document loop B
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@@ -233,7 +233,7 @@ var computeLayout = (function() {
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// children
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// <Loop A> Measure non flexible children and count children by type
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// <Loop A> Layout non flexible children and count children by type
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// mainContentDim is accumulation of the dimensions and margin of all the
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// non flexible children. This will be used in order to either set the
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@@ -273,25 +273,52 @@ var computeLayout = (function() {
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}
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}
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// <Loop B> Layout flexible children and allocate empty space
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// In order to position the elements in the main axis, we have two
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// controls. The space between the beginning and the first element
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// and the space between each two elements.
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var/*float*/ leadingMainDim = 0;
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var/*float*/ betweenMainDim = 0;
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// If the dimensions of the current node is defined by its children, they
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// are all going to be packed together and we don't need to compute
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// anything.
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if (!isUndefined(node.layout[dim[mainAxis]])) {
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// The remaining available space that's needs to be allocated
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var/*float*/ remainingMainDim = node.layout[dim[mainAxis]] -
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getPaddingAndBorderAxis(node, mainAxis) -
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mainContentDim;
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// If there are flexible children in the mix, they are going to fill the
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// remaining space
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if (flexibleChildrenCount) {
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var/*float*/ flexibleMainDim = remainingMainDim / flexibleChildrenCount;
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// The non flexible children can overflow the container, in this case
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// we should just assume that there is no space available.
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if (flexibleMainDim < 0) {
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flexibleMainDim = 0;
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}
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// We iterate over the full array and only apply the action on flexible
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// children. This is faster than actually allocating a new array that
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// contains only flexible children.
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for (var/*int*/ i = 0; i < node.children.length; ++i) {
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var/*css_node_t**/ child = node.children[i];
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if (isFlex(child)) {
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child.layout[dim[mainAxis]] = flexibleMainDim + getPaddingAndBorderAxis(child, mainAxis);
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// At this point we know the final size of the element in the main
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// dimension
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child.layout[dim[mainAxis]] = flexibleMainDim +
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getPaddingAndBorderAxis(child, mainAxis);
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// And we recursively call the layout algorithm for this child
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layoutNode(child);
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}
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}
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// We use justifyContent to figure out how to allocate the remaining
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// space available
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} else {
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var/*css_justify_t*/ justifyContent = getJustifyContent(node);
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if (justifyContent === CSS_JUSTIFY_FLEX_START) {
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@@ -301,9 +328,12 @@ var computeLayout = (function() {
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} else if (justifyContent === CSS_JUSTIFY_FLEX_END) {
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leadingMainDim = remainingMainDim;
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} else if (justifyContent === CSS_JUSTIFY_SPACE_BETWEEN) {
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betweenMainDim = remainingMainDim / (flexibleChildrenCount + nonFlexibleChildrenCount - 1);
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betweenMainDim = remainingMainDim /
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(flexibleChildrenCount + nonFlexibleChildrenCount - 1);
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} else if (justifyContent === CSS_JUSTIFY_SPACE_AROUND) {
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betweenMainDim = remainingMainDim / (flexibleChildrenCount + nonFlexibleChildrenCount);
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// Space on the edges is half of the space between elements
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betweenMainDim = remainingMainDim /
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(flexibleChildrenCount + nonFlexibleChildrenCount);
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leadingMainDim = betweenMainDim / 2;
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}
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}
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