cgic 2.05: an ANSI C library for CGI Programming

By Thomas Boutell

The LATEST documentation is available here. Check often for new releases.
IMPORTANT NOTICES:

If you have CGIC 1.05 or earlier, you should upgrade to CGIC 1.07, or to CGIC 2.02 or better, in order to obtain important security fixes.

If you have CGIC 2.0 or CGIC 2.01 and you use the cgiCookie routines, you should upgrade to CGIC 2.02 or better, in order to obtain important security fixes.

Table of Contents

Credits and License Terms

cgic can be used free of charge, provided that a credit notice is provided online. Alternatively, a nonexclusive Commercial License can be purchased, which grants the right to use cgic without a public credit notice.

Please see the file license.txt for the details of the Basic License and Commercial License, including ordering information for the Commercial License.

Thanks are due to Robert Gustavsson, Ken Holervich, Bob Nestor, Jon Ribbens, Thomas Strangert, Wu Yongwei, and other CGIC users who have corresponded over the years. Although the implementation of multipart/form-data file upload support in CGIC 2.x is my own, I particularly wish to thank those who submitted their own implementations of this feature.

How to Get Support

STOP! READ THIS FIRST! REALLY!

Are you getting a "server error," indicating that your web server "cannot allow POST to this URL," or a similar message? YOU MUST CONFIGURE YOUR WEB SERVER TO ALLOW CGI PROGRAMS, AND YOU MUST INSTALL CGI PROGRAMS IN THE LOCATION (OR WITH THE EXTENSION) THAT YOUR WEB SERVER EXPECTS TO SEE. Please don't send me email about this, unless you wish me to configure your web server for you; I can certainly do that for $50/hr, but you can probably straighten this out yourself or have your web server administrator do it.

Free Support

Please submit support inquiries about CGIC via our contact page. Please note that we receive a large volume of inquiries and cannot always respond personally. Sometimes the response must take the form of an eventual new release or an addition to a FAQ or other document, as opposed to an detailed individual response.

Hourly Support

Those requiring support in detail may arrange for direct support from the author, Thomas Boutell, at the rate of $50/hr, billed directly by credit card. To make arrangements, contact us via our our secure message page. To avoid delay, be sure to specifically mention that you wish to purchase CGIC support at the hourly rate above.

What's new in version 2.05?

Uploaded files properly closed; corrects a resource leak and enables file uploads to work properly on platforms with particular file locking semantics.

What's new in version 2.04?

Documentation fixes: the cgiHtmlEscape, cgiHtmlEscapeData, cgiValueEscape, and cgiValueEscapeData routines were named incorrectly in the manual. No code changes in version 2.04.

What's new in version 2.03?

What's new in version 2.02?

What's new in version 2.01?

What's new in version 2.0?

1. CGIC 2.0 provides support for file upload fields. User-uploaded files are kept in temporary files, to avoid the use of excessive swap space (Solaris users may wish to change the cgicTempDir macro in cgic.c before compiling). The cgiFormFileName, cgiFormFileContentType, cgiFormFileSize, cgiFormFileOpen, cgiFormFileRead, and cgiFormFileClose functions provide a complete interface to this new functionality. Remember, the enctype attribute of the form tag must be set to multipart/form-data when <input type="file"> tags are used.

2. CGIC 2.0 provides support for setting and examining cookies (persistent data storage on the browser side). The cgiCookieString, and cgiCookieInteger and cgiCookies functions retrieve cookies. The cgiHeaderCookieSetString and cgiHeaderCookieSetInteger functions set cookies.

3. CGIC 2.0 offers a convenient way to retrieve a list of all form fields. The new cgiFormEntries function performs this operation.

4. CGIC 2.0 provides convenience functions to correctly escape text before outputting it as part of HTML, or as part of the value of a tag attribute, such as the HREF or VALUE attribute. See cgiHtmlEscape, cgiHtmlEscapeData, cgiValueEscape and cgiValueEscapeData.

5. Users have often asked the correct way to determine which submit button was clicked. This could always be accomplished in previous versions, but CGIC 2.0 also provides cgiFormSubmitClicked, a convenient alternate label for the cgiFormCheckboxSingle function.

What's new in version 1.07?

A problem with the cgiFormString and related functions has been corrected. These functions were previously incorrectly returning cgiFormTruncated in cases where the returned string fit the buffer exactly.

What's new in version 1.06?

1. A potentially significant buffer overflow problem has been corrected. Jon Ribbens correctly pointed out to me (and to the Internet's bugtraq mailing list) that the cgiFormEntryString function, which is used directly or indirectly by almost all CGIC programs, can potentially write past the buffer passed to it by the programmer. This bug has been corrected. Upgrading to version 1.06 is strongly recommended.

2. The function cgiSaferSystem() has been removed entirely. This function escaped only a few metacharacters, while most shells have many, and there was no way to account for the many different operating system shells that might be in use on different operating systems. Since this led to a false sense of security, the function has been removed. It is our recommendation that user input should never be passed directly on the command line unless it has been carefully shown to contain only characters regarded as safe and appropriate by the programmer. Even then, it is better to design your utilities to accept their input from standard input rather than the command line.

What's new in version 1.05?

Non-exclusive commercial license fee reduced to $200.

What's new in version 1.04?

For consistency with other packages, the standard Makefile now produces a true library for cgic (libcgic.a).

What's new in version 1.03?

Version 1.03 sends line feeds only (ascii 10) to end Content-type:, Status:, and other HTTP protocol output lines, instead of CR/LF sequences. The standard specifies CR/LF. Unfortunately, too many servers reject CR/LF to make implementation of that standard practical. No server tested ever rejects LF alone in this context.

What's new in version 1.02?

Version 1.02 corrects bugs in previous versions:

What's new in version 1.01?

Version 1.01 adds no major functionality but corrects significant bugs and incompatibilities:

What is cgic?

cgic is an ANSI C-language library for the creation of CGI-based World Wide Web applications. For basic information about the CGI standard, see the CGI documentation at NCSA.

cgic performs the following tasks:

cgic is compatible with any CGI-compliant server environment, and compiles without modification in Posix/Unix/Linux and Windows environments.

Obtaining cgic

cgic is distributed via the web in two forms: as a Windows-compatible .ZIP file, and as a gzipped tar file. Most users of Windows and related operating systems have access to 'unzip' or 'pkunzip'. All modern Unix systems come with 'gunzip' and 'tar' as standard equipment, and gzip/gunzip is not difficult to find if yours does not. Versions of these programs for other operating systems are widely available if you do not already have them.

Important: to use cgic, you will need an ANSI-standard C compiler. Under Unix, just obtain and use gcc. Most Unix systems have standardiszed on gcc. Users of Windows operating systems should not have ANSI C-related problems as all of the popular compilers follow the ANSI standard.

Note for Windows Programmers: you must use a modern 32-bit compiler. Visual C++ 2.0 or higher, Borland C++ and the mingw32 gcc compiler are all appropriate, as is cygwin. Do NOT use an ancient 16-bit DOS executable compiler, please.

What Operating System Does Your WEB SERVER Run?

Remember, the computer on your desk is usually NOT your web server. Compiling a Windows console executable will not give you a CGI program that can be installed on a Linux-based server.
Your web browser should inquire whether to save the file to disk when you select one of the links below. Under Unix and compatible operating systems, save it, then issue the following commands to unpack it:
gunzip cgic205.tar.gz
tar -xf cgic205.tar
This should produce the subdirectory 'cgic205', which will contain the complete cgic distribution for version 2.05, including a copy of this documentation in the file cgic.html.

Under Windows and compatible operating systems, save it, open a console ("DOS") window, and issue the following commands to unpack it:

unzip /d cgic205.zip
Or use the unzip utility of your choice.

This command also produces the subdirectory 'cgic205', which will contain the complete cgic distribution for version 2.0, including a copy of this documentation in the file cgic.html.

cgic is available via the web from www.boutell.com:

Building cgic: a sample application

The sample application 'cgictest.c' is provided as part of the cgic distribution. This CGI program displays an input form, accepts a submission, and then displays what was submitted. In the process essentially all of cgic's features are tested.

On a Unix system, you can build cgictest simply by typing 'make cgictest.cgi'. cgic.c and cgictest.c will be compiled and linked together to produce the cgictest application. Under non-Unix operating systems, you will need to create and compile an appropriate project containing the files cgic.c and cgictest.c.

IMPORTANT: after compiling cgictest.cgi, you will need to place it in a location on your server system which is designated by your server administrator as an appropriate location for CGI scripts. Some servers are configured to recognize any file ending in .cgi as a CGI program when it is found in any subdirectory of the server's web space, but this is not always the case! The right locations for CGI programs vary greatly from one server to another. Resolving this issue is between you, your web server administrator, and your web server documentation. Before submitting a bug report for cgic, make certain that the CGI example programs which came with your server do work for you. Otherwise it is very likely that you have a server configuration problem.

Once you have moved cgictest.cgi (or cgictest.exe, under Windows) to an appropriate cgi directory, use the web browser of your choice to access the URL at which you have installed it (for instance, www.mysite.com/cgi-bin/cgictest.cgi). Fill out the various fields in any manner you wish, then select the SUBMIT button.

If all goes well, cgictest.cgi will respond with a page which indicates the various settings you submitted. If not, please reread the section above regarding the correct location in which to install your CGI program on your web server.

What to do if it won't compile

If none of the above proves effective, please see the section regarding support.

How to write a cgic application

Note: All cgic applications must be linked to the cgic.c module itself. How to do this depends on your operating system; under Unix, just use the provided Makefile as an example.

Since all CGI applications must perform certain initial tasks, such as parsing form data and examining environment variables, the cgic library provides its own main() function. When you write applications that use cgic, you will begin your own programs by writing a cgiMain() function, which cgic will invoke when the initial cgi work has been successfully completed. Your program must also be sure to #include the file cgic.h.

Important: if you write your own main() function, your program will not link properly. Your own code should begin with cgiMain(). The library provides main() for you. (Those who prefer different behavior can easily modify cgic.c.)

Consider the cgiMain function of cgictest.c:

int cgiMain() {
#ifdef DEBUG
  LoadEnvironment();
#endif /* DEBUG */
  /* Load a previously saved CGI scenario if that button
    has been pressed. */
  if (cgiFormSubmitClicked("loadenvironment") == cgiFormSuccess) {
    LoadEnvironment();
  }
  /* Set any new cookie requested. Must be done *before*
    outputting the content type. */
  CookieSet();
  /* Send the content type, letting the browser know this is HTML */
  cgiHeaderContentType("text/html");
  /* Top of the page */
  fprintf(cgiOut, "<HTML><HEAD>\n");
  fprintf(cgiOut, "<TITLE>cgic test</TITLE></HEAD>\n");
  fprintf(cgiOut, "<BODY><H1>cgic test</H1>\n");
  /* If a submit button has already been clicked, act on the 
    submission of the form. */
  if ((cgiFormSubmitClicked("testcgic") == cgiFormSuccess) ||
    cgiFormSubmitClicked("saveenvironment") == cgiFormSuccess)
  {
    HandleSubmit();
    fprintf(cgiOut, "<hr>\n");
  }
  /* Now show the form */
  ShowForm();
  /* Finish up the page */
  fprintf(cgiOut, "</BODY></HTML>\n");
  return 0;
}
Note the DEBUG #ifdef. If DEBUG is defined at compile time, either by inserting the line "#define DEBUG 1" into the program or by setting it in the Makefile or other development environment, then the LoadEnvironment function is invoked. This function calls cgiReadEnvironment() to restore a captured CGI environment for debugging purposes. See also the discussion of the capture program, which is provided for use in CGI debugging. Because this is a test program, the cgiFormSubmitClicked function is also called to check for the use of a button that requests the reloading of a saved CGI environment. A completed CGI program typically would never allow the end user to make that decision.

Setting Cookies

Next, one of the cgiHeader functions should be called. This particular program demonstrates many features, including the setting of cookies. If the programmer wishes to set a cookie, the cookie-setting function must be called first, before other headers are output. This is done by the CookieSet() function of cgictest.c:
void CookieSet()
{
  char cname[1024];
  char cvalue[1024];
  /* Must set cookies BEFORE calling 
    cgiHeaderContentType */
  cgiFormString("cname", cname, sizeof(cname));  
  cgiFormString("cvalue", cvalue, sizeof(cvalue));  
  if (strlen(cname)) {
    /* Cookie lives for one day (or until 
      browser chooses to get rid of it, which 
      may be immediately), and applies only to 
      this script on this site. */  
    cgiHeaderCookieSetString(cname, cvalue,
      86400, cgiScriptName, cgiServerName);
  }
}
Since this is a test program, the cgiFormString function is used to fetch the name and value from the form previously filled in by the user. Normally, cookie names and values are chosen to meet the needs of the programmer and provide a means of identifying the same user again later.

The cgiHeaderCookieSetString function sets the cookie by requesting that the web browser store it. There is never any guarantee that this will happen! Many browsers reject cookies completely; others do not necessarily keep them as long as requested or return them with their values intact. Always code defensively when using cookies.

The cname and cvalue parameters are of course the namd and value for the cookie. The third argument is the time, in seconds, that the cookie should "live" on the browser side before it expires; in this case it has been set to 86,400 seconds, which is exactly one day. The browser may or may not respect this setting, as with everything else about cookies.

The fourth argument identifies the "path" within the web site for which the cookie is considered valid. A cookie that should be sent back for every access to the site should be set with a path of /. In this case the cookie is relevant only to the CGI program itself, so cgiScriptName (the URL of the CGI program, not including the domain name) is sent. Similarly, a cookie can be considered relevant to a single web site or to an entire domain, such as www.boutell.com or the entire .boutell.com domain. In this case, the current site on which the program is running is the only relevant site, so cgiServerName is used as the domain.

Outputting the Content Type Header

Next, cgiHeaderContentType() is called to indicate the MIME type of the document being output, in this case "text/html" (a normal HTML document). A few other common MIME types are "image/gif", "image/jpeg" and "audio/wav".

Note that cgiHeaderStatus() or cgiHeaderLocation() could have been invoked instead to output an error code or redirect the request to a different URL. Only one of the cgiHeader functions should be called in a single execution of the program.

Important: one of the cgiHeader functions, usually cgiHeaderContentType(), must be invoked before outputting any other response to the user. Otherwise, the result will not be a valid document and the browser's behavior will be unpredictable. You may, of course, output your own ContentType and other header information to cgiOut if you prefer. The cgiHeader functions are provided as a convenience.

Handling Form Submissions

Like many CGI programs, cgictest makes decisions about the way it should behave based on whether various submit buttons have been clicked. When either the testcgic or saveenvironment button is present, cgictest invokes the HandleSubmit function, which invokes additional functions to handle various parts of the form:
void HandleSubmit()
{
  Name();
  Address();
  Hungry();
  Temperature();
  Frogs();
  Color();
  Flavors();
  NonExButtons();
  RadioButtons();
  File();
  Entries();
  Cookies();
  /* The saveenvironment button, in addition to submitting 
    the form, also saves the resulting CGI scenario to 
    disk for later replay with the 'load saved environment' 
    button. */
  if (cgiFormSubmitClicked("saveenvironment") == cgiFormSuccess) {
    SaveEnvironment();
  }
}

Handling Text Input

The Name() function of cgictest is shown below, in its simplest possible form:
void Name() {
        char name[81];
        cgiFormStringNoNewlines("name", name, 81);
        fprintf(cgiOut, "Name: ");
        cgicHtmlEscape(name);
        fprintf(cgiOut, "
\n"); }
The purpose of this function is to retrieve and display the name that was input by the user. Since the programmer has decided that names should be permitted to have up to 80 characters, a buffer of 81 characters has been declared (allowing for the final null character). The cgiFormStringNoNewlines() function is then invoked to retrieve the name and ensure that carriage returns are not present in the name (despite the incorrect behavior of some web browsers). The first argument is the name of the input field in the form, the second argument is the buffer to which the data should be copied, and the third argument is the size of the buffer. cgic will never write beyond the size of the buffer, and will always provide a null-terminated string in response; if the buffer is too small, the string will be shortened. If this is not acceptable, the cgiFormStringSpaceNeeded() function can be used to check the amount of space needed; the return value of cgiFormStringNoNewlines() can also be checked to determine whether truncation occurred. See the full description of cgiFormStringNoNewlines().

Handling Output

Note that Name() writes its HTML output to cgiOut, not to stdout.

The actual name submitted by the user may or may not contain characters that have special meaning in HTML, specifically the the <, >, and & characters. The cgiHtmlEscape function is used to output the user-entered name with any occurrences of these characters correctly escaped as &lt;, &gt;, and &amp;.

Important: cgiOut is normally equivalent to stdout, and there is no performance penalty for using it. It is recommended that you write output to cgiOut to ensure compatibility with modified versions of the cgic library for special environments that do not provide stdin and stdout for each cgi connection.

Note that, for text input areas in which carriage returns are desired, the function cgiFormString should be used instead. cgiFormString ensures that line breaks are always represented by a single carriage return (ascii decimal 13), making life easier for the programmer. See the source code to the Address() function of cgictest.c for an example.

Handling Single Checkboxes

Consider the Hungry() function, which determines whether the user has selected the "hungry" checkbox:
void Hungry() {
        if (cgiFormCheckboxSingle("hungry") == cgiFormSuccess) {
                fprintf(cgiOut, "I'm Hungry!<BR>\n");
        } else {
                fprintf(cgiOut, "I'm Not Hungry!<BR>\n");
        }
}
This function takes advantage of the cgiFormCheckboxSingle() function, which determines whether a single checkbox has been selected. cgiFormCheckboxSingle() accepts the name attribute of the checkbox as its sole argument and returns cgiFormSuccess if the checkbox is selected, or cgiFormNotFound if it is not. If multiple checkboxes with the same name are in use, consider the cgiFormCheckboxMultiple() and cgiFormStringMultiple() functions.

Handling Numeric Input

Now consider the Temperature() function, which retrieves a temperature in degrees (a floating-point value) and ensures that it lies within particular bounds:
void Temperature() {
        double temperature;
        cgiFormDoubleBounded("temperature", &temperature, 80.0, 120.0, 98.6);
        fprintf(cgiOut, "My temperature is %f.<BR>\n", temperature);
}
The temperature is retrieved by the function cgiFormDoubleBounded(). The first argument is the name of the temperature input field in the form; the second argument points to the address of the variable that will contain the result. The next two arguments are the lower and upper bounds, respectively. The final argument is the default value to be returned if the user did not submit a value.

This function always retrieves a reasonable value within the specified bounds; values above or below bounds are constrained to fit the bounds. However, the return value of cgiFormDoubleBounded can be checked to make sure the actual user entry was in bounds, not blank, and so forth; see the description of cgiFormDoubleBounded() for more details. If bounds checking is not desired, consider using cgiFormDouble() instead.

Note that, for integer input, the functions cgiFormInteger and cgiFormIntegerBounded are available. The behavior of these functions is similar to that of their floating-point counterparts above.

Handling Single-Choice Input

The <SELECT> tag of HTML is used to provide the user with several choices. Radio buttons and checkboxes can also be used when the number of choices is relatively small. Consider the Color() function of cgictest.c:
char *colors[] = {
        "Red",
        "Green",
        "Blue"
};

void Color() {
        int colorChoice;
        cgiFormSelectSingle("colors", colors, 3, &colorChoice, 0);
        fprintf(cgiOut, "I am: %s<BR>\n", colors[colorChoice]);
}
This function determines which of several colors the user chose from a <SELECT> list in the form. An array of colors is declared; the cgiFormSelectSingle() function is then invoked to determine which, if any, of those choices was selected. The first argument indicates the name of the input field in the form. The second argument points to the list of acceptable colors. The third argument indicates the number of entries in the color array. The fourth argument points to the variable which will accept the chosen color, and the last argument indicates the index of the default value to be set if no selection was submitted by the browser.

cgiFormSelectSingle() will always indicate a reasonable selection value. However, if the programmer wishes to know for certain that a value was actually submitted, that the value submitted was a legal response, and so on, the return value of cgiFormSelectSingle() can be consulted. See the full description of cgiFormSelectSingle() for more information.

Note that radio button groups and <SELECT> lists can both be handled by this function. If you are processing radio button groups, you may prefer to invoke cgiFormRadio(), which functions identically.

"What if I won't know the acceptable choices at runtime?"

If the acceptable choices aren't known until runtime, one can simply load the choices from disk. But if the acceptable choices aren't fixed at all (consider a list of country names; new names may be added to the form at any time and it is inconvenient to also update program code or a separate list of countries), simply invoke cgiFormStringNoNewlines() instead to retrieve the string directly. Keep in mind that, if you do so, validating the response to make sure it is safe and legitimate becomes a problem for your own program to solve. The advantage of cgiFormSelectSingle() is that invalid responses are never returned.

To handle multiple-selection <SELECT> lists and groups of checkboxes with the same name, see the discussion of the NonExButtons() function of cgictest.c, immediately below.

Handling Multiple-Choice Input

Consider the first half of the NonExButtons() function of cgictest.c:
char *votes[] = {
  "A",
  "B",
  "C",
  "D"
};

void NonExButtons() {
  int voteChoices[4];
  int i;
  int result;  
  int invalid;

  char **responses;

  /* Method #1: check for valid votes. This is a good idea,
    since votes for nonexistent candidates should probably
    be discounted... */
  fprintf(cgiOut, "Votes (method 1):<BR>\n");
  result = cgiFormCheckboxMultiple("vote", votes, 4, 
    voteChoices, &invalid);
  if (result == cgiFormNotFound) {
    fprintf(cgiOut, "I hate them all!<p>\n");
  } else {  
    fprintf(cgiOut, "My preferred candidates are:\n");
    fprintf(cgiOut, "<ul>\n");
    for (i=0; (i < 4); i++) {
      if (voteChoices[i]) {
        fprintf(cgiOut, "<li>%s\n", votes[i]);
      }
    }
    fprintf(cgiOut, "</ul>\n");
  }
This function takes advantage of cgiFormCheckboxMultiple(), which is used to identify one or more selected checkboxes with the same name. This function performs identically to cgiFormSelectMultiple(). That is, <SELECT> tags with the MULTIPLE attribute are handled just like a group of several checkboxes with the same name.

The first argument to cgiFormCheckboxMultiple() is the name given to all checkbox input fields in the group. The second argument points to an array of legitimate values; these should correspond to the VALUE attributes of the checkboxes (or OPTION tags in a <SELECT> list). The third argument indicates the number of entries in the array of legitimate values. The fourth argument points to an array of integers with the same number of entries as the array of legitimate values; each entry will be set true if that checkbox or option was selected, false otherwise.

The last argument points to an integer which will be set to the number of invalid responses (responses not in the array of valid responses) that were submitted. If this value is not of interest, the last argument may be a null pointer (0).

Note that the return value of cgiFormCheckboxMultiple is inspected to determine whether any choices at all were set. See the full description of cgiFormCheckboxMultiple for other possible return values.

"What if I won't know the acceptable choices at runtime?"

If the acceptable choices aren't known until runtime, one can simply load the choices from disk. But if the acceptable choices aren't fixed at all (consider a list of ice cream flavors; new names may be added to the form at any time and it is inconvenient to also update program code or a separate list of countries), a more dynamic approach is needed. Consider the second half of the NonExButtons() function of cgictest.c:

  /* Method #2: get all the names voted for and trust them.
    This is good if the form will change more often
    than the code and invented responses are not a danger
    or can be checked in some other way. */
  fprintf(cgiOut, "Votes (method 2):<BR>\n");
  result = cgiFormStringMultiple("vote", &responses);
  if (result == cgiFormNotFound) {  
    fprintf(cgiOut, "I hate them all!<p>\n");
  } else {
    int i = 0;
    fprintf(cgiOut, "My preferred candidates are:\n");
    fprintf(cgiOut, "<ul>\n");
    while (responses[i]) {
      fprintf(cgiOut, "<li>%s\n", responses[i]);
      i++;
    }
    fprintf(cgiOut, "</ul>\n");
  }
  /* We must be sure to free the string array or a memory
    leak will occur. Simply calling free() would free
    the array but not the individual strings. The
    function cgiStringArrayFree() does the job completely. */  
  cgiStringArrayFree(responses);
}
This code excerpt demonstrates an alternate means of retrieving a list of choices. The function cgiFormStringMultiple() is used to retrieve an array consisting of all the strings submitted for with a particular input field name. This works both for <SELECT> tags with the MULTIPLE attribute and for groups of checkboxes with the same name.

The first argument to cgiFormStringMultiple() is the name of the input field or group of input fields in question. The second argument should be the address of a pointer to a pointer to a string, which isn't as bad as it sounds. Consider the following simple call of the function:

/* An array of strings; each C string is an array of characters */
char **responses; 

cgiFormStringMultiple("vote", &responses);
"How do I know how many responses there are?"

After the call, the last entry in the string array will be a null pointer. Thus the simple loop:

int i = 0;
while (responses[i]) {
  /* Do something with the string responses[i] */
  i++;
}
can be used to walk through the array until the last entry is encountered.

Important: the cgiFormStringMultiple function returns a pointer to allocated memory. Your code should not modify the strings in the responses array or the responses array itself; if modification is needed, the strings should be copied. When your code is done examining the responses array, you MUST call cgiStringArrayFree() with the array as an argument to free the memory associated with the array. Otherwise, the memory will not be available again until the program exists. Don't just call t