• sort

排序,依照行或自定义字段

SYNOPSIS
       sort [OPTION]... [FILE]...
       sort [OPTION]... --files0-from=F
DESCRIPTION
       Write sorted concatenation of all FILE(s) to standard output.
       With no FILE, or when FILE is -, read standard input.
       Mandatory arguments to long options are mandatory for short options too.  Ordering options:
       -b, --ignore-leading-blanks
              ignore leading blanks
       -d, --dictionary-order
              consider only blanks and alphanumeric characters
       -f, --ignore-case
              fold lower case to upper case characters
       -g, --general-numeric-sort
              compare according to general numerical value
       -i, --ignore-nonprinting
              consider only printable characters
       -M, --month-sort
              compare (unknown) < 'JAN' < ... < 'DEC'
       -h, --human-numeric-sort
              compare human readable numbers (e.g., 2K 1G)
       -n, --numeric-sort
              compare according to string numerical value
       -R, --random-sort
              shuffle, but group identical keys.  See shuf(1)
       --random-source=FILE
              get random bytes from FILE
       -r, --reverse
              reverse the result of comparisons
       --sort=WORD
              sort according to WORD: general-numeric -g, human-numeric -h, month -M, numeric -n, random -R, version -V
       -V, --version-sort
              natural sort of (version) numbers within text
       Other options:
       --batch-size=NMERGE
              merge at most NMERGE inputs at once; for more use temp files
       -c, --check, --check=diagnose-first
              check for sorted input; do not sort
       -C, --check=quiet, --check=silent
              like -c, but do not report first bad line
       --compress-program=PROG
              compress temporaries with PROG; decompress them with PROG -d
       --debug
              annotate the part of the line used to sort, and warn about questionable usage to stderr
       --files0-from=F
              read input from the files specified by NUL-terminated names in file F; If F is - then read names from standard input
       -k, --key=KEYDEF
              sort via a key; KEYDEF gives location and type
       -m, --merge
              merge already sorted files; do not sort
       -o, --output=FILE
              write result to FILE instead of standard output
       -s, --stable
              stabilize sort by disabling last-resort comparison
       -S, --buffer-size=SIZE
              use SIZE for main memory buffer
       -t, --field-separator=SEP
              use SEP instead of non-blank to blank transition
       -T, --temporary-directory=DIR
              use DIR for temporaries, not $TMPDIR or /tmp; multiple options specify multiple directories
       --parallel=N
              change the number of sorts run concurrently to N
       -u, --unique
              with -c, check for strict ordering; without -c, output only the first of an equal run
       -z, --zero-terminated
              line delimiter is NUL, not newline
       --help display this help and exit
       --version
              output version information and exit
       KEYDEF  is  F[.C][OPTS][,F[.C][OPTS]] for start and stop position, where F is a field number and C a character position in the field; both are origin 1, and the stop position de‐
       faults to the line's end.  If neither -t nor -b is in effect, characters in a field are counted from the beginning of the preceding whitespace.  OPTS is one or more single-letter
       ordering  options  [bdfgiMhnRrV], which override global ordering options for that key.  If no key is given, use the entire line as the key.  Use --debug to diagnose incorrect key
       usage.
       SIZE may be followed by the following multiplicative suffixes: % 1% of memory, b 1, K 1024 (default), and so on for M, G, T, P, E, Z, Y.
       *** WARNING *** The locale specified by the environment affects sort order.  Set LC_ALL=C to get the traditional sort order that uses native byte values.
AUTHOR
       Written by Mike Haertel and Paul Eggert.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright © 2019 Free Software Foundation, Inc.  License GPLv3+: GNU GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This is free software: you are free to change and redistribute it.  There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       shuf(1), uniq(1)
       Full documentation <https://www.gnu.org/software/coreutils/sort>
       or available locally via: info '(coreutils) sort invocation'
GNU coreutils 8.31                                                                      March 2019                                                                                SORT(1)

 

  • uniq

去重

SYNOPSIS
       uniq [OPTION]... [INPUT [OUTPUT]]
DESCRIPTION
       Filter adjacent matching lines from INPUT (or standard input), writing
       to OUTPUT (or standard output).
       With no options, matching lines are merged to the first occurrence.
       Mandatory arguments to long options are mandatory  for  short  options
       too.
       -c, --count
              prefix lines by the number of occurrences
       -d, --repeated
              only print duplicate lines, one for each group
       -D     print all duplicate lines
       --all-repeated[=METHOD]
              like  -D,  but  allow  separating  groups  with  an empty line;
              METHOD={none(default),prepend,separate}
       -f, --skip-fields=N
              avoid comparing the first N fields
       --group[=METHOD]
              show  all  items,  separating  groups  with  an   empty   line;
              METHOD={separate(default),prepend,append,both}
       -i, --ignore-case
              ignore differences in case when comparing
       -s, --skip-chars=N
              avoid comparing the first N characters
       -u, --unique
              only print unique lines
       -z, --zero-terminated
              line delimiter is NUL, not newline
       -w, --check-chars=N
              compare no more than N characters in lines
       --help display this help and exit
       --version
              output version information and exit
       A  field  is  a  run  of  blanks  (usually  spaces  and/or TABs), then
       non-blank characters.  Fields are skipped before chars.
       Note: 'uniq' does not detect repeated lines unless they are  adjacent.
       You may want to sort the input first, or use 'sort -u' without 'uniq'.
       Also, comparisons honor the rules specified by 'LC_COLLATE'.
AUTHOR
       Written by Richard M. Stallman and David MacKenzie.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright © 2019 Free Software Foundation, Inc.  License  GPLv3+:  GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This  is  free  software:  you are free to change and redistribute it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       comm(1), join(1), sort(1)
       Full documentation <https://www.gnu.org/software/coreutils/uniq>
       or available locally via: info '(coreutils) uniq invocation'
GNU coreutils 8.31                March 2019                          UNIQ(1)

 

  • wc

统计文本行数,字数以及字符数

SYNOPSIS
       wc [OPTION]... [FILE]...
       wc [OPTION]... --files0-from=F
DESCRIPTION
       Print  newline,  word, and byte counts for each FILE, and a total line
       if more than one FILE is specified.  A word is a  non-zero-length  se‐
       quence of characters delimited by white space.
       With no FILE, or when FILE is -, read standard input.
       The  options below may be used to select which counts are printed, al‐
       ways in the following order: newline, word, character,  byte,  maximum
       line length.
       -c, --bytes
              print the byte counts
       -m, --chars
              print the character counts
       -l, --lines
              print the newline counts
       --files0-from=F
              read  input from the files specified by NUL-terminated names in
              file F; If F is - then read names from standard input
       -L, --max-line-length
              print the maximum display width
       -w, --words
              print the word counts
       --help display this help and exit
       --version
              output version information and exit
AUTHOR
       Written by Paul Rubin and David MacKenzie.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright © 2019 Free Software Foundation, Inc.  License  GPLv3+:  GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This  is  free  software:  you are free to change and redistribute it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       Full documentation <https://www.gnu.org/software/coreutils/wc>
       or available locally via: info '(coreutils) wc invocation'
GNU coreutils 8.31                March 2019                            WC(1)

 

  • pr

打印文件

SYNOPSIS
       pr [OPTION]... [FILE]...
DESCRIPTION
       Paginate or columnate FILE(s) for printing.
       With no FILE, or when FILE is -, read standard input.
       Mandatory  arguments  to  long options are mandatory for short options
       too.
       +FIRST_PAGE[:LAST_PAGE], --pages=FIRST_PAGE[:LAST_PAGE]
              begin [stop] printing with page FIRST_[LAST_]PAGE
       -COLUMN, --columns=COLUMN
              output COLUMN columns and print  columns  down,  unless  -a  is
              used. Balance number of lines in the columns on each page
       -a, --across
              print columns across rather than down, used together with -COL‐
              UMN
       -c, --show-control-chars
              use hat notation (^G) and octal backslash notation
       -d, --double-space
              double space the output
       -D, --date-format=FORMAT
              use FORMAT for the header date
       -e[CHAR[WIDTH]], --expand-tabs[=CHAR[WIDTH]]
              expand input CHARs (TABs) to tab WIDTH (8)
       -F, -f, --form-feed
              use form feeds instead of newlines  to  separate  pages  (by  a
              3-line page header with -F or a 5-line header and trailer with‐
              out -F)
       -h, --header=HEADER
              use a centered HEADER instead of filename in page header, -h ""
              prints a blank line, don't use -h""
       -i[CHAR[WIDTH]], --output-tabs[=CHAR[WIDTH]]
              replace spaces with CHARs (TABs) to tab WIDTH (8)
       -J, --join-lines
              merge  full  lines,  turns  off  -W  line truncation, no column
              alignment, --sep-string[=STRING] sets separators
       -l, --length=PAGE_LENGTH
              set the page length to PAGE_LENGTH (66) lines  (default  number
              of  lines  of  text  56,  and  with  -F  63).   implies  -t  if
              PAGE_LENGTH <= 10
       -m, --merge
              print all files in  parallel,  one  in  each  column,  truncate
              lines, but join lines of full length with -J
       -n[SEP[DIGITS]], --number-lines[=SEP[DIGITS]]
              number  lines,  use  DIGITS (5) digits, then SEP (TAB), default
              counting starts with 1st line of input file
       -N, --first-line-number=NUMBER
              start counting with NUMBER at 1st line of  first  page  printed
              (see +FIRST_PAGE)
       -o, --indent=MARGIN
              offset each line with MARGIN (zero) spaces, do not affect -w or
              -W, MARGIN will be added to PAGE_WIDTH
       -r, --no-file-warnings
              omit warning when a file cannot be opened
       -s[CHAR], --separator[=CHAR]
              separate columns by a single character, default for CHAR is the
              <TAB>  character  without  -w  and 'no char' with -w.  -s[CHAR]
              turns off line truncation of all 3 column  options  (-COLUMN|-a
              -COLUMN|-m) except -w is set
       -S[STRING], --sep-string[=STRING]
              separate columns by STRING, without -S: Default separator <TAB>
              with -J and <space> otherwise (same as -S"  "),  no  effect  on
              column options
       -t, --omit-header
              omit page headers and trailers; implied if PAGE_LENGTH <= 10
       -T, --omit-pagination
              omit  page  headers  and  trailers, eliminate any pagination by
              form feeds set in input files
       -v, --show-nonprinting
              use octal backslash notation
       -w, --width=PAGE_WIDTH
              set page width  to  PAGE_WIDTH  (72)  characters  for  multiple
              text-column output only, -s[char] turns off (72)
       -W, --page-width=PAGE_WIDTH
              set  page  width to PAGE_WIDTH (72) characters always, truncate
              lines, except -J option is set, no interference with -S or -s
       --help display this help and exit
       --version
              output version information and exit
AUTHOR
       Written by Pete TerMaat and Roland Huebner.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright © 2019 Free Software Foundation, Inc.  License  GPLv3+:  GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This  is  free  software:  you are free to change and redistribute it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       Full documentation <https://www.gnu.org/software/coreutils/pr>
       or available locally via: info '(coreutils) pr invocation'
GNU coreutils 8.31                March 2019                            PR(1)

 

  • fmt

格式化文本

SYNOPSIS
       fmt [-WIDTH] [OPTION]... [FILE]...
DESCRIPTION
       Reformat  each  paragraph  in the FILE(s), writing to standard output.
       The option -WIDTH is an abbreviated form of --width=DIGITS.
       With no FILE, or when FILE is -, read standard input.
       Mandatory arguments to long options are mandatory  for  short  options
       too.
       -c, --crown-margin
              preserve indentation of first two lines
       -p, --prefix=STRING
              reformat only lines beginning with STRING, reattaching the pre‐
              fix to reformatted lines
       -s, --split-only
              split long lines, but do not refill
       -t, --tagged-paragraph
              indentation of first line different from second
       -u, --uniform-spacing
              one space between words, two after sentences
       -w, --width=WIDTH
              maximum line width (default of 75 columns)
       -g, --goal=WIDTH
              goal width (default of 93% of width)
       --help display this help and exit
       --version
              output version information and exit
AUTHOR
       Written by Ross Paterson.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright © 2019 Free Software Foundation, Inc.  License  GPLv3+:  GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This  is  free  software:  you are free to change and redistribute it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       Full documentation <https://www.gnu.org/software/coreutils/fmt>
       or available locally via: info '(coreutils) fmt invocation'
GNU coreutils 8.31                March 2019                           FMT(1)

 

  • fold

限制文本宽度

SYNOPSIS
       fold [OPTION]... [FILE]...
DESCRIPTION
       Wrap input lines in each FILE, writing to standard output.
       With no FILE, or when FILE is -, read standard input.
       Mandatory  arguments  to  long options are mandatory for short options
       too.
       -b, --bytes
              count bytes rather than columns
       -s, --spaces
              break at spaces
       -w, --width=WIDTH
              use WIDTH columns instead of 80
       --help display this help and exit
       --version
              output version information and exit
AUTHOR
       Written by David MacKenzie.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright © 2019 Free Software Foundation, Inc.  License  GPLv3+:  GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This  is  free  software:  you are free to change and redistribute it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       Full documentation <https://www.gnu.org/software/coreutils/fold>
       or available locally via: info '(coreutils) fold invocation'
GNU coreutils 8.31                March 2019                          FOLD(1)

 

  • head,tail

提取文本开头和结尾

SYNOPSIS
       head [OPTION]... [FILE]...
DESCRIPTION
       Print  the  first 10 lines of each FILE to standard output.  With more
       than one FILE, precede each with a header giving the file name.
       With no FILE, or when FILE is -, read standard input.
       Mandatory arguments to long options are mandatory  for  short  options
       too.
       -c, --bytes=[-]NUM
              print  the  first NUM bytes of each file; with the leading '-',
              print all but the last NUM bytes of each file
       -n, --lines=[-]NUM
              print the first NUM lines instead of the  first  10;  with  the
              leading '-', print all but the last NUM lines of each file
       -q, --quiet, --silent
              never print headers giving file names
       -v, --verbose
              always print headers giving file names
       -z, --zero-terminated
              line delimiter is NUL, not newline
       --help display this help and exit
       --version
              output version information and exit
       NUM  may  have  a  multiplier  suffix:  b  512,  kB  1000,  K 1024, MB
       1000*1000, M 1024*1024, GB 1000*1000*1000, G 1024*1024*1024, and so on
       for  T,  P,  E, Z, Y.  Binary prefixes can be used, too: KiB=K, MiB=M,
       and so on.
AUTHOR
       Written by David MacKenzie and Jim Meyering.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright © 2019 Free Software Foundation, Inc.  License  GPLv3+:  GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This  is  free  software:  you are free to change and redistribute it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       tail(1)
       Full documentation <https://www.gnu.org/software/coreutils/head>
       or available locally via: info '(coreutils) head invocation'
GNU coreutils 8.31                March 2019                          HEAD(1)

SYNOPSIS
       tail [OPTION]... [FILE]...
DESCRIPTION
       Print  the  last  10 lines of each FILE to standard output.  With more
       than one FILE, precede each with a header giving the file name.
       With no FILE, or when FILE is -, read standard input.
       Mandatory arguments to long options are mandatory  for  short  options
       too.
       -c, --bytes=[+]NUM
              output  the  last  NUM bytes; or use -c +NUM to output starting
              with byte NUM of each file
       -f, --follow[={name|descriptor}]
              output appended data as the file grows;
              an absent option argument means 'descriptor'
       -F     same as --follow=name --retry
       -n, --lines=[+]NUM
              output the last NUM lines, instead of the last 10;  or  use  -n
              +NUM to output starting with line NUM
       --max-unchanged-stats=N
              with --follow=name, reopen a FILE which has not
              changed  size  after  N (default 5) iterations to see if it has
              been unlinked or renamed (this is the usual case of rotated log
              files); with inotify, this option is rarely useful
       --pid=PID
              with -f, terminate after process ID, PID dies
       -q, --quiet, --silent
              never output headers giving file names
       --retry
              keep trying to open a file if it is inaccessible
       -s, --sleep-interval=N
              with  -f,  sleep  for approximately N seconds (default 1.0) be‐
              tween iterations; with inotify and --pid=P, check process P  at
              least once every N seconds
       -v, --verbose
              always output headers giving file names
       -z, --zero-terminated
              line delimiter is NUL, not newline
       --help display this help and exit
       --version
              output version information and exit
       NUM  may  have  a  multiplier  suffix:  b  512,  kB  1000,  K 1024, MB
       1000*1000, M 1024*1024, GB 1000*1000*1000, G 1024*1024*1024, and so on
       for  T,  P,  E, Z, Y.  Binary prefixes can be used, too: KiB=K, MiB=M,
       and so on.
       With --follow (-f), tail defaults to following  the  file  descriptor,
       which means that even if a tail'ed file is renamed, tail will continue
       to track its end.  This default behavior is not desirable when you re‐
       ally  want to track the actual name of the file, not the file descrip‐
       tor (e.g., log rotation).   Use  --follow=name  in  that  case.   That
       causes  tail to track the named file in a way that accommodates renam‐
       ing, removal and creation.
AUTHOR
       Written by Paul Rubin, David MacKenzie, Ian Lance Taylor, and Jim Mey‐
       ering.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright  ©  2019 Free Software Foundation, Inc.  License GPLv3+: GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This is free software: you are free to  change  and  redistribute  it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       head(1)
       Full documentation <https://www.gnu.org/software/coreutils/tail>
       or available locally via: info '(coreutils) tail invocation'
GNU coreutils 8.31                March 2019                          TAIL(1)

 

  • cut

取出字段,参数:

-d 字段分隔符

-f 获取字段列

SYNOPSIS
       cut OPTION... [FILE]...
DESCRIPTION
       Print selected parts of lines from each FILE to standard output.
       With no FILE, or when FILE is -, read standard input.
       Mandatory  arguments  to  long options are mandatory for short options
       too.
       -b, --bytes=LIST
              select only these bytes
       -c, --characters=LIST
              select only these characters
       -d, --delimiter=DELIM
              use DELIM instead of TAB for field delimiter
       -f, --fields=LIST
              select only these fields;  also print any line that contains no
              delimiter character, unless the -s option is specified
       -n     (ignored)
       --complement
              complement the set of selected bytes, characters or fields
       -s, --only-delimited
              do not print lines not containing delimiters
       --output-delimiter=STRING
              use  STRING  as  the output delimiter the default is to use the
              input delimiter
       -z, --zero-terminated
              line delimiter is NUL, not newline
       --help display this help and exit
       --version
              output version information and exit
       Use one, and only one of -b, -c or -f.  Each LIST is made  up  of  one
       range,  or many ranges separated by commas.  Selected input is written
       in the same order that it is read, and is written exactly once.   Each
       range is one of:
       N      N'th byte, character or field, counted from 1
       N-     from N'th byte, character or field, to end of line
       N-M    from N'th to M'th (included) byte, character or field
       -M     from first to M'th (included) byte, character or field
AUTHOR
       Written by David M. Ihnat, David MacKenzie, and Jim Meyering.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright  ©  2019 Free Software Foundation, Inc.  License GPLv3+: GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This is free software: you are free to  change  and  redistribute  it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       Full documentation <https://www.gnu.org/software/coreutils/cut>
       or available locally via: info '(coreutils) cut invocation'
GNU coreutils 8.31                March 2019                           CUT(1)

 

  • join

连接字段 -a1 -a2

SYNOPSIS
       join [OPTION]... FILE1 FILE2
DESCRIPTION
       For  each pair of input lines with identical join fields, write a line
       to standard output.  The default join field is the first, delimited by
       blanks.
       When FILE1 or FILE2 (not both) is -, read standard input.
       -a FILENUM
              also print unpairable lines from file FILENUM, where FILENUM is
              1 or 2, corresponding to FILE1 or FILE2
       -e EMPTY
              replace missing input fields with EMPTY
       -i, --ignore-case
              ignore differences in case when comparing fields
       -j FIELD
              equivalent to '-1 FIELD -2 FIELD'
       -o FORMAT
              obey FORMAT while constructing output line
       -t CHAR
              use CHAR as input and output field separator
       -v FILENUM
              like -a FILENUM, but suppress joined output lines
       -1 FIELD
              join on this FIELD of file 1
       -2 FIELD
              join on this FIELD of file 2
       --check-order
              check that the input is correctly sorted,  even  if  all  input
              lines are pairable
       --nocheck-order
              do not check that the input is correctly sorted
       --header
              treat  the first line in each file as field headers, print them
              without trying to pair them
       -z, --zero-terminated
              line delimiter is NUL, not newline
       --help display this help and exit
       --version
              output version information and exit
       Unless -t CHAR is given, leading blanks separate fields  and  are  ig‐
       nored, else fields are separated by CHAR.  Any FIELD is a field number
       counted from 1.  FORMAT is one or more comma or blank separated speci‐
       fications,  each being 'FILENUM.FIELD' or '0'.  Default FORMAT outputs
       the join field, the remaining fields from FILE1, the remaining  fields
       from  FILE2,  all separated by CHAR.  If FORMAT is the keyword 'auto',
       then the first line of each file determines the number of fields  out‐
       put for each line.
       Important:  FILE1  and FILE2 must be sorted on the join fields.  E.g.,
       use "sort -k 1b,1" if 'join' has no options, or use "join  -t  ''"  if
       'sort' has no options.  Note, comparisons honor the rules specified by
       'LC_COLLATE'.  If the input is not sorted and  some  lines  cannot  be
       joined, a warning message will be given.
AUTHOR
       Written by Mike Haertel.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright  ©  2019 Free Software Foundation, Inc.  License GPLv3+: GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This is free software: you are free to  change  and  redistribute  it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       comm(1), uniq(1)
       Full documentation <https://www.gnu.org/software/coreutils/join>
       or available locally via: info '(coreutils) join invocation'
GNU coreutils 8.31                March 2019                          JOIN(1)

 

  • tr

替换字符 tr ‘a-z’ ‘A-Z’ <1.txt >2.txt

创建单词列表:

tr -cs ‘[:lower:][:upper:]’ ‘[\n*]’ <1.txt >2.txt

SYNOPSIS
       tr [OPTION]... SET1 [SET2]
DESCRIPTION
       Translate,  squeeze,  and/or  delete  characters  from standard input,
       writing to standard output.
       -c, -C, --complement
              use the complement of SET1
       -d, --delete
              delete characters in SET1, do not translate
       -s, --squeeze-repeats
              replace each sequence of a repeated character that is listed in
              the  last specified SET, with a single occurrence of that char‐
              acter
       -t, --truncate-set1
              first truncate SET1 to length of SET2
       --help display this help and exit
       --version
              output version information and exit
       SETs are specified as strings of  characters.   Most  represent  them‐
       selves.  Interpreted sequences are:
       \NNN   character with octal value NNN (1 to 3 octal digits)
       \\     backslash
       \a     audible BEL
       \b     backspace
       \f     form feed
       \n     new line
       \r     return
       \t     horizontal tab
       \v     vertical tab
       CHAR1-CHAR2
              all characters from CHAR1 to CHAR2 in ascending order
       [CHAR*]
              in SET2, copies of CHAR until length of SET1
       [CHAR*REPEAT]
              REPEAT copies of CHAR, REPEAT octal if starting with 0
       [:alnum:]
              all letters and digits
       [:alpha:]
              all letters
       [:blank:]
              all horizontal whitespace
       [:cntrl:]
              all control characters
       [:digit:]
              all digits
       [:graph:]
              all printable characters, not including space
       [:lower:]
              all lower case letters
       [:print:]
              all printable characters, including space
       [:punct:]
              all punctuation characters
       [:space:]
              all horizontal or vertical whitespace
       [:upper:]
              all upper case letters
       [:xdigit:]
              all hexadecimal digits
       [=CHAR=]
              all characters which are equivalent to CHAR
       Translation  occurs  if -d is not given and both SET1 and SET2 appear.
       -t may be used only when translating.  SET2 is extended to  length  of
       SET1  by repeating its last character as necessary.  Excess characters
       of SET2 are ignored.  Only [:lower:] and [:upper:] are  guaranteed  to
       expand  in  ascending  order; used in SET2 while translating, they may
       only be used in pairs to specify case conversion.  -s  uses  the  last
       specified SET, and occurs after translation or deletion.
AUTHOR
       Written by Jim Meyering.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright  ©  2019 Free Software Foundation, Inc.  License GPLv3+: GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This is free software: you are free to  change  and  redistribute  it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       Full documentation <https://www.gnu.org/software/coreutils/tr>
       or available locally via: info '(coreutils) tr invocation'
GNU coreutils 8.31                March 2019                            TR(1)

 

  • sed

流编辑

sed -e “d” 1.txt    删除第一行

sed -e “5d” 1.txt 删除第五行

sed -e ‘1,5d’ 1.txt 删除一到五行

sed -n -e ‘regexp/p’ file | more 删除任意匹配的行

替换

sed -e ‘s/power/jiechen/g’ 1.txt

替换命令格式 ‘s///’ g表示全部

sed -e ‘1,10s’/power/jiechen/g’ 1.txt s之后的符号直接被指定为分隔符,范围,前10行

sed -e ‘s:/usr/local:/usr:g’ 1.txt

sed -e ‘s/<[^>’]*>//g’1.html 删除<.*>

还有更多未列出

SYNOPSIS
       sed [OPTION]... {script-only-if-no-other-script} [input-file]...
DESCRIPTION
       Sed is a stream editor.  A stream editor is used to perform basic text
       transformations on an input stream (a file or input from a  pipeline).
       While  in  some ways similar to an editor which permits scripted edits
       (such as ed), sed works by making only one pass over the input(s), and
       is  consequently  more  efficient.   But it is sed's ability to filter
       text in a pipeline which  particularly  distinguishes  it  from  other
       types of editors.
       -n, --quiet, --silent
              suppress automatic printing of pattern space
       --debug
              annotate program execution
       -e script, --expression=script
              add the script to the commands to be executed
       -f script-file, --file=script-file
              add the contents of script-file to the commands to be executed
       --follow-symlinks
              follow symlinks when processing in place
       -i[SUFFIX], --in-place[=SUFFIX]
              edit files in place (makes backup if SUFFIX supplied)
       -l N, --line-length=N
              specify the desired line-wrap length for the `l' command
       --posix
              disable all GNU extensions.
       -E, -r, --regexp-extended
              use extended regular expressions in the script (for portability
              use POSIX -E).
       -s, --separate
              consider files as separate rather than as a single,  continuous
              long stream.
       --sandbox
              operate in sandbox mode (disable e/r/w commands).
       -u, --unbuffered
              load minimal amounts of data from the input files and flush the
              output buffers more often
       -z, --null-data
              separate lines by NUL characters
       --help
              display this help and exit
       --version
              output version information and exit
       If no -e, --expression, -f, or --file option is given, then the  first
       non-option  argument is taken as the sed script to interpret.  All re‐
       maining arguments are names of input files;  if  no  input  files  are
       specified, then the standard input is read.
       GNU  sed home page: <https://www.gnu.org/software/sed/>.  General help
       using GNU software: <https://www.gnu.org/gethelp/>.   E-mail  bug  re‐
       ports to: <bug-sed@gnu.org>.
COMMAND SYNOPSIS
       This  is  just a brief synopsis of sed commands to serve as a reminder
       to those who already know sed; other documentation (such as  the  tex‐
       info document) must be consulted for fuller descriptions.
   Zero-address ``commands''
       : label
              Label for b and t commands.
       #comment
              The  comment extends until the next newline (or the end of a -e
              script fragment).
       }      The closing bracket of a { } block.
   Zero- or One- address commands
       =      Print the current line number.
       a \
       text   Append text, which has each  embedded  newline  preceded  by  a
              backslash.
       i \
       text   Insert  text,  which  has  each  embedded newline preceded by a
              backslash.
       q [exit-code]
              Immediately quit the sed script without processing any more in‐
              put, except that if auto-print is not disabled the current pat‐
              tern space will be printed.  The exit code argument  is  a  GNU
              extension.
       Q [exit-code]
              Immediately quit the sed script without processing any more in‐
              put.  This is a GNU extension.
       r filename
              Append text read from filename.
       R filename
              Append a line read from filename.  Each invocation of the  com‐
              mand reads a line from the file.  This is a GNU extension.
   Commands which accept address ranges
       {      Begin a block of commands (end with a }).
       b label
              Branch to label; if label is omitted, branch to end of script.
       c \
       text   Replace  the  selected lines with text, which has each embedded
              newline preceded by a backslash.
       d      Delete pattern space.  Start next cycle.
       D      If pattern space contains no newline, start a normal new  cycle
              as  if the d command was issued.  Otherwise, delete text in the
              pattern space up to the first newline, and restart  cycle  with
              the  resultant pattern space, without reading a new line of in‐
              put.
       h H    Copy/append pattern space to hold space.
       g G    Copy/append hold space to pattern space.
       l      List out the current line in a ``visually unambiguous'' form.
       l width
              List out the current line in a ``visually  unambiguous''  form,
              breaking it at width characters.  This is a GNU extension.
       n N    Read/append the next line of input into the pattern space.
       p      Print the current pattern space.
       P      Print  up  to the first embedded newline of the current pattern
              space.
       s/regexp/replacement/
              Attempt to match regexp against the pattern space.  If success‐
              ful,  replace  that  portion matched with replacement.  The re‐
              placement may contain the special character & to refer to  that
              portion of the pattern space which matched, and the special es‐
              capes \1 through \9 to refer to the corresponding matching sub-
              expressions in the regexp.
       t label
              If a s/// has done a successful substitution since the last in‐
              put line was read and since the  last  t  or  T  command,  then
              branch to label; if label is omitted, branch to end of script.
       T label
              If  no  s///  has done a successful substitution since the last
              input line was read and since the last t  or  T  command,  then
              branch  to label; if label is omitted, branch to end of script.
              This is a GNU extension.
       w filename
              Write the current pattern space to filename.
       W filename
              Write the first line of the current pattern space to  filename.
              This is a GNU extension.
       x      Exchange the contents of the hold and pattern spaces.
       y/source/dest/
              Transliterate  the characters in the pattern space which appear
              in source to the corresponding character in dest.
Addresses
       Sed commands can be given with no addresses, in which case the command
       will  be executed for all input lines; with one address, in which case
       the command will only be executed for input lines which match that ad‐
       dress;  or  with two addresses, in which case the command will be exe‐
       cuted for all input lines which match the  inclusive  range  of  lines
       starting  from the first address and continuing to the second address.
       Three things to note about address ranges: the syntax  is  addr1,addr2
       (i.e.,  the  addresses are separated by a comma); the line which addr1
       matched will always be accepted, even  if  addr2  selects  an  earlier
       line; and if addr2 is a regexp, it will not be tested against the line
       that addr1 matched.
       After the address (or address-range), and before the command, a !  may
       be  inserted,  which specifies that the command shall only be executed
       if the address (or address-range) does not match.
       The following address types are supported:
       number Match only the specified line number (which increments  cumula‐
              tively  across  files, unless the -s option is specified on the
              command line).
       first~step
              Match every step'th line starting with line first.   For  exam‐
              ple,  ``sed  -n 1~2p'' will print all the odd-numbered lines in
              the input stream, and the address 2~5 will  match  every  fifth
              line,  starting  with  the  second.  first can be zero; in this
              case, sed operates as if it were equal to step.   (This  is  an
              extension.)
       $      Match the last line.
       /regexp/
              Match  lines  matching the regular expression regexp.  Matching
              is performed on the current pattern space, which can  be  modi‐
              fied with commands such as ``s///''.
       \cregexpc
              Match  lines matching the regular expression regexp.  The c may
              be any character.
       GNU sed also supports some special 2-address forms:
       0,addr2
              Start out in "matched first  address"  state,  until  addr2  is
              found.   This  is  similar  to  1,addr2,  except  that if addr2
              matches the very first line of input the 0,addr2 form  will  be
              at the end of its range, whereas the 1,addr2 form will still be
              at the beginning of its range.  This works only when addr2 is a
              regular expression.
       addr1,+N
              Will match addr1 and the N lines following addr1.
       addr1,~N
              Will  match  addr1 and the lines following addr1 until the next
              line whose input line number is a multiple of N.
REGULAR EXPRESSIONS
       POSIX.2 BREs should be supported, but they aren't  completely  because
       of  performance  problems.   The  \n  sequence in a regular expression
       matches the newline character, and similarly for \a, \t, and other se‐
       quences.  The -E option switches to using extended regular expressions
       instead; it has been supported for years by GNU sed, and  is  now  in‐
       cluded in POSIX.
BUGS
       E-mail  bug reports to bug-sed@gnu.org.  Also, please include the out‐
       put of ``sed --version'' in the body of your report if at  all  possi‐
       ble.
AUTHOR
       Written  by  Jay  Fenlason,  Tom Lord, Ken Pizzini, Paolo Bonzini, Jim
       Meyering,    and    Assaf    Gordon.     GNU    sed     home     page:
       <https://www.gnu.org/software/sed/>.  General help using GNU software:
       <https://www.gnu.org/gethelp/>.   E-mail   bug   reports   to:   <bug-
       sed@gnu.org>.
COPYRIGHT
       Copyright  ©  2018 Free Software Foundation, Inc.  License GPLv3+: GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This is free software: you are free to  change  and  redistribute  it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       awk(1),  ed(1),  grep(1),  tr(1),  perlre(1), sed.info, any of various
       books on sed, the sed FAQ (http://sed.sf.net/grabbag/tutorials/sed‐
       faq.txt), http://sed.sf.net/grabbag/.
       The full documentation for sed is maintained as a Texinfo manual.  If
       the info and sed programs are properly installed at your site, the
       command
              info sed
       should give you access to the complete manual.
sed 4.7                         December 2018                          SED(1)

 

  • awk

常用内建变量

FILENAME 当前输入文件名称

FNR 当前输入文件记录数

FS 字段分隔符,默认为空格

NF 当前记录的字段数

NR 在工作(job)中的记录数

OFS 输出字段分割字符

ORS 输出记录分割字符(默认为\n)

RS 输入记录分割字符

awk运算符

判断与循环

if语句

if/else语句

if/else else/if 语句

while循环

do/while循环

for循环

break语句

contunue

SYNOPSIS
       gawk [ POSIX or GNU style options ] -f program-file [ -- ] file ...
       gawk [ POSIX or GNU style options ] [ -- ] program-text file ...
DESCRIPTION
       Gawk  is  the GNU Project's implementation of the AWK programming lan‐
       guage.  It conforms to the definition of the  language  in  the  POSIX
       1003.1  Standard.  This version in turn is based on the description in
       The AWK Programming Language, by Aho, Kernighan, and Weinberger.  Gawk
       provides the additional features found in the current version of Brian
       Kernighan's awk and a number of GNU-specific extensions.
       The command line consists of options to gawk itself, the  AWK  program
       text  (if not supplied via the -f or --file options), and values to be
       made available in the ARGC and ARGV pre-defined AWK variables.
       When gawk is invoked with the --profile option,  it  starts  gathering
       profiling  statistics  from  the  execution of the program.  Gawk runs
       more slowly in this mode, and automatically produces an execution pro‐
       file  in  the  file  awkprof.out when done.  See the --profile option,
       below.
       Gawk also has an integrated debugger. An interactive debugging session
       can be started by supplying the --debug option to the command line. In
       this mode of execution, gawk  loads  the  AWK  source  code  and  then
       prompts  for  debugging  commands.   Gawk  can  only debug AWK program
       source provided with the -f option.  The  debugger  is  documented  in
       GAWK: Effective AWK Programming.
OPTION FORMAT
       Gawk options may be either traditional POSIX-style one letter options,
       or GNU-style long options.  POSIX options start  with  a  single  “-”,
       while  long  options  start  with “--”.  Long options are provided for
       both GNU-specific features and for POSIX-mandated features.
       Gawk-specific options are typically used in long-option  form.   Argu‐
       ments  to long options are either joined with the option by an = sign,
       with no intervening spaces, or they may be provided in the  next  com‐
       mand  line  argument.  Long options may be abbreviated, as long as the
       abbreviation remains unique.
       Additionally, every long option has a corresponding short  option,  so
       that the option's functionality may be used from within #!  executable
       scripts.
OPTIONS
       Gawk accepts the  following  options.   Standard  options  are  listed
       first,  followed by options for gawk extensions, listed alphabetically
       by short option.
       -f program-file
       --file program-file
              Read the AWK program source from the file program-file, instead
              of  from  the  first  command  line  argument.  Multiple -f (or
              --file) options may be used.
       -F fs
       --field-separator fs
              Use fs for the input field separator (the value of the FS  pre‐
              defined variable).
       -v var=val
       --assign var=val
              Assign  the  value val to the variable var, before execution of
              the program begins.  Such variable values are available to  the
              BEGIN rule of an AWK program.
       -b
       --characters-as-bytes
              Treat all input data as single-byte characters. In other words,
              don't pay any attention to the locale information when attempt‐
              ing  to  process  strings as multibyte characters.  The --posix
              option overrides this one.
       -c
       --traditional
              Run in compatibility mode.  In compatibility mode, gawk behaves
              identically  to Brian Kernighan's awk; none of the GNU-specific
              extensions are recognized.  See GNU EXTENSIONS, below, for more
              information.
       -C
       --copyright
              Print  the  short version of the GNU copyright information mes‐
              sage on the standard output and exit successfully.
       -d[file]
       --dump-variables[=file]
              Print a sorted list of global variables, their types and  final
              values to file.  If no file is provided, gawk uses a file named
              awkvars.out in the current directory.
              Having a list of all the global variables is a good way to look
              for  typographical errors in your programs.  You would also use
              this option if you have a large program with  a  lot  of  func‐
              tions,  and you want to be sure that your functions don't inad‐
              vertently use global variables that  you  meant  to  be  local.
              (This  is a particularly easy mistake to make with simple vari‐
              able names like i, j, and so on.)
       -D[file]
       --debug[=file]
              Enable debugging of AWK programs.   By  default,  the  debugger
              reads   commands  interactively  from  the  keyboard  (standard
              input).  The optional file argument specifies  a  file  with  a
              list of commands for the debugger to execute non-interactively.
       -e program-text
       --source program-text
              Use  program-text  as  AWK  program  source  code.  This option
              allows the easy intermixing of library functions (used via  the
              -f  and --file options) with source code entered on the command
              line.  It is intended primarily for medium to  large  AWK  pro‐
              grams used in shell scripts.
       -E file
       --exec file
              Similar  to  -f,  however,  this is option is the last one pro‐
              cessed.  This should be used with #!  scripts, particularly for
              CGI  applications,  to  avoid passing in options or source code
              (!) on the command line from a URL.  This option disables  com‐
              mand-line variable assignments.
       -g
       --gen-pot
              Scan and parse the AWK program, and generate a GNU .pot (Porta‐
              ble Object  Template)  format  file  on  standard  output  with
              entries  for  all localizable strings in the program.  The pro‐
              gram itself is not executed.  See the GNU gettext  distribution
              for more information on .pot files.
       -h
       --help Print  a  relatively  short summary of the available options on
              the standard output.  (Per  the  GNU  Coding  Standards,  these
              options cause an immediate, successful exit.)
       -i include-file
       --include include-file
              Load  an  awk  source  library.   This searches for the library
              using the AWKPATH environment variable.  If the initial  search
              fails,  another  attempt  will be made after appending the .awk
              suffix.  The file will be loaded only  once  (i.e.,  duplicates
              are eliminated), and the code does not constitute the main pro‐
              gram source.
       -l lib
       --load lib
              Load a shared library lib.  This searches for the library using
              the  AWKLIBPATH  environment  variable.   If the initial search
              fails, another attempt will be made after appending the default
              shared  library  suffix for the platform.  The library initial‐
              ization routine is expected to be named dl_load().
       -L [value]
       --lint[=value]
              Provide warnings about constructs that are dubious or  non-por‐
              table  to other AWK implementations.  With an optional argument
              of fatal, lint warnings become fatal errors.  This may be dras‐
              tic,  but  its  use will certainly encourage the development of
              cleaner AWK programs.  With an optional  argument  of  invalid,
              only  warnings  about  things  that  are  actually  invalid are
              issued. (This is not fully implemented yet.)
       -M
       --bignum
              Force arbitrary precision arithmetic on  numbers.  This  option
              has  no  effect if gawk is not compiled to use the GNU MPFR and
              MP libraries.
       -n
       --non-decimal-data
              Recognize octal and hexadecimal values in input data.  Use this
              option with great caution!
       -N
       --use-lc-numeric
              This  forces  gawk  to use the locale's decimal point character
              when parsing input data.  Although the POSIX standard  requires
              this  behavior, and gawk does so when --posix is in effect, the
              default is to follow traditional behavior and use a  period  as
              the  decimal point, even in locales where the period is not the
              decimal point character.  This  option  overrides  the  default
              behavior,  without the full draconian strictness of the --posix
              option.
       -o[file]
       --pretty-print[=file]
              Output a pretty printed version of the program to file.  If  no
              file  is  provided,  gawk  uses a file named awkprof.out in the
              current directory.
       -O
       --optimize
              Enable optimizations upon the internal  representation  of  the
              program.  Currently, this includes simple constant-folding, and
              tail call elimination for recursive functions. The  gawk  main‐
              tainer hopes to add additional optimizations over time.
       -p[prof-file]
       --profile[=prof-file]
              Start a profiling session, and send the profiling data to prof-
              file.  The default is awkprof.out.  The profile contains execu‐
              tion counts of each statement in the program in the left margin
              and function call counts for each user-defined function.
       -P
       --posix
              This turns on compatibility mode, with the following additional
              restrictions:
              · \x escape sequences are not recognized.
              · Only  space and tab act as field separators when FS is set to
                a single space, newline does not.
              · You cannot continue lines after ?  and :.
              · The synonym func for the keyword function is not recognized.
              · The operators ** and **= cannot be used in place of ^ and ^=.
       -r
       --re-interval
              Enable the use of interval expressions  in  regular  expression
              matching  (see  Regular  Expressions, below).  Interval expres‐
              sions were not traditionally available  in  the  AWK  language.
              The POSIX standard added them, to make awk and egrep consistent
              with each other.  They are enabled by default, but this  option
              remains for use with --traditional.
       -S
       --sandbox
              Runs  gawk  in  sandbox  mode, disabling the system() function,
              input redirection with getline, output redirection  with  print
              and  printf, and loading dynamic extensions.  Command execution
              (through pipelines) is also disabled.  This effectively  blocks
              a  script  from accessing local resources (except for the files
              specified on the command line).
       -t
       --lint-old
              Provide warnings about constructs that are not portable to  the
              original version of UNIX awk.
       -V
       --version
              Print  version  information for this particular copy of gawk on
              the standard output.  This is useful mainly for knowing if  the
              current  copy of gawk on your system is up to date with respect
              to whatever the Free Software Foundation is distributing.  This
              is  also useful when reporting bugs.  (Per the GNU Coding Stan‐
              dards, these options cause an immediate, successful exit.)
       --     Signal the end of options. This  is  useful  to  allow  further
              arguments  to the AWK program itself to start with a “-”.  This
              provides consistency with the argument parsing convention  used
              by most other POSIX programs.
       In  compatibility  mode, any other options are flagged as invalid, but
       are otherwise ignored.  In normal operation, as long as  program  text
       has been supplied, unknown options are passed on to the AWK program in
       the ARGV array for processing.  This is particularly useful  for  run‐
       ning AWK programs via the “#!” executable interpreter mechanism.
       For  POSIX  compatibility,  the -W option may be used, followed by the
       name of a long option.
AWK PROGRAM EXECUTION
       An AWK program consists of a sequence of pattern-action statements and
       optional function definitions.
              @include "filename"
              @load "filename"
              pattern   { action statements }
              function name(parameter list) { statements }
       Gawk first reads the program source from the program-file(s) if speci‐
       fied, from arguments to --source, or from the first  non-option  argu‐
       ment  on  the  command  line.  The -f and --source options may be used
       multiple times on the command line.  Gawk reads the program text as if
       all  the program-files and command line source texts had been concate‐
       nated together.  This is useful for building libraries  of  AWK  func‐
       tions,  without  having  to  include them in each new AWK program that
       uses them.  It also provides the ability to mix library functions with
       command line programs.
       In  addition,  lines  beginning  with  @include may be used to include
       other source files into your program, making library use even  easier.
       This is equivalent to using the -i option.
       Lines  beginning  with @load may be used to load shared libraries into
       your program.  This is equivalent to using the -l option.
       The environment variable AWKPATH specifies a search path to  use  when
       finding  source files named with the -f and -i options.  If this vari‐
       able does not exist, the  default  path  is  ".:/usr/local/share/awk".
       (The  actual directory may vary, depending upon how gawk was built and
       installed.)  If a file name given to the  -f  option  contains  a  “/”
       character, no path search is performed.
       The  environment  variable  AWKLIBPATH  specifies a search path to use
       when finding source files named with the -l option.  If this  variable
       does  not  exist,  the  default  path  is "/usr/local/lib/gawk".  (The
       actual directory may vary, depending  upon  how  gawk  was  built  and
       installed.)
       Gawk  executes  AWK programs in the following order.  First, all vari‐
       able assignments specified via the -v  option  are  performed.   Next,
       gawk  compiles the program into an internal form.  Then, gawk executes
       the code in the BEGIN rule(s) (if any), and then proceeds to read each
       file  named  in  the  ARGV  array (up to ARGV[ARGC]).  If there are no
       files named on the command line, gawk reads the standard input.
       If a filename on the command line has the form var=val it  is  treated
       as a variable assignment.  The variable var will be assigned the value
       val.  (This happens after any BEGIN rule(s) have been  run.)   Command
       line variable assignment is most useful for dynamically assigning val‐
       ues to the variables AWK uses to control  how  input  is  broken  into
       fields and records.  It is also useful for controlling state if multi‐
       ple passes are needed over a single data file.
       If the value of a particular element of ARGV is empty (""), gawk skips
       over it.
       For  each  input  file,  if a BEGINFILE rule exists, gawk executes the
       associated code before processing the contents of the file. Similarly,
       gawk  executes  the  code associated with ENDFILE after processing the
       file.
       For each record in the input, gawk tests to see if it matches any pat‐
       tern  in  the  AWK program.  For each pattern that the record matches,
       gawk executes the associated action.  The patterns are tested  in  the
       order they occur in the program.
       Finally,  after  all the input is exhausted, gawk executes the code in
       the END rule(s) (if any).
   Command Line Directories
       According to POSIX, files named on the awk command line must  be  text
       files.   The behavior is ``undefined'' if they are not.  Most versions
       of awk treat a directory on the command line as a fatal error.
       Starting with version 4.0 of gawk, a directory  on  the  command  line
       produces  a  warning,  but  is  otherwise  skipped.   If either of the
       --posix or --traditional options is given, then gawk reverts to treat‐
       ing directories on the command line as a fatal error.
VARIABLES, RECORDS AND FIELDS
       AWK  variables  are  dynamic;  they  come into existence when they are
       first  used.   Their  values  are  either  floating-point  numbers  or
       strings,  or both, depending upon how they are used.  AWK also has one
       dimensional arrays; arrays with multiple dimensions may be  simulated.
       Gawk  provides true arrays of arrays; see Arrays, below.  Several pre-
       defined variables are set as a program runs; these  are  described  as
       needed and summarized below.
   Records
       Normally,  records  are separated by newline characters.  You can con‐
       trol how records are separated by assigning  values  to  the  built-in
       variable  RS.  If RS is any single character, that character separates
       records.  Otherwise, RS is a regular expression.  Text  in  the  input
       that  matches  this regular expression separates the record.  However,
       in compatibility mode, only the first character of its string value is
       used  for  separating  records.  If RS is set to the null string, then
       records are separated by blank lines.  When RS  is  set  to  the  null
       string,  the  newline  character  always acts as a field separator, in
       addition to whatever value FS may have.
   Fields
       As each input record is read, gawk  splits  the  record  into  fields,
       using the value of the FS variable as the field separator.  If FS is a
       single character, fields are separated by that character.   If  FS  is
       the  null  string,  then  each individual character becomes a separate
       field.  Otherwise, FS is expected to be a full regular expression.  In
       the  special  case  that FS is a single space, fields are separated by
       runs of spaces and/or tabs and/or  newlines.   (But  see  the  section
       POSIX  COMPATIBILITY,  below).   NOTE:  The  value  of IGNORECASE (see
       below) also affects how fields are split when FS is a regular  expres‐
       sion, and how records are separated when RS is a regular expression.
       If  the  FIELDWIDTHS variable is set to a space separated list of num‐
       bers, each field is expected to have fixed width, and gawk  splits  up
       the  record  using  the specified widths.  The value of FS is ignored.
       Assigning a new value to FS or FPAT overrides the use of FIELDWIDTHS.
       Similarly, if the FPAT variable is set to a string representing a reg‐
       ular expression, each field is made up of text that matches that regu‐
       lar expression. In this case, the  regular  expression  describes  the
       fields  themselves,  instead  of  the  text that separates the fields.
       Assigning a new value to FS or FIELDWIDTHS overrides the use of FPAT.
       Each field in the input record may be referenced by its position:  $1,
       $2, and so on.  $0 is the whole record.  Fields need not be referenced
       by constants:
              n = 5
              print $n
       prints the fifth field in the input record.
       The variable NF is set to the total number  of  fields  in  the  input
       record.
       References to non-existent fields (i.e., fields after $NF) produce the
       null-string.   However,  assigning  to  a  non-existent  field  (e.g.,
       $(NF+2) = 5) increases the value of NF, creates any intervening fields
       with the null string as their values, and causes the value of $0 to be
       recomputed, with the fields being separated by the value of OFS.  Ref‐
       erences to negative numbered fields cause a fatal error.  Decrementing
       NF  causes the values of fields past the new value to be lost, and the
       value of $0 to be recomputed, with the fields being separated  by  the
       value of OFS.
       Assigning  a  value to an existing field causes the whole record to be
       rebuilt when $0 is referenced.  Similarly, assigning  a  value  to  $0
       causes the record to be resplit, creating new values for the fields.
   Built-in Variables
       Gawk's built-in variables are:
       ARGC        The  number  of  command  line arguments (does not include
                   options to gawk, or the program source).
       ARGIND      The index in ARGV of the current file being processed.
       ARGV        Array of command line arguments.   The  array  is  indexed
                   from  0 to ARGC - 1.  Dynamically changing the contents of
                   ARGV can control the files used for data.
       BINMODE     On non-POSIX systems, specifies use of “binary”  mode  for
                   all  file I/O.  Numeric values of 1, 2, or 3, specify that
                   input files, output files,  or  all  files,  respectively,
                   should use binary I/O.  String values of "r", or "w" spec‐
                   ify that  input  files,  or  output  files,  respectively,
                   should  use  binary  I/O.   String  values of "rw" or "wr"
                   specify that all files should use binary I/O.   Any  other
                   string  value  is treated as "rw", but generates a warning
                   message.
       CONVFMT     The conversion format for numbers, "%.6g", by default.
       ENVIRON     An array containing the values of the current environment.
                   The  array  is  indexed by the environment variables, each
                   element being the value  of  that  variable  (e.g.,  ENVI‐
                   RON["HOME"] might be "/home/arnold").  Changing this array
                   does not affect the environment  seen  by  programs  which
                   gawk spawns via redirection or the system() function.
       ERRNO       If  a  system  error occurs either doing a redirection for
                   getline, during a read for getline, or during  a  close(),
                   then  ERRNO  will  contain  a string describing the error.
                   The  value  is  subject  to  translation  in   non-English
                   locales.
       FIELDWIDTHS A  whitespace  separated  list of field widths.  When set,
                   gawk parses the input into fields of fixed width,  instead
                   of using the value of the FS variable as the field separa‐
                   tor.  See Fields, above.
       FILENAME    The name of the current input file.  If no files are spec‐
                   ified  on  the command line, the value of FILENAME is “-”.
                   However, FILENAME  is  undefined  inside  the  BEGIN  rule
                   (unless set by getline).
       FNR         The input record number in the current input file.
       FPAT        A regular expression describing the contents of the fields
                   in a record.  When set, gawk parses the input into fields,
                   where  the fields match the regular expression, instead of
                   using the value of the FS variable as the field separator.
                   See Fields, above.
       FS          The  input  field  separator,  a  space  by  default.  See
                   Fields, above.
       FUNCTAB     An array whose indices and corresponding  values  are  the
                   names  of  all  the user-defined or extension functions in
                   the program.  NOTE: You may not use the  delete  statement
                   with the FUNCTAB array.
       IGNORECASE  Controls  the  case-sensitivity  of all regular expression
                   and string  operations.   If  IGNORECASE  has  a  non-zero
                   value,  then  string  comparisons  and pattern matching in
                   rules, field splitting with FS and FPAT, record separating
                   with  RS,  regular  expression matching with ~ and !~, and
                   the  gensub(),  gsub(),  index(),   match(),   patsplit(),
                   split(), and sub() built-in functions all ignore case when
                   doing regular expression  operations.   NOTE:  Array  sub‐
                   scripting  is  not  affected.   However,  the  asort() and
                   asorti() functions are affected.
                   Thus, if IGNORECASE is not equal to zero, /aB/ matches all
                   of  the  strings  "ab", "aB", "Ab", and "AB".  As with all
                   AWK variables, the initial value of IGNORECASE is zero, so
                   all  regular expression and string operations are normally
                   case-sensitive.
       LINT        Provides dynamic control of the --lint option from  within
                   an  AWK  program.   When  true, gawk prints lint warnings.
                   When false, it does not.  When assigned the  string  value
                   "fatal",  lint  warnings become fatal errors, exactly like
                   --lint=fatal.  Any other true value just prints warnings.
       NF          The number of fields in the current input record.
       NR          The total number of input records seen so far.
       OFMT        The output format for numbers, "%.6g", by default.
       OFS         The output field separator, a space by default.
       ORS         The output record separator, by default a newline.
       PREC        The working precision  of  arbitrary  precision  floating-
                   point numbers, 53 by default.
       PROCINFO    The  elements  of this array provide access to information
                   about the running AWK program.  On some systems, there may
                   be  elements  in  the array, "group1" through "groupn" for
                   some n, which is the number of supplementary  groups  that
                   the  process  has.   Use the in operator to test for these
                   elements.  The following elements  are  guaranteed  to  be
                   available:
                   PROCINFO["egid"]     The  value  of  the getegid(2) system
                                        call.
                   PROCINFO["euid"]     The value of  the  geteuid(2)  system
                                        call.
                   PROCINFO["FS"]       "FS" if field splitting with FS is in
                                        effect,  "FPAT"  if  field  splitting
                                        with  FPAT  is  in effect, or "FIELD‐
                                        WIDTHS"  if  field   splitting   with
                                        FIELDWIDTHS is in effect.
                   PROCINFO["gid"]      The  value  of  the  getgid(2) system
                                        call.
                   PROCINFO["identifiers"]
                                        A subarray, indexed by the  names  of
                                        all  identifiers  used in the text of
                                        the AWK program.  The values indicate
                                        what gawk knows about the identifiers
                                        after it  has  finished  parsing  the
                                        program;  they  are not updated while
                                        the program runs.  For  each  identi‐
                                        fier, the value of the element is one
                                        of the following:
                                        "array"
                                               The identifier is an array.
                                        "builtin"
                                               The identifier is  a  built-in
                                               function.
                                        "extension"
                                               The identifier is an extension
                                               function loaded via  @load  or
                                               -l.
                                        "scalar"
                                               The identifier is a scalar.
                                        "untyped"
                                               The   identifier   is  untyped
                                               (could be used as a scalar  or
                                               array, gawk doesn't know yet).
                                        "user" The   identifier  is  a  user-
                                               defined function.
                   PROCINFO["pgrpid"]   The process group ID of  the  current
                                        process.
                   PROCINFO["pid"]      The   process   ID   of  the  current
                                        process.
                   PROCINFO["ppid"]     The parent process ID of the  current
                                        process.
                   PROCINFO["strftime"] The  default  time  format string for
                                        strftime().
                   PROCINFO["uid"]      The value  of  the  getuid(2)  system
                                        call.
                   PROCINFO["version"]  the version of gawk.
                   The  following  elements  are  present  if loading dynamic
                   extensions is available:
                   PROCINFO["api_major"]
                          The major version of the extension API.
                   PROCINFO["api_minor"]
                          The minor version of the extension API.
                   The following elements are available if  MPFR  support  is
                   compiled into gawk:
                   PROCINFO["gmp_version"]
                          The  version  of  the GNU MP library used for arbi‐
                          trary precision number support in gawk.
                   PROCINFO["mpfr_version"]
                          The version of the GNU MPFR library used for  arbi‐
                          trary precision number support in gawk.
                   PROCINFO["prec_max"]
                          The  maximum  precision  supported  by the GNU MPFR
                          library for arbitrary precision floating-point num‐
                          bers.
                   PROCINFO["prec_min"]
                          The  minimum  precision  allowed  by  the  GNU MPFR
                          library for arbitrary precision floating-point num‐
                          bers.
                   The  following  elements  may  set  by a program to change
                   gawk's behavior:
                   PROCINFO["command", "pty"]
                          Use a pseudo-tty  for  two-way  communication  with
                          command instead of setting up two one-way pipes.
                   PROCINFO["input", "READ_TIMEOUT"]
                          The  timeout  in milliseconds for reading data from
                          input, where input is a  redirection  string  or  a
                          filename.  A  value of zero or less than zero means
                          no timeout.
                   PROCINFO["sorted_in"]
                          If this element exists in PROCINFO, then its  value
                          controls the order in which array elements are tra‐
                          versed  in  for  loops.    Supported   values   are
                          "@ind_str_asc",   "@ind_num_asc",  "@val_type_asc",
                          "@val_str_asc",  "@val_num_asc",   "@ind_str_desc",
                          "@ind_num_desc", "@val_type_desc", "@val_str_desc",
                          "@val_num_desc", and "@unsorted".   The  value  can
                          also be the name of any comparison function defined
                          as follows:
                               function cmp_func(i1, v1, i2, v2)
                          where i1 and i2 are the indices, and v1 and v2  are
                          the  corresponding values of the two elements being
                          compared.  It should return  a  number  less  than,
                          equal  to,  or greater than 0, depending on how the
                          elements of the array are to be ordered.
       ROUNDMODE   The rounding mode to use for  arbitrary  precision  arith‐
                   metic on numbers, by default "N" (IEEE-754 roundTiesToEven
                   mode).   The  accepted  values  are   "N"   or   "n"   for
                   roundTiesToEven,  "U"  or "u" for roundTowardPositive, "D"
                   or "d" for roundTowardNegative, "Z" or  "z"  for  roundTo‐
                   wardZero, and if your version of GNU MPFR library supports
                   it, "A" or "a" for roundTiesToAway.
       RS          The input record separator, by default a newline.
       RT          The record terminator.  Gawk sets RT  to  the  input  text
                   that matched the character or regular expression specified
                   by RS.
       RSTART      The index of the first character matched by match(); 0  if
                   no  match.   (This implies that character indices start at
                   one.)
       RLENGTH     The length of the string matched  by  match();  -1  if  no
                   match.
       SUBSEP      The  character  used  to  separate  multiple subscripts in
                   array elements, by default "\034".
       SYMTAB      An array whose indices are  the  names  of  all  currently
                   defined  global  variables and arrays in the program.  The
                   array may be used for indirect access to read or write the
                   value of a variable:
                        foo = 5
                        SYMTAB["foo"] = 4
                        print foo    # prints 4
                   The  isarray()  function may be used to test if an element
                   in SYMTAB is an array.  You may not use the delete  state‐
                   ment with the SYMTAB array.
       TEXTDOMAIN  The  text  domain  of  the  AWK  program; used to find the
                   localized translations for the program's strings.
   Arrays
       Arrays are subscripted with an expression between square  brackets  ([
       and  ]).   If  the  expression  is an expression list (expr, expr ...)
       then the array subscript is a string consisting of  the  concatenation
       of  the  (string)  value of each expression, separated by the value of
       the SUBSEP variable.  This  facility  is  used  to  simulate  multiply
       dimensioned arrays.  For example:
              i = "A"; j = "B"; k = "C"
              x[i, j, k] = "hello, world\n"
       assigns  the  string  "hello,  world\n"  to the element of the array x
       which is indexed by the string "A\034B\034C".  All arrays in  AWK  are
       associative, i.e., indexed by string values.
       The  special  operator in may be used to test if an array has an index
       consisting of a particular value:
              if (val in array)
                   print array[val]
       If the array has multiple subscripts, use (i, j) in array.
       The in construct may also be used in a for loop to  iterate  over  all
       the elements of an array.  However, the (i, j) in array construct only
       works in tests, not in for loops.
       An element may be deleted from an array using  the  delete  statement.
       The delete statement may also be used to delete the entire contents of
       an array, just by specifying the array name without a subscript.
       gawk supports true multidimensional arrays. It does not  require  that
       such arrays be ``rectangular'' as in C or C++.  For example:
              a[1] = 5
              a[2][1] = 6
              a[2][2] = 7
       NOTE: You may need to tell gawk that an array element is really a sub‐
       array in order to use it where gawk expects an array (such as  in  the
       second  argument  to split()).  You can do this by creating an element
       in the subarray and then deleting it with the delete statement.
   Variable Typing And Conversion
       Variables and fields may be (floating point) numbers, or  strings,  or
       both.   How  the  value  of a variable is interpreted depends upon its
       context.  If used in a numeric expression, it will  be  treated  as  a
       number; if used as a string it will be treated as a string.
       To  force  a variable to be treated as a number, add 0 to it; to force
       it to be treated as a string, concatenate it with the null string.
       Uninitialized variables have the numeric value 0 and the string  value
       "" (the null, or empty, string).
       When  a string must be converted to a number, the conversion is accom‐
       plished using strtod(3).  A number is converted to a string  by  using
       the  value  of  CONVFMT  as  a  format string for sprintf(3), with the
       numeric value of the variable as the argument.  However,  even  though
       all numbers in AWK are floating-point, integral values are always con‐
       verted as integers.  Thus, given
              CONVFMT = "%2.2f"
              a = 12
              b = a ""
       the variable b has a string value of "12" and not "12.00".
       NOTE: When operating in POSIX mode (such as with the --posix  option),
       beware that locale settings may interfere with the way decimal numbers
       are treated: the decimal separator of the numbers you are  feeding  to
       gawk  must conform to what your locale would expect, be it a comma (,)
       or a period (.).
       Gawk performs comparisons as follows: If two  variables  are  numeric,
       they  are compared numerically.  If one value is numeric and the other
       has a string value that is a “numeric string,”  then  comparisons  are
       also done numerically.  Otherwise, the numeric value is converted to a
       string and a string comparison is performed.   Two  strings  are  com‐
       pared, of course, as strings.
       Note  that  string  constants,  such as "57", are not numeric strings,
       they are string constants.  The idea of “numeric string” only  applies
       to  fields,  getline  input, FILENAME, ARGV elements, ENVIRON elements
       and the elements of an array created by split() or patsplit() that are
       numeric  strings.   The  basic  idea is that user input, and only user
       input, that looks numeric, should be treated that way.
   Octal and Hexadecimal Constants
       You may use C-style octal and hexadecimal constants in your  AWK  pro‐
       gram  source code.  For example, the octal value 011 is equal to deci‐
       mal 9, and the hexadecimal value 0x11 is equal to decimal 17.
   String Constants
       String constants in AWK are sequences of characters  enclosed  between
       double   quotes   (like  "value").   Within  strings,  certain  escape
       sequences are recognized, as in C.  These are:
       \\   A literal backslash.
       \a   The “alert” character; usually the ASCII BEL character.
       \b   Backspace.
       \f   Form-feed.
       \n   Newline.
       \r   Carriage return.
       \t   Horizontal tab.
       \v   Vertical tab.
       \xhex digits
            The character represented by the  string  of  hexadecimal  digits
            following  the \x.  As in ISO C, all following hexadecimal digits
            are considered part of the escape sequence.  (This feature should
            tell  us  something  about  language design by committee.)  E.g.,
            "\x1B" is the ASCII ESC (escape) character.
       \ddd The character represented by the 1-, 2-, or 3-digit  sequence  of
            octal digits.  E.g., "\033" is the ASCII ESC (escape) character.
       \c   The literal character c.
       The  escape sequences may also be used inside constant regular expres‐
       sions (e.g., /[ \t\f\n\r\v]/ matches whitespace characters).
       In compatibility mode, the characters represented by octal  and  hexa‐
       decimal  escape  sequences  are treated literally when used in regular
       expression constants.  Thus, /a\52b/ is equivalent to /a\*b/.
PATTERNS AND ACTIONS
       AWK is a line-oriented language.  The pattern comes  first,  and  then
       the  action.   Action  statements are enclosed in { and }.  Either the
       pattern may be missing, or the action may be missing, but, of  course,
       not both.  If the pattern is missing, the action is executed for every
       single record of input.  A missing action is equivalent to
              { print }
       which prints the entire record.
       Comments begin with the # character, and continue until the end of the
       line.   Blank  lines  may be used to separate statements.  Normally, a
       statement ends with a newline, however, this is not the case for lines
       ending  in  a  comma,  {, ?, :, &&, or ||.  Lines ending in do or else
       also have their statements automatically continued  on  the  following
       line.   In  other  cases,  a line can be continued by ending it with a
       “\”, in which case the newline is ignored.
       Multiple statements may be put on one line by separating them  with  a
       “;”.   This applies to both the statements within the action part of a
       pattern-action pair (the usual case), and to the pattern-action state‐
       ments themselves.
   Patterns
       AWK patterns may be one of the following:
              BEGIN
              END
              BEGINFILE
              ENDFILE
              /regular expression/
              relational expression
              pattern && pattern
              pattern || pattern
              pattern ? pattern : pattern
              (pattern)
              ! pattern
              pattern1, pattern2
       BEGIN  and  END are two special kinds of patterns which are not tested
       against the input.  The action parts of all BEGIN patterns are  merged
       as  if  all  the  statements  had been written in a single BEGIN rule.
       They are executed before any of the input is read.  Similarly, all the
       END rules are merged, and executed when all the input is exhausted (or
       when an exit statement is executed).  BEGIN and END patterns cannot be
       combined  with  other  patterns in pattern expressions.  BEGIN and END
       patterns cannot have missing action parts.
       BEGINFILE and ENDFILE are additional special patterns whose bodies are
       executed  before  reading  the first record of each command line input
       file and after reading the last  record  of  each  file.   Inside  the
       BEGINFILE  rule,  the  value  of ERRNO will be the empty string if the
       file was opened successfully.  Otherwise, there is some  problem  with
       the  file  and the code should use nextfile to skip it. If that is not
       done, gawk produces its usual fatal error for  files  that  cannot  be
       opened.
       For  /regular  expression/  patterns, the associated statement is exe‐
       cuted for each input record that matches the regular expression.  Reg‐
       ular expressions are the same as those in egrep(1), and are summarized
       below.
       A relational expression may use any of the operators defined below  in
       the  section  on actions.  These generally test whether certain fields
       match certain regular expressions.
       The &&, ||, and !  operators are logical AND, logical OR, and  logical
       NOT, respectively, as in C.  They do short-circuit evaluation, also as
       in C, and are used for combining more primitive  pattern  expressions.
       As  in  most languages, parentheses may be used to change the order of
       evaluation.
       The ?: operator is like the same operator in C.  If the first  pattern
       is  true then the pattern used for testing is the second pattern, oth‐
       erwise it is the third.  Only one of the second and third patterns  is
       evaluated.
       The  pattern1,  pattern2  form of an expression is called a range pat‐
       tern.  It matches all  input  records  starting  with  a  record  that
       matches pattern1, and continuing until a record that matches pattern2,
       inclusive.  It does not combine with any other sort of pattern expres‐
       sion.
   Regular Expressions
       Regular  expressions  are  the extended kind found in egrep.  They are
       composed of characters as follows:
       c          Matches the non-metacharacter c.
       \c         Matches the literal character c.
       .          Matches any character including newline.
       ^          Matches the beginning of a string.
       $          Matches the end of a string.
       [abc...]   A character list: matches any  of  the  characters  abc....
                  You  may  include  a range of characters by separating them
                  with a dash.
       [^abc...]  A negated character  list:  matches  any  character  except
                  abc....
       r1|r2      Alternation: matches either r1 or r2.
       r1r2       Concatenation: matches r1, and then r2.
       r+         Matches one or more r's.
       r*         Matches zero or more r's.
       r?         Matches zero or one r's.
       (r)        Grouping: matches r.
       r{n}
       r{n,}
       r{n,m}     One or two numbers inside braces denote an interval expres‐
                  sion.  If there is one number in the braces, the  preceding
                  regular expression r is repeated n times.  If there are two
                  numbers separated by a comma, r is repeated n to  m  times.
                  If  there  is  one  number  followed  by a comma, then r is
                  repeated at least n times.
       \y         Matches the empty string at either the beginning or the end
                  of a word.
       \B         Matches the empty string within a word.
       \<         Matches the empty string at the beginning of a word.
       \>         Matches the empty string at the end of a word.
       \s         Matches any whitespace character.
       \S         Matches any nonwhitespace character.
       \w         Matches  any  word-constituent character (letter, digit, or
                  underscore).
       \W         Matches any character that is not word-constituent.
       \`         Matches the empty string  at  the  beginning  of  a  buffer
                  (string).
       \'         Matches the empty string at the end of a buffer.
       The  escape  sequences  that are valid in string constants (see String
       Constants) are also valid in regular expressions.
       Character classes are a feature introduced in the POSIX  standard.   A
       character  class is a special notation for describing lists of charac‐
       ters that have a specific attribute, but where the  actual  characters
       themselves  can vary from country to country and/or from character set
       to character set.  For example, the notion of what  is  an  alphabetic
       character differs in the USA and in France.
       A  character  class  is  only valid in a regular expression inside the
       brackets of a character list.  Character classes consist of [:, a key‐
       word denoting the class, and :].  The character classes defined by the
       POSIX standard are:
       [:alnum:]  Alphanumeric characters.
       [:alpha:]  Alphabetic characters.
       [:blank:]  Space or tab characters.
       [:cntrl:]  Control characters.
       [:digit:]  Numeric characters.
       [:graph:]  Characters that are both printable and visible.   (A  space
                  is printable, but not visible, while an a is both.)
       [:lower:]  Lowercase alphabetic characters.
       [:print:]  Printable characters (characters that are not control char‐
                  acters.)
       [:punct:]  Punctuation characters (characters  that  are  not  letter,
                  digits, control characters, or space characters).
       [:space:]  Space characters (such as space, tab, and formfeed, to name
                  a few).
       [:upper:]  Uppercase alphabetic characters.
       [:xdigit:] Characters that are hexadecimal digits.
       For example, before the POSIX standard, to match alphanumeric  charac‐
       ters,  you  would  have had to write /[A-Za-z0-9]/.  If your character
       set had other alphabetic characters in it, this would not match  them,
       and  if your character set collated differently from ASCII, this might
       not even match the ASCII  alphanumeric  characters.   With  the  POSIX
       character  classes,  you can write /[[:alnum:]]/, and this matches the
       alphabetic and numeric characters in your  character  set,  no  matter
       what it is.
       Two additional special sequences can appear in character lists.  These
       apply to non-ASCII character  sets,  which  can  have  single  symbols
       (called  collating  elements)  that are represented with more than one
       character, as well as several characters that are equivalent for  col‐
       lating,  or  sorting,  purposes.   (E.g., in French, a plain “e” and a
       grave-accented “`” are equivalent.)
       Collating Symbols
              A collating  symbol  is  a  multi-character  collating  element
              enclosed in [.  and .].  For example, if ch is a collating ele‐
              ment, then [[.ch.]]  is a regular expression that matches  this
              collating  element,  while  [ch]  is  a regular expression that
              matches either c or h.
       Equivalence Classes
              An equivalence class is a locale-specific name for  a  list  of
              characters that are equivalent.  The name is enclosed in [= and
              =].  For example, the name e might be used to represent all  of
              “e”,  “´”, and “`”.  In this case, [[=e=]] is a regular expres‐
              sion that matches any of e, ´, or `.
       These features are very valuable in non-English speaking locales.  The
       library  functions that gawk uses for regular expression matching cur‐
       rently only recognize POSIX character classes; they do  not  recognize
       collating symbols or equivalence classes.
       The  \y, \B, \<, \>, \s, \S, \w, \W, \`, and \' operators are specific
       to gawk; they are extensions based on facilities in  the  GNU  regular
       expression libraries.
       The  various  command line options control how gawk interprets charac‐
       ters in regular expressions.
       No options
              In the default case, gawk provides all the facilities of  POSIX
              regular  expressions  and  the GNU regular expression operators
              described above.
       --posix
              Only POSIX regular expressions are supported, the GNU operators
              are not special.  (E.g., \w matches a literal w).
       --traditional
              Traditional  UNIX awk regular expressions are matched.  The GNU
              operators are not special, and  interval  expressions  are  not
              available.   Characters  described  by  octal  and  hexadecimal
              escape sequences are treated literally, even if they  represent
              regular expression metacharacters.
       --re-interval
              Allow  interval  expressions  in  regular  expressions, even if
              --traditional has been provided.
   Actions
       Action statements are enclosed in braces, { and }.  Action  statements
       consist  of  the usual assignment, conditional, and looping statements
       found in most  languages.   The  operators,  control  statements,  and
       input/output statements available are patterned after those in C.
   Operators
       The operators in AWK, in order of decreasing precedence, are:
       (...)       Grouping
       $           Field reference.
       ++ --       Increment and decrement, both prefix and postfix.
       ^           Exponentiation  (**  may  also  be  used,  and **= for the
                   assignment operator).
       + - !       Unary plus, unary minus, and logical negation.
       * / %       Multiplication, division, and modulus.
       + -         Addition and subtraction.
       space       String concatenation.
       |   |&      Piped I/O for getline, print, and printf.
       < > <= >= != ==
                   The regular relational operators.
       ~ !~        Regular expression match, negated match.  NOTE: Do not use
                   a  constant  regular  expression  (/foo/) on the left-hand
                   side of a ~ or !~.  Only use one on the  right-hand  side.
                   The  expression /foo/ ~ exp has the same meaning as (($0 ~
                   /foo/) ~ exp).  This is usually not what you want.
       in          Array membership.
       &&          Logical AND.
       ||          Logical OR.
       ?:          The C conditional expression.  This has the form  expr1  ?
                   expr2 : expr3.  If expr1 is true, the value of the expres‐
                   sion is expr2, otherwise it is expr3.  Only one  of  expr2
                   and expr3 is evaluated.
       = += -= *= /= %= ^=
                   Assignment.   Both  absolute  assignment (var = value) and
                   operator-assignment (the other forms) are supported.
   Control Statements
       The control statements are as follows:
              if (condition) statement [ else statement ]
              while (condition) statement
              do statement while (condition)
              for (expr1; expr2; expr3) statement
              for (var in array) statement
              break
              continue
              delete array[index]
              delete array
              exit [ expression ]
              { statements }
              switch (expression) {
              case value|regex : statement
              ...
              [ default: statement ]
              }
   I/O Statements
       The input/output statements are as follows:
       close(file [, how])   Close file, pipe or  co-process.   The  optional
                             how  should only be used when closing one end of
                             a two-way pipe to a co-process.  It  must  be  a
                             string value, either "to" or "from".
       getline               Set  $0 from next input record; set NF, NR, FNR,
                             RT.
       getline <file         Set $0 from next record of file; set NF, RT.
       getline var           Set var from next input record; set NR, FNR, RT.
       getline var <file     Set var from next record of file, RT.
       command | getline [var]
                             Run command piping the output either into $0  or
                             var, as above, and RT.
       command |& getline [var]
                             Run  command  as  a co-process piping the output
                             either into $0 or var, as above,  and  RT.   Co-
                             processes  are  a  gawk extension.  (command can
                             also be a socket.  See  the  subsection  Special
                             File Names, below.)
       next                  Stop  processing  the current input record.  The
                             next input record is read and processing  starts
                             over  with the first pattern in the AWK program.
                             Upon reaching the end of the  input  data,  gawk
                             executes any END rule(s).
       nextfile              Stop  processing  the  current  input file.  The
                             next input record read comes from the next input
                             file.   FILENAME  and ARGIND are updated, FNR is
                             reset to 1, and processing starts over with  the
                             first pattern in the AWK program.  Upon reaching
                             the end of the input data, gawk executes any END
                             rule(s).
       print                 Print  the current record.  The output record is
                             terminated with the value of ORS.
       print expr-list       Print expressions.  Each expression is separated
                             by  the value of OFS.  The output record is ter‐
                             minated with the value of ORS.
       print expr-list >file Print expressions on file.  Each  expression  is
                             separated  by  the  value  of  OFS.   The output
                             record is terminated with the value of ORS.
       printf fmt, expr-list Format and print.   See  The  printf  Statement,
                             below.
       printf fmt, expr-list >file
                             Format and print on file.
       system(cmd-line)      Execute  the  command  cmd-line,  and return the
                             exit status.  (This may not be available on non-
                             POSIX  systems.)   See  the  manual for the full
                             details on the exit status.
       fflush([file])        Flush any buffers associated with the open  out‐
                             put file or pipe file.  If file is missing or if
                             it is the null string, then flush all open  out‐
                             put files and pipes.
       Additional output redirections are allowed for print and printf.
       print ... >> file
              Appends output to the file.
       print ... | command
              Writes on a pipe.
       print ... |& command
              Sends data to a co-process or socket.  (See also the subsection
              Special File Names, below.)
       The getline command returns 1 on success, 0 on end of file, and -1  on
       an  error.   Upon  an  error,  ERRNO is set to a string describing the
       problem.
       NOTE: Failure in opening a two-way socket results in a non-fatal error
       being  returned  to the calling function. If using a pipe, co-process,
       or socket to getline, or from print or printf within a loop, you  must
       use  close()  to  create  new instances of the command or socket.  AWK
       does not automatically close pipes, sockets, or co-processes when they
       return EOF.
   The printf Statement
       The  AWK  versions of the printf statement and sprintf() function (see
       below) accept the following conversion specification formats:
       %c      A single character.  If the argument used for %c  is  numeric,
               it  is  treated  as  a  character and printed.  Otherwise, the
               argument is assumed to be a string, and the only first charac‐
               ter of that string is printed.
       %d, %i  A decimal number (the integer part).
       %e, %E  A  floating  point number of the form [-]d.dddddde[+-]dd.  The
               %E format uses E instead of e.
       %f, %F  A floating point number of the  form  [-]ddd.dddddd.   If  the
               system  library  supports it, %F is available as well. This is
               like %f, but uses capital letters for special “not  a  number”
               and “infinity” values. If %F is not available, gawk uses %f.
       %g, %G  Use %e or %f conversion, whichever is shorter, with nonsignif‐
               icant zeros suppressed.  The %G format uses %E instead of %e.
       %o      An unsigned octal number (also an integer).
       %u      An unsigned decimal number (again, an integer).
       %s      A character string.
       %x, %X  An unsigned hexadecimal number (an integer).   The  %X  format
               uses ABCDEF instead of abcdef.
       %%      A single % character; no argument is converted.
       Optional,  additional parameters may lie between the % and the control
       letter:
       count$ Use the count'th argument at  this  point  in  the  formatting.
              This is called a positional specifier and is intended primarily
              for use in translated versions of format strings,  not  in  the
              original text of an AWK program.  It is a gawk extension.
       -      The expression should be left-justified within its field.
       space  For  numeric  conversions, prefix positive values with a space,
              and negative values with a minus sign.
       +      The plus sign, used before the width modifier (see below), says
              to  always  supply  a sign for numeric conversions, even if the
              data to be formatted is positive.  The +  overrides  the  space
              modifier.
       #      Use  an  “alternate form” for certain control letters.  For %o,
              supply a leading zero.  For %x, and %X, supply a leading 0x  or
              0X  for  a  nonzero  result.  For %e, %E, %f and %F, the result
              always contains a decimal point.   For  %g,  and  %G,  trailing
              zeros are not removed from the result.
       0      A leading 0 (zero) acts as a flag, that indicates output should
              be padded with zeroes instead of spaces.  This applies only  to
              the  numeric output formats.  This flag only has an effect when
              the field width is wider than the value to be printed.
       '      A single quote character instructs gawk to insert the  locale's
              thousands-separator character into decimal numbers, and to also
              use the locale's decimal point character  with  floating  point
              formats.  This requires correct locale support in the C library
              and in the definition of the current locale.
       width  The field should be padded to this width.  The  field  is  nor‐
              mally  padded  with spaces.  With the 0 flag, it is padded with
              zeroes.
       .prec  A number that specifies the precision  to  use  when  printing.
              For  the  %e, %E, %f and %F, formats, this specifies the number
              of digits you want printed to the right of the  decimal  point.
              For  the %g, and %G formats, it specifies the maximum number of
              significant digits.  For the %d, %i, %o, %u, %x,  and  %X  for‐
              mats,  it specifies the minimum number of digits to print.  For
              %s, it specifies the maximum  number  of  characters  from  the
              string that should be printed.
       The dynamic width and prec capabilities of the ISO C printf() routines
       are supported.  A * in place of either the width  or  prec  specifica‐
       tions causes their values to be taken from the argument list to printf
       or sprintf().  To use a positional specifier with a dynamic  width  or
       precision,  supply  the  count$ after the * in the format string.  For
       example, "%3$*2$.*1$s".
   Special File Names
       When doing I/O redirection from either print or printf into a file, or
       via  getline  from  a  file, gawk recognizes certain special filenames
       internally.  These filenames allow access  to  open  file  descriptors
       inherited  from gawk's parent process (usually the shell).  These file
       names may also be used on the command line to name  data  files.   The
       filenames are:
       -           The standard input.
       /dev/stdin  The standard input.
       /dev/stdout The standard output.
       /dev/stderr The standard error output.
       /dev/fd/n   The file associated with the open file descriptor n.
       These are particularly useful for error messages.  For example:
              print "You blew it!" > "/dev/stderr"
       whereas you would otherwise have to use
              print "You blew it!" | "cat 1>&2"
       The  following  special  filenames  may be used with the |& co-process
       operator for creating TCP/IP network connections:
       /inet/tcp/lport/rhost/rport
       /inet4/tcp/lport/rhost/rport
       /inet6/tcp/lport/rhost/rport
              Files for a TCP/IP connection on local  port  lport  to  remote
              host  rhost  on remote port rport.  Use a port of 0 to have the
              system pick a port.  Use /inet4 to force  an  IPv4  connection,
              and  /inet6  to force an IPv6 connection.  Plain /inet uses the
              system default (most likely IPv4).
       /inet/udp/lport/rhost/rport
       /inet4/udp/lport/rhost/rport
       /inet6/udp/lport/rhost/rport
              Similar, but use UDP/IP instead of TCP/IP.
   Numeric Functions
       AWK has the following built-in arithmetic functions:
       atan2(y, x)   Return the arctangent of y/x in radians.
       cos(expr)     Return the cosine of expr, which is in radians.
       exp(expr)     The exponential function.
       int(expr)     Truncate to integer.
       log(expr)     The natural logarithm function.
       rand()        Return a random number N, between 0 and 1, such that 0 ≤
                     N < 1.
       sin(expr)     Return the sine of expr, which is in radians.
       sqrt(expr)    Return the square root of expr.
       srand([expr]) Use  expr  as the new seed for the random number genera‐
                     tor.  If no expr is  provided,  use  the  time  of  day.
                     Return  the  previous seed for the random number genera‐
                     tor.
   String Functions
       Gawk has the following built-in string functions:
       asort(s [, d [, how] ]) Return the number of elements  in  the  source
                               array  s.  Sort the contents of s using gawk's
                               normal rules for comparing values, and replace
                               the  indices  of  the  sorted  values  s  with
                               sequential integers starting with  1.  If  the
                               optional  destination  array  d  is specified,
                               first duplicate s into d,  and  then  sort  d,
                               leaving  the  indices  of  the  source array s
                               unchanged. The optional  string  how  controls
                               the  direction and the comparison mode.  Valid
                               values for how are any of  the  strings  valid
                               for PROCINFO["sorted_in"].  It can also be the
                               name of a user-defined comparison function  as
                               described in PROCINFO["sorted_in"].
       asorti(s [, d [, how] ])
                               Return  the  number  of elements in the source
                               array s.  The behavior is the same as that  of
                               asort(),  except  that  the  array indices are
                               used for sorting, not the array values.   When
                               done,  the  array  is indexed numerically, and
                               the values are those of the original  indices.
                               The  original  values are lost; thus provide a
                               second array if you wish to preserve the orig‐
                               inal.   The purpose of the optional string how
                               is the same as described in asort() above.
       gensub(r, s, h [, t])   Search the target string t for matches of  the
                               regular expression r.  If h is a string begin‐
                               ning with g or G, then replace all matches  of
                               r with s.  Otherwise, h is a number indicating
                               which match of r to replace.  If t is not sup‐
                               plied, use $0 instead.  Within the replacement
                               text s, the sequence \n, where n  is  a  digit
                               from  1 to 9, may be used to indicate just the
                               text that matched the n'th parenthesized  sub‐
                               expression.   The  sequence  \0 represents the
                               entire matched text, as does the character  &.
                               Unlike  sub()  and gsub(), the modified string
                               is returned as the result of the function, and
                               the original target string is not changed.
       gsub(r, s [, t])        For   each   substring  matching  the  regular
                               expression r in the string t,  substitute  the
                               string  s,  and return the number of substitu‐
                               tions.  If t is not supplied, use $0.  An & in
                               the replacement text is replaced with the text
                               that was actually matched.  Use \&  to  get  a
                               literal  &.  (This must be typed as "\\&"; see
                               GAWK: Effective AWK Programming for  a  fuller
                               discussion  of  the  rules  for  &'s and back‐
                               slashes in  the  replacement  text  of  sub(),
                               gsub(), and gensub().)
       index(s, t)             Return the index of the string t in the string
                               s, or 0 if t is not  present.   (This  implies
                               that character indices start at one.)  It is a
                               fatal error to use a regexp constant for t.
       length([s])             Return the length of  the  string  s,  or  the
                               length  of $0 if s is not supplied.  As a non-
                               standard extension, with  an  array  argument,
                               length() returns the number of elements in the
                               array.
       match(s, r [, a])       Return the position in  s  where  the  regular
                               expression r occurs, or 0 if r is not present,
                               and set the  values  of  RSTART  and  RLENGTH.
                               Note  that  the  argument order is the same as
                               for the ~ operator: str ~ re.  If array  a  is
                               provided,  a  is  cleared  and then elements 1
                               through n are filled with the  portions  of  s
                               that  match  the  corresponding  parenthesized
                               subexpression in r.  The  0'th  element  of  a
                               contains  the  portion  of  s  matched  by the
                               entire regular expression r.  Subscripts  a[n,
                               "start"],   and  a[n,  "length"]  provide  the
                               starting  index  in  the  string  and   length
                               respectively, of each matching substring.
       patsplit(s, a [, r [, seps] ])
                               Split  the  string  s into the array a and the
                               separators array seps on the  regular  expres‐
                               sion r, and return the number of fields.  Ele‐
                               ment values are the portions of s that matched
                               r.  The value of seps[i] is the separator that
                               appeared in front of a[i+1].  If r is omitted,
                               FPAT  is  used instead.  The arrays a and seps
                               are cleared first.  Splitting behaves  identi‐
                               cally  to field splitting with FPAT, described
                               above.
       split(s, a [, r [, seps] ])
                               Split the string s into the array  a  and  the
                               separators  array  seps on the regular expres‐
                               sion r, and return the number of fields.  If r
                               is  omitted, FS is used instead.  The arrays a
                               and seps are cleared first.   seps[i]  is  the
                               field  separator matched by r between a[i] and
                               a[i+1].  If r is a single space, then  leading
                               whitespace in s goes into the extra array ele‐
                               ment seps[0] and trailing whitespace goes into
                               the  extra  array  element seps[n], where n is
                               the return value  of  split(s,  a,  r,  seps).
                               Splitting  behaves identically to field split‐
                               ting, described above.
       sprintf(fmt, expr-list) Print expr-list according to fmt,  and  return
                               the resulting string.
       strtonum(str)           Examine str, and return its numeric value.  If
                               str begins with a leading 0, treat  it  as  an
                               octal number.  If str begins with a leading 0x
                               or 0X, treat it as a hexadecimal number.  Oth‐
                               erwise, assume it is a decimal number.
       sub(r, s [, t])         Just  like  gsub(), but replace only the first
                               matching substring.
       substr(s, i [, n])      Return the at most n-character substring of  s
                               starting  at i.  If n is omitted, use the rest
                               of s.
       tolower(str)            Return a copy of the string str, with all  the
                               uppercase  characters  in  str  translated  to
                               their  corresponding  lowercase  counterparts.
                               Non-alphabetic characters are left unchanged.
       toupper(str)            Return  a copy of the string str, with all the
                               lowercase  characters  in  str  translated  to
                               their  corresponding  uppercase  counterparts.
                               Non-alphabetic characters are left unchanged.
       Gawk is multibyte aware.  This means that index(), length(),  substr()
       and match() all work in terms of characters, not bytes.
   Time Functions
       Since  one of the primary uses of AWK programs is processing log files
       that contain time stamp information, gawk provides the following func‐
       tions for obtaining time stamps and formatting them.
       mktime(datespec)
                 Turn datespec into a time stamp of the same form as returned
                 by systime(), and return the  result.   The  datespec  is  a
                 string  of the form YYYY MM DD HH MM SS[ DST].  The contents
                 of the string are six or seven numbers representing  respec‐
                 tively  the full year including century, the month from 1 to
                 12, the day of the month from 1 to 31, the hour of  the  day
                 from  0 to 23, the minute from 0 to 59, the second from 0 to
                 60, and an optional daylight saving  flag.   The  values  of
                 these  numbers  need not be within the ranges specified; for
                 example, an hour of -1 means 1 hour  before  midnight.   The
                 origin-zero  Gregorian calendar is assumed, with year 0 pre‐
                 ceding year 1 and year -1 preceding year  0.   The  time  is
                 assumed to be in the local timezone.  If the daylight saving
                 flag is positive, the time is assumed to be daylight  saving
                 time;  if zero, the time is assumed to be standard time; and
                 if negative (the default), mktime()  attempts  to  determine
                 whether  daylight saving time is in effect for the specified
                 time.  If datespec does not contain enough  elements  or  if
                 the resulting time is out of range, mktime() returns -1.
       strftime([format [, timestamp[, utc-flag]]])
                 Format  timestamp  according to the specification in format.
                 If utc-flag is present and  is  non-zero  or  non-null,  the
                 result  is  in  UTC,  otherwise the result is in local time.
                 The timestamp should be of the same form as returned by sys‐
                 time().  If timestamp is missing, the current time of day is
                 used.  If format is missing, a default format equivalent  to
                 the output of date(1) is used.  The default format is avail‐
                 able in PROCINFO["strftime"].  See the specification for the
                 strftime() function in ISO C for the format conversions that
                 are guaranteed to be available.
       systime() Return the current time of day  as  the  number  of  seconds
                 since the Epoch (1970-01-01 00:00:00 UTC on POSIX systems).
   Bit Manipulations Functions
       Gawk  supplies the following bit manipulation functions.  They work by
       converting double-precision floating point values to  uintmax_t  inte‐
       gers,  doing  the  operation,  and  then converting the result back to
       floating point.  The functions are:
       and(v1, v2 [, ...]) Return the bitwise AND of the values  provided  in
                           the argument list.  There must be at least two.
       compl(val)          Return the bitwise complement of val.
       lshift(val, count)  Return  the  value  of  val, shifted left by count
                           bits.
       or(v1, v2 [, ...])  Return the bitwise OR of the  values  provided  in
                           the argument list.  There must be at least two.
       rshift(val, count)  Return  the  value  of val, shifted right by count
                           bits.
       xor(v1, v2 [, ...]) Return the bitwise XOR of the values  provided  in
                           the argument list.  There must be at least two.
   Type Function
       The following function is for use with multidimensional arrays.
       isarray(x)
              Return true if x is an array, false otherwise.
   Internationalization Functions
       The  following  functions may be used from within your AWK program for
       translating strings at run-time.  For full details, see  GAWK:  Effec‐
       tive AWK Programming.
       bindtextdomain(directory [, domain])
              Specify  the  directory where gawk looks for the .gmo files, in
              case they will not or cannot  be  placed  in  the  ``standard''
              locations  (e.g.,  during  testing).   It returns the directory
              where domain is ``bound.''
              The default domain is the value of TEXTDOMAIN.  If directory is
              the null string (""), then bindtextdomain() returns the current
              binding for the given domain.
       dcgettext(string [, domain [, category]])
              Return the translation of string  in  text  domain  domain  for
              locale  category category.  The default value for domain is the
              current value of TEXTDOMAIN.  The default value for category is
              "LC_MESSAGES".
              If  you  supply a value for category, it must be a string equal
              to one of the known locale categories described in GAWK: Effec‐
              tive AWK Programming.  You must also supply a text domain.  Use
              TEXTDOMAIN if you want to use the current domain.
       dcngettext(string1, string2, number [, domain [, category]])
              Return the plural form used for number of  the  translation  of
              string1  and  string2 in text domain domain for locale category
              category.  The default value for domain is the current value of
              TEXTDOMAIN.  The default value for category is "LC_MESSAGES".
              If  you  supply a value for category, it must be a string equal
              to one of the known locale categories described in GAWK: Effec‐
              tive AWK Programming.  You must also supply a text domain.  Use
              TEXTDOMAIN if you want to use the current domain.
USER-DEFINED FUNCTIONS
       Functions in AWK are defined as follows:
              function name(parameter list) { statements }
       Functions are executed when they are called from within expressions in
       either  patterns  or actions.  Actual parameters supplied in the func‐
       tion call are used to instantiate the formal  parameters  declared  in
       the  function.   Arrays  are  passed by reference, other variables are
       passed by value.
       Since functions were not originally part of the AWK language, the pro‐
       vision  for  local  variables  is  rather clumsy: They are declared as
       extra parameters in the parameter list.  The convention is to separate
       local  variables from real parameters by extra spaces in the parameter
       list.  For example:
              function  f(p, q,     a, b)   # a and b are local
              {
                   ...
              }
              /abc/     { ... ; f(1, 2) ; ... }
       The left parenthesis in a function call  is  required  to  immediately
       follow  the  function  name, without any intervening whitespace.  This
       avoids a syntactic ambiguity with the  concatenation  operator.   This
       restriction does not apply to the built-in functions listed above.
       Functions  may call each other and may be recursive.  Function parame‐
       ters used as local variables are initialized to the  null  string  and
       the number zero upon function invocation.
       Use  return  expr to return a value from a function.  The return value
       is undefined if no value is provided, or if the  function  returns  by
       “falling off” the end.
       As  a  gawk extension, functions may be called indirectly. To do this,
       assign the name of the function to be called, as a string, to a  vari‐
       able.   Then  use  the  variable as if it were the name of a function,
       prefixed with an @ sign, like so:
              function myfunc()
              {
                   print "myfunc called"
                   ...
              }
              {    ...
                   the_func = "myfunc"
                   @the_func()    # call through the_func to myfunc
                   ...
              }
       As of version 4.1.2, this works with user-defined functions,  built-in
       functions, and extension functions.
       If --lint has been provided, gawk warns about calls to undefined func‐
       tions at parse time, instead of at run  time.   Calling  an  undefined
       function at run time is a fatal error.
       The  word func may be used in place of function, although this is dep‐
       recated.
DYNAMICALLY LOADING NEW FUNCTIONS
       You can dynamically add new built-in functions  to  the  running  gawk
       interpreter with the @load statement.  The full details are beyond the
       scope of this manual page; see GAWK: Effective AWK Programming.
SIGNALS
       The gawk profiler accepts two signals.  SIGUSR1 causes it  to  dump  a
       profile  and  function call stack to the profile file, which is either
       awkprof.out, or whatever file was named with the --profile option.  It
       then  continues  to  run.   SIGHUP causes gawk to dump the profile and
       function call stack and then exit.
INTERNATIONALIZATION
       String constants  are  sequences  of  characters  enclosed  in  double
       quotes.   In non-English speaking environments, it is possible to mark
       strings in the AWK program as requiring translation to the local natu‐
       ral  language. Such strings are marked in the AWK program with a lead‐
       ing underscore (“_”).  For example,
              gawk 'BEGIN { print "hello, world" }'
       always prints hello, world.  But,
              gawk 'BEGIN { print _"hello, world" }'
       might print bonjour, monde in France.
       There are several steps involved in producing and running  a  localiz‐
       able AWK program.
       1.  Add a BEGIN action to assign a value to the TEXTDOMAIN variable to
           set the text domain to a name associated with your program:
                BEGIN { TEXTDOMAIN = "myprog" }
           This allows gawk to find the .gmo file associated with  your  pro‐
           gram.   Without  this  step,  gawk  uses the messages text domain,
           which likely does not contain translations for your program.
       2.  Mark all strings that should be  translated  with  leading  under‐
           scores.
       3.  If  necessary,  use  the dcgettext() and/or bindtextdomain() func‐
           tions in your program, as appropriate.
       4.  Run gawk --gen-pot -f myprog.awk > myprog.pot to generate  a  .pot
           file for your program.
       5.  Provide appropriate translations, and build and install the corre‐
           sponding .gmo files.
       The internationalization features are  described  in  full  detail  in
       GAWK: Effective AWK Programming.
POSIX COMPATIBILITY
       A  primary  goal for gawk is compatibility with the POSIX standard, as
       well as with the latest version of Brian  Kernighan's  awk.   To  this
       end,  gawk  incorporates the following user visible features which are
       not described in the AWK book, but are part of the  Brian  Kernighan's
       version of awk, and are in the POSIX standard.
       The  book indicates that command line variable assignment happens when
       awk would otherwise open the argument as a file, which  is  after  the
       BEGIN  rule  is  executed.   However, in earlier implementations, when
       such an assignment appeared before  any  file  names,  the  assignment
       would  happen  before  the  BEGIN  rule was run.  Applications came to
       depend on this “feature.”  When awk was changed to match its  documen‐
       tation, the -v option for assigning variables before program execution
       was added to accommodate  applications  that  depended  upon  the  old
       behavior.  (This feature was agreed upon by both the Bell Laboratories
       and the GNU developers.)
       When processing arguments, gawk uses the special option “--” to signal
       the  end of arguments.  In compatibility mode, it warns about but oth‐
       erwise ignores undefined options.  In normal operation, such arguments
       are passed on to the AWK program for it to process.
       The  AWK  book does not define the return value of srand().  The POSIX
       standard has it return the seed it was using, to allow  keeping  track
       of  random  number  sequences.  Therefore srand() in gawk also returns
       its current seed.
       Other new features are: The use of multiple -f options (from MKS awk);
       the ENVIRON array; the \a, and \v escape sequences (done originally in
       gawk and fed back into the Bell Laboratories version);  the  tolower()
       and toupper() built-in functions (from the Bell Laboratories version);
       and the ISO C conversion specifications in printf (done first  in  the
       Bell Laboratories version).
HISTORICAL FEATURES
       There  is one feature of historical AWK implementations that gawk sup‐
       ports: It is possible to call the length() built-in function not  only
       with no argument, but even without parentheses!  Thus,
              a = length     # Holy Algol 60, Batman!
       is the same as either of
              a = length()
              a = length($0)
       Using  this  feature is poor practice, and gawk issues a warning about
       its use if --lint is specified on the command line.
GNU EXTENSIONS
       Gawk has a too-large number of extensions  to  POSIX  awk.   They  are
       described  in  this section.  All the extensions described here can be
       disabled by invoking gawk with the --traditional or --posix options.
       The following features of gawk are not available in POSIX awk.
       · No path search is performed for  files  named  via  the  -f  option.
         Therefore the AWKPATH environment variable is not special.
       · There is no facility for doing file inclusion (gawk's @include mech‐
         anism).
       · There is no facility for dynamically adding new functions written in
         C (gawk's @load mechanism).
       · The \x escape sequence.  (Disabled with --posix.)
       · The  ability  to  continue  lines  after  ?   and :.  (Disabled with
         --posix.)
       · Octal and hexadecimal constants in AWK programs.
       · The ARGIND, BINMODE, ERRNO, LINT, RT and  TEXTDOMAIN  variables  are
         not special.
       · The IGNORECASE variable and its side-effects are not available.
       · The FIELDWIDTHS variable and fixed-width field splitting.
       · The FPAT variable and field splitting based on field values.
       · The PROCINFO array is not available.
       · The use of RS as a regular expression.
       · The  special file names available for I/O redirection are not recog‐
         nized.
       · The |& operator for creating co-processes.
       · The BEGINFILE and ENDFILE special patterns are not available.
       · The ability to split out individual characters using the null string
         as the value of FS, and as the third argument to split().
       · An  optional  fourth  argument  to  split() to receive the separator
         texts.
       · The optional second argument to the close() function.
       · The optional third argument to the match() function.
       · The ability to use positional specifiers with printf and sprintf().
       · The ability to pass an array to length().
       · The and(),  asort(),  asorti(),  bindtextdomain(),  compl(),  dcget‐
         text(),  dcngettext(),  gensub(),  lshift(),  mktime(),  or(),  pat‐
         split(), rshift(), strftime(), strtonum(), systime() and xor() func‐
         tions.
       · Localizable strings.
       The AWK book does not define the return value of the close() function.
       Gawk's close() returns the value from fclose(3),  or  pclose(3),  when
       closing  an  output  file  or  pipe,  respectively.   It  returns  the
       process's exit status when closing an input pipe.  The return value is
       -1  if  the named file, pipe or co-process was not opened with a redi‐
       rection.
       When gawk is invoked with the --traditional option, if the fs argument
       to  the  -F  option is “t”, then FS is set to the tab character.  Note
       that typing gawk -F\t ...  simply causes the shell to quote  the  “t,”
       and  does not pass “\t” to the -F option.  Since this is a rather ugly
       special case, it is not the default behavior.  This behavior also does
       not  occur if --posix has been specified.  To really get a tab charac‐
       ter as the field separator, it is best  to  use  single  quotes:  gawk
       -F'\t' ....
ENVIRONMENT VARIABLES
       The  AWKPATH  environment  variable  can  be used to provide a list of
       directories that gawk searches when looking for files  named  via  the
       -f,  --file,  -i  and --include options.  If the initial search fails,
       the path is searched again after appending .awk to the filename.
       The AWKLIBPATH environment variable can be used to provide a  list  of
       directories that gawk searches when looking for files named via the -l
       and --load options.
       The GAWK_READ_TIMEOUT environment variable can be used  to  specify  a
       timeout  in  milliseconds  for  reading input from a terminal, pipe or
       two-way communication including sockets.
       For connection to a remote host via socket, GAWK_SOCK_RETRIES controls
       the  number  of  retries, and GAWK_MSEC_SLEEP and the interval between
       retries.  The interval is in milliseconds. On systems that do not sup‐
       port  usleep(3), the value is rounded up to an integral number of sec‐
       onds.
       If POSIXLY_CORRECT  exists  in  the  environment,  then  gawk  behaves
       exactly  as  if  --posix  had  been specified on the command line.  If
       --lint has been specified, gawk  issues  a  warning  message  to  this
       effect.
EXIT STATUS
       If  the  exit statement is used with a value, then gawk exits with the
       numeric value given to it.
       Otherwise, if there were no problems during execution, gawk exits with
       the value of the C constant EXIT_SUCCESS.  This is usually zero.
       If  an  error  occurs,  gawk  exits  with  the value of the C constant
       EXIT_FAILURE.  This is usually one.
       If gawk exits because of a fatal error, the exit status is 2.  On non-
       POSIX systems, this value may be mapped to EXIT_FAILURE.
VERSION INFORMATION
       This man page documents gawk, version 4.1.
AUTHORS
       The  original  version  of  UNIX  awk  was designed and implemented by
       Alfred Aho, Peter Weinberger, and Brian Kernighan  of  Bell  Laborato‐
       ries.  Brian Kernighan continues to maintain and enhance it.
       Paul  Rubin  and  Jay Fenlason, of the Free Software Foundation, wrote
       gawk, to be compatible with the original version of awk distributed in
       Seventh  Edition  UNIX.  John Woods contributed a number of bug fixes.
       David Trueman, with contributions from Arnold Robbins, made gawk  com‐
       patible  with the new version of UNIX awk.  Arnold Robbins is the cur‐
       rent maintainer.
       See GAWK: Effective AWK Programming for a full list of  the  contribu‐
       tors to gawk and its documentation.
       See  the  README file in the gawk distribution for up-to-date informa‐
       tion about maintainers and which ports are currently supported.
BUG REPORTS
       If you find a bug  in  gawk,  please  send  electronic  mail  to  bug-
       gawk@gnu.org.   Please include your operating system and its revision,
       the version of gawk (from gawk --version), which C compiler  you  used
       to compile it, and a test program and data that are as small as possi‐
       ble for reproducing the problem.
       Before sending a bug report, please do the following  things.   First,
       verify  that  you have the latest version of gawk.  Many bugs (usually
       subtle ones) are fixed at each release, and if yours is out  of  date,
       the  problem may already have been solved.  Second, please see if set‐
       ting the environment variable LC_ALL  to  LC_ALL=C  causes  things  to
       behave  as  you expect. If so, it's a locale issue, and may or may not
       really be a bug.  Finally, please read this man page and the reference
       manual  carefully  to  be sure that what you think is a bug really is,
       instead of just a quirk in the language.
       Whatever you do, do NOT post a bug report in comp.lang.awk.  While the
       gawk  developers occasionally read this newsgroup, posting bug reports
       there is an unreliable way to report bugs.  Instead,  please  use  the
       electronic mail addresses given above.  Really.
       If  you're using a GNU/Linux or BSD-based system, you may wish to sub‐
       mit a bug report to the vendor of your distribution.  That's fine, but
       please  send  a  copy  to  the  official  email address as well, since
       there's no guarantee that the bug report will be forwarded to the gawk
       maintainer.
BUGS
       The -F option is not necessary given the command line variable assign‐
       ment feature; it remains only for backwards compatibility.
SEE ALSO
       egrep(1),  sed(1),  getpid(2),  getppid(2),   getpgrp(2),   getuid(2),
       geteuid(2), getgid(2), getegid(2), getgroups(2), usleep(3)
       The AWK Programming Language, Alfred V. Aho, Brian W. Kernighan, Peter
       J. Weinberger, Addison-Wesley, 1988.  ISBN 0-201-07981-X.
       GAWK: Effective AWK Programming, Edition 4.1, shipped  with  the  gawk
       source.   The  current version of this document is available online at
       http://www.gnu.org/software/gawk/manual.
EXAMPLES
       Print and sort the login names of all users:
            BEGIN     { FS = ":" }
                 { print $1 | "sort" }
       Count lines in a file:
                 { nlines++ }
            END  { print nlines }
       Precede each line by its number in the file:
            { print FNR, $0 }
       Concatenate and line number (a variation on a theme):
            { print NR, $0 }
       Run an external command for particular lines of data:
            tail -f access_log |
            awk '/myhome.html/ { system("nmap " $1 ">> logdir/myhome.html") }'
ACKNOWLEDGEMENTS
       Brian Kernighan provided valuable assistance during testing and debug‐
       ging.  We thank him.
COPYING PERMISSIONS
       Copyright  ©  1989,  1991,  1992,  1993, 1994, 1995, 1996, 1997, 1998,
       1999, 2001, 2002, 2003, 2004, 2005,  2007,  2009,  2010,  2011,  2012,
       2013, 2014, 2016 Free Software Foundation, Inc.
       Permission  is  granted to make and distribute verbatim copies of this
       manual page provided the copyright notice and this  permission  notice
       are preserved on all copies.
       Permission is granted to copy and distribute modified versions of this
       manual page under the conditions for verbatim copying,  provided  that
       the  entire resulting derived work is distributed under the terms of a
       permission notice identical to this one.
       Permission is granted to copy and distribute translations of this man‐
       ual  page  into another language, under the above conditions for modi‐
       fied versions, except that this permission notice may be stated  in  a
       translation approved by the Foundation.
Free Software Foundation          Mar 7 2016                          GAWK(1)

 

  • vim

常用工作模式

普通模式

插入模式

命令模式

进入插入模式

a 于光标后

A 于当前段落段尾

i 于光标前

I 于当前段落段首

o 于当前行后创建新的空白行

O 与当前行前创建新的空白行

光标操作

h 左一位

j 下一行

k 上一行

l 右一位

gg 至文件首行

G 至文件末尾

nG 至第n行

^ 至当前行首字符

$ 至当前行尾字符

fx 至当前行的下一位x

Fx 至当前行的上一位x

w 向右一个单词

x 删除光标当前字符

dd 删除一行

ndd 删除n行

d$ 删除光标至行尾

J 删换行符,合并为一行

u 撤销上一步

rx 光标当前字符替换为x

yy 复制当前行

p 粘贴至当前行之后

q 粘贴至当前行之前

查找与替换

普通模式下输入:进入命令模式完成替换功能

:s/root/admin/ 光标当前行中第一个root换为admin

:s/root/admin/g 当前行中所有root换为admin

:3,5s/sbin/bin/g 3-5行间所有替换

:%s/nologin/fault/g 所有行替换

保存与退出

:q! 不保存退出

:wq! 保存并退出

😡 保存并退出

:w 保存

:w b.txt 另存

其他

命令模式下输入

:set number 或set nu  添加行号

:set ignorecase 忽略大小写

:split 一个文件不同行同时编辑

窗口切换

ctrl+w+h 左

ctrl+w+l 右

ctrl+w+j 上

ctrl+w+k 下

SYNOPSIS
       vim [options] [file ..]
       vim [options] -
       vim [options] -t tag
       vim [options] -q [errorfile]
       ex
       view
       gvim gview evim eview
       rvim rview rgvim rgview
DESCRIPTION
       Vim is a text editor that is upwards compatible to Vi.  It can be used
       to edit all kinds of plain text.  It is especially useful for  editing
       programs.
       There are a lot of enhancements above Vi: multi level undo, multi win‐
       dows and buffers, syntax highlighting, command line editing,  filename
       completion,   on-line   help,  visual  selection,  etc..   See  ":help
       vi_diff.txt" for a summary of the differences between Vim and Vi.
       While running Vim a lot of help can be obtained from the on-line  help
       system, with the ":help" command.  See the ON-LINE HELP section below.
       Most often Vim is started to edit a single file with the command
            vim file
       More generally Vim is started with:
            vim [options] [filelist]
       If  the  filelist is missing, the editor will start with an empty buf‐
       fer.  Otherwise exactly one out of the following four may be  used  to
       choose one or more files to be edited.
       file ..     A  list  of  filenames.  The first one will be the current
                   file and read into the buffer.  The cursor will  be  posi‐
                   tioned  on  the  first line of the buffer.  You can get to
                   the other files with the ":next" command.  To edit a  file
                   that starts with a dash, precede the filelist with "--".
       -           The  file  to  edit is read from stdin.  Commands are read
                   from stderr, which should be a tty.
       -t {tag}    The file to edit and the initial cursor  position  depends
                   on  a  "tag", a sort of goto label.  {tag} is looked up in
                   the tags file, the associated  file  becomes  the  current
                   file  and the associated command is executed.  Mostly this
                   is used for C programs, in which case  {tag}  could  be  a
                   function  name.   The  effect  is that the file containing
                   that function becomes the current file and the  cursor  is
                   positioned  on  the  start  of  the  function.  See ":help
                   tag-commands".
       -q [errorfile]
                   Start in quickFix mode.  The file [errorfile] is read  and
                   the  first error is displayed.  If [errorfile] is omitted,
                   the filename is obtained from the 'errorfile' option  (de‐
                   faults  to  "AztecC.Err"  for  the  Amiga, "errors.err" on
                   other systems).  Further errors can be jumped to with  the
                   ":cn" command.  See ":help quickfix".
       Vim behaves differently, depending on the name of the command (the ex‐
       ecutable may still be the same file).
       vim       The "normal" way, everything is default.
       ex        Start in Ex mode.  Go to Normal mode with the ":vi" command.
                 Can also be done with the "-e" argument.
       view      Start in read-only mode.  You will be protected from writing
                 the files.  Can also be done with the "-R" argument.
       gvim gview
                 The GUI version.  Starts a new window.   Can  also  be  done
                 with the "-g" argument.
       evim eview
                 The  GUI  version  in  easy mode.  Starts a new window.  Can
                 also be done with the "-y" argument.
       rvim rview rgvim rgview
                 Like the above, but with restrictions.  It will not be  pos‐
                 sible  to start shell commands, or suspend Vim.  Can also be
                 done with the "-Z" argument.
OPTIONS
       The options may be given in any order, before or after filenames.  Op‐
       tions without an argument can be combined after a single dash.
       +[num]      For  the  first file the cursor will be positioned on line
                   "num".  If "num" is missing, the cursor will be positioned
                   on the last line.
       +/{pat}     For  the  first  file the cursor will be positioned in the
                   line with the  first  occurrence  of  {pat}.   See  ":help
                   search-pattern" for the available search patterns.
       +{command}
       -c {command}
                   {command}  will  be executed after the first file has been
                   read.  {command} is interpreted as an Ex command.  If  the
                   {command}  contains  spaces  it must be enclosed in double
                   quotes (this depends on the shell that is used).  Example:
                   Vim "+set si" main.c
                   Note: You can use up to 10 "+" or "-c" commands.
       -S {file}   {file} will be sourced after the first file has been read.
                   This is equivalent to -c "source {file}".   {file}  cannot
                   start  with  '-'.   If  {file} is omitted "Session.vim" is
                   used (only works when -S is the last argument).
       --cmd {command}
                   Like using "-c", but the command is executed  just  before
                   processing  any vimrc file.  You can use up to 10 of these
                   commands, independently from "-c" commands.
       -A          If Vim has been compiled with ARABIC support  for  editing
                   right-to-left  oriented files and Arabic keyboard mapping,
                   this option starts Vim in Arabic mode,  i.e.  'arabic'  is
                   set.  Otherwise an error message is given and Vim aborts.
       -b          Binary mode.  A few options will be set that makes it pos‐
                   sible to edit a binary or executable file.
       -C          Compatible.  Set the 'compatible' option.  This will  make
                   Vim  behave  mostly like Vi, even though a .vimrc file ex‐
                   ists.
       -d          Start in diff mode.  There should be two,  three  or  four
                   file name arguments.  Vim will open all the files and show
                   differences between them.  Works like vimdiff(1).
       -d {device} Open {device} for use as a terminal.  Only on  the  Amiga.
                   Example: "-d con:20/30/600/150".
       -D          Debugging.   Go to debugging mode when executing the first
                   command from a script.
       -e          Start Vim in Ex mode, just like the executable was  called
                   "ex".
       -E          Start  Vim  in  improved Ex mode, just like the executable
                   was called "exim".
       -f          Foreground.  For the GUI version, Vim will  not  fork  and
                   detach  from  the  shell it was started in.  On the Amiga,
                   Vim is not restarted to open a new  window.   This  option
                   should be used when Vim is executed by a program that will
                   wait for the edit session to finish (e.g. mail).   On  the
                   Amiga the ":sh" and ":!" commands will not work.
       --nofork    Foreground.   For  the  GUI version, Vim will not fork and
                   detach from the shell it was started in.
       -F          If Vim has been compiled with FKMAP  support  for  editing
                   right-to-left  oriented  files and Farsi keyboard mapping,
                   this option starts Vim in Farsi  mode,  i.e.  'fkmap'  and
                   'rightleft'  are set.  Otherwise an error message is given
                   and Vim aborts.
       -g          If Vim has been compiled with GUI support, this option en‐
                   ables  the GUI.  If no GUI support was compiled in, an er‐
                   ror message is given and Vim aborts.
       -h          Give a bit of help about the command  line  arguments  and
                   options.  After this Vim exits.
       -H          If  Vim has been compiled with RIGHTLEFT support for edit‐
                   ing right-to-left oriented files and Hebrew keyboard  map‐
                   ping,  this option starts Vim in Hebrew mode, i.e. 'hkmap'
                   and 'rightleft' are set.  Otherwise an  error  message  is
                   given and Vim aborts.
       -i {viminfo}
                   Specifies  the filename to use when reading or writing the
                   viminfo file, instead of the default  "~/.viminfo".   This
                   can  also be used to skip the use of the .viminfo file, by
                   giving the name "NONE".
       -L          Same as -r.
       -l          Lisp mode.  Sets the 'lisp' and 'showmatch' options on.
       -m          Modifying files is disabled.  Resets the  'write'  option.
                   You can still modify the buffer, but writing a file is not
                   possible.
       -M          Modifications not allowed.  The 'modifiable'  and  'write'
                   options will be unset, so that changes are not allowed and
                   files can not be written.  Note that these options can  be
                   set to enable making modifications.
       -N          No-compatible mode.  Resets the 'compatible' option.  This
                   will make Vim behave a bit better, but less Vi compatible,
                   even though a .vimrc file does not exist.
       -n          No swap file will be used.  Recovery after a crash will be
                   impossible.  Handy if you want to edit a file  on  a  very
                   slow  medium  (e.g.  floppy).  Can also be done with ":set
                   uc=0".  Can be undone with ":set uc=200".
       -nb         Become an editor server for NetBeans.  See  the  docs  for
                   details.
       -o[N]       Open  N windows stacked.  When N is omitted, open one win‐
                   dow for each file.
       -O[N]       Open N windows side by side.  When N is omitted, open  one
                   window for each file.
       -p[N]       Open  N  tab  pages.  When N is omitted, open one tab page
                   for each file.
       -R          Read-only mode.  The 'readonly' option will be  set.   You
                   can  still edit the buffer, but will be prevented from ac‐
                   cidentally overwriting a file.  If you do  want  to  over‐
                   write  a  file, add an exclamation mark to the Ex command,
                   as in ":w!".  The -R option also  implies  the  -n  option
                   (see  above).   The  'readonly'  option  can be reset with
                   ":set noro".  See ":help 'readonly'".
       -r          List swap files, with information about using them for re‐
                   covery.
       -r {file}   Recovery mode.  The swap file is used to recover a crashed
                   editing session.  The swap file is a file  with  the  same
                   filename  as  the  text  file  with  ".swp" appended.  See
                   ":help recovery".
       -s          Silent mode.  Only when started as "Ex" or when  the  "-e"
                   option was given before the "-s" option.
       -s {scriptin}
                   The script file {scriptin} is read.  The characters in the
                   file are interpreted as if you had typed them.   The  same
                   can  be  done  with the command ":source! {scriptin}".  If
                   the end of the file is reached before  the  editor  exits,
                   further characters are read from the keyboard.
       -T {terminal}
                   Tells  Vim  the  name of the terminal you are using.  Only
                   required when the automatic way doesn't work.  Should be a
                   terminal  known to Vim (builtin) or defined in the termcap
                   or terminfo file.
       -u {vimrc}  Use the commands in the file {vimrc} for  initializations.
                   All  the  other  initializations are skipped.  Use this to
                   edit a special kind of files.  It can also be used to skip
                   all initializations by giving the name "NONE".  See ":help
                   initialization" within vim for more details.
       -U {gvimrc} Use the commands in the file {gvimrc} for GUI  initializa‐
                   tions.  All the other GUI initializations are skipped.  It
                   can also be used to skip all GUI initializations by giving
                   the name "NONE".  See ":help gui-init" within vim for more
                   details.
       -V[N]       Verbose.  Give messages about which files are sourced  and
                   for reading and writing a viminfo file.  The optional num‐
                   ber N is the value for 'verbose'.  Default is 10.
       -v          Start Vim in Vi mode, just like the executable was  called
                   "vi".   This only has effect when the executable is called
                   "ex".
       -w {scriptout}
                   All the characters that you type are recorded in the  file
                   {scriptout},  until  you  exit Vim.  This is useful if you
                   want to create a script file to be used with "vim  -s"  or
                   ":source!".   If  the  {scriptout} file exists, characters
                   are appended.
       -W {scriptout}
                   Like -w, but an existing file is overwritten.
       -x          Use encryption when writing  files.   Will  prompt  for  a
                   crypt key.
       -X          Don't connect to the X server.  Shortens startup time in a
                   terminal, but the window title and clipboard will  not  be
                   used.
       -y          Start  Vim  in  easy  mode,  just  like the executable was
                   called "evim" or "eview".  Makes Vim behave like a  click-
                   and-type editor.
       -Z          Restricted  mode.   Works  like the executable starts with
                   "r".
       --          Denotes the end of the options.  Arguments after this will
                   be  handled  as  a  file name.  This can be used to edit a
                   filename that starts with a '-'.
       --echo-wid  GTK GUI only: Echo the Window ID on stdout.
       --help      Give a help message and exit, just like "-h".
       --literal   Take file name arguments literally, do  not  expand  wild‐
                   cards.  This has no effect on Unix where the shell expands
                   wildcards.
       --noplugin  Skip loading plugins.  Implied by -u NONE.
       --remote    Connect to a Vim server and make it edit the  files  given
                   in  the  rest  of  the arguments.  If no server is found a
                   warning is given and the files are edited in  the  current
                   Vim.
       --remote-expr {expr}
                   Connect  to  a Vim server, evaluate {expr} in it and print
                   the result on stdout.
       --remote-send {keys}
                   Connect to a Vim server and send {keys} to it.
       --remote-silent
                   As --remote, but without the warning  when  no  server  is
                   found.
       --remote-wait
                   As  --remote,  but  Vim does not exit until the files have
                   been edited.
       --remote-wait-silent
                   As --remote-wait, but without the warning when  no  server
                   is found.
       --serverlist
                   List the names of all Vim servers that can be found.
       --servername {name}
                   Use  {name} as the server name.  Used for the current Vim,
                   unless used with a --remote argument, then it's  the  name
                   of the server to connect to.
       --socketid {id}
                   GTK GUI only: Use the GtkPlug mechanism to run gvim in an‐
                   other window.
       --version   Print version information and exit.
ON-LINE HELP
       Type ":help" in Vim to get started.  Type ":help subject" to get  help
       on  a  specific  subject.  For example: ":help ZZ" to get help for the
       "ZZ" command.  Use <Tab> and CTRL-D to complete subjects (":help  cmd‐
       line-completion").  Tags are present to jump from one place to another
       (sort of hypertext links, see ":help").  All documentation  files  can
       be viewed in this way, for example ":help syntax.txt".
FILES
       /usr/share/vim/vim81/doc/*.txt
                      The Vim documentation files.  Use ":help doc-file-list"
                      to get the complete list.
       /usr/share/vim/vim81/doc/tags
                      The tags file used for finding information in the docu‐
                      mentation files.
       /usr/share/vim/vim81/syntax/syntax.vim
                      System wide syntax initializations.
       /usr/share/vim/vim81/syntax/*.vim
                      Syntax files for various languages.
       /etc/vimrc     System wide Vim initializations.
       ~/.vimrc       Your personal Vim initializations.
       /etc/gvimrc    System wide gvim initializations.
       ~/.gvimrc      Your personal gvim initializations.
       /usr/share/vim/vim81/optwin.vim
                      Script  used  for the ":options" command, a nice way to
                      view and set options.
       /usr/share/vim/vim81/menu.vim
                      System wide menu initializations for gvim.
       /usr/share/vim/vim81/bugreport.vim
                      Script to generate a bug report.  See ":help bugs".
       /usr/share/vim/vim81/filetype.vim
                      Script to detect the type of a file by its  name.   See
                      ":help 'filetype'".
       /usr/share/vim/vim81/scripts.vim
                      Script  to  detect  the type of a file by its contents.
                      See ":help 'filetype'".
       /usr/share/vim/vim81/print/*.ps
                      Files used for PostScript printing.
       For recent info read the VIM home page:
       <URL:http://www.vim.org/>
SEE ALSO
       vimtutor(1)
AUTHOR
       Most of Vim was made by Bram Moolenaar, with a lot of help  from  oth‐
       ers.  See ":help credits" in Vim.
       Vim  is  based on Stevie, worked on by: Tim Thompson, Tony Andrews and
       G.R. (Fred) Walter.  Although hardly any of the original code remains.
BUGS
       Probably.  See ":help todo" for a list of known problems.
       Note that a number of things that may be regarded as bugs by some, are
       in  fact caused by a too-faithful reproduction of Vi's behaviour.  And
       if you think other things are bugs "because Vi does  it  differently",
       you  should  take a closer look at the vi_diff.txt file (or type :help
       vi_diff.txt when in Vim).  Also have a look at  the  'compatible'  and
       'cpoptions' options.
                                 2006 Apr 11                           VIM(1)
  • echo
SYNOPSIS
       echo [SHORT-OPTION]... [STRING]...
       echo LONG-OPTION
DESCRIPTION
       Echo the STRING(s) to standard output.
       -n     do not output the trailing newline
       -e     enable interpretation of backslash escapes
       -E     disable interpretation of backslash escapes (default)
       --help display this help and exit
       --version
              output version information and exit
       If -e is in effect, the following sequences are recognized:
       \\     backslash
       \a     alert (BEL)
       \b     backspace
       \c     produce no further output
       \e     escape
       \f     form feed
       \n     new line
       \r     carriage return
       \t     horizontal tab
       \v     vertical tab
       \0NNN  byte with octal value NNN (1 to 3 digits)
       \xHH   byte with hexadecimal value HH (1 to 2 digits)
       NOTE:  your  shell may have its own version of echo, which usually su‐
       persedes the version described here.  Please  refer  to  your  shell's
       documentation for details about the options it supports.
AUTHOR
       Written by Brian Fox and Chet Ramey.
REPORTING BUGS
       GNU coreutils online help: <https://www.gnu.org/software/coreutils/>
       Report any translation bugs to <https://translationproject.org/team/>
COPYRIGHT
       Copyright  ©  2019 Free Software Foundation, Inc.  License GPLv3+: GNU
       GPL version 3 or later <https://gnu.org/licenses/gpl.html>.
       This is free software: you are free to  change  and  redistribute  it.
       There is NO WARRANTY, to the extent permitted by law.
SEE ALSO
       Full documentation <https://www.gnu.org/software/coreutils/echo>
       or available locally via: info '(coreutils) echo invocation'
GNU coreutils 8.31                March 2019                          ECHO(1)

 

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