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 * getchar.c 12 * 13 * functions related with getting a character from the user/mapping/redo/... 14 * 15 * manipulations with redo buffer and stuff buffer 16 * mappings and abbreviations 17 */ 18 19 #include "vim.h" 20 21 /* 22 * These buffers are used for storing: 23 * - stuffed characters: A command that is translated into another command. 24 * - redo characters: will redo the last change. 25 * - recorded characters: for the "q" command. 26 * 27 * The bytes are stored like in the typeahead buffer: 28 * - K_SPECIAL introduces a special key (two more bytes follow). A literal 29 * K_SPECIAL is stored as K_SPECIAL KS_SPECIAL KE_FILLER. 30 * - CSI introduces a GUI termcap code (also when gui.in_use is FALSE, 31 * otherwise switching the GUI on would make mappings invalid). 32 * A literal CSI is stored as CSI KS_EXTRA KE_CSI. 33 * These translations are also done on multi-byte characters! 34 * 35 * Escaping CSI bytes is done by the system-specific input functions, called 36 * by ui_inchar(). 37 * Escaping K_SPECIAL is done by inchar(). 38 * Un-escaping is done by vgetc(). 39 */ 40 41 #define MINIMAL_SIZE 20 // minimal size for b_str 42 43 static buffheader_T redobuff = {{NULL, {NUL}}, NULL, 0, 0}; 44 static buffheader_T old_redobuff = {{NULL, {NUL}}, NULL, 0, 0}; 45 static buffheader_T recordbuff = {{NULL, {NUL}}, NULL, 0, 0}; 46 47 static int typeahead_char = 0; // typeahead char that's not flushed 48 49 /* 50 * when block_redo is TRUE redo buffer will not be changed 51 * used by edit() to repeat insertions and 'V' command for redoing 52 */ 53 static int block_redo = FALSE; 54 55 static int KeyNoremap = 0; // remapping flags 56 57 /* 58 * Variables used by vgetorpeek() and flush_buffers(). 59 * 60 * typebuf.tb_buf[] contains all characters that are not consumed yet. 61 * typebuf.tb_buf[typebuf.tb_off] is the first valid character. 62 * typebuf.tb_buf[typebuf.tb_off + typebuf.tb_len - 1] is the last valid char. 63 * typebuf.tb_buf[typebuf.tb_off + typebuf.tb_len] must be NUL. 64 * The head of the buffer may contain the result of mappings, abbreviations 65 * and @a commands. The length of this part is typebuf.tb_maplen. 66 * typebuf.tb_silent is the part where <silent> applies. 67 * After the head are characters that come from the terminal. 68 * typebuf.tb_no_abbr_cnt is the number of characters in typebuf.tb_buf that 69 * should not be considered for abbreviations. 70 * Some parts of typebuf.tb_buf may not be mapped. These parts are remembered 71 * in typebuf.tb_noremap[], which is the same length as typebuf.tb_buf and 72 * contains RM_NONE for the characters that are not to be remapped. 73 * typebuf.tb_noremap[typebuf.tb_off] is the first valid flag. 74 * (typebuf has been put in globals.h, because check_termcode() needs it). 75 */ 76 #define RM_YES 0 // tb_noremap: remap 77 #define RM_NONE 1 // tb_noremap: don't remap 78 #define RM_SCRIPT 2 // tb_noremap: remap local script mappings 79 #define RM_ABBR 4 // tb_noremap: don't remap, do abbrev. 80 81 // typebuf.tb_buf has three parts: room in front (for result of mappings), the 82 // middle for typeahead and room for new characters (which needs to be 3 * 83 // MAXMAPLEN) for the Amiga). 84 #define TYPELEN_INIT (5 * (MAXMAPLEN + 3)) 85 static char_u typebuf_init[TYPELEN_INIT]; // initial typebuf.tb_buf 86 static char_u noremapbuf_init[TYPELEN_INIT]; // initial typebuf.tb_noremap 87 88 static int last_recorded_len = 0; // number of last recorded chars 89 90 static int read_readbuf(buffheader_T *buf, int advance); 91 static void init_typebuf(void); 92 static void may_sync_undo(void); 93 static void free_typebuf(void); 94 static void closescript(void); 95 static void updatescript(int c); 96 static int vgetorpeek(int); 97 static int inchar(char_u *buf, int maxlen, long wait_time); 98 99 /* 100 * Free and clear a buffer. 101 */ 102 static void 103 free_buff(buffheader_T *buf) 104 { 105 buffblock_T *p, *np; 106 107 for (p = buf->bh_first.b_next; p != NULL; p = np) 108 { 109 np = p->b_next; 110 vim_free(p); 111 } 112 buf->bh_first.b_next = NULL; 113 } 114 115 /* 116 * Return the contents of a buffer as a single string. 117 * K_SPECIAL and CSI in the returned string are escaped. 118 */ 119 static char_u * 120 get_buffcont( 121 buffheader_T *buffer, 122 int dozero) // count == zero is not an error 123 { 124 long_u count = 0; 125 char_u *p = NULL; 126 char_u *p2; 127 char_u *str; 128 buffblock_T *bp; 129 130 // compute the total length of the string 131 for (bp = buffer->bh_first.b_next; bp != NULL; bp = bp->b_next) 132 count += (long_u)STRLEN(bp->b_str); 133 134 if ((count || dozero) && (p = alloc(count + 1)) != NULL) 135 { 136 p2 = p; 137 for (bp = buffer->bh_first.b_next; bp != NULL; bp = bp->b_next) 138 for (str = bp->b_str; *str; ) 139 *p2++ = *str++; 140 *p2 = NUL; 141 } 142 return (p); 143 } 144 145 /* 146 * Return the contents of the record buffer as a single string 147 * and clear the record buffer. 148 * K_SPECIAL and CSI in the returned string are escaped. 149 */ 150 char_u * 151 get_recorded(void) 152 { 153 char_u *p; 154 size_t len; 155 156 p = get_buffcont(&recordbuff, TRUE); 157 free_buff(&recordbuff); 158 159 /* 160 * Remove the characters that were added the last time, these must be the 161 * (possibly mapped) characters that stopped the recording. 162 */ 163 len = STRLEN(p); 164 if ((int)len >= last_recorded_len) 165 { 166 len -= last_recorded_len; 167 p[len] = NUL; 168 } 169 170 /* 171 * When stopping recording from Insert mode with CTRL-O q, also remove the 172 * CTRL-O. 173 */ 174 if (len > 0 && restart_edit != 0 && p[len - 1] == Ctrl_O) 175 p[len - 1] = NUL; 176 177 return (p); 178 } 179 180 /* 181 * Return the contents of the redo buffer as a single string. 182 * K_SPECIAL and CSI in the returned string are escaped. 183 */ 184 char_u * 185 get_inserted(void) 186 { 187 return get_buffcont(&redobuff, FALSE); 188 } 189 190 /* 191 * Add string "s" after the current block of buffer "buf". 192 * K_SPECIAL and CSI should have been escaped already. 193 */ 194 static void 195 add_buff( 196 buffheader_T *buf, 197 char_u *s, 198 long slen) // length of "s" or -1 199 { 200 buffblock_T *p; 201 long_u len; 202 203 if (slen < 0) 204 slen = (long)STRLEN(s); 205 if (slen == 0) // don't add empty strings 206 return; 207 208 if (buf->bh_first.b_next == NULL) // first add to list 209 { 210 buf->bh_space = 0; 211 buf->bh_curr = &(buf->bh_first); 212 } 213 else if (buf->bh_curr == NULL) // buffer has already been read 214 { 215 iemsg(_("E222: Add to read buffer")); 216 return; 217 } 218 else if (buf->bh_index != 0) 219 mch_memmove(buf->bh_first.b_next->b_str, 220 buf->bh_first.b_next->b_str + buf->bh_index, 221 STRLEN(buf->bh_first.b_next->b_str + buf->bh_index) + 1); 222 buf->bh_index = 0; 223 224 if (buf->bh_space >= (int)slen) 225 { 226 len = (long_u)STRLEN(buf->bh_curr->b_str); 227 vim_strncpy(buf->bh_curr->b_str + len, s, (size_t)slen); 228 buf->bh_space -= slen; 229 } 230 else 231 { 232 if (slen < MINIMAL_SIZE) 233 len = MINIMAL_SIZE; 234 else 235 len = slen; 236 p = alloc(offsetof(buffblock_T, b_str) + len + 1); 237 if (p == NULL) 238 return; // no space, just forget it 239 buf->bh_space = (int)(len - slen); 240 vim_strncpy(p->b_str, s, (size_t)slen); 241 242 p->b_next = buf->bh_curr->b_next; 243 buf->bh_curr->b_next = p; 244 buf->bh_curr = p; 245 } 246 return; 247 } 248 249 /* 250 * Add number "n" to buffer "buf". 251 */ 252 static void 253 add_num_buff(buffheader_T *buf, long n) 254 { 255 char_u number[32]; 256 257 sprintf((char *)number, "%ld", n); 258 add_buff(buf, number, -1L); 259 } 260 261 /* 262 * Add character 'c' to buffer "buf". 263 * Translates special keys, NUL, CSI, K_SPECIAL and multibyte characters. 264 */ 265 static void 266 add_char_buff(buffheader_T *buf, int c) 267 { 268 char_u bytes[MB_MAXBYTES + 1]; 269 int len; 270 int i; 271 char_u temp[4]; 272 273 if (IS_SPECIAL(c)) 274 len = 1; 275 else 276 len = (*mb_char2bytes)(c, bytes); 277 for (i = 0; i < len; ++i) 278 { 279 if (!IS_SPECIAL(c)) 280 c = bytes[i]; 281 282 if (IS_SPECIAL(c) || c == K_SPECIAL || c == NUL) 283 { 284 // translate special key code into three byte sequence 285 temp[0] = K_SPECIAL; 286 temp[1] = K_SECOND(c); 287 temp[2] = K_THIRD(c); 288 temp[3] = NUL; 289 } 290 #ifdef FEAT_GUI 291 else if (c == CSI) 292 { 293 // Translate a CSI to a CSI - KS_EXTRA - KE_CSI sequence 294 temp[0] = CSI; 295 temp[1] = KS_EXTRA; 296 temp[2] = (int)KE_CSI; 297 temp[3] = NUL; 298 } 299 #endif 300 else 301 { 302 temp[0] = c; 303 temp[1] = NUL; 304 } 305 add_buff(buf, temp, -1L); 306 } 307 } 308 309 // First read ahead buffer. Used for translated commands. 310 static buffheader_T readbuf1 = {{NULL, {NUL}}, NULL, 0, 0}; 311 312 // Second read ahead buffer. Used for redo. 313 static buffheader_T readbuf2 = {{NULL, {NUL}}, NULL, 0, 0}; 314 315 /* 316 * Get one byte from the read buffers. Use readbuf1 one first, use readbuf2 317 * if that one is empty. 318 * If advance == TRUE go to the next char. 319 * No translation is done K_SPECIAL and CSI are escaped. 320 */ 321 static int 322 read_readbuffers(int advance) 323 { 324 int c; 325 326 c = read_readbuf(&readbuf1, advance); 327 if (c == NUL) 328 c = read_readbuf(&readbuf2, advance); 329 return c; 330 } 331 332 static int 333 read_readbuf(buffheader_T *buf, int advance) 334 { 335 char_u c; 336 buffblock_T *curr; 337 338 if (buf->bh_first.b_next == NULL) // buffer is empty 339 return NUL; 340 341 curr = buf->bh_first.b_next; 342 c = curr->b_str[buf->bh_index]; 343 344 if (advance) 345 { 346 if (curr->b_str[++buf->bh_index] == NUL) 347 { 348 buf->bh_first.b_next = curr->b_next; 349 vim_free(curr); 350 buf->bh_index = 0; 351 } 352 } 353 return c; 354 } 355 356 /* 357 * Prepare the read buffers for reading (if they contain something). 358 */ 359 static void 360 start_stuff(void) 361 { 362 if (readbuf1.bh_first.b_next != NULL) 363 { 364 readbuf1.bh_curr = &(readbuf1.bh_first); 365 readbuf1.bh_space = 0; 366 } 367 if (readbuf2.bh_first.b_next != NULL) 368 { 369 readbuf2.bh_curr = &(readbuf2.bh_first); 370 readbuf2.bh_space = 0; 371 } 372 } 373 374 /* 375 * Return TRUE if the stuff buffer is empty. 376 */ 377 int 378 stuff_empty(void) 379 { 380 return (readbuf1.bh_first.b_next == NULL 381 && readbuf2.bh_first.b_next == NULL); 382 } 383 384 #if defined(FEAT_EVAL) || defined(PROTO) 385 /* 386 * Return TRUE if readbuf1 is empty. There may still be redo characters in 387 * redbuf2. 388 */ 389 int 390 readbuf1_empty(void) 391 { 392 return (readbuf1.bh_first.b_next == NULL); 393 } 394 #endif 395 396 /* 397 * Set a typeahead character that won't be flushed. 398 */ 399 void 400 typeahead_noflush(int c) 401 { 402 typeahead_char = c; 403 } 404 405 /* 406 * Remove the contents of the stuff buffer and the mapped characters in the 407 * typeahead buffer (used in case of an error). If "flush_typeahead" is true, 408 * flush all typeahead characters (used when interrupted by a CTRL-C). 409 */ 410 void 411 flush_buffers(flush_buffers_T flush_typeahead) 412 { 413 init_typebuf(); 414 415 start_stuff(); 416 while (read_readbuffers(TRUE) != NUL) 417 ; 418 419 if (flush_typeahead == FLUSH_MINIMAL) 420 { 421 // remove mapped characters at the start only 422 typebuf.tb_off += typebuf.tb_maplen; 423 typebuf.tb_len -= typebuf.tb_maplen; 424 #if defined(FEAT_CLIENTSERVER) || defined(FEAT_EVAL) 425 if (typebuf.tb_len == 0) 426 typebuf_was_filled = FALSE; 427 #endif 428 } 429 else 430 { 431 // remove typeahead 432 if (flush_typeahead == FLUSH_INPUT) 433 // We have to get all characters, because we may delete the first 434 // part of an escape sequence. In an xterm we get one char at a 435 // time and we have to get them all. 436 while (inchar(typebuf.tb_buf, typebuf.tb_buflen - 1, 10L) != 0) 437 ; 438 typebuf.tb_off = MAXMAPLEN; 439 typebuf.tb_len = 0; 440 #if defined(FEAT_CLIENTSERVER) || defined(FEAT_EVAL) 441 // Reset the flag that text received from a client or from feedkeys() 442 // was inserted in the typeahead buffer. 443 typebuf_was_filled = FALSE; 444 #endif 445 } 446 typebuf.tb_maplen = 0; 447 typebuf.tb_silent = 0; 448 cmd_silent = FALSE; 449 typebuf.tb_no_abbr_cnt = 0; 450 } 451 452 /* 453 * The previous contents of the redo buffer is kept in old_redobuffer. 454 * This is used for the CTRL-O <.> command in insert mode. 455 */ 456 void 457 ResetRedobuff(void) 458 { 459 if (!block_redo) 460 { 461 free_buff(&old_redobuff); 462 old_redobuff = redobuff; 463 redobuff.bh_first.b_next = NULL; 464 } 465 } 466 467 /* 468 * Discard the contents of the redo buffer and restore the previous redo 469 * buffer. 470 */ 471 void 472 CancelRedo(void) 473 { 474 if (!block_redo) 475 { 476 free_buff(&redobuff); 477 redobuff = old_redobuff; 478 old_redobuff.bh_first.b_next = NULL; 479 start_stuff(); 480 while (read_readbuffers(TRUE) != NUL) 481 ; 482 } 483 } 484 485 /* 486 * Save redobuff and old_redobuff to save_redobuff and save_old_redobuff. 487 * Used before executing autocommands and user functions. 488 */ 489 void 490 saveRedobuff(save_redo_T *save_redo) 491 { 492 char_u *s; 493 494 save_redo->sr_redobuff = redobuff; 495 redobuff.bh_first.b_next = NULL; 496 save_redo->sr_old_redobuff = old_redobuff; 497 old_redobuff.bh_first.b_next = NULL; 498 499 // Make a copy, so that ":normal ." in a function works. 500 s = get_buffcont(&save_redo->sr_redobuff, FALSE); 501 if (s != NULL) 502 { 503 add_buff(&redobuff, s, -1L); 504 vim_free(s); 505 } 506 } 507 508 /* 509 * Restore redobuff and old_redobuff from save_redobuff and save_old_redobuff. 510 * Used after executing autocommands and user functions. 511 */ 512 void 513 restoreRedobuff(save_redo_T *save_redo) 514 { 515 free_buff(&redobuff); 516 redobuff = save_redo->sr_redobuff; 517 free_buff(&old_redobuff); 518 old_redobuff = save_redo->sr_old_redobuff; 519 } 520 521 /* 522 * Append "s" to the redo buffer. 523 * K_SPECIAL and CSI should already have been escaped. 524 */ 525 void 526 AppendToRedobuff(char_u *s) 527 { 528 if (!block_redo) 529 add_buff(&redobuff, s, -1L); 530 } 531 532 /* 533 * Append to Redo buffer literally, escaping special characters with CTRL-V. 534 * K_SPECIAL and CSI are escaped as well. 535 */ 536 void 537 AppendToRedobuffLit( 538 char_u *str, 539 int len) // length of "str" or -1 for up to the NUL 540 { 541 char_u *s = str; 542 int c; 543 char_u *start; 544 545 if (block_redo) 546 return; 547 548 while (len < 0 ? *s != NUL : s - str < len) 549 { 550 // Put a string of normal characters in the redo buffer (that's 551 // faster). 552 start = s; 553 while (*s >= ' ' 554 #ifndef EBCDIC 555 && *s < DEL // EBCDIC: all chars above space are normal 556 #endif 557 && (len < 0 || s - str < len)) 558 ++s; 559 560 // Don't put '0' or '^' as last character, just in case a CTRL-D is 561 // typed next. 562 if (*s == NUL && (s[-1] == '0' || s[-1] == '^')) 563 --s; 564 if (s > start) 565 add_buff(&redobuff, start, (long)(s - start)); 566 567 if (*s == NUL || (len >= 0 && s - str >= len)) 568 break; 569 570 // Handle a special or multibyte character. 571 if (has_mbyte) 572 // Handle composing chars separately. 573 c = mb_cptr2char_adv(&s); 574 else 575 c = *s++; 576 if (c < ' ' || c == DEL || (*s == NUL && (c == '0' || c == '^'))) 577 add_char_buff(&redobuff, Ctrl_V); 578 579 // CTRL-V '0' must be inserted as CTRL-V 048 (EBCDIC: xf0) 580 if (*s == NUL && c == '0') 581 #ifdef EBCDIC 582 add_buff(&redobuff, (char_u *)"xf0", 3L); 583 #else 584 add_buff(&redobuff, (char_u *)"048", 3L); 585 #endif 586 else 587 add_char_buff(&redobuff, c); 588 } 589 } 590 591 /* 592 * Append a character to the redo buffer. 593 * Translates special keys, NUL, CSI, K_SPECIAL and multibyte characters. 594 */ 595 void 596 AppendCharToRedobuff(int c) 597 { 598 if (!block_redo) 599 add_char_buff(&redobuff, c); 600 } 601 602 /* 603 * Append a number to the redo buffer. 604 */ 605 void 606 AppendNumberToRedobuff(long n) 607 { 608 if (!block_redo) 609 add_num_buff(&redobuff, n); 610 } 611 612 /* 613 * Append string "s" to the stuff buffer. 614 * CSI and K_SPECIAL must already have been escaped. 615 */ 616 void 617 stuffReadbuff(char_u *s) 618 { 619 add_buff(&readbuf1, s, -1L); 620 } 621 622 /* 623 * Append string "s" to the redo stuff buffer. 624 * CSI and K_SPECIAL must already have been escaped. 625 */ 626 void 627 stuffRedoReadbuff(char_u *s) 628 { 629 add_buff(&readbuf2, s, -1L); 630 } 631 632 void 633 stuffReadbuffLen(char_u *s, long len) 634 { 635 add_buff(&readbuf1, s, len); 636 } 637 638 #if defined(FEAT_EVAL) || defined(PROTO) 639 /* 640 * Stuff "s" into the stuff buffer, leaving special key codes unmodified and 641 * escaping other K_SPECIAL and CSI bytes. 642 * Change CR, LF and ESC into a space. 643 */ 644 void 645 stuffReadbuffSpec(char_u *s) 646 { 647 int c; 648 649 while (*s != NUL) 650 { 651 if (*s == K_SPECIAL && s[1] != NUL && s[2] != NUL) 652 { 653 // Insert special key literally. 654 stuffReadbuffLen(s, 3L); 655 s += 3; 656 } 657 else 658 { 659 c = mb_ptr2char_adv(&s); 660 if (c == CAR || c == NL || c == ESC) 661 c = ' '; 662 stuffcharReadbuff(c); 663 } 664 } 665 } 666 #endif 667 668 /* 669 * Append a character to the stuff buffer. 670 * Translates special keys, NUL, CSI, K_SPECIAL and multibyte characters. 671 */ 672 void 673 stuffcharReadbuff(int c) 674 { 675 add_char_buff(&readbuf1, c); 676 } 677 678 /* 679 * Append a number to the stuff buffer. 680 */ 681 void 682 stuffnumReadbuff(long n) 683 { 684 add_num_buff(&readbuf1, n); 685 } 686 687 /* 688 * Stuff a string into the typeahead buffer, such that edit() will insert it 689 * literally ("literally" TRUE) or interpret is as typed characters. 690 */ 691 void 692 stuffescaped(char_u *arg, int literally) 693 { 694 int c; 695 char_u *start; 696 697 while (*arg != NUL) 698 { 699 // Stuff a sequence of normal ASCII characters, that's fast. Also 700 // stuff K_SPECIAL to get the effect of a special key when "literally" 701 // is TRUE. 702 start = arg; 703 while ((*arg >= ' ' 704 #ifndef EBCDIC 705 && *arg < DEL // EBCDIC: chars above space are normal 706 #endif 707 ) 708 || (*arg == K_SPECIAL && !literally)) 709 ++arg; 710 if (arg > start) 711 stuffReadbuffLen(start, (long)(arg - start)); 712 713 // stuff a single special character 714 if (*arg != NUL) 715 { 716 if (has_mbyte) 717 c = mb_cptr2char_adv(&arg); 718 else 719 c = *arg++; 720 if (literally && ((c < ' ' && c != TAB) || c == DEL)) 721 stuffcharReadbuff(Ctrl_V); 722 stuffcharReadbuff(c); 723 } 724 } 725 } 726 727 /* 728 * Read a character from the redo buffer. Translates K_SPECIAL, CSI and 729 * multibyte characters. 730 * The redo buffer is left as it is. 731 * If init is TRUE, prepare for redo, return FAIL if nothing to redo, OK 732 * otherwise. 733 * If old is TRUE, use old_redobuff instead of redobuff. 734 */ 735 static int 736 read_redo(int init, int old_redo) 737 { 738 static buffblock_T *bp; 739 static char_u *p; 740 int c; 741 int n; 742 char_u buf[MB_MAXBYTES + 1]; 743 int i; 744 745 if (init) 746 { 747 if (old_redo) 748 bp = old_redobuff.bh_first.b_next; 749 else 750 bp = redobuff.bh_first.b_next; 751 if (bp == NULL) 752 return FAIL; 753 p = bp->b_str; 754 return OK; 755 } 756 if ((c = *p) != NUL) 757 { 758 // Reverse the conversion done by add_char_buff() 759 // For a multi-byte character get all the bytes and return the 760 // converted character. 761 if (has_mbyte && (c != K_SPECIAL || p[1] == KS_SPECIAL)) 762 n = MB_BYTE2LEN_CHECK(c); 763 else 764 n = 1; 765 for (i = 0; ; ++i) 766 { 767 if (c == K_SPECIAL) // special key or escaped K_SPECIAL 768 { 769 c = TO_SPECIAL(p[1], p[2]); 770 p += 2; 771 } 772 #ifdef FEAT_GUI 773 if (c == CSI) // escaped CSI 774 p += 2; 775 #endif 776 if (*++p == NUL && bp->b_next != NULL) 777 { 778 bp = bp->b_next; 779 p = bp->b_str; 780 } 781 buf[i] = c; 782 if (i == n - 1) // last byte of a character 783 { 784 if (n != 1) 785 c = (*mb_ptr2char)(buf); 786 break; 787 } 788 c = *p; 789 if (c == NUL) // cannot happen? 790 break; 791 } 792 } 793 794 return c; 795 } 796 797 /* 798 * Copy the rest of the redo buffer into the stuff buffer (in a slow way). 799 * If old_redo is TRUE, use old_redobuff instead of redobuff. 800 * The escaped K_SPECIAL and CSI are copied without translation. 801 */ 802 static void 803 copy_redo(int old_redo) 804 { 805 int c; 806 807 while ((c = read_redo(FALSE, old_redo)) != NUL) 808 add_char_buff(&readbuf2, c); 809 } 810 811 /* 812 * Stuff the redo buffer into readbuf2. 813 * Insert the redo count into the command. 814 * If "old_redo" is TRUE, the last but one command is repeated 815 * instead of the last command (inserting text). This is used for 816 * CTRL-O <.> in insert mode 817 * 818 * return FAIL for failure, OK otherwise 819 */ 820 int 821 start_redo(long count, int old_redo) 822 { 823 int c; 824 825 // init the pointers; return if nothing to redo 826 if (read_redo(TRUE, old_redo) == FAIL) 827 return FAIL; 828 829 c = read_redo(FALSE, old_redo); 830 831 // copy the buffer name, if present 832 if (c == '"') 833 { 834 add_buff(&readbuf2, (char_u *)"\"", 1L); 835 c = read_redo(FALSE, old_redo); 836 837 // if a numbered buffer is used, increment the number 838 if (c >= '1' && c < '9') 839 ++c; 840 add_char_buff(&readbuf2, c); 841 842 // the expression register should be re-evaluated 843 if (c == '=') 844 { 845 add_char_buff(&readbuf2, CAR); 846 cmd_silent = TRUE; 847 } 848 849 c = read_redo(FALSE, old_redo); 850 } 851 852 if (c == 'v') // redo Visual 853 { 854 VIsual = curwin->w_cursor; 855 VIsual_active = TRUE; 856 VIsual_select = FALSE; 857 VIsual_reselect = TRUE; 858 redo_VIsual_busy = TRUE; 859 c = read_redo(FALSE, old_redo); 860 } 861 862 // try to enter the count (in place of a previous count) 863 if (count) 864 { 865 while (VIM_ISDIGIT(c)) // skip "old" count 866 c = read_redo(FALSE, old_redo); 867 add_num_buff(&readbuf2, count); 868 } 869 870 // copy from the redo buffer into the stuff buffer 871 add_char_buff(&readbuf2, c); 872 copy_redo(old_redo); 873 return OK; 874 } 875 876 /* 877 * Repeat the last insert (R, o, O, a, A, i or I command) by stuffing 878 * the redo buffer into readbuf2. 879 * return FAIL for failure, OK otherwise 880 */ 881 int 882 start_redo_ins(void) 883 { 884 int c; 885 886 if (read_redo(TRUE, FALSE) == FAIL) 887 return FAIL; 888 start_stuff(); 889 890 // skip the count and the command character 891 while ((c = read_redo(FALSE, FALSE)) != NUL) 892 { 893 if (vim_strchr((char_u *)"AaIiRrOo", c) != NULL) 894 { 895 if (c == 'O' || c == 'o') 896 add_buff(&readbuf2, NL_STR, -1L); 897 break; 898 } 899 } 900 901 // copy the typed text from the redo buffer into the stuff buffer 902 copy_redo(FALSE); 903 block_redo = TRUE; 904 return OK; 905 } 906 907 void 908 stop_redo_ins(void) 909 { 910 block_redo = FALSE; 911 } 912 913 /* 914 * Initialize typebuf.tb_buf to point to typebuf_init. 915 * alloc() cannot be used here: In out-of-memory situations it would 916 * be impossible to type anything. 917 */ 918 static void 919 init_typebuf(void) 920 { 921 if (typebuf.tb_buf == NULL) 922 { 923 typebuf.tb_buf = typebuf_init; 924 typebuf.tb_noremap = noremapbuf_init; 925 typebuf.tb_buflen = TYPELEN_INIT; 926 typebuf.tb_len = 0; 927 typebuf.tb_off = MAXMAPLEN + 4; 928 typebuf.tb_change_cnt = 1; 929 } 930 } 931 932 /* 933 * Returns TRUE when keys cannot be remapped. 934 */ 935 int 936 noremap_keys(void) 937 { 938 return KeyNoremap & (RM_NONE|RM_SCRIPT); 939 } 940 941 /* 942 * Insert a string in position 'offset' in the typeahead buffer (for "@r" 943 * and ":normal" command, vgetorpeek() and check_termcode()). 944 * 945 * If noremap is REMAP_YES, new string can be mapped again. 946 * If noremap is REMAP_NONE, new string cannot be mapped again. 947 * If noremap is REMAP_SKIP, fist char of new string cannot be mapped again, 948 * but abbreviations are allowed. 949 * If noremap is REMAP_SCRIPT, new string cannot be mapped again, except for 950 * script-local mappings. 951 * If noremap is > 0, that many characters of the new string cannot be mapped. 952 * 953 * If nottyped is TRUE, the string does not return KeyTyped (don't use when 954 * offset is non-zero!). 955 * 956 * If silent is TRUE, cmd_silent is set when the characters are obtained. 957 * 958 * return FAIL for failure, OK otherwise 959 */ 960 int 961 ins_typebuf( 962 char_u *str, 963 int noremap, 964 int offset, 965 int nottyped, 966 int silent) 967 { 968 char_u *s1, *s2; 969 int newlen; 970 int addlen; 971 int i; 972 int newoff; 973 int val; 974 int nrm; 975 976 init_typebuf(); 977 if (++typebuf.tb_change_cnt == 0) 978 typebuf.tb_change_cnt = 1; 979 state_no_longer_safe("ins_typebuf()"); 980 981 addlen = (int)STRLEN(str); 982 983 if (offset == 0 && addlen <= typebuf.tb_off) 984 { 985 /* 986 * Easy case: there is room in front of typebuf.tb_buf[typebuf.tb_off] 987 */ 988 typebuf.tb_off -= addlen; 989 mch_memmove(typebuf.tb_buf + typebuf.tb_off, str, (size_t)addlen); 990 } 991 else if (typebuf.tb_len == 0 && typebuf.tb_buflen 992 >= addlen + 3 * (MAXMAPLEN + 4)) 993 { 994 /* 995 * Buffer is empty and string fits in the existing buffer. 996 * Leave some space before and after, if possible. 997 */ 998 typebuf.tb_off = (typebuf.tb_buflen - addlen - 3 * (MAXMAPLEN + 4)) / 2; 999 mch_memmove(typebuf.tb_buf + typebuf.tb_off, str, (size_t)addlen); 1000 } 1001 else 1002 { 1003 /* 1004 * Need to allocate a new buffer. 1005 * In typebuf.tb_buf there must always be room for 3 * (MAXMAPLEN + 4) 1006 * characters. We add some extra room to avoid having to allocate too 1007 * often. 1008 */ 1009 newoff = MAXMAPLEN + 4; 1010 newlen = typebuf.tb_len + addlen + newoff + 4 * (MAXMAPLEN + 4); 1011 if (newlen < 0) // string is getting too long 1012 { 1013 emsg(_(e_toocompl)); // also calls flush_buffers 1014 setcursor(); 1015 return FAIL; 1016 } 1017 s1 = alloc(newlen); 1018 if (s1 == NULL) // out of memory 1019 return FAIL; 1020 s2 = alloc(newlen); 1021 if (s2 == NULL) // out of memory 1022 { 1023 vim_free(s1); 1024 return FAIL; 1025 } 1026 typebuf.tb_buflen = newlen; 1027 1028 // copy the old chars, before the insertion point 1029 mch_memmove(s1 + newoff, typebuf.tb_buf + typebuf.tb_off, 1030 (size_t)offset); 1031 // copy the new chars 1032 mch_memmove(s1 + newoff + offset, str, (size_t)addlen); 1033 // copy the old chars, after the insertion point, including the NUL at 1034 // the end 1035 mch_memmove(s1 + newoff + offset + addlen, 1036 typebuf.tb_buf + typebuf.tb_off + offset, 1037 (size_t)(typebuf.tb_len - offset + 1)); 1038 if (typebuf.tb_buf != typebuf_init) 1039 vim_free(typebuf.tb_buf); 1040 typebuf.tb_buf = s1; 1041 1042 mch_memmove(s2 + newoff, typebuf.tb_noremap + typebuf.tb_off, 1043 (size_t)offset); 1044 mch_memmove(s2 + newoff + offset + addlen, 1045 typebuf.tb_noremap + typebuf.tb_off + offset, 1046 (size_t)(typebuf.tb_len - offset)); 1047 if (typebuf.tb_noremap != noremapbuf_init) 1048 vim_free(typebuf.tb_noremap); 1049 typebuf.tb_noremap = s2; 1050 1051 typebuf.tb_off = newoff; 1052 } 1053 typebuf.tb_len += addlen; 1054 1055 // If noremap == REMAP_SCRIPT: do remap script-local mappings. 1056 if (noremap == REMAP_SCRIPT) 1057 val = RM_SCRIPT; 1058 else if (noremap == REMAP_SKIP) 1059 val = RM_ABBR; 1060 else 1061 val = RM_NONE; 1062 1063 /* 1064 * Adjust typebuf.tb_noremap[] for the new characters: 1065 * If noremap == REMAP_NONE or REMAP_SCRIPT: new characters are 1066 * (sometimes) not remappable 1067 * If noremap == REMAP_YES: all the new characters are mappable 1068 * If noremap > 0: "noremap" characters are not remappable, the rest 1069 * mappable 1070 */ 1071 if (noremap == REMAP_SKIP) 1072 nrm = 1; 1073 else if (noremap < 0) 1074 nrm = addlen; 1075 else 1076 nrm = noremap; 1077 for (i = 0; i < addlen; ++i) 1078 typebuf.tb_noremap[typebuf.tb_off + i + offset] = 1079 (--nrm >= 0) ? val : RM_YES; 1080 1081 // tb_maplen and tb_silent only remember the length of mapped and/or 1082 // silent mappings at the start of the buffer, assuming that a mapped 1083 // sequence doesn't result in typed characters. 1084 if (nottyped || typebuf.tb_maplen > offset) 1085 typebuf.tb_maplen += addlen; 1086 if (silent || typebuf.tb_silent > offset) 1087 { 1088 typebuf.tb_silent += addlen; 1089 cmd_silent = TRUE; 1090 } 1091 if (typebuf.tb_no_abbr_cnt && offset == 0) // and not used for abbrev.s 1092 typebuf.tb_no_abbr_cnt += addlen; 1093 1094 return OK; 1095 } 1096 1097 /* 1098 * Put character "c" back into the typeahead buffer. 1099 * Can be used for a character obtained by vgetc() that needs to be put back. 1100 * Uses cmd_silent, KeyTyped and KeyNoremap to restore the flags belonging to 1101 * the char. 1102 */ 1103 void 1104 ins_char_typebuf(int c) 1105 { 1106 char_u buf[MB_MAXBYTES + 1]; 1107 if (IS_SPECIAL(c)) 1108 { 1109 buf[0] = K_SPECIAL; 1110 buf[1] = K_SECOND(c); 1111 buf[2] = K_THIRD(c); 1112 buf[3] = NUL; 1113 } 1114 else 1115 buf[(*mb_char2bytes)(c, buf)] = NUL; 1116 (void)ins_typebuf(buf, KeyNoremap, 0, !KeyTyped, cmd_silent); 1117 } 1118 1119 /* 1120 * Return TRUE if the typeahead buffer was changed (while waiting for a 1121 * character to arrive). Happens when a message was received from a client or 1122 * from feedkeys(). 1123 * But check in a more generic way to avoid trouble: When "typebuf.tb_buf" 1124 * changed it was reallocated and the old pointer can no longer be used. 1125 * Or "typebuf.tb_off" may have been changed and we would overwrite characters 1126 * that was just added. 1127 */ 1128 int 1129 typebuf_changed( 1130 int tb_change_cnt) // old value of typebuf.tb_change_cnt 1131 { 1132 return (tb_change_cnt != 0 && (typebuf.tb_change_cnt != tb_change_cnt 1133 #if defined(FEAT_CLIENTSERVER) || defined(FEAT_EVAL) 1134 || typebuf_was_filled 1135 #endif 1136 )); 1137 } 1138 1139 /* 1140 * Return TRUE if there are no characters in the typeahead buffer that have 1141 * not been typed (result from a mapping or come from ":normal"). 1142 */ 1143 int 1144 typebuf_typed(void) 1145 { 1146 return typebuf.tb_maplen == 0; 1147 } 1148 1149 /* 1150 * Return the number of characters that are mapped (or not typed). 1151 */ 1152 int 1153 typebuf_maplen(void) 1154 { 1155 return typebuf.tb_maplen; 1156 } 1157 1158 /* 1159 * remove "len" characters from typebuf.tb_buf[typebuf.tb_off + offset] 1160 */ 1161 void 1162 del_typebuf(int len, int offset) 1163 { 1164 int i; 1165 1166 if (len == 0) 1167 return; // nothing to do 1168 1169 typebuf.tb_len -= len; 1170 1171 /* 1172 * Easy case: Just increase typebuf.tb_off. 1173 */ 1174 if (offset == 0 && typebuf.tb_buflen - (typebuf.tb_off + len) 1175 >= 3 * MAXMAPLEN + 3) 1176 typebuf.tb_off += len; 1177 /* 1178 * Have to move the characters in typebuf.tb_buf[] and typebuf.tb_noremap[] 1179 */ 1180 else 1181 { 1182 i = typebuf.tb_off + offset; 1183 /* 1184 * Leave some extra room at the end to avoid reallocation. 1185 */ 1186 if (typebuf.tb_off > MAXMAPLEN) 1187 { 1188 mch_memmove(typebuf.tb_buf + MAXMAPLEN, 1189 typebuf.tb_buf + typebuf.tb_off, (size_t)offset); 1190 mch_memmove(typebuf.tb_noremap + MAXMAPLEN, 1191 typebuf.tb_noremap + typebuf.tb_off, (size_t)offset); 1192 typebuf.tb_off = MAXMAPLEN; 1193 } 1194 // adjust typebuf.tb_buf (include the NUL at the end) 1195 mch_memmove(typebuf.tb_buf + typebuf.tb_off + offset, 1196 typebuf.tb_buf + i + len, 1197 (size_t)(typebuf.tb_len - offset + 1)); 1198 // adjust typebuf.tb_noremap[] 1199 mch_memmove(typebuf.tb_noremap + typebuf.tb_off + offset, 1200 typebuf.tb_noremap + i + len, 1201 (size_t)(typebuf.tb_len - offset)); 1202 } 1203 1204 if (typebuf.tb_maplen > offset) // adjust tb_maplen 1205 { 1206 if (typebuf.tb_maplen < offset + len) 1207 typebuf.tb_maplen = offset; 1208 else 1209 typebuf.tb_maplen -= len; 1210 } 1211 if (typebuf.tb_silent > offset) // adjust tb_silent 1212 { 1213 if (typebuf.tb_silent < offset + len) 1214 typebuf.tb_silent = offset; 1215 else 1216 typebuf.tb_silent -= len; 1217 } 1218 if (typebuf.tb_no_abbr_cnt > offset) // adjust tb_no_abbr_cnt 1219 { 1220 if (typebuf.tb_no_abbr_cnt < offset + len) 1221 typebuf.tb_no_abbr_cnt = offset; 1222 else 1223 typebuf.tb_no_abbr_cnt -= len; 1224 } 1225 1226 #if defined(FEAT_CLIENTSERVER) || defined(FEAT_EVAL) 1227 // Reset the flag that text received from a client or from feedkeys() 1228 // was inserted in the typeahead buffer. 1229 typebuf_was_filled = FALSE; 1230 #endif 1231 if (++typebuf.tb_change_cnt == 0) 1232 typebuf.tb_change_cnt = 1; 1233 } 1234 1235 /* 1236 * Write typed characters to script file. 1237 * If recording is on put the character in the recordbuffer. 1238 */ 1239 static void 1240 gotchars(char_u *chars, int len) 1241 { 1242 char_u *s = chars; 1243 int i; 1244 static char_u buf[4]; 1245 static int buflen = 0; 1246 int todo = len; 1247 1248 while (todo--) 1249 { 1250 buf[buflen++] = *s++; 1251 1252 // When receiving a special key sequence, store it until we have all 1253 // the bytes and we can decide what to do with it. 1254 if (buflen == 1 && buf[0] == K_SPECIAL) 1255 continue; 1256 if (buflen == 2) 1257 continue; 1258 if (buflen == 3 && buf[1] == KS_EXTRA 1259 && (buf[2] == KE_FOCUSGAINED || buf[2] == KE_FOCUSLOST)) 1260 { 1261 // Drop K_FOCUSGAINED and K_FOCUSLOST, they are not useful in a 1262 // recording. 1263 buflen = 0; 1264 continue; 1265 } 1266 1267 // Handle one byte at a time; no translation to be done. 1268 for (i = 0; i < buflen; ++i) 1269 updatescript(buf[i]); 1270 1271 if (reg_recording != 0) 1272 { 1273 buf[buflen] = NUL; 1274 add_buff(&recordbuff, buf, (long)buflen); 1275 // remember how many chars were last recorded 1276 last_recorded_len += buflen; 1277 } 1278 buflen = 0; 1279 } 1280 may_sync_undo(); 1281 1282 #ifdef FEAT_EVAL 1283 // output "debug mode" message next time in debug mode 1284 debug_did_msg = FALSE; 1285 #endif 1286 1287 // Since characters have been typed, consider the following to be in 1288 // another mapping. Search string will be kept in history. 1289 ++maptick; 1290 } 1291 1292 /* 1293 * Sync undo. Called when typed characters are obtained from the typeahead 1294 * buffer, or when a menu is used. 1295 * Do not sync: 1296 * - In Insert mode, unless cursor key has been used. 1297 * - While reading a script file. 1298 * - When no_u_sync is non-zero. 1299 */ 1300 static void 1301 may_sync_undo(void) 1302 { 1303 if ((!(State & (INSERT + CMDLINE)) || arrow_used) 1304 && scriptin[curscript] == NULL) 1305 u_sync(FALSE); 1306 } 1307 1308 /* 1309 * Make "typebuf" empty and allocate new buffers. 1310 * Returns FAIL when out of memory. 1311 */ 1312 static int 1313 alloc_typebuf(void) 1314 { 1315 typebuf.tb_buf = alloc(TYPELEN_INIT); 1316 typebuf.tb_noremap = alloc(TYPELEN_INIT); 1317 if (typebuf.tb_buf == NULL || typebuf.tb_noremap == NULL) 1318 { 1319 free_typebuf(); 1320 return FAIL; 1321 } 1322 typebuf.tb_buflen = TYPELEN_INIT; 1323 typebuf.tb_off = MAXMAPLEN + 4; // can insert without realloc 1324 typebuf.tb_len = 0; 1325 typebuf.tb_maplen = 0; 1326 typebuf.tb_silent = 0; 1327 typebuf.tb_no_abbr_cnt = 0; 1328 if (++typebuf.tb_change_cnt == 0) 1329 typebuf.tb_change_cnt = 1; 1330 #if defined(FEAT_CLIENTSERVER) || defined(FEAT_EVAL) 1331 typebuf_was_filled = FALSE; 1332 #endif 1333 return OK; 1334 } 1335 1336 /* 1337 * Free the buffers of "typebuf". 1338 */ 1339 static void 1340 free_typebuf(void) 1341 { 1342 if (typebuf.tb_buf == typebuf_init) 1343 internal_error("Free typebuf 1"); 1344 else 1345 VIM_CLEAR(typebuf.tb_buf); 1346 if (typebuf.tb_noremap == noremapbuf_init) 1347 internal_error("Free typebuf 2"); 1348 else 1349 VIM_CLEAR(typebuf.tb_noremap); 1350 } 1351 1352 /* 1353 * When doing ":so! file", the current typeahead needs to be saved, and 1354 * restored when "file" has been read completely. 1355 */ 1356 static typebuf_T saved_typebuf[NSCRIPT]; 1357 1358 int 1359 save_typebuf(void) 1360 { 1361 init_typebuf(); 1362 saved_typebuf[curscript] = typebuf; 1363 // If out of memory: restore typebuf and close file. 1364 if (alloc_typebuf() == FAIL) 1365 { 1366 closescript(); 1367 return FAIL; 1368 } 1369 return OK; 1370 } 1371 1372 static int old_char = -1; // character put back by vungetc() 1373 static int old_mod_mask; // mod_mask for ungotten character 1374 static int old_mouse_row; // mouse_row related to old_char 1375 static int old_mouse_col; // mouse_col related to old_char 1376 1377 /* 1378 * Save all three kinds of typeahead, so that the user must type at a prompt. 1379 */ 1380 void 1381 save_typeahead(tasave_T *tp) 1382 { 1383 tp->save_typebuf = typebuf; 1384 tp->typebuf_valid = (alloc_typebuf() == OK); 1385 if (!tp->typebuf_valid) 1386 typebuf = tp->save_typebuf; 1387 1388 tp->old_char = old_char; 1389 tp->old_mod_mask = old_mod_mask; 1390 old_char = -1; 1391 1392 tp->save_readbuf1 = readbuf1; 1393 readbuf1.bh_first.b_next = NULL; 1394 tp->save_readbuf2 = readbuf2; 1395 readbuf2.bh_first.b_next = NULL; 1396 # ifdef USE_INPUT_BUF 1397 tp->save_inputbuf = get_input_buf(); 1398 # endif 1399 } 1400 1401 /* 1402 * Restore the typeahead to what it was before calling save_typeahead(). 1403 * The allocated memory is freed, can only be called once! 1404 */ 1405 void 1406 restore_typeahead(tasave_T *tp) 1407 { 1408 if (tp->typebuf_valid) 1409 { 1410 free_typebuf(); 1411 typebuf = tp->save_typebuf; 1412 } 1413 1414 old_char = tp->old_char; 1415 old_mod_mask = tp->old_mod_mask; 1416 1417 free_buff(&readbuf1); 1418 readbuf1 = tp->save_readbuf1; 1419 free_buff(&readbuf2); 1420 readbuf2 = tp->save_readbuf2; 1421 # ifdef USE_INPUT_BUF 1422 set_input_buf(tp->save_inputbuf); 1423 # endif 1424 } 1425 1426 /* 1427 * Open a new script file for the ":source!" command. 1428 */ 1429 void 1430 openscript( 1431 char_u *name, 1432 int directly) // when TRUE execute directly 1433 { 1434 if (curscript + 1 == NSCRIPT) 1435 { 1436 emsg(_(e_nesting)); 1437 return; 1438 } 1439 1440 // Disallow sourcing a file in the sandbox, the commands would be executed 1441 // later, possibly outside of the sandbox. 1442 if (check_secure()) 1443 return; 1444 1445 #ifdef FEAT_EVAL 1446 if (ignore_script) 1447 // Not reading from script, also don't open one. Warning message? 1448 return; 1449 #endif 1450 1451 if (scriptin[curscript] != NULL) // already reading script 1452 ++curscript; 1453 // use NameBuff for expanded name 1454 expand_env(name, NameBuff, MAXPATHL); 1455 if ((scriptin[curscript] = mch_fopen((char *)NameBuff, READBIN)) == NULL) 1456 { 1457 semsg(_(e_notopen), name); 1458 if (curscript) 1459 --curscript; 1460 return; 1461 } 1462 if (save_typebuf() == FAIL) 1463 return; 1464 1465 /* 1466 * Execute the commands from the file right now when using ":source!" 1467 * after ":global" or ":argdo" or in a loop. Also when another command 1468 * follows. This means the display won't be updated. Don't do this 1469 * always, "make test" would fail. 1470 */ 1471 if (directly) 1472 { 1473 oparg_T oa; 1474 int oldcurscript; 1475 int save_State = State; 1476 int save_restart_edit = restart_edit; 1477 int save_insertmode = p_im; 1478 int save_finish_op = finish_op; 1479 int save_msg_scroll = msg_scroll; 1480 1481 State = NORMAL; 1482 msg_scroll = FALSE; // no msg scrolling in Normal mode 1483 restart_edit = 0; // don't go to Insert mode 1484 p_im = FALSE; // don't use 'insertmode' 1485 clear_oparg(&oa); 1486 finish_op = FALSE; 1487 1488 oldcurscript = curscript; 1489 do 1490 { 1491 update_topline_cursor(); // update cursor position and topline 1492 normal_cmd(&oa, FALSE); // execute one command 1493 vpeekc(); // check for end of file 1494 } 1495 while (scriptin[oldcurscript] != NULL); 1496 1497 State = save_State; 1498 msg_scroll = save_msg_scroll; 1499 restart_edit = save_restart_edit; 1500 p_im = save_insertmode; 1501 finish_op = save_finish_op; 1502 } 1503 } 1504 1505 /* 1506 * Close the currently active input script. 1507 */ 1508 static void 1509 closescript(void) 1510 { 1511 free_typebuf(); 1512 typebuf = saved_typebuf[curscript]; 1513 1514 fclose(scriptin[curscript]); 1515 scriptin[curscript] = NULL; 1516 if (curscript > 0) 1517 --curscript; 1518 } 1519 1520 #if defined(EXITFREE) || defined(PROTO) 1521 void 1522 close_all_scripts(void) 1523 { 1524 while (scriptin[0] != NULL) 1525 closescript(); 1526 } 1527 #endif 1528 1529 /* 1530 * Return TRUE when reading keys from a script file. 1531 */ 1532 int 1533 using_script(void) 1534 { 1535 return scriptin[curscript] != NULL; 1536 } 1537 1538 /* 1539 * This function is called just before doing a blocking wait. Thus after 1540 * waiting 'updatetime' for a character to arrive. 1541 */ 1542 void 1543 before_blocking(void) 1544 { 1545 updatescript(0); 1546 #ifdef FEAT_EVAL 1547 if (may_garbage_collect) 1548 garbage_collect(FALSE); 1549 #endif 1550 } 1551 1552 /* 1553 * updatescript() is called when a character can be written into the script file 1554 * or when we have waited some time for a character (c == 0) 1555 * 1556 * All the changed memfiles are synced if c == 0 or when the number of typed 1557 * characters reaches 'updatecount' and 'updatecount' is non-zero. 1558 */ 1559 static void 1560 updatescript(int c) 1561 { 1562 static int count = 0; 1563 1564 if (c && scriptout) 1565 putc(c, scriptout); 1566 if (c == 0 || (p_uc > 0 && ++count >= p_uc)) 1567 { 1568 ml_sync_all(c == 0, TRUE); 1569 count = 0; 1570 } 1571 } 1572 1573 /* 1574 * Convert "c" plus "mod_mask" to merge the effect of modifyOtherKeys into the 1575 * character. 1576 */ 1577 int 1578 merge_modifyOtherKeys(int c_arg) 1579 { 1580 int c = c_arg; 1581 1582 if (mod_mask & MOD_MASK_CTRL) 1583 { 1584 if ((c >= '`' && c <= 0x7f) || (c >= '@' && c <= '_')) 1585 { 1586 c &= 0x1f; 1587 mod_mask &= ~MOD_MASK_CTRL; 1588 } 1589 else if (c == '6') 1590 { 1591 // CTRL-6 is equivalent to CTRL-^ 1592 c = 0x1e; 1593 mod_mask &= ~MOD_MASK_CTRL; 1594 } 1595 } 1596 if ((mod_mask & (MOD_MASK_META | MOD_MASK_ALT)) 1597 && c >= 0 && c <= 127) 1598 { 1599 c += 0x80; 1600 mod_mask &= ~(MOD_MASK_META|MOD_MASK_ALT); 1601 } 1602 return c; 1603 } 1604 1605 /* 1606 * Get the next input character. 1607 * Can return a special key or a multi-byte character. 1608 * Can return NUL when called recursively, use safe_vgetc() if that's not 1609 * wanted. 1610 * This translates escaped K_SPECIAL and CSI bytes to a K_SPECIAL or CSI byte. 1611 * Collects the bytes of a multibyte character into the whole character. 1612 * Returns the modifiers in the global "mod_mask". 1613 */ 1614 int 1615 vgetc(void) 1616 { 1617 int c, c2; 1618 int n; 1619 char_u buf[MB_MAXBYTES + 1]; 1620 int i; 1621 1622 #ifdef FEAT_EVAL 1623 // Do garbage collection when garbagecollect() was called previously and 1624 // we are now at the toplevel. 1625 if (may_garbage_collect && want_garbage_collect) 1626 garbage_collect(FALSE); 1627 #endif 1628 1629 /* 1630 * If a character was put back with vungetc, it was already processed. 1631 * Return it directly. 1632 */ 1633 if (old_char != -1) 1634 { 1635 c = old_char; 1636 old_char = -1; 1637 mod_mask = old_mod_mask; 1638 mouse_row = old_mouse_row; 1639 mouse_col = old_mouse_col; 1640 } 1641 else 1642 { 1643 mod_mask = 0x0; 1644 last_recorded_len = 0; 1645 for (;;) // this is done twice if there are modifiers 1646 { 1647 int did_inc = FALSE; 1648 1649 if (mod_mask 1650 #if defined(FEAT_XIM) && defined(FEAT_GUI_GTK) 1651 || im_is_preediting() 1652 #endif 1653 #if defined(FEAT_PROP_POPUP) 1654 || popup_no_mapping() 1655 #endif 1656 ) 1657 { 1658 // no mapping after modifier has been read 1659 ++no_mapping; 1660 ++allow_keys; 1661 did_inc = TRUE; // mod_mask may change value 1662 } 1663 c = vgetorpeek(TRUE); 1664 if (did_inc) 1665 { 1666 --no_mapping; 1667 --allow_keys; 1668 } 1669 1670 // Get two extra bytes for special keys 1671 if (c == K_SPECIAL 1672 #ifdef FEAT_GUI 1673 || (c == CSI) 1674 #endif 1675 ) 1676 { 1677 int save_allow_keys = allow_keys; 1678 1679 ++no_mapping; 1680 allow_keys = 0; // make sure BS is not found 1681 c2 = vgetorpeek(TRUE); // no mapping for these chars 1682 c = vgetorpeek(TRUE); 1683 --no_mapping; 1684 allow_keys = save_allow_keys; 1685 if (c2 == KS_MODIFIER) 1686 { 1687 mod_mask = c; 1688 continue; 1689 } 1690 c = TO_SPECIAL(c2, c); 1691 1692 #if defined(FEAT_GUI_MSWIN) && defined(FEAT_MENU) && defined(FEAT_TEAROFF) 1693 // Handle K_TEAROFF here, the caller of vgetc() doesn't need to 1694 // know that a menu was torn off 1695 if ( 1696 # ifdef VIMDLL 1697 gui.in_use && 1698 # endif 1699 c == K_TEAROFF) 1700 { 1701 char_u name[200]; 1702 int i; 1703 1704 // get menu path, it ends with a <CR> 1705 for (i = 0; (c = vgetorpeek(TRUE)) != '\r'; ) 1706 { 1707 name[i] = c; 1708 if (i < 199) 1709 ++i; 1710 } 1711 name[i] = NUL; 1712 gui_make_tearoff(name); 1713 continue; 1714 } 1715 #endif 1716 #if defined(FEAT_GUI) && defined(FEAT_GUI_GTK) && defined(FEAT_MENU) 1717 // GTK: <F10> normally selects the menu, but it's passed until 1718 // here to allow mapping it. Intercept and invoke the GTK 1719 // behavior if it's not mapped. 1720 if (c == K_F10 && gui.menubar != NULL) 1721 { 1722 gtk_menu_shell_select_first( 1723 GTK_MENU_SHELL(gui.menubar), FALSE); 1724 continue; 1725 } 1726 #endif 1727 #ifdef FEAT_GUI 1728 // Handle focus event here, so that the caller doesn't need to 1729 // know about it. Return K_IGNORE so that we loop once (needed 1730 // if 'lazyredraw' is set). 1731 if (c == K_FOCUSGAINED || c == K_FOCUSLOST) 1732 { 1733 ui_focus_change(c == K_FOCUSGAINED); 1734 c = K_IGNORE; 1735 } 1736 1737 // Translate K_CSI to CSI. The special key is only used to 1738 // avoid it being recognized as the start of a special key. 1739 if (c == K_CSI) 1740 c = CSI; 1741 #endif 1742 } 1743 // a keypad or special function key was not mapped, use it like 1744 // its ASCII equivalent 1745 switch (c) 1746 { 1747 case K_KPLUS: c = '+'; break; 1748 case K_KMINUS: c = '-'; break; 1749 case K_KDIVIDE: c = '/'; break; 1750 case K_KMULTIPLY: c = '*'; break; 1751 case K_KENTER: c = CAR; break; 1752 case K_KPOINT: 1753 #ifdef MSWIN 1754 // Can be either '.' or a ',', 1755 // depending on the type of keypad. 1756 c = MapVirtualKey(VK_DECIMAL, 2); break; 1757 #else 1758 c = '.'; break; 1759 #endif 1760 case K_K0: c = '0'; break; 1761 case K_K1: c = '1'; break; 1762 case K_K2: c = '2'; break; 1763 case K_K3: c = '3'; break; 1764 case K_K4: c = '4'; break; 1765 case K_K5: c = '5'; break; 1766 case K_K6: c = '6'; break; 1767 case K_K7: c = '7'; break; 1768 case K_K8: c = '8'; break; 1769 case K_K9: c = '9'; break; 1770 1771 case K_XHOME: 1772 case K_ZHOME: if (mod_mask == MOD_MASK_SHIFT) 1773 { 1774 c = K_S_HOME; 1775 mod_mask = 0; 1776 } 1777 else if (mod_mask == MOD_MASK_CTRL) 1778 { 1779 c = K_C_HOME; 1780 mod_mask = 0; 1781 } 1782 else 1783 c = K_HOME; 1784 break; 1785 case K_XEND: 1786 case K_ZEND: if (mod_mask == MOD_MASK_SHIFT) 1787 { 1788 c = K_S_END; 1789 mod_mask = 0; 1790 } 1791 else if (mod_mask == MOD_MASK_CTRL) 1792 { 1793 c = K_C_END; 1794 mod_mask = 0; 1795 } 1796 else 1797 c = K_END; 1798 break; 1799 1800 case K_XUP: c = K_UP; break; 1801 case K_XDOWN: c = K_DOWN; break; 1802 case K_XLEFT: c = K_LEFT; break; 1803 case K_XRIGHT: c = K_RIGHT; break; 1804 } 1805 1806 // For a multi-byte character get all the bytes and return the 1807 // converted character. 1808 // Note: This will loop until enough bytes are received! 1809 if (has_mbyte && (n = MB_BYTE2LEN_CHECK(c)) > 1) 1810 { 1811 ++no_mapping; 1812 buf[0] = c; 1813 for (i = 1; i < n; ++i) 1814 { 1815 buf[i] = vgetorpeek(TRUE); 1816 if (buf[i] == K_SPECIAL 1817 #ifdef FEAT_GUI 1818 || (buf[i] == CSI) 1819 #endif 1820 ) 1821 { 1822 // Must be a K_SPECIAL - KS_SPECIAL - KE_FILLER 1823 // sequence, which represents a K_SPECIAL (0x80), 1824 // or a CSI - KS_EXTRA - KE_CSI sequence, which 1825 // represents a CSI (0x9B), 1826 // or a K_SPECIAL - KS_EXTRA - KE_CSI, which is CSI 1827 // too. 1828 c = vgetorpeek(TRUE); 1829 if (vgetorpeek(TRUE) == (int)KE_CSI && c == KS_EXTRA) 1830 buf[i] = CSI; 1831 } 1832 } 1833 --no_mapping; 1834 c = (*mb_ptr2char)(buf); 1835 } 1836 1837 if (!no_reduce_keys) 1838 // A modifier was not used for a mapping, apply it to ASCII 1839 // keys. Shift would already have been applied. 1840 c = merge_modifyOtherKeys(c); 1841 1842 break; 1843 } 1844 } 1845 1846 #ifdef FEAT_EVAL 1847 /* 1848 * In the main loop "may_garbage_collect" can be set to do garbage 1849 * collection in the first next vgetc(). It's disabled after that to 1850 * avoid internally used Lists and Dicts to be freed. 1851 */ 1852 may_garbage_collect = FALSE; 1853 #endif 1854 1855 #ifdef FEAT_BEVAL_TERM 1856 if (c != K_MOUSEMOVE && c != K_IGNORE && c != K_CURSORHOLD) 1857 { 1858 // Don't trigger 'balloonexpr' unless only the mouse was moved. 1859 bevalexpr_due_set = FALSE; 1860 ui_remove_balloon(); 1861 } 1862 #endif 1863 #ifdef FEAT_PROP_POPUP 1864 if (popup_do_filter(c)) 1865 { 1866 if (c == Ctrl_C) 1867 got_int = FALSE; // avoid looping 1868 c = K_IGNORE; 1869 } 1870 #endif 1871 1872 // Need to process the character before we know it's safe to do something 1873 // else. 1874 if (c != K_IGNORE) 1875 state_no_longer_safe("key typed"); 1876 1877 return c; 1878 } 1879 1880 /* 1881 * Like vgetc(), but never return a NUL when called recursively, get a key 1882 * directly from the user (ignoring typeahead). 1883 */ 1884 int 1885 safe_vgetc(void) 1886 { 1887 int c; 1888 1889 c = vgetc(); 1890 if (c == NUL) 1891 c = get_keystroke(); 1892 return c; 1893 } 1894 1895 /* 1896 * Like safe_vgetc(), but loop to handle K_IGNORE. 1897 * Also ignore scrollbar events. 1898 */ 1899 int 1900 plain_vgetc(void) 1901 { 1902 int c; 1903 1904 do 1905 c = safe_vgetc(); 1906 while (c == K_IGNORE || c == K_VER_SCROLLBAR || c == K_HOR_SCROLLBAR); 1907 1908 if (c == K_PS) 1909 // Only handle the first pasted character. Drop the rest, since we 1910 // don't know what to do with it. 1911 c = bracketed_paste(PASTE_ONE_CHAR, FALSE, NULL); 1912 1913 return c; 1914 } 1915 1916 /* 1917 * Check if a character is available, such that vgetc() will not block. 1918 * If the next character is a special character or multi-byte, the returned 1919 * character is not valid!. 1920 * Returns NUL if no character is available. 1921 */ 1922 int 1923 vpeekc(void) 1924 { 1925 if (old_char != -1) 1926 return old_char; 1927 return vgetorpeek(FALSE); 1928 } 1929 1930 #if defined(FEAT_TERMRESPONSE) || defined(FEAT_TERMINAL) || defined(PROTO) 1931 /* 1932 * Like vpeekc(), but don't allow mapping. Do allow checking for terminal 1933 * codes. 1934 */ 1935 int 1936 vpeekc_nomap(void) 1937 { 1938 int c; 1939 1940 ++no_mapping; 1941 ++allow_keys; 1942 c = vpeekc(); 1943 --no_mapping; 1944 --allow_keys; 1945 return c; 1946 } 1947 #endif 1948 1949 /* 1950 * Check if any character is available, also half an escape sequence. 1951 * Trick: when no typeahead found, but there is something in the typeahead 1952 * buffer, it must be an ESC that is recognized as the start of a key code. 1953 */ 1954 int 1955 vpeekc_any(void) 1956 { 1957 int c; 1958 1959 c = vpeekc(); 1960 if (c == NUL && typebuf.tb_len > 0) 1961 c = ESC; 1962 return c; 1963 } 1964 1965 /* 1966 * Call vpeekc() without causing anything to be mapped. 1967 * Return TRUE if a character is available, FALSE otherwise. 1968 */ 1969 int 1970 char_avail(void) 1971 { 1972 int retval; 1973 1974 #ifdef FEAT_EVAL 1975 // When test_override("char_avail", 1) was called pretend there is no 1976 // typeahead. 1977 if (disable_char_avail_for_testing) 1978 return FALSE; 1979 #endif 1980 ++no_mapping; 1981 retval = vpeekc(); 1982 --no_mapping; 1983 return (retval != NUL); 1984 } 1985 1986 #if defined(FEAT_EVAL) || defined(PROTO) 1987 /* 1988 * "getchar()" function 1989 */ 1990 void 1991 f_getchar(typval_T *argvars, typval_T *rettv) 1992 { 1993 varnumber_T n; 1994 int error = FALSE; 1995 1996 #ifdef MESSAGE_QUEUE 1997 // vpeekc() used to check for messages, but that caused problems, invoking 1998 // a callback where it was not expected. Some plugins use getchar(1) in a 1999 // loop to await a message, therefore make sure we check for messages here. 2000 parse_queued_messages(); 2001 #endif 2002 2003 // Position the cursor. Needed after a message that ends in a space. 2004 windgoto(msg_row, msg_col); 2005 2006 ++no_mapping; 2007 ++allow_keys; 2008 for (;;) 2009 { 2010 if (argvars[0].v_type == VAR_UNKNOWN) 2011 // getchar(): blocking wait. 2012 n = plain_vgetc(); 2013 else if (tv_get_number_chk(&argvars[0], &error) == 1) 2014 // getchar(1): only check if char avail 2015 n = vpeekc_any(); 2016 else if (error || vpeekc_any() == NUL) 2017 // illegal argument or getchar(0) and no char avail: return zero 2018 n = 0; 2019 else 2020 // getchar(0) and char avail: return char 2021 n = plain_vgetc(); 2022 2023 if (n == K_IGNORE) 2024 continue; 2025 break; 2026 } 2027 --no_mapping; 2028 --allow_keys; 2029 2030 set_vim_var_nr(VV_MOUSE_WIN, 0); 2031 set_vim_var_nr(VV_MOUSE_WINID, 0); 2032 set_vim_var_nr(VV_MOUSE_LNUM, 0); 2033 set_vim_var_nr(VV_MOUSE_COL, 0); 2034 2035 rettv->vval.v_number = n; 2036 if (IS_SPECIAL(n) || mod_mask != 0) 2037 { 2038 char_u temp[10]; // modifier: 3, mbyte-char: 6, NUL: 1 2039 int i = 0; 2040 2041 // Turn a special key into three bytes, plus modifier. 2042 if (mod_mask != 0) 2043 { 2044 temp[i++] = K_SPECIAL; 2045 temp[i++] = KS_MODIFIER; 2046 temp[i++] = mod_mask; 2047 } 2048 if (IS_SPECIAL(n)) 2049 { 2050 temp[i++] = K_SPECIAL; 2051 temp[i++] = K_SECOND(n); 2052 temp[i++] = K_THIRD(n); 2053 } 2054 else if (has_mbyte) 2055 i += (*mb_char2bytes)(n, temp + i); 2056 else 2057 temp[i++] = n; 2058 temp[i++] = NUL; 2059 rettv->v_type = VAR_STRING; 2060 rettv->vval.v_string = vim_strsave(temp); 2061 2062 if (is_mouse_key(n)) 2063 { 2064 int row = mouse_row; 2065 int col = mouse_col; 2066 win_T *win; 2067 linenr_T lnum; 2068 win_T *wp; 2069 int winnr = 1; 2070 2071 if (row >= 0 && col >= 0) 2072 { 2073 // Find the window at the mouse coordinates and compute the 2074 // text position. 2075 win = mouse_find_win(&row, &col, FIND_POPUP); 2076 if (win == NULL) 2077 return; 2078 (void)mouse_comp_pos(win, &row, &col, &lnum, NULL); 2079 #ifdef FEAT_PROP_POPUP 2080 if (WIN_IS_POPUP(win)) 2081 winnr = 0; 2082 else 2083 #endif 2084 for (wp = firstwin; wp != win && wp != NULL; 2085 wp = wp->w_next) 2086 ++winnr; 2087 set_vim_var_nr(VV_MOUSE_WIN, winnr); 2088 set_vim_var_nr(VV_MOUSE_WINID, win->w_id); 2089 set_vim_var_nr(VV_MOUSE_LNUM, lnum); 2090 set_vim_var_nr(VV_MOUSE_COL, col + 1); 2091 } 2092 } 2093 } 2094 } 2095 2096 /* 2097 * "getcharmod()" function 2098 */ 2099 void 2100 f_getcharmod(typval_T *argvars UNUSED, typval_T *rettv) 2101 { 2102 rettv->vval.v_number = mod_mask; 2103 } 2104 #endif // FEAT_EVAL 2105 2106 #if defined(MESSAGE_QUEUE) || defined(PROTO) 2107 # define MAX_REPEAT_PARSE 8 2108 2109 /* 2110 * Process messages that have been queued for netbeans or clientserver. 2111 * Also check if any jobs have ended. 2112 * These functions can call arbitrary vimscript and should only be called when 2113 * it is safe to do so. 2114 */ 2115 void 2116 parse_queued_messages(void) 2117 { 2118 int old_curwin_id; 2119 int old_curbuf_fnum; 2120 int i; 2121 int save_may_garbage_collect = may_garbage_collect; 2122 static int entered = 0; 2123 int was_safe = get_was_safe_state(); 2124 2125 // Do not handle messages while redrawing, because it may cause buffers to 2126 // change or be wiped while they are being redrawn. 2127 if (updating_screen) 2128 return; 2129 2130 // If memory allocation fails during startup we'll exit but curbuf or 2131 // curwin could be NULL. 2132 if (curbuf == NULL || curwin == NULL) 2133 return; 2134 2135 old_curbuf_fnum = curbuf->b_fnum; 2136 old_curwin_id = curwin->w_id; 2137 2138 ++entered; 2139 2140 // may_garbage_collect is set in main_loop() to do garbage collection when 2141 // blocking to wait on a character. We don't want that while parsing 2142 // messages, a callback may invoke vgetc() while lists and dicts are in use 2143 // in the call stack. 2144 may_garbage_collect = FALSE; 2145 2146 // Loop when a job ended, but don't keep looping forever. 2147 for (i = 0; i < MAX_REPEAT_PARSE; ++i) 2148 { 2149 // For Win32 mch_breakcheck() does not check for input, do it here. 2150 # if (defined(MSWIN) || defined(__HAIKU__)) && defined(FEAT_JOB_CHANNEL) 2151 channel_handle_events(FALSE); 2152 # endif 2153 2154 # ifdef FEAT_NETBEANS_INTG 2155 // Process the queued netbeans messages. 2156 netbeans_parse_messages(); 2157 # endif 2158 # ifdef FEAT_JOB_CHANNEL 2159 // Write any buffer lines still to be written. 2160 channel_write_any_lines(); 2161 2162 // Process the messages queued on channels. 2163 channel_parse_messages(); 2164 # endif 2165 # if defined(FEAT_CLIENTSERVER) && defined(FEAT_X11) 2166 // Process the queued clientserver messages. 2167 server_parse_messages(); 2168 # endif 2169 # ifdef FEAT_JOB_CHANNEL 2170 // Check if any jobs have ended. If so, repeat the above to handle 2171 // changes, e.g. stdin may have been closed. 2172 if (job_check_ended()) 2173 continue; 2174 # endif 2175 # ifdef FEAT_TERMINAL 2176 free_unused_terminals(); 2177 # endif 2178 # ifdef FEAT_SOUND_CANBERRA 2179 if (has_sound_callback_in_queue()) 2180 invoke_sound_callback(); 2181 # endif 2182 break; 2183 } 2184 2185 // When not nested we'll go back to waiting for a typed character. If it 2186 // was safe before then this triggers a SafeStateAgain autocommand event. 2187 if (entered == 1 && was_safe) 2188 may_trigger_safestateagain(); 2189 2190 may_garbage_collect = save_may_garbage_collect; 2191 2192 // If the current window or buffer changed we need to bail out of the 2193 // waiting loop. E.g. when a job exit callback closes the terminal window. 2194 if (curwin->w_id != old_curwin_id || curbuf->b_fnum != old_curbuf_fnum) 2195 ins_char_typebuf(K_IGNORE); 2196 2197 --entered; 2198 } 2199 #endif 2200 2201 2202 typedef enum { 2203 map_result_fail, // failed, break loop 2204 map_result_get, // get a character from typeahead 2205 map_result_retry, // try to map again 2206 map_result_nomatch // no matching mapping, get char 2207 } map_result_T; 2208 2209 /* 2210 * Check if the bytes at the start of the typeahead buffer are a character used 2211 * in CTRL-X mode. This includes the form with a CTRL modifier. 2212 */ 2213 static int 2214 at_ctrl_x_key(void) 2215 { 2216 char_u *p = typebuf.tb_buf + typebuf.tb_off; 2217 int c = *p; 2218 2219 if (typebuf.tb_len > 3 2220 && c == K_SPECIAL 2221 && p[1] == KS_MODIFIER 2222 && (p[2] & MOD_MASK_CTRL)) 2223 c = p[3] & 0x1f; 2224 return vim_is_ctrl_x_key(c); 2225 } 2226 2227 /* 2228 * Handle mappings in the typeahead buffer. 2229 * - When something was mapped, return map_result_retry for recursive mappings. 2230 * - When nothing mapped and typeahead has a character: return map_result_get. 2231 * - When there is no match yet, return map_result_nomatch, need to get more 2232 * typeahead. 2233 */ 2234 static int 2235 handle_mapping( 2236 int *keylenp, 2237 int *timedout, 2238 int *mapdepth) 2239 { 2240 mapblock_T *mp = NULL; 2241 mapblock_T *mp2; 2242 mapblock_T *mp_match; 2243 int mp_match_len = 0; 2244 int max_mlen = 0; 2245 int tb_c1; 2246 int mlen; 2247 #ifdef FEAT_LANGMAP 2248 int nolmaplen; 2249 #endif 2250 int keylen = *keylenp; 2251 int i; 2252 int local_State = get_real_state(); 2253 2254 /* 2255 * Check for a mappable key sequence. 2256 * Walk through one maphash[] list until we find an entry that matches. 2257 * 2258 * Don't look for mappings if: 2259 * - no_mapping set: mapping disabled (e.g. for CTRL-V) 2260 * - maphash_valid not set: no mappings present. 2261 * - typebuf.tb_buf[typebuf.tb_off] should not be remapped 2262 * - in insert or cmdline mode and 'paste' option set 2263 * - waiting for "hit return to continue" and CR or SPACE typed 2264 * - waiting for a char with --more-- 2265 * - in Ctrl-X mode, and we get a valid char for that mode 2266 */ 2267 tb_c1 = typebuf.tb_buf[typebuf.tb_off]; 2268 if (no_mapping == 0 && is_maphash_valid() 2269 && (no_zero_mapping == 0 || tb_c1 != '0') 2270 && (typebuf.tb_maplen == 0 2271 || (p_remap 2272 && (typebuf.tb_noremap[typebuf.tb_off] 2273 & (RM_NONE|RM_ABBR)) == 0)) 2274 && !(p_paste && (State & (INSERT + CMDLINE))) 2275 && !(State == HITRETURN && (tb_c1 == CAR || tb_c1 == ' ')) 2276 && State != ASKMORE 2277 && State != CONFIRM 2278 && !((ctrl_x_mode_not_default() && at_ctrl_x_key()) 2279 || ((compl_cont_status & CONT_LOCAL) 2280 && (tb_c1 == Ctrl_N || tb_c1 == Ctrl_P)))) 2281 { 2282 #ifdef FEAT_LANGMAP 2283 if (tb_c1 == K_SPECIAL) 2284 nolmaplen = 2; 2285 else 2286 { 2287 LANGMAP_ADJUST(tb_c1, (State & (CMDLINE | INSERT)) == 0 2288 && get_real_state() != SELECTMODE); 2289 nolmaplen = 0; 2290 } 2291 #endif 2292 // First try buffer-local mappings. 2293 mp = get_buf_maphash_list(local_State, tb_c1); 2294 mp2 = get_maphash_list(local_State, tb_c1); 2295 if (mp == NULL) 2296 { 2297 // There are no buffer-local mappings. 2298 mp = mp2; 2299 mp2 = NULL; 2300 } 2301 2302 /* 2303 * Loop until a partly matching mapping is found or all (local) 2304 * mappings have been checked. 2305 * The longest full match is remembered in "mp_match". 2306 * A full match is only accepted if there is no partly match, so "aa" 2307 * and "aaa" can both be mapped. 2308 */ 2309 mp_match = NULL; 2310 mp_match_len = 0; 2311 for ( ; mp != NULL; 2312 mp->m_next == NULL ? (mp = mp2, mp2 = NULL) : (mp = mp->m_next)) 2313 { 2314 // Only consider an entry if the first character matches and it is 2315 // for the current state. 2316 // Skip ":lmap" mappings if keys were mapped. 2317 if (mp->m_keys[0] == tb_c1 2318 && (mp->m_mode & local_State) 2319 && !(mp->m_simplified && seenModifyOtherKeys) 2320 && ((mp->m_mode & LANGMAP) == 0 || typebuf.tb_maplen == 0)) 2321 { 2322 #ifdef FEAT_LANGMAP 2323 int nomap = nolmaplen; 2324 int c2; 2325 #endif 2326 // find the match length of this mapping 2327 for (mlen = 1; mlen < typebuf.tb_len; ++mlen) 2328 { 2329 #ifdef FEAT_LANGMAP 2330 c2 = typebuf.tb_buf[typebuf.tb_off + mlen]; 2331 if (nomap > 0) 2332 --nomap; 2333 else if (c2 == K_SPECIAL) 2334 nomap = 2; 2335 else 2336 LANGMAP_ADJUST(c2, TRUE); 2337 if (mp->m_keys[mlen] != c2) 2338 #else 2339 if (mp->m_keys[mlen] != 2340 typebuf.tb_buf[typebuf.tb_off + mlen]) 2341 #endif 2342 break; 2343 } 2344 2345 // Don't allow mapping the first byte(s) of a multi-byte char. 2346 // Happens when mapping <M-a> and then changing 'encoding'. 2347 // Beware that 0x80 is escaped. 2348 { 2349 char_u *p1 = mp->m_keys; 2350 char_u *p2 = mb_unescape(&p1); 2351 2352 if (has_mbyte && p2 != NULL 2353 && MB_BYTE2LEN(tb_c1) > mb_ptr2len(p2)) 2354 mlen = 0; 2355 } 2356 2357 // Check an entry whether it matches. 2358 // - Full match: mlen == keylen 2359 // - Partly match: mlen == typebuf.tb_len 2360 keylen = mp->m_keylen; 2361 if (mlen == keylen || (mlen == typebuf.tb_len 2362 && typebuf.tb_len < keylen)) 2363 { 2364 char_u *s; 2365 int n; 2366 2367 // If only script-local mappings are allowed, check if the 2368 // mapping starts with K_SNR. 2369 s = typebuf.tb_noremap + typebuf.tb_off; 2370 if (*s == RM_SCRIPT 2371 && (mp->m_keys[0] != K_SPECIAL 2372 || mp->m_keys[1] != KS_EXTRA 2373 || mp->m_keys[2] != (int)KE_SNR)) 2374 continue; 2375 2376 // If one of the typed keys cannot be remapped, skip the 2377 // entry. 2378 for (n = mlen; --n >= 0; ) 2379 if (*s++ & (RM_NONE|RM_ABBR)) 2380 break; 2381 if (n >= 0) 2382 continue; 2383 2384 if (keylen > typebuf.tb_len) 2385 { 2386 if (!*timedout && !(mp_match != NULL 2387 && mp_match->m_nowait)) 2388 { 2389 // break at a partly match 2390 keylen = KEYLEN_PART_MAP; 2391 break; 2392 } 2393 } 2394 else if (keylen > mp_match_len) 2395 { 2396 // found a longer match 2397 mp_match = mp; 2398 mp_match_len = keylen; 2399 } 2400 } 2401 else 2402 // No match; may have to check for termcode at next 2403 // character. 2404 if (max_mlen < mlen) 2405 max_mlen = mlen; 2406 } 2407 } 2408 2409 // If no partly match found, use the longest full match. 2410 if (keylen != KEYLEN_PART_MAP) 2411 { 2412 mp = mp_match; 2413 keylen = mp_match_len; 2414 } 2415 } 2416 2417 /* 2418 * Check for match with 'pastetoggle' 2419 */ 2420 if (*p_pt != NUL && mp == NULL && (State & (INSERT|NORMAL))) 2421 { 2422 for (mlen = 0; mlen < typebuf.tb_len && p_pt[mlen]; ++mlen) 2423 if (p_pt[mlen] != typebuf.tb_buf[typebuf.tb_off + mlen]) 2424 break; 2425 if (p_pt[mlen] == NUL) // match 2426 { 2427 // write chars to script file(s) 2428 if (mlen > typebuf.tb_maplen) 2429 gotchars(typebuf.tb_buf + typebuf.tb_off + typebuf.tb_maplen, 2430 mlen - typebuf.tb_maplen); 2431 2432 del_typebuf(mlen, 0); // remove the chars 2433 set_option_value((char_u *)"paste", (long)!p_paste, NULL, 0); 2434 if (!(State & INSERT)) 2435 { 2436 msg_col = 0; 2437 msg_row = Rows - 1; 2438 msg_clr_eos(); // clear ruler 2439 } 2440 status_redraw_all(); 2441 redraw_statuslines(); 2442 showmode(); 2443 setcursor(); 2444 *keylenp = keylen; 2445 return map_result_retry; 2446 } 2447 // Need more chars for partly match. 2448 if (mlen == typebuf.tb_len) 2449 keylen = KEYLEN_PART_KEY; 2450 else if (max_mlen < mlen) 2451 // no match, may have to check for termcode at next character 2452 max_mlen = mlen + 1; 2453 } 2454 2455 if ((mp == NULL || max_mlen >= mp_match_len) && keylen != KEYLEN_PART_MAP) 2456 { 2457 int save_keylen = keylen; 2458 2459 /* 2460 * When no matching mapping found or found a non-matching mapping that 2461 * matches at least what the matching mapping matched: 2462 * Check if we have a terminal code, when: 2463 * - mapping is allowed, 2464 * - keys have not been mapped, 2465 * - and not an ESC sequence, not in insert mode or p_ek is on, 2466 * - and when not timed out, 2467 */ 2468 if ((no_mapping == 0 || allow_keys != 0) 2469 && (typebuf.tb_maplen == 0 2470 || (p_remap && typebuf.tb_noremap[ 2471 typebuf.tb_off] == RM_YES)) 2472 && !*timedout) 2473 { 2474 keylen = check_termcode(max_mlen + 1, 2475 NULL, 0, NULL); 2476 2477 // If no termcode matched but 'pastetoggle' matched partially it's 2478 // like an incomplete key sequence. 2479 if (keylen == 0 && save_keylen == KEYLEN_PART_KEY) 2480 keylen = KEYLEN_PART_KEY; 2481 2482 // When getting a partial match, but the last characters were not 2483 // typed, don't wait for a typed character to complete the 2484 // termcode. This helps a lot when a ":normal" command ends in an 2485 // ESC. 2486 if (keylen < 0 && typebuf.tb_len == typebuf.tb_maplen) 2487 keylen = 0; 2488 } 2489 else 2490 keylen = 0; 2491 if (keylen == 0) // no matching terminal code 2492 { 2493 #ifdef AMIGA 2494 // check for window bounds report 2495 if (typebuf.tb_maplen == 0 && (typebuf.tb_buf[ 2496 typebuf.tb_off] & 0xff) == CSI) 2497 { 2498 char_u *s; 2499 2500 for (s = typebuf.tb_buf + typebuf.tb_off + 1; 2501 s < typebuf.tb_buf + typebuf.tb_off + typebuf.tb_len 2502 && (VIM_ISDIGIT(*s) || *s == ';' || *s == ' '); 2503 ++s) 2504 ; 2505 if (*s == 'r' || *s == '|') // found one 2506 { 2507 del_typebuf( 2508 (int)(s + 1 - (typebuf.tb_buf + typebuf.tb_off)), 0); 2509 // get size and redraw screen 2510 shell_resized(); 2511 *keylenp = keylen; 2512 return map_result_retry; 2513 } 2514 if (*s == NUL) // need more characters 2515 keylen = KEYLEN_PART_KEY; 2516 } 2517 if (keylen >= 0) 2518 #endif 2519 // When there was a matching mapping and no termcode could be 2520 // replaced after another one, use that mapping (loop around). 2521 // If there was no mapping at all use the character from the 2522 // typeahead buffer right here. 2523 if (mp == NULL) 2524 { 2525 *keylenp = keylen; 2526 return map_result_get; // got character, break for loop 2527 } 2528 } 2529 2530 if (keylen > 0) // full matching terminal code 2531 { 2532 #if defined(FEAT_GUI) && defined(FEAT_MENU) 2533 if (typebuf.tb_len >= 2 2534 && typebuf.tb_buf[typebuf.tb_off] == K_SPECIAL 2535 && typebuf.tb_buf[typebuf.tb_off + 1] == KS_MENU) 2536 { 2537 int idx; 2538 2539 // Using a menu may cause a break in undo! It's like using 2540 // gotchars(), but without recording or writing to a script 2541 // file. 2542 may_sync_undo(); 2543 del_typebuf(3, 0); 2544 idx = get_menu_index(current_menu, local_State); 2545 if (idx != MENU_INDEX_INVALID) 2546 { 2547 // In Select mode and a Visual mode menu is used: Switch 2548 // to Visual mode temporarily. Append K_SELECT to switch 2549 // back to Select mode. 2550 if (VIsual_active && VIsual_select 2551 && (current_menu->modes & VISUAL)) 2552 { 2553 VIsual_select = FALSE; 2554 (void)ins_typebuf(K_SELECT_STRING, 2555 REMAP_NONE, 0, TRUE, FALSE); 2556 } 2557 ins_typebuf(current_menu->strings[idx], 2558 current_menu->noremap[idx], 2559 0, TRUE, current_menu->silent[idx]); 2560 } 2561 } 2562 #endif // FEAT_GUI && FEAT_MENU 2563 *keylenp = keylen; 2564 return map_result_retry; // try mapping again 2565 } 2566 2567 // Partial match: get some more characters. When a matching mapping 2568 // was found use that one. 2569 if (mp == NULL || keylen < 0) 2570 keylen = KEYLEN_PART_KEY; 2571 else 2572 keylen = mp_match_len; 2573 } 2574 2575 /* 2576 * complete match 2577 */ 2578 if (keylen >= 0 && keylen <= typebuf.tb_len) 2579 { 2580 char_u *map_str; 2581 2582 #ifdef FEAT_EVAL 2583 int save_m_expr; 2584 int save_m_noremap; 2585 int save_m_silent; 2586 char_u *save_m_keys; 2587 char_u *save_m_str; 2588 #else 2589 # define save_m_noremap mp->m_noremap 2590 # define save_m_silent mp->m_silent 2591 #endif 2592 2593 // write chars to script file(s) 2594 if (keylen > typebuf.tb_maplen) 2595 gotchars(typebuf.tb_buf + typebuf.tb_off + typebuf.tb_maplen, 2596 keylen - typebuf.tb_maplen); 2597 2598 cmd_silent = (typebuf.tb_silent > 0); 2599 del_typebuf(keylen, 0); // remove the mapped keys 2600 2601 /* 2602 * Put the replacement string in front of mapstr. 2603 * The depth check catches ":map x y" and ":map y x". 2604 */ 2605 if (++*mapdepth >= p_mmd) 2606 { 2607 emsg(_("E223: recursive mapping")); 2608 if (State & CMDLINE) 2609 redrawcmdline(); 2610 else 2611 setcursor(); 2612 flush_buffers(FLUSH_MINIMAL); 2613 *mapdepth = 0; // for next one 2614 *keylenp = keylen; 2615 return map_result_fail; 2616 } 2617 2618 /* 2619 * In Select mode and a Visual mode mapping is used: Switch to Visual 2620 * mode temporarily. Append K_SELECT to switch back to Select mode. 2621 */ 2622 if (VIsual_active && VIsual_select && (mp->m_mode & VISUAL)) 2623 { 2624 VIsual_select = FALSE; 2625 (void)ins_typebuf(K_SELECT_STRING, REMAP_NONE, 0, TRUE, FALSE); 2626 } 2627 2628 #ifdef FEAT_EVAL 2629 // Copy the values from *mp that are used, because evaluating the 2630 // expression may invoke a function that redefines the mapping, thereby 2631 // making *mp invalid. 2632 save_m_expr = mp->m_expr; 2633 save_m_noremap = mp->m_noremap; 2634 save_m_silent = mp->m_silent; 2635 save_m_keys = NULL; // only saved when needed 2636 save_m_str = NULL; // only saved when needed 2637 2638 /* 2639 * Handle ":map <expr>": evaluate the {rhs} as an expression. Also 2640 * save and restore the command line for "normal :". 2641 */ 2642 if (mp->m_expr) 2643 { 2644 int save_vgetc_busy = vgetc_busy; 2645 int save_may_garbage_collect = may_garbage_collect; 2646 int was_screen_col = screen_cur_col; 2647 int was_screen_row = screen_cur_row; 2648 2649 vgetc_busy = 0; 2650 may_garbage_collect = FALSE; 2651 2652 save_m_keys = vim_strsave(mp->m_keys); 2653 save_m_str = vim_strsave(mp->m_str); 2654 map_str = eval_map_expr(save_m_str, NUL); 2655 2656 // The mapping may do anything, but we expect it to take care of 2657 // redrawing. Do put the cursor back where it was. 2658 windgoto(was_screen_row, was_screen_col); 2659 out_flush(); 2660 2661 vgetc_busy = save_vgetc_busy; 2662 may_garbage_collect = save_may_garbage_collect; 2663 } 2664 else 2665 #endif 2666 map_str = mp->m_str; 2667 2668 /* 2669 * Insert the 'to' part in the typebuf.tb_buf. 2670 * If 'from' field is the same as the start of the 'to' field, don't 2671 * remap the first character (but do allow abbreviations). 2672 * If m_noremap is set, don't remap the whole 'to' part. 2673 */ 2674 if (map_str == NULL) 2675 i = FAIL; 2676 else 2677 { 2678 int noremap; 2679 2680 if (save_m_noremap != REMAP_YES) 2681 noremap = save_m_noremap; 2682 else if ( 2683 #ifdef FEAT_EVAL 2684 STRNCMP(map_str, save_m_keys != NULL ? save_m_keys : mp->m_keys, 2685 (size_t)keylen) 2686 #else 2687 STRNCMP(map_str, mp->m_keys, (size_t)keylen) 2688 #endif 2689 != 0) 2690 noremap = REMAP_YES; 2691 else 2692 noremap = REMAP_SKIP; 2693 i = ins_typebuf(map_str, noremap, 2694 0, TRUE, cmd_silent || save_m_silent); 2695 #ifdef FEAT_EVAL 2696 if (save_m_expr) 2697 vim_free(map_str); 2698 #endif 2699 } 2700 #ifdef FEAT_EVAL 2701 vim_free(save_m_keys); 2702 vim_free(save_m_str); 2703 #endif 2704 *keylenp = keylen; 2705 if (i == FAIL) 2706 return map_result_fail; 2707 return map_result_retry; 2708 } 2709 2710 *keylenp = keylen; 2711 return map_result_nomatch; 2712 } 2713 2714 /* 2715 * unget one character (can only be done once!) 2716 */ 2717 void 2718 vungetc(int c) 2719 { 2720 old_char = c; 2721 old_mod_mask = mod_mask; 2722 old_mouse_row = mouse_row; 2723 old_mouse_col = mouse_col; 2724 } 2725 2726 /* 2727 * Get a byte: 2728 * 1. from the stuffbuffer 2729 * This is used for abbreviated commands like "D" -> "d$". 2730 * Also used to redo a command for ".". 2731 * 2. from the typeahead buffer 2732 * Stores text obtained previously but not used yet. 2733 * Also stores the result of mappings. 2734 * Also used for the ":normal" command. 2735 * 3. from the user 2736 * This may do a blocking wait if "advance" is TRUE. 2737 * 2738 * if "advance" is TRUE (vgetc()): 2739 * Really get the character. 2740 * KeyTyped is set to TRUE in the case the user typed the key. 2741 * KeyStuffed is TRUE if the character comes from the stuff buffer. 2742 * if "advance" is FALSE (vpeekc()): 2743 * Just look whether there is a character available. 2744 * Return NUL if not. 2745 * 2746 * When "no_mapping" is zero, checks for mappings in the current mode. 2747 * Only returns one byte (of a multi-byte character). 2748 * K_SPECIAL and CSI may be escaped, need to get two more bytes then. 2749 */ 2750 static int 2751 vgetorpeek(int advance) 2752 { 2753 int c, c1; 2754 int timedout = FALSE; // waited for more than 1 second 2755 // for mapping to complete 2756 int mapdepth = 0; // check for recursive mapping 2757 int mode_deleted = FALSE; // set when mode has been deleted 2758 #ifdef FEAT_CMDL_INFO 2759 int new_wcol, new_wrow; 2760 #endif 2761 #ifdef FEAT_GUI 2762 int shape_changed = FALSE; // adjusted cursor shape 2763 #endif 2764 int n; 2765 int old_wcol, old_wrow; 2766 int wait_tb_len; 2767 2768 /* 2769 * This function doesn't work very well when called recursively. This may 2770 * happen though, because of: 2771 * 1. The call to add_to_showcmd(). char_avail() is then used to check if 2772 * there is a character available, which calls this function. In that 2773 * case we must return NUL, to indicate no character is available. 2774 * 2. A GUI callback function writes to the screen, causing a 2775 * wait_return(). 2776 * Using ":normal" can also do this, but it saves the typeahead buffer, 2777 * thus it should be OK. But don't get a key from the user then. 2778 */ 2779 if (vgetc_busy > 0 && ex_normal_busy == 0) 2780 return NUL; 2781 2782 ++vgetc_busy; 2783 2784 if (advance) 2785 KeyStuffed = FALSE; 2786 2787 init_typebuf(); 2788 start_stuff(); 2789 if (advance && typebuf.tb_maplen == 0) 2790 reg_executing = 0; 2791 do 2792 { 2793 /* 2794 * get a character: 1. from the stuffbuffer 2795 */ 2796 if (typeahead_char != 0) 2797 { 2798 c = typeahead_char; 2799 if (advance) 2800 typeahead_char = 0; 2801 } 2802 else 2803 c = read_readbuffers(advance); 2804 if (c != NUL && !got_int) 2805 { 2806 if (advance) 2807 { 2808 // KeyTyped = FALSE; When the command that stuffed something 2809 // was typed, behave like the stuffed command was typed. 2810 // needed for CTRL-W CTRL-] to open a fold, for example. 2811 KeyStuffed = TRUE; 2812 } 2813 if (typebuf.tb_no_abbr_cnt == 0) 2814 typebuf.tb_no_abbr_cnt = 1; // no abbreviations now 2815 } 2816 else 2817 { 2818 /* 2819 * Loop until we either find a matching mapped key, or we 2820 * are sure that it is not a mapped key. 2821 * If a mapped key sequence is found we go back to the start to 2822 * try re-mapping. 2823 */ 2824 for (;;) 2825 { 2826 long wait_time; 2827 int keylen = 0; 2828 #ifdef FEAT_CMDL_INFO 2829 int showcmd_idx; 2830 #endif 2831 /* 2832 * ui_breakcheck() is slow, don't use it too often when 2833 * inside a mapping. But call it each time for typed 2834 * characters. 2835 */ 2836 if (typebuf.tb_maplen) 2837 line_breakcheck(); 2838 else 2839 ui_breakcheck(); // check for CTRL-C 2840 if (got_int) 2841 { 2842 // flush all input 2843 c = inchar(typebuf.tb_buf, typebuf.tb_buflen - 1, 0L); 2844 2845 /* 2846 * If inchar() returns TRUE (script file was active) or we 2847 * are inside a mapping, get out of Insert mode. 2848 * Otherwise we behave like having gotten a CTRL-C. 2849 * As a result typing CTRL-C in insert mode will 2850 * really insert a CTRL-C. 2851 */ 2852 if ((c || typebuf.tb_maplen) 2853 && (State & (INSERT + CMDLINE))) 2854 c = ESC; 2855 else 2856 c = Ctrl_C; 2857 flush_buffers(FLUSH_INPUT); // flush all typeahead 2858 2859 if (advance) 2860 { 2861 // Also record this character, it might be needed to 2862 // get out of Insert mode. 2863 *typebuf.tb_buf = c; 2864 gotchars(typebuf.tb_buf, 1); 2865 } 2866 cmd_silent = FALSE; 2867 2868 break; 2869 } 2870 else if (typebuf.tb_len > 0) 2871 { 2872 /* 2873 * Check for a mapping in "typebuf". 2874 */ 2875 map_result_T result = handle_mapping( 2876 &keylen, &timedout, &mapdepth); 2877 2878 if (result == map_result_retry) 2879 // try mapping again 2880 continue; 2881 if (result == map_result_fail) 2882 { 2883 // failed, use the outer loop 2884 c = -1; 2885 break; 2886 } 2887 if (result == map_result_get) 2888 { 2889 /* 2890 * get a character: 2. from the typeahead buffer 2891 */ 2892 c = typebuf.tb_buf[typebuf.tb_off]; 2893 if (advance) // remove chars from tb_buf 2894 { 2895 cmd_silent = (typebuf.tb_silent > 0); 2896 if (typebuf.tb_maplen > 0) 2897 KeyTyped = FALSE; 2898 else 2899 { 2900 KeyTyped = TRUE; 2901 // write char to script file(s) 2902 gotchars(typebuf.tb_buf 2903 + typebuf.tb_off, 1); 2904 } 2905 KeyNoremap = typebuf.tb_noremap[ 2906 typebuf.tb_off]; 2907 del_typebuf(1, 0); 2908 } 2909 break; 2910 } 2911 2912 // not enough characters, get more 2913 } 2914 2915 /* 2916 * get a character: 3. from the user - handle <Esc> in Insert mode 2917 */ 2918 /* 2919 * Special case: if we get an <ESC> in insert mode and there 2920 * are no more characters at once, we pretend to go out of 2921 * insert mode. This prevents the one second delay after 2922 * typing an <ESC>. If we get something after all, we may 2923 * have to redisplay the mode. That the cursor is in the wrong 2924 * place does not matter. 2925 */ 2926 c = 0; 2927 #ifdef FEAT_CMDL_INFO 2928 new_wcol = curwin->w_wcol; 2929 new_wrow = curwin->w_wrow; 2930 #endif 2931 if ( advance 2932 && typebuf.tb_len == 1 2933 && typebuf.tb_buf[typebuf.tb_off] == ESC 2934 && !no_mapping 2935 && ex_normal_busy == 0 2936 && typebuf.tb_maplen == 0 2937 && (State & INSERT) 2938 && (p_timeout 2939 || (keylen == KEYLEN_PART_KEY && p_ttimeout)) 2940 && (c = inchar(typebuf.tb_buf + typebuf.tb_off 2941 + typebuf.tb_len, 3, 25L)) == 0) 2942 { 2943 colnr_T col = 0, vcol; 2944 char_u *ptr; 2945 2946 if (mode_displayed) 2947 { 2948 unshowmode(TRUE); 2949 mode_deleted = TRUE; 2950 } 2951 #ifdef FEAT_GUI 2952 // may show a different cursor shape 2953 if (gui.in_use && State != NORMAL && !cmd_silent) 2954 { 2955 int save_State; 2956 2957 save_State = State; 2958 State = NORMAL; 2959 gui_update_cursor(TRUE, FALSE); 2960 State = save_State; 2961 shape_changed = TRUE; 2962 } 2963 #endif 2964 validate_cursor(); 2965 old_wcol = curwin->w_wcol; 2966 old_wrow = curwin->w_wrow; 2967 2968 // move cursor left, if possible 2969 if (curwin->w_cursor.col != 0) 2970 { 2971 if (curwin->w_wcol > 0) 2972 { 2973 if (did_ai) 2974 { 2975 /* 2976 * We are expecting to truncate the trailing 2977 * white-space, so find the last non-white 2978 * character -- webb 2979 */ 2980 col = vcol = curwin->w_wcol = 0; 2981 ptr = ml_get_curline(); 2982 while (col < curwin->w_cursor.col) 2983 { 2984 if (!VIM_ISWHITE(ptr[col])) 2985 curwin->w_wcol = vcol; 2986 vcol += lbr_chartabsize(ptr, ptr + col, 2987 (colnr_T)vcol); 2988 if (has_mbyte) 2989 col += (*mb_ptr2len)(ptr + col); 2990 else 2991 ++col; 2992 } 2993 curwin->w_wrow = curwin->w_cline_row 2994 + curwin->w_wcol / curwin->w_width; 2995 curwin->w_wcol %= curwin->w_width; 2996 curwin->w_wcol += curwin_col_off(); 2997 col = 0; // no correction needed 2998 } 2999 else 3000 { 3001 --curwin->w_wcol; 3002 col = curwin->w_cursor.col - 1; 3003 } 3004 } 3005 else if (curwin->w_p_wrap && curwin->w_wrow) 3006 { 3007 --curwin->w_wrow; 3008 curwin->w_wcol = curwin->w_width - 1; 3009 col = curwin->w_cursor.col - 1; 3010 } 3011 if (has_mbyte && col > 0 && curwin->w_wcol > 0) 3012 { 3013 // Correct when the cursor is on the right halve 3014 // of a double-wide character. 3015 ptr = ml_get_curline(); 3016 col -= (*mb_head_off)(ptr, ptr + col); 3017 if ((*mb_ptr2cells)(ptr + col) > 1) 3018 --curwin->w_wcol; 3019 } 3020 } 3021 setcursor(); 3022 out_flush(); 3023 #ifdef FEAT_CMDL_INFO 3024 new_wcol = curwin->w_wcol; 3025 new_wrow = curwin->w_wrow; 3026 #endif 3027 curwin->w_wcol = old_wcol; 3028 curwin->w_wrow = old_wrow; 3029 } 3030 if (c < 0) 3031 continue; // end of input script reached 3032 3033 // Allow mapping for just typed characters. When we get here c 3034 // is the number of extra bytes and typebuf.tb_len is 1. 3035 for (n = 1; n <= c; ++n) 3036 typebuf.tb_noremap[typebuf.tb_off + n] = RM_YES; 3037 typebuf.tb_len += c; 3038 3039 // buffer full, don't map 3040 if (typebuf.tb_len >= typebuf.tb_maplen + MAXMAPLEN) 3041 { 3042 timedout = TRUE; 3043 continue; 3044 } 3045 3046 if (ex_normal_busy > 0) 3047 { 3048 #ifdef FEAT_CMDWIN 3049 static int tc = 0; 3050 #endif 3051 3052 // No typeahead left and inside ":normal". Must return 3053 // something to avoid getting stuck. When an incomplete 3054 // mapping is present, behave like it timed out. 3055 if (typebuf.tb_len > 0) 3056 { 3057 timedout = TRUE; 3058 continue; 3059 } 3060 // When 'insertmode' is set, ESC just beeps in Insert 3061 // mode. Use CTRL-L to make edit() return. 3062 // For the command line only CTRL-C always breaks it. 3063 // For the cmdline window: Alternate between ESC and 3064 // CTRL-C: ESC for most situations and CTRL-C to close the 3065 // cmdline window. 3066 if (p_im && (State & INSERT)) 3067 c = Ctrl_L; 3068 #ifdef FEAT_TERMINAL 3069 else if (terminal_is_active()) 3070 c = K_CANCEL; 3071 #endif 3072 else if ((State & CMDLINE) 3073 #ifdef FEAT_CMDWIN 3074 || (cmdwin_type > 0 && tc == ESC) 3075 #endif 3076 ) 3077 c = Ctrl_C; 3078 else 3079 c = ESC; 3080 #ifdef FEAT_CMDWIN 3081 tc = c; 3082 #endif 3083 // return from main_loop() 3084 if (pending_exmode_active) 3085 exmode_active = EXMODE_NORMAL; 3086 3087 break; 3088 } 3089 3090 /* 3091 * get a character: 3. from the user - update display 3092 */ 3093 // In insert mode a screen update is skipped when characters 3094 // are still available. But when those available characters 3095 // are part of a mapping, and we are going to do a blocking 3096 // wait here. Need to update the screen to display the 3097 // changed text so far. Also for when 'lazyredraw' is set and 3098 // redrawing was postponed because there was something in the 3099 // input buffer (e.g., termresponse). 3100 if (((State & INSERT) != 0 || p_lz) && (State & CMDLINE) == 0 3101 && advance && must_redraw != 0 && !need_wait_return) 3102 { 3103 update_screen(0); 3104 setcursor(); // put cursor back where it belongs 3105 } 3106 3107 /* 3108 * If we have a partial match (and are going to wait for more 3109 * input from the user), show the partially matched characters 3110 * to the user with showcmd. 3111 */ 3112 #ifdef FEAT_CMDL_INFO 3113 showcmd_idx = 0; 3114 #endif 3115 c1 = 0; 3116 if (typebuf.tb_len > 0 && advance && !exmode_active) 3117 { 3118 if (((State & (NORMAL | INSERT)) || State == LANGMAP) 3119 && State != HITRETURN) 3120 { 3121 // this looks nice when typing a dead character map 3122 if (State & INSERT 3123 && ptr2cells(typebuf.tb_buf + typebuf.tb_off 3124 + typebuf.tb_len - 1) == 1) 3125 { 3126 edit_putchar(typebuf.tb_buf[typebuf.tb_off 3127 + typebuf.tb_len - 1], FALSE); 3128 setcursor(); // put cursor back where it belongs 3129 c1 = 1; 3130 } 3131 #ifdef FEAT_CMDL_INFO 3132 // need to use the col and row from above here 3133 old_wcol = curwin->w_wcol; 3134 old_wrow = curwin->w_wrow; 3135 curwin->w_wcol = new_wcol; 3136 curwin->w_wrow = new_wrow; 3137 push_showcmd(); 3138 if (typebuf.tb_len > SHOWCMD_COLS) 3139 showcmd_idx = typebuf.tb_len - SHOWCMD_COLS; 3140 while (showcmd_idx < typebuf.tb_len) 3141 (void)add_to_showcmd( 3142 typebuf.tb_buf[typebuf.tb_off + showcmd_idx++]); 3143 curwin->w_wcol = old_wcol; 3144 curwin->w_wrow = old_wrow; 3145 #endif 3146 } 3147 3148 // this looks nice when typing a dead character map 3149 if ((State & CMDLINE) 3150 #if defined(FEAT_CRYPT) || defined(FEAT_EVAL) 3151 && cmdline_star == 0 3152 #endif 3153 && ptr2cells(typebuf.tb_buf + typebuf.tb_off 3154 + typebuf.tb_len - 1) == 1) 3155 { 3156 putcmdline(typebuf.tb_buf[typebuf.tb_off 3157 + typebuf.tb_len - 1], FALSE); 3158 c1 = 1; 3159 } 3160 } 3161 3162 /* 3163 * get a character: 3. from the user - get it 3164 */ 3165 if (typebuf.tb_len == 0) 3166 // timedout may have been set while waiting for a mapping 3167 // that has a <Nop> RHS. 3168 timedout = FALSE; 3169 3170 if (advance) 3171 { 3172 if (typebuf.tb_len == 0 3173 || !(p_timeout 3174 || (p_ttimeout && keylen == KEYLEN_PART_KEY))) 3175 // blocking wait 3176 wait_time = -1L; 3177 else if (keylen == KEYLEN_PART_KEY && p_ttm >= 0) 3178 wait_time = p_ttm; 3179 else 3180 wait_time = p_tm; 3181 } 3182 else 3183 wait_time = 0; 3184 3185 wait_tb_len = typebuf.tb_len; 3186 c = inchar(typebuf.tb_buf + typebuf.tb_off + typebuf.tb_len, 3187 typebuf.tb_buflen - typebuf.tb_off - typebuf.tb_len - 1, 3188 wait_time); 3189 3190 #ifdef FEAT_CMDL_INFO 3191 if (showcmd_idx != 0) 3192 pop_showcmd(); 3193 #endif 3194 if (c1 == 1) 3195 { 3196 if (State & INSERT) 3197 edit_unputchar(); 3198 if (State & CMDLINE) 3199 unputcmdline(); 3200 else 3201 setcursor(); // put cursor back where it belongs 3202 } 3203 3204 if (c < 0) 3205 continue; // end of input script reached 3206 if (c == NUL) // no character available 3207 { 3208 if (!advance) 3209 break; 3210 if (wait_tb_len > 0) // timed out 3211 { 3212 timedout = TRUE; 3213 continue; 3214 } 3215 } 3216 else 3217 { // allow mapping for just typed characters 3218 while (typebuf.tb_buf[typebuf.tb_off 3219 + typebuf.tb_len] != NUL) 3220 typebuf.tb_noremap[typebuf.tb_off 3221 + typebuf.tb_len++] = RM_YES; 3222 #ifdef HAVE_INPUT_METHOD 3223 // Get IM status right after getting keys, not after the 3224 // timeout for a mapping (focus may be lost by then). 3225 vgetc_im_active = im_get_status(); 3226 #endif 3227 } 3228 } // for (;;) 3229 } // if (!character from stuffbuf) 3230 3231 // if advance is FALSE don't loop on NULs 3232 } while ((c < 0 && c != K_CANCEL) || (advance && c == NUL)); 3233 3234 /* 3235 * The "INSERT" message is taken care of here: 3236 * if we return an ESC to exit insert mode, the message is deleted 3237 * if we don't return an ESC but deleted the message before, redisplay it 3238 */ 3239 if (advance && p_smd && msg_silent == 0 && (State & INSERT)) 3240 { 3241 if (c == ESC && !mode_deleted && !no_mapping && mode_displayed) 3242 { 3243 if (typebuf.tb_len && !KeyTyped) 3244 redraw_cmdline = TRUE; // delete mode later 3245 else 3246 unshowmode(FALSE); 3247 } 3248 else if (c != ESC && mode_deleted) 3249 { 3250 if (typebuf.tb_len && !KeyTyped) 3251 redraw_cmdline = TRUE; // show mode later 3252 else 3253 showmode(); 3254 } 3255 } 3256 #ifdef FEAT_GUI 3257 // may unshow different cursor shape 3258 if (gui.in_use && shape_changed) 3259 gui_update_cursor(TRUE, FALSE); 3260 #endif 3261 if (timedout && c == ESC) 3262 { 3263 char_u nop_buf[3]; 3264 3265 // When recording there will be no timeout. Add a <Nop> after the ESC 3266 // to avoid that it forms a key code with following characters. 3267 nop_buf[0] = K_SPECIAL; 3268 nop_buf[1] = KS_EXTRA; 3269 nop_buf[2] = KE_NOP; 3270 gotchars(nop_buf, 3); 3271 } 3272 3273 --vgetc_busy; 3274 3275 return c; 3276 } 3277 3278 /* 3279 * inchar() - get one character from 3280 * 1. a scriptfile 3281 * 2. the keyboard 3282 * 3283 * As many characters as we can get (up to 'maxlen') are put in "buf" and 3284 * NUL terminated (buffer length must be 'maxlen' + 1). 3285 * Minimum for "maxlen" is 3!!!! 3286 * 3287 * "tb_change_cnt" is the value of typebuf.tb_change_cnt if "buf" points into 3288 * it. When typebuf.tb_change_cnt changes (e.g., when a message is received 3289 * from a remote client) "buf" can no longer be used. "tb_change_cnt" is 0 3290 * otherwise. 3291 * 3292 * If we got an interrupt all input is read until none is available. 3293 * 3294 * If wait_time == 0 there is no waiting for the char. 3295 * If wait_time == n we wait for n msec for a character to arrive. 3296 * If wait_time == -1 we wait forever for a character to arrive. 3297 * 3298 * Return the number of obtained characters. 3299 * Return -1 when end of input script reached. 3300 */ 3301 static int 3302 inchar( 3303 char_u *buf, 3304 int maxlen, 3305 long wait_time) // milli seconds 3306 { 3307 int len = 0; // init for GCC 3308 int retesc = FALSE; // return ESC with gotint 3309 int script_char; 3310 int tb_change_cnt = typebuf.tb_change_cnt; 3311 3312 if (wait_time == -1L || wait_time > 100L) // flush output before waiting 3313 { 3314 cursor_on(); 3315 out_flush_cursor(FALSE, FALSE); 3316 #if defined(FEAT_GUI) && defined(FEAT_MOUSESHAPE) 3317 if (gui.in_use && postponed_mouseshape) 3318 update_mouseshape(-1); 3319 #endif 3320 } 3321 3322 /* 3323 * Don't reset these when at the hit-return prompt, otherwise a endless 3324 * recursive loop may result (write error in swapfile, hit-return, timeout 3325 * on char wait, flush swapfile, write error....). 3326 */ 3327 if (State != HITRETURN) 3328 { 3329 did_outofmem_msg = FALSE; // display out of memory message (again) 3330 did_swapwrite_msg = FALSE; // display swap file write error again 3331 } 3332 undo_off = FALSE; // restart undo now 3333 3334 /* 3335 * Get a character from a script file if there is one. 3336 * If interrupted: Stop reading script files, close them all. 3337 */ 3338 script_char = -1; 3339 while (scriptin[curscript] != NULL && script_char < 0 3340 #ifdef FEAT_EVAL 3341 && !ignore_script 3342 #endif 3343 ) 3344 { 3345 #ifdef MESSAGE_QUEUE 3346 parse_queued_messages(); 3347 #endif 3348 3349 if (got_int || (script_char = getc(scriptin[curscript])) < 0) 3350 { 3351 // Reached EOF. 3352 // Careful: closescript() frees typebuf.tb_buf[] and buf[] may 3353 // point inside typebuf.tb_buf[]. Don't use buf[] after this! 3354 closescript(); 3355 /* 3356 * When reading script file is interrupted, return an ESC to get 3357 * back to normal mode. 3358 * Otherwise return -1, because typebuf.tb_buf[] has changed. 3359 */ 3360 if (got_int) 3361 retesc = TRUE; 3362 else 3363 return -1; 3364 } 3365 else 3366 { 3367 buf[0] = script_char; 3368 len = 1; 3369 } 3370 } 3371 3372 if (script_char < 0) // did not get a character from script 3373 { 3374 /* 3375 * If we got an interrupt, skip all previously typed characters and 3376 * return TRUE if quit reading script file. 3377 * Stop reading typeahead when a single CTRL-C was read, 3378 * fill_input_buf() returns this when not able to read from stdin. 3379 * Don't use buf[] here, closescript() may have freed typebuf.tb_buf[] 3380 * and buf may be pointing inside typebuf.tb_buf[]. 3381 */ 3382 if (got_int) 3383 { 3384 #define DUM_LEN MAXMAPLEN * 3 + 3 3385 char_u dum[DUM_LEN + 1]; 3386 3387 for (;;) 3388 { 3389 len = ui_inchar(dum, DUM_LEN, 0L, 0); 3390 if (len == 0 || (len == 1 && dum[0] == 3)) 3391 break; 3392 } 3393 return retesc; 3394 } 3395 3396 /* 3397 * Always flush the output characters when getting input characters 3398 * from the user and not just peeking. 3399 */ 3400 if (wait_time == -1L || wait_time > 10L) 3401 out_flush(); 3402 3403 /* 3404 * Fill up to a third of the buffer, because each character may be 3405 * tripled below. 3406 */ 3407 len = ui_inchar(buf, maxlen / 3, wait_time, tb_change_cnt); 3408 } 3409 3410 // If the typebuf was changed further down, it is like nothing was added by 3411 // this call. 3412 if (typebuf_changed(tb_change_cnt)) 3413 return 0; 3414 3415 // Note the change in the typeahead buffer, this matters for when 3416 // vgetorpeek() is called recursively, e.g. using getchar(1) in a timer 3417 // function. 3418 if (len > 0 && ++typebuf.tb_change_cnt == 0) 3419 typebuf.tb_change_cnt = 1; 3420 3421 return fix_input_buffer(buf, len); 3422 } 3423 3424 /* 3425 * Fix typed characters for use by vgetc() and check_termcode(). 3426 * "buf[]" must have room to triple the number of bytes! 3427 * Returns the new length. 3428 */ 3429 int 3430 fix_input_buffer(char_u *buf, int len) 3431 { 3432 int i; 3433 char_u *p = buf; 3434 3435 /* 3436 * Two characters are special: NUL and K_SPECIAL. 3437 * When compiled With the GUI CSI is also special. 3438 * Replace NUL by K_SPECIAL KS_ZERO KE_FILLER 3439 * Replace K_SPECIAL by K_SPECIAL KS_SPECIAL KE_FILLER 3440 * Replace CSI by K_SPECIAL KS_EXTRA KE_CSI 3441 */ 3442 for (i = len; --i >= 0; ++p) 3443 { 3444 #ifdef FEAT_GUI 3445 // When the GUI is used any character can come after a CSI, don't 3446 // escape it. 3447 if (gui.in_use && p[0] == CSI && i >= 2) 3448 { 3449 p += 2; 3450 i -= 2; 3451 } 3452 # ifndef MSWIN 3453 // When the GUI is not used CSI needs to be escaped. 3454 else if (!gui.in_use && p[0] == CSI) 3455 { 3456 mch_memmove(p + 3, p + 1, (size_t)i); 3457 *p++ = K_SPECIAL; 3458 *p++ = KS_EXTRA; 3459 *p = (int)KE_CSI; 3460 len += 2; 3461 } 3462 # endif 3463 else 3464 #endif 3465 if (p[0] == NUL || (p[0] == K_SPECIAL 3466 // timeout may generate K_CURSORHOLD 3467 && (i < 2 || p[1] != KS_EXTRA || p[2] != (int)KE_CURSORHOLD) 3468 #if defined(MSWIN) && (!defined(FEAT_GUI) || defined(VIMDLL)) 3469 // Win32 console passes modifiers 3470 && ( 3471 # ifdef VIMDLL 3472 gui.in_use || 3473 # endif 3474 (i < 2 || p[1] != KS_MODIFIER)) 3475 #endif 3476 )) 3477 { 3478 mch_memmove(p + 3, p + 1, (size_t)i); 3479 p[2] = K_THIRD(p[0]); 3480 p[1] = K_SECOND(p[0]); 3481 p[0] = K_SPECIAL; 3482 p += 2; 3483 len += 2; 3484 } 3485 } 3486 *p = NUL; // add trailing NUL 3487 return len; 3488 } 3489 3490 #if defined(USE_INPUT_BUF) || defined(PROTO) 3491 /* 3492 * Return TRUE when bytes are in the input buffer or in the typeahead buffer. 3493 * Normally the input buffer would be sufficient, but the server_to_input_buf() 3494 * or feedkeys() may insert characters in the typeahead buffer while we are 3495 * waiting for input to arrive. 3496 */ 3497 int 3498 input_available(void) 3499 { 3500 return (!vim_is_input_buf_empty() 3501 # if defined(FEAT_CLIENTSERVER) || defined(FEAT_EVAL) 3502 || typebuf_was_filled 3503 # endif 3504 ); 3505 } 3506 #endif 3507