.ga_len; 1589 1590 if (fp->uf_flags & FC_RANGE && funcexe->doesrange != NULL) 1591 *funcexe->doesrange = TRUE; 1592 if (argcount < regular_args - fp->uf_def_args.ga_len) 1593 error = FCERR_TOOFEW; 1594 else if (!has_varargs(fp) && argcount > regular_args) 1595 error = FCERR_TOOMANY; 1596 else if ((fp->uf_flags & FC_DICT) && selfdict == NULL) 1597 error = FCERR_DICT; 1598 else 1599 { 1600 int did_save_redo = FALSE; 1601 save_redo_T save_redo; 1602 1603 /* 1604 * Call the user function. 1605 * Save and restore search patterns, script variables and 1606 * redo buffer. 1607 */ 1608 save_search_patterns(); 1609 if (!ins_compl_active()) 1610 { 1611 saveRedobuff(&save_redo); 1612 did_save_redo = TRUE; 1613 } 1614 ++fp->uf_calls; 1615 call_user_func(fp, argcount, argvars, rettv, funcexe, 1616 (fp->uf_flags & FC_DICT) ? selfdict : NULL); 1617 if (--fp->uf_calls <= 0 && fp->uf_refcount <= 0) 1618 // Function was unreferenced while being used, free it now. 1619 func_clear_free(fp, FALSE); 1620 if (did_save_redo) 1621 restoreRedobuff(&save_redo); 1622 restore_search_patterns(); 1623 error = FCERR_NONE; 1624 } 1625 return error; 1626 } 1627 1628 /* 1629 * There are two kinds of function names: 1630 * 1. ordinary names, function defined with :function 1631 * 2. numbered functions and lambdas 1632 * For the first we only count the name stored in func_hashtab as a reference, 1633 * using function() does not count as a reference, because the function is 1634 * looked up by name. 1635 */ 1636 static int 1637 func_name_refcount(char_u *name) 1638 { 1639 return isdigit(*name) || *name == '<'; 1640 } 1641 1642 static funccal_entry_T *funccal_stack = NULL; 1643 1644 /* 1645 * Save the current function call pointer, and set it to NULL. 1646 * Used when executing autocommands and for ":source". 1647 */ 1648 void 1649 save_funccal(funccal_entry_T *entry) 1650 { 1651 entry->top_funccal = current_funccal; 1652 entry->next = funccal_stack; 1653 funccal_stack = entry; 1654 current_funccal = NULL; 1655 } 1656 1657 void 1658 restore_funccal(void) 1659 { 1660 if (funccal_stack == NULL) 1661 iemsg("INTERNAL: restore_funccal()"); 1662 else 1663 { 1664 current_funccal = funccal_stack->top_funccal; 1665 funccal_stack = funccal_stack->next; 1666 } 1667 } 1668 1669 funccall_T * 1670 get_current_funccal(void) 1671 { 1672 return current_funccal; 1673 } 1674 1675 /* 1676 * Mark all functions of script "sid" as deleted. 1677 */ 1678 void 1679 delete_script_functions(int sid) 1680 { 1681 hashitem_T *hi; 1682 ufunc_T *fp; 1683 long_u todo; 1684 char_u buf[30]; 1685 size_t len; 1686 1687 buf[0] = K_SPECIAL; 1688 buf[1] = KS_EXTRA; 1689 buf[2] = (int)KE_SNR; 1690 sprintf((char *)buf + 3, "%d_", sid); 1691 len = STRLEN(buf); 1692 1693 todo = func_hashtab.ht_used; 1694 for (hi = func_hashtab.ht_array; todo > 0; ++hi) 1695 if (!HASHITEM_EMPTY(hi)) 1696 { 1697 fp = HI2UF(hi); 1698 if (STRNCMP(fp->uf_name, buf, len) == 0) 1699 { 1700 fp->uf_flags |= FC_DEAD; 1701 func_clear(fp, TRUE); 1702 } 1703 --todo; 1704 } 1705 } 1706 1707 #if defined(EXITFREE) || defined(PROTO) 1708 void 1709 free_all_functions(void) 1710 { 1711 hashitem_T *hi; 1712 ufunc_T *fp; 1713 long_u skipped = 0; 1714 long_u todo = 1; 1715 int changed; 1716 1717 // Clean up the current_funccal chain and the funccal stack. 1718 while (current_funccal != NULL) 1719 { 1720 clear_tv(current_funccal->rettv); 1721 cleanup_function_call(current_funccal); 1722 if (current_funccal == NULL && funccal_stack != NULL) 1723 restore_funccal(); 1724 } 1725 1726 // First clear what the functions contain. Since this may lower the 1727 // reference count of a function, it may also free a function and change 1728 // the hash table. Restart if that happens. 1729 while (todo > 0) 1730 { 1731 todo = func_hashtab.ht_used; 1732 for (hi = func_hashtab.ht_array; todo > 0; ++hi) 1733 if (!HASHITEM_EMPTY(hi)) 1734 { 1735 // clear the def function index now 1736 fp = HI2UF(hi); 1737 fp->uf_flags &= ~FC_DEAD; 1738 fp->uf_def_status = UF_NOT_COMPILED; 1739 1740 // Only free functions that are not refcounted, those are 1741 // supposed to be freed when no longer referenced. 1742 if (func_name_refcount(fp->uf_name)) 1743 ++skipped; 1744 else 1745 { 1746 changed = func_hashtab.ht_changed; 1747 func_clear(fp, TRUE); 1748 if (changed != func_hashtab.ht_changed) 1749 { 1750 skipped = 0; 1751 break; 1752 } 1753 } 1754 --todo; 1755 } 1756 } 1757 1758 // Now actually free the functions. Need to start all over every time, 1759 // because func_free() may change the hash table. 1760 skipped = 0; 1761 while (func_hashtab.ht_used > skipped) 1762 { 1763 todo = func_hashtab.ht_used; 1764 for (hi = func_hashtab.ht_array; todo > 0; ++hi) 1765 if (!HASHITEM_EMPTY(hi)) 1766 { 1767 --todo; 1768 // Only free functions that are not refcounted, those are 1769 // supposed to be freed when no longer referenced. 1770 fp = HI2UF(hi); 1771 if (func_name_refcount(fp->uf_name)) 1772 ++skipped; 1773 else 1774 { 1775 func_free(fp, FALSE); 1776 skipped = 0; 1777 break; 1778 } 1779 } 1780 } 1781 if (skipped == 0) 1782 hash_clear(&func_hashtab); 1783 1784 free_def_functions(); 1785 } 1786 #endif 1787 1788 /* 1789 * Return TRUE if "name" looks like a builtin function name: starts with a 1790 * lower case letter and doesn't contain AUTOLOAD_CHAR or ':'. 1791 * "len" is the length of "name", or -1 for NUL terminated. 1792 */ 1793 int 1794 builtin_function(char_u *name, int len) 1795 { 1796 char_u *p; 1797 1798 if (!ASCII_ISLOWER(name[0]) || name[1] == ':') 1799 return FALSE; 1800 p = vim_strchr(name, AUTOLOAD_CHAR); 1801 return p == NULL || (len > 0 && p > name + len); 1802 } 1803 1804 int 1805 func_call( 1806 char_u *name, 1807 typval_T *args, 1808 partial_T *partial, 1809 dict_T *selfdict, 1810 typval_T *rettv) 1811 { 1812 list_T *l = args->vval.v_list; 1813 listitem_T *item; 1814 typval_T argv[MAX_FUNC_ARGS + 1]; 1815 int argc = 0; 1816 int r = 0; 1817 1818 CHECK_LIST_MATERIALIZE(l); 1819 FOR_ALL_LIST_ITEMS(l, item) 1820 { 1821 if (argc == MAX_FUNC_ARGS - (partial == NULL ? 0 : partial->pt_argc)) 1822 { 1823 emsg(_("E699: Too many arguments")); 1824 break; 1825 } 1826 // Make a copy of each argument. This is needed to be able to set 1827 // v_lock to VAR_FIXED in the copy without changing the original list. 1828 copy_tv(&item->li_tv, &argv[argc++]); 1829 } 1830 1831 if (item == NULL) 1832 { 1833 funcexe_T funcexe; 1834 1835 CLEAR_FIELD(funcexe); 1836 funcexe.firstline = curwin->w_cursor.lnum; 1837 funcexe.lastline = curwin->w_cursor.lnum; 1838 funcexe.evaluate = TRUE; 1839 funcexe.partial = partial; 1840 funcexe.selfdict = selfdict; 1841 r = call_func(name, -1, rettv, argc, argv, &funcexe); 1842 } 1843 1844 // Free the arguments. 1845 while (argc > 0) 1846 clear_tv(&argv[--argc]); 1847 1848 return r; 1849 } 1850 1851 static int callback_depth = 0; 1852 1853 int 1854 get_callback_depth(void) 1855 { 1856 return callback_depth; 1857 } 1858 1859 /* 1860 * Invoke call_func() with a callback. 1861 */ 1862 int 1863 call_callback( 1864 callback_T *callback, 1865 int len, // length of "name" or -1 to use strlen() 1866 typval_T *rettv, // return value goes here 1867 int argcount, // number of "argvars" 1868 typval_T *argvars) // vars for arguments, must have "argcount" 1869 // PLUS ONE elements! 1870 { 1871 funcexe_T funcexe; 1872 int ret; 1873 1874 CLEAR_FIELD(funcexe); 1875 funcexe.evaluate = TRUE; 1876 funcexe.partial = callback->cb_partial; 1877 ++callback_depth; 1878 ret = call_func(callback->cb_name, len, rettv, argcount, argvars, &funcexe); 1879 --callback_depth; 1880 return ret; 1881 } 1882 1883 /* 1884 * Give an error message for the result of a function. 1885 * Nothing if "error" is FCERR_NONE. 1886 */ 1887 void 1888 user_func_error(int error, char_u *name) 1889 { 1890 switch (error) 1891 { 1892 case FCERR_UNKNOWN: 1893 emsg_funcname(e_unknownfunc, name); 1894 break; 1895 case FCERR_NOTMETHOD: 1896 emsg_funcname( 1897 N_("E276: Cannot use function as a method: %s"), name); 1898 break; 1899 case FCERR_DELETED: 1900 emsg_funcname(N_(e_func_deleted), name); 1901 break; 1902 case FCERR_TOOMANY: 1903 emsg_funcname((char *)e_toomanyarg, name); 1904 break; 1905 case FCERR_TOOFEW: 1906 emsg_funcname((char *)e_toofewarg, name); 1907 break; 1908 case FCERR_SCRIPT: 1909 emsg_funcname( 1910 N_("E120: Using <SID> not in a script context: %s"), name); 1911 break; 1912 case FCERR_DICT: 1913 emsg_funcname( 1914 N_("E725: Calling dict function without Dictionary: %s"), 1915 name); 1916 break; 1917 } 1918 } 1919 1920 /* 1921 * Call a function with its resolved parameters 1922 * 1923 * Return FAIL when the function can't be called, OK otherwise. 1924 * Also returns OK when an error was encountered while executing the function. 1925 */ 1926 int 1927 call_func( 1928 char_u *funcname, // name of the function 1929 int len, // length of "name" or -1 to use strlen() 1930 typval_T *rettv, // return value goes here 1931 int argcount_in, // number of "argvars" 1932 typval_T *argvars_in, // vars for arguments, must have "argcount" 1933 // PLUS ONE elements! 1934 funcexe_T *funcexe) // more arguments 1935 { 1936 int ret = FAIL; 1937 int error = FCERR_NONE; 1938 int i; 1939 ufunc_T *fp = NULL; 1940 char_u fname_buf[FLEN_FIXED + 1]; 1941 char_u *tofree = NULL; 1942 char_u *fname = NULL; 1943 char_u *name = NULL; 1944 int argcount = argcount_in; 1945 typval_T *argvars = argvars_in; 1946 dict_T *selfdict = funcexe->selfdict; 1947 typval_T argv[MAX_FUNC_ARGS + 1]; // used when "partial" or 1948 // "funcexe->basetv" is not NULL 1949 int argv_clear = 0; 1950 int argv_base = 0; 1951 partial_T *partial = funcexe->partial; 1952 1953 // Initialize rettv so that it is safe for caller to invoke clear_tv(rettv) 1954 // even when call_func() returns FAIL. 1955 rettv->v_type = VAR_UNKNOWN; 1956 1957 if (partial != NULL) 1958 fp = partial->pt_func; 1959 if (fp == NULL) 1960 { 1961 // Make a copy of the name, if it comes from a funcref variable it 1962 // could be changed or deleted in the called function. 1963 name = len > 0 ? vim_strnsave(funcname, len) : vim_strsave(funcname); 1964 if (name == NULL) 1965 return ret; 1966 1967 fname = fname_trans_sid(name, fname_buf, &tofree, &error); 1968 } 1969 1970 if (funcexe->doesrange != NULL) 1971 *funcexe->doesrange = FALSE; 1972 1973 if (partial != NULL) 1974 { 1975 // When the function has a partial with a dict and there is a dict 1976 // argument, use the dict argument. That is backwards compatible. 1977 // When the dict was bound explicitly use the one from the partial. 1978 if (partial->pt_dict != NULL && (selfdict == NULL || !partial->pt_auto)) 1979 selfdict = partial->pt_dict; 1980 if (error == FCERR_NONE && partial->pt_argc > 0) 1981 { 1982 for (argv_clear = 0; argv_clear < partial->pt_argc; ++argv_clear) 1983 { 1984 if (argv_clear + argcount_in >= MAX_FUNC_ARGS) 1985 { 1986 error = FCERR_TOOMANY; 1987 goto theend; 1988 } 1989 copy_tv(&partial->pt_argv[argv_clear], &argv[argv_clear]); 1990 } 1991 for (i = 0; i < argcount_in; ++i) 1992 argv[i + argv_clear] = argvars_in[i]; 1993 argvars = argv; 1994 argcount = partial->pt_argc + argcount_in; 1995 } 1996 } 1997 1998 if (error == FCERR_NONE && funcexe->evaluate) 1999 { 2000 char_u *rfname = fname; 2001 2002 // Ignore "g:" before a function name. 2003 if (fp == NULL && fname[0] == 'g' && fname[1] == ':') 2004 rfname = fname + 2; 2005 2006 rettv->v_type = VAR_NUMBER; // default rettv is number zero 2007 rettv->vval.v_number = 0; 2008 error = FCERR_UNKNOWN; 2009 2010 if (fp != NULL || !builtin_function(rfname, -1)) 2011 { 2012 /* 2013 * User defined function. 2014 */ 2015 if (fp == NULL) 2016 fp = find_func(rfname, FALSE, NULL); 2017 2018 // Trigger FuncUndefined event, may load the function. 2019 if (fp == NULL 2020 && apply_autocmds(EVENT_FUNCUNDEFINED, 2021 rfname, rfname, TRUE, NULL) 2022 && !aborting()) 2023 { 2024 // executed an autocommand, search for the function again 2025 fp = find_func(rfname, FALSE, NULL); 2026 } 2027 // Try loading a package. 2028 if (fp == NULL && script_autoload(rfname, TRUE) && !aborting()) 2029 { 2030 // loaded a package, search for the function again 2031 fp = find_func(rfname, FALSE, NULL); 2032 } 2033 if (fp == NULL) 2034 { 2035 char_u *p = untrans_function_name(rfname); 2036 2037 // If using Vim9 script try not local to the script. 2038 // TODO: should not do this if the name started with "s:". 2039 if (p != NULL) 2040 fp = find_func(p, FALSE, NULL); 2041 } 2042 2043 if (fp != NULL && (fp->uf_flags & FC_DELETED)) 2044 error = FCERR_DELETED; 2045 #ifdef FEAT_LUA 2046 else if (fp != NULL && (fp->uf_flags & FC_CFUNC)) 2047 { 2048 cfunc_T cb = fp->uf_cb; 2049 2050 error = (*cb)(argcount, argvars, rettv, fp->uf_cb_state); 2051 } 2052 #endif 2053 else if (fp != NULL) 2054 { 2055 if (funcexe->argv_func != NULL) 2056 // postponed filling in the arguments, do it now 2057 argcount = funcexe->argv_func(argcount, argvars, argv_clear, 2058 fp->uf_args.ga_len); 2059 2060 if (funcexe->basetv != NULL) 2061 { 2062 // Method call: base->Method() 2063 mch_memmove(&argv[1], argvars, sizeof(typval_T) * argcount); 2064 argv[0] = *funcexe->basetv; 2065 argcount++; 2066 argvars = argv; 2067 argv_base = 1; 2068 } 2069 2070 error = call_user_func_check(fp, argcount, argvars, rettv, 2071 funcexe, selfdict); 2072 } 2073 } 2074 else if (funcexe->basetv != NULL) 2075 { 2076 /* 2077 * expr->method(): Find the method name in the table, call its 2078 * implementation with the base as one of the arguments. 2079 */ 2080 error = call_internal_method(fname, argcount, argvars, rettv, 2081 funcexe->basetv); 2082 } 2083 else 2084 { 2085 /* 2086 * Find the function name in the table, call its implementation. 2087 */ 2088 error = call_internal_func(fname, argcount, argvars, rettv); 2089 } 2090 /* 2091 * The function call (or "FuncUndefined" autocommand sequence) might 2092 * have been aborted by an error, an interrupt, or an explicitly thrown 2093 * exception that has not been caught so far. This situation can be 2094 * tested for by calling aborting(). For an error in an internal 2095 * function or for the "E132" error in call_user_func(), however, the 2096 * throw point at which the "force_abort" flag (temporarily reset by 2097 * emsg()) is normally updated has not been reached yet. We need to 2098 * update that flag first to make aborting() reliable. 2099 */ 2100 update_force_abort(); 2101 } 2102 if (error == FCERR_NONE) 2103 ret = OK; 2104 2105 theend: 2106 /* 2107 * Report an error unless the argument evaluation or function call has been 2108 * cancelled due to an aborting error, an interrupt, or an exception. 2109 */ 2110 if (!aborting()) 2111 { 2112 user_func_error(error, (name != NULL) ? name : funcname); 2113 } 2114 2115 // clear the copies made from the partial 2116 while (argv_clear > 0) 2117 clear_tv(&argv[--argv_clear + argv_base]); 2118 2119 vim_free(tofree); 2120 vim_free(name); 2121 2122 return ret; 2123 } 2124 2125 static char_u * 2126 printable_func_name(ufunc_T *fp) 2127 { 2128 return fp->uf_name_exp != NULL ? fp->uf_name_exp : fp->uf_name; 2129 } 2130 2131 /* 2132 * List the head of the function: "function name(arg1, arg2)". 2133 */ 2134 static void 2135 list_func_head(ufunc_T *fp, int indent) 2136 { 2137 int j; 2138 2139 msg_start(); 2140 if (indent) 2141 msg_puts(" "); 2142 if (fp->uf_def_status != UF_NOT_COMPILED) 2143 msg_puts("def "); 2144 else 2145 msg_puts("function "); 2146 msg_puts((char *)printable_func_name(fp)); 2147 msg_putchar('('); 2148 for (j = 0; j < fp->uf_args.ga_len; ++j) 2149 { 2150 if (j) 2151 msg_puts(", "); 2152 msg_puts((char *)FUNCARG(fp, j)); 2153 if (fp->uf_arg_types != NULL) 2154 { 2155 char *tofree; 2156 2157 msg_puts(": "); 2158 msg_puts(type_name(fp->uf_arg_types[j], &tofree)); 2159 vim_free(tofree); 2160 } 2161 if (j >= fp->uf_args.ga_len - fp->uf_def_args.ga_len) 2162 { 2163 msg_puts(" = "); 2164 msg_puts(((char **)(fp->uf_def_args.ga_data)) 2165 [j - fp->uf_args.ga_len + fp->uf_def_args.ga_len]); 2166 } 2167 } 2168 if (fp->uf_varargs) 2169 { 2170 if (j) 2171 msg_puts(", "); 2172 msg_puts("..."); 2173 } 2174 if (fp->uf_va_name != NULL) 2175 { 2176 if (j) 2177 msg_puts(", "); 2178 msg_puts("..."); 2179 msg_puts((char *)fp->uf_va_name); 2180 if (fp->uf_va_type) 2181 { 2182 char *tofree; 2183 2184 msg_puts(": "); 2185 msg_puts(type_name(fp->uf_va_type, &tofree)); 2186 vim_free(tofree); 2187 } 2188 } 2189 msg_putchar(')'); 2190 2191 if (fp->uf_def_status != UF_NOT_COMPILED) 2192 { 2193 if (fp->uf_ret_type != &t_void) 2194 { 2195 char *tofree; 2196 2197 msg_puts(": "); 2198 msg_puts(type_name(fp->uf_ret_type, &tofree)); 2199 vim_free(tofree); 2200 } 2201 } 2202 else if (fp->uf_flags & FC_ABORT) 2203 msg_puts(" abort"); 2204 if (fp->uf_flags & FC_RANGE) 2205 msg_puts(" range"); 2206 if (fp->uf_flags & FC_DICT) 2207 msg_puts(" dict"); 2208 if (fp->uf_flags & FC_CLOSURE) 2209 msg_puts(" closure"); 2210 msg_clr_eos(); 2211 if (p_verbose > 0) 2212 last_set_msg(fp->uf_script_ctx); 2213 } 2214 2215 /* 2216 * Get a function name, translating "<SID>" and "<SNR>". 2217 * Also handles a Funcref in a List or Dictionary. 2218 * Returns the function name in allocated memory, or NULL for failure. 2219 * Set "*is_global" to TRUE when the function must be global, unless 2220 * "is_global" is NULL. 2221 * flags: 2222 * TFN_INT: internal function name OK 2223 * TFN_QUIET: be quiet 2224 * TFN_NO_AUTOLOAD: do not use script autoloading 2225 * TFN_NO_DEREF: do not dereference a Funcref 2226 * Advances "pp" to just after the function name (if no error). 2227 */ 2228 char_u * 2229 trans_function_name( 2230 char_u **pp, 2231 int *is_global, 2232 int skip, // only find the end, don't evaluate 2233 int flags, 2234 funcdict_T *fdp, // return: info about dictionary used 2235 partial_T **partial) // return: partial of a FuncRef 2236 { 2237 char_u *name = NULL; 2238 char_u *start; 2239 char_u *end; 2240 int lead; 2241 char_u sid_buf[20]; 2242 int len; 2243 int extra = 0; 2244 lval_T lv; 2245 int vim9script; 2246 2247 if (fdp != NULL) 2248 CLEAR_POINTER(fdp); 2249 start = *pp; 2250 2251 // Check for hard coded <SNR>: already translated function ID (from a user 2252 // command). 2253 if ((*pp)[0] == K_SPECIAL && (*pp)[1] == KS_EXTRA 2254 && (*pp)[2] == (int)KE_SNR) 2255 { 2256 *pp += 3; 2257 len = get_id_len(pp) + 3; 2258 return vim_strnsave(start, len); 2259 } 2260 2261 // A name starting with "<SID>" or "<SNR>" is local to a script. But 2262 // don't skip over "s:", get_lval() needs it for "s:dict.func". 2263 lead = eval_fname_script(start); 2264 if (lead > 2) 2265 start += lead; 2266 2267 // Note that TFN_ flags use the same values as GLV_ flags. 2268 end = get_lval(start, NULL, &lv, FALSE, skip, flags | GLV_READ_ONLY, 2269 lead > 2 ? 0 : FNE_CHECK_START); 2270 if (end == start) 2271 { 2272 if (!skip) 2273 emsg(_("E129: Function name required")); 2274 goto theend; 2275 } 2276 if (end == NULL || (lv.ll_tv != NULL && (lead > 2 || lv.ll_range))) 2277 { 2278 /* 2279 * Report an invalid expression in braces, unless the expression 2280 * evaluation has been cancelled due to an aborting error, an 2281 * interrupt, or an exception. 2282 */ 2283 if (!aborting()) 2284 { 2285 if (end != NULL) 2286 semsg(_(e_invarg2), start); 2287 } 2288 else 2289 *pp = find_name_end(start, NULL, NULL, FNE_INCL_BR); 2290 goto theend; 2291 } 2292 2293 if (lv.ll_tv != NULL) 2294 { 2295 if (fdp != NULL) 2296 { 2297 fdp->fd_dict = lv.ll_dict; 2298 fdp->fd_newkey = lv.ll_newkey; 2299 lv.ll_newkey = NULL; 2300 fdp->fd_di = lv.ll_di; 2301 } 2302 if (lv.ll_tv->v_type == VAR_FUNC && lv.ll_tv->vval.v_string != NULL) 2303 { 2304 name = vim_strsave(lv.ll_tv->vval.v_string); 2305 *pp = end; 2306 } 2307 else if (lv.ll_tv->v_type == VAR_PARTIAL 2308 && lv.ll_tv->vval.v_partial != NULL) 2309 { 2310 name = vim_strsave(partial_name(lv.ll_tv->vval.v_partial)); 2311 *pp = end; 2312 if (partial != NULL) 2313 *partial = lv.ll_tv->vval.v_partial; 2314 } 2315 else 2316 { 2317 if (!skip && !(flags & TFN_QUIET) && (fdp == NULL 2318 || lv.ll_dict == NULL || fdp->fd_newkey == NULL)) 2319 emsg(_(e_funcref)); 2320 else 2321 *pp = end; 2322 name = NULL; 2323 } 2324 goto theend; 2325 } 2326 2327 if (lv.ll_name == NULL) 2328 { 2329 // Error found, but continue after the function name. 2330 *pp = end; 2331 goto theend; 2332 } 2333 2334 // Check if the name is a Funcref. If so, use the value. 2335 if (lv.ll_exp_name != NULL) 2336 { 2337 len = (int)STRLEN(lv.ll_exp_name); 2338 name = deref_func_name(lv.ll_exp_name, &len, partial, 2339 flags & TFN_NO_AUTOLOAD); 2340 if (name == lv.ll_exp_name) 2341 name = NULL; 2342 } 2343 else if (!(flags & TFN_NO_DEREF)) 2344 { 2345 len = (int)(end - *pp); 2346 name = deref_func_name(*pp, &len, partial, flags & TFN_NO_AUTOLOAD); 2347 if (name == *pp) 2348 name = NULL; 2349 } 2350 if (name != NULL) 2351 { 2352 name = vim_strsave(name); 2353 *pp = end; 2354 if (STRNCMP(name, "<SNR>", 5) == 0) 2355 { 2356 // Change "<SNR>" to the byte sequence. 2357 name[0] = K_SPECIAL; 2358 name[1] = KS_EXTRA; 2359 name[2] = (int)KE_SNR; 2360 mch_memmove(name + 3, name + 5, STRLEN(name + 5) + 1); 2361 } 2362 goto theend; 2363 } 2364 2365 if (lv.ll_exp_name != NULL) 2366 { 2367 len = (int)STRLEN(lv.ll_exp_name); 2368 if (lead <= 2 && lv.ll_name == lv.ll_exp_name 2369 && STRNCMP(lv.ll_name, "s:", 2) == 0) 2370 { 2371 // When there was "s:" already or the name expanded to get a 2372 // leading "s:" then remove it. 2373 lv.ll_name += 2; 2374 len -= 2; 2375 lead = 2; 2376 } 2377 } 2378 else 2379 { 2380 // skip over "s:" and "g:" 2381 if (lead == 2 || (lv.ll_name[0] == 'g' && lv.ll_name[1] == ':')) 2382 { 2383 if (is_global != NULL && lv.ll_name[0] == 'g') 2384 *is_global = TRUE; 2385 lv.ll_name += 2; 2386 } 2387 len = (int)(end - lv.ll_name); 2388 } 2389 2390 // In Vim9 script a user function is script-local by default. 2391 vim9script = ASCII_ISUPPER(*start) && in_vim9script(); 2392 2393 /* 2394 * Copy the function name to allocated memory. 2395 * Accept <SID>name() inside a script, translate into <SNR>123_name(). 2396 * Accept <SNR>123_name() outside a script. 2397 */ 2398 if (skip) 2399 lead = 0; // do nothing 2400 else if (lead > 0 || vim9script) 2401 { 2402 if (!vim9script) 2403 lead = 3; 2404 if (vim9script || (lv.ll_exp_name != NULL 2405 && eval_fname_sid(lv.ll_exp_name)) 2406 || eval_fname_sid(*pp)) 2407 { 2408 // It's script-local, "s:" or "<SID>" 2409 if (current_sctx.sc_sid <= 0) 2410 { 2411 emsg(_(e_usingsid)); 2412 goto theend; 2413 } 2414 sprintf((char *)sid_buf, "%ld_", (long)current_sctx.sc_sid); 2415 if (vim9script) 2416 extra = 3 + (int)STRLEN(sid_buf); 2417 else 2418 lead += (int)STRLEN(sid_buf); 2419 } 2420 } 2421 else if (!(flags & TFN_INT) && builtin_function(lv.ll_name, len)) 2422 { 2423 semsg(_("E128: Function name must start with a capital or \"s:\": %s"), 2424 start); 2425 goto theend; 2426 } 2427 if (!skip && !(flags & TFN_QUIET) && !(flags & TFN_NO_DEREF)) 2428 { 2429 char_u *cp = vim_strchr(lv.ll_name, ':'); 2430 2431 if (cp != NULL && cp < end) 2432 { 2433 semsg(_("E884: Function name cannot contain a colon: %s"), start); 2434 goto theend; 2435 } 2436 } 2437 2438 name = alloc(len + lead + extra + 1); 2439 if (name != NULL) 2440 { 2441 if (!skip && (lead > 0 || vim9script)) 2442 { 2443 name[0] = K_SPECIAL; 2444 name[1] = KS_EXTRA; 2445 name[2] = (int)KE_SNR; 2446 if (vim9script || lead > 3) // If it's "<SID>" 2447 STRCPY(name + 3, sid_buf); 2448 } 2449 mch_memmove(name + lead + extra, lv.ll_name, (size_t)len); 2450 name[lead + extra + len] = NUL; 2451 } 2452 *pp = end; 2453 2454 theend: 2455 clear_lval(&lv); 2456 return name; 2457 } 2458 2459 /* 2460 * Assuming "name" is the result of trans_function_name() and it was prefixed 2461 * to use the script-local name, return the unmodified name (points into 2462 * "name"). Otherwise return NULL. 2463 * This can be used to first search for a script-local function and fall back 2464 * to the global function if not found. 2465 */ 2466 char_u * 2467 untrans_function_name(char_u *name) 2468 { 2469 char_u *p; 2470 2471 if (*name == K_SPECIAL && in_vim9script()) 2472 { 2473 p = vim_strchr(name, '_'); 2474 if (p != NULL) 2475 return p + 1; 2476 } 2477 return NULL; 2478 } 2479 2480 /* 2481 * List functions. When "regmatch" is NULL all of then. 2482 * Otherwise functions matching "regmatch". 2483 */ 2484 static void 2485 list_functions(regmatch_T *regmatch) 2486 { 2487 int changed = func_hashtab.ht_changed; 2488 long_u todo = func_hashtab.ht_used; 2489 hashitem_T *hi; 2490 2491 for (hi = func_hashtab.ht_array; todo > 0 && !got_int; ++hi) 2492 { 2493 if (!HASHITEM_EMPTY(hi)) 2494 { 2495 ufunc_T *fp = HI2UF(hi); 2496 2497 --todo; 2498 if ((fp->uf_flags & FC_DEAD) == 0 2499 && (regmatch == NULL 2500 ? !message_filtered(fp->uf_name) 2501 && !func_name_refcount(fp->uf_name) 2502 : !isdigit(*fp->uf_name) 2503 && vim_regexec(regmatch, fp->uf_name, 0))) 2504 { 2505 list_func_head(fp, FALSE); 2506 if (changed != func_hashtab.ht_changed) 2507 { 2508 emsg(_("E454: function list was modified")); 2509 return; 2510 } 2511 } 2512 } 2513 } 2514 } 2515 2516 /* 2517 * ":function" also supporting nested ":def". 2518 * Returns a pointer to the function or NULL if no function defined. 2519 */ 2520 ufunc_T * 2521 def_function(exarg_T *eap, char_u *name_arg) 2522 { 2523 char_u *theline; 2524 char_u *line_to_free = NULL; 2525 int j; 2526 int c; 2527 int saved_did_emsg; 2528 int saved_wait_return = need_wait_return; 2529 char_u *name = name_arg; 2530 int is_global = FALSE; 2531 char_u *p; 2532 char_u *arg; 2533 char_u *line_arg = NULL; 2534 garray_T newargs; 2535 garray_T argtypes; 2536 garray_T default_args; 2537 garray_T newlines; 2538 int varargs = FALSE; 2539 int flags = 0; 2540 char_u *ret_type = NULL; 2541 ufunc_T *fp = NULL; 2542 int overwrite = FALSE; 2543 int indent; 2544 int nesting; 2545 #define MAX_FUNC_NESTING 50 2546 char nesting_def[MAX_FUNC_NESTING]; 2547 dictitem_T *v; 2548 funcdict_T fudi; 2549 static int func_nr = 0; // number for nameless function 2550 int paren; 2551 hashitem_T *hi; 2552 int do_concat = TRUE; 2553 linenr_T sourcing_lnum_off; 2554 linenr_T sourcing_lnum_top; 2555 int is_heredoc = FALSE; 2556 char_u *skip_until = NULL; 2557 char_u *heredoc_trimmed = NULL; 2558 2559 if (in_vim9script() && eap->forceit) 2560 { 2561 emsg(_(e_nobang)); 2562 return NULL; 2563 } 2564 2565 /* 2566 * ":function" without argument: list functions. 2567 */ 2568 if (ends_excmd2(eap->cmd, eap->arg)) 2569 { 2570 if (!eap->skip) 2571 list_functions(NULL); 2572 eap->nextcmd = check_nextcmd(eap->arg); 2573 return NULL; 2574 } 2575 2576 /* 2577 * ":function /pat": list functions matching pattern. 2578 */ 2579 if (*eap->arg == '/') 2580 { 2581 p = skip_regexp(eap->arg + 1, '/', TRUE); 2582 if (!eap->skip) 2583 { 2584 regmatch_T regmatch; 2585 2586 c = *p; 2587 *p = NUL; 2588 regmatch.regprog = vim_regcomp(eap->arg + 1, RE_MAGIC); 2589 *p = c; 2590 if (regmatch.regprog != NULL) 2591 { 2592 regmatch.rm_ic = p_ic; 2593 list_functions(®match); 2594 vim_regfree(regmatch.regprog); 2595 } 2596 } 2597 if (*p == '/') 2598 ++p; 2599 eap->nextcmd = check_nextcmd(p); 2600 return NULL; 2601 } 2602 2603 ga_init(&newargs); 2604 ga_init(&argtypes); 2605 ga_init(&default_args); 2606 2607 /* 2608 * Get the function name. There are these situations: 2609 * func normal function name 2610 * "name" == func, "fudi.fd_dict" == NULL 2611 * dict.func new dictionary entry 2612 * "name" == NULL, "fudi.fd_dict" set, 2613 * "fudi.fd_di" == NULL, "fudi.fd_newkey" == func 2614 * dict.func existing dict entry with a Funcref 2615 * "name" == func, "fudi.fd_dict" set, 2616 * "fudi.fd_di" set, "fudi.fd_newkey" == NULL 2617 * dict.func existing dict entry that's not a Funcref 2618 * "name" == NULL, "fudi.fd_dict" set, 2619 * "fudi.fd_di" set, "fudi.fd_newkey" == NULL 2620 * s:func script-local function name 2621 * g:func global function name, same as "func" 2622 */ 2623 p = eap->arg; 2624 if (name_arg != NULL) 2625 { 2626 // nested function, argument is (args). 2627 paren = TRUE; 2628 CLEAR_FIELD(fudi); 2629 } 2630 else 2631 { 2632 name = trans_function_name(&p, &is_global, eap->skip, 2633 TFN_NO_AUTOLOAD, &fudi, NULL); 2634 paren = (vim_strchr(p, '(') != NULL); 2635 if (name == NULL && (fudi.fd_dict == NULL || !paren) && !eap->skip) 2636 { 2637 /* 2638 * Return on an invalid expression in braces, unless the expression 2639 * evaluation has been cancelled due to an aborting error, an 2640 * interrupt, or an exception. 2641 */ 2642 if (!aborting()) 2643 { 2644 if (!eap->skip && fudi.fd_newkey != NULL) 2645 semsg(_(e_dictkey), fudi.fd_newkey); 2646 vim_free(fudi.fd_newkey); 2647 return NULL; 2648 } 2649 else 2650 eap->skip = TRUE; 2651 } 2652 } 2653 2654 // An error in a function call during evaluation of an expression in magic 2655 // braces should not cause the function not to be defined. 2656 saved_did_emsg = did_emsg; 2657 did_emsg = FALSE; 2658 2659 /* 2660 * ":function func" with only function name: list function. 2661 */ 2662 if (!paren) 2663 { 2664 if (!ends_excmd(*skipwhite(p))) 2665 { 2666 emsg(_(e_trailing)); 2667 goto ret_free; 2668 } 2669 eap->nextcmd = check_nextcmd(p); 2670 if (eap->nextcmd != NULL) 2671 *p = NUL; 2672 if (!eap->skip && !got_int) 2673 { 2674 fp = find_func(name, is_global, NULL); 2675 if (fp == NULL && ASCII_ISUPPER(*eap->arg)) 2676 { 2677 char_u *up = untrans_function_name(name); 2678 2679 // With Vim9 script the name was made script-local, if not 2680 // found try again with the original name. 2681 if (up != NULL) 2682 fp = find_func(up, FALSE, NULL); 2683 } 2684 2685 if (fp != NULL) 2686 { 2687 list_func_head(fp, TRUE); 2688 for (j = 0; j < fp->uf_lines.ga_len && !got_int; ++j) 2689 { 2690 if (FUNCLINE(fp, j) == NULL) 2691 continue; 2692 msg_putchar('\n'); 2693 msg_outnum((long)(j + 1)); 2694 if (j < 9) 2695 msg_putchar(' '); 2696 if (j < 99) 2697 msg_putchar(' '); 2698 msg_prt_line(FUNCLINE(fp, j), FALSE); 2699 out_flush(); // show a line at a time 2700 ui_breakcheck(); 2701 } 2702 if (!got_int) 2703 { 2704 msg_putchar('\n'); 2705 if (fp->uf_def_status != UF_NOT_COMPILED) 2706 msg_puts(" enddef"); 2707 else 2708 msg_puts(" endfunction"); 2709 } 2710 } 2711 else 2712 emsg_funcname(N_("E123: Undefined function: %s"), eap->arg); 2713 } 2714 goto ret_free; 2715 } 2716 2717 /* 2718 * ":function name(arg1, arg2)" Define function. 2719 */ 2720 p = skipwhite(p); 2721 if (*p != '(') 2722 { 2723 if (!eap->skip) 2724 { 2725 semsg(_("E124: Missing '(': %s"), eap->arg); 2726 goto ret_free; 2727 } 2728 // attempt to continue by skipping some text 2729 if (vim_strchr(p, '(') != NULL) 2730 p = vim_strchr(p, '('); 2731 } 2732 p = skipwhite(p + 1); 2733 2734 ga_init2(&newlines, (int)sizeof(char_u *), 3); 2735 2736 if (!eap->skip && name_arg == NULL) 2737 { 2738 // Check the name of the function. Unless it's a dictionary function 2739 // (that we are overwriting). 2740 if (name != NULL) 2741 arg = name; 2742 else 2743 arg = fudi.fd_newkey; 2744 if (arg != NULL && (fudi.fd_di == NULL 2745 || (fudi.fd_di->di_tv.v_type != VAR_FUNC 2746 && fudi.fd_di->di_tv.v_type != VAR_PARTIAL))) 2747 { 2748 if (*arg == K_SPECIAL) 2749 j = 3; 2750 else 2751 j = 0; 2752 while (arg[j] != NUL && (j == 0 ? eval_isnamec1(arg[j]) 2753 : eval_isnamec(arg[j]))) 2754 ++j; 2755 if (arg[j] != NUL) 2756 emsg_funcname((char *)e_invarg2, arg); 2757 } 2758 // Disallow using the g: dict. 2759 if (fudi.fd_dict != NULL && fudi.fd_dict->dv_scope == VAR_DEF_SCOPE) 2760 emsg(_("E862: Cannot use g: here")); 2761 } 2762 2763 // This may get more lines and make the pointers into the first line 2764 // invalid. 2765 if (get_function_args(&p, ')', &newargs, 2766 eap->cmdidx == CMD_def ? &argtypes : NULL, 2767 &varargs, &default_args, eap->skip, 2768 eap, &line_to_free) == FAIL) 2769 goto errret_2; 2770 2771 if (eap->cmdidx == CMD_def) 2772 { 2773 // find the return type: :def Func(): type 2774 if (*p == ':') 2775 { 2776 ret_type = skipwhite(p + 1); 2777 p = skip_type(ret_type); 2778 if (p > ret_type) 2779 { 2780 ret_type = vim_strnsave(ret_type, p - ret_type); 2781 p = skipwhite(p); 2782 } 2783 else 2784 { 2785 semsg(_("E1056: expected a type: %s"), ret_type); 2786 ret_type = NULL; 2787 } 2788 } 2789 } 2790 else 2791 // find extra arguments "range", "dict", "abort" and "closure" 2792 for (;;) 2793 { 2794 p = skipwhite(p); 2795 if (STRNCMP(p, "range", 5) == 0) 2796 { 2797 flags |= FC_RANGE; 2798 p += 5; 2799 } 2800 else if (STRNCMP(p, "dict", 4) == 0) 2801 { 2802 flags |= FC_DICT; 2803 p += 4; 2804 } 2805 else if (STRNCMP(p, "abort", 5) == 0) 2806 { 2807 flags |= FC_ABORT; 2808 p += 5; 2809 } 2810 else if (STRNCMP(p, "closure", 7) == 0) 2811 { 2812 flags |= FC_CLOSURE; 2813 p += 7; 2814 if (current_funccal == NULL) 2815 { 2816 emsg_funcname(N_("E932: Closure function should not be at top level: %s"), 2817 name == NULL ? (char_u *)"" : name); 2818 goto erret; 2819 } 2820 } 2821 else 2822 break; 2823 } 2824 2825 // When there is a line break use what follows for the function body. 2826 // Makes 'exe "func Test()\n...\nendfunc"' work. 2827 if (*p == '\n') 2828 line_arg = p + 1; 2829 else if (*p != NUL && *p != '"' && !(eap->cmdidx == CMD_def && *p == '#') 2830 && !eap->skip && !did_emsg) 2831 emsg(_(e_trailing)); 2832 2833 /* 2834 * Read the body of the function, until "}", ":endfunction" or ":enddef" is 2835 * found. 2836 */ 2837 if (KeyTyped) 2838 { 2839 // Check if the function already exists, don't let the user type the 2840 // whole function before telling him it doesn't work! For a script we 2841 // need to skip the body to be able to find what follows. 2842 if (!eap->skip && !eap->forceit) 2843 { 2844 if (fudi.fd_dict != NULL && fudi.fd_newkey == NULL) 2845 emsg(_(e_funcdict)); 2846 else if (name != NULL && find_func(name, is_global, NULL) != NULL) 2847 emsg_funcname(e_funcexts, name); 2848 } 2849 2850 if (!eap->skip && did_emsg) 2851 goto erret; 2852 2853 msg_putchar('\n'); // don't overwrite the function name 2854 cmdline_row = msg_row; 2855 } 2856 2857 // Save the starting line number. 2858 sourcing_lnum_top = SOURCING_LNUM; 2859 2860 indent = 2; 2861 nesting = 0; 2862 nesting_def[nesting] = (eap->cmdidx == CMD_def); 2863 for (;;) 2864 { 2865 if (KeyTyped) 2866 { 2867 msg_scroll = TRUE; 2868 saved_wait_return = FALSE; 2869 } 2870 need_wait_return = FALSE; 2871 2872 if (line_arg != NULL) 2873 { 2874 // Use eap->arg, split up in parts by line breaks. 2875 theline = line_arg; 2876 p = vim_strchr(theline, '\n'); 2877 if (p == NULL) 2878 line_arg += STRLEN(line_arg); 2879 else 2880 { 2881 *p = NUL; 2882 line_arg = p + 1; 2883 } 2884 } 2885 else 2886 { 2887 vim_free(line_to_free); 2888 if (eap->getline == NULL) 2889 theline = getcmdline(':', 0L, indent, do_concat); 2890 else 2891 theline = eap->getline(':', eap->cookie, indent, do_concat); 2892 line_to_free = theline; 2893 } 2894 if (KeyTyped) 2895 lines_left = Rows - 1; 2896 if (theline == NULL) 2897 { 2898 if (eap->cmdidx == CMD_def) 2899 emsg(_("E1057: Missing :enddef")); 2900 else 2901 emsg(_("E126: Missing :endfunction")); 2902 goto erret; 2903 } 2904 2905 // Detect line continuation: SOURCING_LNUM increased more than one. 2906 sourcing_lnum_off = get_sourced_lnum(eap->getline, eap->cookie); 2907 if (SOURCING_LNUM < sourcing_lnum_off) 2908 sourcing_lnum_off -= SOURCING_LNUM; 2909 else 2910 sourcing_lnum_off = 0; 2911 2912 if (skip_until != NULL) 2913 { 2914 // Don't check for ":endfunc"/":enddef" between 2915 // * ":append" and "." 2916 // * ":python <<EOF" and "EOF" 2917 // * ":let {var-name} =<< [trim] {marker}" and "{marker}" 2918 if (heredoc_trimmed == NULL 2919 || (is_heredoc && skipwhite(theline) == theline) 2920 || STRNCMP(theline, heredoc_trimmed, 2921 STRLEN(heredoc_trimmed)) == 0) 2922 { 2923 if (heredoc_trimmed == NULL) 2924 p = theline; 2925 else if (is_heredoc) 2926 p = skipwhite(theline) == theline 2927 ? theline : theline + STRLEN(heredoc_trimmed); 2928 else 2929 p = theline + STRLEN(heredoc_trimmed); 2930 if (STRCMP(p, skip_until) == 0) 2931 { 2932 VIM_CLEAR(skip_until); 2933 VIM_CLEAR(heredoc_trimmed); 2934 do_concat = TRUE; 2935 is_heredoc = FALSE; 2936 } 2937 } 2938 } 2939 else 2940 { 2941 // skip ':' and blanks 2942 for (p = theline; VIM_ISWHITE(*p) || *p == ':'; ++p) 2943 ; 2944 2945 // Check for "endfunction" or "enddef". 2946 if (checkforcmd(&p, nesting_def[nesting] 2947 ? "enddef" : "endfunction", 4) && nesting-- == 0) 2948 { 2949 char_u *nextcmd = NULL; 2950 2951 if (*p == '|') 2952 nextcmd = p + 1; 2953 else if (line_arg != NULL && *skipwhite(line_arg) != NUL) 2954 nextcmd = line_arg; 2955 else if (*p != NUL && *p != '"' && p_verbose > 0) 2956 give_warning2(eap->cmdidx == CMD_def 2957 ? (char_u *)_("W1001: Text found after :enddef: %s") 2958 : (char_u *)_("W22: Text found after :endfunction: %s"), 2959 p, TRUE); 2960 if (nextcmd != NULL) 2961 { 2962 // Another command follows. If the line came from "eap" we 2963 // can simply point into it, otherwise we need to change 2964 // "eap->cmdlinep". 2965 eap->nextcmd = nextcmd; 2966 if (line_to_free != NULL) 2967 { 2968 vim_free(*eap->cmdlinep); 2969 *eap->cmdlinep = line_to_free; 2970 line_to_free = NULL; 2971 } 2972 } 2973 break; 2974 } 2975 2976 // Increase indent inside "if", "while", "for" and "try", decrease 2977 // at "end". 2978 if (indent > 2 && (*p == '}' || STRNCMP(p, "end", 3) == 0)) 2979 indent -= 2; 2980 else if (STRNCMP(p, "if", 2) == 0 2981 || STRNCMP(p, "wh", 2) == 0 2982 || STRNCMP(p, "for", 3) == 0 2983 || STRNCMP(p, "try", 3) == 0) 2984 indent += 2; 2985 2986 // Check for defining a function inside this function. 2987 // Only recognize "def" inside "def", not inside "function", 2988 // For backwards compatibility, see Test_function_python(). 2989 c = *p; 2990 if (checkforcmd(&p, "function", 2) 2991 || (eap->cmdidx == CMD_def && checkforcmd(&p, "def", 3))) 2992 { 2993 if (*p == '!') 2994 p = skipwhite(p + 1); 2995 p += eval_fname_script(p); 2996 vim_free(trans_function_name(&p, NULL, TRUE, 0, NULL, NULL)); 2997 if (*skipwhite(p) == '(') 2998 { 2999 if (nesting == MAX_FUNC_NESTING - 1) 3000 emsg(_("E1058: function nesting too deep")); 3001 else 3002 { 3003 ++nesting; 3004 nesting_def[nesting] = (c == 'd'); 3005 indent += 2; 3006 } 3007 } 3008 } 3009 3010 // Check for ":append", ":change", ":insert". Not for :def. 3011 p = skip_range(p, NULL); 3012 if (eap->cmdidx != CMD_def 3013 && ((p[0] == 'a' && (!ASCII_ISALPHA(p[1]) || p[1] == 'p')) 3014 || (p[0] == 'c' 3015 && (!ASCII_ISALPHA(p[1]) || (p[1] == 'h' 3016 && (!ASCII_ISALPHA(p[2]) || (p[2] == 'a' 3017 && (STRNCMP(&p[3], "nge", 3) != 0 3018 || !ASCII_ISALPHA(p[6]))))))) 3019 || (p[0] == 'i' 3020 && (!ASCII_ISALPHA(p[1]) || (p[1] == 'n' 3021 && (!ASCII_ISALPHA(p[2]) 3022 || (p[2] == 's' 3023 && (!ASCII_ISALPHA(p[3]) 3024 || p[3] == 'e')))))))) 3025 skip_until = vim_strsave((char_u *)"."); 3026 3027 // Check for ":python <<EOF", ":tcl <<EOF", etc. 3028 arg = skipwhite(skiptowhite(p)); 3029 if (arg[0] == '<' && arg[1] =='<' 3030 && ((p[0] == 'p' && p[1] == 'y' 3031 && (!ASCII_ISALNUM(p[2]) || p[2] == 't' 3032 || ((p[2] == '3' || p[2] == 'x') 3033 && !ASCII_ISALPHA(p[3])))) 3034 || (p[0] == 'p' && p[1] == 'e' 3035 && (!ASCII_ISALPHA(p[2]) || p[2] == 'r')) 3036 || (p[0] == 't' && p[1] == 'c' 3037 && (!ASCII_ISALPHA(p[2]) || p[2] == 'l')) 3038 || (p[0] == 'l' && p[1] == 'u' && p[2] == 'a' 3039 && !ASCII_ISALPHA(p[3])) 3040 || (p[0] == 'r' && p[1] == 'u' && p[2] == 'b' 3041 && (!ASCII_ISALPHA(p[3]) || p[3] == 'y')) 3042 || (p[0] == 'm' && p[1] == 'z' 3043 && (!ASCII_ISALPHA(p[2]) || p[2] == 's')) 3044 )) 3045 { 3046 // ":python <<" continues until a dot, like ":append" 3047 p = skipwhite(arg + 2); 3048 if (STRNCMP(p, "trim", 4) == 0) 3049 { 3050 // Ignore leading white space. 3051 p = skipwhite(p + 4); 3052 heredoc_trimmed = vim_strnsave(theline, 3053 skipwhite(theline) - theline); 3054 } 3055 if (*p == NUL) 3056 skip_until = vim_strsave((char_u *)"."); 3057 else 3058 skip_until = vim_strnsave(p, skiptowhite(p) - p); 3059 do_concat = FALSE; 3060 is_heredoc = TRUE; 3061 } 3062 3063 // Check for ":let v =<< [trim] EOF" 3064 // and ":let [a, b] =<< [trim] EOF" 3065 arg = skipwhite(skiptowhite(p)); 3066 if (*arg == '[') 3067 arg = vim_strchr(arg, ']'); 3068 if (arg != NULL) 3069 { 3070 arg = skipwhite(skiptowhite(arg)); 3071 if ( arg[0] == '=' && arg[1] == '<' && arg[2] =='<' 3072 && ((p[0] == 'l' 3073 && p[1] == 'e' 3074 && (!ASCII_ISALNUM(p[2]) 3075 || (p[2] == 't' && !ASCII_ISALNUM(p[3])))))) 3076 { 3077 p = skipwhite(arg + 3); 3078 if (STRNCMP(p, "trim", 4) == 0) 3079 { 3080 // Ignore leading white space. 3081 p = skipwhite(p + 4); 3082 heredoc_trimmed = vim_strnsave(theline, 3083 skipwhite(theline) - theline); 3084 } 3085 skip_until = vim_strnsave(p, skiptowhite(p) - p); 3086 do_concat = FALSE; 3087 is_heredoc = TRUE; 3088 } 3089 } 3090 } 3091 3092 // Add the line to the function. 3093 if (ga_grow(&newlines, 1 + sourcing_lnum_off) == FAIL) 3094 goto erret; 3095 3096 // Copy the line to newly allocated memory. get_one_sourceline() 3097 // allocates 250 bytes per line, this saves 80% on average. The cost 3098 // is an extra alloc/free. 3099 p = vim_strsave(theline); 3100 if (p == NULL) 3101 goto erret; 3102 ((char_u **)(newlines.ga_data))[newlines.ga_len++] = p; 3103 3104 // Add NULL lines for continuation lines, so that the line count is 3105 // equal to the index in the growarray. 3106 while (sourcing_lnum_off-- > 0) 3107 ((char_u **)(newlines.ga_data))[newlines.ga_len++] = NULL; 3108 3109 // Check for end of eap->arg. 3110 if (line_arg != NULL && *line_arg == NUL) 3111 line_arg = NULL; 3112 } 3113 3114 // Don't define the function when skipping commands or when an error was 3115 // detected. 3116 if (eap->skip || did_emsg) 3117 goto erret; 3118 3119 /* 3120 * If there are no errors, add the function 3121 */ 3122 if (fudi.fd_dict == NULL) 3123 { 3124 hashtab_T *ht; 3125 3126 v = find_var(name, &ht, FALSE); 3127 if (v != NULL && v->di_tv.v_type == VAR_FUNC) 3128 { 3129 emsg_funcname(N_("E707: Function name conflicts with variable: %s"), 3130 name); 3131 goto erret; 3132 } 3133 3134 fp = find_func_even_dead(name, is_global, NULL); 3135 if (fp != NULL) 3136 { 3137 int dead = fp->uf_flags & FC_DEAD; 3138 3139 // Function can be replaced with "function!" and when sourcing the 3140 // same script again, but only once. 3141 if (!dead && !eap->forceit 3142 && (fp->uf_script_ctx.sc_sid != current_sctx.sc_sid 3143 || fp->uf_script_ctx.sc_seq == current_sctx.sc_seq)) 3144 { 3145 emsg_funcname(e_funcexts, name); 3146 goto erret; 3147 } 3148 if (fp->uf_calls > 0) 3149 { 3150 emsg_funcname( 3151 N_("E127: Cannot redefine function %s: It is in use"), 3152 name); 3153 goto erret; 3154 } 3155 if (fp->uf_refcount > 1) 3156 { 3157 // This function is referenced somewhere, don't redefine it but 3158 // create a new one. 3159 --fp->uf_refcount; 3160 fp->uf_flags |= FC_REMOVED; 3161 fp = NULL; 3162 overwrite = TRUE; 3163 } 3164 else 3165 { 3166 char_u *exp_name = fp->uf_name_exp; 3167 3168 // redefine existing function, keep the expanded name 3169 VIM_CLEAR(name); 3170 fp->uf_name_exp = NULL; 3171 func_clear_items(fp); 3172 fp->uf_name_exp = exp_name; 3173 fp->uf_flags &= ~FC_DEAD; 3174 #ifdef FEAT_PROFILE 3175 fp->uf_profiling = FALSE; 3176 fp->uf_prof_initialized = FALSE; 3177 #endif 3178 clear_def_function(fp); 3179 } 3180 } 3181 } 3182 else 3183 { 3184 char numbuf[20]; 3185 3186 fp = NULL; 3187 if (fudi.fd_newkey == NULL && !eap->forceit) 3188 { 3189 emsg(_(e_funcdict)); 3190 goto erret; 3191 } 3192 if (fudi.fd_di == NULL) 3193 { 3194 // Can't add a function to a locked dictionary 3195 if (var_check_lock(fudi.fd_dict->dv_lock, eap->arg, FALSE)) 3196 goto erret; 3197 } 3198 // Can't change an existing function if it is locked 3199 else if (var_check_lock(fudi.fd_di->di_tv.v_lock, eap->arg, FALSE)) 3200 goto erret; 3201 3202 // Give the function a sequential number. Can only be used with a 3203 // Funcref! 3204 vim_free(name); 3205 sprintf(numbuf, "%d", ++func_nr); 3206 name = vim_strsave((char_u *)numbuf); 3207 if (name == NULL) 3208 goto erret; 3209 } 3210 3211 if (fp == NULL) 3212 { 3213 if (fudi.fd_dict == NULL && vim_strchr(name, AUTOLOAD_CHAR) != NULL) 3214 { 3215 int slen, plen; 3216 char_u *scriptname; 3217 3218 // Check that the autoload name matches the script name. 3219 j = FAIL; 3220 if (SOURCING_NAME != NULL) 3221 { 3222 scriptname = autoload_name(name); 3223 if (scriptname != NULL) 3224 { 3225 p = vim_strchr(scriptname, '/'); 3226 plen = (int)STRLEN(p); 3227 slen = (int)STRLEN(SOURCING_NAME); 3228 if (slen > plen && fnamecmp(p, 3229 SOURCING_NAME + slen - plen) == 0) 3230 j = OK; 3231 vim_free(scriptname); 3232 } 3233 } 3234 if (j == FAIL) 3235 { 3236 semsg(_("E746: Function name does not match script file name: %s"), name); 3237 goto erret; 3238 } 3239 } 3240 3241 fp = alloc_clear(offsetof(ufunc_T, uf_name) + STRLEN(name) + 1); 3242 if (fp == NULL) 3243 goto erret; 3244 fp->uf_def_status = eap->cmdidx == CMD_def ? UF_TO_BE_COMPILED 3245 : UF_NOT_COMPILED; 3246 3247 if (fudi.fd_dict != NULL) 3248 { 3249 if (fudi.fd_di == NULL) 3250 { 3251 // add new dict entry 3252 fudi.fd_di = dictitem_alloc(fudi.fd_newkey); 3253 if (fudi.fd_di == NULL) 3254 { 3255 vim_free(fp); 3256 fp = NULL; 3257 goto erret; 3258 } 3259 if (dict_add(fudi.fd_dict, fudi.fd_di) == FAIL) 3260 { 3261 vim_free(fudi.fd_di); 3262 vim_free(fp); 3263 fp = NULL; 3264 goto erret; 3265 } 3266 } 3267 else 3268 // overwrite existing dict entry 3269 clear_tv(&fudi.fd_di->di_tv); 3270 fudi.fd_di->di_tv.v_type = VAR_FUNC; 3271 fudi.fd_di->di_tv.vval.v_string = vim_strsave(name); 3272 3273 // behave like "dict" was used 3274 flags |= FC_DICT; 3275 } 3276 3277 // insert the new function in the function list 3278 set_ufunc_name(fp, name); 3279 if (overwrite) 3280 { 3281 hi = hash_find(&func_hashtab, name); 3282 hi->hi_key = UF2HIKEY(fp); 3283 } 3284 else if (hash_add(&func_hashtab, UF2HIKEY(fp)) == FAIL) 3285 { 3286 vim_free(fp); 3287 fp = NULL; 3288 goto erret; 3289 } 3290 fp->uf_refcount = 1; 3291 } 3292 fp->uf_args = newargs; 3293 fp->uf_def_args = default_args; 3294 fp->uf_ret_type = &t_any; 3295 fp->uf_func_type = &t_func_any; 3296 3297 if (eap->cmdidx == CMD_def) 3298 { 3299 int lnum_save = SOURCING_LNUM; 3300 3301 fp->uf_def_status = UF_TO_BE_COMPILED; 3302 3303 // error messages are for the first function line 3304 SOURCING_LNUM = sourcing_lnum_top; 3305 3306 // parse the argument types 3307 ga_init2(&fp->uf_type_list, sizeof(type_T *), 10); 3308 3309 if (argtypes.ga_len > 0) 3310 { 3311 // When "varargs" is set the last name/type goes into uf_va_name 3312 // and uf_va_type. 3313 int len = argtypes.ga_len - (varargs ? 1 : 0); 3314 3315 if (len > 0) 3316 fp->uf_arg_types = ALLOC_CLEAR_MULT(type_T *, len); 3317 if (fp->uf_arg_types != NULL) 3318 { 3319 int i; 3320 type_T *type; 3321 3322 for (i = 0; i < len; ++ i) 3323 { 3324 p = ((char_u **)argtypes.ga_data)[i]; 3325 if (p == NULL) 3326 // will get the type from the default value 3327 type = &t_unknown; 3328 else 3329 type = parse_type(&p, &fp->uf_type_list); 3330 if (type == NULL) 3331 { 3332 SOURCING_LNUM = lnum_save; 3333 goto errret_2; 3334 } 3335 fp->uf_arg_types[i] = type; 3336 } 3337 } 3338 if (varargs) 3339 { 3340 // Move the last argument "...name: type" to uf_va_name and 3341 // uf_va_type. 3342 fp->uf_va_name = ((char_u **)fp->uf_args.ga_data) 3343 [fp->uf_args.ga_len - 1]; 3344 --fp->uf_args.ga_len; 3345 p = ((char_u **)argtypes.ga_data)[len]; 3346 if (p == NULL) 3347 // todo: get type from default value 3348 fp->uf_va_type = &t_any; 3349 else 3350 fp->uf_va_type = parse_type(&p, &fp->uf_type_list); 3351 if (fp->uf_va_type == NULL) 3352 { 3353 SOURCING_LNUM = lnum_save; 3354 goto errret_2; 3355 } 3356 } 3357 varargs = FALSE; 3358 } 3359 3360 // parse the return type, if any 3361 if (ret_type == NULL) 3362 fp->uf_ret_type = &t_void; 3363 else 3364 { 3365 p = ret_type; 3366 fp->uf_ret_type = parse_type(&p, &fp->uf_type_list); 3367 } 3368 SOURCING_LNUM = lnum_save; 3369 } 3370 else 3371 fp->uf_def_status = UF_NOT_COMPILED; 3372 3373 fp->uf_lines = newlines; 3374 if ((flags & FC_CLOSURE) != 0) 3375 { 3376 if (register_closure(fp) == FAIL) 3377 goto erret; 3378 } 3379 else 3380 fp->uf_scoped = NULL; 3381 3382 #ifdef FEAT_PROFILE 3383 if (prof_def_func()) 3384 func_do_profile(fp); 3385 #endif 3386 fp->uf_varargs = varargs; 3387 if (sandbox) 3388 flags |= FC_SANDBOX; 3389 if (in_vim9script() && !ASCII_ISUPPER(*fp->uf_name)) 3390 flags |= FC_VIM9; 3391 fp->uf_flags = flags; 3392 fp->uf_calls = 0; 3393 fp->uf_cleared = FALSE; 3394 fp->uf_script_ctx = current_sctx; 3395 fp->uf_script_ctx.sc_lnum += sourcing_lnum_top; 3396 if (is_export) 3397 { 3398 fp->uf_flags |= FC_EXPORT; 3399 // let ex_export() know the export worked. 3400 is_export = FALSE; 3401 } 3402 3403 if (eap->cmdidx == CMD_def) 3404 set_function_type(fp); 3405 else if (fp->uf_script_ctx.sc_version == SCRIPT_VERSION_VIM9) 3406 // :func does not use Vim9 script syntax, even in a Vim9 script file 3407 fp->uf_script_ctx.sc_version = SCRIPT_VERSION_MAX; 3408 3409 goto ret_free; 3410 3411 erret: 3412 ga_clear_strings(&newargs); 3413 ga_clear_strings(&default_args); 3414 errret_2: 3415 ga_clear_strings(&newlines); 3416 ret_free: 3417 ga_clear_strings(&argtypes); 3418 vim_free(skip_until); 3419 vim_free(line_to_free); 3420 vim_free(fudi.fd_newkey); 3421 if (name != name_arg) 3422 vim_free(name); 3423 vim_free(ret_type); 3424 did_emsg |= saved_did_emsg; 3425 need_wait_return |= saved_wait_return; 3426 3427 return fp; 3428 } 3429 3430 /* 3431 * ":function" 3432 */ 3433 void 3434 ex_function(exarg_T *eap) 3435 { 3436 (void)def_function(eap, NULL); 3437 } 3438 3439 /* 3440 * :defcompile - compile all :def functions in the current script. 3441 */ 3442 void 3443 ex_defcompile(exarg_T *eap UNUSED) 3444 { 3445 long todo = (long)func_hashtab.ht_used; 3446 int changed = func_hashtab.ht_changed; 3447 hashitem_T *hi; 3448 ufunc_T *ufunc; 3449 3450 for (hi = func_hashtab.ht_array; todo > 0 && !got_int; ++hi) 3451 { 3452 if (!HASHITEM_EMPTY(hi)) 3453 { 3454 --todo; 3455 ufunc = HI2UF(hi); 3456 if (ufunc->uf_script_ctx.sc_sid == current_sctx.sc_sid 3457 && ufunc->uf_def_status == UF_TO_BE_COMPILED) 3458 { 3459 compile_def_function(ufunc, FALSE, NULL); 3460 3461 if (func_hashtab.ht_changed != changed) 3462 { 3463 // a function has been added or removed, need to start over 3464 todo = (long)func_hashtab.ht_used; 3465 changed = func_hashtab.ht_changed; 3466 hi = func_hashtab.ht_array; 3467 --hi; 3468 } 3469 } 3470 } 3471 } 3472 } 3473 3474 /* 3475 * Return 5 if "p" starts with "<SID>" or "<SNR>" (ignoring case). 3476 * Return 2 if "p" starts with "s:". 3477 * Return 0 otherwise. 3478 */ 3479 int 3480 eval_fname_script(char_u *p) 3481 { 3482 // Use MB_STRICMP() because in Turkish comparing the "I" may not work with 3483 // the standard library function. 3484 if (p[0] == '<' && (MB_STRNICMP(p + 1, "SID>", 4) == 0 3485 || MB_STRNICMP(p + 1, "SNR>", 4) == 0)) 3486 return 5; 3487 if (p[0] == 's' && p[1] == ':') 3488 return 2; 3489 return 0; 3490 } 3491 3492 int 3493 translated_function_exists(char_u *name, int is_global) 3494 { 3495 if (builtin_function(name, -1)) 3496 return has_internal_func(name); 3497 return find_func(name, is_global, NULL) != NULL; 3498 } 3499 3500 /* 3501 * Return TRUE when "ufunc" has old-style "..." varargs 3502 * or named varargs "...name: type". 3503 */ 3504 int 3505 has_varargs(ufunc_T *ufunc) 3506 { 3507 return ufunc->uf_varargs || ufunc->uf_va_name != NULL; 3508 } 3509 3510 /* 3511 * Return TRUE if a function "name" exists. 3512 * If "no_defef" is TRUE, do not dereference a Funcref. 3513 */ 3514 int 3515 function_exists(char_u *name, int no_deref) 3516 { 3517 char_u *nm = name; 3518 char_u *p; 3519 int n = FALSE; 3520 int flag; 3521 int is_global = FALSE; 3522 3523 flag = TFN_INT | TFN_QUIET | TFN_NO_AUTOLOAD; 3524 if (no_deref) 3525 flag |= TFN_NO_DEREF; 3526 p = trans_function_name(&nm, &is_global, FALSE, flag, NULL, NULL); 3527 nm = skipwhite(nm); 3528 3529 // Only accept "funcname", "funcname ", "funcname (..." and 3530 // "funcname(...", not "funcname!...". 3531 if (p != NULL && (*nm == NUL || *nm == '(')) 3532 n = translated_function_exists(p, is_global); 3533 vim_free(p); 3534 return n; 3535 } 3536 3537 #if defined(FEAT_PYTHON) || defined(FEAT_PYTHON3) || defined(PROTO) 3538 char_u * 3539 get_expanded_name(char_u *name, int check) 3540 { 3541 char_u *nm = name; 3542 char_u *p; 3543 int is_global = FALSE; 3544 3545 p = trans_function_name(&nm, &is_global, FALSE, 3546 TFN_INT|TFN_QUIET, NULL, NULL); 3547 3548 if (p != NULL && *nm == NUL 3549 && (!check || translated_function_exists(p, is_global))) 3550 return p; 3551 3552 vim_free(p); 3553 return NULL; 3554 } 3555 #endif 3556 3557 /* 3558 * Function given to ExpandGeneric() to obtain the list of user defined 3559 * function names. 3560 */ 3561 char_u * 3562 get_user_func_name(expand_T *xp, int idx) 3563 { 3564 static long_u done; 3565 static int changed; 3566 static hashitem_T *hi; 3567 ufunc_T *fp; 3568 3569 if (idx == 0) 3570 { 3571 done = 0; 3572 hi = func_hashtab.ht_array; 3573 changed = func_hashtab.ht_changed; 3574 } 3575 if (changed == func_hashtab.ht_changed && done < func_hashtab.ht_used) 3576 { 3577 if (done++ > 0) 3578 ++hi; 3579 while (HASHITEM_EMPTY(hi)) 3580 ++hi; 3581 fp = HI2UF(hi); 3582 3583 // don't show dead, dict and lambda functions 3584 if ((fp->uf_flags & FC_DEAD) || (fp->uf_flags & FC_DICT) 3585 || STRNCMP(fp->uf_name, "<lambda>", 8) == 0) 3586 return (char_u *)""; 3587 3588 if (STRLEN(fp->uf_name) + 4 >= IOSIZE) 3589 return fp->uf_name; // prevents overflow 3590 3591 cat_func_name(IObuff, fp); 3592 if (xp->xp_context != EXPAND_USER_FUNC) 3593 { 3594 STRCAT(IObuff, "("); 3595 if (!has_varargs(fp) && fp->uf_args.ga_len == 0) 3596 STRCAT(IObuff, ")"); 3597 } 3598 return IObuff; 3599 } 3600 return NULL; 3601 } 3602 3603 /* 3604 * ":delfunction {name}" 3605 */ 3606 void 3607 ex_delfunction(exarg_T *eap) 3608 { 3609 ufunc_T *fp = NULL; 3610 char_u *p; 3611 char_u *name; 3612 funcdict_T fudi; 3613 int is_global = FALSE; 3614 3615 p = eap->arg; 3616 name = trans_function_name(&p, &is_global, eap->skip, 0, &fudi, NULL); 3617 vim_free(fudi.fd_newkey); 3618 if (name == NULL) 3619 { 3620 if (fudi.fd_dict != NULL && !eap->skip) 3621 emsg(_(e_funcref)); 3622 return; 3623 } 3624 if (!ends_excmd(*skipwhite(p))) 3625 { 3626 vim_free(name); 3627 emsg(_(e_trailing)); 3628 return; 3629 } 3630 eap->nextcmd = check_nextcmd(p); 3631 if (eap->nextcmd != NULL) 3632 *p = NUL; 3633 3634 if (!eap->skip) 3635 fp = find_func(name, is_global, NULL); 3636 vim_free(name); 3637 3638 if (!eap->skip) 3639 { 3640 if (fp == NULL) 3641 { 3642 if (!eap->forceit) 3643 semsg(_(e_nofunc), eap->arg); 3644 return; 3645 } 3646 if (fp->uf_calls > 0) 3647 { 3648 semsg(_("E131: Cannot delete function %s: It is in use"), eap->arg); 3649 return; 3650 } 3651 if (fp->uf_flags & FC_VIM9) 3652 { 3653 semsg(_("E1084: Cannot delete Vim9 script function %s"), eap->arg); 3654 return; 3655 } 3656 3657 if (fudi.fd_dict != NULL) 3658 { 3659 // Delete the dict item that refers to the function, it will 3660 // invoke func_unref() and possibly delete the function. 3661 dictitem_remove(fudi.fd_dict, fudi.fd_di); 3662 } 3663 else 3664 { 3665 // A normal function (not a numbered function or lambda) has a 3666 // refcount of 1 for the entry in the hashtable. When deleting 3667 // it and the refcount is more than one, it should be kept. 3668 // A numbered function and lambda should be kept if the refcount is 3669 // one or more. 3670 if (fp->uf_refcount > (func_name_refcount(fp->uf_name) ? 0 : 1)) 3671 { 3672 // Function is still referenced somewhere. Don't free it but 3673 // do remove it from the hashtable. 3674 if (func_remove(fp)) 3675 fp->uf_refcount--; 3676 fp->uf_flags |= FC_DELETED; 3677 } 3678 else 3679 func_clear_free(fp, FALSE); 3680 } 3681 } 3682 } 3683 3684 /* 3685 * Unreference a Function: decrement the reference count and free it when it 3686 * becomes zero. 3687 */ 3688 void 3689 func_unref(char_u *name) 3690 { 3691 ufunc_T *fp = NULL; 3692 3693 if (name == NULL || !func_name_refcount(name)) 3694 return; 3695 fp = find_func(name, FALSE, NULL); 3696 if (fp == NULL && isdigit(*name)) 3697 { 3698 #ifdef EXITFREE 3699 if (!entered_free_all_mem) 3700 #endif 3701 internal_error("func_unref()"); 3702 } 3703 if (fp != NULL && --fp->uf_refcount <= 0) 3704 { 3705 // Only delete it when it's not being used. Otherwise it's done 3706 // when "uf_calls" becomes zero. 3707 if (fp->uf_calls == 0) 3708 func_clear_free(fp, FALSE); 3709 } 3710 } 3711 3712 /* 3713 * Unreference a Function: decrement the reference count and free it when it 3714 * becomes zero. 3715 */ 3716 void 3717 func_ptr_unref(ufunc_T *fp) 3718 { 3719 if (fp != NULL && --fp->uf_refcount <= 0) 3720 { 3721 // Only delete it when it's not being used. Otherwise it's done 3722 // when "uf_calls" becomes zero. 3723 if (fp->uf_calls == 0) 3724 func_clear_free(fp, FALSE); 3725 } 3726 } 3727 3728 /* 3729 * Count a reference to a Function. 3730 */ 3731 void 3732 func_ref(char_u *name) 3733 { 3734 ufunc_T *fp; 3735 3736 if (name == NULL || !func_name_refcount(name)) 3737 return; 3738 fp = find_func(name, FALSE, NULL); 3739 if (fp != NULL) 3740 ++fp->uf_refcount; 3741 else if (isdigit(*name)) 3742 // Only give an error for a numbered function. 3743 // Fail silently, when named or lambda function isn't found. 3744 internal_error("func_ref()"); 3745 } 3746 3747 /* 3748 * Count a reference to a Function. 3749 */ 3750 void 3751 func_ptr_ref(ufunc_T *fp) 3752 { 3753 if (fp != NULL) 3754 ++fp->uf_refcount; 3755 } 3756 3757 /* 3758 * Return TRUE if items in "fc" do not have "copyID". That means they are not 3759 * referenced from anywhere that is in use. 3760 */ 3761 static int 3762 can_free_funccal(funccall_T *fc, int copyID) 3763 { 3764 return (fc->l_varlist.lv_copyID != copyID 3765 && fc->l_vars.dv_copyID != copyID 3766 && fc->l_avars.dv_copyID != copyID 3767 && fc->fc_copyID != copyID); 3768 } 3769 3770 /* 3771 * ":return [expr]" 3772 */ 3773 void 3774 ex_return(exarg_T *eap) 3775 { 3776 char_u *arg = eap->arg; 3777 typval_T rettv; 3778 int returning = FALSE; 3779 evalarg_T evalarg; 3780 3781 if (current_funccal == NULL) 3782 { 3783 emsg(_("E133: :return not inside a function")); 3784 return; 3785 } 3786 3787 CLEAR_FIELD(evalarg); 3788 evalarg.eval_flags = eap->skip ? 0 : EVAL_EVALUATE; 3789 3790 if (eap->skip) 3791 ++emsg_skip; 3792 3793 eap->nextcmd = NULL; 3794 if ((*arg != NUL && *arg != '|' && *arg != '\n') 3795 && eval0(arg, &rettv, eap, &evalarg) != FAIL) 3796 { 3797 if (!eap->skip) 3798 returning = do_return(eap, FALSE, TRUE, &rettv); 3799 else 3800 clear_tv(&rettv); 3801 } 3802 // It's safer to return also on error. 3803 else if (!eap->skip) 3804 { 3805 // In return statement, cause_abort should be force_abort. 3806 update_force_abort(); 3807 3808 /* 3809 * Return unless the expression evaluation has been cancelled due to an 3810 * aborting error, an interrupt, or an exception. 3811 */ 3812 if (!aborting()) 3813 returning = do_return(eap, FALSE, TRUE, NULL); 3814 } 3815 3816 // When skipping or the return gets pending, advance to the next command 3817 // in this line (!returning). Otherwise, ignore the rest of the line. 3818 // Following lines will be ignored by get_func_line(). 3819 if (returning) 3820 eap->nextcmd = NULL; 3821 else if (eap->nextcmd == NULL) // no argument 3822 eap->nextcmd = check_nextcmd(arg); 3823 3824 if (eap->skip) 3825 --emsg_skip; 3826 clear_evalarg(&evalarg, eap); 3827 } 3828 3829 /* 3830 * ":1,25call func(arg1, arg2)" function call. 3831 */ 3832 void 3833 ex_call(exarg_T *eap) 3834 { 3835 char_u *arg = eap->arg; 3836 char_u *startarg; 3837 char_u *name; 3838 char_u *tofree; 3839 int len; 3840 typval_T rettv; 3841 linenr_T lnum; 3842 int doesrange; 3843 int failed = FALSE; 3844 funcdict_T fudi; 3845 partial_T *partial = NULL; 3846 evalarg_T evalarg; 3847 3848 fill_evalarg_from_eap(&evalarg, eap, eap->skip); 3849 if (eap->skip) 3850 { 3851 // trans_function_name() doesn't work well when skipping, use eval0() 3852 // instead to skip to any following command, e.g. for: 3853 // :if 0 | call dict.foo().bar() | endif 3854 ++emsg_skip; 3855 if (eval0(eap->arg, &rettv, eap, &evalarg) != FAIL) 3856 clear_tv(&rettv); 3857 --emsg_skip; 3858 clear_evalarg(&evalarg, eap); 3859 return; 3860 } 3861 3862 tofree = trans_function_name(&arg, NULL, eap->skip, 3863 TFN_INT, &fudi, &partial); 3864 if (fudi.fd_newkey != NULL) 3865 { 3866 // Still need to give an error message for missing key. 3867 semsg(_(e_dictkey), fudi.fd_newkey); 3868 vim_free(fudi.fd_newkey); 3869 } 3870 if (tofree == NULL) 3871 return; 3872 3873 // Increase refcount on dictionary, it could get deleted when evaluating 3874 // the arguments. 3875 if (fudi.fd_dict != NULL) 3876 ++fudi.fd_dict->dv_refcount; 3877 3878 // If it is the name of a variable of type VAR_FUNC or VAR_PARTIAL use its 3879 // contents. For VAR_PARTIAL get its partial, unless we already have one 3880 // from trans_function_name(). 3881 len = (int)STRLEN(tofree); 3882 name = deref_func_name(tofree, &len, 3883 partial != NULL ? NULL : &partial, FALSE); 3884 3885 // Skip white space to allow ":call func ()". Not good, but required for 3886 // backward compatibility. 3887 startarg = skipwhite(arg); 3888 rettv.v_type = VAR_UNKNOWN; // clear_tv() uses this 3889 3890 if (*startarg != '(') 3891 { 3892 semsg(_(e_missing_paren), eap->arg); 3893 goto end; 3894 } 3895 3896 /* 3897 * When skipping, evaluate the function once, to find the end of the 3898 * arguments. 3899 * When the function takes a range, this is discovered after the first 3900 * call, and the loop is broken. 3901 */ 3902 if (eap->skip) 3903 { 3904 ++emsg_skip; 3905 lnum = eap->line2; // do it once, also with an invalid range 3906 } 3907 else 3908 lnum = eap->line1; 3909 for ( ; lnum <= eap->line2; ++lnum) 3910 { 3911 funcexe_T funcexe; 3912 3913 if (!eap->skip && eap->addr_count > 0) 3914 { 3915 if (lnum > curbuf->b_ml.ml_line_count) 3916 { 3917 // If the function deleted lines or switched to another buffer 3918 // the line number may become invalid. 3919 emsg(_(e_invrange)); 3920 break; 3921 } 3922 curwin->w_cursor.lnum = lnum; 3923 curwin->w_cursor.col = 0; 3924 curwin->w_cursor.coladd = 0; 3925 } 3926 arg = startarg; 3927 3928 CLEAR_FIELD(funcexe); 3929 funcexe.firstline = eap->line1; 3930 funcexe.lastline = eap->line2; 3931 funcexe.doesrange = &doesrange; 3932 funcexe.evaluate = !eap->skip; 3933 funcexe.partial = partial; 3934 funcexe.selfdict = fudi.fd_dict; 3935 if (get_func_tv(name, -1, &rettv, &arg, &evalarg, &funcexe) == FAIL) 3936 { 3937 failed = TRUE; 3938 break; 3939 } 3940 if (has_watchexpr()) 3941 dbg_check_breakpoint(eap); 3942 3943 // Handle a function returning a Funcref, Dictionary or List. 3944 if (handle_subscript(&arg, &rettv, 3945 eap->skip ? NULL : &EVALARG_EVALUATE, TRUE) == FAIL) 3946 { 3947 failed = TRUE; 3948 break; 3949 } 3950 3951 clear_tv(&rettv); 3952 if (doesrange || eap->skip) 3953 break; 3954 3955 // Stop when immediately aborting on error, or when an interrupt 3956 // occurred or an exception was thrown but not caught. 3957 // get_func_tv() returned OK, so that the check for trailing 3958 // characters below is executed. 3959 if (aborting()) 3960 break; 3961 } 3962 if (eap->skip) 3963 --emsg_skip; 3964 clear_evalarg(&evalarg, eap); 3965 3966 // When inside :try we need to check for following "| catch". 3967 if (!failed || eap->cstack->cs_trylevel > 0) 3968 { 3969 // Check for trailing illegal characters and a following command. 3970 if (!ends_excmd2(eap->arg, arg)) 3971 { 3972 if (!failed) 3973 { 3974 emsg_severe = TRUE; 3975 emsg(_(e_trailing)); 3976 } 3977 } 3978 else 3979 eap->nextcmd = check_nextcmd(arg); 3980 } 3981 3982 end: 3983 dict_unref(fudi.fd_dict); 3984 vim_free(tofree); 3985 } 3986 3987 /* 3988 * Return from a function. Possibly makes the return pending. Also called 3989 * for a pending return at the ":endtry" or after returning from an extra 3990 * do_cmdline(). "reanimate" is used in the latter case. "is_cmd" is set 3991 * when called due to a ":return" command. "rettv" may point to a typval_T 3992 * with the return rettv. Returns TRUE when the return can be carried out, 3993 * FALSE when the return gets pending. 3994 */ 3995 int 3996 do_return( 3997 exarg_T *eap, 3998 int reanimate, 3999 int is_cmd, 4000 void *rettv) 4001 { 4002 int idx; 4003 cstack_T *cstack = eap->cstack; 4004 4005 if (reanimate) 4006 // Undo the return. 4007 current_funccal->returned = FALSE; 4008 4009 /* 4010 * Cleanup (and inactivate) conditionals, but stop when a try conditional 4011 * not in its finally clause (which then is to be executed next) is found. 4012 * In this case, make the ":return" pending for execution at the ":endtry". 4013 * Otherwise, return normally. 4014 */ 4015 idx = cleanup_conditionals(eap->cstack, 0, TRUE); 4016 if (idx >= 0) 4017 { 4018 cstack->cs_pending[idx] = CSTP_RETURN; 4019 4020 if (!is_cmd && !reanimate) 4021 // A pending return again gets pending. "rettv" points to an 4022 // allocated variable with the rettv of the original ":return"'s 4023 // argument if present or is NULL else. 4024 cstack->cs_rettv[idx] = rettv; 4025 else 4026 { 4027 // When undoing a return in order to make it pending, get the stored 4028 // return rettv. 4029 if (reanimate) 4030 rettv = current_funccal->rettv; 4031 4032 if (rettv != NULL) 4033 { 4034 // Store the value of the pending return. 4035 if ((cstack->cs_rettv[idx] = alloc_tv()) != NULL) 4036 *(typval_T *)cstack->cs_rettv[idx] = *(typval_T *)rettv; 4037 else 4038 emsg(_(e_outofmem)); 4039 } 4040 else 4041 cstack->cs_rettv[idx] = NULL; 4042 4043 if (reanimate) 4044 { 4045 // The pending return value could be overwritten by a ":return" 4046 // without argument in a finally clause; reset the default 4047 // return value. 4048 current_funccal->rettv->v_type = VAR_NUMBER; 4049 current_funccal->rettv->vval.v_number = 0; 4050 } 4051 } 4052 report_make_pending(CSTP_RETURN, rettv); 4053 } 4054 else 4055 { 4056 current_funccal->returned = TRUE; 4057 4058 // If the return is carried out now, store the return value. For 4059 // a return immediately after reanimation, the value is already 4060 // there. 4061 if (!reanimate && rettv != NULL) 4062 { 4063 clear_tv(current_funccal->rettv); 4064 *current_funccal->rettv = *(typval_T *)rettv; 4065 if (!is_cmd) 4066 vim_free(rettv); 4067 } 4068 } 4069 4070 return idx < 0; 4071 } 4072 4073 /* 4074 * Free the variable with a pending return value. 4075 */ 4076 void 4077 discard_pending_return(void *rettv) 4078 { 4079 free_tv((typval_T *)rettv); 4080 } 4081 4082 /* 4083 * Generate a return command for producing the value of "rettv". The result 4084 * is an allocated string. Used by report_pending() for verbose messages. 4085 */ 4086 char_u * 4087 get_return_cmd(void *rettv) 4088 { 4089 char_u *s = NULL; 4090 char_u *tofree = NULL; 4091 char_u numbuf[NUMBUFLEN]; 4092 4093 if (rettv != NULL) 4094 s = echo_string((typval_T *)rettv, &tofree, numbuf, 0); 4095 if (s == NULL) 4096 s = (char_u *)""; 4097 4098 STRCPY(IObuff, ":return "); 4099 STRNCPY(IObuff + 8, s, IOSIZE - 8); 4100 if (STRLEN(s) + 8 >= IOSIZE) 4101 STRCPY(IObuff + IOSIZE - 4, "..."); 4102 vim_free(tofree); 4103 return vim_strsave(IObuff); 4104 } 4105 4106 /* 4107 * Get next function line. 4108 * Called by do_cmdline() to get the next line. 4109 * Returns allocated string, or NULL for end of function. 4110 */ 4111 char_u * 4112 get_func_line( 4113 int c UNUSED, 4114 void *cookie, 4115 int indent UNUSED, 4116 int do_concat UNUSED) 4117 { 4118 funccall_T *fcp = (funccall_T *)cookie; 4119 ufunc_T *fp = fcp->func; 4120 char_u *retval; 4121 garray_T *gap; // growarray with function lines 4122 4123 // If breakpoints have been added/deleted need to check for it. 4124 if (fcp->dbg_tick != debug_tick) 4125 { 4126 fcp->breakpoint = dbg_find_breakpoint(FALSE, fp->uf_name, 4127 SOURCING_LNUM); 4128 fcp->dbg_tick = debug_tick; 4129 } 4130 #ifdef FEAT_PROFILE 4131 if (do_profiling == PROF_YES) 4132 func_line_end(cookie); 4133 #endif 4134 4135 gap = &fp->uf_lines; 4136 if (((fp->uf_flags & FC_ABORT) && did_emsg && !aborted_in_try()) 4137 || fcp->returned) 4138 retval = NULL; 4139 else 4140 { 4141 // Skip NULL lines (continuation lines). 4142 while (fcp->linenr < gap->ga_len 4143 && ((char_u **)(gap->ga_data))[fcp->linenr] == NULL) 4144 ++fcp->linenr; 4145 if (fcp->linenr >= gap->ga_len) 4146 retval = NULL; 4147 else 4148 { 4149 retval = vim_strsave(((char_u **)(gap->ga_data))[fcp->linenr++]); 4150 SOURCING_LNUM = fcp->linenr; 4151 #ifdef FEAT_PROFILE 4152 if (do_profiling == PROF_YES) 4153 func_line_start(cookie); 4154 #endif 4155 } 4156 } 4157 4158 // Did we encounter a breakpoint? 4159 if (fcp->breakpoint != 0 && fcp->breakpoint <= SOURCING_LNUM) 4160 { 4161 dbg_breakpoint(fp->uf_name, SOURCING_LNUM); 4162 // Find next breakpoint. 4163 fcp->breakpoint = dbg_find_breakpoint(FALSE, fp->uf_name, 4164 SOURCING_LNUM); 4165 fcp->dbg_tick = debug_tick; 4166 } 4167 4168 return retval; 4169 } 4170 4171 /* 4172 * Return TRUE if the currently active function should be ended, because a 4173 * return was encountered or an error occurred. Used inside a ":while". 4174 */ 4175 int 4176 func_has_ended(void *cookie) 4177 { 4178 funccall_T *fcp = (funccall_T *)cookie; 4179 4180 // Ignore the "abort" flag if the abortion behavior has been changed due to 4181 // an error inside a try conditional. 4182 return (((fcp->func->uf_flags & FC_ABORT) && did_emsg && !aborted_in_try()) 4183 || fcp->returned); 4184 } 4185 4186 /* 4187 * return TRUE if cookie indicates a function which "abort"s on errors. 4188 */ 4189 int 4190 func_has_abort( 4191 void *cookie) 4192 { 4193 return ((funccall_T *)cookie)->func->uf_flags & FC_ABORT; 4194 } 4195 4196 4197 /* 4198 * Turn "dict.Func" into a partial for "Func" bound to "dict". 4199 * Don't do this when "Func" is already a partial that was bound 4200 * explicitly (pt_auto is FALSE). 4201 * Changes "rettv" in-place. 4202 * Returns the updated "selfdict_in". 4203 */ 4204 dict_T * 4205 make_partial(dict_T *selfdict_in, typval_T *rettv) 4206 { 4207 char_u *fname; 4208 char_u *tofree = NULL; 4209 ufunc_T *fp; 4210 char_u fname_buf[FLEN_FIXED + 1]; 4211 int error; 4212 dict_T *selfdict = selfdict_in; 4213 4214 if (rettv->v_type == VAR_PARTIAL && rettv->vval.v_partial->pt_func != NULL) 4215 fp = rettv->vval.v_partial->pt_func; 4216 else 4217 { 4218 fname = rettv->v_type == VAR_FUNC ? rettv->vval.v_string 4219 : rettv->vval.v_partial->pt_name; 4220 // Translate "s:func" to the stored function name. 4221 fname = fname_trans_sid(fname, fname_buf, &tofree, &error); 4222 fp = find_func(fname, FALSE, NULL); 4223 vim_free(tofree); 4224 } 4225 4226 if (fp != NULL && (fp->uf_flags & FC_DICT)) 4227 { 4228 partial_T *pt = ALLOC_CLEAR_ONE(partial_T); 4229 4230 if (pt != NULL) 4231 { 4232 pt->pt_refcount = 1; 4233 pt->pt_dict = selfdict; 4234 pt->pt_auto = TRUE; 4235 selfdict = NULL; 4236 if (rettv->v_type == VAR_FUNC) 4237 { 4238 // Just a function: Take over the function name and use 4239 // selfdict. 4240 pt->pt_name = rettv->vval.v_string; 4241 } 4242 else 4243 { 4244 partial_T *ret_pt = rettv->vval.v_partial; 4245 int i; 4246 4247 // Partial: copy the function name, use selfdict and copy 4248 // args. Can't take over name or args, the partial might 4249 // be referenced elsewhere. 4250 if (ret_pt->pt_name != NULL) 4251 { 4252 pt->pt_name = vim_strsave(ret_pt->pt_name); 4253 func_ref(pt->pt_name); 4254 } 4255 else 4256 { 4257 pt->pt_func = ret_pt->pt_func; 4258 func_ptr_ref(pt->pt_func); 4259 } 4260 if (ret_pt->pt_argc > 0) 4261 { 4262 pt->pt_argv = ALLOC_MULT(typval_T, ret_pt->pt_argc); 4263 if (pt->pt_argv == NULL) 4264 // out of memory: drop the arguments 4265 pt->pt_argc = 0; 4266 else 4267 { 4268 pt->pt_argc = ret_pt->pt_argc; 4269 for (i = 0; i < pt->pt_argc; i++) 4270 copy_tv(&ret_pt->pt_argv[i], &pt->pt_argv[i]); 4271 } 4272 } 4273 partial_unref(ret_pt); 4274 } 4275 rettv->v_type = VAR_PARTIAL; 4276 rettv->vval.v_partial = pt; 4277 } 4278 } 4279 return selfdict; 4280 } 4281 4282 /* 4283 * Return the name of the executed function. 4284 */ 4285 char_u * 4286 func_name(void *cookie) 4287 { 4288 return ((funccall_T *)cookie)->func->uf_name; 4289 } 4290 4291 /* 4292 * Return the address holding the next breakpoint line for a funccall cookie. 4293 */ 4294 linenr_T * 4295 func_breakpoint(void *cookie) 4296 { 4297 return &((funccall_T *)cookie)->breakpoint; 4298 } 4299 4300 /* 4301 * Return the address holding the debug tick for a funccall cookie. 4302 */ 4303 int * 4304 func_dbg_tick(void *cookie) 4305 { 4306 return &((funccall_T *)cookie)->dbg_tick; 4307 } 4308 4309 /* 4310 * Return the nesting level for a funccall cookie. 4311 */ 4312 int 4313 func_level(void *cookie) 4314 { 4315 return ((funccall_T *)cookie)->level; 4316 } 4317 4318 /* 4319 * Return TRUE when a function was ended by a ":return" command. 4320 */ 4321 int 4322 current_func_returned(void) 4323 { 4324 return current_funccal->returned; 4325 } 4326 4327 int 4328 free_unref_funccal(int copyID, int testing) 4329 { 4330 int did_free = FALSE; 4331 int did_free_funccal = FALSE; 4332 funccall_T *fc, **pfc; 4333 4334 for (pfc = &previous_funccal; *pfc != NULL; ) 4335 { 4336 if (can_free_funccal(*pfc, copyID)) 4337 { 4338 fc = *pfc; 4339 *pfc = fc->caller; 4340 free_funccal_contents(fc); 4341 did_free = TRUE; 4342 did_free_funccal = TRUE; 4343 } 4344 else 4345 pfc = &(*pfc)->caller; 4346 } 4347 if (did_free_funccal) 4348 // When a funccal was freed some more items might be garbage 4349 // collected, so run again. 4350 (void)garbage_collect(testing); 4351 4352 return did_free; 4353 } 4354 4355 /* 4356 * Get function call environment based on backtrace debug level 4357 */ 4358 static funccall_T * 4359 get_funccal(void) 4360 { 4361 int i; 4362 funccall_T *funccal; 4363 funccall_T *temp_funccal; 4364 4365 funccal = current_funccal; 4366 if (debug_backtrace_level > 0) 4367 { 4368 for (i = 0; i < debug_backtrace_level; i++) 4369 { 4370 temp_funccal = funccal->caller; 4371 if (temp_funccal) 4372 funccal = temp_funccal; 4373 else 4374 // backtrace level overflow. reset to max 4375 debug_backtrace_level = i; 4376 } 4377 } 4378 return funccal; 4379 } 4380 4381 /* 4382 * Return the hashtable used for local variables in the current funccal. 4383 * Return NULL if there is no current funccal. 4384 */ 4385 hashtab_T * 4386 get_funccal_local_ht() 4387 { 4388 if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0) 4389 return NULL; 4390 return &get_funccal()->l_vars.dv_hashtab; 4391 } 4392 4393 /* 4394 * Return the l: scope variable. 4395 * Return NULL if there is no current funccal. 4396 */ 4397 dictitem_T * 4398 get_funccal_local_var() 4399 { 4400 if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0) 4401 return NULL; 4402 return &get_funccal()->l_vars_var; 4403 } 4404 4405 /* 4406 * Return the hashtable used for argument in the current funccal. 4407 * Return NULL if there is no current funccal. 4408 */ 4409 hashtab_T * 4410 get_funccal_args_ht() 4411 { 4412 if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0) 4413 return NULL; 4414 return &get_funccal()->l_avars.dv_hashtab; 4415 } 4416 4417 /* 4418 * Return the a: scope variable. 4419 * Return NULL if there is no current funccal. 4420 */ 4421 dictitem_T * 4422 get_funccal_args_var() 4423 { 4424 if (current_funccal == NULL || current_funccal->l_vars.dv_refcount == 0) 4425 return NULL; 4426 return &get_funccal()->l_avars_var; 4427 } 4428 4429 /* 4430 * List function variables, if there is a function. 4431 */ 4432 void 4433 list_func_vars(int *first) 4434 { 4435 if (current_funccal != NULL && current_funccal->l_vars.dv_refcount > 0) 4436 list_hashtable_vars(¤t_funccal->l_vars.dv_hashtab, 4437 "l:", FALSE, first); 4438 } 4439 4440 /* 4441 * If "ht" is the hashtable for local variables in the current funccal, return 4442 * the dict that contains it. 4443 * Otherwise return NULL. 4444 */ 4445 dict_T * 4446 get_current_funccal_dict(hashtab_T *ht) 4447 { 4448 if (current_funccal != NULL 4449 && ht == ¤t_funccal->l_vars.dv_hashtab) 4450 return ¤t_funccal->l_vars; 4451 return NULL; 4452 } 4453 4454 /* 4455 * Search hashitem in parent scope. 4456 */ 4457 hashitem_T * 4458 find_hi_in_scoped_ht(char_u *name, hashtab_T **pht) 4459 { 4460 funccall_T *old_current_funccal = current_funccal; 4461 hashtab_T *ht; 4462 hashitem_T *hi = NULL; 4463 char_u *varname; 4464 4465 if (current_funccal == NULL || current_funccal->func->uf_scoped == NULL) 4466 return NULL; 4467 4468 // Search in parent scope, which can be referenced from a lambda. 4469 current_funccal = current_funccal->func->uf_scoped; 4470 while (current_funccal != NULL) 4471 { 4472 ht = find_var_ht(name, &varname); 4473 if (ht != NULL && *varname != NUL) 4474 { 4475 hi = hash_find(ht, varname); 4476 if (!HASHITEM_EMPTY(hi)) 4477 { 4478 *pht = ht; 4479 break; 4480 } 4481 } 4482 if (current_funccal == current_funccal->func->uf_scoped) 4483 break; 4484 current_funccal = current_funccal->func->uf_scoped; 4485 } 4486 current_funccal = old_current_funccal; 4487 4488 return hi; 4489 } 4490 4491 /* 4492 * Search variable in parent scope. 4493 */ 4494 dictitem_T * 4495 find_var_in_scoped_ht(char_u *name, int no_autoload) 4496 { 4497 dictitem_T *v = NULL; 4498 funccall_T *old_current_funccal = current_funccal; 4499 hashtab_T *ht; 4500 char_u *varname; 4501 4502 if (current_funccal == NULL || current_funccal->func->uf_scoped == NULL) 4503 return NULL; 4504 4505 // Search in parent scope which is possible to reference from lambda 4506 current_funccal = current_funccal->func->uf_scoped; 4507 while (current_funccal) 4508 { 4509 ht = find_var_ht(name, &varname); 4510 if (ht != NULL && *varname != NUL) 4511 { 4512 v = find_var_in_ht(ht, *name, varname, no_autoload); 4513 if (v != NULL) 4514 break; 4515 } 4516 if (current_funccal == current_funccal->func->uf_scoped) 4517 break; 4518 current_funccal = current_funccal->func->uf_scoped; 4519 } 4520 current_funccal = old_current_funccal; 4521 4522 return v; 4523 } 4524 4525 /* 4526 * Set "copyID + 1" in previous_funccal and callers. 4527 */ 4528 int 4529 set_ref_in_previous_funccal(int copyID) 4530 { 4531 int abort = FALSE; 4532 funccall_T *fc; 4533 4534 for (fc = previous_funccal; !abort && fc != NULL; fc = fc->caller) 4535 { 4536 fc->fc_copyID = copyID + 1; 4537 abort = abort 4538 || set_ref_in_ht(&fc->l_vars.dv_hashtab, copyID + 1, NULL) 4539 || set_ref_in_ht(&fc->l_avars.dv_hashtab, copyID + 1, NULL) 4540 || set_ref_in_list_items(&fc->l_varlist, copyID + 1, NULL); 4541 } 4542 return abort; 4543 } 4544 4545 static int 4546 set_ref_in_funccal(funccall_T *fc, int copyID) 4547 { 4548 int abort = FALSE; 4549 4550 if (fc->fc_copyID != copyID) 4551 { 4552 fc->fc_copyID = copyID; 4553 abort = abort 4554 || set_ref_in_ht(&fc->l_vars.dv_hashtab, copyID, NULL) 4555 || set_ref_in_ht(&fc->l_avars.dv_hashtab, copyID, NULL) 4556 || set_ref_in_list_items(&fc->l_varlist, copyID, NULL) 4557 || set_ref_in_func(NULL, fc->func, copyID); 4558 } 4559 return abort; 4560 } 4561 4562 /* 4563 * Set "copyID" in all local vars and arguments in the call stack. 4564 */ 4565 int 4566 set_ref_in_call_stack(int copyID) 4567 { 4568 int abort = FALSE; 4569 funccall_T *fc; 4570 funccal_entry_T *entry; 4571 4572 for (fc = current_funccal; !abort && fc != NULL; fc = fc->caller) 4573 abort = abort || set_ref_in_funccal(fc, copyID); 4574 4575 // Also go through the funccal_stack. 4576 for (entry = funccal_stack; !abort && entry != NULL; entry = entry->next) 4577 for (fc = entry->top_funccal; !abort && fc != NULL; fc = fc->caller) 4578 abort = abort || set_ref_in_funccal(fc, copyID); 4579 4580 return abort; 4581 } 4582 4583 /* 4584 * Set "copyID" in all functions available by name. 4585 */ 4586 int 4587 set_ref_in_functions(int copyID) 4588 { 4589 int todo; 4590 hashitem_T *hi = NULL; 4591 int abort = FALSE; 4592 ufunc_T *fp; 4593 4594 todo = (int)func_hashtab.ht_used; 4595 for (hi = func_hashtab.ht_array; todo > 0 && !got_int; ++hi) 4596 { 4597 if (!HASHITEM_EMPTY(hi)) 4598 { 4599 --todo; 4600 fp = HI2UF(hi); 4601 if (!func_name_refcount(fp->uf_name)) 4602 abort = abort || set_ref_in_func(NULL, fp, copyID); 4603 } 4604 } 4605 return abort; 4606 } 4607 4608 /* 4609 * Set "copyID" in all function arguments. 4610 */ 4611 int 4612 set_ref_in_func_args(int copyID) 4613 { 4614 int i; 4615 int abort = FALSE; 4616 4617 for (i = 0; i < funcargs.ga_len; ++i) 4618 abort = abort || set_ref_in_item(((typval_T **)funcargs.ga_data)[i], 4619 copyID, NULL, NULL); 4620 return abort; 4621 } 4622 4623 /* 4624 * Mark all lists and dicts referenced through function "name" with "copyID". 4625 * Returns TRUE if setting references failed somehow. 4626 */ 4627 int 4628 set_ref_in_func(char_u *name, ufunc_T *fp_in, int copyID) 4629 { 4630 ufunc_T *fp = fp_in; 4631 funccall_T *fc; 4632 int error = FCERR_NONE; 4633 char_u fname_buf[FLEN_FIXED + 1]; 4634 char_u *tofree = NULL; 4635 char_u *fname; 4636 int abort = FALSE; 4637 4638 if (name == NULL && fp_in == NULL) 4639 return FALSE; 4640 4641 if (fp_in == NULL) 4642 { 4643 fname = fname_trans_sid(name, fname_buf, &tofree, &error); 4644 fp = find_func(fname, FALSE, NULL); 4645 } 4646 if (fp != NULL) 4647 { 4648 for (fc = fp->uf_scoped; fc != NULL; fc = fc->func->uf_scoped) 4649 abort = abort || set_ref_in_funccal(fc, copyID); 4650 } 4651 4652 vim_free(tofree); 4653 return abort; 4654 } 4655 4656 #endif // FEAT_EVAL 4657