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.pragma library
var daysInAWeek = 7;
var monthsInAYear = 12;
// Not the number of weeks per month, but the number of weeks that are
// shown on a typical calendar.
var weeksOnACalendarMonth = 6;
// Can't create year 1 directly...
var minimumCalendarDate = new Date(-1, 0, 1);
minimumCalendarDate.setFullYear(minimumCalendarDate.getFullYear() + 2);
var maximumCalendarDate = new Date(275759, 9, 25);
function daysInMonth(date) {
// Passing 0 as the day will give us the previous month, which will be
// date.getMonth() since we added 1 to it.
return new Date(date.getFullYear(), date.getMonth() + 1, 0).getDate();
}
/*!
Returns a copy of \a date with its month set to \a month, keeping the same
day if possible. Does not modify \a date.
*/
function setMonth(date, month) {
var oldDay = date.getDate();
var newDate = new Date(date);
// Set the day first, because setting the month could cause it to skip ahead
// a month if the day is larger than the latest day in that month.
newDate.setDate(1);
newDate.setMonth(month);
// We'd like to have the previous day still selected when we change
// months, but it might not be possible, so use the smallest of the two.
newDate.setDate(Math.min(oldDay, daysInMonth(newDate)));
return newDate;
}
/*!
Returns the cell rectangle for the cell at the given \a index, assuming
that the grid has a number of columns equal to \a columns and rows
equal to \a rows, with an available width of \a availableWidth and height
of \a availableHeight.
If \a gridLineWidth is greater than \c 0, the cell rectangle will be
calculated under the assumption that there is a grid between the cells:
31 | 1 | 2 | 3 | 4 | 5 | 6
--------------------------------
7 | 8 | 9 | 10 | 11 | 12 | 13
--------------------------------
14 | 15 | 16 | 17 | 18 | 19 | 20
--------------------------------
21 | 22 | 23 | 24 | 25 | 26 | 27
--------------------------------
28 | 29 | 30 | 31 | 1 | 2 | 3
--------------------------------
4 | 5 | 6 | 7 | 8 | 9 | 10
*/
function cellRectAt(index, columns, rows, availableWidth, availableHeight, gridLineWidth) {
var col = Math.floor(index % columns);
var row = Math.floor(index / columns);
var availableWidthMinusGridLines = availableWidth - ((columns - 1) * gridLineWidth);
var availableHeightMinusGridLines = availableHeight - ((rows - 1) * gridLineWidth);
var remainingHorizontalSpace = Math.floor(availableWidthMinusGridLines % columns);
var remainingVerticalSpace = Math.floor(availableHeightMinusGridLines % rows);
var baseCellWidth = Math.floor(availableWidthMinusGridLines / columns);
var baseCellHeight = Math.floor(availableHeightMinusGridLines / rows);
var rect = Qt.rect(0, 0, 0, 0);
rect.x = baseCellWidth * col;
rect.width = baseCellWidth;
if (remainingHorizontalSpace > 0) {
if (col < remainingHorizontalSpace) {
++rect.width;
}
// This cell's x position should be increased by 1 for every column above it.
rect.x += Math.min(remainingHorizontalSpace, col);
}
rect.y = baseCellHeight * row;
rect.height = baseCellHeight;
if (remainingVerticalSpace > 0) {
if (row < remainingVerticalSpace) {
++rect.height;
}
// This cell's y position should be increased by 1 for every row above it.
rect.y += Math.min(remainingVerticalSpace, row);
}
rect.x += col * gridLineWidth;
rect.y += row * gridLineWidth;
return rect;
}