Graphical definitions: making spreadsheets visual through direct manipulation and gestures
Herkimer J. Gottfried, Margaret Burnett · 2002
Until now, attempts to extend the one way constraint evaluation model of the spreadsheet paradigm to support complex objects, such as colored circles or user defined types, have led to approaches featuring either a direct way of creating objects graphically or strong compatibility with the spreadsheet paradigm, but not both. This inability to conveniently go beyond numbers and strings without straying outside the spreadsheet paradigm has been a limiting factor in the applicability of spreadsheets. We present a technique that removes this limitation, allowing complex objects to be programmed directly-and in a manner that fits seamlessly within the spreadsheet paradigm-using direct manipulation and gestures. An empirical study has shown that programmers can use this technique to program complex objects faster and with fewer errors. We show that the graphical definitions technique not only expands the applicability of spreadsheet languages, it also adds to their support for exploratory programming and to their scalability.