intcmp.1: bold
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@ -28,19 +28,23 @@ Permits a given integer to be less than the following integer.
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.\"
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.SH EXAMPLES
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It may help to think of the -e, -g, and -l options as equivalent to the
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infix algebraic \(lq=\(rq, \(lq>\(rq, and \(lq<\(rq operators respectively, with
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each option putting its symbol between every given integer. The following
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example is equivalent to evaluating \(lq1 < 2 < 3\(rq:
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It may help to think of the
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.BR -e ,
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.BR -g ,
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and
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.B -l
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options as equivalent to the infix algebraic \(lq=\(rq, \(lq>\(rq, and \(lq<\(rq
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operators respectively, with each option putting its symbol between every given
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integer. The following example is equivalent to evaluating \(lq1 < 2 < 3\(rq:
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\"
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.RS
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.R intcmp -l 1 2 3
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intcmp -l 1 2 3
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.RE
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.\"
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.SH DIAGNOSTICS
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The program will exit with a status code of 0 for a valid expression and with a
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code of 1 for an invalid expression.
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The program will exit with a successfully for a valid expression and with an
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error code of 1 for an invalid expression.
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In the event of an error, a debug message will be printed and the program will
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exit with the appropriate
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@ -49,7 +53,8 @@ error code.
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.\"
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.SH BUGS
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-egl, \(lqequal to or less than or greater than\(rq, exits 0 no matter what for
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.BR -egl ,
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\(lqequal to or less than or greater than\(rq, always exits successfully for
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valid program usage and may be abused to function as an integer validator. Use
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.BR str (1)
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instead.
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@ -57,9 +62,17 @@ instead.
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.SH CAVEATS
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There are multiple ways to express compound comparisons; \(lqless than or equal
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to\(rq can be -le or -el, for example.
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to\(rq can be
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.B -le
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or
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.BR -el ,
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for example.
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The inequality comparison is -gl or -lg for \(lqless than or greater than\(rq;
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The inequality comparison is
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.B -gl
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.B or
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.B -lg
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for \(lqless than or greater than\(rq;
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this is elegant but unintuitive.
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.\"
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.SH RATIONALE
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