1*usr_41.txt* For Vim version 7.4. Last change: 2015 Nov 30 2 3 VIM USER MANUAL - by Bram Moolenaar 4 5 Write a Vim script 6 7 8The Vim script language is used for the startup vimrc file, syntax files, and 9many other things. This chapter explains the items that can be used in a Vim 10script. There are a lot of them, thus this is a long chapter. 11 12|41.1| Introduction 13|41.2| Variables 14|41.3| Expressions 15|41.4| Conditionals 16|41.5| Executing an expression 17|41.6| Using functions 18|41.7| Defining a function 19|41.8| Lists and Dictionaries 20|41.9| Exceptions 21|41.10| Various remarks 22|41.11| Writing a plugin 23|41.12| Writing a filetype plugin 24|41.13| Writing a compiler plugin 25|41.14| Writing a plugin that loads quickly 26|41.15| Writing library scripts 27|41.16| Distributing Vim scripts 28 29 Next chapter: |usr_42.txt| Add new menus 30 Previous chapter: |usr_40.txt| Make new commands 31Table of contents: |usr_toc.txt| 32 33============================================================================== 34*41.1* Introduction *vim-script-intro* *script* 35 36Your first experience with Vim scripts is the vimrc file. Vim reads it when 37it starts up and executes the commands. You can set options to values you 38prefer. And you can use any colon command in it (commands that start with a 39":"; these are sometimes referred to as Ex commands or command-line commands). 40 Syntax files are also Vim scripts. As are files that set options for a 41specific file type. A complicated macro can be defined by a separate Vim 42script file. You can think of other uses yourself. 43 44Let's start with a simple example: > 45 46 :let i = 1 47 :while i < 5 48 : echo "count is" i 49 : let i += 1 50 :endwhile 51< 52 Note: 53 The ":" characters are not really needed here. You only need to use 54 them when you type a command. In a Vim script file they can be left 55 out. We will use them here anyway to make clear these are colon 56 commands and make them stand out from Normal mode commands. 57 Note: 58 You can try out the examples by yanking the lines from the text here 59 and executing them with :@" 60 61The output of the example code is: 62 63 count is 1 ~ 64 count is 2 ~ 65 count is 3 ~ 66 count is 4 ~ 67 68In the first line the ":let" command assigns a value to a variable. The 69generic form is: > 70 71 :let {variable} = {expression} 72 73In this case the variable name is "i" and the expression is a simple value, 74the number one. 75 The ":while" command starts a loop. The generic form is: > 76 77 :while {condition} 78 : {statements} 79 :endwhile 80 81The statements until the matching ":endwhile" are executed for as long as the 82condition is true. The condition used here is the expression "i < 5". This 83is true when the variable i is smaller than five. 84 Note: 85 If you happen to write a while loop that keeps on running, you can 86 interrupt it by pressing CTRL-C (CTRL-Break on MS-Windows). 87 88The ":echo" command prints its arguments. In this case the string "count is" 89and the value of the variable i. Since i is one, this will print: 90 91 count is 1 ~ 92 93Then there is the ":let i += 1" command. This does the same thing as 94":let i = i + 1". This adds one to the variable i and assigns the new value 95to the same variable. 96 97The example was given to explain the commands, but would you really want to 98make such a loop it can be written much more compact: > 99 100 :for i in range(1, 4) 101 : echo "count is" i 102 :endfor 103 104We won't explain how |:for| and |range()| work until later. Follow the links 105if you are impatient. 106 107 108THREE KINDS OF NUMBERS 109 110Numbers can be decimal, hexadecimal or octal. A hexadecimal number starts 111with "0x" or "0X". For example "0x1f" is decimal 31. An octal number starts 112with a zero. "017" is decimal 15. Careful: don't put a zero before a decimal 113number, it will be interpreted as an octal number! 114 The ":echo" command always prints decimal numbers. Example: > 115 116 :echo 0x7f 036 117< 127 30 ~ 118 119A number is made negative with a minus sign. This also works for hexadecimal 120and octal numbers. A minus sign is also used for subtraction. Compare this 121with the previous example: > 122 123 :echo 0x7f -036 124< 97 ~ 125 126White space in an expression is ignored. However, it's recommended to use it 127for separating items, to make the expression easier to read. For example, to 128avoid the confusion with a negative number above, put a space between the 129minus sign and the following number: > 130 131 :echo 0x7f - 036 132 133============================================================================== 134*41.2* Variables 135 136A variable name consists of ASCII letters, digits and the underscore. It 137cannot start with a digit. Valid variable names are: 138 139 counter 140 _aap3 141 very_long_variable_name_with_underscores 142 FuncLength 143 LENGTH 144 145Invalid names are "foo+bar" and "6var". 146 These variables are global. To see a list of currently defined variables 147use this command: > 148 149 :let 150 151You can use global variables everywhere. This also means that when the 152variable "count" is used in one script file, it might also be used in another 153file. This leads to confusion at least, and real problems at worst. To avoid 154this, you can use a variable local to a script file by prepending "s:". For 155example, one script contains this code: > 156 157 :let s:count = 1 158 :while s:count < 5 159 : source other.vim 160 : let s:count += 1 161 :endwhile 162 163Since "s:count" is local to this script, you can be sure that sourcing the 164"other.vim" script will not change this variable. If "other.vim" also uses an 165"s:count" variable, it will be a different copy, local to that script. More 166about script-local variables here: |script-variable|. 167 168There are more kinds of variables, see |internal-variables|. The most often 169used ones are: 170 171 b:name variable local to a buffer 172 w:name variable local to a window 173 g:name global variable (also in a function) 174 v:name variable predefined by Vim 175 176 177DELETING VARIABLES 178 179Variables take up memory and show up in the output of the ":let" command. To 180delete a variable use the ":unlet" command. Example: > 181 182 :unlet s:count 183 184This deletes the script-local variable "s:count" to free up the memory it 185uses. If you are not sure if the variable exists, and don't want an error 186message when it doesn't, append !: > 187 188 :unlet! s:count 189 190When a script finishes, the local variables used there will not be 191automatically freed. The next time the script executes, it can still use the 192old value. Example: > 193 194 :if !exists("s:call_count") 195 : let s:call_count = 0 196 :endif 197 :let s:call_count = s:call_count + 1 198 :echo "called" s:call_count "times" 199 200The "exists()" function checks if a variable has already been defined. Its 201argument is the name of the variable you want to check. Not the variable 202itself! If you would do this: > 203 204 :if !exists(s:call_count) 205 206Then the value of s:call_count will be used as the name of the variable that 207exists() checks. That's not what you want. 208 The exclamation mark ! negates a value. When the value was true, it 209becomes false. When it was false, it becomes true. You can read it as "not". 210Thus "if !exists()" can be read as "if not exists()". 211 What Vim calls true is anything that is not zero. Zero is false. 212 Note: 213 Vim automatically converts a string to a number when it is looking for 214 a number. When using a string that doesn't start with a digit the 215 resulting number is zero. Thus look out for this: > 216 :if "true" 217< The "true" will be interpreted as a zero, thus as false! 218 219 220STRING VARIABLES AND CONSTANTS 221 222So far only numbers were used for the variable value. Strings can be used as 223well. Numbers and strings are the basic types of variables that Vim supports. 224The type is dynamic, it is set each time when assigning a value to the 225variable with ":let". More about types in |41.8|. 226 To assign a string value to a variable, you need to use a string constant. 227There are two types of these. First the string in double quotes: > 228 229 :let name = "peter" 230 :echo name 231< peter ~ 232 233If you want to include a double quote inside the string, put a backslash in 234front of it: > 235 236 :let name = "\"peter\"" 237 :echo name 238< "peter" ~ 239 240To avoid the need for a backslash, you can use a string in single quotes: > 241 242 :let name = '"peter"' 243 :echo name 244< "peter" ~ 245 246Inside a single-quote string all the characters are as they are. Only the 247single quote itself is special: you need to use two to get one. A backslash 248is taken literally, thus you can't use it to change the meaning of the 249character after it. 250 In double-quote strings it is possible to use special characters. Here are 251a few useful ones: 252 253 \t <Tab> 254 \n <NL>, line break 255 \r <CR>, <Enter> 256 \e <Esc> 257 \b <BS>, backspace 258 \" " 259 \\ \, backslash 260 \<Esc> <Esc> 261 \<C-W> CTRL-W 262 263The last two are just examples. The "\<name>" form can be used to include 264the special key "name". 265 See |expr-quote| for the full list of special items in a string. 266 267============================================================================== 268*41.3* Expressions 269 270Vim has a rich, yet simple way to handle expressions. You can read the 271definition here: |expression-syntax|. Here we will show the most common 272items. 273 The numbers, strings and variables mentioned above are expressions by 274themselves. Thus everywhere an expression is expected, you can use a number, 275string or variable. Other basic items in an expression are: 276 277 $NAME environment variable 278 &name option 279 @r register 280 281Examples: > 282 283 :echo "The value of 'tabstop' is" &ts 284 :echo "Your home directory is" $HOME 285 :if @a > 5 286 287The &name form can be used to save an option value, set it to a new value, 288do something and restore the old value. Example: > 289 290 :let save_ic = &ic 291 :set noic 292 :/The Start/,$delete 293 :let &ic = save_ic 294 295This makes sure the "The Start" pattern is used with the 'ignorecase' option 296off. Still, it keeps the value that the user had set. (Another way to do 297this would be to add "\C" to the pattern, see |/\C|.) 298 299 300MATHEMATICS 301 302It becomes more interesting if we combine these basic items. Let's start with 303mathematics on numbers: 304 305 a + b add 306 a - b subtract 307 a * b multiply 308 a / b divide 309 a % b modulo 310 311The usual precedence is used. Example: > 312 313 :echo 10 + 5 * 2 314< 20 ~ 315 316Grouping is done with parentheses. No surprises here. Example: > 317 318 :echo (10 + 5) * 2 319< 30 ~ 320 321Strings can be concatenated with ".". Example: > 322 323 :echo "foo" . "bar" 324< foobar ~ 325 326When the ":echo" command gets multiple arguments, it separates them with a 327space. In the example the argument is a single expression, thus no space is 328inserted. 329 330Borrowed from the C language is the conditional expression: 331 332 a ? b : c 333 334If "a" evaluates to true "b" is used, otherwise "c" is used. Example: > 335 336 :let i = 4 337 :echo i > 5 ? "i is big" : "i is small" 338< i is small ~ 339 340The three parts of the constructs are always evaluated first, thus you could 341see it work as: 342 343 (a) ? (b) : (c) 344 345============================================================================== 346*41.4* Conditionals 347 348The ":if" commands executes the following statements, until the matching 349":endif", only when a condition is met. The generic form is: 350 351 :if {condition} 352 {statements} 353 :endif 354 355Only when the expression {condition} evaluates to true (non-zero) will the 356{statements} be executed. These must still be valid commands. If they 357contain garbage, Vim won't be able to find the ":endif". 358 You can also use ":else". The generic form for this is: 359 360 :if {condition} 361 {statements} 362 :else 363 {statements} 364 :endif 365 366The second {statements} is only executed if the first one isn't. 367 Finally, there is ":elseif": 368 369 :if {condition} 370 {statements} 371 :elseif {condition} 372 {statements} 373 :endif 374 375This works just like using ":else" and then "if", but without the need for an 376extra ":endif". 377 A useful example for your vimrc file is checking the 'term' option and 378doing something depending upon its value: > 379 380 :if &term == "xterm" 381 : " Do stuff for xterm 382 :elseif &term == "vt100" 383 : " Do stuff for a vt100 terminal 384 :else 385 : " Do something for other terminals 386 :endif 387 388 389LOGIC OPERATIONS 390 391We already used some of them in the examples. These are the most often used 392ones: 393 394 a == b equal to 395 a != b not equal to 396 a > b greater than 397 a >= b greater than or equal to 398 a < b less than 399 a <= b less than or equal to 400 401The result is one if the condition is met and zero otherwise. An example: > 402 403 :if v:version >= 700 404 : echo "congratulations" 405 :else 406 : echo "you are using an old version, upgrade!" 407 :endif 408 409Here "v:version" is a variable defined by Vim, which has the value of the Vim 410version. 600 is for version 6.0. Version 6.1 has the value 601. This is 411very useful to write a script that works with multiple versions of Vim. 412|v:version| 413 414The logic operators work both for numbers and strings. When comparing two 415strings, the mathematical difference is used. This compares byte values, 416which may not be right for some languages. 417 When comparing a string with a number, the string is first converted to a 418number. This is a bit tricky, because when a string doesn't look like a 419number, the number zero is used. Example: > 420 421 :if 0 == "one" 422 : echo "yes" 423 :endif 424 425This will echo "yes", because "one" doesn't look like a number, thus it is 426converted to the number zero. 427 428For strings there are two more items: 429 430 a =~ b matches with 431 a !~ b does not match with 432 433The left item "a" is used as a string. The right item "b" is used as a 434pattern, like what's used for searching. Example: > 435 436 :if str =~ " " 437 : echo "str contains a space" 438 :endif 439 :if str !~ '\.$' 440 : echo "str does not end in a full stop" 441 :endif 442 443Notice the use of a single-quote string for the pattern. This is useful, 444because backslashes would need to be doubled in a double-quote string and 445patterns tend to contain many backslashes. 446 447The 'ignorecase' option is used when comparing strings. When you don't want 448that, append "#" to match case and "?" to ignore case. Thus "==?" compares 449two strings to be equal while ignoring case. And "!~#" checks if a pattern 450doesn't match, also checking the case of letters. For the full table see 451|expr-==|. 452 453 454MORE LOOPING 455 456The ":while" command was already mentioned. Two more statements can be used 457in between the ":while" and the ":endwhile": 458 459 :continue Jump back to the start of the while loop; the 460 loop continues. 461 :break Jump forward to the ":endwhile"; the loop is 462 discontinued. 463 464Example: > 465 466 :while counter < 40 467 : call do_something() 468 : if skip_flag 469 : continue 470 : endif 471 : if finished_flag 472 : break 473 : endif 474 : sleep 50m 475 :endwhile 476 477The ":sleep" command makes Vim take a nap. The "50m" specifies fifty 478milliseconds. Another example is ":sleep 4", which sleeps for four seconds. 479 480Even more looping can be done with the ":for" command, see below in |41.8|. 481 482============================================================================== 483*41.5* Executing an expression 484 485So far the commands in the script were executed by Vim directly. The 486":execute" command allows executing the result of an expression. This is a 487very powerful way to build commands and execute them. 488 An example is to jump to a tag, which is contained in a variable: > 489 490 :execute "tag " . tag_name 491 492The "." is used to concatenate the string "tag " with the value of variable 493"tag_name". Suppose "tag_name" has the value "get_cmd", then the command that 494will be executed is: > 495 496 :tag get_cmd 497 498The ":execute" command can only execute colon commands. The ":normal" command 499executes Normal mode commands. However, its argument is not an expression but 500the literal command characters. Example: > 501 502 :normal gg=G 503 504This jumps to the first line and formats all lines with the "=" operator. 505 To make ":normal" work with an expression, combine ":execute" with it. 506Example: > 507 508 :execute "normal " . normal_commands 509 510The variable "normal_commands" must contain the Normal mode commands. 511 Make sure that the argument for ":normal" is a complete command. Otherwise 512Vim will run into the end of the argument and abort the command. For example, 513if you start Insert mode, you must leave Insert mode as well. This works: > 514 515 :execute "normal Inew text \<Esc>" 516 517This inserts "new text " in the current line. Notice the use of the special 518key "\<Esc>". This avoids having to enter a real <Esc> character in your 519script. 520 521If you don't want to execute a string but evaluate it to get its expression 522value, you can use the eval() function: > 523 524 :let optname = "path" 525 :let optval = eval('&' . optname) 526 527A "&" character is prepended to "path", thus the argument to eval() is 528"&path". The result will then be the value of the 'path' option. 529 The same thing can be done with: > 530 :exe 'let optval = &' . optname 531 532============================================================================== 533*41.6* Using functions 534 535Vim defines many functions and provides a large amount of functionality that 536way. A few examples will be given in this section. You can find the whole 537list here: |functions|. 538 539A function is called with the ":call" command. The parameters are passed in 540between parentheses separated by commas. Example: > 541 542 :call search("Date: ", "W") 543 544This calls the search() function, with arguments "Date: " and "W". The 545search() function uses its first argument as a search pattern and the second 546one as flags. The "W" flag means the search doesn't wrap around the end of 547the file. 548 549A function can be called in an expression. Example: > 550 551 :let line = getline(".") 552 :let repl = substitute(line, '\a', "*", "g") 553 :call setline(".", repl) 554 555The getline() function obtains a line from the current buffer. Its argument 556is a specification of the line number. In this case "." is used, which means 557the line where the cursor is. 558 The substitute() function does something similar to the ":substitute" 559command. The first argument is the string on which to perform the 560substitution. The second argument is the pattern, the third the replacement 561string. Finally, the last arguments are the flags. 562 The setline() function sets the line, specified by the first argument, to a 563new string, the second argument. In this example the line under the cursor is 564replaced with the result of the substitute(). Thus the effect of the three 565statements is equal to: > 566 567 :substitute/\a/*/g 568 569Using the functions becomes more interesting when you do more work before and 570after the substitute() call. 571 572 573FUNCTIONS *function-list* 574 575There are many functions. We will mention them here, grouped by what they are 576used for. You can find an alphabetical list here: |functions|. Use CTRL-] on 577the function name to jump to detailed help on it. 578 579String manipulation: *string-functions* 580 nr2char() get a character by its ASCII value 581 char2nr() get ASCII value of a character 582 str2nr() convert a string to a Number 583 str2float() convert a string to a Float 584 printf() format a string according to % items 585 escape() escape characters in a string with a '\' 586 shellescape() escape a string for use with a shell command 587 fnameescape() escape a file name for use with a Vim command 588 tr() translate characters from one set to another 589 strtrans() translate a string to make it printable 590 tolower() turn a string to lowercase 591 toupper() turn a string to uppercase 592 match() position where a pattern matches in a string 593 matchend() position where a pattern match ends in a string 594 matchstr() match of a pattern in a string 595 matchlist() like matchstr() and also return submatches 596 stridx() first index of a short string in a long string 597 strridx() last index of a short string in a long string 598 strlen() length of a string in bytes 599 strchars() length of a string in characters 600 strwidth() size of string when displayed 601 strdisplaywidth() size of string when displayed, deals with tabs 602 substitute() substitute a pattern match with a string 603 submatch() get a specific match in ":s" and substitute() 604 strpart() get part of a string 605 expand() expand special keywords 606 iconv() convert text from one encoding to another 607 byteidx() byte index of a character in a string 608 byteidxcomp() like byteidx() but count composing characters 609 repeat() repeat a string multiple times 610 eval() evaluate a string expression 611 612List manipulation: *list-functions* 613 get() get an item without error for wrong index 614 len() number of items in a List 615 empty() check if List is empty 616 insert() insert an item somewhere in a List 617 add() append an item to a List 618 extend() append a List to a List 619 remove() remove one or more items from a List 620 copy() make a shallow copy of a List 621 deepcopy() make a full copy of a List 622 filter() remove selected items from a List 623 map() change each List item 624 sort() sort a List 625 reverse() reverse the order of a List 626 uniq() remove copies of repeated adjacent items 627 split() split a String into a List 628 join() join List items into a String 629 range() return a List with a sequence of numbers 630 string() String representation of a List 631 call() call a function with List as arguments 632 index() index of a value in a List 633 max() maximum value in a List 634 min() minimum value in a List 635 count() count number of times a value appears in a List 636 repeat() repeat a List multiple times 637 638Dictionary manipulation: *dict-functions* 639 get() get an entry without an error for a wrong key 640 len() number of entries in a Dictionary 641 has_key() check whether a key appears in a Dictionary 642 empty() check if Dictionary is empty 643 remove() remove an entry from a Dictionary 644 extend() add entries from one Dictionary to another 645 filter() remove selected entries from a Dictionary 646 map() change each Dictionary entry 647 keys() get List of Dictionary keys 648 values() get List of Dictionary values 649 items() get List of Dictionary key-value pairs 650 copy() make a shallow copy of a Dictionary 651 deepcopy() make a full copy of a Dictionary 652 string() String representation of a Dictionary 653 max() maximum value in a Dictionary 654 min() minimum value in a Dictionary 655 count() count number of times a value appears 656 657Floating point computation: *float-functions* 658 float2nr() convert Float to Number 659 abs() absolute value (also works for Number) 660 round() round off 661 ceil() round up 662 floor() round down 663 trunc() remove value after decimal point 664 fmod() remainder of division 665 exp() exponential 666 log() natural logarithm (logarithm to base e) 667 log10() logarithm to base 10 668 pow() value of x to the exponent y 669 sqrt() square root 670 sin() sine 671 cos() cosine 672 tan() tangent 673 asin() arc sine 674 acos() arc cosine 675 atan() arc tangent 676 atan2() arc tangent 677 sinh() hyperbolic sine 678 cosh() hyperbolic cosine 679 tanh() hyperbolic tangent 680 681Other computation: *bitwise-function* 682 and() bitwise AND 683 invert() bitwise invert 684 or() bitwise OR 685 xor() bitwise XOR 686 sha256() SHA-256 hash 687 688Variables: *var-functions* 689 type() type of a variable 690 islocked() check if a variable is locked 691 function() get a Funcref for a function name 692 getbufvar() get a variable value from a specific buffer 693 setbufvar() set a variable in a specific buffer 694 getwinvar() get a variable from specific window 695 gettabvar() get a variable from specific tab page 696 gettabwinvar() get a variable from specific window & tab page 697 setwinvar() set a variable in a specific window 698 settabvar() set a variable in a specific tab page 699 settabwinvar() set a variable in a specific window & tab page 700 garbagecollect() possibly free memory 701 702Cursor and mark position: *cursor-functions* *mark-functions* 703 col() column number of the cursor or a mark 704 virtcol() screen column of the cursor or a mark 705 line() line number of the cursor or mark 706 wincol() window column number of the cursor 707 winline() window line number of the cursor 708 cursor() position the cursor at a line/column 709 screencol() get screen column of the cursor 710 screenrow() get screen row of the cursor 711 getcurpos() get position of the cursor 712 getpos() get position of cursor, mark, etc. 713 setpos() set position of cursor, mark, etc. 714 byte2line() get line number at a specific byte count 715 line2byte() byte count at a specific line 716 diff_filler() get the number of filler lines above a line 717 screenattr() get attribute at a screen line/row 718 screenchar() get character code at a screen line/row 719 720Working with text in the current buffer: *text-functions* 721 getline() get a line or list of lines from the buffer 722 setline() replace a line in the buffer 723 append() append line or list of lines in the buffer 724 indent() indent of a specific line 725 cindent() indent according to C indenting 726 lispindent() indent according to Lisp indenting 727 nextnonblank() find next non-blank line 728 prevnonblank() find previous non-blank line 729 search() find a match for a pattern 730 searchpos() find a match for a pattern 731 searchpair() find the other end of a start/skip/end 732 searchpairpos() find the other end of a start/skip/end 733 searchdecl() search for the declaration of a name 734 735 *system-functions* *file-functions* 736System functions and manipulation of files: 737 glob() expand wildcards 738 globpath() expand wildcards in a number of directories 739 findfile() find a file in a list of directories 740 finddir() find a directory in a list of directories 741 resolve() find out where a shortcut points to 742 fnamemodify() modify a file name 743 pathshorten() shorten directory names in a path 744 simplify() simplify a path without changing its meaning 745 executable() check if an executable program exists 746 exepath() full path of an executable program 747 filereadable() check if a file can be read 748 filewritable() check if a file can be written to 749 getfperm() get the permissions of a file 750 getftype() get the kind of a file 751 isdirectory() check if a directory exists 752 getfsize() get the size of a file 753 getcwd() get the current working directory 754 haslocaldir() check if current window used |:lcd| 755 tempname() get the name of a temporary file 756 mkdir() create a new directory 757 delete() delete a file 758 rename() rename a file 759 system() get the result of a shell command as a string 760 systemlist() get the result of a shell command as a list 761 hostname() name of the system 762 readfile() read a file into a List of lines 763 writefile() write a List of lines into a file 764 765Date and Time: *date-functions* *time-functions* 766 getftime() get last modification time of a file 767 localtime() get current time in seconds 768 strftime() convert time to a string 769 reltime() get the current or elapsed time accurately 770 reltimestr() convert reltime() result to a string 771 772 *buffer-functions* *window-functions* *arg-functions* 773Buffers, windows and the argument list: 774 argc() number of entries in the argument list 775 argidx() current position in the argument list 776 arglistid() get id of the argument list 777 argv() get one entry from the argument list 778 bufexists() check if a buffer exists 779 buflisted() check if a buffer exists and is listed 780 bufloaded() check if a buffer exists and is loaded 781 bufname() get the name of a specific buffer 782 bufnr() get the buffer number of a specific buffer 783 tabpagebuflist() return List of buffers in a tab page 784 tabpagenr() get the number of a tab page 785 tabpagewinnr() like winnr() for a specified tab page 786 winnr() get the window number for the current window 787 bufwinnr() get the window number of a specific buffer 788 winbufnr() get the buffer number of a specific window 789 getbufline() get a list of lines from the specified buffer 790 791Command line: *command-line-functions* 792 getcmdline() get the current command line 793 getcmdpos() get position of the cursor in the command line 794 setcmdpos() set position of the cursor in the command line 795 getcmdtype() return the current command-line type 796 getcmdwintype() return the current command-line window type 797 798Quickfix and location lists: *quickfix-functions* 799 getqflist() list of quickfix errors 800 setqflist() modify a quickfix list 801 getloclist() list of location list items 802 setloclist() modify a location list 803 804Insert mode completion: *completion-functions* 805 complete() set found matches 806 complete_add() add to found matches 807 complete_check() check if completion should be aborted 808 pumvisible() check if the popup menu is displayed 809 810Folding: *folding-functions* 811 foldclosed() check for a closed fold at a specific line 812 foldclosedend() like foldclosed() but return the last line 813 foldlevel() check for the fold level at a specific line 814 foldtext() generate the line displayed for a closed fold 815 foldtextresult() get the text displayed for a closed fold 816 817Syntax and highlighting: *syntax-functions* *highlighting-functions* 818 clearmatches() clear all matches defined by |matchadd()| and 819 the |:match| commands 820 getmatches() get all matches defined by |matchadd()| and 821 the |:match| commands 822 hlexists() check if a highlight group exists 823 hlID() get ID of a highlight group 824 synID() get syntax ID at a specific position 825 synIDattr() get a specific attribute of a syntax ID 826 synIDtrans() get translated syntax ID 827 synstack() get list of syntax IDs at a specific position 828 synconcealed() get info about concealing 829 diff_hlID() get highlight ID for diff mode at a position 830 matchadd() define a pattern to highlight (a "match") 831 matchaddpos() define a list of positions to highlight 832 matcharg() get info about |:match| arguments 833 matchdelete() delete a match defined by |matchadd()| or a 834 |:match| command 835 setmatches() restore a list of matches saved by 836 |getmatches()| 837 838Spelling: *spell-functions* 839 spellbadword() locate badly spelled word at or after cursor 840 spellsuggest() return suggested spelling corrections 841 soundfold() return the sound-a-like equivalent of a word 842 843History: *history-functions* 844 histadd() add an item to a history 845 histdel() delete an item from a history 846 histget() get an item from a history 847 histnr() get highest index of a history list 848 849Interactive: *interactive-functions* 850 browse() put up a file requester 851 browsedir() put up a directory requester 852 confirm() let the user make a choice 853 getchar() get a character from the user 854 getcharmod() get modifiers for the last typed character 855 feedkeys() put characters in the typeahead queue 856 input() get a line from the user 857 inputlist() let the user pick an entry from a list 858 inputsecret() get a line from the user without showing it 859 inputdialog() get a line from the user in a dialog 860 inputsave() save and clear typeahead 861 inputrestore() restore typeahead 862 863GUI: *gui-functions* 864 getfontname() get name of current font being used 865 getwinposx() X position of the GUI Vim window 866 getwinposy() Y position of the GUI Vim window 867 868Vim server: *server-functions* 869 serverlist() return the list of server names 870 remote_send() send command characters to a Vim server 871 remote_expr() evaluate an expression in a Vim server 872 server2client() send a reply to a client of a Vim server 873 remote_peek() check if there is a reply from a Vim server 874 remote_read() read a reply from a Vim server 875 foreground() move the Vim window to the foreground 876 remote_foreground() move the Vim server window to the foreground 877 878Window size and position: *window-size-functions* 879 winheight() get height of a specific window 880 winwidth() get width of a specific window 881 winrestcmd() return command to restore window sizes 882 winsaveview() get view of current window 883 winrestview() restore saved view of current window 884 885Mappings: *mapping-functions* 886 hasmapto() check if a mapping exists 887 mapcheck() check if a matching mapping exists 888 maparg() get rhs of a mapping 889 wildmenumode() check if the wildmode is active 890 891Testing: *test-functions* 892 assert_equal() assert that two expressions values are equal 893 assert_false() assert that an expression is false 894 assert_true() assert that an expression is true 895 896Various: *various-functions* 897 mode() get current editing mode 898 visualmode() last visual mode used 899 exists() check if a variable, function, etc. exists 900 has() check if a feature is supported in Vim 901 changenr() return number of most recent change 902 cscope_connection() check if a cscope connection exists 903 did_filetype() check if a FileType autocommand was used 904 eventhandler() check if invoked by an event handler 905 getpid() get process ID of Vim 906 907 libcall() call a function in an external library 908 libcallnr() idem, returning a number 909 910 undofile() get the name of the undo file 911 undotree() return the state of the undo tree 912 913 getreg() get contents of a register 914 getregtype() get type of a register 915 setreg() set contents and type of a register 916 917 shiftwidth() effective value of 'shiftwidth' 918 919 taglist() get list of matching tags 920 tagfiles() get a list of tags files 921 922 luaeval() evaluate Lua expression 923 mzeval() evaluate |MzScheme| expression 924 py3eval() evaluate Python expression (|+python3|) 925 pyeval() evaluate Python expression (|+python|) 926 927============================================================================== 928*41.7* Defining a function 929 930Vim enables you to define your own functions. The basic function declaration 931begins as follows: > 932 933 :function {name}({var1}, {var2}, ...) 934 : {body} 935 :endfunction 936< 937 Note: 938 Function names must begin with a capital letter. 939 940Let's define a short function to return the smaller of two numbers. It starts 941with this line: > 942 943 :function Min(num1, num2) 944 945This tells Vim that the function is named "Min" and it takes two arguments: 946"num1" and "num2". 947 The first thing you need to do is to check to see which number is smaller: 948 > 949 : if a:num1 < a:num2 950 951The special prefix "a:" tells Vim that the variable is a function argument. 952Let's assign the variable "smaller" the value of the smallest number: > 953 954 : if a:num1 < a:num2 955 : let smaller = a:num1 956 : else 957 : let smaller = a:num2 958 : endif 959 960The variable "smaller" is a local variable. Variables used inside a function 961are local unless prefixed by something like "g:", "a:", or "s:". 962 963 Note: 964 To access a global variable from inside a function you must prepend 965 "g:" to it. Thus "g:today" inside a function is used for the global 966 variable "today", and "today" is another variable, local to the 967 function. 968 969You now use the ":return" statement to return the smallest number to the user. 970Finally, you end the function: > 971 972 : return smaller 973 :endfunction 974 975The complete function definition is as follows: > 976 977 :function Min(num1, num2) 978 : if a:num1 < a:num2 979 : let smaller = a:num1 980 : else 981 : let smaller = a:num2 982 : endif 983 : return smaller 984 :endfunction 985 986For people who like short functions, this does the same thing: > 987 988 :function Min(num1, num2) 989 : if a:num1 < a:num2 990 : return a:num1 991 : endif 992 : return a:num2 993 :endfunction 994 995A user defined function is called in exactly the same way as a built-in 996function. Only the name is different. The Min function can be used like 997this: > 998 999 :echo Min(5, 8) 1000 1001Only now will the function be executed and the lines be interpreted by Vim. 1002If there are mistakes, like using an undefined variable or function, you will 1003now get an error message. When defining the function these errors are not 1004detected. 1005 1006When a function reaches ":endfunction" or ":return" is used without an 1007argument, the function returns zero. 1008 1009To redefine a function that already exists, use the ! for the ":function" 1010command: > 1011 1012 :function! Min(num1, num2, num3) 1013 1014 1015USING A RANGE 1016 1017The ":call" command can be given a line range. This can have one of two 1018meanings. When a function has been defined with the "range" keyword, it will 1019take care of the line range itself. 1020 The function will be passed the variables "a:firstline" and "a:lastline". 1021These will have the line numbers from the range the function was called with. 1022Example: > 1023 1024 :function Count_words() range 1025 : let lnum = a:firstline 1026 : let n = 0 1027 : while lnum <= a:lastline 1028 : let n = n + len(split(getline(lnum))) 1029 : let lnum = lnum + 1 1030 : endwhile 1031 : echo "found " . n . " words" 1032 :endfunction 1033 1034You can call this function with: > 1035 1036 :10,30call Count_words() 1037 1038It will be executed once and echo the number of words. 1039 The other way to use a line range is by defining a function without the 1040"range" keyword. The function will be called once for every line in the 1041range, with the cursor in that line. Example: > 1042 1043 :function Number() 1044 : echo "line " . line(".") . " contains: " . getline(".") 1045 :endfunction 1046 1047If you call this function with: > 1048 1049 :10,15call Number() 1050 1051The function will be called six times. 1052 1053 1054VARIABLE NUMBER OF ARGUMENTS 1055 1056Vim enables you to define functions that have a variable number of arguments. 1057The following command, for instance, defines a function that must have 1 1058argument (start) and can have up to 20 additional arguments: > 1059 1060 :function Show(start, ...) 1061 1062The variable "a:1" contains the first optional argument, "a:2" the second, and 1063so on. The variable "a:0" contains the number of extra arguments. 1064 For example: > 1065 1066 :function Show(start, ...) 1067 : echohl Title 1068 : echo "start is " . a:start 1069 : echohl None 1070 : let index = 1 1071 : while index <= a:0 1072 : echo " Arg " . index . " is " . a:{index} 1073 : let index = index + 1 1074 : endwhile 1075 : echo "" 1076 :endfunction 1077 1078This uses the ":echohl" command to specify the highlighting used for the 1079following ":echo" command. ":echohl None" stops it again. The ":echon" 1080command works like ":echo", but doesn't output a line break. 1081 1082You can also use the a:000 variable, it is a List of all the "..." arguments. 1083See |a:000|. 1084 1085 1086LISTING FUNCTIONS 1087 1088The ":function" command lists the names and arguments of all user-defined 1089functions: > 1090 1091 :function 1092< function Show(start, ...) ~ 1093 function GetVimIndent() ~ 1094 function SetSyn(name) ~ 1095 1096To see what a function does, use its name as an argument for ":function": > 1097 1098 :function SetSyn 1099< 1 if &syntax == '' ~ 1100 2 let &syntax = a:name ~ 1101 3 endif ~ 1102 endfunction ~ 1103 1104 1105DEBUGGING 1106 1107The line number is useful for when you get an error message or when debugging. 1108See |debug-scripts| about debugging mode. 1109 You can also set the 'verbose' option to 12 or higher to see all function 1110calls. Set it to 15 or higher to see every executed line. 1111 1112 1113DELETING A FUNCTION 1114 1115To delete the Show() function: > 1116 1117 :delfunction Show 1118 1119You get an error when the function doesn't exist. 1120 1121 1122FUNCTION REFERENCES 1123 1124Sometimes it can be useful to have a variable point to one function or 1125another. You can do it with the function() function. It turns the name of a 1126function into a reference: > 1127 1128 :let result = 0 " or 1 1129 :function! Right() 1130 : return 'Right!' 1131 :endfunc 1132 :function! Wrong() 1133 : return 'Wrong!' 1134 :endfunc 1135 : 1136 :if result == 1 1137 : let Afunc = function('Right') 1138 :else 1139 : let Afunc = function('Wrong') 1140 :endif 1141 :echo call(Afunc, []) 1142< Wrong! ~ 1143 1144Note that the name of a variable that holds a function reference must start 1145with a capital. Otherwise it could be confused with the name of a builtin 1146function. 1147 The way to invoke a function that a variable refers to is with the call() 1148function. Its first argument is the function reference, the second argument 1149is a List with arguments. 1150 1151Function references are most useful in combination with a Dictionary, as is 1152explained in the next section. 1153 1154============================================================================== 1155*41.8* Lists and Dictionaries 1156 1157So far we have used the basic types String and Number. Vim also supports two 1158composite types: List and Dictionary. 1159 1160A List is an ordered sequence of things. The things can be any kind of value, 1161thus you can make a List of numbers, a List of Lists and even a List of mixed 1162items. To create a List with three strings: > 1163 1164 :let alist = ['aap', 'mies', 'noot'] 1165 1166The List items are enclosed in square brackets and separated by commas. To 1167create an empty List: > 1168 1169 :let alist = [] 1170 1171You can add items to a List with the add() function: > 1172 1173 :let alist = [] 1174 :call add(alist, 'foo') 1175 :call add(alist, 'bar') 1176 :echo alist 1177< ['foo', 'bar'] ~ 1178 1179List concatenation is done with +: > 1180 1181 :echo alist + ['foo', 'bar'] 1182< ['foo', 'bar', 'foo', 'bar'] ~ 1183 1184Or, if you want to extend a List directly: > 1185 1186 :let alist = ['one'] 1187 :call extend(alist, ['two', 'three']) 1188 :echo alist 1189< ['one', 'two', 'three'] ~ 1190 1191Notice that using add() will have a different effect: > 1192 1193 :let alist = ['one'] 1194 :call add(alist, ['two', 'three']) 1195 :echo alist 1196< ['one', ['two', 'three']] ~ 1197 1198The second argument of add() is added as a single item. 1199 1200 1201FOR LOOP 1202 1203One of the nice things you can do with a List is iterate over it: > 1204 1205 :let alist = ['one', 'two', 'three'] 1206 :for n in alist 1207 : echo n 1208 :endfor 1209< one ~ 1210 two ~ 1211 three ~ 1212 1213This will loop over each element in List "alist", assigning the value to 1214variable "n". The generic form of a for loop is: > 1215 1216 :for {varname} in {listexpression} 1217 : {commands} 1218 :endfor 1219 1220To loop a certain number of times you need a List of a specific length. The 1221range() function creates one for you: > 1222 1223 :for a in range(3) 1224 : echo a 1225 :endfor 1226< 0 ~ 1227 1 ~ 1228 2 ~ 1229 1230Notice that the first item of the List that range() produces is zero, thus the 1231last item is one less than the length of the list. 1232 You can also specify the maximum value, the stride and even go backwards: > 1233 1234 :for a in range(8, 4, -2) 1235 : echo a 1236 :endfor 1237< 8 ~ 1238 6 ~ 1239 4 ~ 1240 1241A more useful example, looping over lines in the buffer: > 1242 1243 :for line in getline(1, 20) 1244 : if line =~ "Date: " 1245 : echo matchstr(line, 'Date: \zs.*') 1246 : endif 1247 :endfor 1248 1249This looks into lines 1 to 20 (inclusive) and echoes any date found in there. 1250 1251 1252DICTIONARIES 1253 1254A Dictionary stores key-value pairs. You can quickly lookup a value if you 1255know the key. A Dictionary is created with curly braces: > 1256 1257 :let uk2nl = {'one': 'een', 'two': 'twee', 'three': 'drie'} 1258 1259Now you can lookup words by putting the key in square brackets: > 1260 1261 :echo uk2nl['two'] 1262< twee ~ 1263 1264The generic form for defining a Dictionary is: > 1265 1266 {<key> : <value>, ...} 1267 1268An empty Dictionary is one without any keys: > 1269 1270 {} 1271 1272The possibilities with Dictionaries are numerous. There are various functions 1273for them as well. For example, you can obtain a list of the keys and loop 1274over them: > 1275 1276 :for key in keys(uk2nl) 1277 : echo key 1278 :endfor 1279< three ~ 1280 one ~ 1281 two ~ 1282 1283You will notice the keys are not ordered. You can sort the list to get a 1284specific order: > 1285 1286 :for key in sort(keys(uk2nl)) 1287 : echo key 1288 :endfor 1289< one ~ 1290 three ~ 1291 two ~ 1292 1293But you can never get back the order in which items are defined. For that you 1294need to use a List, it stores items in an ordered sequence. 1295 1296 1297DICTIONARY FUNCTIONS 1298 1299The items in a Dictionary can normally be obtained with an index in square 1300brackets: > 1301 1302 :echo uk2nl['one'] 1303< een ~ 1304 1305A method that does the same, but without so many punctuation characters: > 1306 1307 :echo uk2nl.one 1308< een ~ 1309 1310This only works for a key that is made of ASCII letters, digits and the 1311underscore. You can also assign a new value this way: > 1312 1313 :let uk2nl.four = 'vier' 1314 :echo uk2nl 1315< {'three': 'drie', 'four': 'vier', 'one': 'een', 'two': 'twee'} ~ 1316 1317And now for something special: you can directly define a function and store a 1318reference to it in the dictionary: > 1319 1320 :function uk2nl.translate(line) dict 1321 : return join(map(split(a:line), 'get(self, v:val, "???")')) 1322 :endfunction 1323 1324Let's first try it out: > 1325 1326 :echo uk2nl.translate('three two five one') 1327< drie twee ??? een ~ 1328 1329The first special thing you notice is the "dict" at the end of the ":function" 1330line. This marks the function as being used from a Dictionary. The "self" 1331local variable will then refer to that Dictionary. 1332 Now let's break up the complicated return command: > 1333 1334 split(a:line) 1335 1336The split() function takes a string, chops it into whitespace separated words 1337and returns a list with these words. Thus in the example it returns: > 1338 1339 :echo split('three two five one') 1340< ['three', 'two', 'five', 'one'] ~ 1341 1342This list is the first argument to the map() function. This will go through 1343the list, evaluating its second argument with "v:val" set to the value of each 1344item. This is a shortcut to using a for loop. This command: > 1345 1346 :let alist = map(split(a:line), 'get(self, v:val, "???")') 1347 1348Is equivalent to: > 1349 1350 :let alist = split(a:line) 1351 :for idx in range(len(alist)) 1352 : let alist[idx] = get(self, alist[idx], "???") 1353 :endfor 1354 1355The get() function checks if a key is present in a Dictionary. If it is, then 1356the value is retrieved. If it isn't, then the default value is returned, in 1357the example it's '???'. This is a convenient way to handle situations where a 1358key may not be present and you don't want an error message. 1359 1360The join() function does the opposite of split(): it joins together a list of 1361words, putting a space in between. 1362 This combination of split(), map() and join() is a nice way to filter a line 1363of words in a very compact way. 1364 1365 1366OBJECT ORIENTED PROGRAMMING 1367 1368Now that you can put both values and functions in a Dictionary, you can 1369actually use a Dictionary like an object. 1370 Above we used a Dictionary for translating Dutch to English. We might want 1371to do the same for other languages. Let's first make an object (aka 1372Dictionary) that has the translate function, but no words to translate: > 1373 1374 :let transdict = {} 1375 :function transdict.translate(line) dict 1376 : return join(map(split(a:line), 'get(self.words, v:val, "???")')) 1377 :endfunction 1378 1379It's slightly different from the function above, using 'self.words' to lookup 1380word translations. But we don't have a self.words. Thus you could call this 1381an abstract class. 1382 1383Now we can instantiate a Dutch translation object: > 1384 1385 :let uk2nl = copy(transdict) 1386 :let uk2nl.words = {'one': 'een', 'two': 'twee', 'three': 'drie'} 1387 :echo uk2nl.translate('three one') 1388< drie een ~ 1389 1390And a German translator: > 1391 1392 :let uk2de = copy(transdict) 1393 :let uk2de.words = {'one': 'ein', 'two': 'zwei', 'three': 'drei'} 1394 :echo uk2de.translate('three one') 1395< drei ein ~ 1396 1397You see that the copy() function is used to make a copy of the "transdict" 1398Dictionary and then the copy is changed to add the words. The original 1399remains the same, of course. 1400 1401Now you can go one step further, and use your preferred translator: > 1402 1403 :if $LANG =~ "de" 1404 : let trans = uk2de 1405 :else 1406 : let trans = uk2nl 1407 :endif 1408 :echo trans.translate('one two three') 1409< een twee drie ~ 1410 1411Here "trans" refers to one of the two objects (Dictionaries). No copy is 1412made. More about List and Dictionary identity can be found at |list-identity| 1413and |dict-identity|. 1414 1415Now you might use a language that isn't supported. You can overrule the 1416translate() function to do nothing: > 1417 1418 :let uk2uk = copy(transdict) 1419 :function! uk2uk.translate(line) 1420 : return a:line 1421 :endfunction 1422 :echo uk2uk.translate('three one wladiwostok') 1423< three one wladiwostok ~ 1424 1425Notice that a ! was used to overwrite the existing function reference. Now 1426use "uk2uk" when no recognized language is found: > 1427 1428 :if $LANG =~ "de" 1429 : let trans = uk2de 1430 :elseif $LANG =~ "nl" 1431 : let trans = uk2nl 1432 :else 1433 : let trans = uk2uk 1434 :endif 1435 :echo trans.translate('one two three') 1436< one two three ~ 1437 1438For further reading see |Lists| and |Dictionaries|. 1439 1440============================================================================== 1441*41.9* Exceptions 1442 1443Let's start with an example: > 1444 1445 :try 1446 : read ~/templates/pascal.tmpl 1447 :catch /E484:/ 1448 : echo "Sorry, the Pascal template file cannot be found." 1449 :endtry 1450 1451The ":read" command will fail if the file does not exist. Instead of 1452generating an error message, this code catches the error and gives the user a 1453nice message. 1454 1455For the commands in between ":try" and ":endtry" errors are turned into 1456exceptions. An exception is a string. In the case of an error the string 1457contains the error message. And every error message has a number. In this 1458case, the error we catch contains "E484:". This number is guaranteed to stay 1459the same (the text may change, e.g., it may be translated). 1460 1461When the ":read" command causes another error, the pattern "E484:" will not 1462match in it. Thus this exception will not be caught and result in the usual 1463error message. 1464 1465You might be tempted to do this: > 1466 1467 :try 1468 : read ~/templates/pascal.tmpl 1469 :catch 1470 : echo "Sorry, the Pascal template file cannot be found." 1471 :endtry 1472 1473This means all errors are caught. But then you will not see errors that are 1474useful, such as "E21: Cannot make changes, 'modifiable' is off". 1475 1476Another useful mechanism is the ":finally" command: > 1477 1478 :let tmp = tempname() 1479 :try 1480 : exe ".,$write " . tmp 1481 : exe "!filter " . tmp 1482 : .,$delete 1483 : exe "$read " . tmp 1484 :finally 1485 : call delete(tmp) 1486 :endtry 1487 1488This filters the lines from the cursor until the end of the file through the 1489"filter" command, which takes a file name argument. No matter if the 1490filtering works, something goes wrong in between ":try" and ":finally" or the 1491user cancels the filtering by pressing CTRL-C, the "call delete(tmp)" is 1492always executed. This makes sure you don't leave the temporary file behind. 1493 1494More information about exception handling can be found in the reference 1495manual: |exception-handling|. 1496 1497============================================================================== 1498*41.10* Various remarks 1499 1500Here is a summary of items that apply to Vim scripts. They are also mentioned 1501elsewhere, but form a nice checklist. 1502 1503The end-of-line character depends on the system. For Unix a single <NL> 1504character is used. For MS-DOS, Windows, OS/2 and the like, <CR><LF> is used. 1505This is important when using mappings that end in a <CR>. See |:source_crnl|. 1506 1507 1508WHITE SPACE 1509 1510Blank lines are allowed and ignored. 1511 1512Leading whitespace characters (blanks and TABs) are always ignored. The 1513whitespaces between parameters (e.g. between the 'set' and the 'cpoptions' in 1514the example below) are reduced to one blank character and plays the role of a 1515separator, the whitespaces after the last (visible) character may or may not 1516be ignored depending on the situation, see below. 1517 1518For a ":set" command involving the "=" (equal) sign, such as in: > 1519 1520 :set cpoptions =aABceFst 1521 1522the whitespace immediately before the "=" sign is ignored. But there can be 1523no whitespace after the "=" sign! 1524 1525To include a whitespace character in the value of an option, it must be 1526escaped by a "\" (backslash) as in the following example: > 1527 1528 :set tags=my\ nice\ file 1529 1530The same example written as: > 1531 1532 :set tags=my nice file 1533 1534will issue an error, because it is interpreted as: > 1535 1536 :set tags=my 1537 :set nice 1538 :set file 1539 1540 1541COMMENTS 1542 1543The character " (the double quote mark) starts a comment. Everything after 1544and including this character until the end-of-line is considered a comment and 1545is ignored, except for commands that don't consider comments, as shown in 1546examples below. A comment can start on any character position on the line. 1547 1548There is a little "catch" with comments for some commands. Examples: > 1549 1550 :abbrev dev development " shorthand 1551 :map <F3> o#include " insert include 1552 :execute cmd " do it 1553 :!ls *.c " list C files 1554 1555The abbreviation 'dev' will be expanded to 'development " shorthand'. The 1556mapping of <F3> will actually be the whole line after the 'o# ....' including 1557the '" insert include'. The "execute" command will give an error. The "!" 1558command will send everything after it to the shell, causing an error for an 1559unmatched '"' character. 1560 There can be no comment after ":map", ":abbreviate", ":execute" and "!" 1561commands (there are a few more commands with this restriction). For the 1562":map", ":abbreviate" and ":execute" commands there is a trick: > 1563 1564 :abbrev dev development|" shorthand 1565 :map <F3> o#include|" insert include 1566 :execute cmd |" do it 1567 1568With the '|' character the command is separated from the next one. And that 1569next command is only a comment. For the last command you need to do two 1570things: |:execute| and use '|': > 1571 :exe '!ls *.c' |" list C files 1572 1573Notice that there is no white space before the '|' in the abbreviation and 1574mapping. For these commands, any character until the end-of-line or '|' is 1575included. As a consequence of this behavior, you don't always see that 1576trailing whitespace is included: > 1577 1578 :map <F4> o#include 1579 1580To spot these problems, you can set the 'list' option when editing vimrc 1581files. 1582 1583For Unix there is one special way to comment a line, that allows making a Vim 1584script executable: > 1585 #!/usr/bin/env vim -S 1586 echo "this is a Vim script" 1587 quit 1588 1589The "#" command by itself lists a line with the line number. Adding an 1590exclamation mark changes it into doing nothing, so that you can add the shell 1591command to execute the rest of the file. |:#!| |-S| 1592 1593 1594PITFALLS 1595 1596Even bigger problem arises in the following example: > 1597 1598 :map ,ab o#include 1599 :unmap ,ab 1600 1601Here the unmap command will not work, because it tries to unmap ",ab ". This 1602does not exist as a mapped sequence. An error will be issued, which is very 1603hard to identify, because the ending whitespace character in ":unmap ,ab " is 1604not visible. 1605 1606And this is the same as what happens when one uses a comment after an 'unmap' 1607command: > 1608 1609 :unmap ,ab " comment 1610 1611Here the comment part will be ignored. However, Vim will try to unmap 1612',ab ', which does not exist. Rewrite it as: > 1613 1614 :unmap ,ab| " comment 1615 1616 1617RESTORING THE VIEW 1618 1619Sometimes you want to make a change and go back to where the cursor was. 1620Restoring the relative position would also be nice, so that the same line 1621appears at the top of the window. 1622 This example yanks the current line, puts it above the first line in the 1623file and then restores the view: > 1624 1625 map ,p ma"aYHmbgg"aP`bzt`a 1626 1627What this does: > 1628 ma"aYHmbgg"aP`bzt`a 1629< ma set mark a at cursor position 1630 "aY yank current line into register a 1631 Hmb go to top line in window and set mark b there 1632 gg go to first line in file 1633 "aP put the yanked line above it 1634 `b go back to top line in display 1635 zt position the text in the window as before 1636 `a go back to saved cursor position 1637 1638 1639PACKAGING 1640 1641To avoid your function names to interfere with functions that you get from 1642others, use this scheme: 1643- Prepend a unique string before each function name. I often use an 1644 abbreviation. For example, "OW_" is used for the option window functions. 1645- Put the definition of your functions together in a file. Set a global 1646 variable to indicate that the functions have been loaded. When sourcing the 1647 file again, first unload the functions. 1648Example: > 1649 1650 " This is the XXX package 1651 1652 if exists("XXX_loaded") 1653 delfun XXX_one 1654 delfun XXX_two 1655 endif 1656 1657 function XXX_one(a) 1658 ... body of function ... 1659 endfun 1660 1661 function XXX_two(b) 1662 ... body of function ... 1663 endfun 1664 1665 let XXX_loaded = 1 1666 1667============================================================================== 1668*41.11* Writing a plugin *write-plugin* 1669 1670You can write a Vim script in such a way that many people can use it. This is 1671called a plugin. Vim users can drop your script in their plugin directory and 1672use its features right away |add-plugin|. 1673 1674There are actually two types of plugins: 1675 1676 global plugins: For all types of files. 1677filetype plugins: Only for files of a specific type. 1678 1679In this section the first type is explained. Most items are also relevant for 1680writing filetype plugins. The specifics for filetype plugins are in the next 1681section |write-filetype-plugin|. 1682 1683 1684NAME 1685 1686First of all you must choose a name for your plugin. The features provided 1687by the plugin should be clear from its name. And it should be unlikely that 1688someone else writes a plugin with the same name but which does something 1689different. And please limit the name to 8 characters, to avoid problems on 1690old Windows systems. 1691 1692A script that corrects typing mistakes could be called "typecorr.vim". We 1693will use it here as an example. 1694 1695For the plugin to work for everybody, it should follow a few guidelines. This 1696will be explained step-by-step. The complete example plugin is at the end. 1697 1698 1699BODY 1700 1701Let's start with the body of the plugin, the lines that do the actual work: > 1702 1703 14 iabbrev teh the 1704 15 iabbrev otehr other 1705 16 iabbrev wnat want 1706 17 iabbrev synchronisation 1707 18 \ synchronization 1708 19 let s:count = 4 1709 1710The actual list should be much longer, of course. 1711 1712The line numbers have only been added to explain a few things, don't put them 1713in your plugin file! 1714 1715 1716HEADER 1717 1718You will probably add new corrections to the plugin and soon have several 1719versions lying around. And when distributing this file, people will want to 1720know who wrote this wonderful plugin and where they can send remarks. 1721Therefore, put a header at the top of your plugin: > 1722 1723 1 " Vim global plugin for correcting typing mistakes 1724 2 " Last Change: 2000 Oct 15 1725 3 " Maintainer: Bram Moolenaar <[email protected]> 1726 1727About copyright and licensing: Since plugins are very useful and it's hardly 1728worth restricting their distribution, please consider making your plugin 1729either public domain or use the Vim |license|. A short note about this near 1730the top of the plugin should be sufficient. Example: > 1731 1732 4 " License: This file is placed in the public domain. 1733 1734 1735LINE CONTINUATION, AVOIDING SIDE EFFECTS *use-cpo-save* 1736 1737In line 18 above, the line-continuation mechanism is used |line-continuation|. 1738Users with 'compatible' set will run into trouble here, they will get an error 1739message. We can't just reset 'compatible', because that has a lot of side 1740effects. To avoid this, we will set the 'cpoptions' option to its Vim default 1741value and restore it later. That will allow the use of line-continuation and 1742make the script work for most people. It is done like this: > 1743 1744 11 let s:save_cpo = &cpo 1745 12 set cpo&vim 1746 .. 1747 42 let &cpo = s:save_cpo 1748 43 unlet s:save_cpo 1749 1750We first store the old value of 'cpoptions' in the s:save_cpo variable. At 1751the end of the plugin this value is restored. 1752 1753Notice that a script-local variable is used |s:var|. A global variable could 1754already be in use for something else. Always use script-local variables for 1755things that are only used in the script. 1756 1757 1758NOT LOADING 1759 1760It's possible that a user doesn't always want to load this plugin. Or the 1761system administrator has dropped it in the system-wide plugin directory, but a 1762user has his own plugin he wants to use. Then the user must have a chance to 1763disable loading this specific plugin. This will make it possible: > 1764 1765 6 if exists("g:loaded_typecorr") 1766 7 finish 1767 8 endif 1768 9 let g:loaded_typecorr = 1 1769 1770This also avoids that when the script is loaded twice it would cause error 1771messages for redefining functions and cause trouble for autocommands that are 1772added twice. 1773 1774The name is recommended to start with "loaded_" and then the file name of the 1775plugin, literally. The "g:" is prepended just to avoid mistakes when using 1776the variable in a function (without "g:" it would be a variable local to the 1777function). 1778 1779Using "finish" stops Vim from reading the rest of the file, it's much quicker 1780than using if-endif around the whole file. 1781 1782 1783MAPPING 1784 1785Now let's make the plugin more interesting: We will add a mapping that adds a 1786correction for the word under the cursor. We could just pick a key sequence 1787for this mapping, but the user might already use it for something else. To 1788allow the user to define which keys a mapping in a plugin uses, the <Leader> 1789item can be used: > 1790 1791 22 map <unique> <Leader>a <Plug>TypecorrAdd 1792 1793The "<Plug>TypecorrAdd" thing will do the work, more about that further on. 1794 1795The user can set the "mapleader" variable to the key sequence that he wants 1796this mapping to start with. Thus if the user has done: > 1797 1798 let mapleader = "_" 1799 1800the mapping will define "_a". If the user didn't do this, the default value 1801will be used, which is a backslash. Then a map for "\a" will be defined. 1802 1803Note that <unique> is used, this will cause an error message if the mapping 1804already happened to exist. |:map-<unique>| 1805 1806But what if the user wants to define his own key sequence? We can allow that 1807with this mechanism: > 1808 1809 21 if !hasmapto('<Plug>TypecorrAdd') 1810 22 map <unique> <Leader>a <Plug>TypecorrAdd 1811 23 endif 1812 1813This checks if a mapping to "<Plug>TypecorrAdd" already exists, and only 1814defines the mapping from "<Leader>a" if it doesn't. The user then has a 1815chance of putting this in his vimrc file: > 1816 1817 map ,c <Plug>TypecorrAdd 1818 1819Then the mapped key sequence will be ",c" instead of "_a" or "\a". 1820 1821 1822PIECES 1823 1824If a script gets longer, you often want to break up the work in pieces. You 1825can use functions or mappings for this. But you don't want these functions 1826and mappings to interfere with the ones from other scripts. For example, you 1827could define a function Add(), but another script could try to define the same 1828function. To avoid this, we define the function local to the script by 1829prepending it with "s:". 1830 1831We will define a function that adds a new typing correction: > 1832 1833 30 function s:Add(from, correct) 1834 31 let to = input("type the correction for " . a:from . ": ") 1835 32 exe ":iabbrev " . a:from . " " . to 1836 .. 1837 36 endfunction 1838 1839Now we can call the function s:Add() from within this script. If another 1840script also defines s:Add(), it will be local to that script and can only 1841be called from the script it was defined in. There can also be a global Add() 1842function (without the "s:"), which is again another function. 1843 1844<SID> can be used with mappings. It generates a script ID, which identifies 1845the current script. In our typing correction plugin we use it like this: > 1846 1847 24 noremap <unique> <script> <Plug>TypecorrAdd <SID>Add 1848 .. 1849 28 noremap <SID>Add :call <SID>Add(expand("<cword>"), 1)<CR> 1850 1851Thus when a user types "\a", this sequence is invoked: > 1852 1853 \a -> <Plug>TypecorrAdd -> <SID>Add -> :call <SID>Add() 1854 1855If another script would also map <SID>Add, it would get another script ID and 1856thus define another mapping. 1857 1858Note that instead of s:Add() we use <SID>Add() here. That is because the 1859mapping is typed by the user, thus outside of the script. The <SID> is 1860translated to the script ID, so that Vim knows in which script to look for 1861the Add() function. 1862 1863This is a bit complicated, but it's required for the plugin to work together 1864with other plugins. The basic rule is that you use <SID>Add() in mappings and 1865s:Add() in other places (the script itself, autocommands, user commands). 1866 1867We can also add a menu entry to do the same as the mapping: > 1868 1869 26 noremenu <script> Plugin.Add\ Correction <SID>Add 1870 1871The "Plugin" menu is recommended for adding menu items for plugins. In this 1872case only one item is used. When adding more items, creating a submenu is 1873recommended. For example, "Plugin.CVS" could be used for a plugin that offers 1874CVS operations "Plugin.CVS.checkin", "Plugin.CVS.checkout", etc. 1875 1876Note that in line 28 ":noremap" is used to avoid that any other mappings cause 1877trouble. Someone may have remapped ":call", for example. In line 24 we also 1878use ":noremap", but we do want "<SID>Add" to be remapped. This is why 1879"<script>" is used here. This only allows mappings which are local to the 1880script. |:map-<script>| The same is done in line 26 for ":noremenu". 1881|:menu-<script>| 1882 1883 1884<SID> AND <Plug> *using-<Plug>* 1885 1886Both <SID> and <Plug> are used to avoid that mappings of typed keys interfere 1887with mappings that are only to be used from other mappings. Note the 1888difference between using <SID> and <Plug>: 1889 1890<Plug> is visible outside of the script. It is used for mappings which the 1891 user might want to map a key sequence to. <Plug> is a special code 1892 that a typed key will never produce. 1893 To make it very unlikely that other plugins use the same sequence of 1894 characters, use this structure: <Plug> scriptname mapname 1895 In our example the scriptname is "Typecorr" and the mapname is "Add". 1896 This results in "<Plug>TypecorrAdd". Only the first character of 1897 scriptname and mapname is uppercase, so that we can see where mapname 1898 starts. 1899 1900<SID> is the script ID, a unique identifier for a script. 1901 Internally Vim translates <SID> to "<SNR>123_", where "123" can be any 1902 number. Thus a function "<SID>Add()" will have a name "<SNR>11_Add()" 1903 in one script, and "<SNR>22_Add()" in another. You can see this if 1904 you use the ":function" command to get a list of functions. The 1905 translation of <SID> in mappings is exactly the same, that's how you 1906 can call a script-local function from a mapping. 1907 1908 1909USER COMMAND 1910 1911Now let's add a user command to add a correction: > 1912 1913 38 if !exists(":Correct") 1914 39 command -nargs=1 Correct :call s:Add(<q-args>, 0) 1915 40 endif 1916 1917The user command is defined only if no command with the same name already 1918exists. Otherwise we would get an error here. Overriding the existing user 1919command with ":command!" is not a good idea, this would probably make the user 1920wonder why the command he defined himself doesn't work. |:command| 1921 1922 1923SCRIPT VARIABLES 1924 1925When a variable starts with "s:" it is a script variable. It can only be used 1926inside a script. Outside the script it's not visible. This avoids trouble 1927with using the same variable name in different scripts. The variables will be 1928kept as long as Vim is running. And the same variables are used when sourcing 1929the same script again. |s:var| 1930 1931The fun is that these variables can also be used in functions, autocommands 1932and user commands that are defined in the script. In our example we can add 1933a few lines to count the number of corrections: > 1934 1935 19 let s:count = 4 1936 .. 1937 30 function s:Add(from, correct) 1938 .. 1939 34 let s:count = s:count + 1 1940 35 echo s:count . " corrections now" 1941 36 endfunction 1942 1943First s:count is initialized to 4 in the script itself. When later the 1944s:Add() function is called, it increments s:count. It doesn't matter from 1945where the function was called, since it has been defined in the script, it 1946will use the local variables from this script. 1947 1948 1949THE RESULT 1950 1951Here is the resulting complete example: > 1952 1953 1 " Vim global plugin for correcting typing mistakes 1954 2 " Last Change: 2000 Oct 15 1955 3 " Maintainer: Bram Moolenaar <[email protected]> 1956 4 " License: This file is placed in the public domain. 1957 5 1958 6 if exists("g:loaded_typecorr") 1959 7 finish 1960 8 endif 1961 9 let g:loaded_typecorr = 1 1962 10 1963 11 let s:save_cpo = &cpo 1964 12 set cpo&vim 1965 13 1966 14 iabbrev teh the 1967 15 iabbrev otehr other 1968 16 iabbrev wnat want 1969 17 iabbrev synchronisation 1970 18 \ synchronization 1971 19 let s:count = 4 1972 20 1973 21 if !hasmapto('<Plug>TypecorrAdd') 1974 22 map <unique> <Leader>a <Plug>TypecorrAdd 1975 23 endif 1976 24 noremap <unique> <script> <Plug>TypecorrAdd <SID>Add 1977 25 1978 26 noremenu <script> Plugin.Add\ Correction <SID>Add 1979 27 1980 28 noremap <SID>Add :call <SID>Add(expand("<cword>"), 1)<CR> 1981 29 1982 30 function s:Add(from, correct) 1983 31 let to = input("type the correction for " . a:from . ": ") 1984 32 exe ":iabbrev " . a:from . " " . to 1985 33 if a:correct | exe "normal viws\<C-R>\" \b\e" | endif 1986 34 let s:count = s:count + 1 1987 35 echo s:count . " corrections now" 1988 36 endfunction 1989 37 1990 38 if !exists(":Correct") 1991 39 command -nargs=1 Correct :call s:Add(<q-args>, 0) 1992 40 endif 1993 41 1994 42 let &cpo = s:save_cpo 1995 43 unlet s:save_cpo 1996 1997Line 33 wasn't explained yet. It applies the new correction to the word under 1998the cursor. The |:normal| command is used to use the new abbreviation. Note 1999that mappings and abbreviations are expanded here, even though the function 2000was called from a mapping defined with ":noremap". 2001 2002Using "unix" for the 'fileformat' option is recommended. The Vim scripts will 2003then work everywhere. Scripts with 'fileformat' set to "dos" do not work on 2004Unix. Also see |:source_crnl|. To be sure it is set right, do this before 2005writing the file: > 2006 2007 :set fileformat=unix 2008 2009 2010DOCUMENTATION *write-local-help* 2011 2012It's a good idea to also write some documentation for your plugin. Especially 2013when its behavior can be changed by the user. See |add-local-help| for how 2014they are installed. 2015 2016Here is a simple example for a plugin help file, called "typecorr.txt": > 2017 2018 1 *typecorr.txt* Plugin for correcting typing mistakes 2019 2 2020 3 If you make typing mistakes, this plugin will have them corrected 2021 4 automatically. 2022 5 2023 6 There are currently only a few corrections. Add your own if you like. 2024 7 2025 8 Mappings: 2026 9 <Leader>a or <Plug>TypecorrAdd 2027 10 Add a correction for the word under the cursor. 2028 11 2029 12 Commands: 2030 13 :Correct {word} 2031 14 Add a correction for {word}. 2032 15 2033 16 *typecorr-settings* 2034 17 This plugin doesn't have any settings. 2035 2036The first line is actually the only one for which the format matters. It will 2037be extracted from the help file to be put in the "LOCAL ADDITIONS:" section of 2038help.txt |local-additions|. The first "*" must be in the first column of the 2039first line. After adding your help file do ":help" and check that the entries 2040line up nicely. 2041 2042You can add more tags inside ** in your help file. But be careful not to use 2043existing help tags. You would probably use the name of your plugin in most of 2044them, like "typecorr-settings" in the example. 2045 2046Using references to other parts of the help in || is recommended. This makes 2047it easy for the user to find associated help. 2048 2049 2050FILETYPE DETECTION *plugin-filetype* 2051 2052If your filetype is not already detected by Vim, you should create a filetype 2053detection snippet in a separate file. It is usually in the form of an 2054autocommand that sets the filetype when the file name matches a pattern. 2055Example: > 2056 2057 au BufNewFile,BufRead *.foo set filetype=foofoo 2058 2059Write this single-line file as "ftdetect/foofoo.vim" in the first directory 2060that appears in 'runtimepath'. For Unix that would be 2061"~/.vim/ftdetect/foofoo.vim". The convention is to use the name of the 2062filetype for the script name. 2063 2064You can make more complicated checks if you like, for example to inspect the 2065contents of the file to recognize the language. Also see |new-filetype|. 2066 2067 2068SUMMARY *plugin-special* 2069 2070Summary of special things to use in a plugin: 2071 2072s:name Variables local to the script. 2073 2074<SID> Script-ID, used for mappings and functions local to 2075 the script. 2076 2077hasmapto() Function to test if the user already defined a mapping 2078 for functionality the script offers. 2079 2080<Leader> Value of "mapleader", which the user defines as the 2081 keys that plugin mappings start with. 2082 2083:map <unique> Give a warning if a mapping already exists. 2084 2085:noremap <script> Use only mappings local to the script, not global 2086 mappings. 2087 2088exists(":Cmd") Check if a user command already exists. 2089 2090============================================================================== 2091*41.12* Writing a filetype plugin *write-filetype-plugin* *ftplugin* 2092 2093A filetype plugin is like a global plugin, except that it sets options and 2094defines mappings for the current buffer only. See |add-filetype-plugin| for 2095how this type of plugin is used. 2096 2097First read the section on global plugins above |41.11|. All that is said there 2098also applies to filetype plugins. There are a few extras, which are explained 2099here. The essential thing is that a filetype plugin should only have an 2100effect on the current buffer. 2101 2102 2103DISABLING 2104 2105If you are writing a filetype plugin to be used by many people, they need a 2106chance to disable loading it. Put this at the top of the plugin: > 2107 2108 " Only do this when not done yet for this buffer 2109 if exists("b:did_ftplugin") 2110 finish 2111 endif 2112 let b:did_ftplugin = 1 2113 2114This also needs to be used to avoid that the same plugin is executed twice for 2115the same buffer (happens when using an ":edit" command without arguments). 2116 2117Now users can disable loading the default plugin completely by making a 2118filetype plugin with only this line: > 2119 2120 let b:did_ftplugin = 1 2121 2122This does require that the filetype plugin directory comes before $VIMRUNTIME 2123in 'runtimepath'! 2124 2125If you do want to use the default plugin, but overrule one of the settings, 2126you can write the different setting in a script: > 2127 2128 setlocal textwidth=70 2129 2130Now write this in the "after" directory, so that it gets sourced after the 2131distributed "vim.vim" ftplugin |after-directory|. For Unix this would be 2132"~/.vim/after/ftplugin/vim.vim". Note that the default plugin will have set 2133"b:did_ftplugin", but it is ignored here. 2134 2135 2136OPTIONS 2137 2138To make sure the filetype plugin only affects the current buffer use the > 2139 2140 :setlocal 2141 2142command to set options. And only set options which are local to a buffer (see 2143the help for the option to check that). When using |:setlocal| for global 2144options or options local to a window, the value will change for many buffers, 2145and that is not what a filetype plugin should do. 2146 2147When an option has a value that is a list of flags or items, consider using 2148"+=" and "-=" to keep the existing value. Be aware that the user may have 2149changed an option value already. First resetting to the default value and 2150then changing it is often a good idea. Example: > 2151 2152 :setlocal formatoptions& formatoptions+=ro 2153 2154 2155MAPPINGS 2156 2157To make sure mappings will only work in the current buffer use the > 2158 2159 :map <buffer> 2160 2161command. This needs to be combined with the two-step mapping explained above. 2162An example of how to define functionality in a filetype plugin: > 2163 2164 if !hasmapto('<Plug>JavaImport') 2165 map <buffer> <unique> <LocalLeader>i <Plug>JavaImport 2166 endif 2167 noremap <buffer> <unique> <Plug>JavaImport oimport ""<Left><Esc> 2168 2169|hasmapto()| is used to check if the user has already defined a map to 2170<Plug>JavaImport. If not, then the filetype plugin defines the default 2171mapping. This starts with |<LocalLeader>|, which allows the user to select 2172the key(s) he wants filetype plugin mappings to start with. The default is a 2173backslash. 2174"<unique>" is used to give an error message if the mapping already exists or 2175overlaps with an existing mapping. 2176|:noremap| is used to avoid that any other mappings that the user has defined 2177interferes. You might want to use ":noremap <script>" to allow remapping 2178mappings defined in this script that start with <SID>. 2179 2180The user must have a chance to disable the mappings in a filetype plugin, 2181without disabling everything. Here is an example of how this is done for a 2182plugin for the mail filetype: > 2183 2184 " Add mappings, unless the user didn't want this. 2185 if !exists("no_plugin_maps") && !exists("no_mail_maps") 2186 " Quote text by inserting "> " 2187 if !hasmapto('<Plug>MailQuote') 2188 vmap <buffer> <LocalLeader>q <Plug>MailQuote 2189 nmap <buffer> <LocalLeader>q <Plug>MailQuote 2190 endif 2191 vnoremap <buffer> <Plug>MailQuote :s/^/> /<CR> 2192 nnoremap <buffer> <Plug>MailQuote :.,$s/^/> /<CR> 2193 endif 2194 2195Two global variables are used: 2196no_plugin_maps disables mappings for all filetype plugins 2197no_mail_maps disables mappings for a specific filetype 2198 2199 2200USER COMMANDS 2201 2202To add a user command for a specific file type, so that it can only be used in 2203one buffer, use the "-buffer" argument to |:command|. Example: > 2204 2205 :command -buffer Make make %:r.s 2206 2207 2208VARIABLES 2209 2210A filetype plugin will be sourced for each buffer of the type it's for. Local 2211script variables |s:var| will be shared between all invocations. Use local 2212buffer variables |b:var| if you want a variable specifically for one buffer. 2213 2214 2215FUNCTIONS 2216 2217When defining a function, this only needs to be done once. But the filetype 2218plugin will be sourced every time a file with this filetype will be opened. 2219This construct makes sure the function is only defined once: > 2220 2221 :if !exists("*s:Func") 2222 : function s:Func(arg) 2223 : ... 2224 : endfunction 2225 :endif 2226< 2227 2228UNDO *undo_ftplugin* 2229 2230When the user does ":setfiletype xyz" the effect of the previous filetype 2231should be undone. Set the b:undo_ftplugin variable to the commands that will 2232undo the settings in your filetype plugin. Example: > 2233 2234 let b:undo_ftplugin = "setlocal fo< com< tw< commentstring<" 2235 \ . "| unlet b:match_ignorecase b:match_words b:match_skip" 2236 2237Using ":setlocal" with "<" after the option name resets the option to its 2238global value. That is mostly the best way to reset the option value. 2239 2240This does require removing the "C" flag from 'cpoptions' to allow line 2241continuation, as mentioned above |use-cpo-save|. 2242 2243 2244FILE NAME 2245 2246The filetype must be included in the file name |ftplugin-name|. Use one of 2247these three forms: 2248 2249 .../ftplugin/stuff.vim 2250 .../ftplugin/stuff_foo.vim 2251 .../ftplugin/stuff/bar.vim 2252 2253"stuff" is the filetype, "foo" and "bar" are arbitrary names. 2254 2255 2256SUMMARY *ftplugin-special* 2257 2258Summary of special things to use in a filetype plugin: 2259 2260<LocalLeader> Value of "maplocalleader", which the user defines as 2261 the keys that filetype plugin mappings start with. 2262 2263:map <buffer> Define a mapping local to the buffer. 2264 2265:noremap <script> Only remap mappings defined in this script that start 2266 with <SID>. 2267 2268:setlocal Set an option for the current buffer only. 2269 2270:command -buffer Define a user command local to the buffer. 2271 2272exists("*s:Func") Check if a function was already defined. 2273 2274Also see |plugin-special|, the special things used for all plugins. 2275 2276============================================================================== 2277*41.13* Writing a compiler plugin *write-compiler-plugin* 2278 2279A compiler plugin sets options for use with a specific compiler. The user can 2280load it with the |:compiler| command. The main use is to set the 2281'errorformat' and 'makeprg' options. 2282 2283Easiest is to have a look at examples. This command will edit all the default 2284compiler plugins: > 2285 2286 :next $VIMRUNTIME/compiler/*.vim 2287 2288Use |:next| to go to the next plugin file. 2289 2290There are two special items about these files. First is a mechanism to allow 2291a user to overrule or add to the default file. The default files start with: > 2292 2293 :if exists("current_compiler") 2294 : finish 2295 :endif 2296 :let current_compiler = "mine" 2297 2298When you write a compiler file and put it in your personal runtime directory 2299(e.g., ~/.vim/compiler for Unix), you set the "current_compiler" variable to 2300make the default file skip the settings. 2301 *:CompilerSet* 2302The second mechanism is to use ":set" for ":compiler!" and ":setlocal" for 2303":compiler". Vim defines the ":CompilerSet" user command for this. However, 2304older Vim versions don't, thus your plugin should define it then. This is an 2305example: > 2306 2307 if exists(":CompilerSet") != 2 2308 command -nargs=* CompilerSet setlocal <args> 2309 endif 2310 CompilerSet errorformat& " use the default 'errorformat' 2311 CompilerSet makeprg=nmake 2312 2313When you write a compiler plugin for the Vim distribution or for a system-wide 2314runtime directory, use the mechanism mentioned above. When 2315"current_compiler" was already set by a user plugin nothing will be done. 2316 2317When you write a compiler plugin to overrule settings from a default plugin, 2318don't check "current_compiler". This plugin is supposed to be loaded 2319last, thus it should be in a directory at the end of 'runtimepath'. For Unix 2320that could be ~/.vim/after/compiler. 2321 2322============================================================================== 2323*41.14* Writing a plugin that loads quickly *write-plugin-quickload* 2324 2325A plugin may grow and become quite long. The startup delay may become 2326noticeable, while you hardly ever use the plugin. Then it's time for a 2327quickload plugin. 2328 2329The basic idea is that the plugin is loaded twice. The first time user 2330commands and mappings are defined that offer the functionality. The second 2331time the functions that implement the functionality are defined. 2332 2333It may sound surprising that quickload means loading a script twice. What we 2334mean is that it loads quickly the first time, postponing the bulk of the 2335script to the second time, which only happens when you actually use it. When 2336you always use the functionality it actually gets slower! 2337 2338Note that since Vim 7 there is an alternative: use the |autoload| 2339functionality |41.15|. 2340 2341The following example shows how it's done: > 2342 2343 " Vim global plugin for demonstrating quick loading 2344 " Last Change: 2005 Feb 25 2345 " Maintainer: Bram Moolenaar <[email protected]> 2346 " License: This file is placed in the public domain. 2347 2348 if !exists("s:did_load") 2349 command -nargs=* BNRead call BufNetRead(<f-args>) 2350 map <F19> :call BufNetWrite('something')<CR> 2351 2352 let s:did_load = 1 2353 exe 'au FuncUndefined BufNet* source ' . expand('<sfile>') 2354 finish 2355 endif 2356 2357 function BufNetRead(...) 2358 echo 'BufNetRead(' . string(a:000) . ')' 2359 " read functionality here 2360 endfunction 2361 2362 function BufNetWrite(...) 2363 echo 'BufNetWrite(' . string(a:000) . ')' 2364 " write functionality here 2365 endfunction 2366 2367When the script is first loaded "s:did_load" is not set. The commands between 2368the "if" and "endif" will be executed. This ends in a |:finish| command, thus 2369the rest of the script is not executed. 2370 2371The second time the script is loaded "s:did_load" exists and the commands 2372after the "endif" are executed. This defines the (possible long) 2373BufNetRead() and BufNetWrite() functions. 2374 2375If you drop this script in your plugin directory Vim will execute it on 2376startup. This is the sequence of events that happens: 2377 23781. The "BNRead" command is defined and the <F19> key is mapped when the script 2379 is sourced at startup. A |FuncUndefined| autocommand is defined. The 2380 ":finish" command causes the script to terminate early. 2381 23822. The user types the BNRead command or presses the <F19> key. The 2383 BufNetRead() or BufNetWrite() function will be called. 2384 23853. Vim can't find the function and triggers the |FuncUndefined| autocommand 2386 event. Since the pattern "BufNet*" matches the invoked function, the 2387 command "source fname" will be executed. "fname" will be equal to the name 2388 of the script, no matter where it is located, because it comes from 2389 expanding "<sfile>" (see |expand()|). 2390 23914. The script is sourced again, the "s:did_load" variable exists and the 2392 functions are defined. 2393 2394Notice that the functions that are loaded afterwards match the pattern in the 2395|FuncUndefined| autocommand. You must make sure that no other plugin defines 2396functions that match this pattern. 2397 2398============================================================================== 2399*41.15* Writing library scripts *write-library-script* 2400 2401Some functionality will be required in several places. When this becomes more 2402than a few lines you will want to put it in one script and use it from many 2403scripts. We will call that one script a library script. 2404 2405Manually loading a library script is possible, so long as you avoid loading it 2406when it's already done. You can do this with the |exists()| function. 2407Example: > 2408 2409 if !exists('*MyLibFunction') 2410 runtime library/mylibscript.vim 2411 endif 2412 call MyLibFunction(arg) 2413 2414Here you need to know that MyLibFunction() is defined in a script 2415"library/mylibscript.vim" in one of the directories in 'runtimepath'. 2416 2417To make this a bit simpler Vim offers the autoload mechanism. Then the 2418example looks like this: > 2419 2420 call mylib#myfunction(arg) 2421 2422That's a lot simpler, isn't it? Vim will recognize the function name and when 2423it's not defined search for the script "autoload/mylib.vim" in 'runtimepath'. 2424That script must define the "mylib#myfunction()" function. 2425 2426You can put many other functions in the mylib.vim script, you are free to 2427organize your functions in library scripts. But you must use function names 2428where the part before the '#' matches the script name. Otherwise Vim would 2429not know what script to load. 2430 2431If you get really enthusiastic and write lots of library scripts, you may 2432want to use subdirectories. Example: > 2433 2434 call netlib#ftp#read('somefile') 2435 2436For Unix the library script used for this could be: 2437 2438 ~/.vim/autoload/netlib/ftp.vim 2439 2440Where the function is defined like this: > 2441 2442 function netlib#ftp#read(fname) 2443 " Read the file fname through ftp 2444 endfunction 2445 2446Notice that the name the function is defined with is exactly the same as the 2447name used for calling the function. And the part before the last '#' 2448exactly matches the subdirectory and script name. 2449 2450You can use the same mechanism for variables: > 2451 2452 let weekdays = dutch#weekdays 2453 2454This will load the script "autoload/dutch.vim", which should contain something 2455like: > 2456 2457 let dutch#weekdays = ['zondag', 'maandag', 'dinsdag', 'woensdag', 2458 \ 'donderdag', 'vrijdag', 'zaterdag'] 2459 2460Further reading: |autoload|. 2461 2462============================================================================== 2463*41.16* Distributing Vim scripts *distribute-script* 2464 2465Vim users will look for scripts on the Vim website: http://www.vim.org. 2466If you made something that is useful for others, share it! 2467 2468Vim scripts can be used on any system. There might not be a tar or gzip 2469command. If you want to pack files together and/or compress them the "zip" 2470utility is recommended. 2471 2472For utmost portability use Vim itself to pack scripts together. This can be 2473done with the Vimball utility. See |vimball|. 2474 2475It's good if you add a line to allow automatic updating. See |glvs-plugins|. 2476 2477============================================================================== 2478 2479Next chapter: |usr_42.txt| Add new menus 2480 2481Copyright: see |manual-copyright| vim:tw=78:ts=8:ft=help:norl: 2482