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I am using a combination of a shell script, awk script and a find command to perform multiple text replacements in hundreds of files. The files sizes vary between a few hundred bytes and 20 kbytes.

I am looking for a way to speed up this script.

I am using cygwin.

I posted this question on superuser earlier, but I think this forum is more appropriate.

The shell script -


if [ $# = 0 ]; then
 echo "Argument expected"
 exit 1

while [ $# -ge 1 ]
   if [ ! -f $1 ]; then
     echo "No such file as $1"
     exit 1

  awk -f ~/scripts/parse.awk $1  > ${1}.$$

   if [ $? != 0 ]; then
      echo "Something went wrong with the script"
     rm ${1}.$$
      exit 1
mv ${1}.$$ $1

The awk script (simplified) -

#! /usr/bin/awk -f

    if ( index($0,"Email") == 0)  {

The command line

find .  -type f  | xargs ~/scripts/run_parser.sh
share|improve this question
Please don't cross-post. –  Dennis Williamson Feb 17 '11 at 1:40

3 Answers 3

find .  -type f | while read -r file
  awk '/HHH.Web/ && !/Email/ {
  ' "$file" > ${file}.$$ && mv ${file}.$$ "$file" 

if you know the specified file you will be process, you may add -iname option

share|improve this answer
Thanks, that's neater. But it is not faster. Based on a few quick tests, that script is a few percent slower. –  Bryan Feb 17 '11 at 16:01

When on Cygwin, the most important thing is to avoid fork()-exec() as much as possible. Windows, by desgin, is not built to handle multiple processes like linux. It does not have fork(), cow is broken. Therefore, when writing a script, try to perfrom as much as possible from a single process.

In this case, we want awk, and only 1 awk. Avoid xargs at all cost. Another thing is, if you have to scan for multiple files, the disk cache in windows is just a joke. Instead of accessing all files, a better approach is to let grep find only the files that match given requirements so you would have

grep -r "some-pattern-prahaps-HHH.Web-or-so" "/dir/to/where/you/have/millions/of/files/" |awk -f ~/scripts/parse.awk

And within "~/scripts/parse.awk", you must open and close() files within awk, to speed things up. Do not use system() as much as possible.

# int staticlibs_codesize_grep( option, regexp, filepath, returnArray, returnArray_linenum  )
# small code size
# Code size is choosen instead of speed. Search may be slow on large files
# "-n" option supported
function staticlibs_codesize_grep(o, re, p, B, C, this, r, v, c){
 if(c=o~"-n")C[0]=0;B[0]=0;while((getline r<p)>0){if(o~"-o"){while(match(r,re)){
 }else{if(!match(r,re)!=!(o~"-v")){B[B[0]+=1]=r;if(c)C[C[0]+=1]=c;}}c++}return B[0]}
# Total: 293 byte , Codesize: > 276 byte, Depend: 0 byte

    file = $0;
    outfile = $0"."id; # Whatever.
    # If you have multiple replacements, or multiline replacements, 
    # be carefull in the order you replace. writing a k-map for efficient condition branch is a must.
    # Also, try to unroll the loop.

    # The unrolling can be anyting, this is a trade between code size for speed.
    # Here is a example of a unrolled loop
    # instead of having while((getline r<file)>0){if(file~html){print "foo";}else{print "bar";};};
    # we have moved the condition outside of the while() loop.
        while((getline r<file)>0){
            # Try to perform minimum replacement required for given file. 
            # Try to avoid branching by if(){}else{} if you are inside a loop.
            # Keep it minimalit and small.
            print "foo" > outfile;
        while((getline r<file)>0){
            # Here, as a example, we unrolled the loop into two, one for htm files, one for other files.
            print "bar" > outfile;
            # if a condition is required, match() is better
                # do whatever complex replacement you want. We reuse the RSTART,RLENGTH from match()
                before_match = substr(r,1,RSTART);
                matched_data = substr(r,RSTART,RLENGTH);
                after_match = substr(r,1,RSTART+RLENGTH);
                # if you want further matches, like grep -o, extracting only the match
                # Avobe stores multiple matches from a single line, into B
            # If you want to perform even further complex matches. try the grep() option.
            # staticlibs_codesize_grep() handles -o , -n , -v options. It sould satisfy most of the daily needs.
            # for a grep-like output, use printf("%4s\t\b:%s\n", returnArray_linenum[index] , returnArray[index] );

            # Example of multiple matches, against data that may or may not been replaced by the previous cond.
                # whatever
                # if you decide that replaceing is not good, you can abort
            # notice that we always need to output a line.
            print r > outfile;
    # If we forget to close file, we will run out of FD
    # now we can move the file, however I would not do it here.
    # The reason is, system() is a very heavy operation, and second is our replacement may be imcomplete, by human error.
    # system("mv \""outfile"\" \""file"\" ")
    # I would advice output to another file, for later move by bash or any other shell with builtin mv command.
    # NOTE[*1]
    print "mv \""outfile"\" \""file"\" " > "files.to.update.list";
    # Assuming we are all good, we should have a log file that records what has been modified

# Now when all is ready, meaning you have checked the result and it is what you desire, perform
#  source "files.to.update.list" 
# inside a terminal , or
#  cat "files.to.update.list" |bash
# and you are done
# NOTE[*1] if you have file names containing \x27 in them, the escape with \x22 is incomplete.
# Always check "files.to.update.list" for \x27 to avoid problems
# prahaps 
# grep -v -- "`echo -ne "\x27"`" > "files.to.update.list.safe"
# then 
# grep -- "`echo -ne "\x27"`" > "files.to.update.list.unsafe"
# may be a good idea.
share|improve this answer

You're spawning a new awk process for each file. I would think it is possible to have something like

find . -type f | xargs ./awk_script.awk

where the awk_script.awk checks for the file (not common practice I know). Could probably do the mv ${f}.$$ $f too, but you could do that as a separate pass from bash.

Hope this helps.

share|improve this answer
thanks, I figured that out see link –  Bryan Feb 18 '11 at 14:31

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